Unified interpretation of hydrogen-diffusion and various fracture properties in high-pressure hydrogen gas based on trap-site occupancy of hydrogen by dislocation—austenitic stainless steels and low-alloy steels

Author:

MATSUOKA Saburo1,TAKAKUWA Osamu11,OKAZAKI Saburo1,YOSHIDA Satoko1,YAMABE Junichiro2,MATSUNAGA Hisao11

Affiliation:

1. Kyushu University

2. Fukuoka University

Publisher

Japan Society of Mechanical Engineers

Reference23 articles.

1. Dadfarnia, M., Martin, M. L., Nagao, A., Sofronis, P. and Robertson, I. M., Modeling hydrogen transport by dislocations, Jornal of the Mechanics and Physics of Solids, Vol.78 (2015), pp.511-525.

2. Demarez, A., Hock, A. G. and Meunier F. A., Diffusion of hydrogen in mild Steel, Acta Metallurgica, Vol.2, Issue 2 (1954), pp.214-223.

3. Hagi, H., Diffusion coefficient of hydrogen in iron free from trapping by dislocations and impurities, Journal of Japan Institute Metals, Vol.57, No.7 (1993), pp.742-748 (in Japanese).

4. Hayakawa, M. Hara, T., Matsuoka, S. and Tsuzaki, K., Microstructural observation of tempered martensite in a medium-carbon low-alloy steel by atomic force microscopy, Journal of Japan Institute Metals, Vol.64, No.6 (2000), pp.460-466 (in Japanese).

5. Hirth, J. P., Effects of hydrogen on the properties of iron and, Metallurgical Transactions A, Vol.11A (1980), pp.861-890.

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