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TECHNICAL PAPERS

Measurement of In-Plane Residual Stresses Varying With Depth by the Interferometric Strain/Slope Rosette and Incremental Hole-Drilling

[+] Author and Article Information
Tana Tjhung, Keyu Li

Department of Mechanical Engineering, Oakland University, Rochester, MI 48309

J. Eng. Mater. Technol 125(2), 153-162 (Apr 04, 2003) (10 pages) doi:10.1115/1.1555654 History: Received June 25, 2002; Revised December 02, 2002; Online April 04, 2003
Copyright © 2003 by ASME
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References

Schajer,  G. S., 1981, “Applications of Finite Element Calculations to Residual Stress Measurements,” ASME J. Eng. Mater. Technol., 103(2), pp. 157–163.
Schajer,  G. S., 1988, “Measurement of Non-Uniform Residual Stresses Using the Hole-Drilling Method: Part II—Practical Application of the Integral Method,” ASME J. Eng. Mater. Technol., 110(4), pp. 344–349.
Niku-Lari,  A., Lu,  J., Flavenot,  J. F., 1985, “Measurement of Residual-Stress Distribution by the Incremental Hole-Drilling Method,” Exp. Mech., 25(2), pp. 175–185.
Makino,  A., and Nelson,  D. V., 1997, “Determination of Sub-Surface Distributions of Residual Stresses by a Holographic-Hole Drilling Technique,” ASME J. Eng. Mater. Technol., 119, pp. 95–103.
Wu,  Z., Lu,  J., and Han,  B., 1998, “Study of Residual Stress Distribution by a Combined Method of Moire Interferometry and Incremental Hole-Drilling Method, Part I: Theory & Part II: Implementation,” ASME J. Appl. Mech., 65, pp. 837–850.
Li,  K., 1997, “Application of Interferometric Strain Rosette to Residual Stress Measurements,” Opt. Lasers Eng., 27, pp. 125–136.
Li,  K., 1995, “Interferometric 45° & 60° Strain Rosettes,” Appl. Opt., 34(28), pp. 6376–6379.
Li,  K., 1996, “Out-of-Plane Displacement Derivative Measurements Using Interferometric Strain/Slope Gage,” ASME J. Appl. Mech., 63, pp. 1033–1038.
Li,  K., 1997, “Interferometric Strain/Slope Rosette for Static and Dynamic Measurements, Experimental Mechanics,” Exp. Mech., 37(2), pp. 111–118.
Cook, R. D., Malkus, D. S., Plesha, M. E., 1989, Concepts and Applications of Finite Element Analysis, 3rd ed., John Wiley & Sons, New York.
Makino,  A., and Nelson,  D., 1994, “Residual-Stress Determination by Single-Axis Holographic Interferometry and Hole Drilling—Part I: Theory,” Exp. Mech., 34(1), pp. 65–78.
Vangi,  D., 1994, “Data Management for the Evaluation of Residual Stresses by the Incremental Hole-Drilling Method,” ASME J. Eng. Mater. Technol., 116(4), pp. 561–566.
Schajer,  G. S., and Altus,  E., 1996, “Stress Calculation Error Analysis for Incremental Hole-Drilling Residual Stress Measurements,” ASME J. Eng. Mater. Technol., 118(1), pp. 120–126.
Zuccarello,  B., 1999, “Optimal Calculation Steps for the Evaluation of Residual Stress by the Incremental Hole-Drilling Method,” Exp. Mech., 39(2), pp. 117–124.
Tikhonov, A. N., and Arsenin, V. Y., 1977, Solution of Ill-Posed Problems, John Wiley & Sons, New York.
Beck, J. V., Blackwell, B., and St. Clair, Jr., C. R., 1985, Inverse Heat Conduction—Ill-Posed Problems, Wiley-Interscience, New York.
Kirsch, A., 1996, An Introduction to the Mathematical Theory of Inverse Problems, Springer, New York.
Tjhung, T., and Li, K., 1999, “On Accuracy of Residual Stress Measurements by Hole-Drilling and Interferometric Strain Rosette,” Proceedings of the SEM Annual Conference on Theoretical, Experimental and Computational Mechanics, Cincinnai, OH, June 7–9, 1999, Society of Experimental Mechanics, Bethel, CT, pp. 387–390.

Figures

Grahic Jump Location
Schematic diagram of 60 deg ISSR and interference patterns
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ISSR measurement geometry
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Schematic of hole-drilling geometry for n depth increments
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Locations of the ISSRs with respect to the hole. Loading is applied in the Y-direction.
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Back-calculated stress components as a function of angular position of the ISSRs
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Measured strains/slopes and regularized residual stress results for the Ti-alloy block
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δ-curve for δ0=1 (nominal), and c=0.25
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Unregularized residual stress results for ISSR #3

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