Thermophysical and Microstructural Studies on Thermally Sprayed Tungsten Carbide-Cobalt Coatings

Author:

Thiele Sven,Sempf Kerstin,Jaenicke-Roessler Klaus,Berger Lutz-Michael,Spatzier Jörg

Publisher

Springer Science and Business Media LLC

Subject

Materials Chemistry,Surfaces, Coatings and Films,Condensed Matter Physics

Reference18 articles.

1. R. Ahmed and M. Hadfield, Mechanisms of Fatigue Failure in Thermal Spray Coatings, J. Thermal Spray Technol, 2002, 11(3), p 333-349

2. L.-M. Berger, J. Spatzier, J. Bretschneider, K. Lipp, and S. Thiele, Rolling Contact Fatigue of HVOF-Sprayed Hardmetal Coatings on Unhardened Substrates, Thermal Spray Bull., 2009, 2(2), p 133-140

3. L.-M. Berger, M. Woydt, S. Saaro, Reib-/Gleitverschleiß von thermisch gespritzten Hartmetallschichten (Sliding Wear of Thermally Sprayed Hardmetal Coatings), Jahrbuch Oberflächentechnik, R. Suchentrunk, Ed., Eugen G. Leuze Verlag, Bad Saulgau, 2007, p 242-267 (in German)

4. L.-M. Berger, Hardmetals as Thermal Spray Coatings, Powder Met., 2007, 50(3), p 205-214

5. M.E. Vinayo, F. Kassabji, J. Guyonnet, and P. Fauchais, Plasma Sprayed WC-Co Coatings: Influence of Spray Conditions (Atmospheric and Low Pressure Plasma Spraying) on the Crystal Structure, Porosity, and Hardness, J. Vac. Sci. Technol., 1985, 3A(6), p 2483-2489

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