[1]
V. Rajinikanth, K. Venkateswarlu. An investigation of sliding wear behaviour of WC-Co coating, In: Tribology International 44 (2011), p.1711 – 1719.
DOI: 10.1016/j.triboint.2011.06.021
Google Scholar
[2]
GB. Stachowiak, G.W. Stachowiak. Tribological characteristics of WC-based claddings using a ball-cratering method, In: International Journal of Refractory Metals and Hard Materials 28 (2010), p.95 – 105.
DOI: 10.1016/j.ijrmhm.2009.07.015
Google Scholar
[3]
L. St-Georges. Development and characterization of composite Ni-Cr + WC laser cladding, In: Wear 263 (2007) p.562 – 566.
DOI: 10.1016/j.wear.2007.02.023
Google Scholar
[4]
D. Pantelis, H. Michaud, M. Freitas. Wear behaviour of laser surface hardfaced steels with tungsten carbide powder injection, In: Surface and Coatings Technology 57 (1993), p.123 – 131.
DOI: 10.1016/0257-8972(93)90028-m
Google Scholar
[5]
M. Šimek. Study of laser surfacing technology of additional material in powder form. In Zvárač, 2009, roč. 6, č. 3, s. 23-26.
Google Scholar
[6]
L. Schwarz, T. Vrtochová. Surfacing technology by laser beam. In Zvárač. 2009, roč. 6, č. 4, s. 23-26.
Google Scholar
[7]
M. Kotus. Determination of additional material resistance in production creating of single-layer surfaces. In Technical diagnostics of machines and production equipment. DIAGO 2010, Ostrava. VŠB - Technical University of Ostrava, 2010. s. 196-201. ISSN 1210-311X.
Google Scholar
[8]
A. Kolenič. Study of composite layer properties with globular WC. In Diploma thesis, Trnava (2012).
Google Scholar