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A differential CDM model for fatigue of unidirectional metal matrix composites

机译:单向金属基复合材料疲劳的差分CDM模型

摘要

A multiaxial, isothermal, continuum damage mechanics (CDM) model for fatigue of a unidirectional metal matrix composite volume element is presented. The model is phenomenological, stress based, and assumes a single scalar internal damage variable, the evolution of which is anisotropic. The development of the fatigue damage model, (i.e., evolutionary law) is based on the definition of an initially transversely isotropic fatigue limit surface, a static fracture surface, and a normalized stress amplitude function. The anisotropy of these surfaces and function, and therefore the model, is defined through physically meaningful invariants reflecting the local stress and material orientation. This transversely isotropic model is shown, when taken to it's isotropic limit, to directly simplify to a previously developed and validated isotropic fatigue continuum damage model. Results of a nondimensional parametric study illustrate (1) the flexibility of the present formulation in attempting to characterize a class of composite materials, and (2) the capability of the formulation in predicting anticipated qualitative trends in the fatigue behavior of unidirectional metal matrix composites. Also, specific material parameters representing an initial characterization of the composite system SiC/Ti 15-3 and the matrix material (Ti 15-3) are reported.
机译:提出了单向金属基复合材料体积元疲劳的多轴等温连续介质损伤力学模型。该模型基于现象学,基于应力,并假设单个标量内部损伤变量,且其演化是各向异性的。疲劳损伤模型(即进化定律)的发展是基于初始横向各向同性疲劳极限面,静态断裂面和归一化应力振幅函数的定义。这些表面和功能的各向异性以及模型的各向异性是通过反映局部应力和材料方向的有意义的物理不变量定义的。该横向各向同性模型在达到其各向同性极限时被显示为直接简化为先前开发和验证的各向同性疲劳连续谱损伤模型。无量纲参数研究的结果说明(1)本配方在尝试表征一类复合材料方面的灵活性,以及​​(2)该配方在预测单向金属基复合材料疲劳行为的预期定性趋势方面的能力。而且,报告了代表复合系统SiC / Ti 15-3和基体材料(Ti 15-3)的初始特性的特定材料参数。

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    Arnold S. M.; Kruch S.;

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  • 年度 1992
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