Tytuł artykułu
Autorzy
Identyfikatory
Warianty tytułu
Struktura i właściwości powłok WC1-x/C osadzonych metodą reakcyjnego rozpylania magnetronowego na podłozach ze stali szybkotnącej ASP2023 i monokrystalicznego krzemu
Konferencja
Inżynieria Powierzchni, INPO 2008 ( VII; 02-05.12.2008; Wisła-Jawornik, Polska)
Języki publikacji
Abstrakty
New type WC1-x/C coatings have been deposited onto hardened ASP2023 HSS and Si substrates by means of a reactive magnetron sputtering. After deposition the structure and properties of the coatings have been analysed with use of SEM, EDS, XRD, Raman spectrometry, nanoindentation, nanoscratching, ball-on-disk dry sliding wear of the coatings against ceramic ZrO2 ball as well as of macroscratch test. Very useful properties of coatings (good adhesion, low friction and high resistance to wear during dry sliding) can be recommended for numerous applications in the machine-building, automotive, power, aircraft and aerospace industries and in many other branches of modern industry.
Nowego rodzaju powłoki WC1-x/C osadzono na podłożach ze stali szybkotnącej ASP2023 oraz krzemowych metodą reaktywnego rozpylania magnetronowego. Po osadzeniu strukturę i właściwości powłok zbadano za pomoca takich technik, jak: SEM, EDS, XRD, spektrometria Ramana, nanoindentacja, nanoscratch, tarcie suche metodą kulka-krążek względem kulki ZrO2, jak również metodą macro-scratch. Bardzo korzystne cechy osadzonych powłok (dobra adhezja, niski współczynnik tarcia suchego i jednocześnie wysoka odporność na zużycie cierne) mogą znaleźć zastosowanie w przemyśle maszynowym, samochodowym, energetyce, lotnictwie, przemyśle kosmicznym i innych gałęziach przemysłu.
Wydawca
Czasopismo
Rocznik
Tom
Strony
640--645
Opis fizyczny
Bibliogr. 26 poz., rys., tab.
Twórcy
autor
autor
autor
autor
- Institute of Materials Engineering, Lodz University of Technology
Bibliografia
- [1] Erdemir A.: Design criteria for superlubricity in carbon films and related microstructures, Tribology International 37 (2004) 577-583.
- [2] Chang Y. Y., Wang D.-Y., Wu W. T.: Characterization of nitrogen moped a-C:H films by CAE process, Diamond & Rel. Materials 12 (2003) 2077-2082.
- [3] Chhowalla M.: Thick, well adhered, highly stressed tetrahedral amorphous carbon. Diamond & Related Materials 10 (2001) 1011-1016.
- [4] Yang S., Li X., Renevier N. M., Teer D. G.: Tribological properties and wear mechanism of sputtered C/Cr coatings, Surface & Coatings Technology 142- 144 (2001) 85-03.
- [5] Kao W. H. et al.: Optimum composition of Me–C:H coatings on drills, Mat. Science & Eng. A 398 Issue 1-2 (2005) 233-240.
- [6] Deplancke-Oglterre M. P., Monteiro O. R.: Wear behaviour of diamond-like carbon/metal carbide multilayers. Surface & Coatings Technology 108-109 (1998) 484-488.
- [7] Podgornik B., Sedlaček M., Vižintin J.: Compatibility of DLC coatings with formulated oils, Tribology International 41 (2008) 564-570.
- [8] Liu Y., Gubisch M., Haensel T., Spiess L., Schaefer J. A.: Evaluation of the friction of WC/DLC solid lubricating films in vacuum. Tribology International 39 (2006) 1584-1590.
- [9] Strondl C., Carvalho N. M., de Hosson J. Th. M., Krug T. G.: Influence of energetic ion bombardment on W-C:H coatings deposited with W and WC targets. Surface & Coatings Technology 200 1-4 Oct. 1 (2005) 1142-1146.
- [10] Clapa M., Batory D.: Improving adhesion and wear resistance of karbon coatings using Ti:C gradient layer. J. AMME 20, 1-2 Jan-Feb. (2007) 415- 418.
- [11] Fox V., Jones A., Renevier N. M., Teer D. G.: Hard lubricating coatings for cutting and forming tools and mechanical components, Surface & Coatings Technology 125 (2000) 347-353.
- [12] Voevodin A. A., Walck S. D., Zabinski J. S.: Architecture of multilayer nanocomposite coatings with super-hard diamond-like carbon layers for wear protection at high contact loads, Wear 203-204 (1997) 516-527.
- [13] Vetter J., Nevoigt A.: a-C: HMe coatings deposited by the cathodic vacuum arc deposition: properties and application potential, Surfach & Coatings Technology 120-121 (1999) 709-717.
- [14] Strondl C., van der Kolk G. J., Hurkmans T., Fleischer W., Trinh T., Carvalho N. M., de Hosson J.T.M.: Properties and characterization of multilayers of carbides and diamond-like carbon, Surface & Coatings Technology 142-144 (2001) 707-713.
- [15] Field S. K., Jarratt M., Teer D. G.: Tribological properties of graphite- like and diamond-like carbon coatings, Tribology International 37, Issue 11-12 Nov.-Dec. (2004) 949-956.
- [16] Navinšek B., Panjan P., Čekada M., Quinto D. T.: Interface characterrization of combination hard/solid lubricant coatings by specific methods. Surface & Coatings Technology 154 2-3 May 15 (2002) 194-203.
- [17] Wendler B. G.: On the Mechanism of Deposition of Thin a-C:H Films by RF Plasma Decomposition of Hydrocarbons, Vacuum 36 (1986) 107-109.
- [18] Wei Q., Sankar J., Narayan J.: Structure and properties of novel functional diamond-like carbon coatings produced by laser ablation. Surface & Coatings Technology 146-147 (2001) 250-257.
- [19] Meerkamm H., Fruth W., Krumpiegl T., Schaufler C.: Mechanical and tribological properties of PVD and PACVD wear resistant coatings, Int. J. Refractory Metals & Hard Materials 17 (1999) 201- 208.
- [20] Scheibe H.-J., Schultrich B., Drescher D.: Laser-induced vacuum arc. Surface & Coatings Technology 74-75 (1995) 813-818.
- [21] Derflinger V., Brändle H., Zimmerman H.: New hard lubricating coating for dry machining, Surface & Coatings Technology 113 (1999) 286-292.
- [22] Miyoshi K., Pohlchuck B., Street K. W., Zabinski J. S., Sanders J. S., Voevodin A. A., Wu R. L. C.: Sliding wear and fretting of diamondlike carbon-based, functionally graded nanocomposite coatings, Wear 225-229 (1999) 65-73.
- [23] Wendler B. G., Pawlak W.: Low friction and wear resistant coa- ting systems on Ti6Al4V alloy, J. of Achievements in Materials and Manufacturing Engineering 26 2 February (2008) 207-210.
- [24] Wendler B. G., Danielewski M., Przybylski K., Kaczmarek Ł., Jachowicz M.: New type AlMo-, TiAl or Si-based magnetron sputtered protective coatings on metallic substrates, J. Materials Processing Technology 175 (2006) 427-432.
- [25] Łukaszkowicz K., Dobrzański L. A., Staszuk M., Pancielejko M.: Comparison of the PVD gradient coatings deposited onto X40CrMoV5-1 and HS6-5-2 tool steel substrate, J. Achievements In Materials & Manufacturing Engineering 27 1 March (2008) 79-82.
- [26] Zhang S., Bui X. L., Fu Y.: Magnetron sputtered hard a-C coatings of very high toughness, Surface and coatings technology 167 2-3 April 22 (2003).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPL8-0008-0025
JavaScript jest wyłączony w Twojej przeglądarce internetowej. Włącz go, a następnie odśwież stronę, aby móc w pełni z niej korzystać.