July 2026

Journal

Microstructural stability of irradiated yttrium hydride under thermal cycles

By:
deJong, Matthew M; Cinbiz, Mahmut N
Journal Name:
Materials Characterization
Page Number:
116602
Volume:
238
Publication Date:
July 1, 2026
View DOI Listing:
https://doi.org/10.1016/j.matchar.2026.116602

Abstract

Hydrides that retain their hydrogen in service are critical for advanced microreactor and space nuclear systems. Hydrogen retention is affected by evolving microstructure under temperature and irradiation extremes. This study investigated microstructural features in neutron-irradiated yttrium hydride and the stability of these features under thermal cycles. Differential scanning calorimetry was used to determine hydrogen desorption and temperatures at which significant phase changes are occurring, and transmission electron microscopy was used for microstructural analysis after each thermal cycle. Cyclic heating led to crystallization and epitaxial growth of surface oxidation and dehydriding of the matrix. Other features such as the bulk matrix crystal structure, irradiation-induced cavities, and matrix precipitation remained constant after thermal cycling. Results allow us to design better hydride alloys through microstructure tailoring and potential irradiation conditioning treatments.