Hydrogen embrittlement of high strength, low alloy (HSLA) steels and their welds
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Publisher
Elsevier
Link
http://woodhead.metapress.com/index/XQ2Q1236T14332T3.pdf
Reference13 articles.
1. Microstructural influences on hydrogen delayed fracture of high strength steels;Kim;Materials Science and Engineering A,2009
2. Effect of sulphur content on delayed fracture susceptibility of high strength steel for bolts;Namiki;Transactions ISIJ,1984
3. Hydrogen embrittlement of advanced high strength steels for automotive Use;Barloscio,2010
4. Lopez AH; Hydrogen embrittlement of high strength pipeline steels;Hardie;Corrosion Science,2006
5. Some observations on the role of inclusions in the hydrogen induced blister cracking of linepipe steels in sulfide environments;Wilde;Corrosion,1980
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1. Model Description of Hydrogen-Induced Damage Evolution in High-Strength Steel Weld Metal Based on Results of a Novel Test Method;SSRN Electronic Journal;2022
2. Fracture toughness of coarse-grain heat affected zone of quenched and tempered CrMo steels with internal hydrogen: Fracture micromechanisms;Engineering Fracture Mechanics;2021-01
3. Important Factors on the Failure of Pipeline Steels with Focus on Hydrogen Induced Cracks and Improvement of Their Resistance: Review Paper;Metals and Materials International;2019-04-20
4. References;Handbook of Structural Life Assessment;2017-04-07
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