Li Yunpeng, Sun Hongqian, Song Jing, Zhang Zhiyu, Lan Hao, Tian Liangliang, Xie Keqiang
National Engineering Research Center for Green Recycling of Strategic Metal Resource, Institute of Process Engineering, Chinese Academy of Sciences, Beijing 100190, China.
College of Metallurgy and Energy Engineering, Kunming University of Science and Technology, Kunming 650093, China.
Materials (Basel). 2023 Feb 28;16(5):2019. doi: 10.3390/ma16052019.
Yttria-stabilized zirconia (YSZ) has been widely used in structural and functional ceramics because of its excellent physicochemical properties. In this paper, the density, average gain size, phase structure, and mechanical and electrical properties of conventionally sintered (CS) and two-step sintered (TSS) 5YSZ and 8YSZ are investigated in detail. As the grain size of YSZ ceramics became smaller, dense YSZ materials with a submicron grain size and low sintering temperature were optimized in terms of their mechanical and electrical properties. 5YSZ and 8YSZ in the TSS process significantly improved the plasticity, toughness, and electrical conductivity of the samples and significantly suppressed the rapid grain growth. The experimental results showed that the hardness of the samples was mainly affected by the volume density, that the maximum fracture toughness of 5YSZ increased from 3.514 MPa·m to 4.034 MPa·m in the TSS process, an increase of 14.8%, and that the maximum fracture toughness of 8YSZ increased from 1.491 MPa·m to 2.126 MPa·m, an increase of 42.58%. The maximum total conductivity of the 5YSZ and 8YSZ samples under 680 °C increased from 3.52 × 10 S/cm and 6.09 × 10 S/cm to 4.52 × 10 S/cm and 7.87 × 10 S/cm, an increase of 28.41% and 29.22%, respectively.
氧化钇稳定氧化锆(YSZ)因其优异的物理化学性质而被广泛应用于结构陶瓷和功能陶瓷领域。本文详细研究了常规烧结(CS)和两步烧结(TSS)的5YSZ和8YSZ的密度、平均晶粒尺寸、相结构以及力学和电学性能。随着YSZ陶瓷晶粒尺寸变小,具有亚微米晶粒尺寸和低烧结温度的致密YSZ材料在力学和电学性能方面得到了优化。TSS工艺中的5YSZ和8YSZ显著提高了样品的可塑性、韧性和电导率,并显著抑制了晶粒的快速生长。实验结果表明,样品的硬度主要受体积密度影响,5YSZ在TSS工艺中的最大断裂韧性从3.514MPa·m提高到4.034MPa·m,增幅为14.8%,8YSZ的最大断裂韧性从1.491MPa·m提高到2.126MPa·m,增幅为42.58%。5YSZ和8YSZ样品在680℃下的最大总电导率分别从3.52×10 S/cm和6.09×10 S/cm提高到4.52×10 S/cm和7.87×10 S/cm,增幅分别为28.41%和29.22%。