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Mesoscale calculations of the dynamic behavior of a granular ceramic

机译:粒状陶瓷动力学行为的中尺度计算

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Mesoscale calculations have been conducted in order to gain further insight into the dynamic compaction characteristics of granular ceramics. The primary goals of this work are to numerically determine the shock response of granular tungsten carbide and to assess the feasibility of using these results to construct the bulk material Hugoniot. Secondary goals include describing the averaged compaction wave behavior as well as characterizing wave front behavior such as the strain rate versus stress relationship and statistically describing the laterally induced velocity distribution. The mesoscale calculations were able to accurately reproduce the experimentally determined Hugoniot slope but under predicted the zero pressure shock speed by 12%. The averaged compaction wave demonstrated an initial transient stress followed by asymptotic behavior as a function of grain bed distance. The wave front dynamics demonstrate non-Gaussian compaction dynamics in the lateral velocity distribution and a power-law strain rate-stress relationship. (c) 2007 Elsevier Ltd. All rights reserved.
机译:为了获得对粒状陶瓷的动态压实特性的进一步了解,已经进行了中尺度计算。这项工作的主要目的是从数值上确定粒状碳化钨的冲击响应,并评估使用这些结果构建块状材料Hugoniot的可行性。次要目标包括描述平均压实波行为以及表征波前行为(例如应变率与应力关系),并统计地描述横向感应速度分布。中尺度计算能够准确地再现实验确定的Hugoniot斜率,但在预测的零压力冲击速度下可降低12%。平均压实波表现出初始瞬态应力,其后的渐近行为是晶粒床距离的函数。波前动力学证明了在横向速度分布和幂律应变率-应力关系中的非高斯压实动力学。 (c)2007 Elsevier Ltd.保留所有权利。

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