• Title/Summary/Keyword: Al molten metal

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Optimal Control of Chill layers through Regulation of Temperature on Shot Sleeve in Aluminum High Pressure Diecasting (Al고압주조공법에서 사출슬리브 온도 조절을 통한 Chill layer의 최적 제어)

  • Park, Jin-Young;Kim, Eok-Soo;Park, Yong-Ho;Park, Ik-Min
    • Korean Journal of Materials Research
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    • v.16 no.11
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    • pp.698-704
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    • 2006
  • In this study, the effect of chill layers occurred in shot sleeve on the molten metal filling was analyzed through computer simulation. The behavior of chill layers with temperature variation of shot sleeve set from 200 to $280^{\circ}C$ was also investigated. The simulation results showed the chill layers set in the in-gates during the injection process change the main filling direction and cause turbulent flow pattern, resulting in porosities inside the castings. The amount of chill layers with the increasing temperature of shot sleeve was considerably reduced. Particularly, at the setting temperature of $280^{\circ}C$ by heat control unit, the biggest reduction in chill layers, excellent trimmed surface and the highest density were achieved, suggesting that as the optimal sleeve condition in aluminum high pressure diecasting, especially for highly complex parts like valve body.

A Study of Recycling Process to Recovery Valuable Resources from Aluminum Black Dross (알루미늄 블랙드로스로부터 유가자원 회수를 위한 재활용 공정 연구)

  • Kang, Yubin;Im, Byoungyong;Kim, Dae-Guen;Lee, Chan Gi;Ahn, Byung-Doo;Kim, Yong Hwan;Lee, Man Seung
    • Resources Recycling
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    • v.27 no.5
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    • pp.61-68
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    • 2018
  • The aluminum dross is oxide generated on the surface of the molten metal during the aluminum melting process and it is divided into white dross and black dross according to presence of the Salt flux. White dross has high metal content and is recycled via the melting process. Black dross is largely berried, because the it has a low metal content and difficulty in separating the components. Black dross contains a salt components such as NaCl and KCl, and inorganic materials such as $Al_2O_3$ and MgO, and it is necessary to study the technology to recover and recycle such valuable resources. In this study, a process for recycling aluminum black dross was proposed. The inorganic and soluble substances present in the black dross were separated through crushing-dissolution-solid/liquid separation-decompression evaporating. By controlling the ratio of water and black dross, the recovery condition of the separated product was optimized and we confirmed the highest Salt flux recovery efficiency 91 wt.% at black dross:water ratio 1:9. Finally, Through the synthesis of zeolite using recovered ceramic material, the materialization possibility of black dross was confirmed.