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Non-Dissipative Structural Evolutions in Granular Materials

机译:颗粒材料的非耗散结构演变

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The structure of the contact network in granular assemblies can evolve due to either dissipative mechanisms such as sliding at contact points, or non-dissipative mechanisms through the phenomenon of contact gain and loss. Being associated with negligible deformations, non-dissipative mechanisms is actually active even in the small strain range of ~ 10?3, especially in the case of densely packed assemblies. Hence, from a constitutive modelling point of view, it is crucial to be able to estimate such non-dissipative evolutions since both elastic and plastic properties of granular assemblies highly depend on contact network characteristics. The current study proposes an analytical scheme that allows us to estimate the non-dissipative contact gain/loss regime in terms of directional changes in the average contact force. The probability distribution of contact forces is used to compute the number of lost contact for each direction. Similarly, the number of newly formed contacts is estimated by considering the probability distribution of the gap between neighbouring particles. Based on the directional contact gain/loss computed, the changes in coordination number and fabric anisotropy can be found which, together with statistical treatments of Love-Weber stress expression, form a complete system of equations describing the evolution of other controlling microvariables. Finally, the results of the calculations have been compared with DEM simulations which verify the accuracy of the proposed scheme.
机译:颗粒状装配体中的接触网络的结构可能由于诸如在接触点处滑动的耗散机制或通过接触增益和损耗现象的非耗散机制而发生演变。与可忽略的变形有关,即使在约10?3的小应变范围内,非耗散机制实际上仍很活跃,尤其是在组装密集的情况下。因此,从本构模型的观点出发,至关重要的是能够估计这种非耗散的演化,因为粒状组件的弹性和塑性性质都高度依赖于接触网络的特性。当前的研究提出了一种分析方案,该方案使我们能够根据平均接触力的方向变化来估计非耗散接触增益/损耗状态。接触力的概率分布用于计算每个方向失去接触的次数。类似地,通过考虑相邻粒子之间的间隙的概率分布来估计新形成的接触的数量。根据计算出的方向性接触损益,可以发现配位数和织物各向异性的变化,再加上对Love-Weber应力表达的统计处理,形成了描述其他控制微变量演变的完整方程组。最后,将计算结果与DEM仿真进行了比较,DEM仿真验证了所提方案的准确性。

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