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汽车追尾事故中防护对策的生物力学分析——生物医学2009年

Biomechanical analysis of protective countermeasures in underride motor vehicle accidents - biomed 2009.

作者信息

Kumar Sri, Enz Bruce, Ponder Perry L, Anderson Bob

机构信息

Safety Research Institute, Atlanta, GA.

出版信息

Biomed Sci Instrum. 2009;45:89-94.

Abstract

Traffic safety has been significantly improved over the past several decades reducing injury and fatality rates. However, there is a paucity of research effort to address the safety issues in underride accidents, specifically the side underride crashes. It is well known that the compromise of occupant space in the vehicle leads to a higher probability of serious or fatal injuries. A better understanding of occupant protection and mechanism of injuries involved in side underride accidents assists in the advancement of safety measures. The present work evaluates the injury potential to occupants during side underride crashes using the car-to-trailer crash methodology. Four crash tests were conducted into the side of a stationary trailer fitted with the side underride guard system (SURG). The SURG used in these tests is 25% lighter than the previous design. A 5th percentile hybrid III female dummy was placed in the driver seat and restrained with the three-point lap and shoulder harness. The anthropometric dummy was instrumented with a head triaxial accelerometer, a chest triaxal accelerometer, a load cell to measure neck force and moment, and a load cell to measure the femur force. The vehicle acceleration was measured using a traxial accelerometer in the rear center tunnel. High speed, standard video and still photos were taken. In all tests, the intrusion was limited to the front structure of the vehicle without any significant compromise to the occupant space. Results indicate that the resultant head and chest accelerations, head injury criterion (HIC), neck force and moment, and femur force were well below the injury tolerance. The present findings support the hypothesis that the SURG not only limits or eliminates the intrusion into the occupant space but also results in biomechanical injury values well below the tolerance limit in motor vehicle crashes.

摘要

在过去几十年里,交通安全有了显著改善,伤亡率有所降低。然而,针对卷入式事故(特别是侧面卷入式碰撞)中的安全问题,研究工作却很匮乏。众所周知,车辆内乘员空间的缩减会导致严重或致命伤害的可能性增加。更好地了解侧面卷入式事故中乘员保护情况及受伤机制有助于推进安全措施。本研究采用汽车与拖车碰撞方法评估侧面卷入式碰撞中乘员的受伤可能性。对一辆装有侧面卷入防护系统(SURG)的静止拖车侧面进行了四次碰撞测试。这些测试中使用的SURG比之前的设计轻25%。在驾驶员座位上放置了一个第5百分位的混合III型女性假人,并用三点式腰部和肩部安全带进行约束。人体测量假人配备了头部三轴加速度计、胸部三轴加速度计、用于测量颈部力和力矩的测力传感器以及用于测量股骨力的测力传感器。通过后中央通道中的三轴加速度计测量车辆加速度。拍摄了高速、标准视频和静态照片。在所有测试中,侵入仅限于车辆前部结构,对乘员空间没有造成任何重大影响。结果表明,头部和胸部的合成加速度、头部损伤标准(HIC)、颈部力和力矩以及股骨力均远低于伤害耐受值。目前的研究结果支持以下假设:SURG不仅限制或消除了对乘员空间的侵入,而且在机动车碰撞中产生的生物力学损伤值也远低于耐受极限。

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