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Properties of Fe73Ni5Y3B19 amorphous ribbon produced by melt-spinning

Wybrane pełne teksty z tego czasopisma
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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Purpose: The purpose of the study is to examine the mechanical properties of Fe73Ni5Y3B19, alloy and to carry out the comparative examination of matt and glossy sides of those alloys. Design/methodology/approach: The Fe73Ni5Y3B19, alloy have been produced by the melt-spinning method which involves rapid cooling of the metal on a spinning copper cylinder. The cooling rate has required for obtaining the amorphous alloy ranges from 10 5 to 106 K/s. The above-mentioned method is popular and often used; however, in order to obtain alloys of amorphous structure, it should be assured that the conditions for obtaining amorphous materials, as set by A. Inoe, are satisfied. Findings: Mechanical properties, such as microhardness, roughness, abrasive wear with the use of a ball tester, have been described and the X-ray diffraction has been determined in the paper. Research limitations/implications: Analyzed modernization of the machine refers to pin on disc, disc-disc, block and disc unit sliding friction processes. Practical implications:The Fe73Ni5Y3B19 amorphous alloys find the application in the power industry, where they are used for transformer cores.
Rocznik
Strony
381--387
Opis fizyczny
Bibliogr. 16 poz., rys., tab.
Twórcy
  • Institute of Materials Engineering, Faculty of Production Engineering and Materials Technology, Czestochowa University of Technology
autor
  • Institute of Materials Engineering, Faculty of Production Engineering and Materials Technology, Czestochowa University of Technology
autor
  • Institute of Materials Engineering, Faculty of Production Engineering and Materials Technology, Czestochowa University of Technology
autor
  • Institute of Physics, Faculty of Production Engineering and Materials Technology, Czestochowa University of Technology
Bibliografia
  • [1] K. Zdrodowska, P. Kwarciak, J. Jędryka, M. Szota, M. Nabiałek, Materials Engineering 4 (2013) 401-404.
  • [2] A. Baron, D. Szweiczek, G. Nawrat, Corrosion of amorphous and nanocrystalline Fe-based alloys and its influence on their magnetic behavior, Electrochimica Acta 52 (2007) 5690-5695.
  • [3] Żak, W. Burian, A rig for casting massive amorphous alloys, IMŻ 4 (2010) 35-40.
  • [4] J. Zbroszczyk, Amorphous and nanocrystalline iron alloys Publishing House University of Czestochowa, vol. 134 Czestochowa, 2007.
  • [5] Inoue, Bulk amorphous alloys, Preparation and fundamental characteristic, Materials Science Foundation’s 6 (1998).
  • [6] Inoue, Bulk amorphaus alloys with soft and hard magnetic properties, Materials Science and Engineering A 226-228 (1997) 357-363.
  • [7] D. Szewiczek, J. Tyrlik-Held, S. Lesz, Changes of mechanical properties and fracture morphology of amorphous tapes involved by heat treatment, Journal of Materials Processing Technology 109 (2001) 190-195.
  • [8] D. Pavuna, Production of metallic glass ribbons by the chill-block meltspinning technique in stabilized laboratory conditions. Journal of Materials Science 16 (9) (1981) 2419-2433.
  • [9] http://www.strefamobile.pl/aktualnosci/1977/iphone-6-z-obu dowa-liquidmetal.
  • [10] http://luxluxlux.pl/2011/09/18/magia-golfa-czyli-gra-wszech czasow/.
  • [11] http://www.stomatologiagrzesiak.pl/oferta/implanty.
  • [12] H.S. Lesz, R. Babilas, M. Nabiałek, Szota, M. Dośpiał, R. Nowosielski, The characterization of structure, thermal stability and magnetic properties of Fe-Co-B-Si-Nb bulk amorphous and nanocrystalline alloys, Amorphous and Nanostructured Materials (2011) 197-201.
  • [13] M. Nabiałek, M. Dośpiał, M. Szota, P. Pietrusiewicz, S. Walters, D. Skowron, Investigation of magnetic properties of Fe61Co8Zr4-xY2+xNi5Nb5B15amorphous alloys (x = 0, 1) in the form of ribbons. Materials Science and Engineering B 2012 MSB-13231.
  • [14] S. Lesz, R. Babilas, M. Nabiałek, M. Szota, M. Dośpiał, R. Nowosielski, The characterization of structure, thermal stability and magnetic properties of Fe-Co-B-Si-Nb bulk amorphous and nanocrystalline alloys, Journal of Alloys and Compounds 509S (2011) 197-S201
  • [15] R. Nowosielski, J.J. Wys􀃡ocki, I. Wnuk, R. Gramatyka,: Nanocrystalline soft magnetic composite cores, Journal of Materials Processing Technology 175 (2006) 324-329.
  • [16] S.W. Du, R.V. Ramanujan, Crystallization and magnetic properties of Fe40Ni38B18Mo4 amorphous alloy, Journal of Non-Crystalline Solids 351 (2005) 3105-3113.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-5dda8495-d48b-4a7e-872f-2244666be053
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