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首页> 外文期刊>Interaction and Multiscale Mechanics: An International Journal >The dilatancy and numerical simulation of failure behavior of granular materials based on Cosserat model
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The dilatancy and numerical simulation of failure behavior of granular materials based on Cosserat model

机译:基于Cosserat模型的粒状材料破坏行为的扩张性与数值模拟

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摘要

The dilatancy of granular materials has significant influence on its mechanical behaviors. The dilation angle is taken as a constant in conventional associated or non-associated flow rules based on Drucker-Prager yields theory. However, various experimental results show the dilatancy changes during progressive failure of granular materials. A non-associated flow rule with evolution of dilation angle is adopted in this study, and Cosserat continuum theory is used to describe the behaviors of granular materials for considering to some extent the its internal structure. Numerical examples focus on the bearing capacity and localization of granular materials, and results illustrate the capability and performance of the presented model in modeling the effect on failure behavior of granular materials.
机译:粒状材料的膨胀性对其机械性能具有重大影响。在基于Drucker-Prager屈服理论的常规关联或非关联流规则中,将扩张角视为一个常数。但是,各种实验结果表明,在颗粒材料逐渐破坏期间,膨胀率发生了变化。本研究采用具有扩张角演化的非关联流动规律,并采用Cosserat连续体理论描述颗粒材料的行为,并在某种程度上考虑了其内部结构。数值例子集中在颗粒材料的承载力和局部化方面,结果说明了该模型在对颗粒材料的破坏行为建模方面的能力和性能。

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