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7 - 767 - 767 - 767 - 767 - 76 © 2002 Weatherford. All Rights Reserved
TECHNICAL DATA HANDBOOK
HEAVY WEIGHT DRILL PIPE (HWDP)
Thick Walled pipe called HeavyWeight Drill Pipe (HWDP) wasdeveloped to provide gradualtransition from the heavy drill collarto the relatively light weight drill pipe.This intermediate-weight pipe has awall thickness of approximately 1",and helps to prevent stressconcentration at the top of the drill
collar. It, also, allows you to drill at ahigher rpm, reducing toque anddifferential pressure sticking.
HWDP is intended primarily fordirectional drilling. Because it bendseasily, it simplifies directional controland minimizes connection fatigueproblems common to high-angle orhorizontal drilling. The reduced
number of pipe failures and increaseddrill-stem service, also, make HWDPappropriate for some straight-holeapplications.
Various Combinations of HWDP, drillcollars, and standard drill string canbe created to meet the challenge ofsevere drilling conditions.
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© 2002 Weatherford. All Rights Reserved 7 - 777 - 777 - 777 - 777 - 77
TECHNICAL DATA HANDBOOK
N o m .
S i z e
" A "
H W *
T y p e
W e i g h t
w / T o o l
J o i n t s
T u b e
I . D .
C e n t e r
U p s e t
" C "
U p s e t
D i a m .
" B "
T u b
e
T e n s
i l e
Y i e l d
T u b e
T o r s i o n
Y i e l d
C o n n e c t i o n
T y p e
T o o l
J o i n t
O . D .
" D "
T o o l
J o i n t
I . D .
T . J .
T e n s i l e
Y i e l d
T . J .
T o r s i o n
Y i e l d
M a x .
M a k e
U p
T o r q u e
C a p .
W i t h
T . J .
D i s p .
W i t h
T . J .
i n
l b / f t
i n
i n
i n
l b
f t . l b
i n
i n
l b
f t . l b
f t . l b
g a l / f t .
g a l / f t .
m m
k g / m
m
m
m m
m m
d a N
N . m
m m
m m
d a N
N . m
N . m
L / m
L / m
2 7 / 8
W
1 2 . 5 0
2
1 / 8
3 3 / 8
N / A
1 6 1 , 9
0 0
8 , 6 0 0
2 7 / 8 S L H - 9 0
3 3 / 4
2
1 / 8
3 4 6 , 3 0 0
9 , 9 0 0
5 , 0 8 0
0 . 1 8 7
0 . 1 9 5
7 3 . 0 3
1 8 . 6 0
5 3 . 9 8
8 5 . 7 3
N / A
7 2 , 0
0 0
1 1 , 6 0 0
9 5 . 2 5
5 3 . 9 8
1 5 4 , 0 0 0
1 3 , 4 0 0
6 , 8 0 0
2 . 3 2
2 . 4 2
3 1 / 1 6
I
1 7 . 0 0
2
3 7 / 8
N / A
4 6 4 , 7
0 0
2 4 , 4 0 0
2 7 / 8 S L H - 9 0
3 7 / 8
2
4 0 6 , 9 0 0
1 2 , 0 0 0
6 , 1 0 0
0 . 1 6 3
0 . 2 6 2
7 7 . 7 9
2 5 . 3 0
5 0 . 8 0
9 8 . 4 3
N / A
2 0 6 , 7
0 0
3 3 , 0 0 0
9 8 . 4 3
5 0 . 8 0
1 8 0 , 9 0 0
1 6 , 2 0 0
8 , 2 0 0
2 . 0 2
3 . 2 5
3 1 / 2
I
2 3 . 4 6
2 1 / 1 6
4
3 5 / 8
6 9 1 , 0
0 0
3 9 , 2 0 0
3 1 / 2 S H
4 1 / 8
2
1 / 1 6
4 3 2 , 5 0 0
1 1 , 5 0 0
6 , 2 0 0
0 . 1 7 3
0 . 3 5 9
8 8 . 9 0
3 4 . 9 1
5 2 . 3 9
1 0 1 . 6 0
9 2 . 0 8
3 0 7 , 3
0 0
5 3 , 1 0 0
2 7 / 8 A P I I F , N C
2 6
1 0 4 . 7 8
5 2 . 3 9
1 9 2 , 3 0 0
1 5 , 5 0 0
8 , 4 0 0
2 . 1 5
4 . 4 6
W
2 3 . 7 0
2
1 / 4
4
3 7 / 8
3 1 0 , 4
0 0
1 8 , 4 0 0
3 1 / 2 I F
4 3 / 4
2
1 / 4
7 2 4 , 9 0 0
1 7 , 5 0 0
9 , 9 0 0
0 . 2 0 7
0 . 3 5 5
3 5 . 2 7
5 7 . 1 5
1 0 1 . 6 0
9 8 . 4 3
1 3 8 , 0
0 0
2 4 , 9 0 0
1 2 0 . 6 5
5 7 . 1 5
3 2 2 , 4 0 0
2 3 , 7 0 0
1 3 , 4 0 0
2 . 5 7
4 . 4 1
W
2 3 . 9 6
2
1 / 4
4
3 5 / 8
3 1 0 , 5
0 0
1 8 , 5 0 0
3 1 / 2 I F
4 7 / 8
2
5 / 1 6
7 0 0 , 4 0 0
2 1 , 0 0 0
1 1 , 6 0 0
0 . 2 0 8
0 . 3 6 6
3 5 . 6 6
5 7 . 1 5
1 0 1 . 6 0
9 2 . 0 8
1 3 8 , 1
0 0
2 5 , 0 0 0
N C 3 8
1 2 3 . 8 3
5 8 . 7 4
3 1 1 , 5 0 0
2 8 , 4 0 0
1 5 , 7 0 0
2 . 5 8
4 . 5 5
W
2 3 . 9 6
2
1 / 4
4
3 5 / 8
3 1 0 , 5
0 0
1 8 , 5 0 0
3 1 / 2 H T 3 8
4 7 / 8
2
5 / 1 6
7 0 0 , 4 0 0
3 0 , 7 0 0
1 8 , 4 0 0
0 . 2 0 8
0 . 3 6 6
3 5 . 6 6
5 7 . 1 5
1 0 1 . 6 0
9 2 . 0 8
1 3 8 , 1
0 0
2 5 , 0 0 0
1 2 3 . 8 3
5 8 . 7 4
3 1 1 , 5 0 0
4 1 , 6 0 0
2 4 , 9 0 0
2 . 5 8
4 . 5 5
W
2 5 . 6 5
2 1 / 1 6
4
3 7 / 8
3 4 5 , 5
0 0
1 9 , 6 0 0
3 1 / 2 A P I I F
4 3 / 4
2
3 / 1 6
7 4 9 , 0 0 0
1 7 , 6 0 0
1 0 , 5 0 0
0 . 1 7 6
0 . 3 9 2
3 8 . 1 7
5 2 . 3 9
1 0 1 . 6 0
9 8 . 4 3
1 5 3 , 6
0 0
2 6 , 5 0 0
N C 3 8
1 2 0 . 6 5
5 5 . 5 6
3 3 3 , 1 0 0
2 3 , 8 0 0
1 4 , 2 0 0
2 . 1 9
4 . 8 7
4
I
2 7 . 9 3
2 9 / 1 6
4 1 / 2
4 1 / 8
8 1 5 , 2
0 0
5 5 , 3 0 0
4 S H
4 3 / 4
2
9 / 1 6
4 6 9 , 4 0 0
1 4 , 0 0 0
7 , 4 0 0
0 . 2 6 8
0 . 4 2 7
1 0 1 . 6 0
4 1 . 5 6
6 5 . 0 9
1 1 4 . 3 0
1 0 4 . 7 8
3 6 2 , 6
0 0
7 4 , 9 0 0
3 1 / 2 X H
1 2 0 . 6 5
6 5 . 0 9
2 0 8 , 7 0 0
1 8 , 9 0 0
1 0 , 0 0 0
3 . 3 2 8
5 . 3 0 3
W
2 8 . 4 0
2 9 / 1 6
4 1 / 2
4 1 / 8
4 0 7 , 6
0 0
2 7 , 6 0 0
H T 3 8
4 7 / 8
2
9 / 1 6
5 9 1 , 1 0 0
2 7 , 0 0 0
1 6 , 2 0 0
0 . 2 6 8
0 . 4 3 4
4 2 . 2 6
6 5 . 0 9
1 1 4 . 3 0
1 0 4 . 7 8
1 8 1 , 3
0 0
3 7 , 4 0 0
1 2 3 . 8 3
6 5 . 0 9
2 6 2 , 9 0 0
3 6 , 6 0 0
2 1 , 9 0 0
3 . 3 3
5 . 3 9
W
2 9 . 9 0
2 9 / 1 6
4 1 / 2
N / A
4 0 7 , 5
0 0
2 7 , 6 0 0
4 F H
5 1 / 4
2
9 / 1 6
7 6 8 , 4 0 0
2 5 , 3 0 0
1 4 , 4 0 0
0 . 2 6 8
0 . 4 5 7
4 4 . 5 0
6 5 . 0 9
1 1 4 . 3 0
N / A
1 8 1 , 2
0 0
3 7 , 4 0 0
N C 4 0
1 3 3 . 3 5
6 5 . 0 9
3 4 1 , 8 0 0
3 4 , 3 0 0
1 9 , 5 0 0
3 . 3 3
5 . 6 8
W
2 9 . 9 2
2 9 / 1 6
4 1 / 2
4 1 / 8
4 0 7 , 6
0 0
2 7 , 6 0 0
4 F H
5 1 / 4
2
5 / 8
7 4 0 , 4 0 0
2 4 , 5 0 0
1 2 , 9 0 0
0 . 2 7 0
0 . 4 5 8
4 4 . 5 3
6 5 . 0 9
1 1 4 . 3 0
1 0 4 . 7 8
1 8 1 , 3
0 0
3 7 , 4 0 0
N C 4 0
1 3 3 . 3 5
6 6 . 6 8
3 2 9 , 3 0 0
3 3 , 2 0 0
1 7 , 4 0 0
3 . 3 5
5 . 6 9
I
3 1 . 9 4
2
1 / 4
4 1 / 2
4 1 / 8
9 4 4 , 9
0 0
5 9 , 8 0 0
4 S H
4 3 / 4
2
1 / 4
5 9 9 , 3 0 0
1 8 , 0 0 0
9 , 5 0 0
0 . 2 0 7
0 . 4 8 9
4 7 . 5 3
5 7 . 1 5
1 1 4 . 3 0
1 0 4 . 7 8
4 2 0 , 3
0 0
8 1 , 0 0 0
3 1 / 2 X H
1 2 0 . 6 5
5 7 . 1 5
2 6 6 , 5 0 0
2 4 , 4 0 0
1 2 , 8 0 0
2 . 5 7 1
6 . 0 7 3
H E A V Y W E I G H T D R I L L
P I P E D I M E N S I O N A L
/ M E C H A N I C A L P R O
P E R T I E S
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© 2002 Weatherford. All Rights Reserved 7 - 797 - 797 - 797 - 797 - 79
TECHNICAL DATA HANDBOOK
GRANT PRIDECO SPIRAL-WATE™™™™™ HWDPD
A
C
B
A
D
D
A
B
D
2 9/16", 3 3/16"
SPIRAL-WATE
3 1/2" - 6 5/8"
SPIRAL-WATE
Spiral-Wate Heavy Weight Drill Pipeoffers strength, flexibility, weight and
unique spiral design to improvedrilling efficiency.
The full length deep spiral grooveskeep drilling mud flowingcontinuously between the pipe and
the well bore, regardless of downhole deviation .This reduces thechances of differential sticking whileminimizing tube wear.
The full length deep grooved spiraldesign means your entireintermediate drill string will bendmore uniformly with only half theconventional "wear pad" type heavy
weight drill pipe, thus eliminatingtwo critical stress areas.
The Spiral-Wate unique design haseliminated the center wear pad thatcauses casing wear problems.
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7 - 807 - 807 - 807 - 807 - 80 © 2002 Weatherford. All Rights Reserved
TECHNICAL DATA HANDBOOK
N o m .
S i z e
" A "
W e i g h t
w / T o o l
J o i n t s
T
u b e
I . D .
S p i r a l
O . D .
" B "
U p s e t
O . D .
" C "
T u b
e
T e n s
i l e
Y i e l d
T u b e
T o r s i o n
Y i e l d
T o o l
J o i n t
O . D .
" D "
T o o l
J o i n t
I . D .
T . J .
T e n s i l e
Y i e l d
T . J .
T o r s i o n
Y i e l d
M a k e
U p
T o r q u e
C a p .
W i t h
T . J .
D i s p .
W i t h
T . J .
i n
l b / f t
i n
i n
i n
l b
f t . l b
i n
i n
l b
f t . l b
f t . l b
g a l / f t .
g a l / f t .
m m
k g / m
m
m
m m
m m
d a N
N . m
m m
m m
d a N
N . m
N . m
L / m
L / m
2
9 / 1 6
1 0 . 5
1 . 9 7 5
2 7 / 8
N / A
2 3 0 , 3
0 0
1 1 , 3 0 0
2 3 / 8 S L H - 9 0
3 1 / 8
1 . 9 7 5
2 1 8 , 5 0 0
4 , 9 0 0
2 , 5 0 0
0 . 1 5 9
0 . 1 6 0
6 5 . 0 9
1 5 . 6
5 0 . 1 7
7 3 . 0 3
1 0 2 , 4
0 0
1 5 , 3 0 0
7 9 . 3 8
5 0 . 1 7
9 7 , 1 0 0
6 , 6 0 0
3 , 3 0 0
1 . 9 7
1 . 9 9
1 0 . 5
1 . 9 7 5
2 7 / 8
N / A
2 3 0 , 3
0 0
1 1 , 3 0 0
2 3 / 8 S L H - 9 0
3 1 / 8
1 . 9 7 5
2 0 2 , 7 0 0
6 , 8 0 0
3 , 9 0 0
0 . 1 5 9
0 . 1 6 0
1 5 . 6
5 0 . 1 7
7 3 . 0 3
1 0 2 , 4
0 0
1 5 , 3 0 0
H i g h T o r q u e
7 9 . 3 8
5 0 . 1 7
9 0 , 1 0 0
9 , 2 0 0
5 , 2 0 0
1 . 9 7
1 . 9 9
3
3 / 1 6
1 5 . 1
2
1 / 8
3
5 / 1 6
N / A
4 8 7 , 7
0 0
2 7 , 0 0 0
2 7 / 8 S L H - 9 0
3 3 / 4
2 1 / 8
3 9 8 , 6 0 0
1 0 , 6 0 0
5 , 4 0 0
0 . 1 8 4
0 . 2 3 1
8 0 . 9 6
2 2 . 5
5 3 . 9 8
8 4 . 1 4
2 1 6 , 9
0 0
3 6 , 6 0 0
9 5 . 2 5
5 3 . 9 8
1 7 7 , 3 0 0
1 4 , 3 0 0
7 , 3 0 0
2 . 2 9
2 . 8 7
3 1 / 2
3 0 . 4
2
1 / 4
4
3 5 / 8
3 1 0 , 5 0 0
1 8 , 5 0 0
3 1 / 2 I F ( N C 3
8 )
4 7 / 8
2
1 / 4
7 2 5 , 0 0 0
2 1 , 0 0 0
1 2 , 0 0 0
0 . 2 0 7
0 . 4 6 5
8 8 . 9 0
4 5 . 2
5 7 . 1 5
1 0 1 . 6 0
9 2 . 0 8
1 3 8 , 1
0 0
2 5 , 0 0 0
1 2 3 . 8 3
5 7 . 1 5
3 2 2 , 4 0 0
2 8 , 4 0 0
1 6 , 2 0 0
2 . 5 7
5 . 7 7
3 0 . 4
2
1 / 4
4
3 5 / 8
3 1 0 , 5
0 0
1 8 , 5 0 0
3 1 / 2 I F ( N C 3
8 )
4 3 / 4
2
1 / 4
7 2 4 , 9 0 0
1 7 , 5 0 0
9 , 9 0 0
0 . 2 0 7
0 . 4 6 5
4 5 . 2
5 7 . 1 5
1 0 1 . 6 0
9 2 . 0 8
1 3 8 , 1
0 0
2 5 , 0 0 0
1 2 0 . 6 5
5 7 . 1 5
3 2 2 , 4 0 0
2 3 , 7 0 0
1 3 , 4 0 0
2 . 5 7
5 . 7 7
2 7 . 2
2
1 / 2
4
3 5 / 8
5 1 8 , 4
0 0
3 2 , 9 0 0
3 1 / 2 H T 3 8
4 7 / 8
2
1 / 2
6 2 2 , 4 0 0
2 8 , 6 0 0
1 7 , 1 0 0
0 . 2 5 5
0 . 4 1 6
4 0 . 5
6 3 . 5 0
1 0 1 . 6 0
9 2 . 0 8
2 3 0 , 5
0 0
4 4 , 6 0 0
1 2 3 . 8 3
6 3 . 5 0
2 7 6 , 8 0 0
3 8 , 7 0 0
2 3 , 1 0 0
3 . 1 7
5 . 1 7
4
2 9 . 9
2
9 / 1 6
4 1 / 2
4 1 / 8
4 0 7 , 6 0 0
2 7 , 6 0 0
4 F H ( N C 4 0 )
5 1 / 4
2 1 1 / 1 6
7 1 1 , 7 0 0
2 3 , 5 0 0
1 2 , 4 0 0
0 . 2 7 1
0 . 4 5 8
1 0 1 . 6 0
4 4 . 5
6 5 . 0 9
1 1 4 . 3 0
1 0 4 . 7 8
1 8 1 , 3
0 0
3 7 , 4 0 0
1 3 3 . 3 5
6 8 . 2 6
3 1 6 , 5 0 0
3 1 , 8 0 0
1 6 , 8 0 0
3 . 3 6 6
5 . 6 8 8
3 2 . 9
2
1 / 4
4 1 / 2
4 1 / 8
9 4 4 , 9
0 0
5 9 , 8 0 0
4 S H ( 3 1 / 2 X H )
4 3 / 4
2
1 / 4
5 9 9 , 3 0 0
1 8 , 0 0 0
9 , 5 0 0
0 . 2 0 7
0 . 4 8 9
4 9 . 0
5 7 . 1 5
1 1 4 . 3 0
1 0 4 . 7 8
4 2 0 , 3
0 0
8 1 , 0 0 0
1 2 0 . 6 5
5 7 . 1 5
2 6 6 , 5 0 0
2 4 , 4 0 0
1 2 , 8 0 0
2 . 5 7
6 . 0 7
2 8 . 4
2
9 / 1 6
4 1 / 2
4 1 / 8
4 0 7 , 6
0 0
2 7 , 6 0 0
4 S H ( 3 1 / 2 H T
3 8 )
4 7 / 8
2
9 / 1 6
5 9 5 , 1 0 0
2 7 , 0 0 0
1 6 , 2 0 0
0 . 2 6 8
0 . 4 3 4
4 2 . 3
6 5 . 0 9
1 1 4 . 3 0
1 0 4 . 7 8
1 8 1 , 3
0 0
3 7 , 4 0 0
1 2 3 . 8 3
6 5 . 0 9
2 6 4 , 7 0 0
3 6 , 6 0 0
2 1 , 9 0 0
3 . 3 2 8
5 . 3 9 0
4 1 / 2
4 9 . 5
2
3 / 4
5
4 5 / 8
5 4 8 , 1
0 0
4 0 , 7 0 0
4 1 / 2 X H ( N C 4
6 )
6 1 / 4
2 3 / 4
1 , 0 8 5 , 2 0
0
4 1 , 1 0 0
2 1 , 3 0 0
0 . 3 1
0 . 7 6
1 1 4 . 3 0
7 3 . 7
6 9 . 8 5
1 2 7 . 0 0
1 1 7 . 4 8
2 4 3 , 8
0 0
5 5 , 1 0 0
1 5 8 . 7 5
6 9 . 8 5
4 8 2 , 7 0 0
5 5 , 7 0 0
2 8 , 8 0 0
3 . 8 3 8
9 . 4 1 4
4 9 . 5
2
3 / 4
5
4 5 / 8
5 4 8 , 1
0 0
4 0 , 7 0 0
4 1 / 2 X H ( N C 4
6 )
6 1 / 4
2 7 / 8
1 , 0 2 4 , 5 0
0
3 8 , 2 0 0
2 1 , 7 0 0
0 . 3 1
0 . 7 6
7 3 . 7
6 9 . 8 5
1 2 7 . 0 0
1 1 7 . 4 8
2 4 3 , 8
0 0
5 5 , 1 0 0
1 5 8 . 7 5
7 3 . 0 3
4 5 5 , 7 0 0
5 1 , 7 0 0
2 9 , 4 0 0
3 . 8 3 8
9 . 4 1 4
C o n n e c t i o n
T y p e
G R A N T P R I D E C O S P I R A L - W A T E
H W D P P I P E D I M
E N S I O N A L / M E C H A
N I C A L P R O P E R T I E S
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© 2002 Weatherford. All Rights Reserved 7 - 817 - 817 - 817 - 817 - 81
TECHNICAL DATA HANDBOOK
N o m .
S i z e
" A "
W e i g h t
w / T o o l
J o i n t s
T u b e
I . D .
S p i r a l
O . D .
" B "
U p s e t
O . D .
" C "
T u b
e
T e n s i l e
Y i e l d
T u b e
T o r s i o n
Y i e l d
T o o l
J o i n t
O . D .
" D "
T o o l
J o i n t
I . D .
T . J .
T e n s i l e
Y i e l d
T . J .
T o r s i o n
Y i e l d
M a k e
U p
T o r q u e
C a p .
W i t h
T . J .
D i s p .
W i t h
T . J .
i n
l b / f t
i n
i n
i n
l b
f t . l b
i n
i n
l b
f t . l b
f t . l b
g a l / f t .
g a l / f t .
m m
k g / m
m
m
m m
m m
d a N
N . m
m m
m m
d a N
N . m
N . m
L / m
L / m
5
5 9 . 2
3
5 1 / 2
5 1 / 8
6 9 1 , 2
0 0
5 6 , 5 0 0
4 1 / 2 I F ( N C 5 0
)
6 5 / 8
3
1 , 2 9 8 , 2 0
0
5 3 , 0 0 0
2 7 , 5 0 0
0 . 3 6 7
0 . 9 0 5
1 2 7 . 0 0
8 8 . 1
7 6
. 2 0
1 3 9 . 7 0
1 3 0 . 1 8
3 0 7 , 4
0 0
7 6 , 6 0 0
1 6 8 . 2 8
7 6 . 2 0
5 7 7 , 4 0 0
7 1 , 8 0 0
3 7 , 2 0 0
4 . 5 6
1 1 . 2 4
5 1 / 2
5 6 . 7
4
6
5 5 / 8
6 1 5 , 6
0 0
4 9 , 8 0 0
5 1 / 2 F H
7 1 / 4
4
1 , 0 5 4 , 8 0
0
4 7 , 0 0 0
2 4 , 3 0 0
0 . 6 5 3
0 . 8 6 8
1 3 9 . 7 0
8 4 . 4
1 0 1 . 6 0
1 5 2 . 4 0
1 4 2 . 8 8
2 7 3 , 8
0 0
6 7 , 5 0 0
1 8 4 . 1 5
1 0 1 . 6 0
4 6 9 , 1 0 0
6 3 , 7 0 0
3 2 , 9 0 0
8 . 1 1
1 0 . 7 8
6 5 . 2
3
1 / 2
6
5 5 / 8
1 , 4 1 3 , 7 0 0
1 3 1 , 3 0 0
5 1 / 2 F H
7
3 1 / 2
1 , 3 4 9 , 4 0
0
5 2 , 4 0 0
3 1 , 2 0 0
0 . 5 0 0
0 . 9 9 8
9 7 . 0
8 8
. 9 0
1 5 2 . 4 0
1 4 2 . 8 8
6 2 8 , 8
0 0
1 7 8 , 0 0 0
1 7 7 . 8 0
8 8 . 9 0
6 0 0 , 2 0 0
7 1 , 0 0 0
4 2 , 3 0 0
6 . 2 1
1 2 . 3 9
5 5 . 2
4
6
5 5 / 8
6 1 5 , 6
0 0
6 2 , 2 0 0
5 1 / 2 F H D S 5 5
7
3 1 / 2
1 , 3 4 9 , 4 0
0
7 4 , 3 0 0
4 4 , 6 0 0
0 . 6 3 1
0 . 8 4 5
8 2 . 1
1 0 1 . 6 0
1 5 2 . 4 0
1 4 2 . 8 8
2 7 3 , 8
0 0
8 4 , 3 0 0
5 1 / 2 F H D S T J
1 7 7 . 8 0
8 8 . 9 0
6 0 0 , 2 0 0
1 0 0 , 7 0 0
6 0 , 4 0 0
7 . 8 3 7
1 0 . 4 9 4
5 5 . 2
4
6
5 5 / 8
6 1 5 , 2
0 0
6 2 , 2 0 0
5 1 / 2 H T 5 5 - 3 7
5
7
4
1 , 0 5 4 , 8 0
0
6 4 , 4 0 0
3 8 , 6 0 0
0 . 6 5 3
0 . 8 4 5
8 2 . 1
1 0 1 . 6 0
1 5 2 . 4 0
1 4 2 . 8 8
2 7 3 , 6
0 0
8 4 , 3 0 0
1 7 7 . 8 0
1 0 1 . 6 0
4 6 9 , 1 0 0
8 7 , 3 0 0
5 2 , 3 0 0
8 . 1 1
1 0 . 4 9
5 7 . 5
4
6
5 5 / 8
6 1 5 , 6
0 0
6 2 , 2 0 0
5 1 / 2 H T 5 5 - 3 7
5
7 3 / 8
4
1 , 0 5 4 , 8 0
0
6 5 , 0 0 0
3 9 , 0 0 0
0 . 6 5 3
0 . 8 7 9
8 5 . 6
1 0 1 . 6 0
1 5 2 . 4 0
1 4 2 . 8 8
2 7 3 , 8
0 0
8 4 , 3 0 0
1 8 7 . 3 3
1 0 1 . 6 0
4 6 9 , 1 0 0
8 8 , 1 0 0
5 2 , 8 0 0
8 . 1 1
1 0 . 9 2
5 7 / 8
6 5 . 4
4
6 3 / 8
6
6 3 9 , 8
0 0
8 2 , 7 0 0
5 7 / 8 X T 5 7
7
4
1 , 1 6 9 , 3 0
0
8 8 , 5 0 0
5 3 , 1 0 0
0 . 6 5 3
1 . 0 0 0
1 4 9 . 2 3
9 7 . 3
1 0 1 . 6 0
1 6 1 . 9 3
1 5 2 . 4 0
2 8 4 , 5
0 0
1 1 2 , 1 0 0
1 7 7 . 8 0
1 0 1 . 6 0
5 2 0 , 1 0 0
1 1 9 , 9 0 0
7 1 , 9 0 0
8 . 1 1
1 2 . 4 2
6 5 / 8
8 6 . 1
4
1 / 2
7 1 / 8
6 3 / 4
1 , 8 5 7 , 4 0 0
2 1 6 , 1 0 0
6 5 / 8 F H
8
4 1 / 2
1 , 5 8 0 , 1 0
0
7 3 , 1 0 0
4 2 , 1 0 0
0 . 8 2 6
1 . 3 1 7
1 6 8 . 2 8
1 2 8 . 1
1 1 4 . 3 0
1 8 0 . 9 8
1 7 1 . 4 5
8 2 6 , 2
0 0
2 9 2 , 9 0 0
2 0 3 . 2 0
1 1 4 . 3 0
7 0 2 , 8 0 0
9 9 , 1 0 0
5 7 , 0 0 0
1 0 . 2 6
1 6 . 3 6
7 3 . 4
5
7 1 / 8
6 3 / 4
1 , 4 8 3 , 7 0 0
1 8 5 , 5 0 0
6 5 / 8 F H
8
5
1 , 2 0 7 , 0 0
0
6 1 , 4 0 0
3 2 , 0 0 0
1 . 0 2 0
1 . 1 2 3
1 0 9 . 2
1 2 7 . 0 0
1 8 0 . 9 8
1 7 1 . 4 5
6 5 9 , 9
0 0
2 5 1 , 5 0 0
2 0 3 . 2 0
1 2 7 . 0 0
5 3 6 , 9 0 0
8 3 , 2 0 0
4 3 , 3 0 0
1 2 . 6 7
1 3 . 9 5
C o n n e c t i o n
T y p e
G R A N T P R I D E C O S P I R A L - W A
T E
H W D P P I P E D I M
E N S I O N A L / M E C H A N I C A L P R O P E R T I E S
N o t e : D r i f t d i a m e t e r = I . D . m i n u s . 1 2 5 i n c h e s .
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TECHNICAL DATA HANDBOOK
RECOMMENDED PRACTICE FOR MILL SLOT AND
GROOVE METHOD OF DRILL STRING IDENTIFICATION
STANDARD WEIGHTHIGH STRENGTH DRILL PIPE
HEAVY WEIGHTHIGH STRENGTH DRILL PIPE
STANDARD
GRADES
Grade
X-95 ................... X
G-105 .................G
S-135 ................. S
V-150 ................. V
DRILL PIPE GRADE CODE
N-80 ................... N
E ......................... E
C-75 ................... C
SymbolSymbolGrade
HIGH STRENGTH
GRADES
HEAVY WEIGHTGRADE E DRILL PIPE
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TECHNICAL DATA HANDBOOK
RECOMMENDED PRACTICE FOR MILL SLOT AND
GROOVE METHOD OF DRILL STRING IDENTIFICATION
SAMPLE MARKINGS AT BASE OF PIN
1 2 3 4 5
ZZ 6 70 N E
1 - Tool Joint Manufacturer's Symbol
ZZ Company
(Fictional for example only)
2 - Month Welded
6 - June
3 - Year Welded
70 - 1970
4 - Pipe Manufacturer's Symbol
N - United States Steel Company
5 - Drill Pipe Grade
E - Grade E75 Drill Pipe
Tool Joint Manufacturer's
Symbol, Month welded, Year welded.
Pipe Manufacturer and Drill Pipe
Grade Symbol shall be stencilled at
the base of pin as shown above.
Pipe Manufacturer symbol and Drill
Pipe Grade symbol applied shall be
as represented by Manufacturer,
Supplier, Owner or User documents
such as mill certification papers or
purchase orders.
TOOL JOINT
MANUFACTURER'S SYMBOL
Refer to the eleventh edition 1993 of
the IADC Drilling Manual* (Section B-1-
9) for list of Tool Joint Manufacturer's
symbols. * Available from: International
Association of Drilling Contractors
(IADC) P.O. Box 4287, Houston, TX
77210
MONTH AND YEAR WELDED
Month Year
1 through 12 Last two digits of year
DRILL PIPE GRADE
Grade Symbol
E75.................................... E
X95.................................... X
G105 ................................. G
S135.................................. S
HEAVY WEIGHT DRILL PIPE (Double Stencil Pipe GradeSymbol)
PIPE MANUFACTURERS
(PIPE MILLS OR PROCESSORS)
ACTIVE INACTIVE
Mill Symbol Mill Symbol
Algoma X Armco A
British Steel Seamless Tubes Ltd B AmericanSeamless AI
Dalmine D B & W W
Kawasaki H CF & I C
Nippon I J & L J
NKK K Lone Star L
Mannesmann M Ohio O
Reynolds Aluminum RA Republic R
Sumitomo S TI Z
Siderca SD Tubemuse TU
Tamsa T Voest VA
US Steel N Wheeling PittsburghP
Vallourec V Youngstown Y
Used U
Processor Symbol
Grant TFW TFW
Omsco OMS
Prideco PI
The "Manufacturer" may be either a pipe mill or processor. See API Spec 5D, Specification for Drill Pipe.
These symbols are provided for pipe manufacturer identification and have been assigned at pipe manufacturer's
requests.Manufacturers included in this list may not be current API Spec 5D licensed pipe manufacturers. A list of current
licensed pipe manufacturers is available in the Composite List of Manufacturers, (Licensed for Use of the API
Monogram.)
Pipe mills may upset and heat treat their own drill pipe, or they may have this done according to their own
specifications. In either case, the mill's assigned symbol should be used on each drill string assembly since they
are the pipe manufacturer.
Pipe processors may buy "green" tubes and upset and heat treat these according to their own specifications.
In this case, the processor's assigned symbol should be used on each drill string assembly since they are the
pipe manufacturer.
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TECHNICAL DATA HANDBOOK
RECOMMENDED PRACTICE FOR MILL SLOT AND
GROOVE METHOD OF DRILL STRING IDENTIFICATION
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TECHNICAL DATA HANDBOOK
RECOMMENDED PRACTICE FOR MILL SLOT AND
GROOVE METHOD OF DRILL STRING IDENTIFICATION
DRILL PIPE WEIGHT CODE
1
Size
(O.D.)
inches
04.85
06.65*
06.85
10.40*
09.50
13.30*
15.50
11.85
14.00*
15.70
13.75
16.60*
20.00
22.82
24.66
25.50
16.25
19.50*
25.60
19.20
21.90*
24.70
25.20*27.70
.190
.280
.217
.362
.254
.368
.449
.262
.330
.380
.271
.337
.430
.500
.550
.575
.296
.362
.500
.304
.361
.415
.330
.362
*Designates standard weight for drill pipe
1
2
1
2
1
2
3
1
2
3
1
2
3
4
5
6
1
2
3
1
2
3
23
2
Nominal
Wt.
Lb. per ft.
3
Wall
Thickness
Inches
4
Weight
Code
Number
2-3/8
2-7/8
3-1/2
4
4-1/2
5
5-1/2
6-5/8
NOTE A: Standard weight Grade E
drill pipe designed by an asterisk (*)
in the drill pipe weight code will
have no groove or milled slot for
identification. Grade E heavy weight
drill pipe will have a milled slot only,
in the center of the tong space.
NOTE B: Groove radius
approximately 3/8 inch. Groove and
milled slot to be 1/4 in. deep on 5-
1/4 in. O.D. and larger tool joints, 3/
16 in. deep on 5 in. O.D. and smaller
tool joints.
NOTE C: Stencil the grade code
symbol and weight code number
corresponding to grade and weightof pipe in milled slot of pin. Stencil
with 1/4 in. high characters so
marking may be read with dril pipe
hanging in elevators.
LPB
= Pin Tong Space Length (See
Table 4.2, Spec 7 of the A.P.I. Drill
Stem Design Eighth Edition, pg. 67).
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TECHNICAL DATA HANDBOOK
Premium Class1 Class 2 Class 3
Two White Bands Yellow Bands Orange Bands
One Center Punch Mark Two Center Punch Marks Three Punch Marks
A. OD Wear Remaining wall not less Remaining wall not less Any imperfections or
Wall than 80% than 70% damages exceeding
CLASS 2
B. Dents and mashes Diameter reduction not Diameter reduction not
over 3% of OD over 4% of OD
Crushing, necking Diameter reduction not Diameter reduction not
over 3% of OD over 4% of OD
C. Slip area
Mechanical damage Depth not to exceed 10% Depth not to exceed 20%
Cuts2, gouges
2 of the average adjacent of the average adjacent
wall5
wall5
D. Stress induced
diameter variations
1. Stretched Diameter reduction not Diameter reduction not
over 3% of OD over 4% of OD
2. String shot Diameter increase not Diameter increase not
over 3% of OD over 4% of ODE. Corrosion, cuts, and gouges
1. Corrosion Remaining wall not less Remaining wall not less
that 80% than 70%
2. Cuts and gouges
Longitudinal Remaining wall not less Remaining wall not less
than 80% than 70%
Transverse Remaining wall not less Remaining wall not less
than 80% than 80%
F. Cracks3 None None None
A. Corrosive pitting Remaining wall not less Remaining wall not less
Wall than 80% measured from than 70% measured from
base of deepest pit base of deepest pit
B. Erosion and wear Remaining wall not less Remaining wall not less
Wall than 80% than 70%
C. Cracks3 None None
CLASSIFICATION OF USED DRILL PIPE All sizes, wei hts and rades. Nominal dimension is basis for all calculations.
Pipe Condition
EXTERIOR CONDITIONS4
INTERIOR CONDITIONS
1The premium classification is recommended for service where it is anticipated that torsional or tensile limits for Class 2
drill pipe and tubing Class shall be identified with two white bands, plus one center punch mark on the 35 degree or 18
degree shoulder of the pin end tool joint.2
Remaining wall shall not be less than the value in I.E.2, defects may be ground out providing the remaining wall is notreduced below the value shown in I.E.1 of this table and such grinding to be approximately faired into outer contour of
the pipe.3In any classification where cracks or washouts appear, the pipe will be identified with the red band and considered unfit
for further drilling service.4 An API Recommended Practice 7G inspection cannot be made with drill pipe rubber on the pipe5 Average adjacent wall is determined by measuring the wall thickness on each side of the cut or gouge adjacent to the
deepest penetration.
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TECHNICAL DATA HANDBOOK
D R I L L P I P E A N D T O O L J O I N T C O
L O R C O D E I D E N T I F I C A T I O N
T o o l J o i n t
A n d D r i l l N u m b e r A n d C o l o r P i p e C l a s s i f i c a t i o n o f
B a n d s
T o o l J o i n t C o n d i t i o n
C o l o r O f B a n
d s
C l a s s
1 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .
. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .
O n e
W h i t e
P r e m
i u m
C l a s s . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .
. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . T
w o
W h i t e
C l a s s
2 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .
. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .
O n e
Y e l l o
w
C l a s s
3 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .
. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .
O n e
B l u
e
C l a s s
4 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .
O n e
G r e e
n
S c r a p . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .
O n e
R e
d
S c r a p
O r
S h o p
R e p a
i r a b l e . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .
R e
d
F i e l d R e p a
i r a b l e
. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .
G r e e n
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TECHNICAL DATA HANDBOOK
BLANK