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Examples of material solutions in bimetallic layered castings

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Języki publikacji
EN
Abstrakty
EN
In paper is presented technology of bimetallic layered castings based on founding method of layer coating directly in cast process so-called method of mould cavity preparation. Prepared castings consist two fundamental parts i.e. bearing part and working part (layer). The bearing part of bimetallic layered casting is typical foundry material i.e. pearlitic grey cast iron, whereas working part (layer) is depending on accepted variant plates of alloy steels sort X6Cr13, X12Cr13, X10CrNi18-8 and X2CrNiMoN22-5-3. The ratio of thickness between bearing and working part is 8:1. The verification of the bimetallic layered castings was evaluated on the basis of ultrasonic NDT (non-destructive testing), structure and macro- and microhardness researches.
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11--16
Opis fizyczny
Bibliogr. 17 poz., rys., wykr.
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autor
autor
Bibliografia
  • [1] J. Marcinkowska, B. Kusznir: Cast coatings on machine elements, Proceedings Materiale of Scientific Conference "Cast Form of Machine Elements", Olsztyn (1979), 1-11 (in Polish).
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  • [4] D. Bartocha, J. Suchoń, S. Jura: Layer castings, Solidification of Metals and Alloys, 38 (1998), 151-156 (in Polish).
  • [5] M. Cholewa, S. Tenerowicz, T. Wróbel: Quality of the joint between cast steel and cast iron in bimetallic castings, Archives of Foundry Engineering, 3 (2008), 37-40.
  • [6] A. Klimpel: Surfacing and thermal spraying. Technologies, WNT, Warsaw (2000) (in Polish).
  • [7] A. Klimpel, L. A. Dobrzański, A. Lisiecki, D. Janicki: The study of the technology of laser and plasma surfacing of engine valves face made of X40CrSiMo10-2 steel using cobalt-based powders, Journal of Materials Processing Technology, 175 (2006), 251-256.
  • [8] W. Xibao, W. Xiaofeng, S. Zhongquan: The composite Fe-Ti-B-C coatings by PTA powder surfacing process, Surface and Coatings Technology, 192 (2005), 257-262.
  • [9] J. Szajnar, P. Wróbel, T. Wróbel: Investigation of thermal processes during test operation of ingot mould with composite surface layer, Archives of Foundry Engineering, Special Issue 3 (2008), 163-166.
  • [10] J. Viala, M. Peronnet, F. Barbeau, F. Bosselet, J. Bouix: Interface chemistry in aluminium alloy castings reinforced with iron base inserts, Composites: Part A, 33 (2002), 1417-1420.
  • [11] S. Pietrowski, T. Szymczak: Model of the alphinising coating crystallization on iron alloys, Archives of Foundry Engineering, 3 (2007), 123-128.
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  • [13] J. Szajnar, M. Cholewa, S. Tenerowicz, T. Wróbel: Enrichment of surface of low-alloyed cast iron with use of austenite layer, Archives of Foundry Engineering, 1 (2010), 187-190.
  • [14] M. Cholewa, T. Wróbel, S. Tenerowicz: Bimetallic layer castings, Journal of Achievements in Materials and Manufacturing Engineering, 43/1 (2010), 385-392.
  • [15] K. Sękowski, J. Piaskowski, Z. Wojtowicz: Atlas of structures of founding alloys, WNT, Warszawa 1972, (in Polish).
  • [16] J. Taler., P. Duda: Solving direct and inverse heat conduction problems, Springer-Verlag, Berlin (2006).
  • [17] J. Adamczyk: Engineering of metallic materials, Publishers of Silesian University of Technology, Gliwice 2004, (in Polish).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPZ7-0003-0002
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