废屑回收AZ91D镁合金热处理过程中的半固态显微组织

Hongyu Xu, Z. Ji, Maoliang Hu
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引用次数: 0

摘要

本文利用AZ91D镁合金废屑回收制备半固态方坯。这些薄片被热压缩成钢坯。然后,对坯料进行一系列不同保温时间的等温热处理。研究了其在热处理过程中的半固态组织演变。经部分重熔后,可获得具有高球面化和均匀初生颗粒的半固态组织。随着加热温度的升高,Al元素首先从共晶Mg17Al12相向α-Mg扩散,导致初生枝晶晶粒粗化为相互连接的非枝晶晶粒。随着不断加热,初生晶粒边缘残余的枝晶间γ-Mg17Al12相继熔化,初生晶粒分离成小的多边形晶粒。提高加热温度可以降低固体体积分数。在半固态等温处理过程中,随着保温时间的延长,固体颗粒呈球状,液体量增加,直至固液体系达到平衡状态。同时,由于界面能的降低和界面张力的影响,随着保温时间的进一步延长,颗粒逐渐球化并开始生长。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Semi-solid microstructure of AZ91D magnesium alloy recycled from waste chips during heat treatment
In this paper, waste chips of AZ91D magnesium alloy were recycled to prepare semi-solid billets. The chips were hot compressed into billets. And then, the billets were subjected to a series of isothermal heat treatment for various holding times. Its semi-solid microstructure evolution was investigated during heat treatment. A semi-solid microstructure with highly spheroidal and homogeneous primary particles can be obtained after partially remelting. With increasing heating temperature, the diffusion of Al element from eutectic Mg17Al12 phase to α-Mg first took place, resulting in the primary dendritic grains coarsening into interconnected non-dendritic grains. With heating continuously, the residual interdendritic γ-Mg17Al12 at the edges of the primary grains melted in succession and the primary grains separated into small polygon grains. Increasing the heating temperature can reduce the solid volume fraction. During the semi-solid isothermal treatment, with the increasing of the holding time, the solid particles became more globular and the amount of liquid increased until the solid-liquid system reached its equilibrium state. At the same time, owing to the decreasing of interfacial energy and the effect of interfacial tension, the particles gradually spheroidized and began to grow with a further increasing of the holding time.
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