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首页> 外文期刊>CERAMICS INTERNATIONAL >A case study of ceramic processing: Microstructural development and electrical properties of Ce0.8Gd0.2O1.9
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A case study of ceramic processing: Microstructural development and electrical properties of Ce0.8Gd0.2O1.9

机译:陶瓷加工案例研究:CE0.8GD0.2O1.9的微观结构开发和电学性能

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摘要

The effects of powder characteristics and conformation methods on green microstructure have been investigated, and microstructural evolution was analyzed based on the green density and the different sintering techniques. Colloidal processing of nanopowders with narrow particle size distribution (15 +/- 5 nm) can be more problematic than dry processing and can lead to more heterogeneous microstructures. Two-step sintering can be used to obtain dense nanostructured samples with more flexibility than microwave sintering and still at lower temperatures than conventional sintering. The sinterability of Ce0.8Gd0.2O1.9 is significantly improved by Zn addition, which can reduce sintering temperature to values as low as 800, 1150 and 1200 degrees C for two-step, microwave and conventional sintering, respectively, in order to achieve relative densities above 90%. Microscopic grain boundary conductivity is shown to be improved in nanostructured samples, despite the higher grain boundary density.
机译:研究了粉末特性及兼容方法对绿色微观结构的影响,基于绿色密度和不同烧结技术分析了微观结构演化。 具有窄粒度分布(15 +/- 5nm)的纳米粉末的胶体加工可以比干燥加工更成问题,并且可以导致更加异质的微观结构。 两步烧结可用于获得浓稠的纳米结构样品,其具有比微波烧结更柔韧的样品,并且仍然比常规烧结在较低的温度下。 CE0.8GD0.2O1.9的烧结性通过Zn添加显着改善,可以将烧结温度降低到800,1150和1200摄氏度的值,分别用于两步,微波和常规烧结,以实现 相对密度高于90%。 尽管晶界密度较高,但显示纳米结构样品中的微观晶界导电性。

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