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首页> 外文期刊>Journal of the European Ceramic Society >The impact of microstructure in (K,Na)NbO3-based lead-Free piezoelectric fibers: From processing to device production for structural health monitoring
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The impact of microstructure in (K,Na)NbO3-based lead-Free piezoelectric fibers: From processing to device production for structural health monitoring

机译:(k,Na)NbO3无铅压电纤维中微观结构的影响:从加工到结构性健康监测的装置生产

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摘要

The development of (K,Na)NbO3-based ceramics is attracting great interest due to growing environmental concerns. We investigated the effect of sintering dwell times on the microstructure and on the electromechanical properties on (K,Na)NbO3-based ceramic fibres. The results show that microstructural control is the impetus for the development of the improved electromechanical properties as it was found that a shorter sintering dwell time improved the small signal properties while a longer dwell profile improved the large signal properties. Varying the sintering dwell time resulted in the formation of a secondary phase which displaces the alkaline elements, from the main perovskite phase, generating the stabilization of the orthorhombic phase at room temperature. The microstructure has a close relationship to the electromechanical response, that is, a uniform and fine grain microstructure is required for high mechanical strength. A prototype sensor for applications like structural health monitoring, that produces a detectable electromechanical response was produced. (C) 2016 Elsevier Ltd. All rights reserved.
机译:(k,NA)基于NBO3的陶瓷的开发是由于不断增长的环境问题而吸引了巨大的利益。我们研究了烧结停留时间对(K,Na)NbO3陶瓷纤维的微观结构和机电性能的影响。结果表明,微观结构控制是开发改进的机电性能的推动,因为发现较短的烧结停留时间改善了小信号特性,而更长的停留轮廓改善了大的信号性质。改变烧结停留时间导致形成碱性元素的二次相,从主要钙钛矿相中产生,在室温下产生稳定性相。微观结构与机电响应密切相关,即高机械强度所需的均匀和细粒微观结构。产生用于结构健康监测的应用的原型传感器,产生可检测的机电响应。 (c)2016 Elsevier Ltd.保留所有权利。

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