Effects of strain rate and notch geometry on hydrogen embrittlement of AISI type 316L austenitic stainless steel
Author:
Publisher
Elsevier BV
Subject
Mechanical Engineering,General Materials Science,Nuclear Energy and Engineering,Civil and Structural Engineering
Reference76 articles.
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2. Simplified estimation of creep-rupture strength for notched tensile specimens of austenitic stainless steels;Konish;J. Pressure Vessel Tech.,1988
3. The relationship between microstructure and fracture behavior of fully austenitic type 316L weldments at 4.2 K;Lippold;Metall. Trans.,1985
4. High frequency stage I corrosion fatigue of austenitic stainless steel (316L);Fong;Metall. Trans.,1988
5. Stage I corrosion fatigue crack crystallography in austenitic stainless steel (316L);Fong;Metall. Trans.,1988
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1. Hydrogen Embrittlement and Microdamage of 316L Steel Affecting the Structural Integrity, Durability and Safety of Pipelines;Lecture Notes in Civil Engineering;2020-09-11
2. Effect of notch root radius on tensile behaviour of 316L(N) stainless steel;Materials at High Temperatures;2014-06-25
3. Hydrogen Effects on 316L Austenitic Stainless Steel: Mechanical Modelling of the Damage/Failure Process;Hydrogen Effects in Materials;2013-10-04
4. Effect of alloying elements on hydrogen environment embrittlement of AISI type 304 austenitic stainless steel;International Journal of Hydrogen Energy;2011-12
5. Effect of hydrogen trapping on void growth and coalescence in metals and alloys;Mechanics of Materials;2008-03
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