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首页> 外文期刊>International Journal of Damage Mechanics >Gradient Damage Models and Their Use to Approximate Brittle Fracture
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Gradient Damage Models and Their Use to Approximate Brittle Fracture

机译:梯度损伤模型及其在近似脆性断裂中的应用

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摘要

In its numerical implementation, the variational approach to brittle fracture approximates the crack evolution in an elastic solid through the use of gradient damage models. In this article, we first formulate the quasi-static evolution problem for a general class of such damage models. Then, we introduce a stability criterion in terms of the positivity of the second derivative of the total energy under the unilateral constraint induced by the irreversibility of damage. These concepts are applied in the particular setting of a one-dimensional traction test. We construct homogeneous as well as localized damage solutions in a closed form and illustrate the concepts of loss of stability, of scale effects, of damage localization, and of structural failure. Considering several specific constitutive models, stress-displacement curves, stability diagrams, and energy dissipation provide identification criteria for the relevant material parameters, such as limit stress and internal length. Finally, the 1D analytical results are compared with the numerical solution of the evolution problem in a 2D setting.
机译:在其数值实现中,变脆性断裂方法通过使用梯度损伤模型来近似弹性固体中的裂纹演化。在本文中,我们首先为这类损伤模型的一般类表述拟静态演化问题。然后,根据破坏的不可逆性引起的单边约束,根据总能量的二阶导数的正性引入了稳定性判据。这些概念适用于一维牵引力测试的特定设置。我们以封闭形式构造均质以及局部损伤解,并说明稳定性损失,尺度效应,损伤局部化和结构破坏的概念。考虑几个特定的​​本构模型,应力-位移曲线,稳定性图和能量耗散为相关材料参数(例如极限应力和内部长度)提供了识别标准。最后,将一维分析结果与二维环境中演化问题的数值解进行比较。

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