Zhang Hongyao
Shazhou Professional Institute of Technology, Zhangjiagang, Jiangsu 215600, China.
Int J Anal Chem. 2022 May 14;2022:8339503. doi: 10.1155/2022/8339503. eCollection 2022.
Because of its excellent properties, mullite porous ceramics are widely used in thermal insulation materials, catalyst carriers, gas-liquid filtration, separation materials, etc. At the same time, zirconia not only has the advantages of high melting point, good chemical stability, and high strength but also can significantly improve the strength of ceramics through phase transformation and particle dispersion in the matrix and is widely used in the reinforcement of ceramics. In this paper, using mullite powder as the raw material, AlO and SiO/ZrSiO as the starting material for the mullite self-bonding phase, and AlF·3HO, ZrO and YO as additives, the zirconia-reinforced mullite was prepared by the foaming-injection method. The volume density, linear shrinkage rate, microstructure, room temperature, etc. of nanozirconia-reinforced mullite porous ceramics were studied by the amount of the foaming agent, the amount of mullite self-bonding phase powder, the type and amount of additives, etc. Effects of mechanical properties and thermal conductivity were also analyzed. The research results show that zirconia-reinforced mullite porous ceramics were prepared with mullite powder and 6 wt% AlF·3HO as raw materials, and ZrO and YO as additives. Adding an appropriate amount of ZrO and YO can significantly improve the mechanical properties of porous ceramics. When ZrO is 6 wt% and YO is 8 wt%, the porosity is 66.4% and the flexural strength and compressive strength of porous ceramics with a large pore size of 168 m can reach 14.3 MPa and 36.3 MPa, respectively, which are obviously better than the strength of mullite porous ceramics without adding YO (flexural strength 11.3 MPa, nanocompressive strength 29.4 MPa).
由于莫来石多孔陶瓷具有优异的性能,被广泛应用于保温材料、催化剂载体、气液过滤、分离材料等领域。同时,氧化锆不仅具有熔点高、化学稳定性好、强度高的优点,还能通过相变和颗粒在基体中的分散显著提高陶瓷的强度,被广泛应用于陶瓷增强领域。本文以莫来石粉为原料,以AlO和SiO/ZrSiO作为莫来石自结合相的起始原料,以AlF·3HO、ZrO和YO为添加剂,采用发泡注射法制备了氧化锆增强莫来石。通过发泡剂用量、莫来石自结合相粉末用量、添加剂种类和用量等,研究了纳米氧化锆增强莫来石多孔陶瓷的体积密度、线收缩率、微观结构、室温等。分析了其对力学性能和热导率的影响。研究结果表明,以莫来石粉和6 wt% AlF·3HO为原料,ZrO和YO为添加剂制备了氧化锆增强莫来石多孔陶瓷。添加适量的ZrO和YO能显著提高多孔陶瓷的力学性能。当ZrO为6 wt%、YO为8 wt%时,气孔率为66.4%,大孔径为168 m的多孔陶瓷的抗弯强度和抗压强度分别可达14.3 MPa和36.3 MPa,明显优于未添加YO的莫来石多孔陶瓷的强度(抗弯强度11.3 MPa,抗压强度29.4 MPa)。