鋳造工学
Online ISSN : 2185-5374
Print ISSN : 1342-0429
ISSN-L : 1342-0429
研究論文
超音波振動によるAl-Si-Fe合金の凝固組織と重力偏析の制御
大澤 嘉昭高森 晋木村 隆皆川 和己
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ジャーナル フリー

2007 年 79 巻 12 号 p. 738-744

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  In the case of aluminum, for example, iron impurities form coarse columnar intermetallic compounds during solidification, which hamper the recycling process. To control the compound morphology, a series of experiments were designed to apply ultrasonic vibration during solidification. Al-Si alloy systems with different iron contents were heated to their molten state. In the alloy systems, the primary crystals formed from the liquidus temperature were intermetallic compounds identified as Al3Fe, α-AlSiFe (Al7.4SiFe2) or β-AlSiFe (Al9Si2Fe2).
  In Al-6Si-4Fe, Al-12Si-4Fe and Al-18Si-4Fe alloys, coarse plate-like intermetallic compounds appeared when solidified normally, however, distinctive fine granular structure was achieved with the application of ultrasonic vibration.
  Almost all of the iron in Al-Si-Fe alloys are crystallized as intermetallic compounds. As a result, the density of the intermetallic compound became higher and showed gravitational segregation. Thus it is possible to produce castings where the intermetallic compounds are accumulated towards the bottom by gravitational segregation.
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© 2007 公益社団法人 日本鋳造工学会
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