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The study of weld strength mismatch effect on limit loads of part surface and embedded flaws in plate

机译:焊接强度失配对零件表面极限载荷和钢板中嵌入缺陷的影响研究

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摘要

Strength mismatching between weld metal and parent material is common in pressure vessel and piping industry. To carry out the fracture assessment of weld defects, it is required to accurately estimate the reference stress or limit load for the flawed section. Weld strength mismatch introduces complexity in determination of the limit load. Although it is acceptable to use the weaker material properties in the assessment, it can be overly conservative. Industrial standards R6 and BS7910 provide the methods for weld strength mismatch, but no limit load ratio solutions are available for semi-elliptical surface and embedded flaws which are the most common cracks in pressure vessels and pipework. It is useful to understand whether the existing limit load ratio solutions in R6 and BS7910 can be used for part surface and embedded flaws. This paper reviews the assumptions used in the existing reference stress solutions and discusses its suitability for mismatch conditions. The effects of weld strength mismatch on limit loads of the part surface and embedded flaws are studied using 3D elastic-plastic finite element analyses. The results are compared with the R6 and BS7910 solutions. The validity of the handbook solutions of through-wall flaws for part surface and embedded flaws in plate and the effects of weld strength mismatch and weld strip width on limit loads are discussed. (C) 2016 Elsevier Ltd. All rights reserved.
机译:焊接金属和母材之间的强度不匹配在压力容器和管道行业中很常见。为了进行焊接缺陷的断裂评估,需要准确估计参考应力或缺陷截面的极限载荷。焊接强度不匹配会导致确定极限载荷的复杂性。尽管在评估中使用较弱的材料属性是可以接受的,但它可能过于保守。工业标准R6和BS7910提供了焊接强度失配的方法,但是没有极限载荷比解决方案可用于半椭圆形表面和嵌入式缺陷,这些缺陷是压力容器和管道中最常见的裂缝。了解R6和BS7910中现有的极限载荷比解决方案是否可用于零件表面和嵌入式缺陷,这很有用。本文回顾了现有参考应力解决方案中使用的假设,并讨论了其在失配条件下的适用性。使用3D弹塑性有限元分析研究了焊接强度不匹配对零件表面极限载荷和嵌入缺陷的影响。将结果与R6和BS7910解决方案进行比较。讨论了零件表面通孔缺陷和钢板中嵌入缺陷手册解决方案的有效性,以及焊接强度不匹配和焊接带宽度对极限载荷的影响。 (C)2016 Elsevier Ltd.保留所有权利。

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