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Ballistic helmets – Their design, materials, and performance against traumatic brain injury

机译:弹道头盔 - 他们的设计,材料和创伤性能 脑损伤

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摘要

Protecting a soldier’s head from injury is critical to function and survivability. Traditionally, combat helmets have been utilized to provide protection against shrapnel and ballistic threats, which have reduced head injuries and fatalities. However, home-made bombs or improvised explosive devices (IEDs) have been increasingly used in theatre of operations since the Iraq and Afghanistan conflicts. Traumatic brain injury (TBI), particularly blast-induced TBI, which is typically not accompanied by external body injuries, is becoming prevalent among injured soldiers. The responses of personal protective equipment, especially combat helmets, to blast events are relatively unknown. There is an urgent need to develop head protection systems with blast protection/mitigation capabilities in addition to ballistic protection. Modern military operations, ammunitions, and technology driven war tactics require a lightweight headgear that integrates protection mechanisms (against ballistics, blasts, heat, and noise), sensors, night vision devices, and laser range finders into a single system. The current article provides a comparative study on the design, materials, and ballistic and blast performance of the combat helmets used by the US Army based on a comprehensive and critical review of existing studies. Mechanisms of ballistic energy absorption, effects of helmet curvatures on ballistic performance, and performance measures of helmets are discussed. Properties of current helmet materials (including Kevlar® K29, K129 fibers and thermoset resins) and future candidate materials for helmets (such as nano-composites and thermoplastic polymers) are elaborated. Also, available experimental and computational studies on blast-induced TBI are examined, and constitutive models developed for brain tissues are reviewed. Finally, the effectiveness of current combat helmets against TBI is analyzed along with possible avenues for future research.
机译:保护士兵的头部免受伤害对于功能和生存能力至关重要。传统上,战斗头盔已被用来防止碎片或弹道威胁,从而减少了头部受伤和死亡。但是,自伊拉克和阿富汗冲突以来,自制炸弹或简易爆炸装置(IED)越来越多地用于行动区。颅脑外伤(TBI),特别是爆炸诱发的TBI,通常不伴有外伤,在受伤的士兵中越来越普遍。个人防护设备,特别是战斗头盔,对爆炸事件的反应是相对未知的。除了防弹保护外,迫切需要开发具有爆炸保护/缓解功能的头部保护系统。现代军事行动,弹药和技术驱动的战争战术需要轻巧的头盔,它将保护机制(针对弹道,爆炸,热量和噪音),传感器,夜视设备和激光测距仪集成到一个系统中。本文根据对现有研究的全面而严格的审查,对美国陆军使用的作战头盔的设计,材料以及弹道和爆炸性能进行了比较研究。讨论了弹道能量吸收的机理,头盔曲率对弹道性能的影响以及头盔的性能指标。详细阐述了当前头盔材料(包括Kevlar®K29,K129纤维和热固性树脂)的特性以及头盔的未来候选材料(例如纳米复合材料和热塑性聚合物)的特性。此外,检查了有关爆炸诱导的TBI的可用实验和计算研究,并综述了针对脑组织开发的本构模型。最后,分析了当前战斗头盔对抗TBI的有效性以及未来研究的可能途径。

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