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Mitigation of Blast Effects on Protective Structures by Aluminum Foam Panels

机译:减轻铝泡沫板爆炸对保护结构的影响

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Aluminum foams have low density and are attractive materials to mitigate high-speed pressure by blast loads due to high-energy absorption capabilities. In order to develop nonlinear material models for the aluminum foam with different density, mechanical properties of the foam and foam panels under compression, tension, shear and bending moment were obtained by numerous tests. Through the explicit analyses of the foam panels by LS-DYNA, the derived models were verified. Performance of the foam panels with different scaled distances was evaluated by blast tests. Thickness, density and skin plate properties of the panel are the most important parameters to estimate the transmitted pressure to protective structures. Because the pressure of close range blast loading is not uniform, the skin plays an important role in the behavior of the foam. Numerical simulations considering the parameters provided basic design guidelines for the protective structures with sacrificial foam panels. Properly designed panels for the required blast loads can control the transmitted pressure to the target structure under a certain pressure on the yield strength of the foam.
机译:铝泡沫具有低密度,并且由于具有高能量吸收能力,因此是减轻爆炸载荷引起的高速压力的有吸引力的材料。为了建立具有不同密度的泡沫铝的非线性材料模型,通过大量测试获得了泡沫和泡沫板在压缩,拉伸,剪切和弯曲力矩下的机械性能。通过LS-DYNA对泡沫板的显式分析,验证了导出的模型。通过爆炸测试评估具有不同比例距离的泡沫板的性能。面板的厚度,密度和蒙皮特性是评估传递至保护结构的压力的最重要参数。由于近距离爆炸载荷的压力不均匀,因此皮肤在泡沫行为中起着重要作用。考虑参数的数值模拟为采用牺牲泡沫板的防护结构提供了基本设计指南。适当设计的面板可用于所需的爆炸载荷,从而可以在一定的泡沫屈服强度压力下控制传递到目标结构的压力。

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