首页> 外文期刊>Journal of Materials Science: Materials in Electronics >Microstructure, phase transition and electrical properties of LiSbO3-doped (K0.49Na0.51)NbO3 lead-free piezoelectric ceramics
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Microstructure, phase transition and electrical properties of LiSbO3-doped (K0.49Na0.51)NbO3 lead-free piezoelectric ceramics

机译:掺杂LiSbO 3 (K 0.49 Na 0.51 )NbO 3 的LiSbO 3 的微观结构,相变和电性能游离压电陶瓷

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摘要

Microstructure, phase transition and electrical properties of (1 − x)K0.49Na0.51NbO3 − xLiSbO3 (x = 0–0.08) lead-free piezoceramics prepared by the conventional solid-state sintering method were investigated with an emphasis on the effects of LiSbO3 doping amount x. SEM results showed that the ceramic became denser by increasing LiSbO3 doping amount x. Being indexed by XRD profiles, the ceramics changed from an orthorhombic perovskite structure to a tetragonal one across a composition region of 0.04 ≤ x≤0.05. The sample of LiSbO3 doping amount x = 0.05 in tetragonal side of the region had the maximum values of piezoelectric constant (d 33 = 256 pC/N) and planar electromechanical coupling coefficient (k p = 42.7%). Meanwhile, this ceramic sample showed other good properties such as ε r = 1,463, tgδ = 0.036, Q m = 48, P r = 19.8 μC/cm2, E c = 1.9 kV/mm and T c = 340 °C, which indicated it was a promising lead-free piezoelectric material for ultrasonic transducer applications.
机译:(1-x)K 0.49 Na 0.51 NbO 3 -xLiSbO 3 的组织,相变和电性能研究了通过传统固态烧结法制备的(x = 0–0.08)无铅压电陶瓷,重点是LiSbO 3 掺杂量x的影响。 SEM结果表明,随着LiSbO 3 掺杂量x的增加,陶瓷变得致密。通过XRD轮廓索引,在0.04≤x≤0.05的组成范围内,陶瓷从正交晶钙钛矿结构变为四方钙钛矿结构。该区域四边形的LiSbO 3 掺杂量x = 0.05的样品具有最大值的压电常数(d 33 = 256 pC / N)和平面机电耦合系数(k p = 42.7%)。同时,该陶瓷样品表现出其他良好的性能,例如ε r = 1,463,tgδ= 0.036,Q m = 48,P r = 19.8。 μC/ cm 2 ,E c = 1.9 kV / mm,T c = 340°C,表明它是有前途的无铅产品用于超声换能器的压电材料。

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