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Preparation of Semi-Solid A390 Aluminum Alloy Slurry through a Serpentine Pouring Channel

机译:蛇纹石浇注通道制备半固态A390铝合金浆料

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In order to study the possibility of refining the primary silicon grains in the microstructure of hypereutectic Al-Si alloy through a serpentine pouring channel, the semi-solid slurry of A390 aluminum alloy was prepared through a water-cooled copper serpentine pouring channel, which is a new method proposed recently for semi-solid forming process, and the effect of pouring temperature on the slurry microstructure was investigated. The results show that the slurry of A390 aluminum alloy with refined primary silicon grains can be prepared under given conditions and especially when the pouring temperatures is 690°C, the primary silicon grains can be refined obviously, the equivalent silicon grain size is 19.7μm and the average shape factor is about 0.7. The analysis shows that the chilling effect of the inner channel wall precipitates a large number of primary silicon nuclei, and so the primary silicon grains are refined greatly. Meanwhile, the subsequent alloy melt washing also promotes the separation of primary silicon grains from the inner wall and the primary silicon grains are further refined. The work undertaken demonstrates eventually that the serpentine pouring channel process is a good method for refining the primary silicon grains in hypereutectic A390 alloy rather than using chemical fining agent phosphorus as in traditional process, and provides an alternative process choice.
机译:为了研究通过蛇形浇注通道细化过共晶Al-Si合金显微组织中的原始硅晶粒的可能性,通过水冷铜蛇形浇注通道制备了A390铝合金的半固态浆料,即提出了一种新的半固态成型方法,研究了浇注温度对浆料微观结构的影响。结果表明,在一定条件下可以制备出具有细化初生硅晶粒的A390铝合金浆料,尤其是在浇铸温度为690℃时,可以明显地细化初生硅晶粒,当量硅晶粒尺寸为19.7μm。平均形状系数约为0.7。分析表明,内通道壁的冷却作用使大量的初生硅核析出,从而使初生硅晶粒大大细化。同时,随后的合金熔融洗涤也促进了初级硅晶粒从内壁的分离,并且初级硅晶粒被进一步细化。所进行的工作最终证明,蛇形浇注通道工艺是一种精炼过共晶A390合金中初生硅晶粒的好方法,而不是像传统工艺中那样使用化学澄清剂磷,并提供了替代工艺选择。

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