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Brittle damage in initially anisotropic materials: a model accounting for the induced anisotropy and unilateral effects

机译:最初各向异性材料的脆性损伤:一种诱导各向异性和单侧效应的模型核算

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A new micromechanical modelling approach for brittle damage in initially orthotropic materials is presented. The proposed strain-based energy formulation allows to derive a fully anisotropic multilinear model for microcracked materials with arbitrary oriented defects. The thermodynamics framework provides a standard procedure for the damage evolution law. The new model explicitly accounts for the interaction between primary and induced anisotropies. Moreover, the very challenging issue of opening-closure effects (unilateral behavior) is addressed in this framework.
机译:提出了一种新的初始正交材料脆性损伤的新型微机械建模方法。所提出的基于菌株的能量配方允许为具有任意取向缺陷的微裂纹材料产生全极其各向异性多线性模型。热力学框架为损害进化法提供标准程序。新模型明确地占初级和诱导各向同性之间的相互作用。此外,在本框架中解决了开放闭幕效果(单侧行为)的极具挑战性问题。

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