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Study of Microstructure Evolution during Semi-Solid Processing of an In-Situ Al Alloy Composite

机译:原位铝合金复合材料半固态加工过程中组织演变的研究

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摘要

In the present work, effect of pouring temperature (650 degrees C, 655 degrees C, and 660 degrees C) on semi-solid microstructure evolution of in-situ magnesium silicide (Mg2Si) reinforced aluminum (Al) alloy composite has been studied. The shear force exerted by the cooling slope during gravity driven flow of the melt facilitates the formation of near spherical primary Mg2Si and primary Al grains. Shear driven melt flow along the cooling slope and grain fragmentation have been identified as the responsible mechanisms for refinement of primary Mg2Si and Al grains with improved sphericity. Results show that, while flowing down the cooling slope, morphology of primary Mg2Si and primary Al transformed gradually from coarse dendritic to mixture of near spherical particles, rosettes, and degenerated dendrites. In terms of minimum grain size and maximum sphericity, 650 degrees C has been identified as the ideal pouring temperature for the cooling slope semi-solid processing of present Al alloy composite. Formation of spheroidal grains with homogeneous distribution of reinforcing phase (Mg2Si) improves the isotropic property of the said composite, which is desirable in most of the engineering applications.
机译:在目前的工作中,已经研究了浇注温度(650摄氏度,655摄氏度和660摄氏度)对原位硅化镁(Mg2Si)增强铝(Al)合金复合材料的半固态组织演变的影响。在重力驱动的熔体流动过程中,冷却坡度施加的​​剪切力有助于形成接近球形的初生Mg2Si和初生Al晶粒。剪切驱动的熔体沿冷却坡度流动和晶粒破碎已被确定为通过改善球形度细化初生Mg2Si和Al晶粒的负责任机制。结果表明,当沿冷却坡度流动时,初生Mg2Si和初生Al的形态逐渐从粗大的树枝状转变为近球形颗粒,玫瑰形和变性树枝状的混合物。在最小晶粒尺寸和最大球形度方面,已经将650℃确定为用于本发明铝合金复合材料的冷却斜率半固态加工的理想浇铸温度。具有均匀分布的增强相(Mg 2 Si)的球形晶粒的形成改善了所述复合材料的各向同性,这在大多数工程应用中是期望的。

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