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Zirconia and Ceria Based Ceramics and Nanoceramics- a Review on Electrochemical and Mechanical Properties

机译:氧化锆和二氧化铈基陶瓷和纳米陶瓷-电化学和机械性能的综述

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Zirconia (ZrO2) and ceria (CeO2) based ceramics is widely applied in electrochemical devices due to its high ionic conductivity coupled with high mechanical properties. Nowadays, the task of the decrease in the working temperature of such devices is of current interest, there are a lot of papers dealing with this problem. The present paper considers the conductivity vs composition dependencies for such ceramics, it is shown that triple systems are very perspective compositions, especially with hafnium oxide additions. The effect of ceramics microstructure on the conductivity is discussed, in particular the dependence of the grain size on the electrochemical properties, a special attention is paid to nanosized ceramics. Experimental results obtained in this field are compared with those computed using BLM model for microsized case and n-GCM model for nanosized one. The data on the grain size effect on the ceramics mechanical properties are summarized, it is shown that the decrease in the grain size usually results in the ceramics hardening.
机译:氧化锆(ZrO 2 )和二氧化铈(CeO 2 )基陶瓷因其高离子电导率和高机械性能而被广泛应用于电化学装置。如今,降低此类设备的工作温度的任务是当前关注的问题,有许多论文涉及该问题。本文考虑了此类陶瓷的电导率与成分的相关性,结果表明三元体系是非常有前景的成分,尤其是添加氧化ha时。讨论了陶瓷微观结构对电导率的影响,特别是晶粒尺寸对电化学性能的依赖性,对纳米尺寸的陶瓷给予了特别的关注。将在该领域获得的实验结果与使用BLM模型(用于微尺寸的情况)和n-GCM模型(用于纳米尺寸的情况)所计算的结果进行比较。总结了晶粒尺寸对陶瓷力学性能影响的数据,结果表明,晶粒尺寸的减小通常会导致陶瓷硬化。

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