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HYBOAR - A HYBRID BODY ARMOR FOR IMPROVED BALLISTICS PROTECTION

机译:HYBOAR-增强弹道防护的混合体护甲

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A new hybrid body armor (HYBOAR) is being developed at Triangle Research and Development Corporation (TRDC) to provide improved ballistics protection for both round penetration as well as round fragmentation (spalling) and blunt injury trauma. During a Small Business Innovation Research (SBIR) program for the U.S. Special Operations Command (SOCOM), TRDC investigators conceived, developed and demonstrated individual components as well as their synergistic combination during live fire ballistic testing with 9mm, .357 Magnum and .44 Magnum pistols as well as 5.56mm (M16) and 7.62mm (AK-47) rifles. HYBOAR consists of a Class Ⅲ+ ballistic garment, but adds lightweight ceramic or hardened titanium armor to prevent penetration, an exterior layer to control spalling, and a conformal high-impact absorbing layer to prevent blunt injury trauma. This patented layer is called HACS for Hybrid Air Cushioning System and has been developed under other SBIR programs for Health and Human Services (HHS), NAVY and an STTR program with the ARMY. If desired, HYBOAR could also include a lightweight, coated foamed metal layer to provide even higher levels of ballistics impact protection. During ballistics testing in 1998, HYBOAR demonstrated a level of protection not found with other protective garments. When an anti-spalling layer, developed by THETA Technologies, was placed external to a metal or ceramic armor, the round fragmentation was found to be minimal. When HACS alone was added beneath current Class Ⅲ+ ballistics protective garments, ballistics testing with pistols demonstrated that blunt injury trauma to the NTJ clay target was also negligible. In addition, TRDC investigators developed and demonstrated a new multi-dimensional methodology to measure blunt injury trauma that was found to be more sensitive when multiple components of the armor were combined. In another STTR program on mine protection for the ARMY, a HYBOAR armor specimen was also tested at the ARMY Aberdeen Proving Ground, which survived an explosive force of 2.3 kilograms (5 lbs) of C4 placed at a distance of only 15.24 cm (6 inches).
机译:三角研究与开发公司(TRDC)正在开发一种新的混合防弹衣(HYBOAR),以提供改进的弹道防护,以防止圆形穿透,圆形破碎(散弹)和钝伤。在美国特种作战司令部(SOCOM)的小型企业创新研究(SBIR)计划期间,TRDC研究人员构思,开发和演示了在进行9mm,.357 Magnum和.44 Magnum实弹射击测试期间的各个组件及其协同组合。手枪以及5.56mm(M16)和7.62mm(AK-47)步枪。 HYBOAR由Ⅲ+级防弹服组成,但增加了轻质的陶瓷或硬化钛装甲以防止穿透,外层控制了剥落,并采用了保形的高冲击吸收层以防止钝器受伤。该专利层称为混合气垫系统的HACS,是根据其他SBIR计划开发的,用于健康和公共服务(HHS),NAVY和ARMY的STTR计划。如果需要,HYBOAR还可以包括轻质的涂层泡沫金属层,以提供更高水平的弹道冲击防护。在1998年的防弹测试中,HYBOAR证明了其他防护服所没有的防护等级。当由THETA Technologies开发的防溅层放置在金属或陶瓷铠装的外部时,发现圆形碎裂很小。当仅在当前的Ⅲ+级防弹服下添加HACS时,用手枪进行的弹道测试表明,对NTJ粘土靶的钝伤伤害也可以忽略不计。此外,TRDC的研究人员开发并展示了一种新的多维方法来测量钝伤损伤,当将装甲的多个组成部分组合在一起时,这种方法会更加敏感。在另一个关于陆军防雷保护的STTR计划中,还对HYBOAR装甲标本在陆军阿伯丁试验场进行了测试,该炸药在2.3千克(5磅)C4爆炸力的作用下仅位于15.24厘米(6英寸)的距离内)。

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