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The microstructure of plasma arc cold-hearth melted Ti-48Al-2Mn-2Nb

机译:等离子弧冷床熔炼Ti-48Al-2Mn-2Nb的显微组织

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摘要

The purpose of this paper is to show the results of some work at the IRC in Materials for High Performance Applications at the University of Birmingham into the effect of processing and process parameters on the microstructure, macrostructure and chemistry of 100 mm diameter single plasma-melted ingots of a gamma-based titanium aluminide (Ti-48at%Al-2at%Mn-2at%Nb). The microstructure of the as-melted bars is almost completely lamellar and consists of a chill layer of fine prior alpha grains at the surface and larger columnar grains growing into the centre of the bar. These microstructural features show little variation with processing conditions. The orientations of the alpha grains have been used to determine the effect of plasma torch current and ingot withdrawal rate on melt pool shape under a variety of operating conditions and it has been established that, at typical operating conditions, the ingot withdrawal rate has a more significant effect on melt pool depth than the plasma torch current, especially at faster withdrawal rates. Chemical analyses has shown that there is negligible net loss of any of the major alloying elements, although the degree of as-cast chemical homogeneity needs to be increased in the light of the extreme microstructural sensitivity. Further investigation has shown that one major cause of inhomogeneity is macrosegregation induced by short-term variations in melt pool shape. The implications of these results for the processing of titanium aluminides are then discussed.
机译:本文的目的是展示伯明翰大学IRC高性能应用材料中的一些工作成果,以探讨工艺和工艺参数对100 mm直径单等离子熔体的微观结构,宏观结构和化学性质的影响γ基铝化钛(Ti-48at%Al-2at%Mn-2at%Nb)的铸锭。熔化后的棒的微观结构几乎完全是层状的,由表面上的细小先验α晶粒的冷硬层和长到棒中心的较大的柱状晶粒组成。这些微观结构特征显示出随加工条件的变化很小。在各种操作条件下,α晶粒的取向已用于确定等离子炬电流和铸锭撤出速率对熔池形状的影响,并且已经确定,在典型的运行条件下,铸锭撤出速率具有更大的影响。比等离子炬电流对熔池深度的影响更大,尤其是在提速更快的情况下。化学分析表明,尽管鉴于极端的微观结构敏感性需要提高铸态化学均质度,但任何主要合金元素的净损失均可以忽略不计。进一步的研究表明,不均匀性的一个主要原因是熔池形状的短期变化引起的宏观偏析。然后讨论了这些结果对铝化钛加工的影响。

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