首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Effects of different processing parameters on the semisolid microstructure of the AZ91D alloy during partial remelting
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Effects of different processing parameters on the semisolid microstructure of the AZ91D alloy during partial remelting

机译:不同工艺参数对部分重熔过程中AZ91D合金半固态组织的影响

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The effects of different processing parameters, such as heating rate, isothermal temperature and isothermal holding time, on the semisolid microstructures of the AZ91D alloy during partial remelting had been investigated in the present paper. The experimental result showed that the high heating rate shortened the growth process of renascent recrystal grains in the deformed alloys, which ultimately attributed to refine the globular alpha-Mg grains in the evolved semisolid microstructure. The liquid volume fraction f_L of the semisolid slurry gradually enlarged with the elevating of isothermal temperature during partial remelting. The isothermal temperature between 560 deg C and 580 deg C for 30 min was adequate for the AZ91D to produce an ideal semisolid slurry with liquid fraction range between 32 percent and 52 percent. During the partial remelting, it would experience a relatively long holding time that the liquid and solid phases reached a state of dynamic equilibrium in the semisolid slurry. For the AZ91D alloy, the isothermal holding time of 30 min was relatively adequate for the present experiment. During the partial remelting, the primary irregular grains gradually spherodized under a function of interface curvature. Oswald ripening mechanism, a dissolution and reprecipitation diffusion-controlled growth, could account for the coarsening of globular grains in the present experiment. The spheroidization and coarsening evolution processes of solid particles in the semisolid slurry were deduced and elucidated by the corresponding simulant formulae in the present paper.
机译:研究了加热速率,等温温度和等温保持时间等不同工艺参数对AZ91D合金半重熔过程中半固态组织的影响。实验结果表明,较高的加热速率缩短了变形合金中新生重结晶晶粒的生长过程,最终归因于细化了演化的半固态组织中的球状α-Mg晶粒。随着部分重熔过程中等温温度的升高,半固态浆料的液体体积分数f_L逐渐增大。在560℃和580℃之间的等温温度下持续30分钟足以使AZ91D产生具有32%至52%液体比例的理想半固体浆料。在部分重熔期间,液相和固相在半固态浆料中达到动态平衡状态将经历相对较长的保持时间。对于AZ91D合金,30分钟的恒温时间对于本实验来说是相对足够的。在部分重熔过程中,初级不规则晶粒在界面曲率的作用下逐渐球化。奥斯瓦尔德成熟机制,即溶解和再沉淀扩散控制的生长,可以解释本实验中球状颗粒的粗化。本文通过相应的模拟公式推导和阐明了半固体浆料中固体颗粒的球化和粗化演化过程。

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