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Effect of grain boundary engineering on hydrogen embrittlement in Fe-Mn-C TWIP steel at various strain rates SCIE SCOPUS

Title
Effect of grain boundary engineering on hydrogen embrittlement in Fe-Mn-C TWIP steel at various strain rates
Authors
Kwon, Young JinSeo, Hyun JooKim, Jae NamLee, Chong Soo
Date Issued
2018-09
Publisher
PERGAMON-ELSEVIER SCIENCE LTD
Abstract
The influence of strain rate (10(-3) <= (epsilon)over dot <= 10(-5) s(-1)) on hydrogen embrittlement behavior of Fe - 17Mn - 0.8C (wt.%) TWIP steel was investigated. Two types of specimens were tested; one (AR) was hot-rolled, and the other (GBE) was further processed by grain boundary engineering. After hydrogen charging, the fracture strength (FS) and ductility of AR samples decreased as (epsilon)over dot decreased, because increasing numbers of H atoms accumulated near crack tips. However, after hydrogen charging, the FS and tensile ductility of GBE samples were not decreased much even at low (epsilon)over dot, because special boundaries suppressed hydrogen-induced crack initiation and propagation.
URI
https://oasis.postech.ac.kr/handle/2014.oak/95677
DOI
10.1016/j.corsci.2018.07.028
ISSN
0010-938X
Article Type
Article
Citation
CORROSION SCIENCE, vol. 142, page. 213 - 221, 2018-09
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이종수LEE, CHONG SOO
Ferrous & Energy Materials Technology
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