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Analysis of Bulletproof Vest Made from Fiber Carbon Composite and Hollow Glass Microsphere(HGM)in Absorbing Energy due to Projectile Impact

机译:由纤维碳复合材料和中空玻璃微球(HGM)制成的防弹背心免受射弹冲击引起的

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Bulletproof vest serves as a barrier and simultaneously absorbing the impact energy of a projectile shot from a firearm so it could not injure the users.Manufacture of lighter bulletproof vests with good absorbent of impact energy,is expected,because it supports the mobility and safety of its users.In this study,a composite composed of an epoxy matrix with a 16% Hollow Glass Microsphere(HGM)and carbon fiber reinforce to be implemented in a bulletproof vest.The objective of this research is to analyze the bullet-proof vests made of epoxy matrix composites with reinforcement in the form of HGM and carbon fiber through simulation with finite element method.Simulations with Ansys conducted in accordance with NIJ Standard 0101.06 from the U.S.Department of Justice,where the projectile initial velocity of 426 m/s for the category HIA class weapon with a kinetic energy of projectile amounted to 528.37 Joules.The simulation with Ansys was performed by varying the thickness of bulletproof vests to obtain optimum thickness.The outcome of this research is a bulletproof vest that absorbs the impact energy of the projectile,so that the energy transmitted to the body is smaller than 170 Joules.Having obtaining the optimum thickness of bulletproof vest,an experimental verification will be performed to validate the simulation results.In the simulation results showed that a bullet proof vest with a thickness of 20 mm has been able to meet the standards of Major General Julian S.Hatcher,a U.S.Army ordnance expert with great energy generated at 138.77 Joules.
机译:防弹背心用作屏障,同时吸收射击射击射击的冲击能量,所以它无法伤害用户,预计会有良好吸收性的冲击能量的较轻的防弹背心,因为它支持移动性和安全性其用户。本研究中,一种由具有16%中空玻璃微球(HGM)和碳纤维增强的环氧基质组成的复合材料,以便在防弹背心中实施。本研究的目的是分析所做的防弹背心通过仿真用有限元方法模拟催化催化剂纤维和碳纤维形式的环氧基质复合材料。用符合NIJ标准0101.06进行的ANSYS从司法中进行的,其中射弹初始速度为426米/秒HIA类武器,射弹动能的武器量为528.37焦耳。通过改变防弹背心的厚度来进行与ANSYS的仿真获得最佳厚度。本研究的结果是防弹背心,吸收射弹的冲击能量,使传递到身体的能量小于170焦耳。在获得防弹背心的最佳厚度,将验证的最佳厚度进行验证仿真结果。在仿真结果表明,厚度为20毫米的子弹证明背心已经能够满足朱利安S.Hatcher的标准,这是一个拥有巨大能源的USArmy Ordnance专家,在138.77焦耳。

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