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EVALUATION OF MOTOR VEHICLE SEATBELT RETRACTOR LOCKING DEVICES

机译:机动车安全带倒车器锁定装置的评估

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摘要

The seemingly never-ending increase in popularity of the more rollover-prone Sport Utility Vehicle type vehicles (SUVs) has provided an increased focus and urgency on rollover occupant protection. Field research has made clear that traditional, contemporary motor vehicle seatbelt retractors often fail to restrain occupants as expected. Various researchers have documented laboratory tests results and cited numerous real-world case studies describing these circumstances. These studies have typically focused on the response of the retractor's inertial acceleration sensing lockup device. This device has been shown to allow surprising amounts of seatbelt spool out during long duration accident sequences with resulting multidirectional vehicle acceleration pulses such as those seen in typical rollover crashes. Further, increased injury potential has been discussed and attributed to such webbing spool out. One commonly implemented design countermeasure, or redundancy, to the retractor's inertial sensor is a webbing velocity sensor intended to lock up the retractor independent of vehicle acceleration. This paper reports laboratory test data evaluating a wide spectrum of webbing velocity sensor designs found in current production vehicles. This study evaluates their relative performance, corresponding injury potential and occupant protection aspects of these designs.
机译:侧翻倾向性更高的运动型多功能车(SUV)的普及性似乎永无止境地增长,越来越侧重于对侧翻乘员保护的关注和紧迫性。现场研究表明,传统的现代汽车安全带卷收器通常无法按预期约束乘员。许多研究人员已记录了实验室测试结果,并引用了描述这些情况的大量实际案例研究。这些研究通常集中在牵开器的惯性加速度感测锁定装置的响应上。事实证明,该装置可在长时间的事故序列中使安全带卷出令人惊讶的数量,从而产生多方向的车辆加速脉冲,例如典型的侧翻碰撞中所看到的脉冲。此外,已经讨论了增加的潜在伤害并将其归因于这种织带卷出。牵开器惯性传感器的一种通常实施的设计对策或冗余是织带速度传感器,其旨在与车辆加速度无关地锁定牵开器。本文报告了实验室测试数据,评估了当前生产车辆中广泛的织带速度传感器设计。这项研究评估了这些设计的相对性能,相应的潜在伤害和乘员保护方面。

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