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Crack-tip fields for matrix cracks between dissimilar elastic and creeping materials

机译:弹性和蠕变材料之间基体裂纹的裂纹尖端场

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摘要

The stress fields near the tip of a matrix crack terminating at and perpendicular to a planar interface under symmetric in-plane loading in plane strain are investigated. The bimaterial interface is formed by a linearly elastic material and an elastic power-law creeping material in which the crack is located. Using generalized expansions at the crack tip in each region and matching the stresses and displacements across the interface in and asymptotic sense, a series asymptotic solution is constructed for the stresses and strain rates near the crack tip. It is found that the stress singularities, to the leading order, are the same in each material; the stress exponent is real. The oscillatory higher-order terms exist in both regions and stress higher-order term with the order of O(r~#omicron#) appears in the elastic material. The stress exponents and the angular distributions for singular terms and higher order terms are obtained for different creep exponents and material properties in each region. A full agreement between asymptotic solutions and the full-field finite element results for a set of test examples wit different times has been obtained.
机译:研究了在平面应变的对称面内载荷作用下终止于并垂直于平面界面的基体裂纹尖端附近的应力场。双材料界面由线弹性材料和裂缝所在的弹性幂律蠕变材料形成。利用每个区域裂纹尖端处的广义扩展,并在渐近意义上匹配跨界面的应力和位移,为裂纹尖端附近的应力和应变率构建了一系列渐近解。结果发现,每种材料的应力奇异性到领先顺序都是相同的。压力指数是真实的。在这两个区域中都存在振荡的高阶项,并且在弹性材料中出现了O(r〜#omicron#)阶的应力高阶项。对于每个区域中不同的蠕变指数和材料特性,获得了奇异项和高阶项的应力指数和角度分布。对于一组具有不同时间的测试示例,已获得渐近解与全域有限元结果之间的完全一致。

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