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首页> 外文期刊>International Journal of Pressure Vessels and Piping >A new probabilistic evaluation model for weld residual stress
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A new probabilistic evaluation model for weld residual stress

机译:焊接残余应力的新概率评价模型

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摘要

Weld residual stress (WRS) is one of the most important factors in the structural integrity assessment of piping welds, and it is considered a driving force for crack growth. It is characterized by large uncertainty. For more rational assessment, it is important to consider the uncertainty of WRS for evaluating crack growth behavior in probabilistic fracture mechanics (PFM) analysis. In existing PFM analysis codes, WRS uncertainty is set by statistically processing the multiple WRS data obtained from finite element analyses. This process depends on the individual performing PFM analysis, which may lead to uncertainties derived from the PFM analyst. In this study, we developed a new WRS evaluation model based on Fourier transformation, and the model was incorporated into the PFM analysis code PASCAL-SP, which has been developed by Japan Atomic Energy Agency. Through improvements to the code, WRS uncertainty can be considered automatically and appropriately by inputting multiple WRS data directly as input for PFM analysis.
机译:焊接残余应力(WRS)是管道焊缝结构完整性评估中最重要的因素之一,它被认为是用于裂纹生长的驱动力。它的特点是大不确定性。为了更合理的评估,重要的是要考虑概率骨折力学(PFM)分析中评估裂纹生长行为的WRS的不确定性。在现有的PFM分析代码中,通过统计处理从有限元分析获得的多个WRS数据来设置WRS不确定性。该过程取决于个人执行PFM分析,这可能导致来自PFM分析师的不确定性。在这项研究中,我们开发了一种基于傅里叶变换的新WRS评估模型,并将该模型纳入了PFM分析码Pascal-SP,该代码Pascal-SP已经由日本原子能机构开发。通过改进代码,可以通过直接输入多个WRS数据作为PFM分析的输入来自动且适当地考虑WRS不确定性。

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