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Lee, Zonghoon
Atomic-Scale Electron Microscopy Lab.
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Investigation of the Microstructure of Laser-Arc Hybrid Welded Boron Steel

Author(s)
Son, SeungwooLee, Young HoChoi, Dong-WonCho, Kuk-RaeShin, Seung ManLee, YoungseogKang, Seong-HoonLee, Zonghoon
Issued Date
2018-08
DOI
10.1007/s11837-018-2876-2
URI
https://scholarworks.unist.ac.kr/handle/201301/24561
Fulltext
https://link.springer.com/article/10.1007%2Fs11837-018-2876-2
Citation
JOM: The Journal of The Minerals, Metals & Materials Society, v.70, no.8, pp.1548 - 1553
Abstract
The microstructure of boron steel for automotive driving shaft manufacturing after laser-arc hybrid welding was investigated. Laser-arc hybrid welding technology was applied to 3-mm-thick plates of boron steel, ST35MnB. The temperature distribution of the welding pool was analyzed using the finite element method, and the microstructure of the welded boron steel was characterized using optical microscopy and scanning and transmission electron microscopies. The microstructure of the weld joint was classified into the fusion zone, the heat-affected zone (HAZ), and the base material. At the fusion zone, the bainite grains exist in the martensite matrix and show directionality because of heat input from the welding. The HAZ is composed of smaller grains, and the hardness of the HAZ is greater than that of the fusion zone. We discuss that the measured grain size and the hardness of the HAZ originate from undissolved precipitates that retard the grain growth of austenite.
Publisher
SPRINGER
ISSN
1047-4838
Keyword
NANOMETER-SIZED CARBIDESMECHANICAL-PROPERTIESGRAIN-BOUNDARYPRECIPITATIONSEGREGATIONAUSTENITE

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