Cyclic life of metal hydrides with impure hydrogen: Overview and engineering considerations
Author:
Publisher
Elsevier BV
Subject
General Engineering
Reference23 articles.
1. Degradation of Lani5 hydrogen-absorbing material by cycling
2. Stability of rechargeable hydriding alloys during extended cycling
3. Degradation of hydrogen-absorbing rare earth intermetallics by cycling
4. B. E. Sirovich, I. Ginsburgh, U.S. Patent 4,302,436, November 24, 1981.
5. Intrinsic cycling degradation in LaNi5 and annealing procedures for re-forming the material
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