Wang Juan, Yang Zhong, Ma Zhijun, Bai Yaping, Duan Hongbo, Tao Dong, Shi Guoqing, Zhang Jiachen, Wang Zhen, Li Jianping
School of Materials and Chemical Engineering, Xi'an Technological University, Xi'an 710021, People's Republic of China.
R Soc Open Sci. 2021 Nov 24;8(11):210584. doi: 10.1098/rsos.210584. eCollection 2021 Nov.
Low-expansion alloys are of great importance and can be used for the development of new aerospace materials. Herein, we report diverse rare earth quasicrystal alloys fabricated by the vacuum suction casting process. The effects of the addition of cerium (Ce) on the microstructure, thermal expansion properties and microhardness of the Al-Cu-Fe alloy were systematically investigated. This study discovered the tiny Al-Cu-Fe-Ce microstructure. A uniform distribution could be achieved after Ce addition amount is elevated. At the Ce addition amount of 1 at%, the lowest alloy thermal expansion coefficient was obtained. The alloy exhibited the maximum microhardness under these conditions. The microhardness of alloys containing 1 at% of Ce was approximately 2.4 times higher than the microhardness exhibited by alloys devoid of Ce additives. The coefficient of thermal expansion decreases by approximately 20%. The use of the suction casting process and the addition of an appropriate amount of Ce can potentially help design and develop Al-Cu-Fe-Ce alloys.
低膨胀合金具有重要意义,可用于新型航空航天材料的开发。在此,我们报告了通过真空吸铸工艺制备的多种稀土准晶合金。系统研究了添加铈(Ce)对Al-Cu-Fe合金微观结构、热膨胀性能和显微硬度的影响。本研究发现了微小的Al-Cu-Fe-Ce微观结构。当铈添加量增加后可实现均匀分布。在铈添加量为1原子%时,获得了最低的合金热膨胀系数。在这些条件下,合金表现出最大的显微硬度。含1原子%铈的合金的显微硬度比不含铈添加剂的合金的显微硬度高出约2.4倍。热膨胀系数降低了约20%。使用吸铸工艺并添加适量的铈可能有助于设计和开发Al-Cu-Fe-Ce合金。