Effect of temperature gradient-induced periodic deformation of CRTS Ⅲ slab track on dynamic responses of the train-track system

Wang Jijun, Huanxin Zhang, Shi Cheng, Wang Meng
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Abstract

PurposeTemperature is an important load for a ballastless track. However, little research has been conducted on the dynamic responses when a train travels on a ballastless track under the temperature gradient. The dynamic responses under different temperature gradients of the slab are theoretically investigated in this work.Design/methodology/approachConsidering the moving train, the temperature gradient of the slab, and the gravity of the slab track, a dynamic model for a high-speed train that runs along the CRTS III slab track on subgrade is developed by a nonlinear coupled way in Abaqus.FindingsThe results are as follows: (1) The upward transmission of the periodic deformation of the slab causes periodic track irregularity. (2) Because of the geometric constraint of limiting structures, the maximum bending stresses of the slab occur near the end of the slab under positive temperature gradients, but in the middle of the slab under negative temperature gradients. (3) The periodic deformation of the slab can induce periodic changes in the interlayer stiffness and contact status, leading to a large vibration of the slab. Because of the vibration-reduction capacity of the fastener and the larger mass of the concrete base, the accelerations of both the slab and concrete base are far less than the acceleration of the rail.Originality/valueThis study reveals the influence mechanism of temperature gradient-induced periodic deformation in the dynamic responses of the train-track system, and it also provides a guide for the safe service of CRTS III slab track.
温度梯度引起的 CRTS Ⅲ型板式轨道周期性变形对列车轨道系统动态响应的影响
目的温度是无砟轨道的一个重要负载。然而,关于温度梯度下列车在无砟轨道上行驶时的动态响应的研究却很少。设计/方法/途径考虑到行驶中的列车、板的温度梯度和板轨的重力,在 Abaqus 中通过非线性耦合方式建立了高速列车在 CRTS III 板轨上运行的动态模型:(1) 板的周期性变形向上传递导致周期性轨道不规则。(2) 由于限制结构的几何约束,在正温度梯度下,板的最大弯曲应力出现在板端附近,而在负温度梯度下,最大弯曲应力出现在板中部。(3) 板的周期性变形会引起层间刚度和接触状态的周期性变化,从而导致板产生较大振动。由于扣件的减振能力和混凝土底座的较大质量,板和混凝土底座的加速度均远小于轨道的加速度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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