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GB/T 35067-2018 English PDF

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GB/T 35067-2018: Corrosion resistant alloy bimetal bends for petroleum and natural gas industries
Status: Valid
Standard IDUSDBUY PDFLead-DaysStandard Title (Description)Status
GB/T 35067-2018579 Add to Cart 5 days Corrosion resistant alloy bimetal bends for petroleum and natural gas industries Valid

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Basic data

Standard ID: GB/T 35067-2018 (GB/T35067-2018)
Description (Translated English): Corrosion resistant alloy bimetal bends for petroleum and natural gas industries
Sector / Industry: National Standard (Recommended)
Classification of Chinese Standard: E16;J15
Classification of International Standard: 75.200; 23.040.01
Word Count Estimation: 29,261
Date of Issue: 2018-05-14
Date of Implementation: 2018-12-01
Regulation (derived from): National Standards Announcement No. 6 of 2018
Issuing agency(ies): State Administration for Market Regulation, China National Standardization Administration

GB/T 35067-2018: Corrosion resistant alloy bimetal bends for petroleum and natural gas industries

---This is a DRAFT version for illustration, not a final translation. Full copy of true-PDF in English version (including equations, symbols, images, flow-chart, tables, and figures etc.) will be manually/carefully translated upon your order.
(Corrosion-resistant alloy compound bend pipe for oil and gas industry) ICS 75.200; 23.040.01 E16; J15 National Standards of People's Republic of China Corrosion-resistant alloy compound elbow for oil and gas industry Published on.2018-05-14 2018-12-01 implementation State market supervision and administration China National Standardization Administration issued

Content

Foreword III 1 Scope 1 2 Normative references 1 3 Terms and definitions, symbols, codes and abbreviations 2 3.1 Terms and Definitions 2 3.2 Symbols and Codes 3 3.3 Abbreviations 4 4 Information provided by the purchaser 4 4.1 Basic Information 4 4.2 Supplementary information 5 4.3 Mother tube information 5 5 Design 6 6 Dimensions & Tolerances 6 6.1 Wall thickness 6 6.2 Inner diameter 6 6.3 Wall thickness reduction rate 6 6.4 Ellipticity 7 6.5 Bending angle and bending radius 7 6.6 Bend flatness 7 6.7 End face verticality 8 6.8 End face flatness 8 6.9 Straight pipe length 8 7 Material 8 7.1 Grassroots 8 7.2 Inner coating 9 7.3 Composite board 9 7.4 Mother tube 9 8 Manufacturing 9 8.1 General provisions 9 8.2 Welding 9 8.3 Heat treatment 9 8.4 Cold calibration circle after bending 10 8.5 pipe end 10 8.6 Surface treatment 10 8.7 Process Evaluation 10 9 Technical requirements and test methods 11 9.1 General provisions 11 9.2 Geometry 12 9.3 Chemical composition 13 9.4 Tensile properties 13 9.5 CVN impact toughness 13 9.6 Weld Guide Bending 15 9.7 Full-section Vickers hardness 15 9.8 Surface hardness 16 9.9 Macroscopic inspection of welds and metallographic examination 17 9.10 Inner coating shear bond strength 17 9.11 Intergranular corrosion test 18 9.12 Corrosion test of base material 18 9.13 Inner cladding material corrosion test 18 9.14 Hydrostatic test and design verification test 18 10 Nondestructive testing 18 11 Surface quality, defects and defects handling 18 11.1 Surface quality 18 11.2 Defects and Defects Processing 19 12 signs 19 12.1 Sign method 19 12.2 Marking position 19 12.3 Mark content 19 13 Transportation and protection 20 14 file 20 Appendix A (Normative) Manufacturing Process Assessment 21 Appendix B (informative) Composite bend test and test sample sampling position 23 Reference 25

Foreword

This standard was drafted in accordance with the rules given in GB/T 1.1-2009. Please note that some of the contents of this document may involve patents. The issuing organization of this document is not responsible for identifying these patents. This standard is proposed and managed by the National Oil and Gas Standardization Technical Committee (SAC/TC355). This standard was drafted. China Petroleum and Natural Gas Corporation Petroleum Pipeline Engineering Technology Research Institute, China National Petroleum Corporation Tarim Oilfield Branch, China Petroleum & Chemical Corporation Northwest Oilfield Branch, China Petroleum Engineering Construction Co., Ltd. Southwest Branch Division, Xi'an Xiangyang Aerospace Materials Co., Ltd., Zhangzhou Longtaidi Pipeline Technology Co., Ltd., Zhengzhou Wanda Heavy Industry Co., Ltd., Hebei Bohai Nuclear Equipment Technology Co., Ltd., Hebei Huizhong Pipeline Equipment Co., Ltd. The main drafters of this standard. Wei Bin, Li Weiwei, Fang Wei, Li Fagen, Li Houbu, Zhao Xinwei, Qin Changyi, Li Xun, Wang Fushan, Chang Zeliang, Yang Dongming, Yang Zhiyong, Jiang Fang, Li Huajun, Wang Chunjian, Zhang Fufeng, Ren Baojian, Meng Qingyun, Zhao Weixing, Zhang Meng, Liu Yinglai. Corrosion-resistant alloy compound elbow for oil and gas industry

1 Scope

This standard stipulates that the oil and gas industry pipeline transportation system uses the nominal diameter DN150~DN800 and the bending radius R≥5D to resist corrosion. Design, geometry, materials, manufacturing processes, technical requirements and inspection methods, NDT, surface quality and defect repair of etched alloy composite elbows, Basic requirements for signs, transportation and protection. This standard applies to the transportation pipelines in the oil and gas industry and the process pipelines to transport oil and natural gas containing corrosive media. Corrosion-resistant alloy composite elbows for single-phase or multi-phase fluids such as water, and other fields can also be used.

2 Normative references

The following documents are indispensable for the application of this document. For dated references, only dated versions apply to this article. Pieces. For undated references, the latest edition (including all amendments) applies to this document. GB/T 228.1 tensile testing of metallic materials - Part 1 GB/T 228.2 tensile testing of metallic materials - Part 2. GB/T 229 metal material Charpy pendulum impact test method GB/T 232 metal material bending test method GB/T 4340.1 Vickers hardness test for metallic materials - Part 1. Test methods GB/T 6394 method for determination of average grain size of metals GB/T 6396 composite steel plate mechanical and process performance test method GB/T 8923.1-2011.Determination of surface cleanliness of steels before coatings -- Part 1 . uncoated Corrosion grade and treatment grade of the steel surface and the surface of the steel after the original coating is completely removed GB/T 10561 steel - Determination of non-metallic inclusions - Standards GB/T 17394.1 Test methods for hardness of metallic materials - Part 1 . Test methods GB/T 17600.1 Elongation of steel - Part 1. Carbon steel and low alloy steel GB/T 29168.1 Induction heating bends, fittings and flanges for pipelines in the oil and gas industry - Part 1 Heating elbow GB 50251 gas pipeline engineering design specification GB 50253 Oil Pipeline Engineering Design Specification GB/T 35072-2018 Corrosion-resistant alloy composite pipe fittings for oil and gas industry NB/T 47013.7 Non-destructive testing of pressure equipment - Part 7. Visual inspection NB/T 47014 Pressure welding equipment welding process evaluation NB/T 47015 Pressure Vessel Welding Procedure SY/T 5257 steel induction heating elbow for oil and gas transmission TSGZ6002 special equipment welding operator assessment rules ISO 15156-1 - Petroleum and natural gas industries - Materials for use in H2S - Part 1 General principles of choice (Petroleum and naturalgasindustries-Materialsforusein H2S-containing environmentsinoilandgasproduction-Part 1.Generalprinciplesforselectionofcracking-resistant Materials)
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