Author:
Trushnikov D. N.,Simonov M. Yu.,Shchitsyn Yu.D.,Krivonosova E. A.,Permyakov G. L.,Neulybin S. D.,Shaimanov G. S.,Kartashev M. F.,Artemov A. O.
Publisher
Springer Science and Business Media LLC
Subject
Materials Chemistry,Metals and Alloys,Mechanics of Materials,Condensed Matter Physics
Reference25 articles.
1. B. Wu, Z. Pan, D. Ding, D. Cuiuri, H. Li, J. Xu, and J. Norrish, “A review of the wire arc additive manufacturing of metals: properties, defects and quality improvement,” J. of Manufacturing Processes, 35, 127–139 (2018).
2. I. Tabernero, A. Paskual, P. Alvarez, and A. Suarez, “Study on arc Welding processes for High Deposition Rate Additive Manufacturing,” 19th CIRP Conf. on Electro Physical and Chemical Machining (Bilbao, Spain. 23–27 April 2018), 68, 358–362 (2018).
3. H. Lockett, J. Ding, S. Williams, and F. Martina, “Design for Wire + Arc Additive Manufacture: design rules and build orientation selection,” J. of Engineering Design, 28(7/9), 568–598 (2017).
4. S. S. Zhatkin, K. V. Nikitin, V. B. Deev, S. S. Pankratov, and D. A. Dunaev, “Application of electric arc deposition for creating 3D steel units,” Izv. Vuzov. Chernaya Metallurgiya, 63, No. 6, 443–450 (2020).
5. Yu. Shchitsyn, M. Kartashev, E. Krivonosova, T. Olshanskaya, and D. Trushnikov, “Formation of structure and properties of the two-phase Ti–6Al–4V alloy during CMT additive deposition with interpass forging,” Materials, 14, Issue 16 (2021); https://doi.org/10.3390/ma14164415.