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Tytuł artykułu

Coatings produced in aluminium bath on high-carbon alloys with additions of chromium and nickel

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Wybrane pełne teksty z tego czasopisma
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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
In this study the problem of coatings produced in liquid aluminium on high-carbon Fe-C-Cr and Fe-C-Ni alloys has been discussed. Aluminising has been carried out at temperatures of 710oC and 745oC during the time of 30 to 900 seconds. The morphology of thus produced coatings has been examined along with the chemical composition and phase constitution of individual layers. Microhardness measurements have been taken.
Rocznik
Strony
263--268
Opis fizyczny
Bibliogr. 19 poz., rys., tab.
Twórcy
autor
autor
  • AGH University of Scientic and Technology, Faculty of Foundry Engineering, ul. Reymonta 23, 30-059 Kraków, Poland
Bibliografia
  • [1] Li Yajiang, Wang Juan, Hang Yonglan, X. Holly, Fine structures in Fe3Al alloy layer of a new hot dip aluminized steel, Bull. Mater. Sci., vol. 25, No.7 (2002) 635-639.
  • [2] S. Koboyashi, T. Yakou, Control of intermetallic compound layers at interface between steel and aluminium by diffusion treatment, Materials Science and Engineering: A, v. 338, Issue 1-2, (2002) 44-53.
  • [3] N.A. El-Mahallawy, M.A. Tana, M.A. Shoeib, Analysis of reaction layer formed on steel during hot dip aluminising, Materials Science and Technology (UK), vol. 18, No. 10 (2002) 1201-1208.
  • [4] V.I. Dybkov, Interaction of 18Cr-10Ni stainless steel with liquid aluminium, Journal Mat. Sc., vol. 25, No. 8 (1990) 3615-3633.
  • [5] A. Bouayad, Ch. Gerometta, A. Belkebir, A. Ambari, Kinetic interaction between solid iron and molten aluminium, Materials Science and Engineering A 363 (2003) 53-61.
  • [6] K. Bouché, F. Barbier, A. Coulet, Intermetallic compound layer growth between solid iron and molten aluminium, Materials Science and Engineering A249 (1998) 167-175.
  • [7] J.C. Viala, M. Peronnet, F. Barbetu, F. Bosselet, J. Bouix, Interface chemistry in aluminium alloy castings reinforced with iron base inserts, Composites Part A: Applied Science and Manufacturing, vol. 33A, Issue 10 (2002) 1417- 1420.
  • [8] S. Pietrowski, T. Szymczak, The structure of hot-dip Al-Si coatings on iron alloys, Archives of Foundry vol. 4, No. 12 (2004) 299-314 (in Polish).
  • [9] S. Pietrowski, The structure of the alphinised coating on cast iron. Archives of Foundry vol. 4, No 11 (2004) 299-314 (in Polish).
  • [10] S. Pietrowski, T. Szymczak, The structure of bond between the alphinised coating and a silumin, Archives of Foundry vol. 4, No. 11 (2004) 393-404 (in Polish).
  • [11] E. Lepka, E. Tyrała, E. Bielańska, P. Zięba, Microchemistry of diffusion joint between cast iron and silumin. EMAS 2002 5-th Regional Workshop on Electron Probe Microanalysis of Materials Today - Practical Aspects, Szczyrk, Poland, book of abstract (2002) 195.
  • [12] A. Kosowski, E. Lepka, E. Tyrała, Changes in the area of diffusion joint between cast iron and Al-Si alloy in the thermally treated castings, Archives of Foundry vol. 3, No. 7 (2003) 135-141 (in Polish).
  • [13] S. Rzadkosz , E. Lepka, Layers on the nickel-copper-chromium cast iron formed in Al-Si bath, Archives of Foundry vol. 6, No. 18(1/2) (2006) 363-368 (in Polish).
  • [14] T.B. Massalski, J.L. Murray, L.H. Bennet, H. Baker (Eds.), Binary alloy phase diagrams, Vol. 1 , American Soc. For Metals, Metals Park, OH, 1986.
  • [15] L.F. Mondolfo, Aluminium alloys: Structure and Properties, Butterworths, London, 1976.
  • [16] P.Villars, A. Pronce, H. Okamoto, Handbook of ternary alloy phase diagrams, ASM International Park, OH, 1995.
  • [17] V.I. Dybkov. Interaction of iron - nickel alloys with liquid aluminium. Part II. Formation of intermetallics. Journal of Materials Science 35 (2000) 1729-1736.
  • [18] K. Bouché, F. Barbier, A. Coulet, Phase formation during dissolution of nickel in liquid aluminium, Zeitschrift Metallkd. 88 (1996) 446-451.
  • [19] K. Barmak, V.I. Dybkov, Interaction of iron-chromium alloys containing 10 and 25 mass% chromium with liquid aluminium, Journal of Materials Science 39 (2004) pp. 4219-4230.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPZ3-0032-0047
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