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Effect of poling temperature on piezoelectricity of CaZrO3-modified (K, Na)NbO3-based lead-free ceramics

机译:极化温度对CaZrO3改性(K,Na)NbO3基无铅陶瓷压电性的影响

摘要

Electrical poling is indispensable for endowing isotropic ferroelectric polycrystals with a net macroscopic polarization and hence piezoelectricity. However, little attention has been paid to the optimization of poling conditions in (K, Na)NbO3-based ceramics with a polymorphic phase transition. This study investigated the electrical properties of CaZrO3-modified (K, Na, Li)(Nb, Ta)O3lead-free piezoceramics as a function of the poling temperature. Peak piezoelectric coefficient d33of 352 ± 7 pC/N and planar electromechanical coupling factor kpof 0.47 were obtained at the optimized poling temperature of 120°C, which crosses the polymorphic phase transition regime. In-depth analysis of the asymmetric polarization hysteresis loops and bipolar strain curves uncovered striking analogy between electrical poling and unipolar cycling in the current system, which is attributed to a competition between domain reorientation and space charge accumulation.
机译:电极化对于赋予净宏观极化并因此具有压电性的各向同性铁电多晶是必不可少的。然而,很少有人关注具有多态相变的(K,Na)NbO3基陶瓷的极化条件的优化。这项研究调查了CaZrO3改性的(K,Na,Li)(Nb,Ta)O3无铅压电陶瓷的电性能随极化温度的变化。在120°C的最佳极化温度下,获得了352±7 pC / N的峰值压电系数d33和0.47的平面机电耦合系数kpof,这与多态相变规律相交。对不对称极化磁滞回线和双极应变曲线的深入分析揭示了当前系统中电极化和单极循环之间的惊人相似之处,这归因于畴重新定向和空间电荷积累之间的竞争。

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