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Effect of rare-earth oxides on fracture properties of ceria ceramics

机译:稀土氧化物对二氧化铈陶瓷断裂性能的影响

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摘要

The influences of the sintering additive content of rare-earth oxide (Y2O3, Gd2O3, Sm2O3) on microstructure and mechanical properties of ceria ceramics were investigated by scanning electron microscopy and small specimen technique. A small punch testing method was employed to determine the elastic modulus and biaxial fracture stress of the ceria-based ceramics, and the fracture toughness was estimated by Vickers indentation method. Grain growth in the rare-earth oxides doped ceria ceramics was significantly suppressed, compared to the pure ceria ceramics. However, the elastic modulus, fracture stress and fracture toughness were decreased significantly with increasing additive content of the rare-earth oxides, possibly due to the oxygen vacancies induced by the rare earth oxides doping. The experimental results suggest that the change in the mechanical properties should be taken into account in the use of ceria-based ceramics for solid oxide fuel cells, in addition to the improvement of oxygen ion conductivity. (C) 2004 Kluwer Academic Publishers.
机译:通过扫描电子显微镜和小试样技术研究了稀土氧化物(Y2O3,Gd2O3,Sm2O3)的烧结助剂含量对二氧化铈陶瓷组织和力学性能的影响。采用小冲头试验法确定二氧化铈基陶瓷的弹性模量和双轴断裂应力,并通过维氏压痕法估算断裂韧性。与纯二氧化铈陶瓷相比,掺杂稀土氧化物的二氧化铈陶瓷中的晶粒生长得到显着抑制。然而,随着稀土氧化物添加剂含量的增加,弹性模量,断裂应力和断裂韧性明显降低,这可能是由于稀土氧化物掺杂引起的氧空位。实验结果表明,在将二氧化铈基陶瓷用于固体氧化物燃料电池时,除了改善氧离子传导性外,还应考虑机械性能的变化。 (C)2004 Kluwer学术出版社。

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