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Auteur Audy Jaromír
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Affiner la rechercheStudy of the effect of type (Cu, Ti and Cu, Mo) electrospark coatings on friction in pin-on-disk testing / Antoszewski Bogdan in Transactions of the ASME . Journal of tribology, Vol. 130 n°2 (Mars/Avril 2008)
[article]
in Transactions of the ASME . Journal of tribology > Vol. 130 n°2 (Mars/Avril 2008) . - 6 p.
Titre : Study of the effect of type (Cu, Ti and Cu, Mo) electrospark coatings on friction in pin-on-disk testing Type de document : texte imprimé Auteurs : Antoszewski Bogdan, Auteur ; Levi, Emil, Auteur ; Audy Jaromír, Auteur Année de publication : 2008 Article en page(s) : 6 p. Note générale : Tribology Langues : Anglais (eng) Résumé : Recent advances in the commercial exploitation of electrospark coatings have focused on improving surface roughness by depositing Ti, Mo, V, or W over an interlayer of Cu, Sn, Pb, or Cd on the top of a tool steel material. This paper presents results of a systematic pin-on-disk experimental study of different type bilayer coatings (Cu–Sn/bronze, bottom layer; Ti and Mo, top layer) deposited on a Type 45 steel. The results are discussed in terms of friction coefficients obtained under different dry-friction conditions (speeds ranging from 0.3m∕sto0.8m∕s, and pressures ranging from 10Nto40N). An additional focus is on scuffling resistance of faces in friction, microhardness and surface roughness of coated items, and the competitive advantage of using advanced surface coatings. En ligne : http://tribology.asmedigitalcollection.asme.org/article.aspx?articleid=1468005 [article] Study of the effect of type (Cu, Ti and Cu, Mo) electrospark coatings on friction in pin-on-disk testing [texte imprimé] / Antoszewski Bogdan, Auteur ; Levi, Emil, Auteur ; Audy Jaromír, Auteur . - 2008 . - 6 p.
Tribology
Langues : Anglais (eng)
in Transactions of the ASME . Journal of tribology > Vol. 130 n°2 (Mars/Avril 2008) . - 6 p.
Résumé : Recent advances in the commercial exploitation of electrospark coatings have focused on improving surface roughness by depositing Ti, Mo, V, or W over an interlayer of Cu, Sn, Pb, or Cd on the top of a tool steel material. This paper presents results of a systematic pin-on-disk experimental study of different type bilayer coatings (Cu–Sn/bronze, bottom layer; Ti and Mo, top layer) deposited on a Type 45 steel. The results are discussed in terms of friction coefficients obtained under different dry-friction conditions (speeds ranging from 0.3m∕sto0.8m∕s, and pressures ranging from 10Nto40N). An additional focus is on scuffling resistance of faces in friction, microhardness and surface roughness of coated items, and the competitive advantage of using advanced surface coatings. En ligne : http://tribology.asmedigitalcollection.asme.org/article.aspx?articleid=1468005