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Using the Phase Field Method to Investigate Microstructural Evolution of Semi-Solid 357.0 Slurries

机译:使用相场方法研究半固态357.0浆料的微观结构演变

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Semi-solid aluminum slurries have globular grains, different from traditional dendritic solidification microstructures. The mechanism responsible for the formation of these globular grains is still in dispute. Some researchers suggest that the globular grains are formed by fractured dendrites, while others report it is due to copious nucleation. This study will model the growth of the a-Al phase during the production of semi-solid slurries using the swirled equilibrium enthalpy device (SEED) process, where liquid alloy with a low superheat is poured into a steel crucible and swirled within the semi-solid region. Experimental observations have shown that the final microstructure of the slurry produced by the SEED process is relatively non-uniform, with large dendrites at surface and fine spherical particles at the center. Open source code for the phase field method has been adopted to simulate the different microstructural evolution for semi-solid alloy 357.0. The effect of localized temperatures under isothermal condition on the morphology of the a-Al particles has been investigated according to the special conditions of the SEED process. In addition, suggestions for modifying the slurry production to achieve more uniform microstructure are discussed.
机译:半固态铝浆具有球状晶粒,与传统的树枝状凝固微结构不同。这些球状颗粒形成的机理仍存在争议。一些研究人员认为,球状晶粒是由断裂的树枝状晶体形成的,而另一些研究人员则认为,这是由于大量晶核形成的。这项研究将使用旋流平衡焓设备(SEED)工艺对半固态浆料生产过程中a-Al相的生长进行建模,其中将低过热度的液态合金倒入钢坩埚中并在半坩埚内进行旋流。实心区域。实验观察表明,通过SEED工艺生产的浆料的最终微观结构相对不均匀,表面有大的树枝状晶体,中心有细小的球形颗粒。相场方法的开源代码已被采用来模拟半固态合金357.0的不同组织演变。根据SEED工艺的特殊条件,研究了等温条件下局部温度对a-Al颗粒形态的影响。另外,讨论了改进浆料生产以实现更均匀的微观结构的建议。

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