- Hardness and Microstructure evolution of SUS630 Stainless steel Fabricated by Directed Energy Deposition
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Seong Eun Back, Kyung-Ho Noh, Jin Yong Park, Yong Ju Cho, Jeoung Han Kim
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J Korean Powder Metall Inst. 2018;25(3):220-225. Published online June 1, 2018
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DOI: https://doi.org/10.4150/KPMI.2018.25.3.220
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Abstract
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The microstructure and mechanical characteristics of SUS630 specimens fabricated using the direct energy deposition (DED) process are investigated. In DED, several process parameters such as laser scan speed, chamber gas flow, powder carrier gas flow, and powder feed rate are kept fixed; the laser power is changed as 150 W, 180 W, and 210 W. As the laser power increases, the surface becomes smooth, the thickness uniformity improves, and the size and number of pores decreases. With the increase in laser power, the hardness deviation decreases and the average hardness increases. The microstructure of the material is columnar; pores are formed preferentially along the columnar interface. The lath-martensite phase governs the overall microstructure. The volumetric fraction of the retained austenite phase is measured to increase with the increase of laser input power.
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