个人防护辅助材料:综述

Danish Tahir, Minglonghai Zhang, Hongming Hu
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引用次数: 9

摘要

由效率低下的个人防护服和装备引起的改变生命的疾病和死亡人数日益增加。测试标准、环境条件、内场碰撞的差异是导致个人防护装备和服装在军事、体育等各个领域的伤害数量尚未减少的原因。为了进一步提高个人防护材料的使用效率,建议使用吸能高、透气性好、成型能力强、抗压痕能力强的增氧材料。增减材料是一种具有负泊松比的非常规材料,在压缩时收缩,在拉伸时膨胀。与非增塑剂的传统材料相比,增塑剂具有改进的性能,可用于个人防护应用。本文综述了增塑剂对个人防护的重要性,着重于减少伤害的机会,以及可能的想法可以进一步使防护产品受益。本文首先介绍了减震结构及其防护应用,然后介绍了减震结构的制作方法。本综述将总结其局限性、经济前景,以及哪些可能的工作可以进一步提高auxetic材料在个人防护中的潜在用途。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Auxetic Materials for Personal Protection: A Review
Life‐changing illnesses and fatalities caused by inefficient personal protective clothing and equipment are increasing day by day. The discrepancy between the test standards, environmental conditions, and infield collision is the reason why personal protection equipment and clothing have not yet decreased the number of injuries in various fields such as military and sports. To further increase the efficiency of personal protection materials, auxetic materials are suggested because of their high energy absorption, good permeability, form‐fitting ability, and high indentation resistance. Auxetic materials are nonconventional materials with a negative Poisson's ratio and can shrink under compression and expand when subjected to stretching. In comparison to nonauxetic conventional materials, auxetic materials have improved properties that can be useful for personal protection applications. This review focuses on the importance of auxetic materials for personal protection, focusing on reducing the chances of injury and what possible ideas can further benefit the protection products. The first part of the review discusses the auxetic structures and their protection applications followed by the fabrication of auxetic structures. The review will conclude with limitations, economic prospects, and what possible work can further improve the potential use of auxetic materials in personal protection.
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