A facile method for the estimation of ceramic performance in light armor systems

Jake Ganor
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Abstract

Ballistic armor material development has been historically constrained by the limitations of existing predictive models. Traditional approaches, primarily reliant on finite element models, are not only computationally intensive but also often fall short in accurately predicting the ballistic performance of ceramics, particularly with novel materials. This challenge is exacerbated by the lack of clear correlations between a ceramic material's mechanical properties and its ballistic efficacy in existing equations. In this context, we have developed a novel empirical equation that represents a significant shift from conventional methods. This facile formula provides a more cohesive and predictive way to estimate ballistic performance from material mechanical properties, accurately defines performance relations between different material types, and addresses the gaps that have hindered previous methodologies. This new ballistic efficacy equation conclusively answers the old question as to which mechanical properties correlate with performance in light armor systems and opens avenues for the rapid development and optimization of more effective ceramic armor materials.

Abstract Image

估算轻型装甲系统中陶瓷性能的简便方法
弹道装甲材料的开发历来受到现有预测模型的限制。传统方法主要依赖于有限元模型,不仅计算量大,而且往往无法准确预测陶瓷的弹道性能,尤其是新型材料。在现有的方程式中,陶瓷材料的机械性能与其弹道效能之间缺乏明确的相关性,从而加剧了这一挑战。在这种情况下,我们开发了一种新的经验公式,与传统方法相比有了重大转变。这个简便的公式提供了一种更具内聚力和预测性的方法,可根据材料的机械性能估算弹道性能,准确定义了不同材料类型之间的性能关系,并解决了阻碍以往方法的不足之处。这一新的弹道效能方程式最终回答了轻型装甲系统中哪些机械性能与性能相关的老问题,并为快速开发和优化更有效的陶瓷装甲材料开辟了途径。
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