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High temperature friction response of wire-EDM'ed WC-10wt%Co cemented carbide

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Abstract
Rotating sliding experiments on WC-10wt%Co have been conducted at room and high temperature (400 °C) in dry conditions according to the ASTMG99-95a standard. The tests were carried out with a rotating sliding speed of 0.3 m/s and mean Hertzian contact pressure of 2.06 GPa. WC-6wt%Co pins were used as static counterpart. The plate specimens were surface finished by means of grinding and wire-EDM. Pins and plate specimens were analyzed by optical and electron microscopy. The experimental results demonstrated that wear and friction of WC-Co cemented carbides is influenced significantly by surface finishing condition as well as elevated temperature effect.
Keywords
pin-on-disk, wire-EDM, friction, High temperature (400 ºC), WC-10wt%.Co.

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Chicago
Perez Delgado, Yeczain, Koenraad Bonny, Patrick De Baets, Vanessa Rodriguez Fereira, Patric Daniel Neis, Olivier Malek, Jef Vleugels, and Bert Lauwers. 2011. “High Temperature Friction Response of wire-EDM’ed WC-10wt%Co Cemented Carbide.” In Synergy in the Technical Development of Agriculture and Food Industry (Synergy2011), ed. Zoltán Kurják and László Magó. Gödöllö, Hungary: Szent István University. Faculty of Mechanical Engineering.
APA
Perez Delgado, Y., Bonny, K., De Baets, P., Rodriguez Fereira, V., Neis, P. D., Malek, O., Vleugels, J., et al. (2011). High temperature friction response of wire-EDM’ed WC-10wt%Co cemented carbide. In Z. Kurják & L. Magó (Eds.), Synergy in the technical development of agriculture and food industry (Synergy2011). Presented at the 2nd International conference on Agricultural Engineering (Synergy 2011) : Synergy in the technical development of agriculture and food industry, Gödöllö, Hungary: Szent István University. Faculty of Mechanical Engineering.
Vancouver
1.
Perez Delgado Y, Bonny K, De Baets P, Rodriguez Fereira V, Neis PD, Malek O, et al. High temperature friction response of wire-EDM’ed WC-10wt%Co cemented carbide. In: Kurják Z, Magó L, editors. Synergy in the technical development of agriculture and food industry (Synergy2011). Gödöllö, Hungary: Szent István University. Faculty of Mechanical Engineering; 2011.
MLA
Perez Delgado, Yeczain, Koenraad Bonny, Patrick De Baets, et al. “High Temperature Friction Response of wire-EDM’ed WC-10wt%Co Cemented Carbide.” Synergy in the Technical Development of Agriculture and Food Industry (Synergy2011). Ed. Zoltán Kurják & László Magó. Gödöllö, Hungary: Szent István University. Faculty of Mechanical Engineering, 2011. Print.
@inproceedings{1932839,
  abstract     = {Rotating sliding experiments on WC-10wt\%Co have been conducted at room and high temperature (400 {\textdegree}C) in dry conditions according to the ASTMG99-95a standard. The tests were carried out with a rotating sliding speed of 0.3 m/s and mean Hertzian contact pressure of 2.06 GPa. WC-6wt\%Co pins were used as static counterpart. The plate specimens were surface finished by means of grinding and wire-EDM. Pins and plate specimens were analyzed by optical and electron microscopy. The experimental results demonstrated that wear and friction of WC-Co cemented carbides is influenced significantly by surface finishing condition as well as elevated temperature effect.},
  author       = {Perez Delgado, Yeczain and Bonny, Koenraad and De Baets, Patrick and Rodriguez Fereira, Vanessa and Neis, Patric Daniel and Malek, Olivier and Vleugels, Jef and Lauwers, Bert},
  booktitle    = {Synergy in the technical development of agriculture and food industry (Synergy2011)},
  editor       = {Kurj{\'a}k, Zolt{\'a}n and Mag{\'o}, L{\'a}szl{\'o}},
  isbn         = {9789632692494},
  keyword      = {pin-on-disk,wire-EDM,friction,High temperature (400 {\textordmasculine}C),WC-10wt\%.Co.},
  language     = {eng},
  location     = {G{\"o}d{\"o}ll\unmatched{0151}, Hungary},
  pages        = {5},
  publisher    = {Szent Istv{\'a}n University. Faculty of Mechanical Engineering},
  title        = {High temperature friction response of wire-EDM'ed WC-10wt\%Co cemented carbide},
  year         = {2011},
}