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Original Articles

Effect of hydrogen on mechanical properties of nitrided austenitic steels

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Pages 5407-5418 | Received 31 Oct 2005, Accepted 13 Dec 2005, Published online: 21 Nov 2006

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Zhongcheng Zheng, Ning Gao, Rui Tang, Yanxia Yu, Weiping Zhang, Zhenyu Shen, Yunxiang Long, Yaxia Wei & Liping Guo. (2017) Evolution of dislocation loops in austenitic stainless steels implanted with high concentration of hydrogen. Philosophical Magazine 97:29, pages 2658-2668.
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Articles from other publishers (5)

Bruna C.E. Schibicheski Kurelo, Gelson B. de Souza, Francisco C. Serbena, Carlos M. Lepienski, Rafael Fillus Chuproski & Paulo César Borges. (2022) Improved saline corrosion and hydrogen embrittlement resistances of superaustenitic stainless steel by PIII nitriding. Journal of Materials Research and Technology 18, pages 1717-1731.
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Fabio Da Costa Garcia Filho, Gabriel Bartholazzi Lugão de Carvalho & Sergio Neves Monteiro. 2018. Characterization of Minerals, Metals, and Materials 2018. Characterization of Minerals, Metals, and Materials 2018 523 528 .
Afrooz Barnoush, Adina Basa & Cristian Thaulow. (2014) Oxygen argon plasma treatment effect on hydrogen uptake in austenitic stainless steels. International Journal of Hydrogen Energy 39:26, pages 14120-14131.
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M. Asgari, A. Barnoush, R. Johnsen & R. Hoel. (2012) Nanomechanical evaluation of the protectiveness of nitrided layers against hydrogen embrittlement. Corrosion Science 62, pages 51-60.
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Gelson B. de Souza, Carlos E. Foerster, Carlos M. Lepienski, Neide K. Kuromoto, Silvio L.R. da Silva & Wido H. Schreiner. (2010) Structural, chemical and tribo-mechanical surface features of Ti and nitrided Ti submitted to hydrogen low energy implantation. Materials Chemistry and Physics 124:1, pages 443-452.
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