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A phase-field model for mixed-mode fracture based on a unified tensile fracture criterion

机译:基于统一拉伸裂缝标准的混合模式断裂的相场模型

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摘要

Different fracture patterns can be observed because of different material properties, even the geometry and loading are the same. However, most of the known phase-field fracture models have only considered the tensile failure and may not be directly applicable to the shear fracture. In this paper, a phase-field model for mixed-mode fracture is proposed based on a unified tensile fracture criterion. The proposed model is developed from the unified phase-field theory and the original unified phase-field model can be recovered as a particular case. General softening laws for cohesive zone models can also be considered. The unified tensile fracture criterion is embedded in the proposed mixed-mode phase-field model and different fracture patterns can be obtained in the simulation according to the material properties, including failures based on both maximum normal stress and maximum shear stress criteria. The crack propagation direction can be easily determined by the unified tensile fracture criterion. Compared with the classical phase-field model, two additional material parameters are needed, i.e., the failure tension strength and the ratio of the critical shear failure stress to the critical normal fracture stress. Numerical examples have shown that the proposed model has the ability to model mixed-mode fractures, and can also be applied to rock-like brittle materials under compression. (C) 2020 Elsevier B.V. All rights reserved.
机译:由于不同的材料特性,也可以观察到不同的断裂图案,即使是几何形状和负载也是相同的。然而,大多数已知的相场骨折模型仅考虑拉伸衰竭,并且可能不可直接适用于剪切裂缝。本文提出了一种基于统一的拉伸裂缝标准的混合模式骨折的相场模型。所提出的模型是从统一的阶段 - 场理论开发的,并且可以作为特定情况恢复原始统一的相位场模型。还可以考虑用于粘性区域模型的一般软化规律。统一的拉伸裂缝标准嵌入所提出的混合模式相场模型中,并且可以根据材料特性在模拟中获得不同的断裂图案,包括基于最大正常应力和最大剪切应力标准的故障。裂缝传播方向可以通过统一的拉伸裂缝标准容易地确定。与经典阶段模型相比,需要两种附加材料参数,即失效张力强度和临界剪切失效应力与临界正常断裂应力的比率。数值例表明,该模型具有模拟混合模式裂缝的能力,并且还可以应用于压缩下的岩状脆性材料。 (c)2020 Elsevier B.v.保留所有权利。

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