Comparison study on measurement of rail weld joint between inertial reference method and multi-point chord reference method

Author:

Shi YifanORCID,Wang Yuan,Liu Xiaozhou,Wang Ping

Abstract

PurposeStraightness measurement of rail weld joint is of essential importance to railway maintenance. Due to the lack of efficient measurement equipment, there has been limited in-depth research on rail weld joint with a 5-m wavelength range, leaving a significant knowledge gap in this field.Design/methodology/approachIn this study, the authors used the well-established inertial reference method (IR-method), and the state-of-the-art multi-point chord reference method (MCR-method). Two methods have been applied in different types of rail straightness measurement trollies, respectively. These instruments were tested in a high-speed rail section within a certain region of China. The test results were ultimately validated through using traditional straightedge and feeler gauge methods as reference data to evaluate the rail weld joint straightness within the 5-m wavelength range.FindingsThe research reveals that IR-method and MCR-method produce reasonably similar measurement results for wavelengths below 1 m. However, MCR-method outperforms IR-method in terms of accuracy for wavelengths exceeding 3 m. Furthermore, it was observed that IR-method, while operating at a slower speed, carries the risk of derailing and is incapable of detecting rail weld joints and low joints within the track.Originality/valueThe research compare two methods’ measurement effects in a longer wavelength range and demonstrate the superiority of MCR-method.

Publisher

Emerald

Reference28 articles.

1. Theory and research of asymmetrical chord offset method of restoring a waveform of track irregularity;Journal of East China Jiaotong University,2011

2. Profile evaluation of rail joint in a 3‐m wavelength based on unsupervised learning;Computer‐Aided Civil and Infrastructure Engineering,2023

3. Measurement of railhead longitudinal profiles: A comparison of different techniques;Wear,1996

4. Short wavelength rail corrugation: Field trials and measuring technology;Wear,1996

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