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A physically consistent virtual crack closure technique accounting for contact and interpenetration

机译:物理上一致的虚拟裂缝关闭技术,用于接触和互通

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In some circumstances, the standard formulation of the virtual crack closure technique (VCCT) may yield negative values of the modal contributions to the energy release rate. To avoid such physically meaningless results, a revised formulation is available. However, the revised VCCT does not take into account possible interpenetration of the crack faces, that may be predicted by the linearly elastic solution. The present work extends the revised VCCT formulation by introducing suitable contact constraints to prevent local interpenetration of the crack-tip nodes. By considering open vs. interpenetrated cracks and tensile vs. compressive crack-tip forces, four cases emerge. For each case, a suitable two-step crack closure process is outlined with the two steps respectively corresponding to fracture modes II and I. The contact pressure force, if present, is evaluated and accounted for in the computation of the crack closure work. As a result, novel analytical expressions are derived for the modal contributions to the energy release rate accounting for contact and prevented interpenetration.
机译:在某些情况下,虚拟裂纹闭合技术(VCCT)的标准配方可以屈服于能量释放率的模态贡献的负值。为避免此类物理上无意义的结果,可提供修订的配方。然而,修正的VCCT不考虑裂缝面的可能互通,这可以通过线性弹性溶液预测。本工作通过引入合适的接触约束来防止裂缝尖端节点的局部互通来扩展修正的VCCT配方。通过考虑打开与互相裂缝和拉伸与压缩裂纹尖力,四个案例出现。对于每种情况,与分别对应于裂缝模式II和I的两个步骤概述了合适的两步裂纹闭合过程。如果存在的话,接触压力,如果存在,则在裂纹闭合工作的计算中评估和算像。因此,推导出新的分析表达式为能源释放率核算接触和防止互通的模态贡献。

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