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将理论与实践相结合:根据老化防弹衣的机械性能预测弹道性能。

Linking Theory to Practice: Predicting Ballistic Performance from Mechanical Properties of Aged Body Armor.

作者信息

Forster Amanda L, Leber Dennis D, Engelbrecht-Wiggans Amy, Landais Virginie, Chang Allen, Guigues Emilien, Messin Guillaume, Riley Michael A

机构信息

Material Measurement Laboratory, National Institute of Standards and Technology, Gaithersburg, MD 20899, USA.

Information Technology Laboratory, National Institute of Standards and Technology, Gaithersburg, MD 20899, USA.

出版信息

J Res Natl Inst Stand Technol. 2020 Aug 24;125:125026. doi: 10.6028/jres.125.026. eCollection 2020.

Abstract

It has long been a goal of the body armor testing community to establish an individualized, scientific-based protocol for predicting the ballistic performance end of life for fielded body armor. A major obstacle in achieving this goal is the test methods used to ascertain ballistic performance, which are destructive in nature and require large sample sizes. In this work, using both the Cunniff and Phoenix-Porwal models, we derived two separate but similar theoretical relationships between the observed degradation in mechanical properties of aged body armor and its decreased ballistic performance. We present two studies used to validate the derived functions. The first correlates the degradation in mechanical properties of fielded body armor to the degradation produced by a laboratory accelerated-aging protocol. The second examines the ballistic resistance and the extracted-yarn mechanical properties of new and laboratory-aged body armor made from poly(p-phenylene-2,6-benzobisoxazole), or PBO, and poly(p-phenylene terephthalamide), or PPTA. We present correlations found between the tensile strengths of yarns extracted from armor and the ballistic limit (V50) when significant degradation of the mechanical properties of the extracted yarns was observed. These studies provided the basis for a validation data set in which we compared the experimentally measured V50 ballistic limit results to the theoretically predicted V50 results. The theoretical estimates were generally shown to provide a conservative prediction of the ballistic performance of the armor. This approach is promising for the development of a tool for fielded armor performance surveillance relying upon mechanical testing of armor coupon samples.

摘要

长期以来,防弹衣测试界的一个目标是建立一种基于科学的个性化方案,用于预测现役防弹衣的弹道性能使用寿命终点。实现这一目标的一个主要障碍是用于确定弹道性能的测试方法,这些方法本质上具有破坏性,并且需要大量样本。在这项工作中,我们使用坎尼夫模型和凤凰 - 波尔瓦尔模型,得出了老化防弹衣机械性能的观测降解与其弹道性能下降之间两个独立但相似的理论关系。我们展示了两项用于验证推导函数的研究。第一项研究将现役防弹衣的机械性能降解与实验室加速老化方案产生的降解相关联。第二项研究考察了由聚对苯撑 - 2,6 - 苯并双恶唑(PBO)和聚对苯二甲酰对苯二胺(PPTA)制成的新型和实验室老化防弹衣的抗弹性能以及抽出纱线的机械性能。当观察到抽出纱线的机械性能有显著降解时,我们展示了从防弹衣中抽出的纱线的拉伸强度与弹道极限(V50)之间的相关性。这些研究为一个验证数据集提供了基础,在该数据集中我们将实验测量的V50弹道极限结果与理论预测的V50结果进行了比较。理论估计通常显示出对防弹衣弹道性能的保守预测。这种方法对于开发一种依靠防弹衣试样的机械测试来监测现役防弹衣性能的工具很有前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d828/10883353/dc0aa3b9317c/jres.125.026-Image001.jpg

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