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Characterization of lead free (K_(0.5)Na_(0.5))NbO_3-LiSbO_3 piezoceramic

机译:无铅(K_(0.5)Na_(0.5))NbO_3-LiSbO_3压电陶瓷的表征

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摘要

(K_(0.5)Na_(0.5))NbO_3 (KNN) based lead free ceramics have been fabricated by a solid state reaction. In this work, LiSbO_3 (LS) modified KNN based ceramics were sintered at atmospheric pressure and high density (> 96% theoretical) was obtained. The detailed elastic, dielectric, piezoelectric and electromechanical properties were characterized by using the resonance technique combined with the ultrasonic method. The full set of material constants for the obtained polycrystalline ceramics were determined and compared to the pure hot pressed KNN counterpart. KNN-LS polycrystalline ceramic was found to have higher elastic compliance, dielectric permittivity and piezoelectric strain coefficients, but lower mechanical quality factor, when compared to pure KNN, exhibiting a "softening" behavior. However, a high coercive field (~17 kV/cm) was found for the LS modified KNN material. The properties as a function of temperature were determined in the range of -50-250 ℃, showing a polymorphic phase transition near room temperature, giving rise to improved piezoelectric behavior.
机译:(K_(0.5)Na_(0.5))NbO_3(KNN)基无铅陶瓷已通过固态反应制备。在这项工作中,在大气压下烧结了LiSbO_3(LS)改性的KNN基陶瓷,并获得了高密度(理论值> 96%)。通过使用共振技术结合超声方法对详细的弹性,介电,压电和机电性能进行了表征。确定了获得的多晶陶瓷的全部材料常数,并将其与纯热压KNN对应物进行比较。与纯KNN相比,发现KNN-LS多晶陶瓷具有较高的弹性柔度,介电常数和压电应变系数,但机械品质因数较低,表现出“软化”行为。然而,对于LS改性的KNN材料,发现了高矫顽场(〜17 kV / cm)。在-50-250℃范围内确定了随温度变化的性能,表明在室温附近具有多态相变,从而改善了压电性能。

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