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An efficient method to separate silicon from high-silicon aluminum alloy melts by electromagnetic directional solidification

机译:通过电磁定向凝固从高硅铝合金熔体中分离硅的有效方法

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In electromagnetic directional solidification, the silicon phase cannot always be completely separated, resulting in considerable waste of power and silicon. This study investigated the electromagnetic separation of silicon by using electromagnetic induction-heated directional solidification furnaces at varying frequencies. Two frequencies were applied to separate silicon from aluminum-silicon melts. Numerical simulation results indicated that a low frequency (3 kHz) could substantially enhance the separation of silicon from aluminum-silicon melts under an alternating electromagnetic field, which could increase the speed of the melts to 0.92 cm/s. Experimental results showed that separation efficiency could exceed 85% at a pulling rate of 10 mu m/s when a furnace at a frequency of 3 kHz was used. This method can potentially meet the requirements of manufacturing low-cost solar cells for industrial use. (C) 2018 Published by Elsevier Ltd.
机译:在电磁定向凝固中,硅相不能总是被完全分离,从而导致相当大的功率和硅浪费。本研究使用电磁感应加热定向凝固炉以不同的频率研究了硅的电磁分离。施加了两个频率以将硅与铝硅熔体分离。数值模拟结果表明,低频(3 kHz)可以大大增强在交变电磁场下硅与铝硅熔体的分离,从而可以将熔体的速度提高到0.92 cm / s。实验结果表明,当使用频率为3 kHz的熔炉时,在10μm/ s的拉速下分离效率可以超过85%。该方法可以潜在地满足制造用于工业用途的低成本太阳能电池的要求。 (C)2018由Elsevier Ltd.发布

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