Bai Yaping, Wei Jiale, Lei Naqing, Li Jianping, Guo Yongchun, Liu Mengmeng
School of Materials and Chemical Engineering, Xi'an Technological University, Xi'an 710021, China.
Materials (Basel). 2021 Jun 18;14(12):3389. doi: 10.3390/ma14123389.
Al 7075 alloy, 15 wt.% VN/7075 composites, and 20 wt.% TiB-TiC/7075 composites were prepared by ball milling with subsequent hot-pressing sintering. The microstructure, hardness, and wear properties at room temperature to 200 °C of Al 7075-based composites with different reinforcement phases were discussed. The grain uniformity degree values of 15 wt.% VN/7075 composites and 20 wt.% TiB-TiC/7075 composites were 0.25 and 0.13, respectively. The reinforcement phase was uniformly distributed in 15 wt.% VN/7075 composites and 20 wt.% TiB-TiC/7075 composites, almost no agglomeration occurred. The order of hardness was 20 wt.% TiB-TiC/7075 composites (270.2 HV) > 15 wt.% VN/7075 composites (119.5 HV) > Al 7075 (81.8 HV). At the same temperature, the friction coefficient of 15 wt.% VN/7075 composites was the lowest, while the volume wear rate of 20 wt.% TiB-TiC/7075 composites was the lowest. With the increase of temperature, the wear mechanism of Al 7075 changed from spalling wear to oxidation wear and adhesion wear. However, the wear mechanisms of 15 wt.% VN/7075 and 20 wt.% TiB-TiC/7075 composites changed from abrasive wear at room temperature to wear mechanism (oxidation wear, abrasive wear, and adhesive wear) at medium and low temperature. Comprehensive wear test results indicated that 20 wt.% TiB-TiC/7075 composites had excellent tribological properties at medium and low temperature.
通过球磨随后热压烧结制备了Al 7075合金、15 wt.% VN/7075复合材料和20 wt.% TiB-TiC/7075复合材料。讨论了不同增强相的Al 7075基复合材料在室温至200℃下的微观结构、硬度和磨损性能。15 wt.% VN/7075复合材料和20 wt.% TiB-TiC/7075复合材料的晶粒均匀度值分别为0.25和0.13。增强相在15 wt.% VN/7075复合材料和20 wt.% TiB-TiC/7075复合材料中均匀分布,几乎没有团聚现象发生。硬度顺序为20 wt.% TiB-TiC/7075复合材料(270.2 HV)> 15 wt.% VN/7075复合材料(119.5 HV)> Al 7075(81.8 HV)。在相同温度下,15 wt.% VN/7075复合材料的摩擦系数最低,而20 wt.% TiB-TiC/7075复合材料的体积磨损率最低。随着温度升高,Al 7075的磨损机制从剥落磨损转变为氧化磨损和粘着磨损。然而,15 wt.% VN/7075和20 wt.% TiB-TiC/7075复合材料的磨损机制从室温下的磨粒磨损转变为中低温下的磨损机制(氧化磨损、磨粒磨损和粘着磨损)。综合磨损试验结果表明,20 wt.% TiB-TiC/7075复合材料在中低温下具有优异的摩擦学性能。