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Roll casting of 5182 aluminium alloy

Wybrane pełne teksty z tego czasopisma
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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Purpose: of this paper is investigation of the ability of the high speed roll casting of 5182 aluminium alloy. Appropriate twin roll caster to cast the 5182 strip was researched. Design/methodology/approach: Method used in the present study was an unequal diameter twin roll caster and a vertical type high speed twin roll caster equipped with mild steel rolls without parting material. Findings: are that the vertical type high speed twin roll caster was effective to cast 5182 strip at high speed. 5182 could be cast at 10 times higher speed than a conventional twin roll caster for aluminium alloy. 5182 could be cast by the mild steel roll using no-parting material without sticking. Research limitations/implications: is that ability of casting of the wide strip, that is wider than 600 mm, could not be investigated. Practical implications: 600 mm-width 5182 strip could be cast and this width is enough for some structural parts. 5182 could be cast into the strip at high productivity and low energy using the economy equipment and no-consumable good. Originality/value: The method to make economy sheet metal of aluminium alloy is imported. The economy alloy and economy process are essential to get economy aluminium alloy sheet.
Rocznik
Strony
172--179
Opis fizyczny
Bibliogr. 20 poz., rys., tabl.
Twórcy
autor
autor
autor
autor
autor
autor
autor
  • Osaka Institute of Technology, 5-16-1 Omiya Asahiku Osaka City, 535-8585 Japan, haga@med.oit.ac.jp
Bibliografia
  • [1] T. Haga, H. Watari, S. Kumai, High speed twin roll casting of Mg alloy strip by a vertical type twin roll caster, Journal of Achievements in Materials and Manufacturing Engineering 15 (2006) 186-192.
  • [2] T. Haga, M. Ikawa, H. Watari, S. Kumai, High speed twin roll casting of Al-3Si-0.6Mg strip, Journal of Achievements in Materials and Manufacturing Engineering 17 (2006) 337-340.
  • [3] T. Haga, M. Ikawa, H. Watari, S. Kumai, High speed twin roll casting of 6016 strip, Journal of Achievements in Materials and Manufacturing Engineering 18 (2006) 371-374.
  • [4] T. Haga, M. Ikawa, H. Watari, S. Kumai, High speed twin roll casting of recycled Al-3Si-0.6Mg strip, Journal of Achievements in Materials and Manufacturing Engineering 19/1 (2007) 7-12.
  • [5] T. Haga, K. Hirooka, H. Watari, S. Kumai, Grooved roll for a high speed twin roll caster, Archives of Materials Science and Engineering 30/2 (2008) 117-120.
  • [6] T. Haga, H. Inui, H. Watari, S. Kumai, Casting of aluminum alloy strip using an unequal diameter twin roll caster, Archives of Materials Science and Engineering 29/2 (2008) 113-116.
  • [7] R. Cook, P. G. Groock, P. M. Thomas, D. V. Edmonds, J. D. Hunt, Development of the twin-roll casting process, Journal of Materials Processing Technology 55 (1995) 76-84.
  • [8] M. Cortes, Pechiney-Junmbo 3CM, The new demands of thin strip casting, Light Metals (1995) 1161-1164.
  • [9] B. Taraglio, C. Romanowski, Thin-gage/high-speed roll casting technology for foil production, Light Metals (1995) 1165-1182.
  • [10] A. I. Nussbaum, Three-state-of-the-art Thin –gage high-speed roll caster for aluminum alloy sheet products Part β, Light Metals Age 55 (1997) 34-39.
  • [11] O. Daaland, A. B. Espedal, M. L. Nedreberg, I. Alvestad, Thin gage twin-roll casting, process capabilities and product quality, Light Metals (1997) 745-752.
  • [12] P. Y. Menet, R. Cayol, J. Moriceau, Pechiney Jumbo 3CM, ‘TM’ start-up of the Neu-Brisach thin strip caster, Light Metals (1997) 753-756.
  • [13] P. M. Thomas, P. G. Grocock, J. M. Bouzendorffer, Dynamic strip caster-An update on the operation of the roll caster at Eurofoil, Metal Plant Technology International 20 (1997) 44-52.
  • [14] S. Hamers, D. Smith, C. Romanowski, G. Yildizbayrak, B. Taraglio, Twin roll casting of aluminum at 2.5mm gauge. Production experience and process improvement, Light Metals (1999) 931-937.
  • [15] J. Benedyk, Thin strip casting for aluminum alloy sheet applications developed by Pechiney at Neuf-Brisach, Light Metals Age 59 (2001) 28-30.
  • [16] S. Hamer, C. Romanowski, B. Taraglio, Continuous casting and rolling of aluminum: Analysis of capacities, products ranges and technology, Light Metals Age 60 (2002) 6-17.
  • [17] M. Duendar, O. E. Keles, B. Kerti, N. Dogan, Crystallographic texture development of twin-roll cast aluminum strips, Light Metals (2004) 723-724.
  • [18] Ch. Gras, M. Meredith, J. D. Hund, Microdefects for mation during the roll casting of Al-Mg-Mn aluminum alloys, Journal of Materials Processing Technology 167 (2005) 62-72.
  • [19] N. Toyama, H. Aho, H. Arai, H. Yoshimura, Direct casting of stainless sheet by unequal-diametered twi roll method, Tetsu-to-Hagane 71 (1986) A245-A248.
  • [20] D. B. Love, J. D. Nauman, Controlling the physical and mechanical properties of cast stainless steel band, Proceedings of the TMS International Symposium “Casting of Near Net Shape Products”, 1988, 597-611.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BOS2-0020-0051
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