首页> 外文会议>International Conference on Mechanical Engineering >Ballistic performance test of multiple reinforcements composite armor vest
【24h】

Ballistic performance test of multiple reinforcements composite armor vest

机译:多种增强件复合装甲背心的弹道性能试验

获取原文
获取外文期刊封面目录资料

摘要

Armor vest is a self-protection device intended to minimize injury from ballistic impact. It serves to resist penetration and reduce impact energy generated by projectile. When a collision occurs, kinetic energy of the projectile is absorbed and distributed around the impact area of the vest; before it is finally forwarded to the user body. The forwarded energy and velocity of the projectile to the body are reduced as the vest holds the projectile penetration. It occurs by spreading momentum of the projectile into the user's body. In other words, the vest serves to expand the contact area between the projectile and the body. Remaining transmitted kinetic energy still might caused temporary blackout, bruises, swelling, and even serious internal injuries. Conventional armor vest is quite heavy, expensive, and not available locally. Considering these conditions, improved alternative material namely multiple reinforcements composite is needed in reducing kinetic energy from projectile impact. Research on this topic is conducted in two phases, simulation phase and experimetal phase. Simulation phase aims to obtain carbon fiber number of layer and the optimum thickness of the vest. Meanwhile experimental phase is perform in order to validate the simulation results. On this experiment, armor vest prototype is tested by following ballistic testing standard of National Institute of Justice (NIJ) 0101.06 level IIIA. Based on simulation, it shows that 6 mm thickness of epoxy-hollow glass microspheres-sisal fiber and 10 layers of carbon fiber on the back side is satisfied the requirement of National Institute of Justice for level IIIA. Thickness of the carbon fiber layer is 0.8 mm each, therefore total thickness of armor vest is 14 mm. Ballistic test by using Glock 17 USA caliber 9 mm full metal jacket (FMJ) shows that projectile penetrations is 5.40 mm with the back face signature (BFS) about 10 mm. The second ballistic test is using Revolver R1V1 Caliber 38 mm. The projectile penetrations is 7.88 mm with BFS about 20 mm. Both ballistic tests are satisfied the requirement of National Institute of Justice for level IIIA since maximum BFS limit is 44 mm.
机译:ARMOR背心是一种自我保护装置,旨在尽量减少弹道撞击的伤害。它用于抵抗渗透并减少射弹产生的冲击能量。发生碰撞时,射弹的动能被吸收和分布在背心的冲击区域周围;在它最终转发到用户身体之前。随着背心容纳射弹渗透的转发能量和射弹的速度和速度减少。它通过将弹丸的势头扩散到用户的身体中而发生。换句话说,背心用于扩展射弹和主体之间的接触区域。剩下的传播动能仍可能导致暂时的停电,瘀伤,肿胀,甚至严重的内部伤害。传统的盔甲背心非常重,昂贵,而且在本地不可用。考虑到这些条件,需要改进的替代材料即,需要多种增强材料复合材料,从而降低来自射弹撞击的动能。对该主题的研究是在两个阶段,仿真阶段和经验阶段进行的。模拟阶段旨在获得层的碳纤维数和背心的最佳厚度。同时实验阶段是为了验证仿真结果而执行。在这个实验中,通过国家司法研究所(Nij)0101.06等级IIIA的弹道测试标准来测试Armor背心原型。基于仿真,它表明,6毫米的环氧中空玻璃微球 - 纤维纤维和10层背面的碳纤维满足国家司法研究所等级IIIA的要求。碳纤维层的厚度分别为0.8mm,因此装甲背心的总厚度为14毫米。使用Glock 17美国口径9 mm全金属外套(FMJ)的弹道测试显示,射弹穿孔为5.40毫米,背面签名(BFS)约为10毫米。第二个弹道测试使用旋转仪R1v1口径38 mm。射弹穿孔为7.88毫米,BFS约20毫米。由于最大BFS限制为44毫米,突出检验都满足了美国国家司法研究所的要求。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号