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Effects of Ce-Rich Mischmetal on Microstructure Evolution and Mechanical Properties of 5182 Aluminum Alloy

机译:富铈杂化金属对5182铝合金组织演变和力学性能的影响

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摘要

This paper addresses the effects of Ce-rich mischmetal on the microstructure evolution of a 5182 aluminum alloy during annealing and rolling processes. The Ce-rich mischmetal was added to an as-cast 5182 aluminum alloy in an induction furnace, and this was followed by homogenized annealing at 450 °C for 24 h and a rolling operation. The microstructure evolution and mechanical properties’ analysis of the 5182 Al alloy were characterized. The results show that the Ce-rich mischmetal could modify the microstructure, refine the α-Al grains, break the network distribution of Mg Si phases, and prevent Cr and Si atoms from diffusing into the Al (Mn, Fe) phase in the as-cast 5182 Al alloys. Ce-rich mischmetal elements were also found to refine the Al (Mn, Fe) phase after cold rolling. Then, the refined Al (Mn, Fe) particles inhibited the growth of recrystallization grains to refine them from 10.01 to 7.18 μm after cold rolling. Consequently, the tensile strength of the cold-rolled 5182 Al alloy increased from 414.65 to 454.34 MPa through cell-size strengthening, dislocation density strengthening, and particle strengthening. The tensile strength of the recrystallization annealed 5182 Al alloy was increased from 322.16 to 342.73 MPa through grain refinement strengthening, and this alloy was more stable after the recrystallization annealing temperature.
机译:本文探讨了富铈混合稀土对5182铝合金在退火和轧制过程中组织演变的影响。将富铈的混合金属添加到感应炉中的5182铝合金中,然后在450°C下进行24h均质退火,然后进行轧制。表征了5182铝合金的组织演变和力学性能分析。结果表明,富铈的混合金属可以改变合金的微观结构,细化α-Al晶粒,破坏Mg Si相的网络分布,并防止Cr和Si原子扩散到Al(Mn,Fe)相中。铸5182铝合金。还发现富铈的混合金属元素可在冷轧后细化Al(Mn,Fe)相。然后,精炼的Al(Mn,Fe)颗粒抑制了再结晶晶粒的生长,从而在冷轧后将其从10.01精炼到7.18μm。因此,通过晶胞尺寸增强,位错密度增强和颗粒增强,冷轧5182铝合金的拉伸强度从414.65 MPa增加到454.34 MPa。通过晶粒细化强化,使再结晶退火的5182 Al合金的拉伸强度从322.16 MPa增加到342.73 MPa,经过再结晶退火温度后,该合金更加稳定。

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