Monitoring the reflection from an artificial defect in rail track using guided wave ultrasound

Author:

Loveday Philip W.,Taylor Rebecca M. C.,Long Craig S.,Ramatlo Dineo A.

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Reference6 articles.

1. D. Y. Jeong, “Correlations between rail defect growth data and engineering analyses, Part II: Field tests,” UIC/WEC Joint Research on Rail Defect Management, U.S. Department of Transportaion Research and Special Programs Administration, (2003).

2. D. Y. Jeong, “Correlations Between Rail Defect Growth Data and Engineering Analyses, Part I : Laboratory Tests,” UIC/WEC Joint Research on Rail Defect Management, U.S. Department of Transportaion Research and Special Programs Administration, (2003).

3. A rapid signal processing technique to remove the effect of dispersion from guided wave signals

4. An Intelligent Methodology for Railways Monitoring Using Ultrasonic Guided Waves

5. Robust ultrasonic damage detection under complex environmental conditions using singular value decomposition

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1. Differential two-wave mixing interferometer for crack detection in metallic structures based on laser-induced ultrasound;Optics and Lasers in Engineering;2023-05

2. Numerical Simulations to Examine the Interaction of Train-Induced Guided Waves With Transverse Cracks;Transportation Research Record: Journal of the Transportation Research Board;2022-06-05

3. On the use of ultrasonic guided waves for the health monitoring of rails;Proceedings of the Institution of Mechanical Engineers, Part F: Journal of Rail and Rapid Transit;2021-06-24

4. Rail Diagnostics Based on Ultrasonic Guided Waves: An Overview;Applied Sciences;2021-01-25

5. Ultrasonic guided wave monitoring of an operational rail track;Structural Health Monitoring;2019-12-25

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