Dependence of the mechanical properties of a metastable austenitic stainless steel in high-pressure hydrogen gas on machining-induced defects
Author:
Publisher
Elsevier BV
Subject
Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science
Reference19 articles.
1. Effect of strain-induced martensite on hydrogen embrittlement of austenitic stainless steels investigated by combined tension and hydrogen release methods
2. Hydrogen transport in solution-treated and pre-strained austenitic stainless steels and its role in hydrogen-enhanced fatigue crack growth
3. A new aspect on intergranular hydrogen embrittlement mechanism of solution annealed types 304, 316 and 310 austenitic stainless steels
4. Effect of grain refinement on the hydrogen embrittlement of 304 austenitic stainless steel
5. Gaseous Hydrogen Embrittlement of Materials in Energy Technologies;Nibur,2012
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1. Hydrogen Embrittlement as a Conspicuous Material Challenge─Comprehensive Review and Future Directions;Chemical Reviews;2024-05-09
2. High-pressure phase transformations and lattice distortions in industrial AISI 1070 steel: Insights from Debye-Scherrer ring integration;Materials Science and Engineering: A;2024-04
3. Different augmentations of absorbed hydrogen under elastic straining in high-pressure gaseous hydrogen environment by as-quenched and as-tempered martensitic steels: combined experimental and simulation study;International Journal of Hydrogen Energy;2023-08
4. Influence of the Dross Formation of the Laser-Cut Edge on the Fatigue Strength of AISI 304;Metals;2023-03-20
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