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Preparation of semi-solid slurry at power frequency by annulus electromagnetic stirring method

机译:环形电磁搅拌法制备工频半固态浆料

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The effect of stirring frequency on the semi-solid A357 aluminum alloy microstructure was investigated by annulus electromagnetic stirring(AEMS) method. The microstructures obtained by AEMS method and ordinary electromagnetic stirring(EMS)method were compared and analyzed. The results show that the primary α(Al)particles become more spherical and fine, and disperse uniformly in a liquid matrix with increasing stirring frequency, and higher stirring frequency is advantageous to obtain the fine spherical semi-solid microstructure by AEMS. Compared with the microstructures obtained at stirring frequency of 50 Hz in EMS, the fine spherical and uniformly distributed semi-solid microstructures can be still obtained at stirring frequency of 50 Hz in AEMS, so stirring frequency of 50 Hz is recommended in AEMS to save investment cost on frequency-conversion facilities.
机译:环形电磁搅拌(AEMS)方法研究了搅拌频率对半固体A357铝合金微观结构的影响。比较和分析了通过AEMS方法和普通电磁搅拌(EMS)方法获得的微观结构。结果表明,初级α(Al)颗粒变得更加球形和细,并且在液体基质中均匀地分散,随着搅拌频率的增加,较高的搅拌频率是有利的,可以通过AEM获得细球形半固体微观结构。与在EMS中搅拌频率的搅拌频率中获得的微观结构相比,在AEM中搅拌50Hz的搅拌频率仍然可以在50Hz的搅拌频率下获得细圆周和均匀分布的半固体微观结构,因此在AEM中建议搅拌50 Hz以节省投资频率转换设施的成本。

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