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Effect of heat treatment on the blast loading response of combined geometry shell core sandwich structures

机译:热处理对组合几何壳壳夹芯结构爆破载荷响应的影响

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The effect of heat treatment on the dynamic crushing and energy absorption behavior of combined geometry shell cores (hemisphere and cylinder) of sandwich structures were investigated both experimentally and numerically. The applied heat treatment on the combined geometry shell cores relieved the stress caused by deep drawing, diminishing the peak transmitted forces. The verified numerical models of the as-received and heat-treated combined geometry shells were used to model blast loading of various sandwich configurations and the additional sandwich configurations of reversing the cylindrical side of the cores to the impacted side. Both the applied heat-treatment and the reversing process decreased the magnitude of the force transmitted to the protected structure. The applied heat treatment increased the arrival time of blast force wave to the protected structure, while the reversing resulted in opposite. (C) 2015 Elsevier Ltd. All rights reserved.
机译:实验和数值研究了热处理对夹层结构组合几何壳壳(半球和圆柱体)的动态破碎和能量吸收行为的影响。对组合几何形状壳芯进行的热处理减轻了深冲所产生的应力,从而减小了峰值传递力。已验证并经过热处理的组合几何壳的经过验证的数值模型用于模拟各种夹心结构的爆炸载荷,以及将铁心的圆柱面反转到受冲击面的其他夹心结构。施加的热处理和反向过程都减小了传递到受保护结构的力的大小。施加的热处理增加了爆炸力波到达受保护结构的时间,而反向作用则相反。 (C)2015 Elsevier Ltd.保留所有权利。

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