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首页> 外文期刊>International Journal for Numerical Methods in Engineering >Stress intensity factors for three-dimensional surface cracks using enriched finite elements
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Stress intensity factors for three-dimensional surface cracks using enriched finite elements

机译:使用丰富有限元的三维表面裂纹应力强度因子

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摘要

The analysis of three-dimensional crack problems using enriched crack tip elements is examined in this paper. It is demonstrated that the enriched finite element approach is a very effective technique for obtaining stress intensity factors for general three-dimensional crack problems. The influence of compatibility, integration, element shape function order, and mesh refinement on solution convergence is investigated to ascertain the accuracy of the numerical results. It is shown that integration order has the greatest impact on solution accuracy. Sample results are presented for semi-circular surface cracks and compared with previously obtained solutions available in the literature. Good agreement is obtained between the different numerical solutions, except in the small zone near the free surface where previously published results have often neglected the change in the stress singularity at the free surface. The enriched crack tip element appears to be particularly effective in this region, since boundary conditions can be easily imposed on the stress intensity factors to accurately represent the correct free surface condition.
机译:本文使用丰富的裂纹尖端元素分析了三维裂纹问题。结果表明,富集有限元方法是一种获得通用三维裂纹问题应力强度因子的非常有效的技术。研究了相容性,积分,元素形状函数顺序和网格细化对解决方案收敛性的影响,以确保数值结果的准确性。结果表明,集成顺序对解决方案的准确性影响最大。给出了半圆形表面裂纹的样品结果,并与文献中先前获得的解决方案进行了比较。除了在自由表面附近的小区域外,在不同的数值解决方案之间都取得了良好的一致性,在该区域之前公布的结果经常忽略了自由表面应力奇异性的变化。富集的裂纹尖端元素在该区域似乎特别有效,因为边界条件可以轻松地施加到应力强度因子上,以准确表示正确的自由表面条件。

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