Inscriere cercetatori

Premii Ad Astra

premii Ad Astra

Asociația Ad Astra a anunțat câștigătorii Premiilor Ad Astra 2022: http://premii.ad-astra.ro/. Proiectul și-a propus identificarea și popularizarea modelelor de succes, a rezultatelor excepționale ale cercetătorilor români din țară și din afara ei.

Asociatia Ad Astra a cercetatorilor romani lanseaza BAZA DE DATE A CERCETATORILOR ROMANI DIN DIASPORA. Scopul acestei baze de date este aceea de a stimula colaborarea dintre cercetatorii romani de peste hotare dar si cu cercetatorii din Romania. Cercetatorii care doresc sa fie nominalizati in aceasta baza de date sunt rugati sa trimita un email la cristian.presura@gmail.com

Friction and wear behaviours of Ti(C,O,N) dark decorative coatings

Domenii publicaţii > Stiinte ingineresti + Tipuri publicaţii > Articol în revistã ştiinţificã

Autori: D. Munteanu, C. Gabor, D.G. Constantin, B. Varga, R. Adochite, O.C. Andrei, J.M. Chappe, L. Cunha, C. Moura, F. Vaz

Editorial: Philippa Cann, Imperial College London UK, Elsevier, Tribology International, Vol.44, p.820-828, 2011.

Rezumat:

Reactive magnetron sputtering was used to obtain dark Ti(C,O,N) decorative coatings onto high speed steel. From a crystallographic point of view, depending by the amount of (N+O) mixture, the obtained films could be divided in two major regions: the first one with a predominant fcc crystallographic structure (for low amounts of (N+O)), and the second one containing films with amorphous structures. The best results for friction coefficient and wear rates (the minimum values) were registered for samples prepared in the beginning of the amorphous region. These two tribological parameters are mainly influenced by the carbon content in the films. Taking into account the practical goal of these kinds of films, the pure black films were obtained for higher amount of (N+O) mixture. Also for these amorphous darkest films reached in oxygen and nitrogen, the tribological properties are acceptable and the adherence reaches the maximum value.

Cuvinte cheie: Decorative coating, Composition, Friction, Wear

URL: http://www.sciencedirect.com/science/journal/0301679X