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Articles

Surface cracking and phase transformations associated with cathodic charging of austenitic stainless steel

Pages 817-822 | Published online: 19 Jul 2013

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Read on this site (3)

J. Janovec, M. Bogyó, J. Blach, P. Záhumenský & A. Výrostkov´. (2001) Splitting of AISI 316 Austenitic Stainless Steel. Canadian Metallurgical Quarterly 40:1, pages 97-104.
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J. Janovec, J. Blach, P. Záhumenský, V. Magula & J. Pecha. (1999) Role of Intergranular Precipitation in the Fracture Behaviour of AISI 316 Austenitic Stainless Steel. Canadian Metallurgical Quarterly 38:1, pages 53-59.
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M. F. Shehata, S. Schwarz, H. J. Engelmann & M. Uhlemann. (1997) Influence of hydrogen on mechanical properties of nitrogen supersaturated austenitic stainless steels. Materials Science and Technology 13:12, pages 1016-1022.
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Articles from other publishers (5)

Kyung-Shik Kim, Jee-Hyun Kang & Sung-Joon Kim. (2020) Effect of Carbon and Nitrogen on the Hydrogen Embrittlement of 15Cr-15Mn-4Ni-Based Stable Austenitic Stainless Steels. JOM 72:5, pages 2011-2019.
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M. Miranda, B. Campillo, J. Colín, A. Torres-_Islas, A. Molina, S. Serna & Julio C. Villalobos. (2016) Analysis of Electrochemical Hydrogen Permeation through AISI Stainless and Welding Zones for Hydrogen Service. International Journal of Electrochemical Science 11:11, pages 9340-9354.
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D. Hardie, J. Xu, E.A. Charles & Y. Wei. (2004) Hydrogen embrittlement of stainless steel overlay materials for hydrogenators. Corrosion Science 46:12, pages 3089-3100.
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Ravin Kumar Dayal & Hans Jürgen Grabke. (2000) Dependence of the hydrogen permeation in stainless steel on carbon content, heat treatment and cold work. Steel Research 71:6-7, pages 255-260.
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Jean-Bernard Vogt. (1998) Hydrogen-induced phase transformation in a high nitrogen austenitic stainless steel. Corrosion Science 41:3, pages 519-528.
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