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泡沫衬垫小型雪橇测试中的头部运动学:自由运动头模(FMH)测试的线性响应与头部角响应的相关性。

Head kinematics in mini-sled tests of foam padding: relevance of linear responses from free motion headform (FMH) testing to head angular responses.

作者信息

Ivarsson J, Viano D C, Lövsund P, Parnaik Y

机构信息

UVa Center for Applied Biomechanics, 1011 Linden Avenue, Charlottesville, VA 22902, USA.

出版信息

J Biomech Eng. 2003 Aug;125(4):523-32. doi: 10.1115/1.1590360.

Abstract

The revised Federal Motor Vehicle Safety Standard (FMVSS) No. 201 specifies that the safety performance of vehicle upper interiors is determined from the resultant linear acceleration response of a free motion headform (FMH) impacting the interior at 6.7 m/s. This study addresses whether linear output data from the FMH test can be used to select an upper interior padding that decreases the likelihood of rotationally induced brain injuries. Using an experimental setup consisting of a Hybrid III head-neck structure mounted on a mini-sled platform, sagittal plane linear and angular head accelerations were measured in frontal head impacts into foam samples of various stiffness and density with a constant thickness (51 mm) at low (approximately 5.0 m/s), intermediate (approximately 7.0 m/s), and high (approximately 9.6 m/s) impact speeds. Provided that the foam samples did not bottom out, recorded peak values of angular acceleration and change in angular velocity increased approximately linearly with increasing peak resultant linear acceleration and value of the Head Injury Criterion (HIC36). The results indicate that the padding that produces the lowest possible peak angular acceleration and peak change in angular velocity without causing high peak forces is the one that produces the lowest possible HIC36 without bottoming out in the FMH test.

摘要

修订后的联邦机动车安全标准(FMVSS)第201条规定,车辆上部内饰的安全性能是根据自由运动头型(FMH)以6.7米/秒的速度撞击内饰时的合成线性加速度响应来确定的。本研究探讨了FMH测试的线性输出数据是否可用于选择一种上部内饰衬垫,以降低旋转性脑损伤的可能性。使用一个由安装在小型雪橇平台上的Hybrid III头颈部结构组成的实验装置,在低(约5.0米/秒)、中(约7.0米/秒)和高(约9.6米/秒)撞击速度下,对头撞击各种刚度和密度、厚度恒定(51毫米)的泡沫样品时的矢状面线性和角向头部加速度进行了测量。只要泡沫样品没有触底,记录的角加速度峰值和角速度变化随合成线性加速度峰值和头部损伤准则(HIC36)值的增加大致呈线性增加。结果表明,在FMH测试中,在不产生高峰值力的情况下产生尽可能低的角加速度峰值和角速度峰值变化的衬垫,是在不触底的情况下产生尽可能低的HIC36的衬垫。

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