Phase and Structural Transformations in Heat Resistant Alloys during Direct Laser Deposition
Author:
Affiliation:
1. Gottfried Wilhelm Leibniz University of Hannover
2. St. Petersburg State Marine Technical University
3. Central Institute Aviation Motors
Abstract
Publisher
Trans Tech Publications, Ltd.
Subject
Mechanical Engineering,Mechanics of Materials,General Materials Science
Link
https://www.scientific.net/KEM.822.389.pdf
Reference13 articles.
1. O.I. Grinin, E.A. Valdaytseva, I.T. Lasota, Y.B. Pevzner, V.V. Somonov, Technology of Selective Laser Melting Formation of Heterogeneous Powder Structures, Key Engineering Materials. (2017).
2. V.S. Sufiiarov, A.A. Popovich, E.V. Borisov, I.A. Polozov, Layer thickness influence on the Inconel 718 alloy microstructure and properties under selective laser melting, Tsvetnye Metally. (2016).
3. R.S. Korsmik, G.A. Turichin, O.G. Klimova-Korsmik, E.V. Alekseeva, R.S. Novikov, Development of laser powder cladding technology for restoration of heat-resistant nickel alloys turbine blades, Journal of Physics. 1109 (2018) 12-23.
4. L. Pang et al., Direct laser fabrication of nickel alloy samples, International Journal of Machine Tools & Manufacture. (2005) 1288-1294.
5. R.S. Korsmik, G.A. Turichin, O.G. Klimova-Korsmik, E.V. Alekseeva, R.S. Novikov, Development of laser powder cladding technology for restoration of heat-resistant nickel alloys turbine blades, Journal of Physics. 1109 (2018).
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