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Residual Stress Measurement with Optical Strain Rosettes

  • Conference paper

Part of the book series: Solid Mechanics and its Applications ((SMIA,volume 82))

Abstract

Optical strain gages were developed in 1960s and have many advantages over resistance strain gages. For instance, they are noncontacting, have extremely short gage lengths, and can be used to measure large strains. The interferometric strain rosettes are extended from the interferometric strain gages and have recently been developed to measure residual stresses. The technique is quantitative and is expected to be an accurate method of residual stress measurement. The method can potentially resolve many challenging problems which may not be tackled by any other means.

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Reference

  • Antonov, A. A. (1983), Inspecting the level of residual stresses in welded joints by laser interferometry, Weld Prod., 30, 29–31.

    Google Scholar 

  • Bell, J. F. (1956) Determination of dynamic plastic strain through the use of diffraction grating, Journal of Applied Physics, 27, 1109–1113.

    Article  Google Scholar 

  • Dally, J.W., and Rilley, W. F. (1991) Experimental Stress Analysis, McGraw-Hill, Inc.

    Google Scholar 

  • Dai, F., Shi, L., Huang, L., Tang, X. (1996) Residual thermal strain measurements inside Pb/Sn solder joints, Abstract Proceedings of VIII International Congress on Experimental Mechanics, pp. 33–34.

    Google Scholar 

  • Kobayashi, A. S. (1993) Handbook on Experimental Mechanics, Prentice-Hall Inc., pp. 785–829.

    Google Scholar 

  • Goncalves, Jr., Kanda, C., Boettger, J., (1996) Residual stress measurement using a radial interferometer-a preliminary analysis, Abstract Proceedings of VIII International Congress on Experimental Mechanics, pp. 27–28.

    Google Scholar 

  • Hung, Y.Y., Long, K.W., Wang, J.Q., and Hovanesian (1996) Automated measurement of residual stresses by phase-shift shearography, Abstract Proceedings of VIII International Congress on Experimental Mechanics, pp. 122–123.

    Google Scholar 

  • Joh, D., Byun, K. Y., & Ha, J. (1993), Thermal residual stresses in thick graphite/epoxy composite laminates-uniaxial approach, Experimental Mechanics, 33, 276–80.

    Google Scholar 

  • LaVan, D. A., and Sharpe, W. N., Jr. (1997) Strain measurement on miniature tension specimen, Abstract Proceedings of the SEM Spring Conference on Experimental Mechanics, June 2–4, Bellevue, WA, pp.116–117.

    Google Scholar 

  • Li, K. (1995) Interferometric 45° and 60° strain rosettes, Journal of Applied Optics, 34, 6376–6379.

    Google Scholar 

  • Li, K. (1996) Out-of-plane displacement derivative measurements using interferometric strain/slope gage, Journal of Applied Mechanics, 63, 1033–1038.

    Google Scholar 

  • Li, K. (1997a) Interferometric strain/slope rosette for static and dynamic measurements, Experimental Mechanics, 37, 111–118.

    Google Scholar 

  • Li, K. (1997b) Application of interferometric strain rosette to residual stress measurements, Journal of Optics and Lasers in Engineering, Special Issue on Optical Methods for Residual strain Measurement, 27, 125–136

    MATH  Google Scholar 

  • Li, K., Xia, L, and Lu, J. (1997) Residual stress measurements on a surface peened block by resistance and interferometric strain rosettes, Abstract Proceedings of SEM Spring Conference, Bellevue, WA, June 2–6, pp. 259–260.

    Google Scholar 

  • Li, K., Tjhung, T., Li, N., Pien, J. (1998) Numerical simulation and experimental evaluation of residual stresses in casting and quenched components, Abstract Proceedings of SEM Spring Conference, Houston, TX, 416–418.

    Google Scholar 

  • Lu, J. (1995) editorial boards: James, M., Lu, J., and Roy, G., Handbook on Techniques of Measurement of Residual Stresses, Society of Experimental Mechanics, Inc..

    Google Scholar 

  • McDonach, A., McKelvie, A., MacKenzie, P., & Walker, C. A. (1983) Improved moire interferometry and applications in fracture mechanics, residual stress and damaged composites, Experimental Mechanics, 7, 20–24.

    Google Scholar 

  • Nelson, D., Fuchs, E., Makino, A., and Williams, D. (1994) Residual stress determination by single-axis holographic interferometry and hole drilling-part II: experiments, Experimental Mechanics, March 1994, 79–88.

    Google Scholar 

  • Nicoletto, G., (1991) Moiré interferometry determination of residual stresses in presence of gradients, Experimental Mechanics, 31, 252–236.

    Google Scholar 

  • Perry K.E., Jr, Epstein, J.S., and Clark D.E. (1997) Phase shift moire studies of processing-induced residual strains in nickel 200 spot welds, Journal of Optics and Lasers in Engineering, Special Issue on Optical Methods for Residual strain Measurement, 27, 125–136

    Google Scholar 

  • Pryor, T.R., and North, W.P.T. (1971) The diffiactographic strain gage, Experimental Mechanics, 11, 565–568.

    Google Scholar 

  • Post, D., Han, B., and Ifju, P. (1994) High Sensitivity Moiré, Springer Verlag.

    Google Scholar 

  • Sharpe, W. N., Jr. (1968) The interferometric strain gage, Experimental Mechanics, 8, 164–170.

    Google Scholar 

  • Tjhung, T., Li, K., Barber, G., Hassan, A. (1998) Measurement of unequal biaxial residual stresses in the vicinity of welds by the interferometric strain rosette technique, Abstract Proceedings of SEM Spring Conference, Houston, TX, pp. 228–231.

    Google Scholar 

  • Valle, V., Cottron, M., and Lagarde, A. (1996) Grating diffraction for local strain determination under dynamic loading, PD-Vol. 76, ESDA, Volume 4, ASME 1996, The Third Biennal Conference, Montpellier France, July 1–4.

    Google Scholar 

  • Vest, M. L. (1976) Holographic interferometry, Johns Wiley & Sons, Inc.

    Google Scholar 

  • Wang, Y.Y., and Chiang, F. P. (1997) Experimental study of three-dimensional residual stresses in rails by moire interferometry and dissecting methods, Journal of Optics and Lasers in Engineering, Special Issue on Optical Methods for Residual strain Measurement, 27, 89–100.

    Google Scholar 

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© 2000 Kluwer Academic Publishers

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Li, K. (2000). Residual Stress Measurement with Optical Strain Rosettes. In: Lagarde, A. (eds) IUTAM Symposium on Advanced Optical Methods and Applications in Solid Mechanics. Solid Mechanics and its Applications, vol 82. Springer, Dordrecht. https://doi.org/10.1007/0-306-46948-0_16

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  • DOI: https://doi.org/10.1007/0-306-46948-0_16

  • Publisher Name: Springer, Dordrecht

  • Print ISBN: 978-0-7923-6604-1

  • Online ISBN: 978-0-306-46948-0

  • eBook Packages: Springer Book Archive

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