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Tribocorrosion of a chromosiliconized layer

Autorzy
Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The paper presents the results of an experiment investigating the tribocorrosion of C45 steel samples which were chromosiliconized by the powder-pack method. The technological process was carried out at 1000oC for 6 hours. The layer was produced with the use of ferrochromium powder combined with SiC, kaolin and ammonium chloride. Analytical samples were placed in boxes containing the powder mix, and the boxes were sealed with vitreous enamel. The frictional resistance of a chromosiliconized layer was investigated under exposure to a corrosive medium of sugar slurry. Corrosion damage was examined with the use of a three-cylinder and cone wear tester. The structure of the analyzed layers was evaluated by light and scanning microscopy, X-ray diffraction and glow discharge optical emission spectroscopy (GDOES). The thickness, surface roughness and hardness of samples were determined. Chromosiliconizing of C45 steel samples extended the life of friction elements in a sugar slurry environment.
Słowa kluczowe
Rocznik
Tom
Strony
85--92
Opis fizyczny
Bibliogr. 19 poz., rys., tab.
Twórcy
autor
  • Chair of Materials and Machinery Technology, University of Warmia and Mazury in Olsztyn
autor
  • Institute of Agricultural and Food Biotechnology, Department of Sugar in Leszno
Bibliografia
  • AGARWAL S., JAIN A., LAL C., GANESAN V., JAIN I.P. 2007. Surface morphology and phase formation at Cr/Si system. Applied Surface Science, 253(10): 4721–4726.
  • BI Q., LIU W., MA J., YANG J., PU Y., XUE Q. 2009. Tribocorrosion behavior of Ni-17.5Si-29.3 Cr alloy in sulfuric acid solution. Tribology International, 42(7): 1081–1087.
  • BAUER I. 2008. The effect of microstructure on the tribocorrosive properties of chromosiliconized layers. Physico-Chemical Mechanics of Materials, 7: 293–295.
  • BUCHANAN V.E., SHIPWAY P.H., MC CARTNEY D.G. 2007. Microstructure and abrasive wear behaviour of shielded metal arc welding hardfacings used in the sugarcane industry. Wear, 263(1–6): 99–110.
  • BURSTEIN G.T., SASAKI K. 2000: Effect of impact angle on the slurry erosion-corrosion of 304L stainless steel. Wear, 240: 80–94.
  • HONCHI M, YAMAZAKI T. 2002. Chromium/silicon composite pack cementation agent and treatment using the same. Patent JP 2002129304.
  • IGNATENKO P.I., KUDELIN YU.V., GONCHAROV A.A., MUZA M.A. 1991. The influence of nitrogen content and resistive chromosilicon films thickness on their corrosion resistance. Fizyko-Chimiczeskaja Mechanika Materialov, 27(5): 102–103.
  • KASPRZYCKA E., SENATORSKI J. 2006. Structure and tribological properties of carbide layers produced in vacuum chromizing process. Tribologia, 3: 87–93.
  • MŁYNARCZAK A., PIASECKI A. 2011. Dyfuzyjne manganowanie żelaza. Inżynieria Materiałowa, 4: 597–599.
  • NAKONIECZNY A., BAUER I. 2006. Factors affecting corrosion resistance of chromium-silicon diffusion layers. Conference “Balttechmasz”, Kaliningrad (Russia), p. 420–424.
  • NISHIMOTO A., AKAMATSU K., NAKAO K., ICHNI K., IKE K. 2003. High temperature properties of chromosiliconized stainless steels. International Surface Engineering Congress-proceedings of the 1 st Congress, Colombus, p. 246–249.
  • PERTEK A., KULKA M. 2003. Microstructure and properties of composite (B+C) diffusion layers on low-carbon steel. Journal of Materials Science, 38: 269–273.
  • ROHR V., DONCHEV A., SCH7TZE M.,MILEWSKA A., PEREZ F.J. 2005. Diffusion coatings for high temperature corrosion protection of 9–12% Cr steels. Corrosion Engineering Science and Technology, 40(3): 226–232.
  • WIERZCHOŃ T., SZAWŁOWSKI J. 2010. Inżynieria powierzchni a potrzeby materiałowe przemysłu. Materiały XIII Seminarium Grupy SECO/WARWICK, Świebodzin, p. 5–15.
  • WIERZCHOŃ T., ULBIN-POKORSKA I., SIKORSKI K. 2000. Corrosion resistance of chromium nitride and oxynitride layers produced under glow discharge conditions. Surface and Coatings Technology, 130(2–3): 274–279.
  • WEI P.,WAN X.R. 2000. The effect of coating heat treatment on Cr-Si and heat treatment on mechanical properties of Cr17Ni2 stainless steel. Surface and Coating Technology, 132: 137–142.
  • ZHENG Y.G., YAO Z.M., KE W. 2000. Errosion-corrosion resistant alloy development for aggressive slurry flows. Materials Letters, 46: 362–368.
  • PN-EN ISO 6507-1:1999. Metallic materials-Vickers hardness test. Part 1: Test method.
  • PN-H-04302:1983. The strength tests of metals. The friction test in 3 rollers-cone system.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-dc07ca22-0940-4bae-bc20-bb55b46dec09
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