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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Lead-Free Piezoelectric Ceramic Coatings Fabricated by Thermal Spray Process
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Lead-Free Piezoelectric Ceramic Coatings Fabricated by Thermal Spray Process

机译:热喷涂工艺制备的无铅压电陶瓷涂层

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This paper starts from a review on the progress in fabrication of piezoelectric ceramic coatings by thermal spray method. For our experimental work, two types of lead-free piezoelectric ceramic coatings, including potassium-sodium niobate-based and bismuth sodium titanate-based, are fabricated by thermal spray process, and their structure, morphology, and piezoelectric properties are characterized. Our obtained lead-free ceramic coatings exhibit single phase of perovskite structure, relatively dense morphology, and competitive piezoelectric coefficients. The mechanism of forming the piezoelectric perovskite crystalline phase by thermal spray involving melting-recrystallization process is analyzed in comparison to that of ceramic synthesis through solid-state reaction. Suppression of volatile loss and decomposition at high temperature due to the extremely high melting and cooling rate in the thermal spray process, and the impact on the resulting structure are discussed. Significant advantages of the thermal spray method over alternative processing methods for forming piezoelectric ceramic coatings are summarized. The combination of environmentally friendly lead-free compositions and the scalable thermal spray processing method will promote more applications of piezoelectric ceramic coatings for producing distributive sensors and transducers, and forming advanced smart structures and systems.
机译:本文从回顾热喷涂法制备压电陶瓷涂层的进展开始。对于我们的实验工作,通过热喷涂工艺制备了两种类型的无铅压电陶瓷涂层,包括铌酸钾钠基和钛酸铋钠,并对其结构,形态和压电性能进行了表征。我们获得的无铅陶瓷涂层表现出钙钛矿结构的单相,相对致密的形貌和竞争性的压电系数。与通过固相反应合成陶瓷的方法相比,分析了通过热喷涂涉及熔融重结晶过程形成压电钙钛矿晶体相的机理。讨论了由于热喷涂过程中极高的熔化和冷却速率而抑制了高温下挥发物的损失和分解,以及对最终结构的影响。总结了热喷涂方法相对于形成压电陶瓷涂层的替代加工方法的重要优势。环保无铅组合物和可扩展的热喷涂处理方法的结合将促进压电陶瓷涂层在生产分布式传感器和换能器以及形成先进的智能结构和系统方面的更多应用。

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