Application of X-ray stress measurement for residual stress analysis by inherent strain method - Comparison of cosα and sin2Ψ method-

Author:

MATSUDA Mariko1,OKITA Keisuke2,NAKAGAWA Tomokazu2,SASAKI Toshihiko3

Affiliation:

1. Technical Development Department, Steel Casting & Forging Division, KOBE STEEL, LTD.

2. Mechanical Engineering Laboratory, KOBE STEEL, LTD.

3. Graduate School of Natural Science & Technology, Kanazawa University

Publisher

Japan Society of Mechanical Engineers

Subject

General Medicine

Reference22 articles.

1. Fujimoto, Y., Miyazaki, T., and Sasaki, T., X-ray stress measurement of ferritic steel using Fourier analysis of Debye-Scherrer ring, Journal of the Society of Materials Science, Vol. 64, No.7 (2015), pp.567-572 (in Japanese).

2. Jun, T.-S., and Koursunsky, A. M., Evaluation of residual stresses and strains using the eigenstrain reconstruction method, International Journal of Solids and Structures, Vol.47, No.13 (2010), pp.1678-1686.

3. Jun, T.-S., Venter, A. M., and Koursunsky, A. M., Inverse eigenstrain analysis of the effect of non-uniform sample shape on the residual stress due to shot peening, Experimental Mechanics, Vol.51, No.2 (2011), pp.165-174.

4. Korsunsky, A. M., Kim, K., Golshan, M., and Regino, G. M., Residual stress analysis in shot peened and fretting fatigued samples by the eigenstrain method, Materials Science Forum, Vol.524-525, (2006), pp.343-348.

5. Korsunsky, A. M., Regino, G. M., Latham, D. P., Li, H. Y., and Walsh, M. J., Residual stresses in rolled and machined nickel alloy plates: synchrotron X-ray diffraction measurement and three-dimensional eigenstrain analysis, The Journal of Strain Analysis for Engineering Design, Vol.42, No.1 (2007), pp.1-12.

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