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Load Distribution Optimization of Seatbelt Using Validated Finite Element Approach

机译:使用验证的有限元方法负载分布优化安全带

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The seat belt system is one of most important component of the safety instrument family in a vehicle. The main purpose of seat belt is to minimize the injuries by preventing the occupant from impacting hard on interior parts of the vehicle and also the passenger from being thrown-out from the vehicle in case of rollover accidents. The standard three-point belt is mounted in the vehicle at three locations namely Anchor, D-ring and Buckle. The position of anchorages is very important to distribute the impact load evenly to the occupants. Very high load in any of these locations could cause breakage of the mountings and also concentrated loading on the occupant chest of pelvis. Current study mainly focuses on the seatbelt assembly performance improvement against UNECE-R16 sled test. The sled test was carried out first using 28g peak acceleration pulse and measurement of forces at shoulder and anchor position was measured using the load cell. FE (Finite Element) model of the complete seatbelt assembly was developed including Buckle, Retractor and Anchor plate. The simulation was carried out using TNO-10 R-16 dummy with the given position of D-ring, Buckle and Anchor plate. First correlation was established between the forces at shoulder location, Anchor plate location. Further correlation was established in the pelvis and thorax displacement. Multiple iterations were performed with the different position of anchorages in a given range in the validated model of seatbelt. The results showed significant effect of the Buckle and Anchor position in the force distribution on the dummy.
机译:安全带系统是车辆中安全仪器家族的最重要组成部分之一。安全带的主要目的是通过防止乘员在车辆的内部部分撞击乘客而使乘客在滚动事故中从车辆中抛出乘客来最小化损伤。标准的三点带安装在车辆中,即在三个位置即锚,D形环和扣。锚固的位置非常重要,可均匀地将冲击载荷分配给乘员。这些位置中的任何一个都可能导致安装箱的破损,并在佩尔维斯的乘员胸上占用。目前的研究主要侧重于安全带组装对UNECE-R16橇试验的性能改进。首先使用28g峰值加速度脉冲进行滑动测试,并使用称重传感器测量肩部和锚位置处的力的测量。开发了完整安全带组件的Fe(有限元)模型,包括扣,牵开器和锚板。使用TNO-10 R-16虚设进行模拟,具有D形环,扣和锚板的给定位置。第一相关性是在肩部位置,锚板位置的力之间建立的。在骨盆和胸部位移中建立了进一步的相关性。在验证的安全带模型中的给定范围内使用锚固的不同位置进行多次迭代。结果表明扣环和锚定位在虚设上的力分布中的显着效果。

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