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A disk-shaped domain integral method for the computation of stress intensity factors using tetrahedral meshes

机译:利用四面体网格计算应力强度因子的圆盘状区域积分法

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摘要

A novel domain integral approach is introduced for the accurate computation of pointwise J-integral and stress intensity factors (SIFs) of 3D planar cracks using tetrahedral elements. This method is efficient and easy to implement, and does not require a structured mesh around the crack front. The method relies on the construction of virtual disk-shaped integral domains at points along the crack front, and the computation of domain integrals using a series of virtual triangular and line elements. The accuracy of the numerical results computed for through-the-thickness, penny-shaped, and elliptical crack configurations has been validated by using the available analytical formulations. The average error of computed SIFs remains below 1% for fine meshes, and 2-3% for coarse ones. The results of an extensive parametric study suggest that there exists an optimum mesh-dependent domain radius at which the computed SIFs are the most accurate. Furthermore, the results provide evidence that tetrahedral elements are efficient, reliable and robust instruments for accurate linear elastic fracture mechanics calculations. (C) 2015 Elsevier Ltd. All rights reserved.
机译:引入了一种新颖的域积分方法,可使用四面体元素精确计算3D平面裂纹的逐点J积分和应力强度因子(SIF)。该方法高效且易于实现,并且不需要围绕裂纹前沿的结构化网格。该方法依赖于沿着裂纹前沿的点处的虚拟盘状积分域的构造,以及使用一系列虚拟三角形和线元素计算域积分的方法。通过使用可用的分析公式,已验证了针对整个厚度,便士形和椭圆形裂纹构形的数值计算结果的准确性。对于细网格,计算得到的SIF的平均误差保持在1%以下,而对于粗网格,则为2-3%。广泛的参数研究结果表明,存在最佳的网格相关域半径,在该半径下,计算出的SIF最准确。此外,结果提供了证据,证明四面体单元是用于精确线性弹性断裂力学计算的有效,可靠和强大的工具。 (C)2015 Elsevier Ltd.保留所有权利。

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