Investigation of Relationship between Train Speed and Bolted Rail Joint Fatigue Life using Finite Element Analysis

Author:

Yin Hao1,Qian Yu2,Edwards J. Riley1,Zhu Kaijun3

Affiliation:

1. Rail Transportation and Engineering Center – RailTEC, Department of Civil and Environmental Engineering, University of Illinois at Urbana-Champaign, Urbana, IL

2. Department of Civil and Environmental Engineering, University of South Carolina, Columbia, SC

3. Walter P. Moore and Associates, Inc., Washington, DC

Abstract

Reducing the allowable operating speed or imposing temporary speed restrictions are common practices to prevent further damage to rail track when defects are detected related to certain track components. However, the speeds chosen for restricted operation are typically based on past experience without considering the magnitude of the impact load around the rail joints. Due to the discontinuity of geometry and track stiffness at the bolted rail joints, an impact load always exists. Thus, slower speeds may not necessarily reduce the stresses at the critical locations around the rail joint area to a safe level. Previously, the relationship between speed and the impact load around the rail joints has not been thoroughly investigated. Recent research performed at the University of Illinois at Urbana-Champaign (UIUC) has focused on investigating the rail response to load at the joint area. A finite element model (FEM) with the capability of simulating a moving wheel load has been developed to better understand the stress propagation at the joint area under different loading scenarios and track structures. This study investigated the relationship between train speed and impact load and corresponding stress propagation around the rail joints to better understand the effectiveness of speed restrictions for bolted joint track. Preliminary results from this study indicate that the contact force at the wheel–rail interface would not change monotonically with the changing train speed. In other words, when train speed is reduced, the maximum contact force at the wheel–rail interface may not necessarily reduce commensurately.

Publisher

SAGE Publications

Subject

Mechanical Engineering,Civil and Structural Engineering

Cited by 2 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Study on effect of dynamic load on rail joint bar by finite element method (FEM);Advances in Materials and Processing Technologies;2020-12-13

2. Effect of easement geometry on rail end fillet stress at bolted rail joints for transit track;Proceedings of the Institution of Mechanical Engineers, Part F: Journal of Rail and Rapid Transit;2020-11-03

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