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Optimization of Additive Manufacturing of Precipitation Hardening Type STS630 by DED (Direct Energy Deposition) Process
Yongjae Kwon, SeongSeon Shin, SangEun Joo, JongHoon Lee, JunHo Hwang, HyunDeok Kim
JWJ. 2021;39(6):590-596.   Published online 2021 December 27    DOI: https://doi.org/10.5781/JWJ.2021.39.6.3

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Optimization of Additive Manufacturing of Precipitation Hardening Type STS630 by DED (Direct Energy Deposition) Process
Journal of Welding and Joining. 2021;39(6):590-596   Crossref logo
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Directed Energy Deposition (DED)
Metal Additive Manufacturing. 2021;137-202   Crossref logo
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An overview of Direct Laser Deposition for additive manufacturing; Part II: Mechanical behavior, process parameter optimization and control
Additive Manufacturing. 2015;8:12-35   Crossref logo
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A Study of Different Deposition Strategies in Direct Energy Deposition (DED) Processes
Procedia Manufacturing. 2020;48:663-670   Crossref logo
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Adaptive Slicing and Process Optimization for Direct Metal Deposition to Fabricate Exhaust Manifolds
Industrializing Additive Manufacturing. 2020;160-173   Crossref logo
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Taguchi based process optimization for dimension and tolerance control for fused deposition modelling
Additive Manufacturing. 2018;21:183-190   Crossref logo
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Improvement of Directed Energy Deposition (DED) material addition rate via fluence-based parameter scaling method
Progress in Additive Manufacturing. 2021;   Crossref logo
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Analysis of the Influence of Shielding and Carrier Gases on the DED Powder Deposition Efficiency for a New Deposition Nozzle Design Solution
Industrializing Additive Manufacturing - Proceedings of Additive Manufacturing in Products and Applications - AMPA2017. 2017;59-69   Crossref logo
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Functionally graded Ti6Al4V-Mo alloy manufactured with DED-CLAD® process
Additive Manufacturing. 2017;17:55-66   Crossref logo
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Numerical modelling of heat transfer, mass transport and microstructure formation in a high deposition rate laser directed energy deposition process
Additive Manufacturing. 2020;33:101175   Crossref logo
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