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Inhibition of Grain Growth by a Ce-rich Precipitate During the Annealing of Spray-Casted Magnesium Alloy

机译:喷铸镁合金退火过程中富铈沉淀物对晶粒长大的抑制作用

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摘要

The grain refinement and thermal stability behavior of a spray-casted AZ91D magnesium alloy were investigated with the addition of 0.75 wt% Ce. The results showed that the adoption of non-equilibrium solidification leads to remarkable grain refinement and the formation of a supersaturated solid solution, which suppresses the needle-like Al11Ce3 phase with a low cooling rate. After annealing at 420 °C, the grain morphology of rapidly solidified AZ91D+0.75Ce alloy changed from a granular to polygonal shape. Moreover, Mg12Ce particles precipitated and distributed homogeneously, which played an important role in grain boundary pinning at an elevated temperature. Consequently, the grain growth occurring during the isothermal annealing stage could be suppressed and the resultant grain size varied slightly, as did for the time, which increased from 2 h to 8 h.
机译:通过添加0.75 wt%的铈,研究了喷铸AZ91D镁合金的晶粒细化和热稳定性能。结果表明,采用非平衡凝固可显着改善晶粒细化并形成过饱和固溶体,从而抑制了针状Al11Ce3相,且冷却速率低。在420°C下退火后,快速凝固的AZ91D + 0.75Ce合金的晶粒形态从颗粒状变为多边形。此外,Mg12Ce颗粒均匀地沉淀和分布,在高温下晶界钉扎中起着重要作用。因此,可以抑制在等温退火阶段发生的晶粒长大,并且所产生的晶粒尺寸也随时间变化,从2小时增加到8小时。

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