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Solutions for Impact over Aerospace Protection

机译:对航空航天保护的影响解决方案

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New ballistic protection systems based on alternative materials have been recently developed. One of the industry's objectives is to develop lighter and stronger defensive systems, which allow higher mobility and safety for both vehicles and humans. This work studies the behavior of an aerospace protection against a projectile impact, seeking an optimized construction. The Al-Qureshi et al. model suggests a ceramic-metal layer system and describes its behavior. The literature shows, due to the considered parameters, the erosion tax and the loss of velocity. The phenomenon is described in steps, presenting particular effects for each. The equations are not equal between the stages showing different properties. The present work searches for a solution that can show the expression for mass and velocity, for each stage of the phenomenon. The results from the numerical method used were plotted and analyzed. The treatment was performed using Maplesoft Maple software. As a result, graphs were generated, which allow a deeper analysis of the model. Finally, advance in the knowledge of fracture processes in materials by high velocity impact can be concluded. This fact permits developments in materials that can perform shock absorption.
机译:最近开发了基于替代材料的新的弹道保护系统。其中一个行业目标是开发更轻,更强大的防御系统,这使得车辆和人类的移动性和安全性更高。这项工作研究了航空航天保护的行为,防止射弹冲击,寻求优化的建筑。 Al-Qureshi等人。模型表明陶瓷 - 金属层系统并描述其行为。文献表明,由于考虑了参数,侵蚀税和速度损失。该现象是以步骤描述的,给出每个的特殊效果。在显示不同性质的阶段之间的等式不等于。目前的工作搜索一个可以显示质量和速度表达的解决方案,对于该现象的每个阶段。由使用的数值方法的结果进行绘制和分析。使用Mapleoft Maple软件进行治疗。结果,生成了图形,这允许对模型进行更深入的分析。最后,可以得出通过高速冲击的材料中骨折过程的认识进展。这一事实允许在可以执行减震的材料中的开发。

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