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首页> 外文期刊>Journal of the European Ceramic Society >Initial stage sintering mechanism of NaNbO_3 and implications regarding the densification of alkaline niobates
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Initial stage sintering mechanism of NaNbO_3 and implications regarding the densification of alkaline niobates

机译:NaNbO_3的初始烧结机理及其对碱性铌酸盐致密化的影响

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摘要

The behavior of submicron- and nano-sized NaNbO_3 powder compacts during conventional sintering was studied using optical dilatometry and microstructure analysis. Microstructure-development trajectories revealed the dominance of grain growth during the initial sintering stage, while densification occurred only during later stages. Surface diffusion with low activation energy in the range of 50-60 kJ/mol was found to be the dominant material-transport mechanism during the initial sintering stage. The early activation of surface diffusion reduced the sintering driving force, decreased the rate of the densifying mechanisms and was thus identified as the main cause for poor densification of NaNbO_3. Same explanation could be valid also for other alkaline niobate based lead-free piezoelectric ceramics. Finally, alternative sintering methods are discussed and the efficiency of the pressure-assisted sintering was demonstrated in successful production of highly-dense fine-grained NaNbO_3 ceramics, with relative density and grain size of 98% and 700 nm, respectively.
机译:使用光学膨胀法和微观结构分析研究了亚微米和纳米尺寸的NaNbO_3粉末压块在常规烧结过程中的行为。微观结构发展轨迹表明,在初始烧结阶段,晶粒生长占主导地位,而致密化仅在随后的阶段发生。在初始烧结阶段,发现低活化能在50-60 kJ / mol范围内的表面扩散是主要的材料传输机制。表面扩散的早期活化降低了烧结驱动力,降低了致密化机理的速率,因此被认为是NaNbO_3致密化不良的主要原因。对于其他基于铌酸碱盐的无铅压电陶瓷,同样的解释也可能有效。最后,讨论了可替代的烧结方法,并在成功生产相对密度和晶粒尺寸分别为98%和700 nm的高密度细晶粒NaNbO_3陶瓷中证明了压力辅助烧结的效率。

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