The effects of substructure on fatigue crack propagation

Author:

Karashima S.,Ogura T.

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy

Reference35 articles.

1. Thompson N., Wadsworth N. J.: Advances in Physics7 (1958), 72.

2. Stubbington C. A., Forsyth P. J. E.: J. Inst. Metals86 (1957–58), 90.

3. Parker E. R., Fegredo D. M.: Internal Stresses and Fatigue in Metals. Elsevier Pub. 1959, p. 263.

4. Thompson N.: Fracture. John Wiley 1959, p. 354.

5. McEvily A. J., Machlin E. S.: Fracture. John Wiley 1959, p. 450.

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1. Cyclic plasticity induced transformation of austenitic stainless steels;Materials Characterization;2019-03

2. Microstructural Examination of Fatigue Crack Tip in High Strength Steel;Metallurgical and Materials Transactions A;1993-10

3. 1969;Bibliography on the Fatigue of Materials, Components and Structures;1990

4. Fatigue dislocation structures;Fatigue failure of metals;1978

5. Substructure Formation around Fatigue Cracks and Its Role in the Propagation of Fatigue Cracks in Aluminium;Transactions of the Japan Institute of Metals;1972

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