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Primary crystal silicon refiner of hyper-eutectic aluminum silicon alloy

机译:过共晶铝硅合金的初晶硅精炼机

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摘要

Cu-8 mass% P (Cu-8% P) is generally used to refine the primary crystal silicon of Al- 17 mass% Si alloy. As this process takes considerable time, the molten metal is superheated compared to the melting point and surplus Cu-8% P tends to be added after a long refining time taken. The cause of this long refining time is due to the slow diffusion speed of the non-equilibrium slurry generated between the molten metal and Cu-8% P. It was found that the slurry diffuses easily into the molten metal and it is possible to shorten the refining time by up to seven minutes by adding other elements to the Cu-8% P alloy or by optimizing the particle size of the Cu-8%P alloy. In the actual process, it is also possible to refine the primary crystal silicon at low temperatures about 1023 K. We obtained the good result that the actual Cu-8% P consumed is the same as the theoretical one.
机译:Cu-8质量%P(Cu-8%P)通常用于精制Al-17质量%Si合金的一次晶体硅。由于此过程要花费大量时间,因此与熔点相比,熔融金属会过热,并且经过很长的精炼时间后,往往会添加过量的Cu-8%P。精炼时间长的原因是由于在熔融金属和Cu-8%P之间产生的非平衡浆料的扩散速度慢。发现该浆料容易扩散到熔融金属中并且可以缩短通过向Cu-8%P合金中添加其他元素或优化Cu-8%P合金的粒度,可以将精炼时间最多缩短7分钟。在实际过程中,还可以在大约1023 K的低温下细化一次晶体硅。我们获得了良好的结果,即实际消耗的Cu-8%P与理论值相同。

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