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首页> 外文期刊>International Journal of Solids and Structures >Compaction of a double-layered metal foam block impacting a rigid wall
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Compaction of a double-layered metal foam block impacting a rigid wall

机译:压实刚性墙的双层金属泡沫块的压实

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The propagation of compaction waves in layered metal foam materials subjected to impact loading is analysed in order to examine the mechanism of compaction and reveal the phenomena that develop at the interface between the foam layers. The analysis is focused on double-layered configurations in which the individual materials exhibit strain hardening in the quasi-static regime of loading. Complex patterns of compaction due to impact are revealed depending on the foam quasi-static stress–strain characteristics, sequence of layers and impact velocity. The compaction of the individual foam layers under an increasing and decreasing velocity is distinguished. It is established that either a strong discontinuity wave or a simple compression wave can start propagating from the layers interface inside the distal layer depending on the material properties. It is shown that a secondary compaction of the proximal foam layer is possible to occur due to the propagation of the reflected wave from the layers interface when a particular layer sequence is arranged. This can lead to a significant stress increase at the interface. The present analysis is based on uniaxial models of compaction in which the compacted strains are not predefined but are obtained as a part of the solution being functions of the velocity variation. The proposed analytical models are verified by numerical simulations considering aluminium based foam Cymat with densities 253 and 570 kg/m3 and Alporas with density 245 kg/m~3. The influence of the elastic material properties is briefly discussed.
机译:分析了压实波在经受冲击载荷的层状金属泡沫材料中的传播,以检查压实机理并揭示在泡沫层之间的界面处形成的现象。分析集中在双层结构上,其中单个材料在准静态加载状态下表现出应变硬化。根据泡沫的准静态应力-应变特性,层序和冲击速度,揭示了由于冲击而产生的复杂压实模式。区分了在增加和减小的速度下各个泡沫层的压实度。已经确定,取决于材料特性,强的不连续波或简单的压缩波都可以从远端层内部的层界面开始传播。示出了,当布置特定的层序列时,由于来自层界面的反射波的传播,可能发生近端泡沫层的二次压实。这会导致界面处的应力显着增加。本分析基于压实的单轴模型,其中压实应变不是预先定义的,而是作为速度变化函数的解决方案的一部分而获得的。考虑到密度为253和570 kg / m3的铝基泡沫Cymat和密度为245 kg / m〜3的Alporas,通过数值模拟验证了所提出的分析模型。简要讨论了弹性材料性能的影响。

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