Crack propagation characteristics and fatigue life of the large austenitic stainless steel hydrogen storage pressure vessel

Author:

Ma Yanran,He Shengquan,Song Dazhao,He Xueqiu,Chen Tuo,Shen Feng,Baig Osama,Luo Siyu,Wang Jia

Funder

Fundamental Research Funds for the Central Universities

National Natural Science Foundation of China

Publisher

Elsevier BV

Reference43 articles.

1. Hydrogen-related with the change in mechanical properties and deformation behavior of 316L austenite stainless steel;Jaeyeong;Mater. Char.,2023

2. Charpy impact properties of stainless steel weldment in liquefied natural gas pipelines: effect of low temperatures;Hyeon;Mater. Des.,2014

3. Effects of hydrogen pressure and test frequency on fatigue crack growth properties of Ni–Cr–Mo steel candidate for a storage cylinder of a 70MPa hydrogen filling station;Macadre;Eng. Fract. Mech.,2011

4. Fatigue crack growth modeling of pipeline steels in high pressure gaseous hydrogen;Amaro;Int. J. Fatig.,2014

5. Influence of hydrogen pressure on fatigue properties of X80 pipeline steel;An;Int. J. Hydrogen Energy,2017

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