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SY/T 5037-2012   Submerged Arc-Welded Steel Pipe for Common Fluid Service Pipeline (English Version)
Standard No.: SY/T 5037-2012 Status:superseded remind me the status change

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Target Language:English File Format:PDF
Word Count: 6000 words Translation Price(USD):180.0 remind me the price change

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Implemented on:2012-12-1 Delivery: via email in 1 business day

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2019-03-01 ,2019-3-1,2012-12-1,9E962D7A4EA6BBD71412780291715
Standard No.: SY/T 5037-2012
English Name: Submerged Arc-Welded Steel Pipe for Common Fluid Service Pipeline
Chinese Name: 普通流体输送管道用埋弧焊钢管
Professional Classification: SY    Professional Standard - Oil & Gas
Source Content Issued by: National Energy Administration
Issued on: 2012-8-23
Implemented on: 2012-12-1
Status: superseded
Superseded by:SY/T 5037-2018 Submerged arc-welded steel pipe for common fluid service pipeline
Superseded on:2019-3-1
Abolished on:2019-03-01
Superseding:SY/T 5037-2000 Spiral Submerged Arc-Welded Steel Pipe for Pipelines for Low Pressure Fluid Service
Target Language: English
File Format: PDF
Word Count: 6000 words
Translation Price(USD): 180.0
Delivery: via email in 1 business day
1 Scope This standard specifies the dimension, appearance, mass, performance requirements, test method, inspection rules, coating, marking and quality certificate of submerged arc-welded steel pipe for common fluid service pipeline (including longitudinally submerged arc welding (LSAW) steel pipe and spirally submerged arc welding (SSAW) steel pipe, hereinafter referred to as "steel pipe"). This standard is applicable to steel pipes used for conveying pipeline for such common fluids as water, sewage, air and heating steam and steel pipes used for conveying pipeline for other fluids with similar requirements. Note: Steel pipe delivery is carried out by either theoretical mass or actual mass (weighing), which shall be indicated in the Order Contract (see 4.6.2 for details). 2 Normative References The following documents for the application of this document are essential. Any dated reference, just dated edition applies to this document. For undated references, the latest edition (including any amendments) applies to this document. GB/T 222 Permissible Tolerances for Chemical Composition of Steel Products GB/T 223 Chemical Analysis of Iron, Steel and Alloy GB/T 241 Metal Materials - Tube - Hydrostatic Pressure Test GB/T 700 Carbon Structural Steels GB/T 2651 Tensile Test Method on Welded Joints GB/T 3323 Radiographic Examination of Fusion Welded Joints in Metallic Materials GB/T 4336 Standard Test Method for Spark Discharge Atomic Emission Spectrometric Analysis of Carbon and Low-alloy Steel (Routine Method) GB/T 9445 Non-destructive Testing - Qualification and Certification of NDT Personnel GB/T 23901.1 Non-destructive Testing - Image Quality of Radiographs - Part 1: Image Quality Indicators (Wire Type) - Determination of Image Quality Value (GB/T 23901.1-2009, ISO 19232-1: 2004, IDT) SY/T 6475 Dimensions and Masses per Unit Length of Steel Pipe for Petroleum and natural Gas ISO 10893-6 Non-destructive Testing of Steel Tubes - Part 6: Radiographic Testing of the Weld Seam of Welded Steel Tubes for the Detection of Imperfections ISO 10893-7 Non-destructive Testing of Steel Tubes - Part 7: Digital Radiographic Testing of the Weld Seam of Welded Steel Tubes for the detection of Imperfections ISO 10893-8 Non-destructive Testing of Steel Tubes - Part 8: Automated Ultrasonic Testing of Seamless and Welded Steel Tubes for the Detection of Laminar Imperfections ISO 10893-11 Non-destructive Testing of Steel Tubes - Part 11: Automated Ultrasonic Testing of the Weld Seam of Welded Steel Tubes for the Detection of Longitudinal and/or Transverse Imperfections 3 Symbol For the purposes of this standard, the following symbols apply. D——the nominal outer diameter of steel pipe, mm; t——the nominal wall thickness of steel pipe, mm; M——the mass per unit length of steel pipe, kg/m; p——the hydrostatic test pressure, MPa; S——the hydrostatic test hoop stress, MPa; H——the weld reinforcement, mm; L——the length of single steel pipe, mm.
Foreword i 1 Scope 2 Normative References 3 Symbol 4 Dimension, Appearance and Mass 4.1 Outer Diameter and Wall Thickness 4.2 Length 4.3 Ovality 4.4 Straightness 4.5 Pipe End 4.6 Mass 5 Technical Requirements 5.1 Manufacturing Method 5.2 Steel Grade 5.3 Chemical Component 5.4 Mechanical Performance 5.5 Hydrostatic Test 5.6 Non-destructive Testing 5.7 Appearance Quality 5.8 Other Surface Defect and Imperfection 5.9 Treatment of Imperfection and Defect 5.10 Regrinding and Repair Requirements 6 Inspection and Test Method 6.1 Chemical Component 6.2 Tensile Test 6.3 Hydrostatic Test 6.4 Non-destructive Testing 7 Inspection Rules 7.1 Surface and Dimensional Inspection 7.2 Chemical Composition of Base Material 7.3 Tensile Test of Welded Joints 7.4 Non-destructive Testing 8 Coating, Marking and Quality Certificate 8.1 Coating 8.2 Marking 8.3 Quality Certificate Appendix A (Informative) X-ray Inspection
Referred in SY/T 5037-2012:
* GB/T 222-2006 Permissible Tolerances for Chemical Composition of Steel Products
* GB/T 223-1994
* GB/T 241-2007 Metal materials—Tube—Hydrostatic pressure test
* GB/T 700-2006 Carbon structural steels
* GB/T 2651-2008 Tensile test method on welded joints
* GB/T 3323-2005 Radiographic examination of fusion welded joints in metallic materials
* GB/T 4336-2016 Carbon and low-alloy steel―Determination of multi-element contents―Spark discharge atomic emission spectrometric method (routine method)
* GB/T 9445-2015 Non-destructive testing―Qualification and certification of NDT personnel
* GB/T 23901.1-2009 Non-destructive testing—Image quality of radiographs—Part 1:Image quality indicators (wire type)—Determination of image quality value
* SY/T 6475-2000 Dimensions and masses per unit length of steel pipe for petroleum and natural gas
SY/T 5037-2012 is referred in:
* GB 16912-2008 Safety Technical Regulation for Oxygen and Relative Gases Produced with Cryogenic Method
* GB 16912-2008 Safety Technical Regulation for Oxygen and Relative Gases Produced with Cryogenic Method
* DL/T 5366-2006 Technical Code for Stress Calculating of Steam/water
* CJ/T 120-2008 Coating plastic steel pipe for water supply
* GB/T 31032-2014 Welding and acceptance standard for steel pipings and pipelines
* DL/T 680-2015 Specification for electric power industry wear-resistant pipes
*SY/T 4103-2006 Welding and acceptance standard for steel Pipings and pipelines
Code of China
Standard
SY/T 5037-2012  Submerged Arc-Welded Steel Pipe for Common Fluid Service Pipeline (English Version)
Standard No.SY/T 5037-2012
Statussuperseded
LanguageEnglish
File FormatPDF
Word Count6000 words
Price(USD)180.0
Implemented on2012-12-1
Deliveryvia email in 1 business day
Detail of SY/T 5037-2012
Standard No.
SY/T 5037-2012
English Name
Submerged Arc-Welded Steel Pipe for Common Fluid Service Pipeline
Chinese Name
普通流体输送管道用埋弧焊钢管
Chinese Classification
Professional Classification
SY
ICS Classification
Issued by
National Energy Administration
Issued on
2012-8-23
Implemented on
2012-12-1
Status
superseded
Superseded by
SY/T 5037-2018 Submerged arc-welded steel pipe for common fluid service pipeline
Superseded on
2019-3-1
Abolished on
2019-03-01
Superseding
SY/T 5037-2000 Spiral Submerged Arc-Welded Steel Pipe for Pipelines for Low Pressure Fluid Service
Language
English
File Format
PDF
Word Count
6000 words
Price(USD)
180.0
Keywords
SY/T 5037-2012, SY 5037-2012, SYT 5037-2012, SY/T5037-2012, SY/T 5037, SY/T5037, SY5037-2012, SY 5037, SY5037, SYT5037-2012, SYT 5037, SYT5037
Introduction of SY/T 5037-2012
1 Scope This standard specifies the dimension, appearance, mass, performance requirements, test method, inspection rules, coating, marking and quality certificate of submerged arc-welded steel pipe for common fluid service pipeline (including longitudinally submerged arc welding (LSAW) steel pipe and spirally submerged arc welding (SSAW) steel pipe, hereinafter referred to as "steel pipe"). This standard is applicable to steel pipes used for conveying pipeline for such common fluids as water, sewage, air and heating steam and steel pipes used for conveying pipeline for other fluids with similar requirements. Note: Steel pipe delivery is carried out by either theoretical mass or actual mass (weighing), which shall be indicated in the Order Contract (see 4.6.2 for details). 2 Normative References The following documents for the application of this document are essential. Any dated reference, just dated edition applies to this document. For undated references, the latest edition (including any amendments) applies to this document. GB/T 222 Permissible Tolerances for Chemical Composition of Steel Products GB/T 223 Chemical Analysis of Iron, Steel and Alloy GB/T 241 Metal Materials - Tube - Hydrostatic Pressure Test GB/T 700 Carbon Structural Steels GB/T 2651 Tensile Test Method on Welded Joints GB/T 3323 Radiographic Examination of Fusion Welded Joints in Metallic Materials GB/T 4336 Standard Test Method for Spark Discharge Atomic Emission Spectrometric Analysis of Carbon and Low-alloy Steel (Routine Method) GB/T 9445 Non-destructive Testing - Qualification and Certification of NDT Personnel GB/T 23901.1 Non-destructive Testing - Image Quality of Radiographs - Part 1: Image Quality Indicators (Wire Type) - Determination of Image Quality Value (GB/T 23901.1-2009, ISO 19232-1: 2004, IDT) SY/T 6475 Dimensions and Masses per Unit Length of Steel Pipe for Petroleum and natural Gas ISO 10893-6 Non-destructive Testing of Steel Tubes - Part 6: Radiographic Testing of the Weld Seam of Welded Steel Tubes for the Detection of Imperfections ISO 10893-7 Non-destructive Testing of Steel Tubes - Part 7: Digital Radiographic Testing of the Weld Seam of Welded Steel Tubes for the detection of Imperfections ISO 10893-8 Non-destructive Testing of Steel Tubes - Part 8: Automated Ultrasonic Testing of Seamless and Welded Steel Tubes for the Detection of Laminar Imperfections ISO 10893-11 Non-destructive Testing of Steel Tubes - Part 11: Automated Ultrasonic Testing of the Weld Seam of Welded Steel Tubes for the Detection of Longitudinal and/or Transverse Imperfections 3 Symbol For the purposes of this standard, the following symbols apply. D——the nominal outer diameter of steel pipe, mm; t——the nominal wall thickness of steel pipe, mm; M——the mass per unit length of steel pipe, kg/m; p——the hydrostatic test pressure, MPa; S——the hydrostatic test hoop stress, MPa; H——the weld reinforcement, mm; L——the length of single steel pipe, mm.
Contents of SY/T 5037-2012
Foreword i 1 Scope 2 Normative References 3 Symbol 4 Dimension, Appearance and Mass 4.1 Outer Diameter and Wall Thickness 4.2 Length 4.3 Ovality 4.4 Straightness 4.5 Pipe End 4.6 Mass 5 Technical Requirements 5.1 Manufacturing Method 5.2 Steel Grade 5.3 Chemical Component 5.4 Mechanical Performance 5.5 Hydrostatic Test 5.6 Non-destructive Testing 5.7 Appearance Quality 5.8 Other Surface Defect and Imperfection 5.9 Treatment of Imperfection and Defect 5.10 Regrinding and Repair Requirements 6 Inspection and Test Method 6.1 Chemical Component 6.2 Tensile Test 6.3 Hydrostatic Test 6.4 Non-destructive Testing 7 Inspection Rules 7.1 Surface and Dimensional Inspection 7.2 Chemical Composition of Base Material 7.3 Tensile Test of Welded Joints 7.4 Non-destructive Testing 8 Coating, Marking and Quality Certificate 8.1 Coating 8.2 Marking 8.3 Quality Certificate Appendix A (Informative) X-ray Inspection
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