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  • In this work, the authors have used an unconventional experimental route that consists of (i) deposition of a nickel coating onto an aluminium substrate and (ii) the subsequent heat treatment of created couple in order to produce intermetallic-layered structures, hypereutectic or bulk aluminide intermetallic alloys. The procedure was conducted by controlling chemical concentrations in the Al-rich corner of Al–Ni binary system. The couple was prepared by high velocity oxyfuel spraying of 99.0 wt.% Ni powder onto the surface of 99.999 wt.% Al sheet. The specimens for heat treatment were manufactured immediately after the spraying. The heat treatment was carried out in a differential thermal analysis apparatus by using the temperature range of 600–1200 C, thus considering the solid state, transient liquid aswell as liquid phase of aluminium,with a constant heating/cooling rate of 5 C/min in an argon atmosphere. Microstructural development of produced alloys was studied by conventional metallography a
  • In this work, the authors have used an unconventional experimental route that consists of (i) deposition of a nickel coating onto an aluminium substrate and (ii) the subsequent heat treatment of created couple in order to produce intermetallic-layered structures, hypereutectic or bulk aluminide intermetallic alloys. The procedure was conducted by controlling chemical concentrations in the Al-rich corner of Al–Ni binary system. The couple was prepared by high velocity oxyfuel spraying of 99.0 wt.% Ni powder onto the surface of 99.999 wt.% Al sheet. The specimens for heat treatment were manufactured immediately after the spraying. The heat treatment was carried out in a differential thermal analysis apparatus by using the temperature range of 600–1200 C, thus considering the solid state, transient liquid aswell as liquid phase of aluminium,with a constant heating/cooling rate of 5 C/min in an argon atmosphere. Microstructural development of produced alloys was studied by conventional metallography a (en)
Title
  • Temperature effect on the microstructural development of Al–Ni layered binary couples produced by an unconventional method
  • Temperature effect on the microstructural development of Al–Ni layered binary couples produced by an unconventional method (en)
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  • Temperature effect on the microstructural development of Al–Ni layered binary couples produced by an unconventional method
  • Temperature effect on the microstructural development of Al–Ni layered binary couples produced by an unconventional method (en)
skos:notation
  • RIV/00216305:26620/14:PU110918!RIV15-MSM-26620___
http://linked.open...avai/riv/aktivita
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  • P(ED1.1.00/02.0068), P(GPP107/12/P739), V
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  • 1
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  • 49732
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  • RIV/00216305:26620/14:PU110918
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  • Aluminium, Aluminide miscellaneous, Thermal spraying, Calorimetry, Scanning electron microscopy (en)
http://linked.open.../riv/klicoveSlovo
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  • CZ - Česká republika
http://linked.open...ontrolniKodProRIV
  • [7558A45EF8CD]
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  • Surface and Coatings Technology
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  • 258
http://linked.open...iv/tvurceVysledku
  • Kaiser, Jozef
  • Klakurková, Lenka
  • Slámečka, Karel
  • Smetana, Bedřich
  • Čelko, Ladislav
  • Švejcar, Jiří
  • Žaludová, Monika
  • Díaz de la Torre, Sebastian
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  • 0257-8972
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  • 26620
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