Crack Initiation and Propagation Analyses of Hydrogen-Related Fracture Surfaces of Tempered Martensitic Steel
Author:
Publisher
Springer International Publishing
Link
http://link.springer.com/content/pdf/10.1007/978-3-030-36296-6_126
Reference9 articles.
1. Kim YH, Morris JW (1983) The nature of quasicleavage fracture in tempered 5.5 Ni steel after hydrogen charging. Mater Trans A 14:1883–1888
2. Nagao A, Smith CD, Dadfarnia M, Sofronis P, Robertson IM (2012) The role of hydrogen in hydrogen embrittlement fracture of lath martensitic steel. Acta Mater 60:5182–5189
3. Shibata A, Momotani Y, Murata T, Matsuoka T, Tsuboi M, Tsuji N (2017) Microstructural and crystallographic features of hydrogen-related fracture in lath martensitic steels. Mater Sci Technol 33:1524–1532
4. Okada K, Shibata A, Takeda Y, Tsuji N (2018) Crystallographic feature of hydrogen-related fracture in 2Mn–0.1C ferritic steel. Int J Hydrogen Energy 43:11298–11306
5. Kobayashi T, Shockey DA (2010) Fracture surface topography analysis (FRASTA)—development, accomplishments, and future applications. Eng Fract Mech 77:2370–2384
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