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A constitutive approach to fracture simulation based on augmented virtual internal bond method

机译:基于增强虚拟内键法的本构断裂模拟方法

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The K-dominant zone,which is a small area surrounding the fracture tip,has been the interesting focus of the fracture mechanics.In the traditional linear elastic fracture mechanics(LEFM),a stress intensity factor is used to characterize the stress field of the K-dominant zone and a separate fracture criterion is used to predict the fracture behaviors.However,when using LEFM to simulate fracture propagation,the computation of stress intensity factor is a tough problem.The LEFM is actually a phenomenological methodology.The fracture behaviors are determined by material microstructure.The augmented virtual internal bond(AVIB) is a constitutive model based on microstructure.Its constitutive relation is derived from the micro bond potential,which contains the micro fracture mechanism.Hence,the so-called fracture criterion is implicitly built in the constitutive relation.In this paper,the AVIB constitutive model is used in the K-dominant zone while the usual linear elastic constitutive model is used in the rest zone to simulate fracture propagation.By this method,the computation of stress intensity factor is avoided.When and how fracture propagation is completely governed by the AVIB constitutive relation.It provides an efficient approach to fracture simulation.
机译:K占主导地位的区域(位于断裂尖端周围的一小块区域)一直是断裂力学关注的焦点。在传统的线性弹性断裂力学(LEFM)中,应力强度因子用于表征应力场。用K主导区和单独的断裂准则来预测断裂行为。但是,当使用LEFM模拟断裂扩展时,应力强度因子的计算是一个难题.LEFM实际上是一种现象学方法。增强虚拟内部键(AVIB)是基于微观结构的本构模型。其本构关系是从微键势导出的,其中包含了微观断裂机理。因此,隐含地建立了所谓的断裂准则本文在本构关系中采用了AVIB本构模型,而在通常的线性弹性本构模型中采用了AVIB本构模型。该方法避免了应力强度因子的计算。何时以及如何完全由AVIB本构关系控制裂缝的扩展,为裂缝模拟提供了一种有效的方法。

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