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Femur Study 6 1

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femur vibration analysis
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Simulation of Femur Date: 21 November 2013 Designer: Solidworks Study name: Study 6 Analysis type: Frequency Table of Contents Description........................1 Assumptions........................2 Model Information..................2 Study Properties...................3 Units..............................3 Material Properties................4 Loads and Fixtures.................4 Connector Definitions..............4 Contact Information................4 Mesh Information...................5 Sensor Details.....................6 Study Results......................7 Conclusion........................12 Description No Data Analyzed with SolidWorks Simulation Simulation of Femur 1
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Page 1: Femur Study 6 1

Simulation of FemurDate: 21 November 2013Designer: SolidworksStudy name: Study 6Analysis type: Frequency

Table of ContentsDescription...............................................1

Assumptions.............................................2

Model Information.....................................2

Study Properties.......................................3

Units.........................................................3

Material Properties...................................4

Loads and Fixtures...................................4

Connector Definitions...............................4

Contact Information..................................4

Mesh Information......................................5

Sensor Details..........................................6

Study Results............................................7

Conclusion..............................................12

DescriptionNo Data

Analyzed with SolidWorks Simulation Simulation of Femur 1

Page 2: Femur Study 6 1

Assumptions

Model Information

Model name: Femur

Current Configuration: Predeterminado

Solid BodiesDocument Name and

ReferenceTreated As Volumetric Properties Document Path/Date

ModifiedSólido importado1

Solid Body

Mass:1.03826 kgVolume:0.000546451

m^3Density:1900 kg/m^3

Weight:10.1749 N

E:\Femur.SLDPRTNov 20 07:55:06

2013

Analyzed with SolidWorks Simulation Simulation of Femur 2

Page 3: Femur Study 6 1

Study PropertiesStudy name Study 6

Analysis type Frequency

Mesh type Solid Mesh

Number of frequencies 5

Solver type FFEPlus

Soft Spring: Off

Incompatible bonding options Automatic

Thermal option Include temperature loads

Zero strain temperature 298 Kelvin

Include fluid pressure effects from SolidWorks Flow Simulation

Off

Result folder SolidWorks document (E:)

UnitsUnit system: SI (MKS)

Length/Displacement mm

Temperature Kelvin

Angular velocity Rad/sec

Pressure/Stress N/m^2

Analyzed with SolidWorks Simulation Simulation of Femur 3

Page 4: Femur Study 6 1

Material PropertiesModel Reference Properties Components

Name: bone hunanModel type: Linear Elastic

IsotropicDefault failure

criterion:Mohr-Coulomb Stress

Tensile strength: 5.3e+007 N/m^2Mass density: 1900 kg/m^3

Elastic modulus: 1.79e+010 N/m^2Poisson's ratio: 0.4

Thermal expansion

coefficient:

0 /Kelvin

SolidBody 1(Sólido importado1)(Femur)

Curve Data:N/A

Loads and FixturesFixture name

Fixture Image Fixture Details

Fixed-1

Entities: 2 face(s)Type: Fixed Geometry

Connector DefinitionsNo Data

Analyzed with SolidWorks Simulation Simulation of Femur 4

Page 5: Femur Study 6 1

Contact InformationNo Data

Analyzed with SolidWorks Simulation Simulation of Femur 5

Page 6: Femur Study 6 1

Mesh InformationMesh type Solid Mesh

Mesher Used: Standard mesh

Automatic Transition: Off

Include Mesh Auto Loops: Off

Jacobian points 4 Points

Element Size 8.18126 mm

Tolerance 0.409063 mm

Mesh Quality High

Mesh Information - DetailsTotal Nodes 21274

Total Elements 13468

Maximum Aspect Ratio 13.229

% of elements with Aspect Ratio < 3 95.1

% of elements with Aspect Ratio > 10 0.0297

% of distorted elements(Jacobian) 0

Time to complete mesh(hh;mm;ss): 00:00:35

Computer name: HIMANSHU

Analyzed with SolidWorks Simulation Simulation of Femur 6

Page 7: Femur Study 6 1

Sensor DetailsNo Data

Study Results

Name Type Min MaxDisplacement1 URES: Resultant Displacement

Plot for Mode Shape: 1(Value = 279.099 Hz)

0 mmNode: 54

1895.72 mmNode: 13381

Femur-Study 6-Displacement-Displacement1

Name Type Min MaxDisplacement2 URES: Resultant Displacement

Plot for Mode Shape: 2(Value = 359.8 Hz)

0 mmNode: 54

1836.88 mmNode: 14429

Analyzed with SolidWorks Simulation Simulation of Femur 7

Page 8: Femur Study 6 1

Name Type Min Max

Femur-Study 6-Displacement-Displacement2

Name Type Min MaxDisplacement3 URES: Resultant Displacement

Plot for Mode Shape: 3(Value = 833.097 Hz)

0 mmNode: 54

1927.9 mmNode: 11931

Analyzed with SolidWorks Simulation Simulation of Femur 8

Page 9: Femur Study 6 1

Name Type Min Max

Femur-Study 6-Displacement-Displacement3

Name Type Min MaxDisplacement4 URES: Resultant Displacement

Plot for Mode Shape: 4(Value = 932.57 Hz)

0 mmNode: 54

1888.14 mmNode: 11204

Analyzed with SolidWorks Simulation Simulation of Femur 9

Page 10: Femur Study 6 1

Name Type Min Max

Femur-Study 6-Displacement-Displacement4

Name Type Min MaxDisplacement5 URES: Resultant Displacement

Plot for Mode Shape: 5(Value = 990.698 Hz)

0 mmNode: 54

3152.91 mmNode: 19883

Analyzed with SolidWorks Simulation Simulation of Femur 10

Page 11: Femur Study 6 1

Name Type Min Max

Femur-Study 6-Displacement-Displacement5

Mode List

Frequency Number Rad/sec Hertz Seconds

1 1753.6 279.1 0.003583

2 2260.7 359.8 0.0027793

3 5234.5 833.1 0.0012003

4 5859.5 932.57 0.0010723

5 6224.7 990.7 0.0010094

Mass Participation (Normalized)

Mode NumberFrequency(Her

tz)X direction

Y direction Z direction

1 279.1 3.3004e-005 0.48988 0.033986

2 359.8 1.9437e-007 0.034292 0.50193

3 833.1 6.1048e-008 0.00037948 0.002635

4 932.57 0.001333 0.0039368 0.0093231

5 990.7 1.0725e-005 0.016613 0.0007035

Analyzed with SolidWorks Simulation Simulation of Femur 11

Page 12: Femur Study 6 1

Mode NumberFrequency(Her

tz)X direction

Y direction Z direction

Sum X = 0.0013769

Sum Y = 0.5451 Sum Z = 0.54858

Conclusion

Analyzed with SolidWorks Simulation Simulation of Femur 12


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