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首页> 外文期刊>International Journal of Pressure Vessels and Piping >Crack growth analysis in a weld-heat-affected zone using S-version FEM
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Crack growth analysis in a weld-heat-affected zone using S-version FEM

机译:焊接热影响区裂纹扩展的S型有限元分析

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摘要

The objective of this study is the prediction of crack propagation under thermal, residual stress fields using S-Version FEM (S-FEM). By using the S-FEM technique, only the local mesh should be re-meshed and it becomes easy to simulate crack growth. By combining with an auto-meshing technique, the local mesh is re-meshed automatically, and a curved crack path is modeled easily. Virtual crack closure integral method (VCCM) is used to evaluate energy release rate at the crack tip. For crack growth analyses, crack growth rate and growth direction are determined using criteria for mixed mode loading condition. In order to confirm the validity of this analysis, some comparisons with previously reported analyses were done, and good agreement obtained. In this study, residual stress data were provided by JAEA, Japan Atomic Energy Agency, based on their numerical simulation. Stress corrosion crack (SCC) growth analyses in a pipe are conducted in two-dimensional and three-dimensional fields. Two cases, for an axi-symmetric distribution of residual stress in the pipe wall and a non-axisymmetric one are assumed. Effects of residual stress distribution patterns on SCC cracking are evaluated and discussed.
机译:这项研究的目的是使用S版本FEM(S-FEM)预测在热残余应力场下的裂纹扩展。通过使用S-FEM技术,只需重新网格局部网格,就可以轻松模拟裂纹扩展。通过结合自动网格化技术,可以自动重新网格局部网格,并轻松建模弯曲的裂纹路径。虚拟裂纹闭合积分法(VCCM)用于评估裂纹尖端的能量释放率。对于裂纹扩展分析,使用混合模式加载条件的准则确定裂纹扩展速率和扩展方向。为了确认该分析的有效性,与先前报告的分析进行了一些比较,并获得了良好的一致性。在这项研究中,残余应力数据是由日本原子能机构JAEA提供的,基于它们的数值模拟。管道中的应力腐蚀裂纹(SCC)增长分析是在二维和三维领域中进行的。对于管壁中残余应力的轴对称分布和非轴对称的两种情况,假定为两种情况。评估并讨论了残余应力分布模式对SCC裂纹的影响。

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