A modified damage and fracture phase field model considering heterogeneity for rock-like materials

Xuxin Chen, Zhe Qin
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引用次数: 1

Abstract

Damage and fracture are the most extensive failure modes of rock materials, which may easily induce disaster and instability of engineering structures. This study developed a nonlocal damage fracture phase field model for rocks considering the heterogeneity of rocks. The modified phase field model introduced the heterogeneity of fracture parameters and modified the governing equations. Meanwhile, the free energy was constructed by the elastic strain energy sphere-bias decomposition and the plastic strain energy. As for the numerical implementation, the three layers finite elements method structure was used in the frame of the finite element method. The ability of the modified phase field model has been illustrated by reproducing the experiment results of rock samples with pre-existing cracks under compression.

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考虑非均质性的类岩材料损伤和断裂相场修正模型
损伤和断裂是岩石材料最广泛的破坏模式,容易引发工程结构的灾害和失稳。本研究建立了一个考虑岩石非均质性的岩石非局部损伤-断裂相场模型。改进的相场模型引入了裂缝参数的非均质性,并对控制方程进行了修正。同时,利用弹性应变能球偏分解和塑性应变能构造了自由能。在数值实现方面,在有限元法的框架中使用了三层有限元法结构。通过再现压缩下已有裂纹的岩石样品的实验结果,说明了改进的相场模型的能力。
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Issue Information Two-year growth of Deep Underground Science and Engineering: A perspective Acknowledgment of reviewers A review of mechanical deformation and seepage mechanism of rock with filled joints Issue Information
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