Modeling of a Crack-induced Hydride Formation at a Grain Boundary in Metals
Journal article, 2020

Crack-induced hydride formation can occur in specific metallic structures, reducing their mechanical properties and facilitating failure. Grain boundaries are observed to be preferential sites for hydride formation. We present a phasefield approach describing the kinetics of crack-induced hydride formation at a grain boundary, by using the Allen-Cahn formulation and including the increase in grain boundary energy. Hydride development is found to occur at the crack tip and in the grain boundary. These regions seemingly evolve independently, except when the crack is very close to or lies in the grain boundary.

Author

Claudio Nigro

Malmö university

Christina Bjerkén

Malmö university

Pär A. T. Olsson

Malmö university

International Journal of Offshore and Polar Engineering

1053-5381 (ISSN)

Vol. 30 4 478-486 ISOPE-20-30-4-478

Subject Categories (SSIF 2025)

Metallurgy and Metallic Materials

Materials Engineering

DOI

10.17736/ijope.2020.oa24

More information

Created

8/12/2026