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Development of Slurry Preparation Method by Applying Mechanical Vibration

机译:机械振动制浆方法的发展

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The preparation of a semi-solid slurry with fine and spherical solid particles dispersed in the liquid phase is a key technology for the semi-solid process. In this study, we have developed the slurry preparation method by applying mechanical vibration for JIS AC4CH (equivalent to A356 in the ASTM standard) and ADC12 (equivalent to A383 in the ASTM standard) aluminum alloys. In this method, the mechanical vibration was applied to the aluminum alloys during cooling from a liquid state to semi-solid state. The shape of the particle was varied by controlling vibration conditions. Therefore, we investigated the effect of conditions on mechanical vibrations. There are four parameters which are frequency, acceleration amplitude, velocity amplitude and displacement amplitude in the mechanical vibration. Among these parameters, the velocity amplitude had highest effects on the shape of solid particles. By properly controlling of the frequency and the velocity amplitude, the slurry with fine and spherical solid particles could be obtained. Moreover, the fraction solid of slurry could be controlled by varied initial liquid temperature. Especially, ADC12 aluminum alloy has low liquid-solid coexistence temperature range, so it is not considered to be suited for the semi-solid process. However, by using this mechanical vibration method, the semi-solid slurry could be obtained stably. This method is expected to be effective for the semi-solid high-pressure die-casting process.
机译:具有分散在液相中的细小球形固体颗粒的半固体浆料的制备是半固体过程的关键技术。在这项研究中,我们通过对JIS AC4CH(相当于ASTM标准中的A356)和ADC12(相当于ASTM标准中的A383)施加机械振动,开发了浆料制备方法。在这种方法中,在从液态冷却到半固态的过程中,对铝合金施加了机械振动。通过控制振动条件来改变颗粒的形状。因此,我们研究了条件对机械振动的影响。机械振动中有四个参数,分别是频率,加速度振幅,速度振幅和位移振幅。在这些参数中,速度振幅对固体颗粒的形状影响最大。通过适当地控制频率和速度振幅,可以得到具有细的球形固体颗粒的浆料。此外,可以通过改变初始液体温度来控制浆料的固体分率。特别是ADC12铝合金的液固共存温度范围低,因此不适合用于半固态工艺。然而,通过使用这种机械振动方法,可以稳定地获得半固体浆料。预期该方法对于半固态高压压铸工艺是有效的。

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