Reconditioning repair of steam turbine blades using additive technology
Author:
Publisher
International Association Welding
Subject
Mechanical Engineering
Reference7 articles.
1. 1. Torop, V.M., Makhnenko, O.V., Saprykina, G.Yu., Gopkalo, E.E. (2018) Results of studying the causes for cracking in titanium alloy blades of steam turbines of K-1000-60/3000 type. Tekh. Diagnost. ta Neruiniv. Kontrol, 2, 3-15. DOI: https://doi.org/10.15407/tdnk2018.02.01 [in Russian].
2. 2. Kanel, G.I., Razorenov, S.V., Fortov, V.E. (2004) Shok-Wave phenomena and the properties of condensed matter. New-York, Berlin, Heidelberg, Hong Kong, London, Milan, Paris, Tokyo: Springer. DOI: https://doi.org/10.1007/978-1-4757-4282-4
3. 3. (2004) SО 153-34.17.462-2003 Control by etching method blades of TS5 alloy after removal of erosion wear. Instruction. Moscow, Minenergo RF [in Russian].
4. 4. Bilous, V.A., Voevodin, V.M., Khoroshikh, V.M. et al. (2016) Development of experimental equipment and main technological procedures for producing cavitation-resistant coatings on working surfaces of blades of steam turbines from titanium alloy VT6 for replacement of similar imported products. Nauka ta Innovatsii, 12(4), 27-37. DOI: https://doi.org/10.15407/scin12.04.027
5. 5. Makhnenko, O.V., Milenin, A.S., Velikoivanenko, E.A. et al. (2017) Modelling of temperature fields and stress-strain state of small 3D sample in its layer-by-layer forming. The Paton Welding J., 3, 7-14. DOI: https://doi.org/10.15407/tpwj2017.03.02
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