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首页> 外文期刊>International journal of crashworthiness >The biomechanical differences of shock absorption test methods in the US and European helmet standards
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The biomechanical differences of shock absorption test methods in the US and European helmet standards

机译:美国和欧洲头盔标准缓冲试验方法的生物力学差异

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摘要

Nowadays crash helmets are tested by dropping a free or unrestrained headform in Europe but a guided or restrained headform in the United States. It remains unclear whether the free fall and the guided fall produce similar impact kinematics that cause head injury. A ?nite element helmet model is developed and compared with experimental tests. The resulting head kinematics from virtual tests are input for a ?nite element head model to compute the brain tissue strain. The guided fall produces higher peak force and linear acceleration than the free fall. Eccentric impact in the free fall test induces angular head motion which directs some of the impact energy into rotational kinetic energy. Consequently, the brain tissue strain in the free fall test is up to 6.3 times more than that in the guided fall. This study recommends a supplemental procedure that records angular head motion in the free fall test.
机译:如今,通过在欧洲丢弃自由或无拘无束的头部,但在美国的导游或受限制的头部来测试崩溃头盔。它仍然尚不清楚自由落体和引导秋季是否产生类似的冲击运动,导致头部受伤。 A型元素头盔模型是开发的,与实验测试相比。从虚拟测试中产生的头动脉是用于α液元件头模型的输入,以计算脑组织应变。引导落落产生比自由跌落更高的峰值力和线性加速度。自由落体试验中的偏心撞击诱导角头动作,使一些冲击能量引导到旋转动能中。因此,自由落体试验中的脑组织应变比引导落在秋季的血液组织株高达6.3倍。本研究推荐了一种补充程序,可在自由落体试验中记录角头动作。

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