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間接擠壓鑄造工藝參數對鋁合金中Si偏析的影響

Effect of process parameters on Si segregation in an aluminum alloy during squeeze casting

  • 摘要: 研究間接擠壓鑄造工藝條件下,澆注溫度、擠壓壓力、擠壓速度、冷卻速度及參數間的交互作用對6066鋁合金中Si元素的偏析影響規律.以凝固后零件熱節位置硅的質量分數與合金初始硅的質量分數的差值定量表征偏析程度,采用考慮一級交互作用的四因素兩水平正交設計,研究間接擠壓條件下硅的偏析現象.結果發現:澆注溫度、擠壓壓力、擠壓速度和冷卻速度對硅偏析都有影響,其中澆注溫度是影響最顯著的因素.隨著澆注溫度的升高,鋁合金中Si偏析程度減小.擠壓壓力和擠壓速度對硅偏析的影響次之,但兩者的影響趨勢相反;模具冷卻能力的影響程度與擠壓壓力和擠壓速度的交互作用的影響程度相似,銅模套(高冷速)比鋼模套(低冷速)的硅偏析程度要輕.間接擠壓鑄造條件下,工件熱節位置可以出現硅的負偏析.

     

    Abstract: The effects of pouring temperature, squeeze pressure, squeeze speed and cooling type on Si segregation in 6066 alloy were studied in indirect squeeze casting. Taking the difference between the silicon content of the hot spot zone after solidification and the initial silicon content of the alloy as the segregation degree, the Si segregation was analyzed according to orthogonal design which considers two levels, four factors and partial first-class interactions. The results show that pouring temperature, squeeze pressure, squeeze speed and cooling type all have effect on the Si segregation, but pouring temperature is the most significant factor. With the increase of pouring temperature, the segregation degree of Si decreases. Squeeze pressure and squeeze speed have less influence on the Si segregation than pouring temperature, but their influence trends are opposite. The influence degree of mold cooling is similar to that of the partial first class interaction of squeeze pressure and speed. The Si segregation in a copper sleeve (high cooling speed) is lighter than that in a steel sleeve (low cooling speed). Negative Si segregation was found in the hot spot zone of indirect squeeze cast work-pieces.

     

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