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The importance of stress percolation patterns in rocks and other polycrystalline materials

机译:岩石和其他多晶材料中应力渗流模式的重要性

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A new framework for thinking about the deformation behavior of rocks and other heterogeneous polycrystalline materials is proposed, based on understanding the patterns of stress transmission through these materials. Here, using finite element models, I show that stress percolates through polycrystalline materials that have heterogeneous elastic and plastic properties of the same order as those found in rocks. The pattern of stress percolation is related to the degree of heterogeneity in and statistical distribution of the elastic and plastic properties of the constituent grains in the aggregate. The development of these stress patterns leads directly to shear localization, and their existence provides insight into the formation of rhythmic features such as compositional banding and foliation in rocks that are reacting or dissolving while being deformed. In addition, this framework provides a foundation for understanding and predicting the macroscopic rheology of polycrystalline materials based on single-crystal elastic and plastic mechanical properties.
机译:在了解岩石和其他非均质多晶材料的应力传递模式的基础上,提出了一个新的框架来考虑岩石和其他非均质多晶材料的变形行为。在这里,我使用有限元模型表明,应力会渗过多晶材料,这些材料具有与岩石中相同的异质弹性和塑性特性。应力渗流的模式与骨料中组成晶粒的不均匀程度和弹性和塑性特性的统计分布有关。这些应力模式的发展直接导致剪切局部化,并且它们的存在提供了对有节奏特征形成的见解,例如在变形时反应或溶解的岩石中的成分带和叶面化。另外,该框架为基于单晶弹性和塑性机械性能的多晶材料的宏观流变学的理解和预测提供了基础。

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