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POLYMER & NANOCOMPOSITES SYMPOSIUM Multi-Scale Self-Healing Nanocomposite Shielding Material Abstract Book 21-22 February, 2018 supported by TUBITAK 1001 Project No-115R017 Editor: Prof. Dr. Nilgun BAYDOGAN Co-Editors: Assoc. Prof. Nesrin KOKEN, Assoc. Prof. Dr. Birgul BENLI, Dr. Tayfun BEL, Assist.Prof.Dr. Utku CANCI MATUR, PhD-Candidate Osman URPER http://innovationorbit1.itu.edu.tr
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Page 1: POLYMER & NANOCOMPOSITES SYMPOSIUMpolen.itu.edu.tr/bitstream/11527/16709/4/22December2018.pdf · 978-975-561-501-1 Polymer & nanocomposites symposium, multi-scale self-healing nanocomposite

POLYMER & NANOCOMPOSITES

SYMPOSIUM

Multi-Scale Self-Healing Nanocomposite Shielding Material

Abstract Book

21-22 February, 2018

supported by TUBITAK 1001 Project No-115R017

Editor: Prof. Dr. Nilgun BAYDOGAN

Co-Editors: Assoc. Prof. Nesrin KOKEN, Assoc. Prof. Dr. Birgul BENLI,

Dr. Tayfun BEL, Assist.Prof.Dr. Utku CANCI MATUR, PhD-Candidate Osman URPER

http://innovationorbit1.itu.edu.tr

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978-975-561-501-1

Polymer & nanocomposites symposium, multi-scale self-healing nanocomposite shielding material abstract book

E – Published at Istanbul Technical University, Ayazaga Campus,

Maslak, Sariyer, 34469, Istanbul, TURKEY

on November 27, 2018

e-ISBN

Page 3: POLYMER & NANOCOMPOSITES SYMPOSIUMpolen.itu.edu.tr/bitstream/11527/16709/4/22December2018.pdf · 978-975-561-501-1 Polymer & nanocomposites symposium, multi-scale self-healing nanocomposite

POLYMER & NANOCOMPOSITES

SYMPOSIUM

Multi-Scale Self-Healing Nanocomposite Shielding Material

http://innovationorbit1.itu.edu.tr

Istanbul Technical University,

Energy Institute, Ayazaga Campus,

Maslak, 34469, Istanbul Turkey

February 21-22, 2018

Page 4: POLYMER & NANOCOMPOSITES SYMPOSIUMpolen.itu.edu.tr/bitstream/11527/16709/4/22December2018.pdf · 978-975-561-501-1 Polymer & nanocomposites symposium, multi-scale self-healing nanocomposite

Dear Colleagues,

International POLYMER & NANOCOMPOSITES SYMPOSIUM, Multi-Scale

Self-Healing Nanocomposite Shielding Material supported by TÜBİTAK 1001

Project with number 115R017 (Kendini Çok Yönlü Onarabilen

Nanokompozitlerin Geliştirilmesi ve Zırh Malzemesi Olarak Mekanik

Davranışlarının İncelenmesi) was held in Istanbul Technical University, Energy

Institute in February 21-22, 2018. This symposium aimed to bring together

academicians, researchers and engineers working in industrial companies.

The high profile delegates tried to exchange and discuss the original ideas,

research results, practical development experiences and technological

advancements of future applications in the symposium providing a common

platform from various disciplines and sectors.

This symposium was provided a privilege to participants and to discuss the

advantages and opportunities involved in sustainability of innovation in

Polymers and Nanocomposites with respect to current industrial and

academically researches.

We thank you for allowing us to partner with you in that effort for

International POLYMER & NANOCOMPOSITES SYMPOSIUM.

Prof. Dr. Nilgun BAYDOGAN

Symposium Chair

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v

Executive Committee

Abdulehad ÖZDEMİR, PhD. Candidate, TUBITAK MAM, Kocaeli, TURKEY

Ayça KARAİL, ASELSAN, Electronics Industry and Trade, Inc., Ankara, TURKEY

Beril TUĞRUL, Prof.Dr., Istanbul Technical University, Energy Institute, Istanbul,

TURKEY

Birgül BENLİ, Associate Prof.Dr., Istanbul Technical University, Faculty of Mines,

Istanbul TURKEY

Cüneyt ARSLAN, Prof.Dr., Istanbul Technical University, Faculty of Chemical and

Metallurgical Engineering, Istanbul TURKEY

Fahir ARISOY, Assist. Prof.Dr., Istanbul Technical University, Faculty of Chemical

and Metallurgical Engineering, Istanbul TURKEY

Görkem MEMİŞOĞLU, PhD., Vestel Electronics, Manisa, TURKEY

Hande SESİGÜR, ŞİŞECAM, Çayırova, Kocaeli, TURKEY

Hüseyin ÇİMENOĞLU, Prof.Dr., Istanbul Technical University, Faculty of Chemical

and Metallurgical Engineering, Istanbul TURKEY

Murat CELEP, TÜBİTAK, MAM

Mustafa Serdar ŞALCI, GERSAN Elektrik Tic. ve San. A.Ş. Istanbul TURKEY

Namık Serkan TAŞKIRAN, TÜBİTAK MAM

Nedim TÜRKMEN, Dr. TAI- Turkish Aerospace Industries, Inc.

Nesrin KÖKEN, Associate. Dr., Istanbul Technical University, Faculty of Arts and

Sciences, Istanbul TURKEY

Nilgün BAYDOĞAN, Prof.Dr., Istanbul Technical University, Energy Institute,

Istanbul TURKEY

Nilgün KIZILCAN, Prof.Dr., Istanbul Technical University, Faculty of Arts and

Sciences Istanbul TURKEY

Noorhana YAHYA, Prof.Dr., Universiti Teknologi PETRONAS, MALAYSIA

Osman ÜRPER, PhD-Candidate, Istanbul Technical University, Energy Institute

Istanbul TURKEY

Tayfun BEL, PhD, Istanbul Technical University, Prof.Dr. Adnan Tekin Materials

Science and Production Technologies Applied Research Center (ATARC) Istanbul

TURKEY

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vi

Scientific Committee

ADNANE MOHAMED, Département de Technologie des Matériaux, Faculté de physique,

Université des Sciences et de la Technologie d’Oran Mohamed Boudiaf, El M’naouar BP

1505 Bir El Djir 31000 Oran, ALGÉRIE

Afza SHAFIE, PhD., Universiti Teknologi PETRONAS, MALAYSIA

Ahmet Togo GIZ, Prof.Dr., Istanbul Technical University, Faculty of Arts and Sciences

Istanbul TURKEY

Andy AUGOUSTI, Prof.Dr., Kingston University, London, UNITED KINGDOM

Ayben KİLİSLİOĞLU, Prof.Dr., Istanbul University, Engineering Faculty Istanbul

TURKEY

Aylin KARAHAN TOPRAKÇI, Assist. Prof.Dr., Yalova University Engineering Faculty,

Yalova, TURKEY

Barbara PIERSCIONEK, Prof. Dr., Nottingham Trent University, Nottingham,

UNITED KINGDOM

Beril TUĞRUL, Prof.Dr., Istanbul Technical University, Energy Institute, Istanbul,

TURKEY

Birgül BENLİ, Associate Prof.Dr., Istanbul Technical University, Faculty of Mines,

Istanbul TURKEY

Burak BARUTÇU, Assist. Prof.Dr.Istanbul Technical University, Energy Institute,

Istanbul TURKEY

Cevza CANDAN, Prof.Dr., Istanbul Technical University Faculty of Textile Technologies

and Design, Istanbul TURKEY

Denis CHAUMONT Prof.Dr., ICB, Université de Bourgogne Franche-Comté UBFC, BP 47 870,

21078 Dijon, FRANCE

Cihat TAŞALTIN, PhD.,TÜBİTAK MAM, , Kocaeli, TURKEY

Cüneyt ARSLAN, Prof.Dr., Istanbul Technical University, Faculty of Chemical and

Metallurgical Engineering, Istanbul TURKEY

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Esra GENCELİ, Assist. Prof.Dr., Istanbul Technical University,, Civil Engineering

Faculty Istanbul TURKEY

Esra ÖZKAN ZAYİM, Prof.Dr., Istanbul Technical University,, Faculty of Arts and

Sciences Istanbul TURKEY

Elif ARICI BOGNER, Associate Prof.Dr., Istanbul Technical University, Energy

Institute, Istanbul, TURKEY

Emel ÖNDER KARAOĞLU, Prof.Dr., Istanbul Technical University Faculty of Textile

Technologies and Design, Istanbul TURKEY

Emine TEKİN, Associate Prof.Dr., TÜBİTAK MAM, Kocaeli, Turkey

Emine ÇOKGÖR, Prof.Dr., Istanbul Technical University, Civil Engineering Faculty

Istanbul TURKEY

Fahir ARISOY, Assist. Prof.Dr., Istanbul Technical University, Faculty of Chemical and

Metallurgical Engineering, Istanbul TURKEY

Filiz PİROĞLU, Associate Prof.Dr., Istanbul Technical University,, Civil Engineering

Faculty, Istanbul TURKEY

Fried MİKLOS, PhD., Eötvös Loránd University, Budapeşte, HUNGARY

Hande SESİGÜR, PhD., ŞİŞECAM, Çayırova, Kocaeli, TURKEY

Hassan SOLEIMANI, Dr. Universiti Teknologi PETRONAS, MALAYSIA

Hülya CEBECİ, Associate Prof.Dr., Istanbul Technical University, Faculty of Aeronautics

and Astronautics Istanbul TURKEY

Hüseyin ÇİMENOĞLU, Prof.Dr., Istanbul Technical University, Faculty of Chemical and

Metallurgical Engineering Istanbul TURKEY

Hüseyin KIZIL, Associate Prof.Dr., Istanbul Technical University, Faculty of Chemical

and Metallurgical Engineering Istanbul TURKEY

İskender REYHANCAN, Prof.Dr., Istanbul Technical University, Energy Institute,

Istanbul TURKEY

Kaiying WANG, Prof. Dr., University College of South East, NORWAY

Levent TRABZON, Prof.Dr., Istanbul Technical University, Engineering Faculty Istanbul

TURKEY

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Lütfü ÖVEÇOĞLU, Prof.Dr., Istanbul Technical University, Faculty of Chemical and

Metallurgical Engineering Istanbul TURKEY

Mehmet Ali GÜRKAYNAK, Prof.Dr., İÜ Mühendislik Fakültesi, Istanbul TURKEY

Murat CELEP, PhD., TUBITAK MAM, Kocaeli, TURKEY

Mustafa BAKKAL, Associate Prof.Dr., Istanbul Technical University, Engineering

Faculty Istanbul TURKEY

Namık Serkan TAŞKIRAN, PhD., TUBITAK MAM, Kocaeli, TURKEY

Neslihan YUCA, PhD., ENWAIR Energy Technology Company, Istanbul TURKEY

Nesrin ALTINSOY, Prof.Dr., Istanbul Technical University, Energy Institute, Istanbul

TURKEY

Nesrin KOKEN, Associate Prof.Dr., Istanbul Technical University, Faculty of Arts and

Sciences Istanbul TURKEY

Nevin TAŞALTIN, Associate Prof.Dr., TÜBİTAK MAM, Kocaeli, TURKEY

Nilgün Baydoğan, Prof.Dr., Istanbul Technical University, Energy Institute Istanbul

TURKEY

Nilgün KIZILCAN, Prof.Dr., Istanbul Technical University, Faculty of Arts and Sciences

Istanbul TURKEY

Nilgün YAVUZ, Prof.Dr., Istanbul Technical University, Energy Institute, Istanbul

TURKEY

Noorhana YAHYA, Prof. Dr., Universiti Teknologi Petronas, MALAYSIA

Nuray UÇAR, Prof.Dr., University Faculty of Textile Technologies and Design, Istanbul

TURKEY

Ömer Berk BERKALP, Prof. Dr. Istanbul Technical University Faculty of Textile

Technologies and Design, Istanbul TURKEY

Ömer Suat TAŞKIN, Assist. Prof.Dr., Istanbul University, Marine Sciences and

Management Institute, Istanbul TURKEY

Pelin SARITEPE OTANSEV, Assist. Prof.Dr., Istanbul University,Science Faculty

Istanbul TURKEY

Page 9: POLYMER & NANOCOMPOSITES SYMPOSIUMpolen.itu.edu.tr/bitstream/11527/16709/4/22December2018.pdf · 978-975-561-501-1 Polymer & nanocomposites symposium, multi-scale self-healing nanocomposite

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Rüstem ARSLAN, Prof. Dr. Istanbul Technical University, Faculty of Aeronautics and

Astronautics, Istanbul TURKEY

Said SABBAGH, PhD., Istanbul Technical University, Energy Institute, Istanbul,

TURKEY

Sema AKYIL ERENTÜRK, Prof.Dr., Istanbul Technical University, Energy Institute,

Istanbul TURKEY

Sema MEMİŞ, Dr. TUBITAK MAM, Kocaeli, TURKEY

Senem ŞENTÜRK LÜLE, Assist. Prof.Dr., Istanbul Technical University, Energy

Institute, Istanbul TURKEY

Serço Serkis YEŞİLKAYA, Associate Prof. Dr., Yıldız Technical University, Faculty of

Arts and Sciences, Istanbul TURKEY

Sevilay HACIYAKUPOĞLU, Associate Prof.Dr., Istanbul Technical University, Energy

Institute, Istanbul TURKEY

Svetlana M. DANİLOVA-TRETİAK, PhD., A.V. Luikov Heat and Mass Transfer

Institute, the National Academy of Sciences of Belarus, Minsk,

REPUBLIC OF BELARUS

Şafak Nur ERTÜRK BOZKURTOĞLU, Assist. Prof.Dr, Faculty of Naval Architecture

and Ocean Engineering, Istanbul TURKEY

Şinasi EKİNCİ, Associate Prof. Dr., Çekmece Nuclear Research and Training Center,

TAEK, Istanbul TURKEY

Tuğrul HAKİOĞLU, Prof. Dr., Istanbul Technical University, Energy Institute, Istanbul,

TURKEY, Istanbul TURKEY

Utku Canci Matur, Assist. Prof.Dr., İstanbul Gedik University, Istanbul TURKEY

Üner ÇOLAK, Prof.Dr., Istanbul Technical University, Energy Institute, Istanbul

TURKEY

Liu ZIYUAN, PhD., Tokyo University, Tokyo, JAPAN

Zuhal ER, Assist. Prof.Dr. Istanbul Technical University, Faculty of Arts and Sciences,

Istanbul TURKEY

Page 10: POLYMER & NANOCOMPOSITES SYMPOSIUMpolen.itu.edu.tr/bitstream/11527/16709/4/22December2018.pdf · 978-975-561-501-1 Polymer & nanocomposites symposium, multi-scale self-healing nanocomposite

x

Organizing Committee

Abdulehad ÖZDEMİR, PhD. Candidate , TUBITAK MAM, Kocaeli, TURKEY

Ahmet GÜLTEKİN, Research Assistant, PhD. Candidate Istanbul Technical University,

Energy Institute, , Istanbul TURKEY

Birgül BENLİ, Associate Prof.Dr., Istanbul Technical University, Faculty of Mines,

Istanbul TURKEY

Bülent BÜYÜK, PhD, Istanbul Technical University, Energy Institute, Istanbul TURKEY

C.Fahir ARISOY, Associate Prof.Dr., Istanbul Technical University, Faculty of Chemical

and Metallurgical Engineering, Istanbul TURKEY

Cihat TAŞALTIN, PhD., TUBITAK MAM, Kocaeli, TURKEY

Cüneyt ARSLAN, Prof.Dr., Istanbul Technical University, Faculty of Chemical and

Metallurgical Engineering, Istanbul TURKEY

Doğukan ÇETİNER, Research Assistant, PhD Candidate Istanbul Technical University,

Faculty of Chemical and Metallurgical Engineering, Istanbul TURKEY

Emre YILMAZ, Research Assistant PhD. Candidate Istanbul Technical University,

Faculty of Chemical and Metallurgical Engineering, Istanbul TURKEY

Erkan BOZKURTOĞLU, Associate Prof.Dr., Istanbul Technical University, Faculty of

Mines, Istanbul TURKEY

Faiz MUHAFFEL, Research Assistant PhD. Candidate, Istanbul Technical University,

Faculty of Chemical and Metallurgical Engineering, Istanbul TURKEY

Filiz PİROĞLU, Associate Prof., Istanbul Technical University, Civil Engineering

Faculty, Istanbul TURKEY

Görkem MEMİŞOĞLU, PhD., VESTEL Electronics, İstanbul, TURKEY

Hande SESİGÜR, PhD., ŞİŞECAM, Çayırova, Kocaeli, TURKEY

Hasan GÖKÇE, PhD., Istanbul Technical University, Prof.Dr. Adnan Tekin Materials

Science and Production Technologies Applied Research Center (ATARC), Istanbul,

TURKEY

M. Sahip KIZILTAŞ, Specialist, PhD.. Candidate., Istanbul Technical University, Energy

Institute, Istanbul TURKEY

Maihemuti MAIMAITITUERSUN, PhD. Candidate, Istanbul Technical University,

Graduate School of Science Engineering and Technology, Istanbul TURKEY

Melis TÜRKER, East Marmara Development Agency, Kocaeli Support Office, Value

Chain Analyst, Istanbul TURKEY

Mustafa Serdar ŞALCI, GERSAN Elektrik Tic. ve San. A.Ş., Istanbul TURKEY

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xi

Murat CELEP, PhD., TÜBİTAK MAM Kocaeli, TURKEY

Namık Serkan TAŞKIRAN, TÜBİTAK MAM, Kocaeli, TURKEY

Nedim TÜRKMEN, PhD., TAI Turkish Aerospace Industries, Inc.

Neslihan YUCA, PhD., ENWAIR Energy Technology Company, Istanbul TURKEY

Nesrin KÖKEN, Associate Prof. Dr., Istanbul Technical University, Faculty of Arts and Sciences, Istanbul TURKEY

Nilgün BAYDOĞAN, Prof. Dr., Istanbul Technical University, Energy Institute, Istanbul TURKEY

Nilgün KIZILCAN, Prof.Dr., Istanbul Technical University, Faculty of Arts and Sciences, Istanbul TURKEY

Nursev ERDOĞAN, PhD. TAI - Turkish Aerospace Industries, Inc., Ankara, TURKEY

Onur TAZEGÜL, Research Assistant PhD. Candidate, Istanbul Technical

University, Faculty of Chemical and Metallurgical Engineering Istanbul

TURKEY

Osman ÜRPER, Research Assistant PhD. Candidate, Istanbul Technical University, Energy Institute, Istanbul TURKEY

Pelin SARITEPE OTANSEV, Assist. Prof.Dr., Istanbul University, Science Faculty, Istanbul TURKEY

Selim ERTÜRK, PhD., Istanbul Technical University, Prof.Dr. Adnan Tekin

Materials Science and Production Technologies Applied Research Center

(ATARC), Istanbul TURKEY

Sema MEMİŞ, PhD, TÜBİTAK MAM, Kocaeli, TURKEY

Serço Serkis YEŞİLKAYA, Assoc. Prof. Dr., Yıldız Technical University, Faculty of Arts and Sciences, Istanbul TURKEY

Songül ULAĞ, PhD. Candidate, Marmara University, Institute of Pure and Applied Sciences, Istanbul TURKEY

Şafak Nur ERTÜRK BOZKURTOĞLU, Assist. Prof.Dr. İTÜ Gemi İnşaatı ve Deniz Bilimleri Fakültesi, Istanbul TURKEY

Tayfun BEL, PhD., Istanbul Technical University, Prof.Dr. Adnan Tekin Materials

Science and Production Technologies Applied Research Center (ATARC), Istanbul TURKEY

Türkan DOĞAN, PhD. Candidate, Istanbul Technical University, Energy Institute, Istanbul TURKEY

Utku CANCİ MATUR, PhD., Assis.Prof., İstanbul Gedik Üniversitesi, Istanbul TURKEY

Yakup YÜREKTÜRK, Research Assistant PhD. Candidate, Istanbul Technical University, Faculty of Chemical and Metallurgical Engineering, Istanbul TURKEY

Yunus Emre DOĞAN, BSc. Candidate, Istanbul University, Science Faculty, Istanbul TURKEY

Zeynep CAMTAKAN, Specialist, PhD. Candidate., Istanbul Technical University, Energy Institute, Istanbul TURKEY

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Participant List

Abdulrahman ABDUL-HADI, PhD., University of Damascus, Damascus, SYRIA

Abdulehad ÖZDEMİR, PhD. Candidate, TUBITAK MAM, Kocaeli, TURKEY

Afza SHAFIE, PhD., Universiti Teknologi PETRONAS, MALAYSIA

Ahmet GÜLTEKİN, Research Assistant, PhD. Candidate Istanbul Technical

University, Energy Institute, Istanbul TURKEY

Ahmet Togo GIZ, Prof.Dr., Istanbul Technical University, Faculty of Arts and

Sciences Istanbul TURKEY

Ali BAYGELDİ, Head of Satellite Design and Integration Department, Republic of

Turkey Ministry of Transport Maritime Affairs and Communications, Directorate

General of Aeronautics and Space Technologies, Ankara, TURKEY

Ali Erdem EKEN PhD., ASELSAN, Electronics Industry and Trade, Inc., Ankara,

TURKEY

Andy AUGOUSTI, Prof.Dr., Kingston University, London, UNITED KINGDOM

Aref CEVAHİR, PhD., ŞİŞECAM, Research Center, ÇAYIROVA, KOCAELİ,

TURKEY

Ayben KİLİSLİOĞLU, Prof.Dr., Istanbul University, Engineering Faculty Istanbul

TURKEY

Ayça KARAİL, ASELSAN, Electronics Industry and Trade, Inc., Ankara, TURKEY

Aylin KARAHAN TOPRAKÇI, Assist. Prof.Dr., Yalova University Engineering

Faculty, Yalova, TURKEY

Barbara PIERSCIONEK, Prof. Dr., Nottingham Trent University, Nottingham,

UNITED KINGDOM

Beril TUĞRUL, Prof.Dr., Istanbul Technical University, Energy Institute, Istanbul,

TURKEY

Birgül BENLİ, Associate Prof.Dr., Istanbul Technical University, Faculty of Mines,

Istanbul TURKEY

Burak BARUTÇU, Assist. Prof.Dr. Istanbul Technical University, Energy Institute,

Istanbul TURKEY

Bülent BÜYÜK, PhD, Istanbul Technical University, Energy Institute

C.Fahir ARISOY, Associate Prof.Dr., Istanbul Technical University, Faculty of

Chemical and Metallurgical Engineering, Istanbul, TURKEY

Cevza CANDAN, Prof.Dr., Istanbul Technical University Faculty of Textile

Technologies and Design, Istanbul TURKEY

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Cihat TAŞALTIN, PhD., TÜBİTAK MAM, , Kocaeli, TURKEY

Cüneyt ARSLAN, Prof.Dr., Istanbul Technical University, Faculty of Chemical and

Metallurgical Engineering Istanbul, TURKEY

Doğukan ÇETİNER, Research Assistant, PhD Candidate Istanbul Technical

University, Faculty of Chemical and Metallurgical Engineering Istanbul, TURKEY

Elif ARICI BOGNER, Associate Prof.Dr., Istanbul Technical University, Energy

Institute, Istanbul, TURKEY

Emel ÖNDER KARAOĞLU, Prof.Dr., Istanbul Technical University Faculty of

Textile Technologies and Design, Istanbul TURKEY

Emine ÇOKGÖR, Prof.Dr., Istanbul Technical University, Civil Engineering Faculty

Istanbul TURKEY

Emine TEKİN, Associate Prof.Dr., TÜBİTAK MAM, Kocaeli, Turkey

Emre YILMAZ, Research Assistant PhD. Candidate Istanbul Technical University,

Faculty of Chemical and Metallurgical Engineering Istanbul, TURKEY

Erkan BOZKURTOĞLU, Associate Prof.Dr., Istanbul Technical University, Faculty

of Mines Istanbul, TURKEY

Esra GENCELİ, Assist. Prof.Dr., Istanbul Technical University, Civil Engineering

Faculty Istanbul TURKEY

Esra ÖZKAN ZAYİM, Prof.Dr., Istanbul Technical University, Faculty of Arts and

Sciences Istanbul TURKEY

Faiz MUHAFFEL, Research Assistant PhD. Candidate, Istanbul Technical University,

Faculty of Chemical and Metallurgical Engineering Istanbul, TURKEY

Filiz PİROĞLU, Associate Prof.Dr., Istanbul Technical University, Civil Engineering

Faculty Istanbul TURKEY

Fried MİKLOS, PhD., Eötvös Loránd University, Budapest, HUNGARY

Furkan YAZICI, BSc. Candidate, ENWAIR Energy Technology Company, Kocaeli

University, Engineering Faculty, Kocaeli, Turkey

Görkem MEMİŞOĞLU, PhD., VESTEL Electronics, Manisa, TURKEY

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Gülşah KAHRAMAN, PhD., ŞİŞECAM, Research Center, Çayırova,

Kocaeli, TURKEY

Hande SESİGÜR, PhD., ŞİŞECAM, Research Center, Çayırova,

Kocaeli, TURKEY

Hasan GÖKÇE, PhD., Istanbul Technical University, Prof.Dr. Adnan Tekin Materials

Science and Production Technologies Applied Research Center (ATARC) Istanbul

TURKEY

Hassan SOLEIMANI, Dr. Universiti Teknologi PETRONAS, MALAYSIA

Hülya CEBECİ, Associate Prof.Dr., Istanbul Technical University, Faculty of

Aeronautics and Astronautics Istanbul TURKEY

Hüseyin ÇİMENOĞLU, Prof.Dr., Istanbul Technical University, Faculty of Chemical

and Metallurgical Engineering Istanbul TURKEY

Hüseyin KIZIL, Associate Prof.Dr., Istanbul Technical University, Faculty of

Chemical and Metallurgical Engineering Istanbul TURKEY

İskender REYHANCAN, Prof.Dr., Istanbul Technical University, Energy Institute,

Istanbul, TURKEY Istanbul TURKEY

Kaiying WANG, Prof. Dr., University College of Southeast, NORWAY

Levent TRABZON, Prof.Dr., Istanbul Technical University, Engineering Faculty

Istanbul TURKEY

Liu ZIYUAN, PhD., Tokyo University, Tokyo, JAPAN

Lütfü ÖVEÇOĞLU, Prof.Dr., Istanbul Technical University, Faculty of Chemical and

Metallurgical Engineering Istanbul TURKEY

M. Sahip KIZILTAŞ, Specialist, PhD. Candidate., Istanbul Technical University,

Energy Institute Istanbul, TURKEY

Mahmut MUHEMMETTURSUN, PhD. Candidate, Istanbul Technical University,

Graduate School of Science Engineering and Technology, Istanbul, TURKEY

Mehmet Ali GÜRKAYNAK, Prof.Dr., İÜ Mühendislik Fakültesi, Istanbul TURKEY

Melis TÜRKER, East Marmara Development Agency, Kocaeli Support Office, Value

Chain Analyst KOCAELİ, TURKEY

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Murat CELEP, PhD., TUBITAK MAM, Kocaeli, TURKEY

Murat Ferhat DOĞDU, PhD. Candidate, ENWAIR Energy Technology Company,

Istanbul Technical University, Energy Institute, Istanbul, TURKEY

Mustafa BAKKAL, Associate Prof.Dr., Istanbul Technical University, Engineering

Faculty Istanbul TURKEY

Mustafa Serdar ŞALCI, GERSAN Elektrik Tic. ve San. A.Ş. Istanbul, TURKEY

Namık Serkan TAŞKIRAN, PhD., TUBITAK MAM, Kocaeli, TURKEY

Nedim TÜRKMEN, PhD., TAI Turkish Aerospace Industries, Inc.

Neslihan YUCA, PhD., ENWAIR Energy Technology Company,

Nesrin ALTINSOY, Prof.Dr., Istanbul Technical University, Energy Institute,

Istanbul, TURKEY, Istanbul TURKEY

Nesrin KOKEN, Associate Prof.Dr., Istanbul Technical University, Faculty of Arts

and Sciences Istanbul TURKEY

Nevin TAŞALTIN, Associate Prof.Dr., TÜBİTAK MAM, Kocaeli, TURKEY

Nilgün BAYDOĞAN, Prof.Dr., Istanbul Technical University, Energy Institute,

Istanbul, TURKEY

Nilgün KIZILCAN, Prof.Dr., Istanbul Technical University, Faculty of Arts and

Sciences Istanbul TURKEY

Nilgün YAVUZ, Prof.Dr., Istanbul Technical University, Energy Institute, Istanbul,

TURKEY Istanbul TURKEY

Noorhana YAHYA, Prof.Dr., Universiti Teknologi PETRONAS, MALAYSIA

Nuray UÇAR, Prof.Dr., University Faculty of Textile Technologies and Design,

Istanbul TURKEY

Nursev ERDOĞAN, PhD. TAI-Turkish Aerospace Industries, Inc., Ankara, TURKEY

Onur TAZEGÜL, Research Assistant PhD. Candidate, Istanbul Technical University,

Faculty of Chemical and Metallurgical Engineering Istanbul, TURKEY

Osman ÜRPER, Research Assistant PhD. Candidate, Istanbul Technical University,

Energy Institute Istanbul, TURKEY

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Ömer Berk BERKALP, Prof. Dr. Istanbul Technical University Faculty of Textile

Technologies and Design, Istanbul TURKEY

Ömer Suat TAŞKIN, Assist. Prof.Dr., Istanbul University, Marine Sciences and

Management Institute, Istanbul TURKEY

Pelin SARITEPE OTANSEV, Assist. Prof.Dr., Istanbul University, Science Faculty

Istanbul TURKEY

Rüstem ARSLAN, Prof. Dr. Istanbul Technical University, Faculty of Aeronautics

and Astronautics, Istanbul TURKEY

Said SABBAGH, PhD., Istanbul Technical University, Energy Institute, Istanbul,

TURKEY

Selim Dinçer, TAI - Turkish Aerospace Industries, Inc., Ankara, TURKEY

Selim ERTÜRK, PhD., Istanbul Technical University, Prof.Dr. Adnan Tekin Materials

Science and Production Technologies Applied Research Center (ATARC) Istanbul,

TURKEY

Sema AKYIL ERENTÜRK, Prof.Dr., Istanbul Technical University, Energy Institute,

Istanbul TURKEY

Sema MEMİŞ, PhD, TUBITAK MAM, Kocaeli, TURKEY

Senem ŞENTÜRK LÜLE, Assist. Prof.Dr., Istanbul Technical University, Energy

Institute, Istanbul, TURKEY Istanbul TURKEY

Serço Serkis YEŞİLKAYA, Associate Prof. Dr., Yıldız Technical University, Faculty

of Arts and Sciences, Istanbul TURKEY

Sevilay HACIYAKUPOĞLU, Associate Prof.Dr., Istanbul Technical University,

Energy Institute, Istanbul, TURKEY Istanbul TURKEY

Songül ULAĞ, PhD. Candidate, Marmara University, Institute of Pure and Applied

Sciences Istanbul, TURKEY

Svetlana M. DANİLOVA-TRETİAK, PhD., A.V. Luikov Heat and Mass Transfer

Institute, the National Academy of Sciences of Belarus, Minsk,

REPUBLIC OF BELARUS

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Şafak Nur ERTÜRK BOZKURTOĞLU, Assist. Prof.Dr, Faculty of Naval

Architecture and Ocean Engineering, Istanbul TURKEY

Tayfun BEL, PhD, Istanbul Technical University, Prof.Dr. Adnan Tekin Materials

Science and Production Technologies Applied Research Center (ATARC) Istanbul,

TURKEY

Tuğçe Köröğlu, MSc, Istanbul Technical University, Graduate School of Science

Engineering and Technology. Istanbul TURKEY

Tuğrul HAKİOĞLU, Prof. Dr., Istanbul Technical University, Energy Institute,

Istanbul TURKEY

Türkan DOĞAN, PhD. Candidate, Istanbul Technical University, Energy Institute

Istanbul, TURKEY

Utku CANCİ MATUR, Lecturer, PhD., İstanbul Gedik Üniversitesi

Üner ÇOLAK, Prof.Dr., Istanbul Technical University, Energy Institute, Istanbul

TURKEY

Yakup YÜREKTÜRK, Research Assistant PhD. Candidate, Istanbul Technical

University, Faculty of Chemical and Metallurgical Engineering Istanbul, TURKEY

Yunus Emre DOĞAN, BSc. Candidate, Istanbul University, Science Faculty Istanbul

TURKEY

Zeynep CAMTAKAN, Specialist, PhD. Candidate., Istanbul Technical University,

Energy Institute Istanbul, TURKEY

Zineb BENZAIT, PhD. Candidate, Istanbul Technical University, Graduate School of

Science Engineering and Technology, Istanbul, TURKEY

Zuhal ER, Assist. Prof.Dr. Istanbul Technical University, Faculty of Arts and Sciences

Istanbul TURKEY

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CONTENTS

PROGRAMME.........................................................................................................................1

ABSTRACTS............................................................................................................................6

LIST OF ORAL ABSTRACTS................................................................................................7

LIST OF POSTER ABSTRACTS...............................................................................10

O01

POLYMERIC NANOCOMPOSITES AND SONOCHEMISTRY...................................11 Prof. Dr. Ayben KİLİSLİOĞLU

O02

LIGHT INDUCED SYNTHESIS OF NANOCOMPOSIT..............................................12 Prof. Dr. Yusuf YAĞCI

O03

NANOPARTIKÜL (GÜMÜŞ, TİTANYUM), CNT VE İLETKEN POLIMER (PANI)

KATKILI NANOLİF, MİKROLİF VE UYGULAMA ALANLARI……………………....13 Prof. Dr. Nuray UÇAR

O04

COMPOSITE & HYBRID LIGHTWEIGHT DESIGN SOLUTIONS IN AUTOMOTIVE

INDUSTRY.............................................................................................................................14 Prof. Dr. Mustafa BAKKAL

O05

KOMPOZİT MALZEMELER VE UYGULAMALARI........................................................15 Dr. Ali Erdem EKEN

O06

BİYOMALZEME, BİYOMEKANİK VE BİYOELEKTRONİK MÜKEMMELİYET

MERKEZİ...............................................................................................................................16 Dr. CihatTAŞALTIN

O07

RADYASYON ZIRHI AMAÇLI NANOKOMPOZİTLER..................................................17 Prof.Dr. Beril TUĞRUL

O08

ELEKTRODÖNDÜRME YÖNTEMİYLE HAZIRLANMIŞ ALOE VERA KATKILI

TİTANYUM OKSİT NANOLİFLERİN ANTİBAKTERİYEL ETKİLERİ..........................18 Osman ÜRPER, Tuğçe KÖROĞLU, Prof. Dr. Esra ÖZKAN ZAYİM

O09

EFFECT OF POROSITY IN SNO2 NANOFIBERS AS ANODE MATERIALS FOR

SODIUM-ION BATTERIES……………………………………………………………..…19 Doç. Dr. Hüseyin KIZIL

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O10

IMPROVING GLASS FIBER-POLYMER INTERFACIAL BOND STRENGTH USING

NANO-CLAY PLATELETS..................................................................................................20 Gülşah KAHRAMAN

*, Dr. Aref CEVAHİR, Şener YILMAZ, Prof. Selim KUSEFOĞLU

Dr. Vedat SEDİROĞLU

O11

NANOTECHNOLOGY IN AEROSPACE APPLICATIONS……………………...……....22 Dr. Nursev ERDOĞAN, Selim DİNÇER

O12

MECHANICAL PROPERTIES OF NANO-PARTICLES REINFORCED

POLYURETHANE NANO-COMPOSITES..........................................................................23 Zineb BENZAIT MSc., Prof. Dr. Levent TRABZON

O13

SYNTHESIS OF POLYANILINE-DOPED BORIC ACID /CARBON NANOTUBE

COMPOSITES AND ITS THERMAL PROPERTIES…………………………………….25 Ayşenur Örs, Prof. Dr. Nilgün YAVUZ

O14

FABRICATION AND CHARACTERIZATION OF ULTRA-HIGH PERFORMANCE

CONDUCTIVE NANOCOMPOSITE FILAMENTS FOR ADDITIVE

MANUFACTURING..............................................................................................................27 Özge KAYNAN, Alptekin YILDIZ, Elif ÖZDEN-YENİGÜN, Prof. Dr. Hülya CEBECİ

O15

APPLICATIONS OF POLYMER AND COMPOSITE MATERIALS IN CONSUMER

ELECTRONICS....……………………………………………………….………………….28 Dr. Gorkem MEMISOGLU, Burhan GULBAHAR

O16

YİYECEK ENDÜSTRİSİ ATIK/ATIKSULARINDAN MİKROBİYAL BİYOPOLİMER

VE BİYOPLASTİK ÜRETİMİ...............................................................................................29 Prof. Dr. Emine ÇOKGÖR

O17

A BRIEF OVERVIEW TO SELF HEALING MATERIALS WITH THE

CONCEPTUAL AND THE ORETICAL PHYSICS ASPECTS …………………………...31 Prof. Dr. Tugrul HAKIOGLU

O18

İLETKEN POLİMER KOMPOZİTLER VE UYGULAMALARI……………………....…32 Yard.Doç.Dr. Hatice Aylin KARAHAN TOPRAKÇI, Yard.Doç.Dr. Ozan TOPRAKÇI

O19

NANOKOMPOZİTLERİN KULLANIM ALANLARI.........................................................33 Yard.Doç.Dr. Pelin SARITEPE OTANSEV

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O20

CLAY MODIFIED NANO COMPOSITE KETONIC RESINS AS FIRE RETARDANT

POLYOL FOR FOAM POLYURETHANE…………………………………………...…....34 Prof. Dr. Nilgün KIZILCAN

O21

PREPARATION OF POROUS POLYMERIC MATERIALS AND THEIR SELF

HEALING AND ENVIRONMENTAL APPLICATIONS…………………….…….….….36 Assist.Prof.Dr. Ömer Suat TAŞKIN

O22

KENDİNİ ÇOK YÖNLÜ ONARABİLEN NANOKOMPOZİTLER…………….………...38 Dr. Tayfun BEL, Prof.Dr. Cüneyt ARSLAN, Prof.Dr. Nilgün BAYDOĞAN

O23

ZnO NANO-PARÇACIKLARI VE NANO-KOMPOSİTLERİNİN OLED

UYGULAMALARI................................................................................................................39 Doç. Dr. Emine Tekin, Rifat KAÇAR, Dr. Selin P. MUCUR, Dr. Tülay Aslı TUMAY, Dr. Salih DABAK

O24

MARMARA BÖLGESİ KOMPOZİT MALZEME DEĞER ZİNCİRİ ANALİZİ................41 Melis TÜRKER

O25

ELECTRICAL PROPERTIES OF A SINGLE NANOFIBER OF SEPIOLITE CLAY BY

ATOMIC FORCE MICROSCOPY CONDUCTIVY MODE……………………...……….42 Assoc.Prof.Dr. Birgül BENLİ

O26

KOMPOZİT MALZEMELER İLE TASARIM, ANALİZ, OPTİMİZASYON

İMALAT VE KALİTE KONTROL İÇİN GÜNCEL YAZILIM PROGRAMLARINA

BAKIŞ.....................................................................................................................................43 Assist.Prof.Dr. Zuhal ER

O27

POLİMER VE NANOKOMPOZİTLERDE POZİTRON ANNİHİLASYON

SPEKTROSKOPİSİ VE ANİ GAMA AKTİVASYON ANALİZİ........................................44

Doç.Dr. Sevilay HACIYAKUPOĞLU

O28

USABILITY OF POLYMERIC NANOCOMPOSITE ADSORBENTS IN NUCLEAR

WASTE MANAGEMENT………………………………………………………………….45 Prof. Dr. Sema AKYIL ERENTÜRK

O29

İNCE FİLM NANOKOMPOZİT İNCE BOŞLUKLU (HOLLOW FİBER)

NANOFİLTRASYON MEMBRANLARIN ÜRETİMİ VE İÇME SUYU ARITIMI

AÇISINDA DEĞERLENDİRİLMESİ....................................................................................47 Yard.Doç.Dr. Esra ATEŞ GENCELİ, Araş.Gör. Reyhan ŞENGÜR-TAŞDEMİR,

Araş.Gör. Melike ÜRPER, Araş.Gör. Türker TÜRKEN, Prof.Dr. İsmail Koyuncu

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O30

Lİ-İYON BATARYA UYGULAMALARİNDA Sİ/C NANOKOMPOZİTLERİN

KULLANİMİ..........................................................................................................................49 Dr. Neslihan YUCA

O31

PROPERTIES OF THE IRRADIATED GREEN PVC AND ITSAPPLICATIONS in

INDUSTRY ANDENVIRONMENT......................................................................................50 Dr. Said SABBAGH

O32

NANOSELÜLOZİK ELYAF TAKVİYESİ İLE YENİLENEBİLİR KAYNAKLI POLİMER

NANOKOMPOZİTLERİN GELİŞTİRİLMESİ..................................................51 Dr. Aysun EKİNCİ, Yard.Doç.Dr. Gülay BAYRAMOĞLU

O33

NÜKLEER GÜVENLİK VE EMNİYET AÇISINDAN NANOKOMPOZİTLERİN

OPERASYONEL UYGULAMALARI..................................................................................53 Yük.Müh. Zeynep CAMTAKAN

O34

MEKANOKİMYASAL SENTEZLEME VE MEKANİK ALAŞIMLAMA YÖNTEMLERİ

İLE DÜŞÜK SICAKLIK KOŞULLARINDA HİBRİT KOMPOZİTLERİN

ÜRETİMİ................................................................................................................................54 Dr. Hasan GÖKÇE

O35

İNCE FILM GÜNEŞ HÜCRELERI VE POLIMER NANOKOMPOZIT TAŞIYICILAR.......................................................................................................................55

Dr. Öğretim Üyesi Utku CANCİ MATUR, Prof.Dr. Nilgün BAYDOĞAN

O36

KÖPÜK POLİÜRETANDA YANMAZLIK ÖZELLİĞİ SAĞLAYACAK MİKRO

KÜRELERİN SENTEZİ VE KULLANIMI...........................................................................57

Doç.Dr. Nesrin KÖKEN, Görkem ÜLKÜ

O37

POLİMER VE NANOKOMPOZİT MALZEMELERİN İTÜ TRIGA MARK-II

REAKTÖRÜ UYGULAMALARI..........................................................................................59

Yük.Müh. M. Sahip KIZILTAŞ

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P01

CU2ZNSNS4 THIN FILMS DEPOSITED BY DIP COATING TECHNIQUE FOR SOLAR

CELLS CONTAINING POLYMER SUBSTRATES............................................................61

MSc. Charif TAMIN, Prof.Dr.Mohamed ADNANE, Prof.Dr.Nilgun BAYDOGAN,

Prof.Dr.Denis CHAUMONT

P02

GRAPHENE NANOPLATELETS FOR POLYMER NANOCOMPOSITES………….….62

MSc. Maihemuti MAIMAITITUERSUN, Prof.Dr.Ahmet Togo GIZ, Prof.Dr.Nilgun BAYDOGAN

P03

SYNTHESIS OF FLEXIBLE POLY (IMIDE SILOXANE) BLOCK

COPOLYMERS………………………………………………………………………...…...63

Turkan DOGAN, Assoc.Prof.Dr. Nesrin KOKEN, Prof.Dr.Nilgun BAYDOGAN

P04

HYDROPHOBIC PROPERTIES OF ZnO COATED NANOCOMPOSITES......................64

Ar.Gör. Osman URPER, Prof.Dr.Nilgun BAYDOGAN

P05

THE EFFECT OF BUBBLES ON POLY(METHYLMETHACRYLATE)

POLYMER..............................................................................................................................66

H. CAKAR, Dr. T. BEL, Prof.Dr. N. YAHYA, Prof.Dr. C. ARSLAN, Prof.Dr. N. BAYDOGAN

P06

POLİMER KOMPOZİT MALZEMER; BOR VE BORÜR ESASLI POLİMER KOMPOZİT

MALZEMELER......................................................................................................................67

Dr. Selim ERTÜRK

P07

APPLICATIONS OF MULTIWALL CARBON NANOTUBES AT POLYMER

MATRIX....................................................................................................................... .........68

MSc. Songul ULAG, Prof.Dr. Nilgun BAYDOGAN

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Programme

Location: Istanbul Technical University (ITU) ARI 6 Seminar Hall

February 21, 2018; Wednesday PROGRAM

SEMINAR: 9:00-9:25

Presentation on MULTI-SCALE SELF-HEALING NANOCOMPOSITE SHIELDING

MATERIAL, TÜBİTAK 1001 Project with No:115R017

Prof.Dr. Nilgün Baydoğan, Project Coordinator

Istanbul Technical University (ITU), Energy Institute,

SYMPOSIUM

Symposium Program – 1. Day Opening Statement: 9:25-9:30

Chair: Prof.Dr. Sema AKYIL ERENTÜRK, Istanbul Technical University, Energy Institute

Ayben KİLİSLİOĞLU,

Prof. Dr.

Istanbul University,

Engineering Faculty 9:30 – 9:45

Yusuf YAĞCI

Prof. Dr.

Istanbul Technical University,

Faculty of Arts and Sciences 9:45-10:00

Nuray UÇAR,

Prof. Dr.

Istanbul Technical University Faculty of

Textile Technologies and Design 10:00 - 10:15

Mustafa BAKKAL,

Associate Prof.Dr.

Istanbul Technical University,

Engineering Faculty 10:15 - 10:30

Ali Erdem EKEN

PhD.

ASELSAN

Electronics Industry and Trade, Inc. 10:30 - 10:45

Cihat TAŞALTIN, PhD. TUBITAK MAM 10:45 - 11:00

Beril TUĞRUL,

Prof. Dr.

Istanbul Technical University,

Energy Institute 11:00 - 11:15

Coffee Break: 11.15 - 11.30

Chair: Prof. Dr. Hüseyin ÇİMENOĞLU, Istanbul Technical University, Faculty of

Chemical and Metallurgical Engineering

Esra ÖZKAN ZAYİM

Prof. Dr.

Istanbul Technical University,

Faculty of Arts and Sciences 11:30 - 11:45

Hüseyin KIZIL

Associate Prof. Dr.

Istanbul Technical University,

Faculty of Chemical and Metallurgical

Engineering

11:45 - 12:00

Gülşah KAHRAMAN ŞİŞECAM 12:00-12:15

Nursev ERDOĞAN,

PhD.

TAI- Turkish Aerospace Industries, Inc. 12:15-12:30

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Location: ITU Energy Institute Prof. Dr. Nejat Aybers Seminar Hall

February 21, 2018; Wednesday

Lunch Time 12:30– 14:00

Chair: Prof.Dr. Nilgün BAYDOĞAN

Istanbul Technical University, Energy Institute

Levent TRABZON

Prof. Dr.

Istanbul Technical University,

Engineering Faculty 14:00 - 14:15

Nilgün YAVUZ

Prof.Dr.

Istanbul Technical University,

Energy Institute 14:15 - 14:30

Hülya CEBECİ

Associate Prof. Dr.

Istanbul Technical University,

Faculty of Aeronautics and Astronautics 14:30 - 14:45

Namık Serkan TAŞKIRAN

PhD. TÜBİTAK MAM 14:45 - 15:00

Görkem MEMİŞOĞLU,

PhD. VESTEL Electronics 15:00 - 15:15

Coffee Break: 15:15 - 15:45

Discussions & Think Tank Questions

16:45-17:30

Closing Symposium - Day One

Chair: Prof.Dr. Nilgün YAVUZ

Istanbul Technical University, Energy Institute

Emine ÇOKGÖR

Prof. Dr.

Istanbul Technical University,

Civil Engineering Faculty

15:45 - 16:00

Tuğrul HAKİOĞLU

Prof. Dr.

Istanbul Technical University,

Energy Institute

16:00 - 16:15

Aylin KARAHAN TOPRAKÇI

Assist. Prof. Dr.

Yalova University,

Engineering Faculty 16:15-16:30

Pelin SARITEPE OTANSEV

Assist. Prof. Dr.

Istanbul University,

Science Faculty 16:30-16:45

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Location: Istanbul Technical University (ITU) ARI 6 Seminar Hall

Symposium Program – 2. Day

February 22, 2018; Thursday

Chair: Assoc. Prof. Dr. Sevilay HACIYAKUPOĞLU,

Istanbul Technical University, Energy Institute

Nilgün KIZILCAN

Prof. Dr.

Istanbul Technical University,

Faculty of Arts and Sciences

9:45 - 10:00

Ömer Suat TAŞKIN

Assist. Prof.Dr.

Istanbul University,

Marine Sciences and Management

Institute

10:00 - 10:15

Tayfun BEL

PhD.

Istanbul Technical University,

Prof.Dr. Adnan Tekin Materials Science

and Production Technologies Applied

Research Center (ATARC)

10:15 - 10:30

Emine TEKİN, Assoc. Prof.Dr TÜBİTAK MAM 10:30 - 10:45

Melis TÜRKER

East Marmara Development Agency,

Kocaeli Support Office, Value Chain

Analyst.

10:45-11:00

Coffee Break: 11.15 - 11.30

Chair: Prof. Dr. Beril TUĞRUL Istanbul Technical University, Energy Institute

Birgül BENLİ

Associate Prof. Dr.

Istanbul Technical University,

Faculty of Mines

11:30 -11:45

Zuhal ER

Assist. Prof. Dr.

Istanbul Technical University,

Faculty of Arts and Sciences

11:45 12:00

Sevilay HACIYAKUPOĞLU

Associate Prof. Dr.

Istanbul Technical University,

Energy Institute

12:00-12:15

Sema AKYIL ERENTÜRK

Prof. Dr.

Istanbul Technical University,

Energy Institute

12:15-12:30

Lunch Time 12:30– 14:00

Chair: Prof. Dr. İskender REYHANCAN, Istanbul Technical University, Energy Institute

Esra GENCELİ Assist. Prof. Dr. ITU, Civil Engineering Faculty 14:00-14:15

Neslihan YUCA, PhD. ENWAIR Energy Technology Company, 14:15-14:30

Said SABBAGH, Dr. Lecturer ITU, Energy Institute 14:30-14:45

Utku CANCİ MATUR,

Assist. Prof. Dr.

Istanbul Gedik University 14:45-15:00

Zeynep CAMTAKAN

Specialist, PhD. Candidate

ITU, Energy Institute 15:00-15:15

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Location: Istanbul Technical University (ITU) ARI 6 Seminar Hall

Symposium Program – 2. Day, February 22, 2018; Thursday

Coffee Break: 15:15 - 15:45

Chair: Dr. Neslihan YUCA,

ENWAIR Energy Technology Company

Hasan GÖKÇE,

PhD.

Istanbul Technical University,

Prof.Dr. Adnan Tekin Materials Science and

Production Technologies Applied Research

Center (ATARC)

15:45 - 16:00

Selim ERTÜRK

PhD.

Istanbul Technical University,

Prof.Dr. Adnan Tekin Materials Science and

Production Technologies Applied Research

Center (ATARC)

16:00 - 16:15

Aysun EKİNCİ,

PhD. Candidate

Yalova University

Polymer Engineering 16:15-16:30

Nesrin KOKEN

Associate.Prof. Dr.

Istanbul Technical University,

Faculty of Arts and Sciences 16:30-16:45

M. Sahip KIZILTAŞ

Specialist, PhD. Candidate

Istanbul Technical University,

Energy Institute 16:45-17.00

Discussions & Think Tank Questions

17:00-17:30

Closing Symposium - Day Two

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Poster Presentations February 21, 2018 Saat: 10:00-16:45

Charif TAMIN

PhD. Candidate

Université des Sciences et de la Technologie

d'Oran Mohamed Boudiaf, Oran, ALGERIA

Türkan DOGAN

PhD. Candidate

Istanbul Technical University, Energy Institute

Mahmut MUHEMMETTURSUN

PhD. Candidate

Istanbul Technical University, Graduate School of

Science Engineering and Technology

Songül ULAG

PhD. Candidate

Marmara University,

Institute of Pure and Applied Sciences

Hanife ÇAKAR

MSc.

Istanbul Technical University, Energy Institute

Osman URPER

Research Assistant, PhD. Candidate

Istanbul Technical University, Energy Institute

Selim ERTURK, PhD. Istanbul Technical University, Prof.Dr. Adnan Tekin

Materials Science and Production Technologies

Applied Research Center (ATARC)

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ABSTRACTS

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LIST of ORAL ABSTRACTS

O01

“Polimer Nanokompozitler ve Sonokimya”

O02

"Işık ve nanopolimerik malzemeler"

O03

“Nano gümüş, titanyum, CNT ve iletken polimer katkılı nanolif, mikrolif ve uygulama

alanları”

O04

"Otomotiv İçin Kompozit ve Hibrit Hafifletme Çözümleri"

O05

“Kompozit Malzemeler ve Uygulamaları”

O06

“Bioteknoloji Mükemmeliyet Merkezindeki Çalışmalar”

O07

“Radyasyon Zırhı Amaçlı Nanokompozitler”

O08

“Electrospun titanium dioxide nanofibers with natural material”

O09

“Na ion pilleri için SnO2 nanofiber anot malzemesi geliştirilmesi”

O10

“Improving Glass Fiber-Polymer Interfacial Bond Strength using Nano-Clay

Platelets”

O11

“Nanokompozitler ve Havacılık Uygulamaları”

O12

“Mechanical Properties of Nano-Particles Reinforced PU Polymer Nano-Composites”

O13

“Synthesis Of Polyaniline-Doped Boric Acid /Carbon Nanotube Composites and Its

Thermal Propertıes”

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O14

“Fabrication and Characterization of Ultra-High Performance Conductive

Nanocomposite Filaments For Additive Manufacturing”

O15

“Tüketici Elektroniğinde Polimer ve Nanokompozit Malzemelerin Önemi ve Uygulama

Örnekleri”

O16

“Yiyecek Endüstrisi Atık/Atıksularından Mikrobiyal Biyopolimer ve Biyoplastik Üretimi

O17

“A Brief Overview to Self Healing Materials With the Conceptual and the Oretical

Physics Aspects”

O18

“İletken Polimer Kompozitler ve Uygulamaları”

O19

"Nanokompozitlerin kullanım alanları"

O20

"Clay Modified Nano Composite Ketonic Resins as Fire Feterdant Polyol for Foam

Polyurethane"

O21

“Gözenekli Polimerik Malzemelerin Hazırlanması ve Kendi Kendini Onarabilme ve

Çevre Uygulamaları”

O22

“Kendini Çok Yönlü Onarabilen Nanokompozitler”

O23

“ZnO Nanoparçacıkları ve Nanokompositlerinin OLED Uygulamaları”

O24

“Marmara Bölgesi Kompozit Malzeme Değer Zinciri Analizi”

O25

“Force - Distance spectroscopy, Nanoindentation, Conductive - AFM -

Electrostatic Force Microscopy (EFM)” - “AFM ile tek bir sepiyolit nanofiberinin yüzey

yükü, mekanik ve elektriksel özelliklerinin incelenmesi”

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O26

“Design, Analysis, Optimization, Production With Composite Materials and

Overview of Current Software Programs for Quality Control”

"Kompozit malzemeler ile tasarım, analiz, optimizasyon, imalat ve kalite kontrol için

güncel yazılım programlarına bakış"

O27

“Polimer ve Nanokompozitlerde Pozitron Annihilasyon Spektroskopisi ve Ani Gama

Aktivasyon Analizi”

O28

"Nükleer Atık Yönetiminde Polimerik Nano-Kompozit Adsorbanların Kullanımı"

O29

“Membran Teknolojilerinin Çevre Mühendisliğindeki Uygulamalari”

O30

“Li-İyon Batarya Uygulamalarinda Si/C Nanokompozitlerin Kullanimi”

O31

“Properties of the irradiated green PVC and its applications in industry and

environment”

O32

“Nanoselülozik elyaf takviyesi ile yenilenebilir kaynaklı polimer nanokompozitlerin

geliştirilmesi”

O33

“Nükleer Güvenlik ve Emniyet Açısından Nanokompozitlerin Operasyonel

Uygulamaları”

O34

"Mekanokimyasal sentezleme ve mekanik alaşımlama yöntemleri ile düşük sıcaklık

koşullarında hibrit kompozitlerin üretimi"

O35

“İnce Film Güneş Hücreleri ve Polimer Nanokompozit Taşıyıcılar”

O36

“Köpük Poliüretanda Yanmazlık Özelliği Sağlayacak Mikro Kürelerin Sentezi ve

Kullanımı”

O37

“Polimer ve Nanokompozit Malzemelerin İTÜ TRIGA MarII Reaktörü Uygulamaları”

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LIST of POSTER ABSTRACTS

P01

“Cu2ZnSnS4 thin films deposited by dip coating technique for solar cells containing

polymer substrates”

P02

“Graphene Nanoplatelets for Polymer Nanocomposites”

P03

“Synthesis of Flexible Poly(imide siloxane) Block Copolymers”

P04

“Hydrophobic Properties of ZnO Coated Nanocomposites

P05

“The Effect of Bubbles on Poly(Methylmethacrylate) Polymer”

P06

“Polimer Kompozit Malzemer; Bor ve Borür Esaslı Polimer Kompozit Malzemeler”

P07

“Applications of Multiwall Carbon Nanotubes at Polymer Matrix”

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O01

POLYMERIC NANOCOMPOSITES AND SONOCHEMISTRY

Prof. Dr. Ayben KILISLIOGLU

Istanbul University, Engineering Faculty

[email protected]

ABSTRACT

Novel antibacterial nanomaterials were prepared under ultrasonic irradiation. In these

experimental studies we observed the triggering effect of acoustic energy that caused the

formation of new chemical products with the reactions that cannot be accomplished by

conventional methods.

• Preparation of active metals by reduction of metal salts

• Sonochemical synthesis of particles

• Modification of surface morphology and particle size with inter-particle collisions at

high velocity

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O02

LIGHT INDUCED SYNTHESIS OF NANOCOMPOSITES

Prof. Dr. Yusuf YAGCI

Istanbul Technical University, Faculty of Arts and Sciences

[email protected]

ABSTRACT

Nano-structured materials can successfully be combined with polymers. Various mehods

including photoinduced electron transfer, polymerizations, click reaction and intercalation

processses allow in situ preparation. These materials exhibit enhanced or new properties.

They find applications in elecronics, biomaterials, high performance materials, etc.

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O03

NANOPARTIKÜL (GÜMÜŞ, TİTANYUM), CNT VE İLETKEN POLIMER (PANI)

KATKILI NANOLİF, MİKROLİF VE UYGULAMA ALANLARI

Prof. Dr. Nuray UÇAR

İstanbul Teknik Üniversitesi, tekstil Mühendisliği Bölümü, Taksim, İstanbul, TÜRKİYE

[email protected]

ÖZET

Kompozit nanolif veya mikrolifler başta tekstil ve teknik tekstil olmak üzere pekçok kullanım

alanına sahiptir. Bu noktada pekçok nano partiküller ve fonksiyonel polimerler katkı maddesi

şeklinde yapı içerisine katılarak, mevcut matriks polimerin özelliği ve fonksiyonelliği

geliştirilmektedir. Nao veya mikro lifi, mukavemet ve modülüs yönünde güçlendirme, güç

tutuşur kılma, antistatik malzeme haline getirme, elektromanyetik kalkanlama özelliğini

kazandırma, antimikrobiyel özellik kazandırma, kendikendini temizleme özelliğini

kazandırma vb. ana hedeflerden birkaçını oluşturmaktadır. Bu makalede gümüş nitrat tuzu

(AgNO3), Titanyumdioksit (TiO2), Karbonnanotüp (CNT) nano partikülleri ve iletken

polimer polianilin (PANI) ile katkılanmış, fonksiyonelliği geliştirilmiş Poliakrilonitril (PAN)

nanolif ve mikro liflerin üretimi ve özellikleri üzerine çalışma sonuçları sunulacaktır

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O04

COMPOSITE & HYBRID LIGHTWEIGHT DESIGN SOLUTIONS IN

AUTOMOTIVE INDUSTRY

Prof. Dr. Mustafa BAKKAL

Istanbul Technical University, Engineering Faculty

[email protected]

ABSTRACT

Informations about the researches:

Low Carbon Emission due to environmental issues

Lighter / Cheaper / Aesthetic / Easy Manufacturing

New Design-New Analysis Methods

Mercedes-Benz Turk Truck and Bus R&D Centers

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O05

KOMPOZİT MALZEMELER VE UYGULAMALARI

Dr. Ali Erdem EKEN

ASELSAN A.Ş. Savunma Sistem Teknolojileri (SST) Sektör Başkanlığı, Mekanik

Teknolojileri Tasarım Müdürlüğü, Ankara,

[email protected]

ABSTRACT

Malzeme teknolojilerindeki gelişmelerin yeni endüstriler yarattığı ve yaşantımızı yeniden

tanımladığı bilinmektedir. Savunma sanayiinde daha yüksek performansta, maliyet etkin ve

güvenilirliği yüksek yeni malzemelere her zaman ihtiyaç duyulmaktadır. Bu çalışmada da

gelecekte savunma sanayiine yön verebilecek kompozit malzeme teknolojileri ve uygulama

alanları değerlendirilmiştir.

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O06

BİYOMALZEME, BİYOMEKANİK VE BİYOELEKTRONİK

MÜKEMMELİYET MERKEZİ

Dr. Cihat TAŞALTIN

TÜBITAK MAM, Gebze, Kocaeli, TÜRKİYE

[email protected]

ÖZET

TUBITAK MAM Biyomalzeme, Biyomekanik ve Biyoelektronik Mükemmeliyet Merkezi’da

biyomalzeme, biyomekanik ve biyoelektronik konularında çeşitli araştırmalar ve deneyler

yapılmaktadır. Bu, araştırma ve çalışmalar,

Türkiye Sağlık harcamaları

Tıbbi Cihaz & malzeme Alanında Mevcut

Durum –TÜRKİYE-Dünya

3B Mükemmeliyet Merkezi

Mevcut durum

1003 -Erken Evre Akciğer Kanseri Tanısı ve Taramalarında Nefes Havasındaki Uçucu

Belirteçleri Tespit Edebilen Kimyasal Sensör Tabanlı Prototip Cihaz Geliştirilmesi

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O07

RADYASYON ZIRHI AMAÇLI NANOKOMPOZİTLER

Prof.Dr. Beril TUĞRUL

İstanbul Teknik Üniversitesi – Enerji Enstitüsü Ayazağa Kampüsü – 34469, Maslak –

İSTANBUL

[email protected]

ÖZET

Nükleer enerjinin barışcıl amaçlı kullanımında önemli bir husus nükleer güvenlik olup,

çalışılan radyasyon tipine uygun ve radyasyon şiddetine karşı yeterli nitelikte radyasyon zırhı

kullanılarak ilgili nükleer uygulama faaliyetlerinin yapılması esas olmaktadır. Farklı

radyasyon tipleri için esas itibariyle farklı radyasyon zırhı elemanlarının kullanılması söz

konusu olmaktadır.

Bu çalışmada, öncelikle girici radyasyona karşı nanoteknoloji bağlamında geliştirilen

radyasyon zırhı elemanlar hakkında bilgi verilmektedir. Takiben, özgün bir çalışma

bağlamında geliştirilmiş özel bir kompozit malzeme olan mikro ve nano boyutlu TiB2 katkılı

B4C-SiC kompozit malzeme tanıtılmakta ve mikro ve nano boyutta katkı elemanın

kullanılmasıyla imal edilen ve ileri teknoloji nükleer reaktörlerde zırh elemanı olarak

kullanılabileceği düşünülen radyasyon zırh malzemesinin girici radyasyonu zırhlama özelliği

yapılan deneysel çalışmaların sonuçları verilerek irdelenmektedir.

Anahtar Kelimeler: Girici radyasyon, Kompozit malzemeler, Nanomalzemeler,

Radyasyon Zırh malzemesi,

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O08

ELEKTRODÖNDÜRME YÖNTEMİYLE HAZIRLANMIŞ ALOE VERA

KATKILI TİTANYUM OKSİT NANOLİFLERİN

ANTİBAKTERİYEL ETKİLERİ

Osman ÜRPER1, Tuğçe KÖROĞLU

2, Prof. Dr. Esra ÖZKAN ZAYİM

3*

1Energy Institute, Istanbul Technical University, Maslak, Istanbul, 34469, Turkey

2Department of Nanoscience and Nanoengineering, Istanbul Technical University, Maslak,

Istanbul, 34469, Turkey

3Department of Physics, Faculty of Sciences and Letters, Istanbul Technical University,

Maslak, 80626 Istanbul Turkey

[email protected]

ÖZET

Titanium dioxide (TiO2) nanomalzemeler; toksik olmamaları, çevre dostu özellikleri,

fotokatalitik yapıları ve antibakteriyel gibi geniş yelpazedeki bu önemli özellikleri, onları

önemli bir araştırma konusu haline getirmiştir. Bu kadar avantajlı özelliklerine rağmen,

antibakteriyel uygulama halen çok geniş bir araştırma sahasına sahiptir. Bu çalışmada

özellikle TiO2’lerin anti bakteriyel özelliklerini daha aktif kullanmak ve geliştirmek amacıyla,

aloe vera jeli katkılaması yapıldı. Aloe Vera içerdiği çeşitli organik yapılar ve onların

iyileştiri özelliği sayesinde antibakteriyel etkiyi hem daha iyi bir seviyeye getirmiş hemde

iyileştirme sürecini hızlandırmıştır. Aloe Vera eklenmesi ile TiO2 yapılı nanolifler

uygulandıkları alandaki enfeksiyon oranını azaltmış, ayrıca çok önemli oranda antibakteriyel

etkiyi arttırmıştır. Aloe Vera eklenmiş TiO2 nanfiberlerin katkısız TiO2 nanoliflere göre 5 kat

daha etkin olduğu tespit edilmiştir

Anahtar Kelimeler: AloeVera, elektrodöndürme, TiO2, nanolif, PVP.

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O09

EFFECT OF POROSITY IN SNO2 NANOFIBERS AS ANODE MATERIALS FOR

SODIUM-ION BATTERIES

Doç. Dr. Hüseyin KIZIL

Istanbul Technical University, Faculty of Chemical and Metallurgical Engineering

[email protected]

ABSTRACT

Informations about the researches:

Increasing the porosity proved to be beneficial for electrochemical performance.

Highly porous structure compensated the volume expansion and led to better capacity

retention.

Porosity enabled the electrolyte to diffuse better into the material due to increased

surface area.

However, cycling performances of NF-252 and NF-50 were very similar, indicating

that there is a saturation point for the improvement with increasing the porosity.

Increased surface area of nanotubes hindered its ability to perform as well as

nanofibers, due to large SEI formation on its surface.

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O10

IMPROVING GLASS FIBER-POLYMER INTERFACIAL BOND STRENGTH

USING NANO-CLAY PLATELETS

Gülşah KAHRAMAN*, Dr. Aref CEVAHİR, Şener YILMAZ,

Prof. Selim KUSEFOĞLU, Dr. Vedat Sediroğlu

Atmospheric Coating Technologies Management, Türkiye Şişe ve Cam Fabrikaları A,Ş.

Science &Technology Center

Cumhuriyet Mah. Şişecam Yolu Sokak, No.2 41400 Gebze –Kocaeli Turkey

E-mail address: [email protected]

Phone: +90-850-2060468, Fax: +90-262-6782453

ABSTRACT

Glass-reinforced polymer composites made with thermoplastic polymers are prefered over

thermosets by virtue of their recyclability. The broader use of thermoplastics and the pressing

need for products with higher added value accelerated the development efforts for innovative

glass fiber products based on Polypropylene(PP) and Polyamide(PA) polymers.

Towards this goal, montmorillonite clay, which was intercalated with a suitable quaternary

ammonium salt was incorporated in a glass fiber sizing. This sizing was then used to prepare

glass fibers by the conventional process. The expectation is that the clay additives shall

exfoliate to form nano platelets, induced by the shear stress of the extruder when mixed with

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PP or PA during the part manufacturing process. This way, clay platelets with 5-15 nm

thickness form a very thin nano-composite film at the thermoplastic/glass fiber interface.

While many examples of nanoclay reinforced thermoplastics can be found in the literature,

this is the first work that places the nano clay reinforcement specifically at the fiber-matrix

interface.

We provide evidence for improved mechanical strength due the extra surface area and bonds

established between the matrix and the fiber phases once nano-clay has been introduced. The

presence of nano-sized clay at the interface also serves to improve the flame retardancy

characteristics of the final composite.

Keywords: Nanoclay, composite, thermoplastics, glass fiber, glass-polymer interface

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O11

NANOTECHNOLOGY IN AEROSPACE APPLICATIONS

Dr. Nursev ERDOĞAN, Selim DİNÇER

1Advanced Materials Process and Energy Technology Center, Innovation Department,

Turkish Aerospace Industries, Inc., Ankara, 06980, Turkey

[email protected] ;

ABSTRACT

Recently, micro and nanotechnologies are already being used in various fields of industry and

attracting much attention in defense and aerospace industries. One of the best motivation for

research and development in aerospace industry is decreasing weight and increasing strength

of components. In line with this objective, research for nanotechnology is accelerating.

Besides strength improvement, several functionalities may be introduced to aerospace

platforms using micro and nanotechnologies. Some of these added functionalities are

corrosion resistivity, low RF and IR observabilities, anti/de-icing properties, self-

inspection/healing ability, and providing EMI/EMC requirements. Furthermore, research in

micro- and nanoscale raises consciousness in materials science, characterization as well as

processing. However, the requirements for aerospace industry are quite strict. Numerous

qualification tests must be conducted before certification. Nanotechnology has already been

approved for proof of concept and increasing amount of collaborations between research

centers and companies will accelerate nanotechnology to reach maturity level in near future.

Key Words: Aerospace, nanotechnology, multi-functionality, technology readiness level.

*Corresponding Author: Nursev Erdoğan, PhD, email: [email protected], Tel: 90

312 811 1800, Fax: 90 312 811 1425.

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O12

MECHANICAL PROPERTIES OF NANO-PARTICLES REINFORCED

POLYURETHANE NANO-COMPOSITES

Zineb BENZAIT MSc., Prof. Dr. Levent TRABZON

Istanbul Technical University, Engineering Faculty

[email protected]

ABSTRACT

Incorporation of nanoparticles can significantly improve the desired properties of the

polymeric nanocomposites. One-dimensional carbon nanotubes (CNTs) as an interesting

additive has demonstrated outstanding mechanical, thermal and electrical properties. SiO2

(silica) nanoparticles have been widely used with polymers to enhance the heat resistance,

radiation resistance, mechanical and electrical properties. Polymeric foams such as

Polyurethane (PU) are a group of lightweight materials, which are suitable for a wide range of

applications such as electrical and thermal insulation, shock and sound absorbents. PU foams

are obtained by the chemical reaction of a polyol or mix of polyol, water and other processing

additives with an isocyanate.

In this work, multi-walled carbon nanotubes (MWCNT) were functionalized by hydrogen

peroxide (H2O2). In the next step, MWCNTs or silica nanoparticles were added to polyol and

were mixed for 15 min. Then, Isocyanate was added to the composition, which was mixed

and poured into the wooden mold. Nanocomposites with various content of MWCNTs, silica

nanoparticles were fabricated up to 1 wt %. Molded nanocomposites were cut in

turningmachine with a thickness of 10 mm and test samples were prepared with CNC

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machine according to ISO 1926 for tensile tests of rigid cellular plastics and ASTM 6110 for

Charpy impact tests.

The aim of this work is investigating mechanical properties of the nanocomposites with

various contents of MWCNTs and silica nanoparticles such as 0.25, 0.5, 0.75 and 1 wt %.

Tensile, Charpy and hardness tests were carried out and their results were discussed. In

addition, the morphology of the nanocomposites was investigated using scanning electron

microscopy (SEM). As result, the neat PU presents the lowest tensile strength, whereas the

highest strength can be seen in the nanocomposites containing 0.25 wt% Silica-A with 33wt%

improvement, but further Silica-A addition decreased the strength of the PU/Silica-A foam. In

addition, this phenomenon can be seen in adding of Silica-B and MWCNT into the polymer

matrix, which adding 0.25 wt% of Silica-B and MWCNT increased the tensile strength about

27% and 16%, respectively. In order to fabricate nanocomposites with higher CNT content

and prevent the appearance of large agglomerations, hybrid nanocomposites were fabricated,

which could lessen large agglomerations. Hybrid PU/SiO2/MWCNT nanocomposite with the

constant overall content of 0.75 wt% showed higher tensile strength and hardness than either

of nanoparticles at this content, which approves a synergistic effect between MWCNTs and

silica nanoparticles.

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O13

SYNTHESIS OF POLYANILINE-DOPED BORIC ACID /CARBON NANOTUBE

COMPOSITES AND ITS THERMAL PROPERTIES

Ayşenur Örs, Prof. Dr. Nilgün YAVUZ*

Istanbul Technical University, Energy Institute, 34 469, Maslak, Istanbul, Turkey

[email protected]

ABSTRACT

Carbon nanotubes (CNTs) have been a focus of considerable research since the first

discovered by Lijima [1]. Their remarkable properties, such as mechanical strength,

flexibility, chemical stability, electrical and thermal conductivity behavior have made them

very promising nanomaterials for new applications in chemistry and physics, particularly for

the development of new nanotechnologies and devices [2]. In recent years, incorporating

CNTs into polymeric materials and delivering the properties of these materials to a

processable and synergistic effect have promoted a great interest in developing

multifunctional carbon nanotube composites with other materials [3]. These functional CNT

based composites show eminent prospects and opportunities for new applications in a variety

of areas. Although recent studies show a unique compatibility between polymers and CNT,

the nature of CNT composites remains unclear.

In this study, carbon nanotubes were synthesized by the fluidized-bed CVD synthesis of

acetylene (C2H2) on a magnesium oxide (MgO) powder impregnated with an iron nitrate

(Fe(NO3)3•9H2O) solution. The synthesis parameters were selected as: the synthesis

temperatures of 500 and 800°C, the iron content in the precursor of 5% and the synthesis time

of 30 min. The synthesized material was purified by using HCl and then characterized by

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transmission electron microscopy, Raman spectroscopy and thermogravimetric analysis. The

purified samples which synthesized temperature of 500 and 800°C consist of mostly multi

walled and single walled carbon nanotubes, respectively. After synthesis of CNTs, the

polyaninine-doped boric acid (PANI-B)/CNT composites were prepared by coagulation

method. Fourier transform infrared (FT-IR) were used to characterize the PANI-B/CNTs

composites. Thermal stability and glass transition temperature (Tg) were measured by

thermogravimetry (TG) and differential scanning calorimetry (DSC), respectively. The TG

and derivative thermogravimetry (DTG) curves indicated that with augment of CNTs content,

the thermal stability of PANI-B/CNTs composites increased continuously. While, Tg

increased and then decreased with the CNTs content increasing from 0 to 20 mass %.

*Corresponding author

References

[1] S. Lijima: Nature 354 (1991) 56.

[2] J.N.R. Rao and A.K. Cheetham: J.Mater. Chem. 11 (2001) 2887.

[3] W. Khan, R. Sharma, P. Saini: In Book: Carbon Nanotubes Chapter 1 (2016) 45.

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O14

FABRICATION AND CHARACTERIZATION OF ULTRA-HIGH PERFORMANCE

CONDUCTIVE NANOCOMPOSITE FILAMENTS FOR ADDITIVE

MANUFACTURING

MSc. Özge KAYNAN, Ph.D. Candidate. Alptekin YILDIZ,

Assist. Prof.Dr. Elif ÖZDEN-YENİGÜN, Prof. Dr. Hülya CEBECİ*

ITU Aerospace Research Center, Maslak, Istanbul

[email protected]

ABSTRACT

Additive manufacturing (AM), also known as three-dimensional printing (3DP), is a method

that creates parts by material extrusion from the bottom-up one cross-sectional layer at a time.

This manufacturing technology provides fast, flexible, easy production of 3D objects which

can be either simple or complex geometries where CNC may not be an option. Also, 3DP

eliminates the additional post-processes for finishing. Ultra-high performance thermoplastic

filaments are promising raw materials to produce proper structural and/or interior applications

for aerospace by using 3D Printers. In this study, nanocomposite filaments were fabricated by

high-performance thermoplastic matrix polyetherimide (PEI) with multi-walled carbon

nanotubes (MWNTs) at various weight fractions. The nanocomposite filaments are produced

by twin and single screw extrusion processes respectively without using any solvents or

additives. As a result, MWNTs/PEI filaments demonstrated two-fold improvement in tensile

strength and enhancement in electrical conductivity compared to neat PEI filaments. With this

multifunctionality, MWNTs/PEI nanocomposite filaments are a promising candidate for

challenging in aerospace applications.

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O15

APPLICATIONS OF POLYMER AND COMPOSITE MATERIALS IN CONSUMER

ELECTRONICS

Dr. Gorkem MEMISOGLU1, Burhan GULBAHAR

2

1Vestel Electronics Inc., Organize Sanayi Bolgesi, 45030, Manisa, TurkeyE-mail:

[email protected]

2Department of Electrical and Electronics Engineering and Applied Research Center of

Technology Products, Ozyegin University, 34794, Istanbul, TurkeyE-mail:

[email protected]

ABSTRACT

At the beginning of the 1900's, modern synthetic plastics and in the middle of that century,

polymer composites began to be developed. Over the last few decades, advanced composite

materials have expanded their application areas, and their tendency to improve new product

development and manufacturing technology has increased. Depending on the application area,

polymer composites can be selected according to their properties, such as nanoscale or

microscale dimensions, strength, flexibility, lightness, resistance to environmental conditions

(such as; humidity, sun rays), impact resistance, hardness, thermal expansion coefficients,

cracking-, fracture-, tensile- or bending- strengths. Thanks to properties of composite

materials, they are utilized in diverse set of application areas. Today, engineering, space,

aerospace, automotive and consumer electronics sectors are the major shareholders in the use

of advanced engineering materials. In this study, basic fundamentals and application areas

related to the use of polymer matrix composites in consumer electronics are presented and

discussed.

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O16

YİYECEK ENDÜSTRİSİ ATIK/ATIKSULARINDAN MİKROBİYAL

BİYOPOLİMER VE BİYOPLASTİK ÜRETİMİ

Prof. Dr. Emine ÇOKGÖR

Istanbul Teknik Üniversitesi, Çevre Mühendisliği Bölümü

[email protected]

ÖZET

Günümüzde sentetik polimer üretimi değerli kaynakların tüketilmesine neden olduğu gibi

ciddi çevresel ve sağlık problemlerini beraberinde getirmektedir. Son yıllarda üretimi ve

kullanımı yaygınlaşan biyobozunur karakterdeki biyoplastikler kimyasal sentez veya

mikrobiyal proseslerle üretilebilmektedir. Biyobozunur bir mikrobiyal biyopolimer olan

polihidroksialkanoatların (PHA) üretim maliyetinin önemli bir kısmını hammadde olarak

kullanılan sentetik organik madde oluşturmaktadır. Bu nedenle besi maddesi olarak ucuz

alternatif kaynakların (karbon içeriği yüksek evsel ve endüstriyel olan atıksular/atıklar)

kullanımı ön plana çıkmakta ve uluslararası ölçekte teşvik edilmektedir. Karbonca zengin

endüstriyel/evsel atıksulardan organik madde giderimini yenilikçi yaklaşımlar arasında

yeralan PHA üretimiyle birleştirmek, çevresel ve ekonomik açıdan sürdürülebilir olmaktadır.

İstanbul Kalkınma Ajansı 2015 yılı Yenilikçi İstanbul Mali Destek Programı kapsamında

desteklenen TR10/15/YNK/0045 kodlu “Uygulamalı Biyopolimer ve Biyoplastik Üretim

Teknolojileri Araştırma Merkezi (UBÜTAM)” İTÜ İnşaat Fakültesi’nde 2016 yılında

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kurulmuştur. Kurulan merkez sayesinde gerçekleştirilen işbirlikleri vasıtasıyla 1003-KMY-

ANAK-2017-1 Çağrı Kodlu, Yenilikçi Mühendislik Plastiklerinin Endüstriyel Uygulamalar

İçin Geliştirilmesi ve Üretim Süreçlerinin İyileştirilmesi” başlıklı TÜBİTAK 1003 - Öncelikli

Alanlar Ar-Ge Projeleri Destekleme Programı’nda “Yüksek Tuzlulukta Endüstriyel

Fermentasyon Atıksularının Biyopolimer Üretim Potansiyelinin Değerlendirilmesi (2018-

2020)” isimli proje TÜBİTAK tarafından desteklenmiş olup, proje çalışmaları halihazırda

merkezimizde sürdürülmektedir.

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O17

A BRIEF OVERVIEW TO SELF HEALING MATERIALS WITH

THE CONCEPTUAL AND THE ORETICAL PHYSICS ASPECTS

KENDİNİ İYİLEŞTİREN YAPILARA KAVRAMSAL VE KURAMSAL FİZİK

BOYUTUNDAN KISA BİR BAKIŞ

Prof. Dr. Tuğrul HAKİOĞLU

Istanbul Technical University, Energy Institute

[email protected]

ABSTRACT

The physics of fractal growth provides a great leverage of understanding the microscopic

phenomena taking place in the nanocomposite and self healing materials. In this talk, we

concentrated on the determination of the fractal dimensions in such systems. The knowledge

of the fractal dimension is extremely important during the engineering of these systems since

it provides an estimation of the self healing volume that internal fractures cause. This

information can then be used in the distribution of the nanoparticle size and shape.

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O18

İLETKEN POLİMER KOMPOZİTLER VE UYGULAMALARI

Dr. Öğr. Üyesi Hatice Aylin KARAHAN TOPRAKÇI*,

Dr. Öğr. Üyesi Ozan TOPRAKÇI

Yalova Üniversitesi Polimer Mühendisliği Bölümü

[email protected]

ÖZET

Polimerler; hafif ve buna rağmen güçlü bir yapıya sahip olması, dayanıklılığı, tokluğunun iyi

olması, uygun maliyet ve bakım giderlerine sahip olması, ısıl izolasyon özelliklerinin yüksek

olması gibi birçok özelliklerinden dolayı yaygın bir şekilde kullanılmaktadır. Tüm bu olumlu

özelliklerinin yanında polimerler elektrik akımını iletmemektedir. Polimerlerin iletken hale

getirilmesi için bazı seçenekler mevcuttur. Bunlardan en yaygını iletken dolgu maddesi

içeren polimer kompozitlerin hazırlanmasıdır. Bu kompozitler elektriksel iletkenlik gerektiren

her türlü elektronik parçada, esnek elektrotlarda, giyilebilir elektroniklerde, iletken

kaplamalarda,, elektromanyetik kalkanlama uygulamalarında, enerji depolama sistemlerinde

ve sensörlerde (biosensörler, kimyasal sensörler, kapasitif sensörler, piezorezistif sensörler

v.s). kullanılmaktadır. Bu çalışmada karbon nanolifi içeren poli(vinil klorür) esaslı

kompozitlerin morfolojik, elektriksel ve elektro-mekenik özellikleri incelenmiştir. Elde

ediilen sonuçlara göre kullanılan polimer, dolgu özellikleri ve test koşullarının elektro-

mekanik özelliklere etkisi olduğu gözlenmiştir.

Anahtar Kelimeler: Esnek iletken kompozitler, karbon nanolifleri, piezorezistif sensörler

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O19

NANOKOMPOZİTLERİN KULLANIM ALANLARI

Dr. Öğr. Üyesi Pelin SARITEPE OTANSEV

Istanbul University, Science Faculty

[email protected]

ÖZET

20. yüzyılın ikinci yarısından itibaren tekniklerin hızla gelişmesi sonucu, yeryüzünde mevcut

olan ana malzemelerin özellikleri ihtiyaçları karşılamaya yeterli olmamış ve farklı arayışlar

başlamıştır. Bu nedenle hem ekonomik hem daha yüksek mukavemetli ve hem de çok hafif

malzemelerin oluşturulması için çalışmalar yapılmış ve kompozit malzemeler geliştirilmiştir.

Kompozit malzemeler uçak sanayi, savunma sanayi, enerji sektörü, elektronik sanayi, inşaat,

maden, tıp, ilaç sanayi, bio mühendislik, nükleer tıp olmak üzere pek çok alanda yaygın

olarak kullanılmaktadır.

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O20

CLAY MODIFIED NANO COMPOSITE KETONIC RESINS AS FIRE RETARDANT

POLYOL FOR FOAM POLYURETHANE

Prof. Dr. Nilgün KIZILCAN

Istanbul Technical University, Faculty of Science, Department of Chemistry, 34469-Maslak,

Istanbul, Turkey

[email protected]

ABSTRACT

In this study, in situ modified cyclohexanone formaldehyde resin (CFR) was prepared from

clay (montmorillonite/MMT) and sepiolite in the presence of base catalyst. Different clay

contents (from 0,5 to 5 wt%) were used to produce clay modified nanocomposite ketonic

resins (MM-CFR and Sep.-CFR). The polymeric nanocomposite material prepared by this

method is directly synthesised in one step. These nanocomposites were characterized with

Fourier Transform Infrared Spectroscopy (FTIR-ATR), Nuclear Magnetic Resonance

Spectroscopy (NMR), X-ray Diffractometer (XRD) for structural analysis, Differential

Scanning Calorimetry (DSC) and Thermogravimetric Analyzer (TGA) for thermal analysis.

The obtained samples were also characterised morphologically by Scanning Electron

Microscope (SEM). Then, clay modified nanocomposite resins were used for the synthesis of

fire resistant polyurethane foam.

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References

1. Kızılcan, N.; Akar, A. J. Appl. Polym Sci. 2005, 98, 97.

2. Kızılcan, N. and Mermutlu, M. J. Appl. Polym.Sci., 2014, 131(6), 2506-2517.

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O21

PREPARATION OF POROUS POLYMERIC MATERIALS AND

THEIR SELF HEALING AND ENVIRONMENTAL APPLICATIONS

GÖZENEKLİ POLİMERİK MALZEMELERİN HAZIRLANMASI VE

KENDİ KENDİNİ ONARABİLME VE ÇEVRE UYGULAMALARI

Assist.Prof.Dr. Omer Suat TAŞKIN

Istanbul University, Marine Sciences and Management Institute

[email protected]

ABSTRACT

Many solid and powder materials both natural (stones, soils, minerals, etc.) and manufactured

(catalysts, cement, pharmaceuticals, metal oxides, ceramics, carbons, zeolites, etc.) contain a

certain void volume of empty space. This is distributed within the solid mass in the form of

pores, cavities, and cracks of various shapes and sizes. The total sum of the void volume is

called the POROSITY. This study presents some information on natural and manufactured

materials with porosity.

In this study, we investigated the ability of microporous polymers as adsorbent for removal of

heavy metal salts from aqueous solutions. The designed Schiff based network (SNW) with

high specific surface area was synthesized at 180°C for 3 days followed by freeze-drying

process. The porous structure of the material was confirmed by SEM analysis and CO2

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adsorption/desorption studies at 77.3 K. The role of pH and contact time was examined and

the highest adsorption capacities. Reusability of the system was also demonstrated by

applying four cycles without any significant loss of activity.

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O22

KENDİNİ ÇOK YÖNLÜ ONARABİLEN NANOKOMPOZİTLER

1 Dr. Tayfun BEL,

1Prof.Dr. Cüneyt ARSLAN,

2Prof.Dr. Nilgün BAYDOĞAN

1 İstanbul Teknik Üniversitesi, Prof.Dr. Adnan Tekin Malzeme Bilimleri ve Üretim

Teknolojileri Uygulama Araştırma Merkezi 34469 Maslak, İstanbul.

2 İstanbul Teknik Üniversitesi, Enerji Enstitüsü Ayazağa Kampüsü, 34469, Maslak, İstanbul

[email protected]

ÖZET

Atom Transfer Radikal Polimerizasyonu (ATRP) yöntemi kullanılarak canlı PMMA yapı elde

edilmesi amaçlanmıştır. PMMA (Polimetil metakrilat) polimere kendini onarma özelliği

kazandırmak amacıyla, polimer solisyonu içine mikro küreler eklenmiştir. Formaldehyd

reçine duvarlı mikro kürelerlerin içi, kendini onarma sıvısı olarak kullanılan, glycidyl

methacrylate dolu olarak üretilmiştir. PMMA solüsyonuna eklenerek, kompozitin mekanik

özellikleri değerlendirilmiştir. Mekanik hasar ardından oluşan, kendini onarma işlemi

sonrasında, yapının mekanik performansındaki değişim incelenmiştir. PMMA yapıya glycidyl

methacrylate dolu mikrokürelerin eklenmesinin polimer kompozit yapının mekanik

özelliklerini geliştirdiği tespit edilmiştir.

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O23

ZnO NANO-PARÇACIKLARI VE NANO-KOMPOSİTLERİNİN

OLED UYGULAMALARI

Doç. Dr. Emine Tekin*, Rifat KAÇAR, Dr. Selin P. MUCUR,

Dr. Tülay Aslı TUMAY, Dr. Salih DABAK

TÜBİTAK MAM Malzeme Enstitüsü, Gebze, Kocaeli

[email protected]

ÖZET

OLED genel olarak Ca, Al gibi düşük iş fonksiyonu olan metal katot tabakası ve şeffaf anot

tabakası (ITO) arasına organik katmanların kaplanmasıyla elde edilen ve elektrotlar arasına

voltaj uygulandığında ışık veren aygıtlardır. OLED ekran uygulamalarında genelde evrik

OLED yapısı kullanılır. Evrik OLED yapısında Ca, PEDOT:PSS gibi kararlılığa olumsuz

etkileyen malzemeler kullanılmaz. ITO katot olarak, metal elektrot (Au, Ag, Al) anot olarak

görev yapar. Yani yük hareketi tersine dönmektedir. Bu nedenle e- enjeksiyonunu arttırmak

için genelde ZnO elektron iletim katmanı olarak kullanılır. Bu çalışmada ZnO

nanoparçacıklarının sentezinde öncelikle farklı çözücülerin etkisi araştırılmıştır. Yapılan

deneylerde, kullanılan çözücülerin hem ZnO yapısı hem de OLED performansı üzerine

etkileri olduğunu görülmüştür.

Daha sonra ZnO nanoparçacıklarının stabilitesini arttırmak ve film morfolojisini iyileştirmek

amacıyla dallanmış Polietilenimin (PEI) polimeri ile nanokompositler (NC) hazırlanmış ve

elektron iletim tabakası olarak kullanılmıştır. Eloktrostatik kuvvetlerle ZnO yüzeyine tutunan

PEI polimerinin oluşturduğu dipol etkileşimler neticesinde parçacıklar kümeleşmiyor ve daha

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kararlı olabiliyorlar. Kırmızı, mavi, yeşil ışık veren polimerler seçilerek evrik NC katmanı

içeren OLED üretimi gerçekleştirilmiş ve aygıt performansı üzerindeki etkilerinin

incelenmiştir. Sonuç olarak film oluşturabilme kabiliyeti artması, etkili e- iletimi ve boşluk

engelleme karakteristiği sayesinde yüksek OLED verim ve parıltı değerleri elde edilmiştir.

(Yürütülen çalışmaların bir kısmı TÜBİTAK 1007 (113G035), proje desteğiyle

gerçekleştirilmiştir)

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O24

MARMARA BÖLGESİ KOMPOZİT MALZEME DEĞER ZİNCİRİ ANALİZİ

Melis TÜRKER

East Marmara Development Agency, Kocaeli Support Office, Value Chain Analyst

[email protected]

ÖZET

“Marmara Bölgesi Kompozit Malzeme Değer Zinciri Analizi” başlıklı çalışmada

Micheal Porter’ın metodolojisi kullanılarak Marmara Bölgesi’nde kompozit malzeme değer

zinciri analizi yapılmıştır. Bu kapsamda değer zincirinin önemli sayılan aktörlerinden

20 tanesi ile mülakatlar gerçekleştirilmiştir. Derinlemesine mülakatlardan, ulusal ve

uluslararası raporlardan, resmi internet sitelerinden elde edilen veriler Porter’ın

“Küme Haritası, Stratejik Segmentasyon, 5 Güç Analizi ve Elmas Modeli” kullanılarak

sentezlenmiştir. Kompozit malzeme aktörlerinden oluşan çalışma grupları ile tespit edilen

sorunlara yönelik ortaya çıkarılan yeni ve rekabetçi segmentler uyarınca projeler

hazırlanmıştır. Yapılan araştırmalar neticesinde “Marmara Bölgesi Kompozit Malzeme Küme

Raporu ve Endüstri Raporu” oluşturulmuştur.

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O25

ELECTRICAL PROPERTIES OF A SINGLE NANOFIBER OF SEPIOLITE CLAY

BY ATOMIC FORCE MICROSCOPY CONDUCTIVY MODE

Assoc.Prof.Dr. Birgül BENLİ

aIstanbul Technical University, Mining Faculty, Mineral Processing Engineering, Maslak,

34469, Istanbul, Turkey

ABSTRACT

Sepiolite is a fibrous type of clay consists of hydrated magnesium silicates. After sufficiently

liberated and modified with metal ions such as Ag+ and Cu

2+, sepiolite can be used for the

potential of producing antimicrobial and conducting fillers for several applications such as

medicals, next-generation drugs, sensor and active implantable devices. In this study,

electrical conductivity measurements on a single sepiolite nanofiber are investigated by AFM

conductivity modes (I-AFM) and electrostatic force microscopy (EFM). According to their

adsorption isotherms, optimum metal uptakes of the beneficiated fibers were determined as 50

mg/g of Ag+ and 80 mg/g of Cu

2+. The results show that the electrons were transferred rapidly

to the surface of silver loaded fibers compared to the copper ones. However, there are no

electrical properties seen on raw sepiolite which is expected. Finally, we compared the

electrical properties with antibacterial properties of the fibers and provide comparative

understandings of how antibacterial fillers behave in biodegradable innovative clay thin films,

coatings and their applications.

Keywords: AFM, electrical conductivity, antibacterial clay, sepiolite

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O26

OVERVIEW of CURRENT SOFTWARE PROGRAMS for

DESIGN, ANALYSIS, OPTIMIZATION, PRODUCTION and

QUALITY CONTROL with COMPOSITE MATERIALS

KOMPOZİT MALZEMELER İLE

TASARIM, ANALİZ, OPTİMİZASYON, İMALAT VE KALİTE KONTROL İÇİN

GÜNCEL YAZILIM PROGRAMLARINA BAKIŞ

Assist.Prof.Dr. Zuhal ER

Istanbul Technical University, Faculty of Arts and Sciences, Maslak,34469, Istanbul, Turkey

[email protected]

ABSTRACT

There are several software programs and tools for the analysis of composites. These computer

programs and tools service the several opportunities to understand and precious of

composites’ behaviour. All the computer opportunities are constructed via programming

languages. Comparison of software opportunities and the languages were held in this study.

Furthermore, results of my own code for the user interface application in windows O/S were

presented.

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O27

POLİMER VE NANOKOMPOZİTLERDE

POZİTRON ANNİHİLASYON SPEKTROSKOPİSİ VE

ANİ GAMA AKTİVASYON ANALİZİ

Doç.Dr. Sevilay HACIYAKUPOĞLU

Istanbul Technical University, Energy Institute Maslak,34469, Istanbul, Turkey

[email protected]

ÖZET

Ani Gama Aktivasyon Analizi (Prompt Gama Activation Analysis, PGAA) , Bilimsel ve

teknolojik gelişmeler, yeni analitik yöntemlere duyulan gereksinim, Hızlı sonuç alınan,

elemental seçiciliği ve duyarlılığı yüksek olan nükleer yöntemlerin öne çıkması, Nükleer

yöntemlerde genellikle kullanılan girici radyasyonun yalnızca yüzeylerin değil, tüm

malzemenin incelenmesine olanak vermesi nedenleri ile önemli bir analiz yöntemidir.

PGAA yöntemi, nötron aktivasyon analiz yöntemine ilaveten kimyasal analiz için elverişli

olan nükleer yöntemlerden biridir. PGAA nötron kaynakları kullanılarak geliştirilmiş olsa da,

genellikle nükleer reaktör tesislerinde yer alır. PGAA malzemelerin incelenmesinde, tıpta

teşhiste, jeolojik araştırmalarda yerinde analizde kullanılır. Bu bildiride, polimer ve

nanokompozitde PGAA uygulamaları belirtilmiştir.

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O28

USABILITY OF POLYMERIC NANOCOMPOSITE ADSORBENTS IN NUCLEAR

WASTE MANAGEMENT

Prof. Dr. Sema AKYIL ERENTÜRK

Istanbul Technical University, Energy Institute, 34469 Maslak-Istanbul / TURKEY

[email protected]

ABSTRACT

The long-lived radionuclides in radioactive waste have been considered to be dangerous

pollutants, and their migration with groundwater is strongly affected by adsorption on the

geologic materials. Many inorganic and organic adsorbents have been used for the treatment

of radioactive and industrial wastes, even though they have some limits for extensive

application. The composite adsorbents are a special class of adsorbents developed to improve

processes of separation, concentration or removal of metal ions from solutions. They have

attracted attention as adsorbent materials in recent years.

This work aims to investigate the ability of the polymeric nanocomposite adsorbent prepared

by mixing of polyacrylonitrile (PAN) and clinoptilolite to remove UO2, Th, 226

Ra and 210

Po

from aqueous solutions testing the influence of specific process parameters such as initial

concentration, pH, contact time and temperature. The composite adsorbent has been prepared

from inorganic adsorbent, a natural zeolite clinoptilolite, as an active component and

polyacrylonitrile (PAN) as a binding polymer. The adsorption behaviour of uranium,

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thorium, radium and polonium from aqueous solutions by polymeric nanocomposite

adsorbent has been investigated by a column technique. The uranium and thorium were

determined spectrophotometrically using Arsenazo III method as complexing agent at 665 nm

against reagent blank, employing Shimadzu UV–vis 260 Spectrophotometer. 226

Ra and 210

Po

were counted using ZnS(Ag) scintillation alpha counter (Eberline, SAC-4 model). The rapid

removal of U, Th, 210

Po and 226

Ra from aqueous solutions with quite high adsorption yield

above 90% using an efficient composite adsorbent was performed in a very short span of

time. The thermodynamic parameters such as free energy (G), enthalpy of adsorption (H)

and entropy (S) were found for each radionuclides. These parameters indicate that

adsorption is exothermic and spontaneous for 210

Po and 226

Ra and endothermic for U(VI),

Th(IV) ions. Change in activation enthalpy (H), free energy of adsorption (G) and entropy

(S) reveals the spontaneous and endothermic nature of adsorption process.

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O29

İNCE FİLM NANOKOMPOZİT İNCE BOŞLUKLU (HOLLOW FİBER)

NANOFİLTRASYON MEMBRANLARIN ÜRETİMİ VE İÇME SUYU

ARITIMI AÇISINDA DEĞERLENDİRİLMESİ

Dr. Öğr. Üyesi Esra ATEŞ GENCELİb,c*

, Ar. Gör. Reyhan ŞENGÜR-TAŞDEMİRa,b

,

Ar.Gör. Melike ÜRPERb,c

, Türker TÜRKENb,c

, Prof.Dr. İsmail Koyuncub,c

aİstanbul Teknik Üniversitesi, Nanobilim Nanomühendislik Programı, 34469, Maslak,

İstanbul, Türkiye

bProf. Dr. Dincer Topacık Ulusal Membran Teknolojileri Araştırma Merkezi, MEMTEK,

İstanbul Teknik Üniversitesi, 34469, İstanbul, Türkiye

cİstanbul Teknik Üniversitesi, Çevre Mühendisliği Bölümü, 34469, Maslak, İstanbul, Türkiye

ÖZET

Nanofiltrasyon membranların içme ve atıksu arıtımında kullanımı gün geçtikçe

yaygınlaşmaktadır. Bunun nedeni standartlara getirilen sınırlamaların artması ile

konvansiyonel sistemlerin bu sınırlamaları sağlamakta zorlanması ve membran prosesler ile

elde edilen suyunyüksek çıkış suyu kalitesine sahip olmasıdır. Nanoteknolojideki gelişmeler

ile nanokompozit malzemelerin membran üretiminde kullanılması, membranların geçirgenlik,

seçicilik ve mekanik dayanım özelliklerinde olumlu gelişmeler yaşanmasına neden olmuştur.

Nanofiltrasyon membranlar, ultrafiltrasyon membranlar ile ters osmoz membranlar arasında

yer almaktadır. Nanofiltrasyon membranlar düşük enerji tüketimi ve yüksek akılar nedeni ile

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su arıtımında tercih edilmektedirler. Bu çalışmanın amacı arayüzey polimerizasyonu ile

üretilen nanokompozit katkılı ince film kaplama (İFNK) ince boşluklu (hollow fiber)

nanofiltrasyon membranların üretimi, karakterizasyonu ve organik madde giderim

performansının belirlenmesidir. İnce film nanokompozit kaplama çalışmalarında

nanoparçacık olarak 3 farklı konsantrasyonda (0,01; 0,05; 0,2) TiO2 kullanılmıştır. Çalışma

sonucu nanoparçacık katkılı membranların akısında artış belirlenmiştir. Elde edilen sonuçlar

nanoparçacık katkısız membrana göre standardize edildiğinde, organik madde giderimi

açısından en iyi performansın %0,2 TiO2 nanoparçacık ile üretilen İFNK membranlarda elde

edildiği belirlenmiştir.

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O30

Lİ-İYON BATARYA UYGULAMALARİNDA

Sİ/C NANOKOMPOZİTLERİN KULLANİMİ

Dr. Neslihan YUCA

ENWAIR Energy Technology Company, Istanbul, Turkey

[email protected]

ABSTRACT

Lityum iyon bataryalarda anot malzemesi olarak Si/C kompozitlerin kullanılması oldukça

önemli avantajlar sağlamaktadır. Silisyumun, grafit ile kıyaslandığında teorik olarak 10 kat

daha yüksek spesifik kapasitesini, karbonun iletkenlik ve mekanik dayanım sağlaması ile

birleştirmek, oldukça yüksek performanslı anot malzemeleri elde edilebilmesine imkan

vermektedir.

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O31

PROPERTIES OF THE IRRADIATED GREEN PVC AND ITS

APPLICATIONS in INDUSTRY AND ENVIRONMENT

Dr. Said SABBAGH

Nuclear Researches Division, Energy Institute, Istanbul Technical University (ITU).

[email protected]

ABSTRACT

PVC free from the hazardous materials is the golden goal in the Plastic Business. The

future of the PolyVinyl Chloride PVC industry is under investigation, because of the

recycling problems, the heavy metals contamination, like Lead, Cadmium, Mercury, Arsenic,

Antimony, organochlorines, and the Lower-molecular-weight phthalates .

In this review, the use of Pb, Hg, Cd, Hexavalent chromium, As, Sb, and the phthalates

(PBB), (PBDE), (DEHP), (BBP), (DBP), and (DIBP) in PVC`s industry was analysed. The

restriction of DEHP, BBP, DBP and DIBP in the medical devices was also reviewed . In

addition, Influence of Gamma and Electron Beam Irradiation (X-rays) on The mechanical

properties of the new or green PVC is important for health and industry . The PVCs materials

used in the nuclear power plants (NPP) should be investigated in advance, and replaced after

certain time . The importance of knowledge about the heavy metals, for PVC producers is

vital for the future.

Keywords: Heavy metals, PVC, plastic, Industry, green products, phthalates, Enivronment.

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O32

NANOSELÜLOZİK ELYAF TAKVİYESİ İLE YENİLENEBİLİR KAYNAKLI

POLİMER NANOKOMPOZİTLERİN GELİŞTİRİLMESİ

Dr. Aysun EKİNCİ, Dr. Öğr. Üyesi Gülay BAYRAMOĞLU1

1Polimer Mühendisliği Bölümü, Mühendislik Fakültesi, Yalova Üniversitesi, 77100, Yalova,

Türkiye

[email protected]

ÖZET

Son yıllarda, çevresel ve ekonomik kaygıların artış göstermesi nedeniyle yenilenebilir

kaynaklı malzemeler üzerine akademik ve endüstriyel alanda yapılan çalışmaların sayısında

önemli artışlar görülmektedir. Yenilenebilir kaynaklardan elde edilen polimerler, düşük

maliyet, çevre dostu ve kolay ulaşılabilir hammadde kaynağı olma gibi avantajlar

sağlamaktadır. Bu bağlamda bitkisel yağlar, kaynak bitki çeşitliliği ve bitkiye göre yapısal

çeşitlilik gibi avantajlarına bağlı olarak polimerlerin üretilmesinde büyük potansiyel

sergilemektedir. Bitkisel yağların yapısında yer alan çift bağların epoksidasyonu ile elde

edilen epokside bitkisel yağlar, oluşturulan oksiran halkalarının modifikasyonu ile doğrudan

kaplama malzemesi olarak kullanıldığı gibi polimer kompozitler/ nanokompozitler için matris

olarak kullanılabilmektedir. Epoksidasyon reaksiyonu sonucu epoksi fonksiyonu

kazandırılmış yağlar çeşitli polimerizasyon yöntemleri ile bitkisel yağ esaslı epoksi reçine,

poliüretan ve akrilik reçine olarak farklı uygulamalarda kullanılmaktadır. Bitkisel yağlara

benzer şekilde yenilenebilir kaynaklardan üretilen nanoselülozik elyaflar,

kompozit/nanokompozit uygulamalarında toksik olmaması, biyo-bozunur ve biyo-uyumlu

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olması gibi üstün özellikleri sayesinde giderek daha çok tercih edilmektedir. Bu çalışmada,

sürdürülebilir kaynaklar kullanılarak yeni tür nanokompozitlerin üretilmesi hedeflenmiştir. Bu

amaçla takviyelendirici olarak tarımsal atıklardan nano selüloz elyaflar üretilirken bitkisel

yağlardan da polimerik matris olarak epokside yağlar sentezlenmiştir. Sentezlenen epokside

yağlar diizosiyanat bileşikleri kullanılarak kürlenmiş ve farklı nanokompozit formülasyonları

geliştirilmiştir. Hazırlanan nanokompozitlerin termal kararlılıkları TGA, morfolojileri SEM

ve kürlenme davranışları FTIR ile incelenmiştir.

Anahtar kelimeler: epokside yağ, nanokompozit, nanoselüloz

Teşekkür: TÜBİTAK tarafından 114M828 nolu proje kapsamında desteklenmiştir.

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O33

NÜKLEER GÜVENLİK VE EMNİYET AÇISINDAN

NANOKOMPOZİTLERİN OPERASYONEL UYGULAMALARI

Yük.Müh. Zeynep CAMTAKAN

Istanbul Technical University, Energy Institute

[email protected]

ÖZET

Nanokompozitler ve polimer tabanlı nanokompozitler, başta uçak, otomotiv ve elektronik

sanayi olmak üzere bir çok uygulama alanında kullanılan ve geliştirilen malzemelerdir. Bu,

araştırma ve çalışma konularında yapılan çeşitli araştırma ve çalışmalara bu bildiride

değinilmiştir.

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O34

MEKANOKİMYASAL SENTEZLEME VE MEKANİK ALAŞIMLAMA

YÖNTEMLERİ İLE DÜŞÜK SICAKLIK KOŞULLARINDA HİBRİT

KOMPOZİTLERİN ÜRETİMİ

Dr. Hasan GÖKÇE

İstanbul Teknik Üniversitesi, Prof.Dr. Adnan Tekin Malzeme Bilimleri ve Üretim

Teknolojileri Uygulama Araştırma Merkezi 34469 Maslak, İstanbul.

[email protected]

ÖZET

Mekanokimyasal sentezleme ve mekanik alaşımlama yöntemleri ile düşük sıcaklık

koşullarında hibrit kompozitlerin üretimi geliştirilmesi ve karakterizasyonu çalışmaları

hakkında bilgi verilmiştir.

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O35

İNCE FİLM GÜNEŞ HÜCRELERİ VE POLİMER NANOKOMPOZİT TAŞIYICILAR

Dr. Öğr. Üyesi Utku CANCİ MATUR1,2*,

Prof.Dr. Nilgün BAYDOĞAN1

1Enerji Enstitüsü, Istanbul Teknik Üniversitesi, 34469, Istanbul, Türkiye

2Gedik Meslek Yüksekokulu, Gedik Universitesi, 34906, Istanbul, Türkiye

*[email protected]

ÖZET

Teknolojinin gelişmesi ile beraber enerji ihtiyacının artışı, alternatif enerji kaynaklarına ilgiyi

artırmıştır. Alternatif enerji kaynaklarından olan güneş enerjisi, tükenmez, kirlilik içermeyen,

elektriksel verimliliği yüksek, gelecekteki enerji ihtiyacını, daha yaygın bir şekilde

karşılayabilecek düzeye ulaşabilecek, cazip bir kaynaktır. Güneş pili, güneş enerjisini

doğrudan elektrik enerjisine dönüştüren, yarıiletken bir diyot gibi çalışan, taşıma kayıpları ve

masrafı az olan yenilenebilir enerji kaynaklarımızdan biridir. Güneş pilleri, tek kristal ve çok

kristalli silisyum güneş pilleri, ince film güneş pilleri, yoğunlaştırıcı sistemli pilleri olmak

üzere üç farklı fotovoltaik teknoloji ile üretilirler. Kristal silisyum güneş pilleri birinci nesil

güneş pili teknolojisi olarak bilinmektedir. İkinci nesil güneş pilleri denildiğinde ise, amorf

silisyum (a-Si), kadmiyum tellür (CdTe), bakır indiyum galyum diselenit (CIGS) ve ince film

kristal silisyum gibi ince film güneş pilleri ifade edilmektedir. İnce film güneş pillerinin

üretimine başlanmasındaki en büyük sebep, daha düşük üretim maliyetleriydi. Silisyum güneş

pili panelleri 100 cm2 alana sahip bağımsız güneş gözelerinden meydana gelirken, ince film

güneş pilleri ise çok daha geniş alanlarda üretilebilmekte, bu da büyük ölçekli üretimler için

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maliyeti düşüren bir faktördür. Bu çalışma kapsamında ince film güneş pillerinden, radyasyon

dayanımı ve soğurma katsayısı yüksek CIGS ince film güneş pilleri incelenmiştir.

İnce film güneş pilleri yapılarına ve kimyasal içeriklerine bağlı olarak farklı taşıyıcılar üzerine

kaplanabilmektedir. İnce film güneş pillerinde altlık olarak soda kireç cam (SLG), paslanmaz

çelik, titanyum (Ti), alüminyum (Al) ve poliimid malzemeler kullanılmaktadır. CIGS ince

film güneş pilleri esnek özelliğe sahip oldukları için SLG ve paslanmaz çelik altlıkların

yanısıra polimer folyo üzerine püskürtme, elektron demeti buharlaştırma ve sol-jel daldırma

tekniği gibi farklı metodlarala kaplanabilmektedirler. Esnek altlıklar, polimer ve metal levha

olmak üzere iki ayrı kategoride incelenmektedir. Altlık olarak kullanıcak olan polimer özel

olarak ısıya dayanıklı olabilecek şekilde seçilmelidir. Polimer altlıklar en yüksek 450° C-500°

C sıcaklık değerlerine kadar dayanabilmekte olup bu değer normal şartlarda sıklıkla

kullanılan cam altlıklar üzerine kaplama yöneteminden ~100 K kadar düşüktür. Altlık olarak

kullanılan metal levhalar herhangi bir bozulmaya uğramadan yüksek sıcaklıklara kadar

dayanabilmektedir fakat bu tip altlıklarda güneş pilinin fotovoltaik özelliklerini negatif yönde

etkileyen altlıktan soğurucu tabakaya kirliliklerin taşınması gibi problemler

gözlemlenebilmektedir.

Anahtar Kelimeler: İnce film güneş pilleri, CIGS ince film, Altlık.

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O36

KÖPÜK POLİÜRETANDA YANMAZLIK ÖZELLİĞİ SAĞLAYACAK

MİKRO KÜRELERİN SENTEZİ VE KULLANIMI

Doç.Dr. Nesrin KÖKEN1, Görkem ÜLKÜ

2

1İstanbul Teknik Üniversitesi, Fen Edebiyat Fakültesi,Kimya Bölümü, Maslak, 34469,

İstanbul, Turkey

2İstanbul Teknik Üniversitesi, Fen Bilimleri Enstitüsü, Polimer Bilim ve Teknolojisi

Öğrencisi, Istanbul, 34469, Turkey

[email protected]

ÖZET

Polyüretanlar yapılarında üretan bağları içeren organik polimerlerdir. Poliüretanlar genellikle

bir poliolün bir diizosiyanatla reaksiyonuyla elde edilir. Mikrokapsülleme, çeşitli

kimyasallara küçük bir katı parçacık veya sıvı damlacığı mikron çapında kaplayarak

kapsülleme tekniğidir. Bu kaplanan madde; ilaç, protein, alev geciktirici, antimikrobiyal, boya

veya kozmetik gibi bir kimyasal madde olabilir. Kaplanan malzeme çekirdek kaplama

malzemesi kabuk veya duvar malzemesi olarak adlandırılır [1]. Tris-(2-kloropril)-fosfat

(TCPP) poliüretan köpükte alev geciktirici olarak çok kullanılan organofosfor esterlerinden

biridir [2]. Bu çalışmanın amacı, melamin formaldehit reçinesi ile kapsüllenmiş TCCP elde

etmek ve bunu poliüretan köpük yapımında kullanmaktır. Mikrokapsüller süspansiyon

polimerizasyonu ile sentezlendi [3].

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SEM sonuçları, köpüğün morfolojisinin, mikrokapsüllerin eklenmesiyle önemli ölçüde

etkilenmediğini gösterdi. PU köpüğündeki mikrokapsüllerdeki TCPP'nin difüzyonunun,

kullanım sırasında mikrokapsüller içinde olmasından dolayı çok daha yavaş olması beklenir

ve mikrokapsüllerin kabuğunun ayrışmasıyla yangın sırasında yangın geciktirici olarak

hareket etmesi için serbest bırakılır. Ayrıca, Melamin kabuk yapısının da PU'nin yangın

geciktirici performansına olumlu etkisi vardır.

Kaynaklar

[1] Ghosh, S. K. (2006). Functional Coatings and Microencapsulation: A General (s.15-16).

Weinheim: WILEY- VCH Verlag GmbH & Co. KGaA.

[2] Meng, L. M. (2010). A dual mechanism single-component self-healing strategy for

polymers. Journal of Material Chemistry, 20(29), 5969-6196.

[3] W.Föllmann, J.Wober ‘’ Investigation of cytotoxic, genotoxic, mutagenic, and estrogenic

effects of the flame retardants tris-(2-chloroethyl)-phosphate (TCEP) and tris-(2-

chloropropyl)-phosphate (TCPP) in vitro ‘’ Toxicology Lett-ers,161 (2006) 124-134

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O37

POLİMER VE NANOKOMPOZİT MALZEMELERİN

İTÜ TRIGA MARK-II REAKTÖRÜ UYGULAMALARI

Yük.Müh. M. Sahip KIZILTAŞ

Istanbul Technical University, Energy Institute

[email protected]

ÖZET

İ.T.Ü. TRiGA Mark-II Reaktörü, 11 Mart 1979 tarihinde kritik yapılmış ve TRIGA

Reaktörlerinin 54'üncüsü olarak işletmeye açılmıştır.

TRIGA adı “Training Research Isotope Production General Atomic” kelimelerinin ilk

harflerinden meydana gelmiştir. Mark-II ise, muhtelif TRIGA Reaktör tipleri arasında yer

seviyesi üstünde inşa edilen ve kalbi sabit bir tipin adıdır.

İ.T.Ü. TRIGA Mark-II Eğitim ve Araştırma Reaktörü; hafif su soğutuculu, grafit yansıtıcılı ve

zenginleştirilmiş uranyum yakıtın-zirkonyum hidrit yavaşlatıcı ile homojen bir şekilde

karıştırılmasıyla meydana gelen katı yakıt elemanları ile çalışan açık tank tipi bir reaktördür.

Sürekli (steady state) ve darbeli (pulsing) çalıştırılabilir. Sürekli çalışmada 250 kW ve darbeli

çalışmada ise çok kısa bir zaman aralığı için 1200 MW güç seviyelerine çıkmaktadır.

TRIGA Mark-II Reaktörünün yakıt elemanları, uranyum yakıt ile zirkonyum hidrit yavaş-

latıcının homojen bir karışımı olup, U-ZrH1.6 "ani negatif sıcaklık katsayısına sahiptirler.

Reaktörde meydana gelen herhangi bir ani güç artması, aynı anda yakıt-yavaş¬latıcının

sıcaklığının artmasına ve bunun neticesinde de yavaşlatıcının yavaşlatma özelliğinin

azalmasına, ani ola¬rak reaktivitenin düşmesine neden olmakta ve milisaniyeler mertebesinde

bir zaman süresinde reaktör gücü otomatik ola¬rak azalmaktadır. Bu özellik yalnız TRIGA

Reaktörlerinde vardır ve bu nedenle de "kendiliğinden emniyetli reaktörler" diye de

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tanımlanmaktadırlar.

Nötron Kaynağı:

Reaktör kritik yapılabilmesi için Nötron kaynağı olarak özel muhafazası içinde 3 Ci

şiddetinde Amerisyum-Berilyum kullanılmaktadır.

Kontrol Çubukları:

Reaktörde üç adet kontrol çubuğu vardır.

1- Darbe Çubuğu (Transient Rod )

2- Güvenlik Çubuğu ( Safety Rod )

3- Ayar Çubuğu ( Regulation Rod )

Kontrol çubuklarının üçü de sinterlenmiş boron karbürden ( B10C4 ) yapılmıştır.

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P01

CU2ZNSNS4 THIN FILMS DEPOSITED BY DIP COATING TECHNIQUE FOR

SOLAR CELLS CONTAINING POLYMER SUBSTRATES

Ph.D. Candiate Charif TAMIN1, Prof.Dr. Mohamed ADNANE

1, Prof.Dr. Nilgun BAYDOGAN

2,

Prof.Dr. Denis CHAUMONT3

1 Département de Technologie des Matériaux, Faculté de physique, Université des Sciences et de la

Technologie d’Oran Mohamed Boudiaf, El M’naouar BP 1505 Bir El Djir 31000 Oran, Algérie.

2 Istanbul Technical University, Energy Institute, 34469, Maslak, Istanbul, Turkey

3ICB, Université de Bourgogne Franche-Comté UBFC, BP 47 870, 21078 Dijon, France

[email protected]

ABSTRACT

The use of Cu2ZnSnS4 thin films deposıted by dip coating technique application was

evaluated for solar cells containing polymer substrates in this study. Hence, this work deals

with the elaboration and characterization of Cu2ZnSnS4 thin films (CZTS) by a simple and

economical technique using chemical processes. In this research, the CZTS thin films were

derived from sol-gel dip coating method. Then, we have studied the effect of annealing on the

optical properties of CZTS thin films using UV/Visible spectrophotometer. The SEM images

show a homogeneous zone with the presence of crack on the thin film surface for the use of

the solar cells containing polymer substrates.

Keywords: CZTS, Thin films, Sol-gel, Polymer

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P02

GRAPHENE NANOPLATELETS FOR POLYMER NANOCOMPOSITES

1Ph.D. Candidate Maihemuti MAIMAITITUERSUN,

1Prof.Dr. Ahmet Togo GIZ,

2Prof.Dr. Nilgun BAYDOGAN

1Istanbul Technical University, Department of Physics, Istanbul Technical University

2Istanbul Technical University, Energy Institute, 34469, Maslak, Istanbul, Turkey

ABSTRACT

GNPs nanofiller homogeneously dispersed in the PMMA polymer matrix via in situ

polymerization method and their characterization was performed in this study.Because, GNPs

nanofiller with a big proportion of surface atoms have higher surface area to volume ratio.

Besides, GNPs have been considered as a potential alternative nanomaterial to Reduced

Graphene Oxide (RGO). Due to higher amount of surface, their interparticle forces such as

Vander Waals forces, electrostatic forces and magnetic attraction forces become stronger and

increase the surface energy of nanomaterials.

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P03

SYNTHESIS OF FLEXIBLE POLY(IMIDE SILOXANE) BLOCK COPOLYMERS

Ph.D. Candidate Turkan DOGAN1*

,

Assoc.Prof.Dr. Nesrin KOKEN2, Prof.Dr. Nilgun BAYDOGAN

1

1Istanbul Technical University, Energy Institute, 34469, Maslak, Istanbul, Turkey

2Faculty of Arts and Science, Istanbul Technical University, Department of Chemistry,

34469, Istanbul, Turkey

[email protected]

ABSTRACT

Poly(imide siloxane) monomer blocks which are produced from the combination of

polysiloxane and polyimide has processable property [1]. Flexible block copolymers were

synthesized by using Benzophenone-3,3’,4,4’- tetracarboxylic dianhydride (BTDA),4,4’–

Oxydianiline (ODA) and Polydimethylsiloxane, bis(3– aminopropyl) (APPS). BTDA and

APPS composed soft block of the copolymer. The length of polysiloxane soft blocks

increased with increasing the length of polyimide hard block. These materials have a potential

usage as substrates in several industrial areas.

Keywords: Polysiloxane / Poly(imide siloxane)(PIS) / Copolymer

References

1. Turkan Dogan, , Nesrin Koken, Nilgun Baydogan, Production of Poly(imide siloxane)

Block Copolymers, Energy Systems and Management pp 209-215,

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P04

HYDROPHOBIC PROPERTIES OF ZnO COATED NANOCOMPOSITES

Ar.Gör. Osman URPER, Prof.Dr.Nilgun BAYDOGAN

Istanbul Technical University, Energy Institute, Maslak, 34469, Istanbul, Turkey

[email protected]

ABSTRACT

Recent years, researchers have done various experiments on different geometrical shapes of

nanomaterials because of their different geometrical shapes have gained them significant

properties such as electrical, optical and water repellency. Due to the intensive demand for the

development of hydrophobic surfaces in applications, hydrophobic researches on ZnO

materials has exponentially grown at last decade. One of the main advantages of the ZnO

materials is relatively controllable and easiness to produce various surface morphologies on

wetting property. Although the various synthesis approaches of ZnO materials such as

thermal oxidization, hydrothermal method, chemical etching, spray coating technique, the

electrochemical method, and others, dip coating is the easiest and cheapest technique for ZnO

synthesis. this review is a representation of the recent achievement on ZnO superhydrophobic

surfaces.

Keywords: Hydrophobic, ZnO, nanocomposite, dip coating

Anahtar Kelimeler: ZnO, Nanomalzemeler, Hidrofobik

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References

[1] X. Wang, C.J. Summers, Z.L. Wang, Nano Lett. 4 (2004) 423.

[2] C.S. Rout, C.N.R. Rao, Nanotechnology 19 (2008) 285203.

[3] K.X. Yao, H.C. Zeng, Langmuir 24 (24) (2008) 14234.

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P05

THE EFFECT OF BUBBLES ON POLY(METHYLMETHACRYLATE) POLYMER

MSc. H. CAKAR1, Dr. T. BEL

2,

Prof.Dr. N. YAHYA3, Prof.Dr. C. ARSLAN

2, Prof.Dr. N.BAYDOGAN

1

1 Energy Institute, Istanbul Technical University, 34469, Istanbul, Turkey,

2 Department of Metallurgical and Materials Engineering, Istanbul Technical University,

Istanbul, Turkey

3 Universiti Teknologi PETRONAS, Department of Fundamental and Applied Science ,

Malaysia

ABSTRACT

The modification of PMMA materials was provided by the application of a suitable degass

process to obtain the porous structure. The application of a suitable of degass process has

enhanged the affordable weight reduction. Gamma transmission technique was used in order

to examine the details on high precision processing and fabrication of the modified PMMA

polymer as the affordable weight reduction of PMMA polymer supported for their use in

high-volume vehicles and components.

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P06

POLİMER KOMPOZİT MALZEMER; BOR VE BORÜR ESASLI POLİMER

KOMPOZİT MALZEMELER

Dr. Selim ERTÜRK

İstanbul Teknik Üniversitesi, Prof.Dr. Adnan Tekin Malzeme Bilimleri ve Üretim

Teknolojileri Uygulama Araştırma Merkezi 34469 Maslak, İstanbul.

[email protected]

ÖZET

Bu çalışmada, polimer kompozit malzemer, bor ve borür esaslı polimer kompozit

malzemelerin yapısal karakteristik özellikleri karşılaştırılmıştır. Polimer kompozit

malzemerin, bor ve borür esaslı polimer kompozit malzemelerin, karakteristik özellikleri göz

önüne alınarak, kullanım alanları değerlendirilmiştir.

Anahtar Kelimeler: Bor, Bor Esaslı Malzemeler

Page 90: POLYMER & NANOCOMPOSITES SYMPOSIUMpolen.itu.edu.tr/bitstream/11527/16709/4/22December2018.pdf · 978-975-561-501-1 Polymer & nanocomposites symposium, multi-scale self-healing nanocomposite

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P07

APPLICATIONS OF MULTIWALL CARBON NANOTUBES AT POLYMER

MATRIX

MSc. Songul ULAG, Prof.Dr. Nilgun BAYDOGAN

Istanbul Technical University, Energy Institute, 34469, Maslak, Istanbul, Turkey

[email protected]

ABSTRACT

Poly (methyl methacrylate) (PMMA) is a transparent thermoplastic material that shows good

mechanical properties, high resistance to abrasion and superior heat resistance. Mechanical,

thermal and radiation shielding properties of PMMA can be enhanced by addition of

multiwall carbon nanotubes (MWCNTs). Due to suitable structural properties of MWCNTs,

PMMA is an ideal candidate for some applications such as sensor, solar cell, electronic and

aerospace fields. PMMA was produced via ATRP technique. MWCNTs nanofiller was

dispersed by in situ polymerization method because it was the efficient method to disperse the

MWCNTs and the structural changes were examined in this study.


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