Abrasive and fretting wear resistance of refractory cobalt alloy specimens manufactured by the method of selective laser melting

Author:

Tarasova T. V.,Nazarov A. P.,Shalapko Yu. I.

Publisher

Allerton Press

Subject

Surfaces, Coatings and Films,Mechanics of Materials

Reference17 articles.

1. Shishkovskii, I.V., Lazernyi sintez funktsional’no-gradientnykh mezostruktur i ob“emnykh izdelii (Laser Synthesis of Functionally-Gradient Mesostructures and Bulk Articles), Moscow: Fizmatlit, 2009.

2. Gibson, I., Rosen, D.W., and Stucker, B., Additive Manufacturing Technologies: Rapid Prototyping to Direct Digital Manufacturing, New York: Springer-Verlag, 2009.

3. Yadroitsev, I., Bertrand, P., Antonenkova, G., Grigoriev, S., and Smurov, I., Use of track/layer morphology to develop functional parts by selective laser melting, J. Laser Appl., 2013, vol. 25, Article Number: UNSP 052003.

4. Fominski, V.Y., Grigoriev, S.N., Romanov, R.I., Zuev, V.V., and Grigoriev, V.V., Properties of tungsten oxide thin films formed by ion-plasma and laser deposition methods for MoSiC-based hydrogen sensors, Semiconductors, 2012, vol. 46, pp. 401–409.

5. Tarasova, T.V. and Shalapko, Yu.I., Processes of dynamics of surface layers during low-amplitude fretting, J. Friction Wear, 2013, vol. 34, pp. 166–174.

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