改进个人防护装备穿甲性能问题的现状分析:回顾性研究

Serhii Dobrotvorskiy, Dmytro Trubin, Y. Basova, Borys Aleksenko, L. Dobrovolska
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引用次数: 0

摘要

研究对象是防弹衣等个人防护装备,工作主题是研究防弹衣等个人防护装备完整性的破坏过程,以找到提高其强度特性的方法。防弹衣是军队、执法机构和其他涉及生命危险的职业的关键防护要素。现代材料和技术使得生产最高防护等级的防弹背心成为可能,不仅能抵御子弹,还能抵御爆炸和弹片等其他危险。然而,这些系统必须提高防弹效率、轻便、灵活和舒适,才能有效工作。一般来说,防弹衣的防护效果由多种因素决定,包括防弹衣的结构技术、材料类型和防护板的表面处理。本文详细概述了目前人体防护板的设计技术水平和制造防护板的各种材料。本文详细分析了不同类型的人体防护装甲及其类别。接下来,将介绍各种面板制造方法、问题和可能的解决方案。最后,将讨论各种聚合物纤维和未来可能采用的先进材料,包括碳纳米管 (CNT)、石墨烯 CNT 和超增稠流体 (STF),以开发增强型防护板。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analysis of the state of the problem of improving the armor-piercing properties of personal protective equipment: a review study
The object of the study is personal protective equipment such as body armour, and the subject of the work is the study of the processes of destruction of the integrity of personal protective equipment such as body armour in order to find ways to improve their strength characteristics. Protective body armour is a key element of protection for the military, law enforcement agencies and other professions involving risk to life. Modern materials and technologies make it possible to produce bulletproof vests of the highest level of protection, providing not only protection against bullets but also against other hazards such as explosions and shrapnel. However, the systems must have improved ballistic efficiency, be lightweight, flexible and comfortable for effective work. In general, the effectiveness of protective body armour is determined by various factors, including the construction technique of the vest, the type of materials and the finish of the protective panels. This paper provides a detailed overview of the current state of the art in body armour panel design and various materials for the manufacture of protective plates. A detailed analysis of the different types of protective body armour and their categories is provided. Next, various methods of panel construction, their problems and possible solutions will be presented. Finally, various polymeric fibre and future possible advanced materials, including carbon nanotubes (CNTs), graphene CNTs and super thickened fluids (STFs), will be discussed for the development of enhanced protection panels.
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