Preparation of an overall intergranular fracture surface caused by hydrogen and identification of lattice defects present in the local area just below the surface of tempered martensitic steel
Author:
Publisher
Elsevier BV
Subject
Condensed Matter Physics,General Materials Science,Mechanics of Materials,Metals and Alloys,Mechanical Engineering
Reference40 articles.
1. Effect of hydrogen and stress concentration on the notch tensile strength of AISI 4135 steel
2. Effect of hydrogen on the fracture behavior of high strength steel during slow strain rate test
3. Hydrogen Embrittlement of Hardened Low-carbon Sheet Steel
4. Method of Evaluating Hydrogen Embrittlement Susceptibility of Tempered Martensitic Steel Showing Intergranular Fracture
5. Cracking Process in Delayed Fracture of High-Strength Steel after Long Atmospheric Exposure
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1. Effect of Al-based intermetallic coating layer on H uptake during austenitization in 31MnB5 steel;Acta Materialia;2024-08
2. Hydrogen Content Dependence of Crack Initiation and Propagation Behavior of Hydrogen Embrittlement in Tempered Martensitic Steel;Tetsu-to-Hagane;2024-07-01
3. Extraction of reversible hydrogen trapped on prior austenite grain boundaries and promoting intergranular fracture in the elastic region of tempered martensitic steel by utilizing frozen-in hydrogen distribution at -196 °C;Acta Materialia;2023-10
4. Quantitative hydrogen trap states on high-angle grain boundaries and at dislocations in iron;Scripta Materialia;2023-04
5. Determination of hydrogen diffusibility and embrittlement susceptibility of high-strength steel evaluated at different temperatures based on the local equilibrium theory;Acta Materialia;2023-03
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