SPECIAL CERAMICS IN MULTILAYER BALLISTIC PROTECTION SYSTEMS

M. Cegła
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引用次数: 3

Abstract

The paper presents some questions of designing and testing for modern ballistic protecting screens and applied materials especially such as ceramics. Continuous development of present ballistic composite materials enforces the optimisation of existing solutions for ballistic protections in respect to the mass, thickness and costs of material. In times of technological arm race a reduction of armour weight by 5% is a success. It may be achieved by development of new solutions of armour systems applying the newest materials. Ballistic ceramics both enhances the resistance of the armour against armour piercing projectiles and reduces its areal dencity in relation to traditional steel armours due to high mechanical properties, low density, high hardness and dissipation of energy at the mechanism of breaking. The paper illustrates the development of ceramic based armours and the structure of a multilayer ballistic protection, and finally the meaning of its particular layers in fighting the projectile. Moreover the impact of mechanical properties of some ceramic materials used for designing a protection system into its ballistic resistance is discussed.
多层弹道防护系统中的特种陶瓷
本文介绍了现代弹道防护屏及其应用材料(特别是陶瓷)在设计和试验中应注意的几个问题。目前的弹道复合材料的不断发展,加强了现有的解决方案的弹道保护方面的质量,厚度和材料成本的优化。在技术军备竞赛的时代,装甲重量减少5%是成功的。这可以通过开发应用最新材料的装甲系统的新解决方案来实现。弹道陶瓷由于其高力学性能、低密度、高硬度和破碎时能量耗散的特点,既提高了装甲对穿甲弹的抵抗能力,又相对于传统钢装甲降低了装甲的面密度。本文阐述了陶瓷基装甲的发展和多层弹道防护的结构,最后阐述了陶瓷基装甲在对抗弹丸中的特殊层的意义。此外,还讨论了用于防护系统设计的陶瓷材料的力学性能对其抗弹道性能的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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