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Perforation Characteristics of Metal Target plate subjected to PELE

机译:对骨质进行金属靶板的穿孔特性

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The perforation tests of 45 # steel target plate and 2A12 aluminium alloy target plate by PELE (the Penetrator with Lateral Efficiency) were carried out in this paper to study the perforation failure characteristics of metal target plate. The macroscopic morphology of perforation on the target plate and the plug was observed, and the perforation wall was cut and polished to observe the distribution and trend of the cracks in the perforation wall by scanning electron microscopy (SEM) and metallographic microscopy. The magnitude and direction of the force produced by PELE on the target during penetration were calculated by numerical simulation. The experimental and numerical results show that, the perforation failure of metal target plate by PELE is different from the ductile perforation by conical-nosed projectile and the punching failure by flat-nosed projectile. The longitudinal cross section of the perforation is funnel-shaped and the shape of the plug is like a circular truncated cone. In the process of penetrating the target plate, the expansion of the filling causes the jacket to exert a force with a certain angle to the direction of projectile movement, which is the main reason for the funnel-shaped perforation and the circular truncated cone shaped plug.
机译:本文进行了45#钢目标板和2A12铝合金靶板的穿孔试验,以研究金属靶板的穿孔故障特性。观察到靶板上的穿孔的宏观形态,并切割穿孔壁,通过扫描电子显微镜(SEM)和金相显微镜观察穿孔壁的裂缝的分布和趋势。通过数值模拟计算通过骨对骨对靶法产生的力的幅度和方向。实验性和数值结果表明,通过锥形射弹和通过扁平射弹的锥形射弹和冲压破坏不同的金属靶板的穿孔失效与延性穿孔不同。穿孔的纵向横截面是漏斗形,插头的形状类似于圆形截头锥体。在穿透靶板的过程中,填充的膨胀使夹套施加具有一定角度的力与射弹运动的方向,这是漏斗形穿孔的主要原因和圆形截锥形插头的主要原因。

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