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首页> 外文期刊>International journal of crashworthiness >Railroad passenger car collision analysis and modifications for improved crashworthiness
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Railroad passenger car collision analysis and modifications for improved crashworthiness

机译:铁路客车碰撞分析和改进以提高防撞性

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In this study, crashworthiness assessment and suggestions for the modification of a railroad passenger car are presented. To assess the crashworthiness, collision of the railroad passenger car onto a rigid wall is simulated by using finite element (FE) methods. A full-length, detailed passenger car model is used in FE analyses. In order to validate the FE model, simulation results obtained for different types of static loading conditions in compliance with various scenarios defined in UIC CODE OR 577 are compared with experimental measurements before running collision analyses of the railroad passenger car. The good agreement between static tests and FE analyses results indicates that the FE model accurately represents the real structure. Following the FE model validation, analysis of the collision behaviour of the railroad passenger car consists of two stages. In the first stage, the crashworthiness of the initial concept design of the railroad passenger car is analysed. It was observed that local buckling takes place at various points, which prevents the desired progressive damage behaviour in the railroad car body. Having revealed the structural weaknesses, the initial design was modified and simulated again under the same conditions. Using size optimisation, thickness of some sheet metal components is changed in order to obtain the intended progressive damage behaviour. As a result of the modifications, the passenger car design with better crashworthiness properties was obtained, in which large plastic deformations occur around the collision side of the car while mainly elastic deformations occur in the car's body away from the bumpers.
机译:在这项研究中,提出了耐撞性评估和铁路客车改装的建议。为了评估耐撞性,使用有限元(FE)方法模拟了铁路客车在刚性墙壁上的碰撞。有限元分析中使用了详细的全长客车模型。为了验证FE模型,在进行铁路客车碰撞分析之前,将根据UIC CODE OR 577中定义的各种情况针对不同类型的静态载荷条件获得的仿真结果与实验测量结果进行比较。静态测试与有限元分析结果之间的良好一致性表明,有限元模型可以准确地表示真实结构。在有限元模型验证之后,对铁路客车碰撞行为的分析包括两个阶段。在第一阶段,分析了铁路客车初始概念设计的耐撞性。已经观察到,局部屈曲发生在各个点,这防止了在铁路车体中所需的渐进式损坏行为。揭示了结构上的弱点后,对初始设计进行了修改,并在相同条件下再次进行了模拟。通过尺寸优化,可以更改某些钣金零件的厚度,以获得预期的渐进式损坏行为。作为修改的结果,获得了具有更好的耐撞性的乘用车设计,其中在汽车的碰撞侧周围发生大的塑性变形,而在远离保险杠的汽车主体中主要发生弹性变形。

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