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Deformation and damage of liquid-filled cylindrical shell composite structures subjected to repeated explosion loads: Experimental and numerical study

机译:反复爆炸载荷作用下充液圆柱壳复合结构的变形与损伤:实验与数值研究

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摘要

The dynamic response and structural damage of liquid-filled cylindrical shell composite structures, with different wall thicknesses and at varying stand-off distances, under repeated explosion loading were studied experimentally. The explosion resistance of liquid-filled cylindrical shell composite structures influenced by the wall thickness and stand-off distances was clarified, and the resistance thickness and critical distance were determined. The effect of internal liquid filling enhance the ability of the cylindrical shell to resist explosion loading was verified by experimental data. A stronger explosive load and greater deformation result in a more obvious enhancement effect of liquid filling on the cylindrical shell structure.The deformation and damage results of the liquid-filled cylindrical shell composite structures were divided into five typical modes. Three major modes were analysed numerically. By means of numerical simulation, the deformation and damage processes of the liquid-filled cylindrical shell composite structures subjected to repeated explosive loading were studied. The energy transformation directions of the three major modes were investigated in their respective deformation processes.
机译:实验研究了不同壁厚和不同间隔距离下充液圆柱壳复合结构在反复爆炸载荷下的动力响应和结构损伤。阐明了充液圆柱壳复合结构的爆炸阻力受壁厚和对峙距离的影响,并确定了电阻厚度和临界距离。实验数据证实了内部液体填充的作用增强了圆柱壳抵抗爆炸载荷的能力。爆炸载荷越强,变形越大,液体填充对圆柱壳结构的增强效果越明显。液体填充的圆柱壳复合结构的变形和破坏结果分为五种典型模式。数值分析了三种主要模式。通过数值模拟,研究了反复爆炸载荷作用下充液圆柱壳复合结构的变形和损伤过程。研究了三种主要模式在各自变形过程中的能量转换方向。

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