Cycled hydrogen permeation through Armco iron – A joint experimental and modeling approach

Author:

Drexler A.,Siegl W.,Ecker W.,Tkadletz M.,Klösch G.,Schnideritsch H.,Mori G.,Svoboda J.,Fischer F.D.

Funder

scope of the COMET program within the K2 Center “Integrated Computational Material, Process and Product Engineering

Austrian Federal Ministries for Climate Action, Environment, Energy, Mobility, Innovation and Technology (BMK) and for Digital and Economic Affairs

Ministery of Education

Sports of the Czech Republic

Publisher

Elsevier BV

Subject

General Materials Science,General Chemical Engineering,General Chemistry

Reference52 articles.

1. Progress towards understanding mechanisms of hydrogen embrittlement and stress corrosion cracking;Lynch;NACE – Int. Corros. Conf. Ser,2007

2. Hydrogen-assisted crack propagation in austenitic stainless steel fusion welds;Somerday;Metall. Mater. Trans. A Phys. Metall. Mater. Sci.,2009

3. Hydrogen embrittlement understood;Robertson;Metall. Materi. Trans. B,2015

4. Slow strain rate tests coupled with hydrogen permeation: new possibilities to assess the role of hydrogen in stress corrosion cracking tests part I: methodology and commissioning results;de Assis;Corros. Sci.,2019

5. Effect of dislocation cell walls on hydrogen adsorption, hydrogen trapping and hydrogen embrittlement resistance;Chen;Corros. Sci.,2019

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