[1]
Turichin G, Zemlyakov E, Klimova O, Babkin K. Hydrodynamic instability in high-speed direct laser deposition for additive manufacturing. Physics Procedia. 83 (2016) 674-683.
DOI: 10.1016/j.phpro.2016.09.001
Google Scholar
[2]
Turichin GA, Somonov VV, Babkin KD, Zemlyakov EV, Klimova OG. High-Speed Direct Laser Deposition: Technology, Equipment and Materials. Equipment and Materials. 125 (2016) 501-508.
DOI: 10.1088/1757-899x/125/1/012009
Google Scholar
[3]
Turichin G, Tsibulskiy I, Kuznetsov M, Akhmetov A, Mildebrath M, Hassel T. Influence of the gap width on the geometry of the welded joint in hybrid laser-arc welding. Physics Procedia. 78 (2015) 15-23.
DOI: 10.1016/j.phpro.2015.11.013
Google Scholar
[4]
Akhmetov AD, Sklyar MO, Korsmik RS, Tsibulskiy IA. Features of the Structure Formation at Laser and Laser-Arc Deposition from Aluminum Wire. In Solid State Phenomena 284 (2018) 270-275.
DOI: 10.4028/www.scientific.net/ssp.284.270
Google Scholar
[5]
Nikulina AA, Smirnov AI, Turichin GA, Klimova-Korsmik OG, Babkin KD. Special Features of the Structure of Laser-Welded Joints of Dissimilar Alloys Based on Titanium and Aluminum. Metal Science and Heat Treatment. 59 (2017) 1-6.
DOI: 10.1007/s11041-017-0185-y
Google Scholar
[6]
Somonov VV, Böhm S, Geyer M, Bertelsbeck S. Study on the Effect of Hot Spot Generated by Induction Heating to Prevent Hot Cracking During Laser Welding of Aluminum Alloys AA6082T4 and AA5754H22. Advances in Materials Science. 13 (2014) 310-318.
DOI: 10.5963/amsa0202002
Google Scholar
[7]
Sklyar MO, Turichin GA, Klimova OG, Zotov OG, Topalov IK. Microstructure of 316L stainless steel components produced by direct laser deposition. Steel in Translation. 12 (2017) 71-75.
DOI: 10.3103/s096709121612010x
Google Scholar
[8]
Klimova-Korsmik O, Turichin G, Zemlyakov E, Babkin K, Petrovsky P, Travyanov A. Technology of High-speed Direct Laser Deposition from Ni-based Superalloys. Physics Procedia. 83 (2016) 716-722.
DOI: 10.1016/j.phpro.2016.08.073
Google Scholar