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Numerical Study on the Ballistic Impact on Lightweight Composite Armour

机译:轻量级复合甲基弹性影响的数值研究

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A lightweight sandwich composite armours has been established by comparing the ballistic resistance of the potential component materials. The ballistic-resistance properties of the armours under impacting by the bullet with 12.7mm diameter are also numerically investigated by using finite element software LS-DYNA. Numerical modeling is used to obtain an estimate for the ballistic limit velocity (V_(50)) and simulate penetration processes. The focus is placed on the energy absorption capabilities of different component layers with same density per unit area. The influence of stacking sequence and thickness ratio of ceramic/fiber layer has been analyzed in detail. Results indicate that the composite armour having optimal thickness ratio of ceramic/fiber layer in the same density and its mass is 29% lighter than of 4340 steel target.
机译:通过比较潜在成分材料的抗弹性来建立轻质夹层复合臂。通过使用有限元软件LS-DYNA,还在数值上研究了12.7mm直径下的腋下的腋下的抗弹性特性。数值建模用于获得弹道极限速度(V_(50))和模拟穿透过程的估计。将焦点放置在不同组分层的能量吸收能力,每个单位面积相同的密度。已经详细分析了陶瓷/纤维层的堆叠序列和厚度比的影响。结果表明,具有相同密度及其质量相同密度的陶瓷/纤维层的最佳厚度比的复合铠装是比4340钢靶更轻的29%。

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