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首页> 外文期刊>Ultrasonics, Ferroelectrics and Frequency Control, IEEE Transactions on >Piezoceramics Properties as a Function of the Structure in the System (K,Na,Li)(Nb,Ta,Sb)O3
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Piezoceramics Properties as a Function of the Structure in the System (K,Na,Li)(Nb,Ta,Sb)O3

机译:压电陶瓷性质随体系中(K,Na,Li)(Nb,Ta,Sb)O3的结构而变化

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摘要

The influence of the sintering conditions and stoichiometry on the crystalline symmetry and electrical properties of the system (K0.44+xNa0.52Li0.04)(Nb0.86Ta0.10Sb0.04) O3+x/2, with x = ¿0.06, 0.00, and 0.04, has been evaluated. By lowering the concentration of K cations, a faster stabilization of the tetragonal phase is reached. Increasing the sintering time also leads to the stabilization of the tetragonal phase at room temperature, as evidenced by Raman spectroscopy, thus improving the piezoelectric properties of these materials. The Raman spectra versus temperature showed 2 anomalies at temperatures of ~70 and ~270 to 330u000b0;C, associated with polymorphism and the ferro-paraelectric phase transitions, respectively. Active Raman scattering modes are observed above Curie temperature, indicating that the symmetry is not cubic but pseudocubic. This pseudocubic phase is associated with relaxor diffuseness, attributed to composition fluctuations. In addition, the piezoelectric properties were correlated with the tetragonality of the system, showing a linear dependence between the piezoelectric properties and the tetragonality ratio. The ceramics with c/a = 1.011 ratio exhibit enhanced electrical properties, d33 ~ 255 pC/N and kp ~ 0.47.
机译:烧结条件和化学计量对系统的晶体对称性和电性能的影响(K0.44 + xNa0.52Li0.04)(Nb0.86Ta0.10Sb0.04)O3 + x / 2,x = 0.06 0.00和0.04已被评估。通过降低K阳离子的浓度,可以更快地稳定四方相。如拉曼光谱法所证明的,增加烧结时间还导致室温下四方相的稳定化,从而改善了这些材料的压电性能。拉曼光谱对温度的变化表明,在〜70和〜270至330u000b0; C的温度下出现2个异常,分别与多态性和铁-顺电相变有关。在居里温度以上观察到主动拉曼散射模式,这表明对称性不是三次而是伪三次。该伪立方相与弛豫扩散相关,归因于成分波动。另外,压电性质与系统的四方性相关,显示出压电性质与四方性比率之间的线性相关性。 c / a = 1.011的陶瓷具有增强的电性能,d33〜255 pC / N和kp〜0.47。

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