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首页> 外文期刊>Theoretical and Applied Fracture Mechanics >Evaluation of crack opening displacement of through-wall circumferential-cracked pipe using direct weight function method
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Evaluation of crack opening displacement of through-wall circumferential-cracked pipe using direct weight function method

机译:使用直接重量函数法评估通壁周向裂纹管裂缝开口位移

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This paper presents a direct weight function-based method to evaluate the crack opening displacement (COD) which is a key parameter in leak-before-break (LBB) assessment and in probabilistic fracture mechanics (PFM) assessment of nuclear piping systems. The focus of this study is a circumferential-cracked pipe with non-linearly through-wall distributed stress loaded on the crack face. Parametric finite element analyses (FEA) were performed to calculate COD associated with different crack face pressure (CFP) loadings. The analyses matrix covers a wide range of pipe size and crack lengths. The crack mouth COD values at three locations: at outside surface, inner surface and mid-thickness were considered. The numerical results were then used to determine the coefficients that construct the direct weight functions. The proposed solution can be used to predict the COD resulted from given weld residual stress (WRS) field with the general prediction error being less than 8%. The research outcome can provide more computational efficiency in both deterministic LBB assessment as well as PFM analyses of pressurized pipes.
机译:本文介绍了基于重量的基于函数的方法,以评估裂缝开度(COD),其是漏泄漏前(LBB)评估的关键参数和核管道系统的概率骨折力学(PFM)评估。本研究的重点是圆周破裂管,其具有负载在裂纹面上的非线性通壁分布应力。进行参数化有限元分析(FEA)以计算与不同裂缝面压(CFP)负载相关的鳕鱼。分析矩阵覆盖各种管道尺寸和裂缝长度。三个位置的裂缝口鳕鱼值:考虑在外表面,内表面和中间厚度。然后使用数值结果来确定构造直接重量函数的系数。所提出的解决方案可用于预测由给定的焊接残余应力(WRS)场产生的鳕鱼,其具有小于8%的通用预测误差。研究结果可以在确定性LBB评估中提供更多的计算效率以及加压管的PFM分析。

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