Total Residual Stress Measurement by Using Ultrasonic Technique

Volume: 24 Number: 1 January 14, 2011
EN

Total Residual Stress Measurement by Using Ultrasonic Technique

Abstract

Ultrasonic technique is of paramount importance in residual stress measurement. The technique has many advantages than other residual stress measurement techniques. However, precision and determining acoustoelastic constants are main difficulties that are encountered. Based on the principle that source of the welding residual stress is welding heat, relation between thermal stress and ultrasonic wave velocity variations are investigated. By using their relation, a new attempt on determining welding residual stress is developed.

 

Keywords

References

  1. Uzun, F., “Through Thickness Residual Stress Evaluation in Heat Affected Zone”, M.Sc. Thesis, Yeditepe University, Istanbul (2009).
  2. Li, L., J. Ding, F. Liu, and J. Zhang, “Study on Travel Time Measurement with LCR Wave in Shear Stress Evaluation”, IEEE International Conference on Mechatronics and Automation, (2006).
  3. Bray, D. E., and W. Tang, “Subsurface Stress Evaluation in Steel Plates and Bars Using the LCR Ultrasonic Wave”, Nuclear Engineering and Design (2007).
  4. Uzun, F., and A. N. Bilge, “Through Thickness Ultrasonic Residual Stress Evaluation Using Pulse- Echo Method”, EU JRC 12th NET Meeting Petten, Holland (2007).
  5. Vangi, D., “Stress Evaluation by Pulse-Echo Ultrasonic Longitudinal Wave”, Experimental Mechanics, 41:277-281 (2001).
  6. Hughes, D. S., and J. L. Kelly, “Second-Order Elastic Deformation of Solids”, Physical Review, 92:1145-1149 (1953).
  7. Iwashimizua, Y., and K. Kubomuraa, “Stress- Induced Rotation of Polarization of Elastic Waves in Slightly Anisotropic Materials”, International Journal of Solids and Structures, 9:99-114 (1973).
  8. US Department of Transportation Federal Railroad Administration, “Residual Stresses in Railroad Commuter Car Wheels”, Research Results, RR99- 01 (1999).

Details

Primary Language

English

Subjects

-

Journal Section

-

Authors

Ali Bilge This is me

Publication Date

January 14, 2011

Submission Date

March 19, 2010

Acceptance Date

-

Published in Issue

Year 2011 Volume: 24 Number: 1

APA
Uzun, F., & Bilge, A. (2011). Total Residual Stress Measurement by Using Ultrasonic Technique. Gazi University Journal of Science, 24(1), 135-141. https://izlik.org/JA69HY55MF
AMA
1.Uzun F, Bilge A. Total Residual Stress Measurement by Using Ultrasonic Technique. Gazi University Journal of Science. 2011;24(1):135-141. https://izlik.org/JA69HY55MF
Chicago
Uzun, Fatih, and Ali Bilge. 2011. “Total Residual Stress Measurement by Using Ultrasonic Technique”. Gazi University Journal of Science 24 (1): 135-41. https://izlik.org/JA69HY55MF.
EndNote
Uzun F, Bilge A (January 1, 2011) Total Residual Stress Measurement by Using Ultrasonic Technique. Gazi University Journal of Science 24 1 135–141.
IEEE
[1]F. Uzun and A. Bilge, “Total Residual Stress Measurement by Using Ultrasonic Technique”, Gazi University Journal of Science, vol. 24, no. 1, pp. 135–141, Jan. 2011, [Online]. Available: https://izlik.org/JA69HY55MF
ISNAD
Uzun, Fatih - Bilge, Ali. “Total Residual Stress Measurement by Using Ultrasonic Technique”. Gazi University Journal of Science 24/1 (January 1, 2011): 135-141. https://izlik.org/JA69HY55MF.
JAMA
1.Uzun F, Bilge A. Total Residual Stress Measurement by Using Ultrasonic Technique. Gazi University Journal of Science. 2011;24:135–141.
MLA
Uzun, Fatih, and Ali Bilge. “Total Residual Stress Measurement by Using Ultrasonic Technique”. Gazi University Journal of Science, vol. 24, no. 1, Jan. 2011, pp. 135-41, https://izlik.org/JA69HY55MF.
Vancouver
1.Fatih Uzun, Ali Bilge. Total Residual Stress Measurement by Using Ultrasonic Technique. Gazi University Journal of Science [Internet]. 2011 Jan. 1;24(1):135-41. Available from: https://izlik.org/JA69HY55MF