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Probability density distribution of the orientation of strength-controlling flaws from multiaxial loading using the unit-sphere stochastic strength model for anlsotropy

机译:使用各向异性的单位球面随机强度模型,从多轴载荷得到强度控制缺陷取向的概率密度分布

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摘要

Models that predict the failure probability of monolithic glass and ceramic components under multiaxial loading have been developed by authors such as Batdorf, Evans, and Matsuo. These "unit-sphere" failure models assume that the strength-controlling flaws are randomly oriented, noninteracting planar microcracks of specified geometry but of variable size. The purpose of this paper is to describe a formulation of the probability density distribution of the orientation of critical strength-controlling flaws that results from an applied load. This distribution is a function of the multiaxial stress state, the shear sensitivity of the flaws, the Weibull modulus, and the strength anisotropy. Examples are provided showing the predicted response on the unit sphere for various stress states for isotropic and transversely isotropic (anisotropic) materials including the most probable orientation of critical flaws for offset uniaxial loads with strength anisotropy. The author anticipates that this information could be used to determine anisotropic stiffness degradation or anisotropic damage evolution for individual brittle (or quasi-brittle) composite material constituents within finite element or micromechanics-based software.
机译:诸如Batdorf,Evans和Matsuo之类的作者已经开发出预测多轴载荷下整体玻璃和陶瓷组件失效可能性的模型。这些“单位球”破坏模型假定强度控制缺陷是随机定向的,具有指定几何形状但大小可变的非相互作用平面微裂纹。本文的目的是描述由施加载荷导致的强度控制缺陷的临界方向的概率密度分布。该分布是多轴应力状态,缺陷的剪切敏感性,威布尔模量和强度各向异性的函数。提供的示例显示了各向同性和横向各向同性(各向异性)材料在各种应力​​状态下在单位球面上的预测响应,包括对于具有强度各向异性的偏置单轴载荷,临界缺陷的最可能取向。作者期望该信息可用于确定有限元或基于微力学的软件中单个脆性(或准脆性)复合材料成分的各向异性刚度退化或各向异性破坏演化。

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