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2017 №10 (07) DOI of Article
10.15407/as2017.10.08
2017 №10 (01)

Automatic Welding 2017 #10
Avtomaticheskaya Svarka (Automatic Welding), #10, 2017, pp. 62-63
 
Flux-cored wires for wear- and heat-resistant surfacing and spraying


 
 
Authors
Yu.S. Korobov1, V.I. Shumyakov1, M.A. Filippov1, O.V. Pimenova1, A.N. Balin2 and A.A. Vishnevsky2
1Ural Federal University 19 Mir Str., 620002, Ekaterinburg, Russia. Е-mail: yukorobov@gmail.com
2JSC «Plant of welding materials» 18 Zapadnaya promzona, Berezovsky, Sverdlovsk region, Russia
 
Abstract
The results of development and industrial implementation of economically alloyed flux-cored wires are presented, differed by the fact, that the deposited metal and coatings produced with their use, are characterized by resistance to wear and gas corrosion. 4 Ref., 1 Figure.
Keywords: arc welding, surfacing, flux-cored wires, wear resistance, heat resistance
 
 
 
Received:                18.09.17
Published:               13.11.17
 
 
References
  1. Korobov, Yu.S., Filippov, M.A., Shumyakov, V.I. et al. (2013) Metastable chrome austenite as a structural factor for improvement of wear resistance of deposited metal and sprayed coatings. Ed. by S.S. Chernyak. In: Metal and metallurgy experts. Irkutsk, IGUPS, 40–46 [in Russian].
  2. Kulishenko, B.A., Balin, A.N., Filippov, M.A. (2004) Electrodes for wear-resistant surfacing of parts subjected to abrasive and shock-abrasive impact. Proizvodstvo, 11, 28–32 [in Russian].
  3. Korobov, Yu.S., Shumyakov, V.I., Filippov, M.A. (2016) Development of iron-based flux-cored wires for producing of wear- and temperature-resistant thermal coatings. In: Current problems of welding production: Transact. Ed. by M.A. Ivanova, I.A. Iliina. Chelyabinsk, YuUrGU, 284–289 [in Russian].
  4. Korobov, Yu., Nevezhin, S., Filippov, M. et al. (2016) Study of high velocity arc sprayed heat resistant coatings from FeCrAlBY cored wire. Thermal spray. Fostering a sustainable world for a better life. In: of the Int. Thermal Spray Conf. and Exposition ITSC 2016 (10–13 May, 2016, Shanghai, China), 852–856.

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