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Mechanistic-Based Multiaxial-Stochastic-Strength Model for Transversely-Isotropic Brittle Materials

机译:横观各向同性脆性材料的基于机械的多轴随机强度模型

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A methodology has been developed and the software written to predict the probability of failure of transversely isotropic (a type of anisotropy) materials under generalized thermomechani- cal loading. This methodology is mechanistic in that it is based on the physical characteristics of brittle fracture, and morphological in that it considers the size, shape, and orientation distribution of strength controlling defects or flaws. On that basis, it can also account for a material's failure modes and direction of damage initiation from loading. It is capable of predicting an anisotropic material's probability of failure under transient and cyclic loading. This innovation can be applied to materials such as graphite, coatings, or the individual brittle constituents of composite materials.
机译:已经开发出一种方法,并编写了软件来预测在广义热机械载荷下横向各向同性(一种各向异性)材料的失效概率。这种方法是机械的,因为它基于脆性断裂的物理特性,而形态则是考虑强度控制缺陷或缺陷的大小,形状和取向分布。在此基础上,它也可以解释材料的失效模式和载荷引起的损坏方向。它能够预测各向异性材料在瞬态和循环载荷下的失效概率。这项创新可以应用于诸如石墨,涂层或复合材料的各个脆性成分之类的材料。

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    《NASA Tech Briefs》 |2014年第3期|3840|共3页
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