OCTG 8.125" 35.5# 17CR 125 min KSI SLF

OCTG 8.125" 35.5# 17CR 125 min KSI SLF

OCTG 8.125" 35.5# 17CR 125 min KSI SLF ... view pipe body technical properties, alloy details, connection information, and nominal data.

Technical Overview

OD

8.125"

#/FT

35.5 LB

Wall

0.42"

ID

7.285"

Min Yield

125 KSI

Drift

7.16"

Pipe Facts

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Pipe Body Technical Properties

Size
Nominal OD
8.125 inches
Nominal ID
7.285 inches
Nominal Wall Thickness
0.420 inches
Drift
7.160 inches
Special Drift
--
Strength
125 KSI
Minimum Yield Strength
135 KSI
Minimum Ultimate Tensile Strength
6,440 PSI
Collapse Pressure
11,310 PSI
Internal / Burst Pressure
Disclaimer: The burst and collapse figures displayed are based on the API dimension tolerance of 87.5% of nominal wall thickness. Note that martensitic, duplex, super duplex, and nickel alloys often have tighter dimensional tolerances, therefore, increased strength ratings. The properties do not factor connection performance ratings. If your application requires more information ratings, please contact our technical services team, and we happily assist you.

Alloy Details

Alloy

17CR

Family

Martensitic Stainless

Corrosion Resistance Level

Mild

Description

17 Chrome is a quenched and tempered martensitic-ferritic stainless steel intended for high pressure, high temperature (HPHT) wells where high strength OCTG is required. In addition to extending the temperature range, 17 Chrome provides improved performance compared to the 13 Chrome Alloys in chloride and sweet (CO2) environments. 17Cr-125 is not recommended for sour service.

Elemental Composition

El.
Min:
Max:
C
×
0.03%
Cr
16%
18%
Ni
4%
5.5%
Mo
2%
3%
Cu
2%
3%
V
×
0.1%
Fe
70.37%
76%
17CRS-ALLOY-GUIDE.pdf
PDF
17-Chrome-Datasheet.pdf
PDF

Connection Details

Name

SLF

Licensee

Hunting

Category

Premium

Thread Type

--

Description

--

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PipeFacts by PipeSearch is a multi-stage process that utilizes proprietary software to manage a sequence of QA/QC steps in the evaluation of OCTG. It is designed to bring transparency, integrity, and consistency to the evaluation of tubulars no matter the location of the pipe.
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