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明胶背衬对单层防弹材料抗爆炸碎片性能的影响。

Gelatine Backing Affects the Performance of Single-Layer Ballistic-Resistant Materials Against Blast Fragments.

作者信息

Nguyen Thuy-Tien N, Meek George, Breeze John, Masouros Spyros D

机构信息

Department of Bioengineering, Imperial College London, London, United Kingdom.

Royal Centre for Defence Medicine, Queen Elizabeth Hospital Birmingham, Birmingham, United Kingdom.

出版信息

Front Bioeng Biotechnol. 2020 Jul 2;8:744. doi: 10.3389/fbioe.2020.00744. eCollection 2020.

Abstract

Penetrating trauma by energized fragments is the most common injury from explosive devices, the main threat in the contemporary battlefield. Such devices produce projectiles dependent upon their design, including preformed fragments, casings, glass, or stones; these are subsequently energized to high velocities and cause serious injuries to the body. Current body armor focuses on the essential coverage, which is mainly the thoracic and abdominal area, and can be heavy and cumbersome. In addition, there may be coverage gaps that can benefit from the additional protection provided by one or more layers of lightweight ballistic fabrics. This study assessed the performance of single layers of commercially available ballistic protective fabrics such as Kevlar, Twaron, and Dyneema, in both woven and knitted configurations. Experiments were carried out using a custom-built gas-gun system, with a 0.78-g cylindrical steel fragment simulating projectile (FSP) as the impactor, and ballistic gelatine as the backing material. FSP velocity at 50% risk of material perforation, gelatine penetration, and high-risk wounding to soft tissue, as well as the depth of penetration (DoP) against impact velocity and the normalized energy absorption were used as metrics to rank the performance of the materials tested. Additional tests were performed to investigate the effect of not including a soft-tissue simulant backing material on the performance of the fabrics. The results show that a thin layer of ballistic material may offer meaningful protection against the penetration of this FSP. Additionally, it is essential to ensure a biofidelic boundary condition as the protective efficacy of fabrics was markedly altered by a gelatine backing.

摘要

高能碎片造成的穿透性创伤是爆炸装置造成的最常见伤害,也是当代战场的主要威胁。此类装置根据其设计产生射弹,包括预制碎片、外壳、玻璃或石块;这些射弹随后被加速到高速并对身体造成严重伤害。目前的防弹衣侧重于基本覆盖范围,主要是胸部和腹部区域,可能很重且笨重。此外,可能存在覆盖间隙,可受益于一层或多层轻质防弹织物提供的额外保护。本研究评估了市售防弹织物单层(如芳纶、特沃纶和迪尼玛)在机织和针织结构中的性能。实验使用定制的气枪系统进行,用一个0.78克的圆柱形钢质模拟弹丸(FSP)作为撞击体,弹道明胶作为背衬材料。将材料穿孔风险为50%时的FSP速度、明胶穿透情况、对软组织的高风险致伤情况,以及穿透深度(DoP)与撞击速度的关系和归一化能量吸收作为指标,对测试材料的性能进行排名。还进行了额外测试,以研究不包括软组织模拟背衬材料对织物性能的影响。结果表明,一层薄的防弹材料可能对这种FSP的穿透提供有意义的保护。此外,确保生物逼真的边界条件至关重要,因为明胶背衬会显著改变织物的防护效果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7431/7343711/3d8376ff65b9/fbioe-08-00744-g001.jpg

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