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首页> 外文期刊>Journal of Dynamic Behavior of Materials >Shock Compression Modeling of Distended Mixtures
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Shock Compression Modeling of Distended Mixtures

机译:分散混合物的冲击压缩建模

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摘要

Development of material models to describe the thermodynamic shock states of distended mixtures is motivated by the need to understand how these materials respond over large compression ranges starting from low-pressure mechanical crush, extending into extreme thermodynamic states, and subsequent release to low-pressure. A material modeling approach is presented, which is comprised of a thermodynamically consistent equation-of-state (EOS) within a mixture-modeling framework. This modeling approach enables the investigator to describe the dynamic response of distended mixtures over a large compression range. The EOS model is applied to shock Hugoniot data on tungsten carbide, tantalum pentoxide, and calcite-water mixtures.
机译:需要了解这些材料如何在较大的压缩范围内做出响应,从而从较低的机械破碎开始,扩展到极端的热力学状态,然后释放到低压,从而推动了描述膨胀混合物的热力学冲击状态的材料模型的开发。提出了一种材料建模方法,该方法由混合物建模框架内的热力学一致状态方程(EOS)组成。这种建模方法使研究人员能够描述膨胀混合物在较大压缩范围内的动态响应。 EOS模型适用于有关碳化钨,五氧化二钽和方解石-水混合物的Hugoniot数据。

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