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Improved Florence Model And Optimization Of Two-component Armor Against Single Impact Or Two Impacts

机译:改进的佛罗伦萨模型和针对一次或两次撞击的两组分装甲优化

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摘要

A new version of the Florence model taking into account the ballistic resistance of the ceramic plate in a two-component armor is suggested, verified and used for armor optimization. The direct problems (maximization of the ballistic limit velocity for a given areal density (AD) or a total thickness (TT) of the armor) and the inverse problems (minimizations of AD or TT for a given impact velocity) are investigated in the case of a single impact. We also formulated and studied the armor optimization problems with a repeated impact. Numerical results are presented for aluminum/alumina armor.
机译:提出了一种新型佛罗伦萨模型,该模型考虑了两组分装甲中陶瓷板的弹道阻力,并进行了验证并用于优化装甲。在这种情况下,研究了直接问题(给定面密度(AD)或装甲总厚度(TT)时的弹道极限速度的最大值)和反问题(给定冲击速度时AD或TT的最小值)单一的影响。我们还反复制定并研究了装甲优化问题。给出了铝/氧化铝装甲的数值结果。

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