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The Evaluation of Axial Stress in Continuous Welded Rails via Three-Dimensional Bridge-Track Interaction

机译:三维桥轨相互作用对连续焊接钢轨轴向应力的评估

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摘要

The crucial differences between conventional rail with split-type connectors and continuous welded rails are axial stress in the longitudinal direction and stability, as well as other issues generated under the influence of loading effects. Longitudinal stresses generated in continuously welded rails on railway bridges are strongly influenced by the nonlinear behavior of the supporting system comprising sleepers and ballasts. Thus, the track structure interaction cannot be neglected. The rail-support system mentioned above has properties of non-uniform material distribution and uncertainty of construction quality. The linear elastic hypothesis therefore cannot correctly evaluate the stress distribution within the rails. The aim of this study is to apply the nonlinear finite element method using the nonlinear coupling interface between the track and structural model and to illustrate the welded rail behavior under the loading effect and uncertain factors of the ballast. Numerical results of nonlinear finite analysis with a three-dimensional solid and frame element model are presented for a typical track-bridge system. A composite plate girder, modeled by solid and shell elements, is also analyzed to consider the behavior of the welded rail. The analysis result showed buckling under the independent calculations of load cases, including temperature change', bending of the supporting structure', and braking' of the railway vehicle. A parametric study of the load combination method and the loading sequence is also included in this analysis.
机译:具有分离式连接器的传统导轨和连续焊接导轨之间的关键区别是纵向方向上的轴向应力和稳定性,以及在载荷效应的影响下产生的其他问题。在铁路桥梁上的连续焊接轨道中产生的纵​​向应力受到包括轨枕和道ast的支撑系统的非线性行为的强烈影响。因此,不能忽略轨道结构的相互作用。上述的轨道支撑系统具有材料分布不均匀和施工质量不确定的特性。因此,线性弹性假设无法正确评估钢轨内的应力分布。这项研究的目的是应用轨道和结构模型之间的非线性耦合界面的非线性有限元方法,并说明在压载作用和不确定因素的作用下焊接轨道的行为。针对典型的轨道桥系统,提出了使用三维实体和框架单元模型进行非线性有限分析的数值结果。还分析了以实体和壳单元为模型的复合板梁,以考虑焊接轨道的性能。分析结果表明,在独立计算的工况下,包括温度变化“,支撑结构的弯曲”和“铁路车辆的制动”,都发生了屈曲。分析中还包括荷载组合方法和荷载顺序的参数研究。

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