Abstract High-accuracy phase-field models for brittle fracture based on a new family of degradation functions
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High-accuracy phase-field models for brittle fracture based on a new family of degradation functions

机译:基于新的退化函数族的脆性断裂的高精度相场模型

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AbstractPhase-field approaches to fracture based on energy minimization principles have been rapidly gaining popularity in recent years, and are particularly well-suited for simulating crack initiation and growth in complex fracture networks. In the phase-field framework, the surface energy associated with crack formation is calculated by evaluating a functional defined in terms of a scalar order parameter and its gradients. These in turn describe the fractures in a diffuse sense following a prescribed regularization length scale. Imposing stationarity of the total energy leads to a coupled system of partial differential equations that enforce stress equilibrium and govern phase-field evolution. These equations are coupled through an energy degradation function that models the loss of stiffness in the bulk material as it undergoes damage. In the present work, we introduce a new parametric family of degradation functions aimed at increasing the accuracy of phase-field models in predicting critical loads associated with crack nucleation as well as the propagation of existing fractures. An additional goal is the preservation of linear elastic response in the bulk material prior to fracture. Through the analysis of several numerical examples, we demonstrate the superiority of the proposed family of functions to the classical quadratic degradation function that is used most often in the literature.
机译: 摘要 基于能量最小化原理的相场断裂方法近年来已迅速普及,尤其适合于模拟复杂断裂中的裂纹萌生和扩展网络。在相场框架中,通过评估根据标量阶数参数及其梯度定义的函数来计算与裂纹形成相关的表面能。这些继而遵循规定的正则化长度尺度以扩散的方式描述裂缝。施加总能量的平稳性导致偏微分方程耦合系统,该方程组实现应力平衡并控制相场演化。这些方程通过能量衰减函数耦合,该函数对散装材料在遭受破坏时的刚度损失建模。在目前的工作中,我们引入了一个新的参数化退化函数族,旨在提高相场模型在预测与裂纹成核以及现有裂缝扩展相关的临界载荷时的准确性。另一个目标是在断裂之前在散装材料中保持线性弹性响应。通过对几个数值示例的分析,我们证明了所提出的函数族优于文献中最常用的经典二次退化函数。 < / ce:抽象>

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