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Minimal effect of amplified vehicle accelerations on seat belt buckle resistance to inertial release

机译:放大车辆加速度对易于释放座带扣抗性的最小影响

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Detailed investigations continually demonstrate that vehicle collision environments are extremely unlikely to produce accelerations of sufficient magnitude and duration to cause inertial release of seat belt buckles. Recently, it has been proposed that the dynamic response of an end-release buckle mounted to the vehicle structure via a metal strap or wire rope can amplify acceleration levels experienced at the floor of the vehicle by a factor of 10 or more, to levels that are high enough to cause inertial release. Experiments and modelling presented here confirm that accelerations may be amplified from the floor of the vehicle to the seat belt buckle, but not by more than a factor of 1.3, and only for acceleration pulse durations that are very short. Shock table testing of end-release seat belt buckles shows that, even with amplification, the resulting buckle accelerations are far below those required to cause inertial release, even at very low webbing tension.
机译:详细的调查持续证明车辆碰撞环境极不可能产生足够的幅度和持续时间的加速,以导致安全带扣带的惯性释放。最近,已经提出,通过金属带或钢丝绳安装到车辆结构的端释扣的动态响应可以放大车辆地板上经历的加速度10或更大,以至于足够高,导致惯性释放。这里提出的实验和建模证实,加速可以从车辆的地板放大到座椅带扣,但不超过1.3倍,并且仅用于非常短的加速脉冲持续时间。终端释放安全带扣的冲击台测试表明,即使在扩增时,也远低于导致惯性释放所需的搭扣加速度,即使在非常低的织带张力下也是如此。

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