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A Computationally Efficient Computer-Aided Design Strategy for Iterative Combat Helmet Design and Analysis

机译:一个计算高效的计算机辅助设计策略迭代战斗头盔设计和分析

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摘要

Assessing combat helmet ballistic performance is a costly endeavor using either an experimental or a computational process. Experimental assessment requires many iterations and helmets to acquire a sufficient data set. To circumvent this, computational simulation is incorporated into the design process to supplement a few experiments. However, due to the complex constitutive response of the helmet (anisotropic elasticity, plasticity, damage initiation and evolution, and failure), it is computationally costly to run many ballistic impact simulations. The goal of this work is to develop a computer-aided design (CAD) software to rapidly analyze combat helmets undergoing a ballistic impact. The software considers a representative mix of potential threats, helmet geometry modifications and additions, brain functional anatomy, and injury considerations. The resulting software demonstrates that a given helmet can be analyzed in a matter of minutes on a standard desktop computer and parametric studies can be completed in a matter of hours. The results of the CAD software show how helmet design parameters such as helmet shell materials, geometry, and ceramic appliques all affect helmet ballistic performance.
机译:评估作战头盔弹道性能使用一个实验性或昂贵的努力计算过程。需要多次迭代和头盔收购足够的数据集。计算模拟纳入设计过程中补充一些实验。然而,由于复杂的本构响应头盔(各向异性的弹性,可塑性,损伤起始和演化失败),计算代价高昂的运行许多模拟弹道的影响。这项工作是开发计算机辅助设计(CAD)软件快速分析作战头盔经历一次弹道的影响。认为一个代表性的潜力威胁,头盔几何修改和添加、大脑功能解剖学和伤害考虑。可以分析表明,给定的头盔在几分钟内标准桌面电脑可以完成和参数研究在几小时。软件显示头盔等设计参数头盔壳材料、几何和陶瓷贴花都会影响头盔弹道的性能。

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