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首页> 外文期刊>Journal of the European Ceramic Society >A novel way to fabricate highly porous fibrous YSZ ceramics with improved thermal and mechanical properties
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A novel way to fabricate highly porous fibrous YSZ ceramics with improved thermal and mechanical properties

机译:一种新颖的方法来制造具有改善的热和机械性能的高孔隙率纤维状YSZ陶瓷

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摘要

Inspired by nest structure, highly porous fibrous yttria-stabilized zirconia (YSZ) ceramics were fabricated through tert-butyl alcohol (TBA)-based gel-casting process and pressureless sintering by using YSZ fibers as raw material and adding K_2SO_4 as removable sintering aid. Different sintering temperature and soaking time were investigated to achieve optimal thermal and mechanical properties. The results show that all specimens consist of crystallized t-YSZ phase. Fibers interconnect with good interfacial bonding on junctions. Under higher sintering temperature, porosity drops gradually while compressive strength increases significantly. With prolonged soaking time, there is no obvious change in porosity and compressive strength increases gradually. All specimens have uniformly distributed pores with average size of 30.2 μm and show good structural stability at high temperature. Ultra-low thermal conductivity is achieved and ductile fracture mode with high elongation makes it more applicable in high-temperature thermal insulating applications.
机译:受嵌套结构的启发,以叔丁醇(TBA)为基础的凝胶浇铸工艺和无压烧结方法,以YSZ纤维为原料,并加入K_2SO_4作为可移动的烧结助剂,从而制备出高度多孔的氧化钇稳定的氧化锆陶瓷。研究了不同的烧结温度和保温时间,以获得最佳的热和机械性能。结果表明,所有样品均由结晶的t-YSZ相组成。纤维相互连接,并在接合处具有良好的界面粘结。在较高的烧结温度下,孔隙率逐渐降低,而抗压强度则显着提高。随着浸泡时间的延长,孔隙率没有明显变化,抗压强度逐渐提高。所有样品均具有均匀分布的孔,平均尺寸为30.2μm,并且在高温下显示出良好的结构稳定性。实现了超低导热率,并且具有高伸长率的延性断裂模式使其更适用于高温绝热应用。

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