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Vehicle Chassis, Body, and Seat Belt Buckle Acceleration Responses in the Vehicle Crash Environment

机译:车辆底盘,车身和安全带扣加速度抵御车辆撞车环境

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For over 30 years, field research and laboratory testing has consistently demonstrated that proper utilization of a seat belt dramatically reduces the risk of occupant death or serious injury in motor vehicle crashes. The injury prevention benefits of seat belts require that they remain fastened during collisions. Federal Motor Vehicle Safety Standards and SAE Recommended Practices set forth seat belt requirements to ensure proper buckle performance in accident conditions. Numerous analytical and laboratory studies have investigated buckle inertial release properties. Studies have repeatedly demonstrated that current buckle designs have inertial release thresholds well above those believed to occur in real-world crashes. Nevertheless, inertial release theories persist. Various conceptual amplification theories, coupled with high magnitude accelerations measured on vehicle frame components are used as support for these release theories. This study investigates vehicle frame, vehicle floor pan and seat belt buckle acceleration responses in various laboratory environments on a mid-size body-on-frame sport utility vehicle. This is accomplished through the analysis of acceleration data from a frontal barrier crash test, a vehicle drop test and direct floor pan impulse response tests. These tests demonstrate that the magnitudes and durations of the accelerations experienced by the buckle are well below those necessary for inertial release. Analysis of buckle acceleration magnitudes in conjunction with the coincident seat belt webbing tensions re-affirms that inertial release of a seat belt buckle in the vehicle crash environment is unlikely. Lastly, data analysis of the performed tests demonstrates that the acceleration pulse transmitted from the vehicle chassis through the floor pan to the buckle was attenuated.
机译:超过30年,现场研究和实验室检测一直证明,座椅安全带的适当利用显着降低了机动车撞车的居住者死亡或严重伤害的风险。安全带的防伤益处要求它们在碰撞期间保持紧固。联邦机动车安全标准和SAE推荐的做法阐述了安全带要求,以确保事故条件下的适当扣装性能。许多分析和实验室研究已经研究了荷惯性释放性能。研究已经多次证明,当前的扣板设计具有高于现实世界崩溃所发生的惯性释放阈值。然而,惯性释放理论持续存在。各种概念放大理论,与车辆框架组件上测量的高幅度加速度相结合用作这些释放理论的支持。本研究研究了车辆框架,车辆地板和座椅皮带扣加速度在中等体型体育用途车辆上的各种实验室环境中。这是通过从正面屏障碰撞试验的加速数据分析,车辆滴测试和直接底板脉冲响应试验来实现。这些测试表明,扣发所经历的加速度的幅度和持续时间远低于惯性释放所必需的。与重合座椅带织带拉伸势相结合的带扣加速度幅度的分析重新肯定了车辆碰撞环境中的座椅带扣的惯性释放。最后,执行测试的数据分析表明,从车辆底盘通过地板架传递到带扣的加速脉冲被衰减。

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