Extended meshless moving Kriging method for crack propagation analyzing in orthotropic media

Nguyen Thanh Nha, Nguyen Ngoc Minh, Bui Quoc Tinh, Truong Tich Thien
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Abstract

Orthotropic composite material is the particular type of anisotropic materials and their products have been extensively used in a wide range of engineering applications. Study on mechanical behaviors of such materials under working conditions is very essential. In this study, an extended meshfree moving Kriging interpolation method (namely as X- MK) is presented for crack analyzing in 2D orthotropic materials models. The Gaussian function is used for constructing the moving Kriging shape functions. Typical advantages of the MK shape function are the high-order continuity and the satisfaction of the Kronecker’s delta property. To calculate the stress intensity factors (SIFs), interaction integral method is used with orthotropic auxiliary fields. Several numerical tests including static SIFs calculating and crack propagation predicting are performed to verify the accuracy of the present approach. The obtained results are compared with available refered results and they have shown a very good performance of the present method.
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正交各向异性介质裂纹扩展的扩展无网格移动Kriging法
正交异性复合材料是一种特殊的各向异性材料,其产品已广泛应用于各种工程领域。研究这类材料在工作条件下的力学行为是十分必要的。本文提出了一种扩展的无网格移动Kriging插值方法(即X- MK),用于二维正交各向异性材料模型的裂纹分析。高斯函数用于构造运动克里金形状函数。MK形状函数的典型优点是具有高阶连续性和满足克罗内克函数的特性。为了计算应力强度因子,采用正交各向异性辅助场的相互作用积分法。通过静态SIFs计算和裂纹扩展预测等数值试验验证了该方法的准确性。所得到的结果与已有的文献结果进行了比较,表明了本文方法的良好性能。
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