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Evaluation of fluidity of semi-solid aluminum alloy slurry prepared by mechanical vibration

机译:机械振动制备半固体铝合金浆料的流动性评价

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The semi-solid process is viewed as an attractive near net-shape method for producing light metal products with reduced porosity and shrinkage. However, the semi-solid process has the disadvantages of poor formability by low fluidity, and a difficulty of preparation of semi-solid slurry. In this study, we have developed a new method to prepare the semi-solid aluminum alloy slurry by applying mechanical vibration. Then the fluidity of this slurry was evaluated by using high pressure die casting (HPDC) machine. Moreover, compared to the slurry made by the electromagnetic stirring method which is commonly methods to make the high quality slurry. In the result, the fluidity of slurry was increased by applying shear stress. Then the slurry made by mechanical vibration had enough fluidity. Moreover, the solid particles in the slurry, which were observed as primary a-phase, became small and fine with increasing shear stress. This result is considered the cause of decreasing viscosity of slurry and increasing fluidity. At low shear stress region, the fluidity of slurry made by applying mechanical vibration is lower than made by the electromagnetic stirring method. However, the fluidity of mechanical vibration method slurry increased to approximately equivalent to electromagnetic stirring method slurry by applying high shear stress.
机译:半固体工艺被视为具有降低孔隙率和收缩的微金属产品的近净形状方法。然而,半固体工艺具有低流动性差的缺点,并且难以制备半固体浆料。在这项研究中,我们开发了一种通过施加机械振动制备半固体铝合金浆料的新方法。然后通过使用高压压模(HPDC)机来评估该浆料的流动性。而且,与通过电磁搅拌方法制成的浆料相比,这是通常是制备高质量浆料的方法。结果,通过施加剪切应力来增加浆料的流动性。然后通过机械振动制造的浆料具有足够的流动性。此外,浆料中的固体颗粒被观察为初级A阶段,随着剪切应力的增加而变小而精细。该结果被认为是降低浆料粘度的原因和增加流动性。在低剪切应力区域,通过施加机械振动制备的浆料的流动性低于电磁搅拌方法的制造。然而,通过施加高剪切应力,机械振动方法浆料的流动性增加到电磁搅拌方法浆料大致相同。

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