Fatigue of Spring Materials

Author:

Kobelev VladimirORCID

Publisher

Springer International Publishing

Reference63 articles.

1. Akaki, Y., Matsuo, T., Nishimura, Y., Miyakawa, S., Endo, M.: Microscopic observation of shear-mode fatigue crack growth behavior under the condition of continuous hydrogen-charging. In: 6th International Conference on Fracture Fatigue and Wear. J. Phys.: Conf. Ser. 843, 012051 (2017)

2. Akiniwa, Y., Tanaka, K.: Evaluation of fatigue strength of high strength steels in very long life regime. In: Third International Conference on Very High Cycle Fatigue (VHCF-3), Shiga, Japan, pp. 464–471, 16–19 Sept 2004

3. Akiniwa, Y., Stanzl-Tschegg, S., Mayer, H., Wakita, M., Tanaka, K.: Fatigue strength of spring steel under axial and torsional loading in the very high cycle regime. Int. J. Fatigue 30, 2057–2063 (2008)

4. ASTM E 606-80: Constant-amplitude low-cycle fatigue testing. In: Annual Book of ASTM Standards, Section 3, pp. 656–673 (1986)

5. ASTM E 739-80: Statistical analysis of linear or linearized stress-life (S-N) and strain-life (ε-Ν) fatigue data. In: Annual Book of ASTM Standards, Section 3, pp. 737–745 (1986)

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