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Purpose: The aim of the work is to present the influence of casting method and anodic treatment parameters on properties, thickness and structure of an anodic layer with (PVD) physical vapour deposition method achieved TiN layer formed on aluminum casting alloys. Design/methodology/approach: Investigations were carried out on the laser profile measurement gauge MicroProf from company FRT, abrasive wear test was made with using ABR-8251 equipment delivered by TCD Teknologi ApS and microstructure investigations were made with using a light microscope equipped with an electronic camera configured with a computer on two casting aluminum alloys which both were founding by pressure die casting and gravity casting. Findings: The researches included analyze of the influence of geometry, roughness and abrasive wear resistant of anodic layer obtained on aluminum casts. The studied PVD coating deposited by cathodic arc evaporation method demonstrates high hardness, adhesion and wear resistance. Research limitations/implications: Contributes to research on anodic and PVD layer for aluminum casting alloys. Practical implications: Conducted investigations lay out the areas of later researches, especially in the direction of the possible, next optimization anodization process of aluminum casting alloys, e.g. in the range of raising resistance on corrosion. Originality/value: The range of possible applications increases staidly for example for materials used on working building constructions, elements in electronics and construction parts in air and motorization industry in the aggressive environment.
Wydawca
Rocznik
Tom
Strony
85--92
Opis fizyczny
Bibliogr. 16 poz.
Twórcy
autor
autor
autor
autor
- Division of Materials Processing Technology, Management and Computer Techniques in Materials Science, Institute of Engineering Materials and Biomaterials, Silesian University of Technology, ul. Konarskiego 18a, 44-100 Gliwice, Poland, jaroslaw.konieczny@polsl.pl
Bibliografia
- [1] A. Grabowski, B. Formanek, M. Sozańska, D. Janicki, M. Nowak, Laser remelting of Al-Fe-TiO powder composite on aluminium matrix, Journal of Achievements in Materials and Manufacturing Engineering 33/1 (2009) (in print).
- [2] M. Adamiak, Mechanical alloying for fabrication of aluminium matrix composite powders with Ti-Al intermetallics reinforcement, Journal of Achievements in Materials and Manufacturing Engineering 31/2 (2008) 191-196.
- [3] A. Grabowski, M. Nowak, J. Śleziona, Laser beam interactions with metal matrix AlSi alloy/SiCp composites, Journal of Achievements in Materials and Manufacturing Engineering 31/2 (2009) 233-240.
- [4] G. Mrówka-Nowotnik, J. Sieniawski, M. Wierzbińska, Morphology prediction of intermetallics formed in 4xxx type of aluminium alloy, Journal of Achievements in Materials and Manufacturing Engineering 27/2 (2008) 262-268.
- [5] L.A. Dobrzański, M. Krupiński, K. Labisz, Derivative thermo analysis of the near eutectic Al-Si-Cu alloy, Archives of Foundry Engineering 8/4 (2008) 37-40.
- [6] L.A. Dobrzański, M. Staszuk, M. Pawlyta, W. Kwaśny, M.Pancielejko, Characteristics of Ti(C,N) and (Ti,Zr)N gradient PVD coatings deposited onto sintered tool materials, Journal of Achievements in Materials and Manufacturing Engineering 27/2 (2008) 629-634.
- [7] L.A. Dobrzański, E. Jonda, K. Lukaszkowicz, K. Labisz, A. Klimpel, Surface modification of the X40CrMoV5-1 steel by laser alloying and PVD coatings deposition, Journal of Achievements in Materials and Manufacturing Engineering 27/2 (2008) 179-182. [8] Chunlin He, Qi Zhou, Jiangtao Liu, Xuewen Geng, Qingkui Cai, Effect of size of reinforcement on thickness of anodized coatings on SiC/Al matrix composites, Materials Letters 62 (2008) 2441-2443.
- [9] A. Belwalkar, E. Grasing, W. Van Geertruyden, Z. Huang, W.Z. Misiolek, Effect of processing parameters on pore structure and thickness of anodic aluminum oxide (AAO) tubular membranes, Journal of Membrane Science 319 (2008) 192-198.
- [10] K. Shimizu, H. Habazaki, P. Skeldon, G.E. Thompson, G.C. Wood, Role of metal ion impurities in generation of oxygen gas within anodic alumina, Electrochimica Acta 47 (2002) 1225-1228.
- [11] J. Konieczny, K. Labisz, J. Wieczorek, L.A. Dobrzański, Stereometry specification of anodization surfach of casting aluminium alloys, Journal of Achievements in Materials and Manufacturing Engineering 27/2 (2008) 143-146.
- [12] K. Bonnel, C. Le Pen, N. Péb?re, E.I.S. characterization of protective coatings on aluminium alloys, Electrochimica Acta 44 (1999) 4259-4267.
- [13] K.P. Han, J.L. Fang, Decorative-protective coatings on aluminium, Surface and Coatings Technology 88 (1996) 178-182.
- [14] A. Posmyk, Influence of material properties on the wear of composite coatings, Wear 254 (2003) 399-407.
- [15] A. Forn, J.A. Picas, M.T. Baile, E. Martin, V.G. García, Microstructure and tribological properties of anodic oxide layer formed on Al–Si alloy produced by semisolid processing, Surface and Coatings Technology 202 (2007) 1139-1143.
- [16] L.E. Fratila-Apachitei, J. Duszczyk, L. Katgerman, Voltage transients and morphology of AlSi(Cu) anodic oxide layers formed in H2SO4 at low temperature, Surface and Coatings Technology 157/1 (2002) 80-94.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BSL9-0031-0011