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首页> 外文期刊>Journal of the Mechanics and Physics of Solids >Conditions controlling kink crack nucleation out of, and delamination along, a mixed-mode interface crack
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Conditions controlling kink crack nucleation out of, and delamination along, a mixed-mode interface crack

机译:控制混合模式界面裂纹中扭结裂纹成核并沿其分层的条件

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This paper analyzes the competition between kink nucleation and interface fracture for an interface crack (without a putative kink flaw) subject to mixed-mode loading. The simulations utilize a distributed cohesive zone approach that embeds cohesive elements throughout the entire mesh; dynamic crack path evolution occurs through a loss of cohesive traction associated with a critical separation between elements. The simulations identify mesh densities that lead to mesh-independent results for randomly oriented triangular meshes, and provide clear guidelines regarding parameters that recover toughness-controlled cracking (i.e. linear elastic fracture mechanics). The results demonstrate that, when the when the normalized bulk toughness is far from the transition between kinking and delamination, crack direction and critical loads are identical to those predicted by He and Hutchinson, who analyzed cracking from a putative flaw associated with the maximum energy release rate. Near the transition between fracture modes, kink nucleation depends on the relative size of the interface and bulk process zones, such that additional criteria are needed (beyond those postulated by He and Hutchinson). Regime maps are presented which indicate regions of kink nucleation versus delamination as a function of controlling cohesive parameters. (C) 2018 Published by Elsevier Ltd.
机译:本文分析了混合模式载荷作用下界面裂纹(无推定的扭结缺陷)的扭结形核与界面断裂之间的竞争。模拟利用分布式粘聚区方法,将粘聚元素嵌入整个网格中。动态裂纹路径的演变是由于失去内聚力而发生的,而内聚力的损失与单元之间的临界分离有关。该模拟确定了导致随机定向的三角形网格的网格密度无关的网格密度,并提供了有关恢复韧性控制的裂纹的参数(即线性弹性断裂力学)的明确指导原则。结果表明,当归一化的整体韧性远未达到扭结和分层之间的过渡时,裂纹方向和临界载荷与He和Hutchinson的预测相同,后者分析了与最大能量释放相关的推定缺陷产生的裂纹。率。在断裂模式之间的过渡附近,扭结成核取决于界面和整体工艺区域的相对大小,因此需要其他标准(除了He和Hutchinson所假定的标准)。呈现了制度图,其表示扭结成核与分层的区域,作为控制内聚参数的函数。 (C)2018由Elsevier Ltd.发布

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