Analysis of the temperature evolution in cyclic loading using the thermoelastic effect with plastic deformation

Author:

Park Sanglok,Shim Hyong-Sub,Lee Jun-Su,Shin Kyeongho,Lee Young-Jun,Kim Joo-Hyung

Publisher

Springer Science and Business Media LLC

Subject

Mechanical Engineering,Mechanics of Materials

Reference30 articles.

1. W. S. Farren and G. I. Taylor, The heat developed during plastic extension of metals, Proceedings of the Royal Society A, 107(743) (1925) 422–451.

2. J. A. Charles, F. J. Appl and J. E. Francis, Thermographic determination of fatigue damage, J. of Engineering Materials and Technology, 100(2) (1978) 200–203.

3. L. Jiang et al., Characterization of the temperature evolution during high-cycle fatigue of the ULTIMET superalloy: experiment and theoretical modeling, Metallurgical and Materials Transactions A, 32 (2001) 2279–2296.

4. J. Schijve, Significance of Fatigue Cracks in Micro-Range and Macro-Range, in Fatigue Crack Propagation, ASTM International (1967).

5. P. J. E. Forsyth, The Physical Basis of Metal Fatigue, Blackie and Son, LTD., London (1969).

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