气溶胶沉积法在耐热不锈钢基体上制备BaTiO3薄膜的压电性能和微观结构

Y. Kawakami, Masato Watanabe, K. Arai, S. Sugimoto
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引用次数: 6

摘要

在金属衬底上形成的无铅压电薄膜是先进压电器件的研究方向。采用常温气溶胶沉积法在Fe-Cr-Al基耐热不锈钢基体上沉积了厚度为10 μm的BaTiO3薄膜。在1473 K下退火1h的BT膜晶粒直径为1.2μm,晶相为四方晶系的钙钛矿单相。介电常数为2200,介电损耗为0.02。在不锈钢衬底上退火BT膜悬臂梁的压电位移随退火温度的升高而提高。1473 K退火后薄膜的压电常数d31为-56 pm/V。
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Piezoelectric Properties and Microstructure of BaTiO3 Films on Heat-Resistant Stainless-Steel Substrates Deposited Using Aerosol Deposition
Lead (Pb)-free piezoelectric films formed on metallic substrates are of interest for advanced piezoelectric devices. BaTiO3 films with a thickness of 10 μm were deposited on Fe-Cr-Al based heat-resistant stainless-steel substrates using aerosol deposition at room temperature. The BT film annealed at 1473 K for 1h had 1.2μmdiameter grains, of which crystal phase was the perovskite single phase of the tetragonal crystal system. The dielectric constant was 2200, and the dielectric loss was 0.02. Piezoelectric displacement of the cantilevers with annealed BT films on stainless-steel substrates improved with increased annealing temperature. The piezoelectric constant d31 of film annealed at 1473 K was -56 pm/V.
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