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首页> 外文期刊>Journal of Safety Research >Protection performance of bicycle helmets
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Protection performance of bicycle helmets

机译:自行车头盔的防护性能

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Introduction: The evaluation of head protection systems needs proper knowledge of the head impact conditions in terms of impact speed and angle, as well as a realistic estimation of brain tolerance limits. In current bicycle helmet test procedures, both of these aspects should be improved. Method: The present paper suggests a bicycle helmet evaluation methodology based on realistic impact conditions and consideration of tissue level brain injury risk, in addition to well known headform kinematic parameters. The method is then applied to a set of 32 existing helmets, leading to a total of 576 experimental impact tests followed by 576 numerical simulations of the brain response. Results: It is shown that the most critical impacts are the linear-lateral ones as well as the oblique impact leading to rotation around the vertical axis (ZRot), leading both to around 50% risks of moderate neurological injuries. Based on this test method, the study enables us to compare the protection capability of a given helmet and eventually to compare helmets via a dedicated rating system. (C) 2019 National Safety Council and Elsevier Ltd. All rights reserved.
机译:简介:头部保护系统的评估需要在撞击速度和角度方面对头部撞击条件有适当的了解,并需要对脑耐受极限的实际估计。在当前的自行车头盔测试程序中,这两个方面都应加以改进。方法:本论文提出了一种自行车头盔评估方法,该方法基于现实的撞击条件和组织水平的脑损伤风险,以及众所周知的头形运动学参数。然后将该方法应用于一组32个现有头盔,从而进行了总共576次实验冲击测试,然后进行了576次大脑反应的数值模拟。结果:已显示,最关键的影响是线性-侧面影响以及导致围绕垂直轴(ZRot)旋转的倾斜影响,均导致中度神经损伤的风险约为50%。基于这种测试方法,这项研究使我们能够比较给定头盔的防护能力,并最终通过专用的评级系统来比较头盔。 (C)2019国家安全委员会和Elsevier Ltd.保留所有权利。

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