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Frontal Crash Mitigation using MR Impact Damper for Controllable Bumper

机译:使用MR冲击阻尼器的可控保险杠减轻正面碰撞

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摘要

This study presents performance characteristics of a magnetorheological (MR) impact damper for controllable bumper in vehicle systems. Recently, several mechanisms are proposed in order to minimize the injury of vehicle occupants during frontal collision. One of the promising candidates is the MR fluid which undergoes significant instantaneous reversible changes in material characteristics when subjected to a magnetic field. Using this salient property, a new type of MR impact damper is devised in this work. The proposed damper is integrated with bellows to induce the flow motion and the motion is operated under flow mode. The field-dependent damping force is evaluated by computer simulation with various conditions. In order to investigate the effectiveness of the proposed impact damper, a lumped parameter mathematical model of frontal vehicle crash system including MR impact damper is developed and realized in order to evaluate acceleration peak reductions and transmitted force in the frontal collision.
机译:这项研究提出了用于车辆系统中可控保险杠的磁流变(MR)冲击阻尼器的性能特征。近来,提出了几种机制以最小化正面碰撞期间车辆乘员的伤害。一种有前途的候选材料是MR流体,当受到磁场作用时,该材料在材料特性方面会发生重大的瞬时可逆变化。利用这一显着特性,在这项工作中设计了一种新型的MR冲击阻尼器。所提出的阻尼器与波纹管集成在一起以引起流动运动,并且该运动在流动模式下进行。通过计算机模拟在各种条件下评估与磁场有关的阻尼力。为了研究所提出的减震器的有效性,开发并实现了包括MR减震器在内的正面车辆碰撞系统的集总参数数学模型,以评估在正面碰撞中的加速度峰值减小和传递力。

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