• 대한전기학회
Mobile QR Code QR CODE : The Transactions of the Korean Institute of Electrical Engineers
  • COPE
  • kcse
  • 한국과학기술단체총연합회
  • 한국학술지인용색인
  • Scopus
  • crossref
  • orcid

References

1 
D.J. Corbin, A.R. Nassar, E.W. Reutzel, A.M. Beese, N.A. Kistler, “Effect of Directed Energy Deposition Processing Parameters on Laser Deposited Inconel 718: External Morphology,” Jounal of Laser Application, vol. 29, no. 2, 2017.DOI
2 
A. Gisario, M. Kazarian, F Martina, M Mehrpouya. “Metal additive manufacturing in the commercial aviation industry : a review,” Journal of Manufacturing System, pp. 124- 149, 2019.DOI
3 
Z. Liu, B. He, T. Lyu and Y. Zou, “A Review on Additive manufacturing of Titanium Alloys for Aerospace Applications : Directed Energy Deposition and beyond Ti-6AL-4V,” Jom, Vol. 73, pp. 1804-1818, 2021.DOI
4 
B. Song, T. Yu, X. Jiang, W. Xi, X. Lin, Z. Ma, and Z, Wang, “Development of the Molten Pool and Solidification Characterization in Single Bead Multilayer Direct Energy Deposition,” Additive Manufacturing, vol. 49, 2022.DOI
5 
S. Wang, L. Zhu, Y. Dun, Z. Yang, J. Fuh, and W. Yan, “Multi-physics Modeling of Direct Energy Deposition Process of Thin-walled Structures: Defect Analysis,” Computaional Mechanics, vol. 67, pp. 1229-1242, 2021.DOI
6 
S. Liao, S. Webster, D. Huang, R. Council, K. Ehmann, and J. Cao, “Simulation-guided Variable Laser Power Design for Melt Pool Depth Control in Directed Energy Deposition,” Additive Manufacturing, vol. 56, 2022.DOI
7 
Y. Chen, X. Peng, L. Kong, G. Dong, A. Remani, and R. Leach, “Defect Inspection Technologies for Additive Manufacturing,” International Jounal of Extreme Manufacturing, vol. 3.2, 2021.DOI
8 
S. Kumar, S. Elangovan, R. Mohanraj, and J. Ramakrishna, “A Review on Properties on Inconal 625 and Inconel 718 fabricated using Direct Energy Deposition,” Materials Today: Proceedings, vol. 46, pp. 7892-7906, 2021.DOI
9 
H. Tan, C. Zhang, W. Fan, F. Zhang, X. Lin, J. Chen, and W. Huang, “Dynamic Evolution of Powder Stream Convergence with Powder Feeding Durations in Direct Energy Deposition,” International Jounal of Machine Tools and Manufacture, vol. 157, 2020.DOI
10 
Z. Liu, H. Zhang, S. Peng, H. Kim, D. Du, and W. Cong, “Analytical Modeling and Experimental Validation of Powder Stream Distribution during Direct Energy Deposition,” Additive Manufacturing, vol. 30, 2019.DOI
11 
A. Khorasani, I. Gibson, M. Asadnia, and W. Neill, “Mass Transfer and Flow in Additive Manufacturing of a Spherical Component,” The International Jounal of Advanced Manufacturing Technology, vol. 96, pp. 3711-3718, 2019.DOI
12 
Bian, Peiying, Xiaodong Shao, and Jingli Du. “Finite Element Analysis of Thermal Stress and Thermal Deformation in Typical Part during SL<,” Applied Sciences, vol. 9, no. 11, 2231, 2019.DOI
13 
M. Monu, Y. Afkhan, J. Chekotu, E. Ekoi, H. Gu, C. Teng, J. Ginn, J. Gaughran, and D. Brabazon, “Bi-directional Scan Pattern Effects on Residual Stressed and Distortion in As-built Nitinol Parts : A Trend Analysis Simulation Study,” Integrating Materials and Manufacturing Innovation, vol. 12, no. 1, pp 52-69, 2023.DOI
14 
A. S. Taha, F. H. Hammad, “Application of the Hall-Petch Relation to Microhardness Measurements on Al, Cu, Al-MD 105, and Al-Cu Alloys,” Physica status solid(a), vol. 119, no. 2, pp. 455-462, 1990.DOI
15 
P. Saxena, H. Gajera, D. shah, N. Pancholi, “Effect of SLM Process Parameters on hardness and Microstructure of Stainless Steel 316 material,” Materials Today : Proceedings, vol. 50, pp. 1653-1659, 2022.DOI
16 
M. Weng, T. Bu, Z. Dai, S. Zeng, “Characterization of Grain Size in 316L Stainless Steel using the Attenuation of Rayleigh Wave Measured by Air-coupled Transducer,” Materials, vol. 14, no. 8, vol. 1901, 2021.DOI
17 
Y. Liu, J. Li, K. Xu, T. Cheng, D. Zhao, W. Li, Q. Teng, and Q. Wei, “An Optimized Scanning Strategy to Mitigate Excessive Heat Accumulation Cause by Short Scanning Lines in Laser Powder Bed Fusion Process,” Additive Manufacturing, vol. 60, 2022.DOI