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Application of Radial Forging and Remelting Treatment to Prepare Semi-Solid Billet of AIMg0.7Si Alloy

机译:径向锻造和重熔处理在制备AIMg0.7Si合金半固态坯料中的应用

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Semi-solid AlMg0.7Si alloy was prepared by recrystallization and partial melting (RAP) method which including radial forging (RF) and remelting process. RF was carried out with different area reduction ratios (ARRs) to accumulate strains, effect of ARR and remelting time on microstructure was studied, mechanism of RAP preparing semi-solid AlMg0.7Si alloy was summarized. Results show that, compared with the large and irregular solid grains form remelting of starting material, solid grains of semi-solid alloy prepared by RAP are fine and globular, and the optimum microstructure can be obtained when alloy with 80% ARR is remelted at 630 °C for 10 min. With the increase of ARR, the solid grains are smaller and rounder. With the increase of remelting time, the average grain size is increased, and the spheroidization degree of solid grain is gradually improved. The main mechanism consists of pre-deformation, recovery and recrystallization, grains fragmentation, grains spheroidization and coarsening.
机译:通过重结晶和部分熔化(RAP)方法制备了半固态AlMg0.7Si合金,该方法包括径向锻造(RF)和重熔工艺。以不同的面积缩小率(ARRs)进行RF积累应变,研究了ARR和重熔时间对显微组织的影响,总结了RAP制备半固态AlMg0.7Si合金的机理。结果表明,与原料大而规则的固态晶粒重熔相比,RAP制备的半固态合金的固态晶粒细小且呈球状,并且在630的温度下将具有80%ARR的合金重熔可获得最佳的显微组织。 °C 10分钟。随着ARR的增加,固体晶粒更小,更圆。随着重熔时间的增加,平均晶粒尺寸增加,固体晶粒的球化度逐渐提高。其主要机理包括预变形,恢复和再结晶,晶粒破碎,晶粒球化和粗化。

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