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Effects of AC- and DC-bias field poling on piezoelectric properties of Bi-based ceramics

机译:交流和直流偏置场极化对Bi基陶瓷压电性能的影响

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The structural and electrical properties of 0.75BiFeOsub3/sub–0.25BaTiOsub3/sub (BF25BT) ceramics, with and without heat treatment, were investigated. The polished and cut BF25BT ceramics were thermally annealed at 800°C for 20 h and then quenched in water at room temperature (heat-treated ceramics). The P – E hysteresis loop and S – E curve were significantly improved after the heat treatment process. Meanwhile, the leakage current density at an electric field of 50 kV/cm was reduced from 4.847 × 10sup?7/sup (as-sintered ceramics) to 3.213 × 10sup?8/sup A/cmsup2/sup (heat-treated ceramics). The heat-treated ceramics was poled at 120°C with applying a DC-bias field of 50 kV/cm, and the maximum phase angle was ?39°, which was evaluated from the analysis of frequency-dependence of impedance and phase angle. Because of the small maximum phase angle obtained by poling under DC-bias field alone, the poling process was modified; that is, an AC-bias field was applied prior to the DC-bias field poling. The ceramics poled with the modified poling procedure exhibited the maximum phase angle of 63°. The appreciable increase of the maximum phase angle suggested the higher degree of domain alignment than that of its counterpart, and the effect was explained in terms of improved domain switching. The piezoelectric constant d sub33/sub was increased twice with adopting the modified poling process, which signifies that poling with both AC- and DC-bias field is highly effective in the lead-free Bi-based systems.
机译:研究了0.75BiFeO 3 –0.25BaTiO 3 (BF25BT)陶瓷在经过和不经过热处理的情况下的结构和电性能。将经过抛光和切割的BF25BT陶瓷在800°C的温度下退火20小时,然后在室温下于水中淬火(热处理的陶瓷)。经过热处理后,P – E磁滞回线和S – E曲线得到了显着改善。同时,在50 kV / cm的电场下,漏电流密度从4.847×10 ?7 (烧结陶瓷)降低到3.213×10 ?8 A / cm 2 (热处理陶瓷)。通过施加50kV / cm的DC偏置电场将热处理过的陶瓷极化在120℃,并且最大相角为约39°,这是通过分析阻抗和相角的频率依赖性来评估的。由于仅在直流偏置磁场下通过极化获得的最大相角很小,因此对极化过程进行了修改;也就是说,在直流偏置场极化之前先施加一个交流偏置场。用改进的极化程序极化的陶瓷具有63°的最大相角。最大相角的明显增加表明畴对准的程度高于其对应物,并且用改进的畴切换来解释其效果。压电常数d 33 通过改进的极化过程增加了两倍,这表明在无铅Bi基体系中,具有AC和DC偏压场的极化都非常有效。

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