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CRASHWORTHINESS ANALYSIS OF THE STRUCTURE OF METRO VEHICLES CONSTRUCTED FROM TYPICAL MATERIALS AND THE LUMPED PARAMETER MODEL OF FRONTAL IMPACT

机译:典型材料构建的地铁车辆结构的耐火性分析及正面撞击的集体参数模型

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摘要

This paper establishes a Finite Element (FE) model of a rigid barrier impact of a single vehicle constructed from carbon steel, stainless steel, and aluminum alloy, which are three typical materials used in metro vehicle car body structures. The different responses of the three materials during the collision are compared. According to the energy absorption, velocity, deformation and collision force flow characteristics of each vehicle, the relationship between the energy absorption ratio of the vehicle body and the energy absorption ratio of its key components is proposed. Based on the collision force flow distribution proportion of each component, the causes of the key components’ deformation are analysed in detail. The internal relationship between the deformation, energy absorption and impact force of the key components involved in a car body collision is elucidated. By determining the characteristic parameters describing the vehicle’s dynamic stiffness, a metro vehicle frontal impact model using lumped parameters is established that provides a simple and efficient conceptual design method for railway train safety design. These research results can be used to guide the design of railway trains for structural crashworthiness.
机译:本文建立的由碳钢,不锈钢,和铝合金,它们是在地铁车辆车体结构中使用了三种典型的材料构成的单一车辆的刚性壁障影响有限元(FE)模型。在碰撞过程中的三种材料的不同反应进行比较。根据每个车辆的能量吸收,速度,变形和碰撞力的流动特性,车体的能量吸收率和它的关键元件的能量吸收率之间的关系,提出了根据每个部件的碰撞力流量分配比例,关键组件的变形的原因进行了详细分析。变形,能量吸收和参与了车身碰撞的关键部件的冲击力之间的内在关系阐明。通过确定描述车辆的动态刚度的特征参数,使用集总参数的地铁车辆的正面碰撞模型被建立,其提供铁路列车安全设计一种简单而有效的概念设计方法。这些研究结果可以用来指导铁路列车进行结构耐撞性设计。

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