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Fracture analysis of anisotropic materials using enriched crack tip elements

机译:富集裂纹尖端元素的各向异性材料的断裂分析

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摘要

Enriched finite element methodology, which employs special crack tip elements, is extended for cracks in anisotropic materials. Enrichment formulation is described briefly and three validation examples using single crystal, directionally solidified, and orthotropic material properties are presented to demonstrate the accuracy and effectiveness of the methodology. In addition to validation examples, the effect of material anisotropy on stress intensity factors is investigated using the common compact tension specimen and the results are compared to the ASTM solution for isotropic materials. It is shown that the effect of anisotropy on the computed stress intensity factors can be significant, depending on the degree of anisotropy, material orientation, and a/W ratio in the compact tension specimen geometry.
机译:使用特殊裂纹尖端元素的富集有限元方法扩展了各向异性材料中的裂纹。简要描述了浓缩配方,并给出了三​​个使用单晶,定向凝固和正交各向异性材料特性的验证示例,以证明该方法的准确性和有效性。除了验证示例外,还使用普通的紧凑型拉伸试样研究了材料各向异性对应力强度因子的影响,并将结果与​​各向同性材料的ASTM解决方案进行了比较。结果表明,各向异性对计算的应力强度因子的影响可能很大,这取决于各向异性程度,材料取向和紧凑型拉伸试样几何形状中的a / W比。

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