Determination of Nonuniform Residual Stresses Using the Ring-Core Method

Author:

Ajovalasit A.1,Petrucci G.1,Zuccarello B.1

Affiliation:

1. Department of Mechanics and Aeronautics, University of Palermo, Viale delle Scienze, 90128 Palermo, Italy

Abstract

This paper considers residual stress analysis using the ring-core method. In particular, the so-called integral equation method is applied to evaluate nonuniform residual stress fields. The proposed method overcomes typical drawbacks of the incremental strain method which lead to incorrect results for strongly varying stress fields. The experimental results obtained with a specimen subjected to a bending load confirm the theoretical predictions.

Publisher

ASME International

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science

Reference17 articles.

1. Freddi, A., 1974, “Modifiche proposte per l’analisi delle tensioni residue con il metodo della cava anulare,” Proc. 5th Int. Conf. on Experimental Stress Analysis, Pitagora, Bologna, pp. 4.150–4.159.

2. Bohm W. , StuckerE., WolfH., 1980, “Grundlagen und Anwendungs-smoglichkeiten des Ring-Kern-Verfahrens zum Ermitteln von Eigenspannungen, Teil 1: Theorie und Grundlagen,” Messtechnische Briefe., Vol. 16(2), pp. 36–40.

3. Bohm W. , and StackerE., WolfH., 1980, “Grundlagen und Anwendungs-smoglichkeiten des Ring-Kern-Verfahrens zum Ermitteln von Eigenspannungen, Teil 2: Praxis und Anwendungsbeispiele,” Messtechnische Briefe., Vol. 16(3), pp. 66–70.

4. Bohm W. , StackerE., WolfH., 1988, “Principles and Potential Applications of the Ring-Core Method for Determining Residual Stresses,” RAM, Vol. 4(1), pp. 5–10.

5. Keil S. , 1992, “Experimental Determination of Residual Stresses with the Ring-Core Method and an On-Line Measuring System,” Experimental Techniques, Vol. 16, No. 5, pp. 17–24.

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