Melting and Solidification Behavior of 316L Steel Induced by Electron-Beam Irradiation for Additive Manufacturing
Author:
Affiliation:
1. Division of Materials and Manufacturing Science, Graduate School of Engineering, Osaka University
Publisher
Sumart Processing Society for Minerals, Environment and Energy
Link
https://www.jstage.jst.go.jp/article/jspmee/10/4/10_208/_pdf
Reference22 articles.
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2. J.C. Simmons, X. Chen, A. Azizi, M.A. Daeumer, P.Y. Zavalij, G. Zhou and S.N. Schiffres: “Influence of processing and microstructure on the local and bulk thermal conductivity of selective laser melted 316L stainless steel”, Addit. Manuf. 32(2020), 100996.
3. S. Dryepondt, P. Nandwana, P. Fernandez-Zelaia and F. List: “Microstructure and High Temperature Tensile properties of 316L Fabricated by Laser Powder-Bed Fusion”, Addit. Manuf. 37(2020), 101723.
4. S.H. Sun, T. Ishimoto, K. Hagihara, Y. Tsutsumi, T. Hanawa and T. Nakano: “Excellent mechanical and corrosion properties of austenitic stainless steel with a unique crystallographic lamellar microstructure via selective laser melting”, Scr. Mater. 159(2019), 89-93.
5. T. Ishimoto, S. Wu, Y. Ito, S.H. Sun, H. Amano and T. Nakano: “Crystallographic orientation control of 316L austenitic stainless steel via selective laser melting”, ISIJ Int. 60(2020), 1758-1764.
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1. Fabrication and Process Monitoring of 316L Stainless Steel by Laser Powder Bed Fusion with µ-Helix Scanning Strategy and Narrow Scanning Line Intervals;Journal of the Japan Institute of Metals and Materials;2024-09-01
2. Solidification Microstructure Formation in Stainless Steels Additively Manufactured by Powder Bed Fusion;Journal of Smart Processing;2023-07-10
3. Fabrication and Process Monitoring of 316L Stainless Steel by Laser Powder Bed Fusion with µ-Helix Scanning Strategy and Narrow Scanning Line Intervals;MATERIALS TRANSACTIONS;2023-06-01
4. Digital Twin Science of Metal Powder Bed Fusion Additive Manufacturing: A Selective Review of Simulations for Integrated Computational Materials Engineering and Science;ISIJ International;2022-11-15
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