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首页> 外文期刊>Journal of Materials Science >Microstructural effects on the phase transitions and the thermal evolution of elastic and piezoelectric properties in highly dense, submicron-structured NaNbO_3 ceramics
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Microstructural effects on the phase transitions and the thermal evolution of elastic and piezoelectric properties in highly dense, submicron-structured NaNbO_3 ceramics

机译:微观结构对高密度亚微米结构的NaNbO_3陶瓷的相变以及弹性和压电性能的热演化的影响

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The dielectric, piezoelectric and elastic coefficients, as well as the electromechanical coupling factors, of NaNbO_3 submicron-structured ceramics have been obtained by an automatic iterative method from impedance measurements at resonance. Poled thin discs were measured from room temperature up to the depoling one, close to 300 °C. Dielectric thermal behaviour was determined also for unpoled ceramics up to the highest phase transition temperature. Ceramics were processed by hot-pressing from mechanically activated precursors. Microstructural effects on the properties are discussed. The suppression of the classical maximum in dielectric permittivity in unpoled ceramics at the phase transition at 370 °C was found when a bimodal distribution of grain sizes, with a population of average grain size of 110 nm in between much coarser grains, is observed. The appearance of a phase transition at 150 °C took place when Na vacancies are minimised. The occurrence of a non-centrosymmetric, ferroelectric phase, in the unpoled ceramic from room temperature to ~300 °C, highly polarisable resulting in high ferro-piezoelectric properties was also observed in the ceramic which presents grain size below 160 nm. Maximum values of k _p = 14%, d _(31) = -8.7 × 10~(-12) C N~(-1) and N _p = 3772 Hz m at room temperature, and k _p = 18%, d _(31) = -25.4 × 10~(-12) C N~(-1) and N _p = 3722 Hz m at 295 °C were achieved in the best processing conditions of the ceramics.
机译:NaNbO_3亚微米结构陶瓷的介电系数,压电系数和弹性系数以及机电耦合系数已通过自动迭代方法从共振时的阻抗测量中获得。在室温至接近300°C的温度范围内测量极薄的光盘。还确定了直至最高相变温度的未极化陶瓷的介电热行为。通过机械活化的前体进行热压处理陶瓷。讨论了对性能的微观结构影响。在370°C的相变条件下,当观察到双峰分布的晶粒(在较粗晶粒之间平均晶粒尺寸为110 nm)出现双峰分布时,发现未极化陶瓷的介电常数经典最大值受到抑制。当Na空位最小时,在150°C时会出现相变。从室温到约300°C的未极化陶瓷中,出现了非中心对称的铁电相,在具有160 nm以下晶粒的陶瓷中也观察到了高度可极化的高铁压电性能。室温下k _p = 14%,d _(31)= -8.7×10〜(-12)CN〜(-1)的最大值,N _p = 3772 Hz m,k _p = 18%,d _在陶瓷的最佳加工条件下,在295°C时可达到(31)= -25.4×10〜(-12)CN〜(-1)和N _p = 3722 Hz m。

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