首页> 外文OA文献 >Thermal depolarization of lead-free (Bi0.5Na0.5)0.94Ba0.06TiO3 piezoceramics monitored by shear resonance of thickness-poled plates
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Thermal depolarization of lead-free (Bi0.5Na0.5)0.94Ba0.06TiO3 piezoceramics monitored by shear resonance of thickness-poled plates

机译:通过厚度极化板的剪切共振监测无铅(Bi0.5Na0.5)0.94Ba0.06TiO3压电陶瓷的热去极化

摘要

Submicron-structured (Bi0.5Na0.5)0.94Ba0.06TiO3 ceramics, at the Morphotropic Phase Boundary of the solid solution, were prepared from nanometric powder synthesized by sol gel auto-combustion at 500?C. Samples were obtained by hot-pressing (800?C-2h) and subsequent recrystallization at moderate temperature (1050?C-1h) [1]. Accurate resonance measurements at the uncoupled shear mode of thickness-poled plates and their analysis by Alemany software [2] were carried out to obtain electromechanical coupling factors (k15) and piezoelectric (e15, d15) and elastic (sE55)coefficients. Evolution of these as a function of the temperature was determined to study the depolarization process. Results show that irreversible depoling starts from a temperature higher than 120?C. Shear resonance modes are measurable well above the reported depolarization temperature (100?C). A value of d15=105 pC.N-1 was measured at 160?C. This is most probably due to a difuse phase transition from a field-induced ferroelectric (FE) phase to the low temperature non-polar phase at zero field (LTNPZF) phase. The macroscopic ferro-piezoelectricity observed may arise from the coexistence of the FE phase at the nano-scale in the LTNPZF phase
机译:由固溶体的形态相界处的亚微米结构的(Bi0.5Na0.5)0.94Ba0.06TiO3陶瓷,是通过在500°C下通过溶胶凝胶自动燃烧合成的纳米粉末制备的。通过热压(800?C-2h)和随后在中等温度(1050?C-1h)下重结晶获得样品[1]。进行了厚度极板解耦剪切模式下的精确共振测量,并通过Alemany软件进行了分析[2],以获得机电耦合系数(k15)和压电(e15,d15)和弹性(sE55)系数。确定这些随温度的变化,以研究去极化过程。结果表明不可逆极化是从高于120℃的温度开始的。测得的剪切共振模式远高于报道的去极化温度(100°C)。在160℃下测得d15 = 105pC.N-1。这很可能是由于在零场(LTNPZF)相从场感应铁电(FE)相到低温非极性相的扩散相变所致。观察到的宏观铁压电性可能是由于LTNPZF相中纳米级的FE相共存

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