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Effect of Various Alloying Elements on the Microstructure and Repeated Deformation Behavior of X60 High Strength Low Alloy Steel

Authors
Kim, Kyu SikKim, Sang ShikPark, Kwang KyunNoh, Kyoung MinLee, Kee Ahn
Issue Date
Sep-2013
Publisher
KOREAN INST METALS MATERIALS
Keywords
alloys; rolling; fatigue; SEM; X60 based steels
Citation
KOREAN JOURNAL OF METALS AND MATERIALS, v.51, no.9, pp 629 - 636
Pages
8
Indexed
SCIE
SCOPUS
KCI
Journal Title
KOREAN JOURNAL OF METALS AND MATERIALS
Volume
51
Number
9
Start Page
629
End Page
636
URI
https://scholarworks.gnu.ac.kr/handle/sw.gnu/20504
DOI
10.3365/KJMM.2013.51.9.629
ISSN
1738-8228
2288-8241
Abstract
Repeated deformation behaviors of 10 different X60 based steels were investigated in this study. At room temperature, repeated deformation tests were conducted with f = 0.2 Hz, sinusoidal wave form and Acta (total strain amplitude) = 0.9%, which are conditions similar to those for coiled tubing application. Different alloys whose microstructures were varied with addition of alloying elements showed different fatigue life. In particular, X60 steel modified by addition of titanium had superior fatigue properties than the base X60 steel. To clarify the relationship between repeated deformation life and microstructure, morphologies of the fractured surfaces and crack propagation path were examined. Most of the cracks propagated smoothly along the ferrite-ferrite interface or through the ferrite, while the crack path was largely changed by pearlite phases, which were relatively harder phases than ferrite. Based on those results, we related the microstructure parameters to repeated deformation behavior.
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Kim, Sang Shik
대학원 (나노신소재융합공학과)
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