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A new nonlocal macro-meso-scale consistent damage model for crack modeling of quasi-brittle materials

机译:用于准脆性材料裂纹建模的非局部宏-中观尺度一致损伤模型

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Crack initiation and propagation simulation is crucial for the safety and integrity assessment of structures. Though to this problem great efforts have been devoted and great advances have been made in both theory and numerical implementation, challenges still exist. To this end, inspired by the peridynamics and the unified phase-field method, in the present paper a novel nonlocal macro-meso-scale consistent damage model is proposed to simulate fracture process without prescribed initial crack and potential crack path. In this method, a meso-scale damage is firstly defined in terms of the stretch rate of bonds of material points. Then the macro-scale topologic damage is evaluated as the weighted averaging of meso-scale damage over bonds in the influence domain. Through the energetic degradation function, which connects the energy-based damage and the macro-scale topologic damage, the above damage model is inserted into the framework of irreversible thermodynamics consistent continuum damage mechanics. Numerical algorithms by the finite element discretization are elaborated. Three examples, including the Mode I and Mixed-Mode cracking simulation, are studied. It is shown that the proposed method can capture not only the crack pattern but also the load-deformation curves quantitatively. Moreover, there is no mesh sensitivity. Computationally, the proposed method belongs to the smeared crack modeling. The proposed method is presently limited to quasi-static crack modeling of isotropic quasi-brittle materials. The extension to anisotropic materials and dynamic crack modeling is possible and shall be studied in the future. (C) 2019 Elsevier B.V. All rights reserved.
机译:裂纹萌生和扩展模拟对于结构的安全性和完整性评估至关重要。尽管已经为这个问题付出了巨大的努力,并且在理论和数值实现上都取得了长足的进步,但是仍然存在挑战。为此,在周动力学和统一相场方法的启发下,本文提出了一种新颖的非局部宏观-中观尺度一致损伤模型,以模拟没有规定初始裂纹和潜在裂纹路径的断裂过程。在这种方法中,首先根据材料点的键的拉伸速率来定义介观损伤。然后,将宏观拓扑损伤评估为影响域中键上的介观损伤的加权平均。通过将基于能量的破坏和宏观拓扑破坏联系起来的高能降解函数,上述破坏模型被插入到不可逆热力学一致连续破坏机制中。阐述了有限元离散化的数值算法。研究了三个示例,包括模式I和混合模式破解模拟。结果表明,所提出的方法不仅可以定量地捕获裂纹模式,而且可以定量地捕获载荷-变形曲线。此外,没有网格敏感性。在计算上,所提出的方法属于拖尾裂纹建模。该方法目前仅限于各向同性准脆性材料的准静态裂纹建模。各向异性材料和动态裂纹建模的扩展是可能的,并将在以后进行研究。 (C)2019 Elsevier B.V.保留所有权利。

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