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How the obscuration-zone hypothesis affects fragmentation: Illustration with the cohesive-element method

机译:遮蔽带假设如何影响碎片化:内聚元素法图解

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摘要

The problem of fragmentation prediction is at the origin of various analytical models. Among them, we focus on the ones introducing the idea of obscured zones. They assume that when a crack initiates at a defect, a stress release wave propagates away from the crack and protects the region encompassed by the wave from any further crack initiation. In this paper, we show by the use of numerical simulations that this assumption is only valid at high strain rates. The limit of its accuracy is even pushed to higher strain rates when the fragmentation process becomes more complex, that is to say when crack propagation, bifurcation or coalescence together with wave reflections are implied. In these cases, fragmentation lasts longer than the time needed to completely obscure the whole specimen and the obscured zone theory for fragmentation appears inadequate. We use the cohesive-element method to describe the damage and failure of the material considered.
机译:碎片预测的问题是各种分析模型的起源。其中,我们重点介绍了模糊区域的概念。他们认为,当裂纹在缺陷处引发时,应力释放波会从裂纹处传播开来,并保护波所包围的区域免受任何进一步的裂纹引发。在本文中,我们通过使用数值模拟表明该假设仅在高应变速率下有效。当破碎过程变得更加复杂时,也就是说,当暗示裂纹扩展,分叉或合并以及波反射时,其精度的极限甚至被推到更高的应变率。在这些情况下,碎片的持续时间比完全遮盖整个样本所需的时间长,并且碎片的模糊区域理论似乎不足。我们使用内聚元素法来描述所考虑材料的损坏和破坏。

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