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ESTIMATION OF THE BULLET DEPTH OF PENETRATION BASED ON THE NUMERICAL INTEGRATION OF STOCHASTIC DIFFERENTIAL EQUATION

机译:基于随机微分方程数值集成的基于数值集成的渗透子子弹深度的估计

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The ballistic performance of materials subjected to projectile impact loading is analyzedbased on the determination of the ballistic limit velocity (BLV) or the depth of penetration(DoP). The ballistic assessment of thick plates is generally based on the use of the DoPparameter. Experimental observation reveals the randomness of the DoP of a givenprojectile penetrating the target material at a given impact velocity. This contributionmodels the projectile DoP using the Brownian motion approach. The key advantage of thedeveloped model is that it supplies insights about the statistical distribution of the DoPinstead of only providing an analytical estimation of this parameter. Furthermore, ifperforation starts to occur, this approach might also yield information about the residualvelocity and its dispersion. Finally, the model results are compared with the ones producedby the most existing methods.
机译:分析了对射弹冲击载荷进行的材料的弹道性能基于弹性极限速度(BLV)的确定或渗透深度(DOP)。厚板的弹道评估通常基于使用DOP的使用范围。实验观察揭示了给定的DOP的随机性射弹在给定的冲击速度下穿透目标材料。这项贡献使用布朗运动方法模拟射弹DOP。的主要优势开发的模型是它提供了关于DOP统计分布的见解而不是仅提供此参数的分析估计。此外,如果穿孔开始发生,这种方法也可能产生有关残差的信息速度及其分散。最后,将模型结果与生产的模型结果进行比较通过现有方法。

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