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A Displacement Equivalence-Based Damage Model for Brittle Materials-Part I: Theory

机译:基于位移等效性的脆性材料损伤模型-第一部分:理论

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摘要

In this paper, a displacement equivalence-based damage model for brittle materials is proposed. A new damage deactivation criterion, which depends on both the stress and strain states of the materials, is adopted. Based on the concept of effective stress, the virtual undamaged configuration is introduced, and the assumption of displacement equivalence is proposed to correlate the damaged and the virtual undamaged configurations. Then, an additional crack-opening-induced normal deformation is introduced, and the three-dimensional (3D) effect of these opened cracks is also considered. The evolution rule of damage is deduced using the Onsager relations, which also ensure that the second law of thermodynamics is satisfied.
机译:本文提出了一种基于位移当量的脆性材料损伤模型。采用了一种新的破坏失效准则,该准则取决于材料的应力和应变状态。基于有效应力的概念,介绍了虚拟无损配置,并提出了位移当量的假设,以使受损和虚拟无损配置相互关联。然后,引入了额外的由裂缝引起的法向变形,并且还考虑了这些裂缝的三维(3D)效应。利用Onsager关系推导了损伤的演化规律,这也确保了热力学第二定律得到满足。

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