首页> 外文会议>IEEE Ultrasonics Symposium >Stable resonance characteristics in CuO-modified lead-free 0.94(K_(0.5)Na_(0.5))NbO_(3)-0.06LiNbO_(3) ceramics sintered at optimal temperature
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Stable resonance characteristics in CuO-modified lead-free 0.94(K_(0.5)Na_(0.5))NbO_(3)-0.06LiNbO_(3) ceramics sintered at optimal temperature

机译:CuO改性无铅0.94(K_(0.5)NA_(0.5))NBO_(3)-0.06LINGO_(3)陶瓷在最佳温度下陶瓷稳定的共振特性

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Lead-free piezoelectric ceramics with the nominal composition of [(K_(0.5)Na_(0.5))_(0.94)Li_(0.06)]NbO_(3)+xmol(percent)CuO [KNLN+ xmol(percent)CuO] had been synthesized by conventional solid-state sintering. Effects of the addition of CuO on the phase structure, micro-morphology evolution and electric properties of the ceramics were investigated. The ceramics synthesized at 1000-1060 deg C showed a phase transition from orthorhombic to tetragonal symmetry, which is analogous to the morphtropic phase boundary (MPB). Because of this polymorphic phase transition, high piezoelectric coefficient d_(33) approx 206pC/N and electromechanical coupling factor k_(p) approx 31percent were obtained in the pure KNLN ceramic sintered at 1060 deg C, however, the mechanical quality factor Q_(m), a key parameter for frequency devices, was relatively low. In order to improve the resonance characteristics, CuO had been doped in KNLN ceramics. Our results showed that the doping of CuO was effective in promoting the densification of the ceramics and hardening of piezoelectric properties.
机译:具有额定组成的无铅压电陶瓷[(k_(0.5)na_(0.5))_(0.94)li_(0.06)] NbO_(3)+ xmol(百分比)CuO [knln + xmol(百分比)cuo]通过常规固态烧结合成。研究了CuO对陶瓷的相结构,微观形态演化和电性能的影响。在1000-1060℃下合成的陶瓷显示出从正向对称的正常对称的相转变,这与变形相边界(MPB)类似。由于该多态性相变,在1060℃的纯knln陶瓷中获得大约206pc / n和机电耦合因子K_(p)的高压电系数D_(33),但是在1060℃下烧结的纯knln陶瓷,然而,机械质量因子q_(m ),频率设备的关键参数相对较低。为了改善共振特性,CUO已被掺杂在knln陶瓷中。我们的研究结果表明,CuO的掺杂有效促进陶瓷的致密化和压电性能的硬化。

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