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Effect of Mn additions on the microstructure and microhardness of as-cast and rapidly solidified Mg-5Ni-5Cu alloy

机译:锰添加量对铸态快速凝固Mg-5Ni-5Cu合金组织和显微硬度的影响

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摘要

Nanocrystalline and amorphous Mg-Ni-Cu-Mn alloys with nominal compositions of Mg-5 wt.% Ni-5 wt.% Cu-x wt.% Mn (x = 0, 1, 3) were synthesized by the melt spinning technique. The structure of the alloys was characterized by scanning electron microscopy and X-ray diffraction analysis. The phase transition during the solidification process was studied by differential scanning calorimetry under an Argon atmosphere. The wheel speed, which is closely associated with the cooling rate, was varied in the production of the melt-spun ribbons. The resultant melt-spun ribbons had various microstructures ranging from dendrite to equiaxed polygonal grains, and finally to an amorphous structure, depending on the wheel speed. The wheel side of the ribbons exhibited a finer microstructure than those on the free or air sides exposed to the atmosphere. Experimental results showed that the mechanical properties of the Mg-Ni-Cu-Mn alloys were enhanced, which can be attributed to significant changes in the microstructure. It was found that the microhardness values of the melt-spun ribbons were strongly dependent on the solidification rate and Mn content. The highest microhardness values were observed on the wheel side of the ribbons.
机译:通过熔融纺丝技术合成了标称成分为Mg-5 wt。%Ni-5 wt。%Cu-x wt。%Mn(x = 0、1、3)的纳米晶和非晶Mg-Ni-Cu-Mn合金。通过扫描电子显微镜和X射线衍射分析来表征合金的结构。在氩气氛下,通过差示扫描量热法研究了固化过程中的相变。与冷却速率密切相关的轮速在熔纺带的生产中有所变化。所得的熔融纺丝带具有各种微结构,其范围从轮枝晶到等轴角的多边形晶粒,最后到非晶结构,具体取决于轮速。带的轮侧显示出比暴露于大气的自由侧或空气侧更好的微观结构。实验结果表明,Mg-Ni-Cu-Mn合金的力学性能得到了增强,这可以归因于显微组织的显着变化。发现熔纺带的显微硬度值强烈地依赖于凝固速率和Mn含量。在带的轮侧观察到最高的显微硬度值。

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