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GB/T 40403-2021 English PDF

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GB/T 40403-2021: Corrosion of metals and alloys - Methodology for determining the resistance of metals to stress corrosion cracking using the four-point bend method
Status: Valid
Standard IDUSDBUY PDFLead-DaysStandard Title (Description)Status
GB/T 40403-2021334 Add to Cart 4 days Corrosion of metals and alloys - Methodology for determining the resistance of metals to stress corrosion cracking using the four-point bend method Valid

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Basic data

Standard ID: GB/T 40403-2021 (GB/T40403-2021)
Description (Translated English): Corrosion of metals and alloys - Methodology for determining the resistance of metals to stress corrosion cracking using the four-point bend method
Sector / Industry: National Standard (Recommended)
Classification of Chinese Standard: H25
Word Count Estimation: 18,113
Issuing agency(ies): State Administration for Market Regulation, China National Standardization Administration

GB/T 40403-2021: Corrosion of metals and alloys - Methodology for determining the resistance of metals to stress corrosion cracking using the four-point bend method


---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 of metals and alloys - Methodology for determining the resistance of metals to stress corrosion cracking using the four-point bend method ICS 77.060 CCSH25 National Standards of People's Republic of China The corrosion of metals and alloys is measured by the four-point bending method Method for resisting stress corrosion cracking of metal bendmethod (ISO 16540.2015, IDT) Released on 2021-08-20 2022-03-01 implementation State Administration of Market Supervision and Administration Issued by the National Standardization Management Committee

Foreword

This document is in accordance with the provisions of GB/T 1.1-2020 "Guidelines for Standardization Work Part 1.Structure and Drafting Rules of Standardization Documents" Drafting. The translation method used in this document is equivalent to ISO 16540.2015 ``Corrosion of metals and alloys using four-point bending method to determine the stress resistance of metals Methods of Corrosion Cracking." The Chinese documents that have consistent correspondence with the normatively cited international documents in this document are as follows. ---GB/T 16545-2015 Corrosion of metals and alloys. Removal of corrosion products on corrosion samples (ISO 8407.2009, IDT). This document was proposed by the China Iron and Steel Association. This document is under the jurisdiction of the National Steel Standardization Technical Committee (SAC/TC183). Drafting organizations of this document. Anke Engineering Technology Research Institute (Beijing) Co., Ltd., An Gong Corrosion Testing Laboratory Technology (Wuxi) Co., Ltd. Company, Metallurgical Industry Information Standards Research Institute, Pabo Testing Technology Service Co., Ltd., National Standard (Beijing) Inspection and Certification Co., Ltd., CRRC Qingdao Fourth Fang Locomotive and Rolling Stock Co., Ltd., University of Science and Technology Beijing. The main drafters of this document. Wang Xiuyun, Xue Junpeng, Hou Jie, Zhang Lei, Fan Zhigang, Cao Bingliang, Zhang Zhiyi, Tian Zijian, Li Xiaogang, Yang Zhiwen, Fan Xuehua, Zhai Xiaowei, Wu Shaoquan, Sun Xiaoguang, Sun Menghan, Du Cuiwei, Chen Yingfeng. The corrosion of metals and alloys is measured by the four-point bending method Method for resisting stress corrosion cracking of metal

1 Scope

This document provides a four-point bending test guide for evaluating the stress corrosion resistance of metals including carbon steel, low-alloy steel and corrosion-resistant alloys Cracking performance. This document gives test guidance for base metals and welds, including those that are applicable to stress-strain behaviors where there is no obvious and obvious buckling. Test procedures for serving metal. This document is a general method for four-point bending test. According to relevant standards.

2 Normative references

The contents of the following documents constitute the indispensable clauses of this document through normative references in the text. Among them, dated quotations Only the version corresponding to that date is applicable to this document; for undated reference documents, the latest version (including all amendments) is applicable to This document. ISO 8407 Corrosion of metals and alloys. Removal of corrosion products in test samples (Corrosionofmetalsand aloys-Removalofcorrosionproductsfromcorrosiontestspecimens)

3 Terms and definitions

The following terms and definitions apply to this document. 3.1 Corrosion resistance alloy; CRA In the environment where carbon steel can corrode, it is an alloy resistant to general corrosion and local corrosion. 3.2 Heat affected zone heataffectedzone;HAZ In the process of welding or cutting, the part of the base metal that has not melted but the structure and properties have changed due to heat. 3.3 Soft zone cracking; SZC When steel contains a local "soft zone" with low yield strength and is exposed to an environment containing H2S under stress, a type of sulfur that may occur Forms of chemical stress cracking. Note. Under the service load, the soft zone may yield and accumulate plastic deformation locally, increasing the cracking sensitivity of the anti-cracking material. These soft areas are usually associated with carbon steel The weld is related.

4 Test principle

The four-point bending test is a constant displacement test in which the bending beam specimen is supported on two loading rollers (bearing cylinders), and the other two loading rollers apply The load is realized so that one side of the sample is in a state of tension (uniform force is applied between the inner loading rollers), and the other side is in a state of compression. The stress at the middle thickness of the sample section is zero, the stress gradient changes significantly in the thickness direction, and the change is more obvious for thin samples. Crack may Initiation, but then the crack will stop growing or its growth rate will decrease. Therefore, the probability of complete fracture during the test exposure period is relatively
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