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Blast resistance of a ceramic-metal armour subjected to air explosion: A parametric study

机译:经受空气爆炸的陶瓷 - 金属盔甲的抗抗抗抗爆炸:参数研究

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摘要

Nowadays, composite plates are widely used as high-strength structures to fabricate a dynamic loading-resistant armours. In this study, the shock load is applied by an explosion of spherical TNT charge at a specified distance from the circular composite plate. The composite plate contains a two-layer ceramic-metal armour and a poly-methyl methacrylate (PMMA) target layer. The dynamic behavior of the composite armour has been investigated by measuring the transferred effective stress and maximum deflection into the target layer. For this purpose, the simulation of the blast loading upon the composite structure was performed by using the load-blast enhanced (LBE) procedure in Ls-Dyna software. The effect of main process parameters such as the thickness of layers, and scaled distance has been examined on the specific stiffness of the structure using response surface method. After validating the results by comparing with the experimental results, the optimal values for these parameters along with the regression equations for transferred effective stress and displacement to the target have been obtained. Finally, the optimal values of input parameters have been specified to achieve minimum transferred stress and displacement, simultaneously with reducing the weight of the structure.
机译:如今,复合板被广泛用作高强度结构,以制造动态负载耐臂。在该研究中,通过在距圆形复合板的指定距离处的球形TNT电荷爆炸施加冲击载荷。复合板含有双层陶瓷 - 金属铠装和甲基丙烯酸甲酯(PMMA)靶层。通过测量转移的有效应力和最大偏转进入目标层来研究复合铠装的动态行为。为此目的,通过使用LS-DYNA软件中的负载驱动增强型(LBE)程序进行复合结构上的爆破负荷的模拟。主要的过程参数如层的厚度和缩放距离的效果已经在使用响应表面方法的特定刚度上检查。通过与实验结果进行比较验证结果,已经获得了这些参数的最佳值以及用于转移有效应力和对目标的位移的回归方程。最后,已经指定了输入参数的最佳值以实现最小的转移应力和位移,同时降低结构的重量。

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