Measurement of Thermal Stress in Railroad Rails Using Ultrasonic SH Waves

Author:

MacLauchlan D. T.,Alers G. A.

Publisher

Springer US

Reference6 articles.

1. Committee on NDT of Longitudinal Forces in Rails, D. O. Thompson, Chairman, “Prediction of Rail Buckling—Recommendations for Development of Test Methods,” Report No. DOT/FRA/ORD-82-21, National Materials Advisory Board, NMAB-388, March 1982.

2. R. T. Smith, “Stress Induced Anisotropy in Solids—The Acoustoelastic Effect,” Ultrasonics, p. 135, July-September 1963.

3. R. B. Thompson, “New Configuration for the Electromagnetic Generation of SH Waves in Ferromagnetic Materials,” Proc. 1978 Ultrasonic Symposium, IEEE Cat. No. 78CH1344-ISU, p. 374 (1978).

4. R. B. Thompson, S. S. Lee, and J. F. Smith, “Microstructure-Independent Acousto-elastic Measurement of Stress,” Applied Physics Letters 44, pp. 296–8 (1984).

5. G. C. Johnson and G. T. Mase, “Acoustoelasticity in Transversely Isotropic Materials,” J. Acous. Soc. Am., vol. 75 (6), p. 1741 (June 1984).

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1. A review of non-destructive evaluation techniques for axial thermal stress and neutral temperature measurement in rail: Physical phenomena and performance assessment;NDT & E International;2023-07

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3. An Overview of Stress and Strain Measurement Techniques;Applications and Techniques for Experimental Stress Analysis;2020

4. Application of Surface Skimming SH Waves to Stress and Texture Measurement in Steel;Review of Progress in Quantitative Nondestructive Evaluation;1989

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