Hydrogen-assisted fatigue crack growth: Pre-charging vs in-situ testing in gaseous environments
Author:
Publisher
Elsevier BV
Subject
Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science
Reference94 articles.
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3. Elucidating the variables affecting accelerated fatigue crack growth of steels in hydrogen gas with low oxygen concentrations;Somerday;Acta Mater.,2013
4. The role of plasticity and hydrogen flux in the fracture of a tempered martensitic steel: a new design of mechanical test until fracture to separate the influence of mobile from deeply trapped hydrogen;Guedes;Acta Mater.,2020
5. Effects of hydrogen on fatigue-crack propagation in steels;Murakami;Gaseous Hydrogen Embrittlement Mater. Energy Technol.: Problem,Charact. Eff.Part Alloy Cl.,2012
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1. A phase field method for predicting hydrogen-induced cracking on pipelines;International Journal of Mechanical Sciences;2024-12
2. Study on the mechanical properties of X80 pipeline steel under pre-charged high-pressure gaseous hydrogen;International Journal of Hydrogen Energy;2024-09
3. Modelling of room temperature outgassing and diffusion in a martensitic advanced high-strength steel;Engineering Failure Analysis;2024-08
4. Cyclic deformation and microstructural evolution of 316L stainless steel with pre-charged hydrogen;International Journal of Fatigue;2024-07
5. Computational predictions of hydrogen-assisted fatigue crack growth;International Journal of Hydrogen Energy;2024-06
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