Li Sanbo, Zhao Chunfang, Wang Fei, Hu Maoliang, Ji Zesheng, Sugiyama Sumio
School of Mechanical and Electrical Engineering, Lishui Vovational and Technical College, Lishui 323000, China.
School of Materials Science and Chemical Engineering, Harbin University of Science and Technology, Harbin 150001, China.
Materials (Basel). 2021 Oct 3;14(19):5783. doi: 10.3390/ma14195783.
The refining performance of Al-Ti-C master alloys is substantially compromised by the inferior wettability between graphite and molten aluminum. In this paper, the Al-5Ti-0.25C master alloy was successfully prepared by reacting Ti machining chips, graphite, and molten aluminum. In order to determine a simple method of improving the wettability, the optimal preparation process and phase transformation of the Al-5Ti-0.25C master alloy were investigated using an optical microscope, X-ray diffractometer, and scanning electron microscope equipped with an energy dispersive spectrometer. The results show that the feeding method using a prefabricated block made from Ti chips, Al chips, and graphite effectively improves the wettability between graphite and molten aluminum and increases the recovery rate of graphite. When the reaction temperature is low (1223 K), the agglomeration of TiAl is caused. When the reaction temperature is high (1373 K), the morphology of TiAl changes from block-like to needle-like and increases its size. Further, a short reaction time (30 min) results in the incomplete dissolution of the Ti chips, while a long reaction time (90 min) causes the TiAl to transform into needle-like morphologies. The microstructural observation of undissolved Ti chips shows that TiAl and TiC are formed around it, which proves the transformation of Ti chips to TiAl and TiC. In addition, the enrichment of TiC and AlC was observed in the vicinity of TiAl, and a reaction model for the formation of TiC from the reaction of AlC and TiAl was presented.
石墨与熔融铝之间较差的润湿性严重损害了Al-Ti-C中间合金的精炼性能。本文通过使Ti加工屑、石墨与熔融铝反应,成功制备了Al-5Ti-0.25C中间合金。为了确定一种改善润湿性的简单方法,利用光学显微镜、X射线衍射仪和配备能谱仪的扫描电子显微镜研究了Al-5Ti-0.25C中间合金的最佳制备工艺和相变。结果表明,采用由Ti屑、Al屑和石墨制成的预制块的加料方法有效地改善了石墨与熔融铝之间的润湿性,并提高了石墨的回收率。当反应温度较低(1223 K)时,会导致TiAl团聚。当反应温度较高(1373 K)时,TiAl的形态从块状变为针状且尺寸增大。此外,反应时间较短(30分钟)会导致Ti屑溶解不完全,而反应时间较长(90分钟)会使TiAl转变为针状形态。对未溶解的Ti屑进行微观结构观察表明,其周围形成了TiAl和TiC,这证明了Ti屑向TiAl和TiC的转变。此外,在TiAl附近观察到了TiC和AlC的富集,并提出了由AlC与TiAl反应形成TiC的反应模型。