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Semisolid microstructural evolution of AlSi7Mg alloy during partial remelting

机译:AlSi7Mg合金部分重熔过程中的半固态组织演变

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Different as-cast microstructures of an AlSi7Mg alloy were produced by controlling the solidification conditions. The as-cast grain size ranged from 1.4 mm to 160 mum and the morphology varied from dendritic to rosette-like to globular. The as-cast materials were then partially remelted and isothermally held at 580 deg C for microstructure evolution. The final microstructure depended on the initial as-cast microstructure and the isothermal holding time. After partial remelting and isothermal holding, coarse-grained dendritic structures were not able to evolve to a globular structure, while structures with medium sized dendritic grains evolved to a globular structure with a relatively large particle size after a long isothermal holding time. Fine-grained structures evolved to well-rounded globular grains within times ranging from 10 min as 5 min as the dendritic nature of the starting structure diminished. An empirical equation has been established to describe the relationship between the evolved microstructure and the as-cast microstructure.
机译:通过控制凝固条件,可以生产出AlSi7Mg合金的不同铸态组织。铸态晶粒尺寸在1.4mm至160μm之间,并且形态从树枝状到玫瑰状到球状变化。然后将铸态材料部分重熔并等温保持在580摄氏度,以发展微观结构。最终的微观结构取决于初始铸态的微观结构和等温保持时间。经过部分重熔和等温保持后,粗粒状树枝状结构不能演化为球状结构,而具有中等尺寸树突状晶粒的结构经过较长的等温保持时间后演变成具有较大粒径的球状结构。由于起始结构的树枝状性质减弱,细粒结构在10分钟至5分钟的时间内演化为圆形的球状晶粒。建立了经验方程来描述演化的微观结构和铸态微观结构之间的关系。

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