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Study on the Failure and Energy Absorption Mechanism of Multilayer Explosively Welded Plates Impacted by Spherical Fragments

机译:球形碎片影响多层爆炸板的失效和能量吸收机理研究

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摘要

A stereomicroscope, microscopic metallograph, scanning electron microscope, and the ANSYS/LS-DYNA 3D finite-element code were employed to investigate the failure and energy absorption mechanism of two-layer steel/aluminum and three-layer steel/aluminum/steel and aluminum/steel/aluminum explosively welded composite plates impacted by spherical fragments. The effects of layer number, target order, and the combination state of interfaces on the failure and energy absorption mechanism are analyzed based on experimental and numerical results. Results showed that the effect of the combination state of interfaces on the failure mode was pronounced the most compared with other factors. The failure mechanism of the front and middle plates were shearing and plugging, and that of rear plate was ductile deformation when the tied interface failed by tension (or by shearing and plugging when the interface combination remained connected). A narrow adiabatic shear band was formed in the locally yielding plate damaged by shearing and plugging during the penetration process. The amount of energy needed to completely perforate the three-layer composite target was greater than that for a two-layer composite target with the same areal density and total thickness. The protective performance of the steel/aluminum/steel target was better than that of the aluminum/steel/aluminum target with the same areal density.
机译:立体显微镜,微观金相器仪,扫描电子显微镜和ANSYS / LS-DYNA 3D有限元码,研究了双层钢/铝和三层钢/铝/钢和铝的故障和能量吸收机理/钢/铝制爆炸焊接复合板受球片碎片​​。基于实验性和数值结果,分析了层数,目标顺序和接口接口组合状态的影响。结果表明,与其他因素相比,界面组合状态的效果明显了。前板和中间板的故障机构是剪切和堵塞,当绑定界面失效时,后板的延展板是延展性变形(或通过剪切和堵塞当界面组合保持连接时)。在通过穿透过程中通过剪切和堵塞损坏的局部产生的板中形成窄的绝热剪切带。完全穿孔所需的能量量为三层复合靶标大于具有相同面密度和总厚度的双层复合靶。钢/铝/钢靶的保护性能优于具有相同面密度的铝/钢/铝靶的保护性。

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