Toward a phenomenological description of hydrogen-induced decohesion at particle/matrix interfaces

Author:

Liang Y.,Sofronis P.

Publisher

Elsevier BV

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics

Reference86 articles.

1. Baranowski, B., 1978. Metal hydrogen systems at high hydrogen pressures. In: G. Alefeld, J. Volkl (Eds), Hydrogen in Metals I, Topics in Applied Physics, Vol. 29, Springer, Berlin, pp. 57–200.

2. The volume increase of f.c.c. metals and alloys due to interstitial hydrogen over a wide range of hydrogen contents;Baranowski;J. Phys. F Metal Phys.,1971

3. Hydrogen effects on deformation-relation between dislocation behavior and the macroscopic stress–strain behavior;Birnbaum;Scr. Metall.,1994

4. Birnbaum, H.K., 2002. Private communication.

5. Birnbaum, H.K., Robertson, I.M., Sofronis, P., Teter, D., 1997. Mechanisms of hydrogen related fracture—a review. In: Magnin, T. (Ed.), Corrosion Deformation Interactions CDI’96 (Second International Conference, Nice, France, 1996). The Institute of Materials, Great Britain, pp. 172–195.

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