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Shakedown Limits of Slab Track Substructures and Their Implications for Design

机译:板式轨道子结构的减振极限及其设计意义

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This paper presents an approach to shakedown of slab track substructures subjected to train loads. The train load is converted into a distributed moving load on the substructure surface using a simplified track analysis. Based on the lower-bound dynamic shakedown theorem, shakedown solutions for the slab track substructures are obtained over a range of train speeds between zero and the critical speed of the track. It is found the shakedown limit is largely influenced by the ratio of layer elastic moduli and the ratio of train speed to critical speed rather than their absolute values. An attenuation factor, as a function of the critical speed and the friction angle of subsoil, is proposed to effectively obtain the shakedown limit of the slab track substructure at any train speed. In light of the shakedown solutions, improvements to the existing design and analysis approaches are also suggested.
机译:本文提出了一种在列车荷载作用下对平板轨道下部结构进行减震的方法。使用简化的轨道分析,将列车载荷转换为子结构表面上的分布式移动载荷。基于下限动态振动定理,可以在零速度和轨道临界速度之间的一系列列车速度范围内获得平板轨道子结构的振动解。发现减振极限很大程度上受层弹性模量比和列车速度与临界速度之比的影响,而不是其绝对值的影响。提出了根据临界速度和地基摩擦角的函数的衰减因子,以在任何列车速度下有效地获得平板轨道下部结构的减振极限。根据组合解决方案,还建议对现有设计和分析方法进行改进。

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