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Mechanical properties of open-cell metal foams under low-velocity impact loading

机译:低速冲击载荷下开孔金属泡沫的力学性能

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摘要

Dynamic response of open-cell metal foam under low-velocity impact loading is important in applications involving impact resistance and energy absorption; etc. Assuming that metal foam is a conceptually continuous material; the macroscopic mechanical behaviors; both static and dynamic; must be studied. Within the dynamic mechanical properties of metal foam; impact response becomes the renewed interest to understand the characteristics of impact deformation. The present work aims to experimentally and numerically analyze the low-velocity impact response of open-cell metal foam. A series of low-velocity drop impact tests are realized on the open-cell metal foam samples with different relative densities and at different impact velocity. Afterwards; a well compiled program in Python controls the whole multiple drop impact process on each sample of metal foam. Corresponding numerical modeling and the simulation for single impact analysis are continuously carried out with the finite element (FE) program ABAQUS/Explicit. Proper meshing technique; loading and boundary conditions are conducted on all the foam models; and at the same time; the required mechanical properties: elastic module; Poisson's ratio; uniaxial stress-strain response and strain-rate dependence are utilized. In conclusion; the simulated results provide the good agreements with the experimental results in the case of low-velocity impact testing of open-cell metal foam. Experimental procedure and numerical simulation offer good approaches to improve the impact resistance and energy absorption of the open-cell metal foam.
机译:开孔金属泡沫在低速冲击载荷下的动态响应在涉及抗冲击性和能量吸收的应用中很重要。假设金属泡沫在概念上是连续的材料;宏观力学行为;静态和动态;必须研究。内金属泡沫的动态力学性能;冲击响应成为重新认识冲击变形特征的兴趣。本工作旨在通过实验和数值分析开孔金属泡沫的低速冲击响应。对具有不同相对密度和不同冲击速度的开孔金属泡沫样品进行了一系列的低速跌落冲击试验。然后;一个经过良好编译的Python程序可以控制每个泡沫金属样品的整个多次跌落冲击过程。使用有限元(FE)程序ABAQUS / Explicit连续进行相应的数值建模和单冲击分析仿真。正确的网格划分技术;在所有泡沫模型上进行载荷和边界条件;同时所需的机械性能:弹性模块;泊松比;利用了单轴应力-应变响应和应变率依赖性。结论;在开孔金属泡沫低速冲击试验中,模拟结果与实验结果吻合良好。实验程序和数值模拟为改善开孔金属泡沫的抗冲击性和能量吸收提供了很好的方法。

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