VSB-Technical University of Ostrava, Faculty of Materials Science and Technology, 70800 Ostrava, Czech Republic.
Molecules. 2020 Apr 24;25(8):2001. doi: 10.3390/molecules25082001.
The possibilities of metallurgical preparation of 40Nb-60Al and 15W-85Al intermetallic compounds (in at.%) by plasma arc melting (PAM) and vacuum induction melting (VIM) were studied. Both methods allow easy preparation of Nb-Al alloys; however, significant evaporation of Al was observed during the melting, which affected the resulting chemical composition. The preparation of W-Al alloys was more problematic because there was no complete re-melting of W during PAM and VIM. However, the combination of PAM and VIM allowed the preparation of W-Al alloy without any non-melted parts. The microstructure of Nb-Al alloys consisted of NbAl and NbAl intermetallic phases, and W-Al alloys consisted mainly of needle-like WAl intermetallic phase and Al matrix. The effects of melting conditions on chemical composition, homogeneity, and microstructure were determined. Differential thermal analysis was used to determine melting and phase transformation temperatures of the prepared alloys.
研究了通过等离子弧熔炼(PAM)和真空感应熔炼(VIM)对 40Nb-60Al 和 15W-85Al 金属间化合物(按原子%计)进行冶金制备的可能性。这两种方法都可以轻松制备 Nb-Al 合金;然而,在熔化过程中观察到 Al 的大量蒸发,这影响了最终的化学成分。W-Al 合金的制备更为困难,因为在 PAM 和 VIM 过程中 W 没有完全重熔。然而,PAM 和 VIM 的结合允许制备没有任何未熔化部分的 W-Al 合金。Nb-Al 合金的微观结构由 NbAl 和 NbAl 金属间化合物相组成,而 W-Al 合金主要由针状 WAl 金属间化合物相和 Al 基体组成。确定了熔化条件对化学成分、均匀性和微观结构的影响。差示热分析用于确定制备合金的熔化和相变温度。