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Blast Alleviation of Sacrificial Cladding with Graded and Uniform Cellular Materials

机译:用分级和均匀的细胞材料爆炸减轻牺牲包层

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摘要

Graded cellular material is a superb sandwich candidate for blast alleviation, but it has a disadvantage for the anti-blast design of sacrificial cladding, i.e., the supporting stress for the graded cellular material cannot maintain a constant level. Thus, a density graded-uniform cellular sacrificial cladding was developed, and its anti-blast response was investigated theoretically and numerically. One-dimensional nonlinear plastic shock models were proposed to analyze wave propagation in density graded-uniform cellular claddings under blast loading. There are two shock fronts in a positively graded-uniform cladding; while there are three shock fronts in a negatively graded-uniform cladding. Response features of density graded-uniform claddings were analyzed, and then a comparison with the cladding based on the uniform cellular material was carried out. Results showed that the cladding with uniform cellular materials is a good choice for the optimal mass design, while the density graded-uniform cladding is more advantageous from the perspective of the critical length design indicator. A partition diagram for the optimal length of sacrificial claddings under a defined blast loading was proposed for engineering design. Finally, cell-based finite element models were applied to verify the anti-blast response results of density graded-uniform claddings.
机译:分级蜂窝材料是一种极好的夹层候选人,用于爆炸缓解,但它对牺牲包层的抗风设计具有缺点,即渐变细胞材料的支撑应力不能保持恒定水平。因此,开发了密度分级均匀的细胞牺牲覆层,从理论上和数值上进行了抗爆响应。提出了一维非线性塑料休克模型,分析了冲压下密度分级均匀蜂窝包层中的波长。积极逐渐均匀的包层有两个震动前线;虽然存在带负面分级的包层中有三个震动前线。分析了密度分级均匀包层的响应特征,然后进行与基于均匀细胞材料的包层的比较。结果表明,均匀细胞材料的包层是最佳质量设计的良好选择,而密度分级均匀的包层从临界长度设计指示器的角度来看更有利。提出了一种在限定的爆破载荷下最佳牺牲剥离长度的隔板图,用于工程设计。最后,应用基于细胞的有限元模型以验证密度分级均匀的包层的抗爆响应结果。

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