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Bifurcation criterion and the origin of limit crack velocity in dynamic brittle fracture

机译:动态脆性骨折中限位裂纹速度的分岔标准及其起源

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By employing a variational phase field model, we investigated the dynamic brittle fracture of poly (methyl methacrylate) (PMMA) through computer simulation. Without the explicit fracture criterion, current simulations not only successfully reproduced the crucial experimental observations on crack propagation, such as crack patterns, velocity evolutions and limit crack velocity but also discovered some new features not reported in the experimental study yet. Through quantifying the energy flux into the crack tip and fracture energy, we observed that the crack bifurcation of PMMA always occurs with the energy flux into the crack tip exceeding a critical value and proposed that crack bifurcation obeys an energy criterion. Based on this criterion, the long-standing challenge of limit crack velocity in experiments is successfully predicted by continuum theory, which unveils that crack bifurcation sets the upper limit for crack velocity. Combining the crack bifurcation criterion and continuum theory provides a rational explanation for complex path selection of cracks.
机译:通过采用变分相场模型,我们通过计算机模拟研究了聚(甲基丙烯酸甲酯)(PMMA)的动态脆性断裂。如果没有明确的骨折标准,则目前的模拟不仅成功地复制了关于裂纹传播的关键实验观察,例如裂纹模式,速度演进和限制裂纹速度,但也发现了在实验研究中未报告的一些新功能。通过量化能量通量进入裂纹尖端和断裂能量,我们观察到PMMA的裂纹分叉总是发生在超过临界值的裂缝尖端中的能量通量并提出裂纹分叉遵循能量标准。基于该标准,通过连续性理论成功预测了实验中的极限裂纹速度的长期挑战,这引用了裂缝分叉设定裂纹速度的上限。结合裂缝分叉标准和连续性理论为复杂的裂缝选择提供了合理的解释。

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