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THE EFFECT OF SHOCK WAVE ON A HUMAN HEAD

机译:冲击波对人头的影响

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摘要

When a pressure wave of finite amplitude is generated in air by a rapid release of energy, such as high-pressure gas storage vessel or the blast from dynamite, there may be undetected brain injuries even though protective armors prevent the penetration of the projectile. To study brain tissue injury and design a better personnel head armor under blast wave, computational models of human head have been developed. Models with and without helmet are built to quantify the intracranial pressure and shear stresses of head subjected to blast wave. All the models are compared against injury thresholds for intracranial pressure and shear stresses. Overall pressure and shear stress level is highest in model without helmet and lowest in model with helmet having foam layer on inner side of helmet.rnThe results show that helmet reduces the pressure and shear stresses generated in the brain. However this reduction in pressure and shear stresses might not be sufficient to mitigate early time, blast induced, traumatic brain injury. The validated results will provide better understanding of the energy transfer characteristics of blast wave through helmet and the injury mechanism of human head.
机译:当通过快速释放能量(例如高压储气罐或炸药爆炸)在空气中产生一定幅度的压力波时,即使防护装甲阻止了弹丸的穿透,也可能会导致无法检测到的脑部受伤。为了研究脑组织损伤并在爆炸波下设计更好的人员头部装甲,已经开发了人头部的计算模型。建立具有头盔和不具有头盔的模型以量化遭受爆炸波的头部的颅内压和切应力。将所有模型与颅内压和切应力的损伤阈值进行比较。没有头盔的模型的总压力和切应力水平最高,而在头盔内侧有泡沫层的头盔的模型中,总压力和剪切应力水平最低。结果表明,头盔降低了大脑中产生的压力和切应力。但是,压力和剪应力的这种降低可能不足以减轻早期,爆炸诱发的颅脑外伤。验证的结果将更好地理解爆炸波通过头盔的能量传递特性以及人头部的伤害机理。

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