首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part F: Journal of Rail and Rapid Transit >Qualitative comparison of the characteristics of articulated and non-articulated trains and their effects on impact
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Qualitative comparison of the characteristics of articulated and non-articulated trains and their effects on impact

机译:铰接式和非铰接式火车的特性及其对冲击的影响的定性比较

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This article presents a qualitative comparison of the key characteristics and subsequent impact performance for articulated and non-articulated train types. The fundamental purpose of the article is through a review of articulated and non-articulated trains in terms of impact stability to identify and compare the areas referred to as ‘impact worthiness’ design. The major differences between articulated and non-articulated trains are highlighted first. Then, the mechanical reasons leading to the differences and their consequences to impact performance are analysed from three viewpoints: coupling stiffness and freedom, support and coupling patterns, and carbody structural features. The analysis shows that the differences in bogie support positions on the carbody and the effects on coupling devices lead to differences in several structural and compositional characteristics, including height of gravity of the carbody, length of the vehicle, the composition of the end panel, stiffness of coupling device, number of support points to vehicle, and support height of the secondary suspension. These characteristics result in different impact responses for the two types of train and are directly related to subsequent behaviour. Articulated trains show stiff connection and integral performance in collisions but with less capability for absorbing impact energy between vehicles, whereas non-articulated trains show flexible connection with more random behaviour in collisions but with greater options for energy absorber installation between vehicles.
机译:本文对铰接式和非铰接式列车的关键特性和后续冲击性能进行了定性比较。本文的基本目的是通过对铰接式和非铰接式列车的冲击稳定性进行回顾,以识别和比较称为“冲击价值”设计的区域。首先强调了铰接式和非铰接式火车的主要区别。然后,从三个角度分析了导致差异的机械原因及其对冲击性能的影响:联接刚度和自由度,支撑和联接方式以及车身结构特征。分析表明,转向架在车身上的支撑位置的不同以及对耦合装置的影响导致几种结构和成分特性的不同,包括车身的重力高度,车辆的长度,端板的成分,刚度耦合装置的位置,对车辆的支撑点数以及辅助悬架的支撑高度。这些特征导致两种列车的冲击响应不同,并且与后续行为直接相关。铰接式列车在碰撞中表现出牢固的连接性和整体性能,但吸收车辆之间的冲击能量的能力较小,而非铰接式列车在碰撞中表现出的柔性连接具有更多的随机行为,但在车辆之间安装能量吸收器的选择更多。

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