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COMPATIBILITY STUDY IN FRONTAL COLLISIONS - MASS AND STIFFNESS RATIO

机译:前碰撞的相容性研究-质量和刚度比

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Compatibility of vehicles of different mass and stiffens in head-on collisions is studied in this paper with the aid of an eight-degrees of freedom, two dimensional lumped-mass simulation model. The model takes into consideration mass and stiffness ratio as the main factors contributing to compatibility of the two colliding vehicles. Other factors like length of crumple zone, offset overlap and speed are also considered. Three injury risk criteria have been considered in this study; delta V or change in velocity of vehicle after impact, maximum acceleration sustained by the passenger compartment throughout impact, and length of deformation sustained by the car front. The most crucial compatibility parameter is the mass ratio for the delta V criterion. The second and third compatibility parameters are mass ratio and stiffness ratio for deformation length criterion. A longer crumple zone is proposed for heavier vehicles to provide the required protection for smaller vehicles involved in head-on collision. It was found that both mass and stiffness ratio have no aggressivity on the partner vehicle when maximum acceleration criterion is used at low impact speeds.
机译:借助八自由度,二维集总质量仿真模型,研究了迎面碰撞中不同质量和变硬车辆的兼容性。该模型将质量和刚度比作为影响两个碰撞车辆兼容性的主要因素。还应考虑其他因素,例如压皱区的长度,偏移重叠和速度。这项研究考虑了三个伤害风险标准。 ΔV或碰撞后车辆的速度变化,整个碰撞过程中乘客车厢承受的最大加速度以及轿厢前部承受的变形长度。最关键的兼容性参数是delta V标准的质量比。第二和第三兼容性参数是变形长度标准的质量比和刚度比。建议为较重的车辆设置更长的压溃区,以为涉及正面碰撞的小型车辆提供所需的保护。已经发现,当在低冲击速度下使用最大加速度标准时,质量和刚度比对伙伴车辆都没有侵略性。

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