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首页> 外文期刊>Journal of Materials Processing Technology >Refinement of primary Si in hypereutectic Al-Si alloy by electromagnetic stirring
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Refinement of primary Si in hypereutectic Al-Si alloy by electromagnetic stirring

机译:通过电磁搅拌细化过共晶Al-Si合金中的初生Si

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摘要

The effect of electromagnetic stirring on the morphology of primary Si particles in a hypereutectic aluminum-silicon alloy was investigated in the semi-solid temperature region. It was found that with the stirring current decreasing from 32 to 16 A, the primary Si particles congregated severely, formed large primary Si particles. When the current was less than 12 A, however, the particle distribution became uniform and there was no any particle congregation. The primary Si particles reached a minimum equivalent diameter of 44.8 μm when the stirring current was 8 A. Nevertheless, when the stirring current was less than 8 A, the primary Si particles coarsened again gradually. The congregating of primary Si particles is attributed to the presence of centrifugal force field caused by electromagnetic stirring, which forced the Si particles to move in radial direction, distribute in grade and congregate. The diameter of the Si particles is decided by the cooperation of the congregation effect and refining effect of electromagnetic stirring. The present research shows that a relatively weak electromagnetic stirring is more effective in refining the primary Si particles than a strong electromagnetic stirring.
机译:研究了半固态温度区电磁搅拌对过共晶铝硅合金中初生Si颗粒形态的影响。已经发现,随着搅拌电流从32A减小到16A,初级Si颗粒严重聚集,形成大的初级Si颗粒。然而,当电流小于12A时,颗粒分布变得均匀并且没有任何颗粒聚集。当搅拌电流为8 A时,初生Si颗粒的最小等效直径为44.8μm。但是,当搅拌电流小于8 A时,初生Si颗粒又逐渐变粗。初级Si颗粒的聚集归因于电磁搅拌引起的离心力场的存在,该离心力场迫使Si颗粒沿径向移动,梯度分布和聚集。 Si粒子的直径由电磁搅拌的聚集作用和细化作用共同决定。本研究表明,相对弱的电磁搅拌比强的电磁搅拌更有效地细化初级Si颗粒。

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