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A wave propagation model of distributed energy absorption system for trains

机译:火车分布式能量吸收系统的波传播模型

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The dynamic response of distributed energy absorption system used as a passive safety device in high-speed trains is investigated with a one-dimensional wave propagation model, in which carriages are modelled with elastic rods and energy absorber layers are described by a rigid-perfectly plastic-locking material model. Three collision scenarios are analyzed by taking the stresses and velocities of the interfaces as control variables and a set of ordinary deferential equations is obtained for each stage of collision, the duration of which is the time for the elastic wave to pass from one end of the rod to the other. A platform phenomenon of response in all stages is observed. A simplified approximate analysis procedure is proposed to analyze the energy absorption capability. It is found that ignoring the elastic wave effect of carriages will lead to a wrong estimate of the energy absorption capability and the contribution of individual energy absorber.
机译:用一维波传播模型研究了用作高速列车中的被动安全装置的分布式能量吸收系统的动态响应,其中托架用弹性杆模拟,并且通过刚性完美的塑料描述了能量吸收层 - 锁定材料模型。通过将界面的应力和速度作为控制变量和一组普通阶段获得了一组碰撞的持续时间来分析三种碰撞场景,这是弹性波从一端通过的持续时间杆到另一个。观察到所有阶段的响应的平台现象。提出了一种简化的近似分析程序来分析能量吸收能力。发现忽略托架的弹性波效应将导致能量吸收能力的错误估计和个体能量吸收器的贡献。

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