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Crack Initiation and Crack Growth as the Problem of Localized Instability in Microcrack Ensemble

机译:裂纹萌生和裂纹扩展是微裂纹集合体局部失稳的问题

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摘要

Statistical theory of defect evolution allows us to obtain non-linear kinetic equations for tensor parameter of microcrack density. Investigation of non-linear properties of kinetic equation showed the existence of specific type of self-similar solution at the developed stage of damage, which is characterized by explosion-like kinetics of the microcrack growth on the spectrum of spatial scales. The system behaviour is controlled by the type of attractor determining non-linear dynamics of failure evolution, the scale transition due to the failure cluster formation and topological regularities of fracture. The scale distribution of damage localization corresponds to the laws of the free energy release in solids with microcracks. The laws of spatial damage localization on various structural levels are defined by the non-linearity of the microcrack accumulation in the condition of intensive interaction of the defects. This leads to the multiscale generation of failure centers. The relation between typical non-linearity of damage kinetics and spatial failure localization is the theoretical background for the explanation of experimental results and numerical simulation of fracture in heterogeneous materials. Topological features of fracture development were investigated numerically using percolation model of failure cluster growth.
机译:缺陷演化的统计理论使我们能够获得微裂纹密度张量参数的非线性动力学方程。动力学方程非线性特性的研究表明,在损伤发展阶段存在特定类型的自相似解,其特征是在空间尺度谱上微裂纹的爆炸状动力学。系统行为是由吸引子的类型决定的,该吸引子确定了故障演化的非线性动力学,由于故障簇的形成和断裂的拓扑规律而引起的尺度转变。损伤局部化的尺度分布与微裂纹固体中自由能释放的规律相对应。在缺陷强烈相互作用的条件下,微裂纹累积的非线性定义了各种结构水平上空间损伤局部化的规律。这导致了故障中心的多尺度生成。破坏动力学的典型非线性与空间破坏局部性之间的关系是解释实验结果和异质材料断裂数值模拟的理论背景。使用失效簇增长的渗流模型,对裂缝发展的拓扑特征进行了数值研究。

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  • 作者

    Naimark, O.; Davydova, M.;

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  • 年度 1996
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  • 原文格式 PDF
  • 正文语种 en
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