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Crashworthiness enhancement in a car-truck collision using energy dissipative under-ride guard

机译:使用耗能速度守卫的汽车车辆碰撞中的耐火性增强

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A concept of an under-ride guard comprising an energy dissipater is proposed to enhance the crashworthiness of the lightweight vehicles involved in collisions with heavy freight vehicles. The proposed energy absorbing under-ride guard is analytically modeled incorporating non-linearities due to asymmetric damping, stiffness and kinematics of linkages, using the principles of conservation of momentum and Lagrangian dynamics. A performance criteria based upon the magnitude of intrusion of the car mass, car mass acceleration, and dissipated energy is formulated to investigate the performance benefits of the proposed guard. A multi-variable design optimization is performed to minimize a weighted function of performance variables and to determine the optimal asymmetric damping and stiffness properties of the guard. The performance characteristics of the proposed guard are evaluated under direct impact at different speeds, and compared with those derived for a conventional rigid under-ride guard using DYNA3D. The results are discussed to highlight the performance potentials of the proposed guard.
机译:提出了包括能源消散器的乘车欠惯机的概念,以增强轻质车辆涉及的碰撞与重型货车的碰撞。由于守恒的原则,所提出的能量吸收的能量吸收欠乘防护被分析模拟了不对称,刚度和动力学的非线性,使用势头和拉格朗日动力学的原则。基于汽车质量,汽车批量加速和消散能量的侵入性的性能标准被配制,以研究所提出的防护装置的性能效果。执行多变量设计优化以最小化性能变量的加权函数,并确定防护装置的最佳不对称阻尼和刚度特性。在不同速度的直接冲击下进行拟议保护的性能特征,并与使用DYNA3D的传统刚性次乘法防护的那些相比。讨论了结果以突出拟议保护的性能潜力。

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