压力管道过渡厚度区外周裂纹影响的XFEM弹塑性数值分析

H. Salmi, K. E. Had, H. E. Bhilat, A. Hachim
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引用次数: 0

摘要

考虑材料的弹塑性特性,分析了外周裂纹对具有厚度转变和双斜率的管道的影响。采用扩展有限元法(XFEM),对直管和带厚度过渡和不同斜度的管道的三维裂纹j积分进行了研究和比较。在考虑内压的情况下,重点研究了双斜面厚度过渡管的三维裂纹问题,在扩展有限元法(XFEM)中,定义了水平集和富集区。裂缝很容易用富集函数来模拟。j积分值的比较表明,含双斜率厚度过渡的管道对考虑的裂纹更为敏感,更准确地说,第一次厚度过渡的参数对j积分变化的影响大于第二次厚度过渡的参数。减小坡角和增大厚度比是减小j积分的有效方法之一。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Numerical Analysis of the Effect of External Circumferential Cracks in Transition Thickness Zone of Pressurized Pipes Using XFEM – Elastic-Plastic Behavior
The elastic-plastic behavior of the material is considered to analyze the effect of an external circumferential crack on a pipe with thickness transition and double slopes. Using the extended finite element method (XFEM), the J-integral of 3D cracks were investigated and compared between straight pipes and pipes with thickness transition and different slopes. Considering internal pressure, this work highlighted the investigation of a 3D crack problem in a thickness transition pipe with a double slope, In the extended finite element method (XFEM), the level sets and the enrichment zone were defined. A crack is easily modeled by enrichment functions. The comparison between the values of the J-integral showed that the pipe containing thickness transition with double slopes is more sensitive to the considered cracks, more precisely, the parameters of the first thickness transition have more influence on the variation of J-integral than the parameters of the second thickness transition. The decreasing of the angle of the slopes and the increase of the ratio of the thicknesses is one effective method of reducing the J-integral.
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