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GB/T 43303-2023 PDF English

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GB/T 43303-2023: Petroleum drilling and production equipment - Sucker rod
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GB/T 43303-2023English1769 Add to Cart 10 days [Need to translate] Petroleum drilling and production equipment - Sucker rod

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Basic data

Standard ID GB/T 43303-2023 (GB/T43303-2023)
Description (Translated English) Petroleum drilling and production equipment - Sucker rod
Sector / Industry National Standard (Recommended)
Classification of Chinese Standard E92
Classification of International Standard 75.180.10
Word Count Estimation 88,836
Date of Issue 2023-11-27
Date of Implementation 2024-06-01
Issuing agency(ies) State Administration for Market Regulation, China National Standardization Administration

GB/T 43303-2023: Petroleum drilling and production equipment - Sucker rod


---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.
ICS 75:180:10 CCSE92 National Standards of People's Republic of China Oil and gas drilling equipment sucker rod Published on 2023-11-27 2024-06-01 Implementation State Administration for Market Regulation Released by the National Standardization Administration Committee

Table of contents

Preface III 1 Scope 1 2 Normative references 1 3 Terms and Definitions 2 4 Symbols and abbreviations 4 4:1 Symbol 4 4:2 Abbreviations 6 5 Model 7 5:1 Model representation methods for steel sucker rods, short rods, smooth rods, and fiber reinforced plastic (FRP) sucker rods, short rods, and weighted rods 7 5:2 Method of indicating model number of couplings and reducing couplings 8 6 General requirements 9 6:1 Functional requirements 9 6:2 Design requirements 9 6:3 Material requirements10 7 Technical requirements 10 7:1 Steel sucker rods and short rods10 7:2 Polished rod 19 7:3 Couplings and reducing couplings 26 7:4 FRP Sucker Rod and Short Rod 33 7:5 Weighted rod 36 8 Manufacturing requirements 38 8:1 Quality Control38 8:2 Records 39 8:3 Process requiring confirmation39 9 Test methods 40 9:1 Steel sucker rods and short rods 40 9:2 Polished Rod 45 9:3 Couplings and reducing couplings 49 9:4 FRP Sucker Rod and Short Rod 55 9:5 Weighted rod 57 10 Inspection Rules 59 10:1 Inspection classification 59 10:2 Inspection items 59 10:3 Batch rules and sampling plans 62 10:4 Determination Rule 62 11 Marking, packaging, transportation and storage 63 11:1 Steel sucker rods and short rods 63 11:2 Polished rod 65 11:3 Couplings and reducing couplings 65 11:4 FRP Sucker Rod and Short Rod 67 11:5 Weighted rod 68 Appendix A (informative) Typical examples of discontinuity 70

Foreword

This document complies with the provisions of GB/T 1:1-2020 "Standardization Work Guidelines Part 1: Structure and Drafting Rules of Standardization Documents" Drafting: Please note that some content in this document may be subject to patents: The publisher of this document assumes no responsibility for identifying patents: This document is proposed and coordinated by the National Petroleum Drilling Equipment and Tools Standardization Technical Committee (SAC/TC96): This document was drafted by: Daqing Oilfield Co:, Ltd: Oil Production Engineering Research Institute, Tieling Zhongyou Machinery Equipment Manufacturing Co:, Ltd:, China Petroleum Corporation Exploration and Development Research Institute, China National Petroleum Corporation Yumen Oilfield Branch Machinery Factory, Sinopec Youjianghan Machinery Research Institute Co:, Ltd:, Jiuhuan Machinery Co:, Ltd:, Daqing Longxing Petroleum Machinery Co:, Ltd:, Bohai Petroleum Equipment (Tianjin) Tianjin) New Century Machinery Manufacturing Co:, Ltd:, Hunan Nafei New Material Technology Co:, Ltd:, Inner Mongolia First Machinery Group Dadi Petroleum Machinery Co:, Ltd: Limited liability company, Dongying Sanhe Petroleum Equipment Co:, Ltd: The main drafters of this document: Zheng Gui, Liu Lianwei, Cai Meng, Ma Qianhui, Chen Junfeng, Liu Xiangbin, Li Hongwei, Song Xingliang, Ma Guanghe, Wang Hu, Shi Jiaming, Zhang Juguo, Wang Guiquan, Yu Haitao, Zhang Naiyuan, Li Siyuan, Ge Lijun, Sun Liangwei, Li Chaoming, Zhang Shiqi, Lei Tongxin, Li Jiange, Wang Lushi, Zhang Guangchao, Cao Han, Pang Yapu, Li Jianlong, Li Haotian, Wang Huaikui, Wang Yuhai, Wang Shujie: Oil and gas drilling equipment sucker rod

1 Scope

This document specifies steel sucker rods and short rods, polished rods, couplings and reducing couplings, and fiber-reinforced plastic sucker rods in rod pumping systems: and models, general requirements, technical requirements, manufacturing requirements, test methods, inspection rules, marking, packaging, transportation and storage of short poles and weighted poles: This document applies to the design of steel sucker rods and short rods, polished rods, couplings and reducing couplings, fiber reinforced plastic sucker rods and short rods, and weighted rods: Design, manufacture and inspection:

2 Normative reference documents

The contents of the following documents constitute essential provisions of this document through normative references in the text: Among them, the dated quotations files, only the version corresponding to that date applies to this document: For undated referenced documents, the latest version (including all amendments) applies to this document: GB/T 223:5 Determination of acid-soluble silicon and total silicon content in iron and steel Reduced silicomolybdate spectrophotometry GB/T 223:9 Determination of aluminum content in steel and alloys Chromium Azure S spectrophotometry GB/T 223:11 Determination of chromium content in steel and alloys by visual titration or potentiometric titration method GB/T 223:13 Chemical analysis methods for steel and alloys Determination of vanadium content by ferrous ammonium sulfate titration method GB/T 223:16 Chemical analysis methods for steel and alloys Determination of titanium content by photochromic acid photometry GB/T 223:19 Chemical analysis method for steel and alloys - Determination of copper content by new cuproline-chloroform extraction photometry GB/T 223:23 Determination of nickel content in steel and alloys by diacetyl oxime spectrophotometry GB/T 223:26 Determination of molybdenum content in steel and alloys Thiocyanate spectrophotometry GB/T 223:40 Determination of niobium content in steel and alloys by chlorosulfenol S spectrophotometry GB/T 223:43 Determination of tungsten content in steel and alloys by gravimetric and spectrophotometric methods GB/T 223:58 Methods for chemical analysis of steel and alloys - Determination of manganese content by sodium arsenite-sodium nitrite titration method GB/T 223:59 Determination of phosphorus content in steel and alloys bismuth phosphorus molybdenum blue spectrophotometry and antimony phosphorus molybdenum blue spectrophotometry GB/T 223:68 Methods for chemical analysis of steel and alloys - Determination of sulfur content by potassium iodate titration after combustion in tube furnaces GB/T 223:69 Determination of carbon content in steel and alloys - Combustion gas volume method in tubular furnaces GB/T 223:78 Methods for chemical analysis of steel and alloys - Curcumin direct photometric method for determination of boron content GB/T 228:1 Tensile testing of metallic materials Part 1 Room temperature test method GB/T 229 Charpy pendulum impact test method for metal materials GB/T 230:1 Rockwell hardness test of metallic materials Part 1: Test methods GB/T 2577 Test method for resin content of glass fiber reinforced plastics GB/T 2828:1 Enumeration sampling inspection procedures Part 1: Batch-by-batch inspection sampling plan retrieved by acceptance quality limit (AQL) GB/T 3075 Axial force control method for fatigue testing of metallic materials GB/T 3854 Barcol hardness test method for reinforced plastics GB/T 4336 Determination of multi-element content in carbon steel and medium-low alloy steel Spark discharge atomic emission spectrometry (conventional method) GB/T 4340:1 Vickers hardness test of metallic materials Part 1: Test methods GB/T 5270 Review of test methods for adhesion strength of electrodeposited and chemically deposited metal coating layers on metal substrates GB/T 5617 Determination of effective hardened layer depth after induction quenching or flame quenching of steel
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