Hosono Yasuharu, Yamashita Yohachi
Advanced Electron Devices Laboratory, Corporate Research and Development Center, Toshiba Corporation, Kawasaki, Japan.
IEEE Trans Ultrason Ferroelectr Freq Control. 2005 Oct;52(10):1823-8. doi: 10.1109/tuffc.2005.1561638.
Complex system ceramics Pb(Sc(1/2)Nb(1/2))O3-Pb(Mg(1/3)Nb(2/3))O3-Pb(Ni(1/2)Nb(1/2))O3-(Pb0.965,Sr0.035) (Zr,Ti)O3 (PSN-PMN-PNN-PSZT abbreviated PSMNZT) have been synthesized by the conventional technique, and dielectric and piezoelectric properties of the ceramics have been investigated for ultrasonic medical transducers. High capacitances of the transducers are desired in order to match the electrical impedance between the transducers and the coaxial cable in array probes. Although piezoelectric ceramics that have high dielectric constants (epsilon33t/epsilon0 > 5000, k'33 < 70%) are produced in many foundries, the dielectric constants are insufficient. However, we have reported that low molecular mass B-site ions in the lead-perovskite structures are important in realizing better dielectric and piezoelectric properties. We focused on the complex system ceramics PSMNZT that consists of light B-site elements. The maximum dielectric constant, epsilon33T/epsilon0 = 7, 200, was confirmed in the ceramics, where k'33 = 69%, d33 = 940 pC/N, and T(c) = 135 degrees C were obtained. Moreover, pulse-echo characteristics were simulated using the Mason model. The PSMNZT ceramic probe showed echo amplitude about 5.5 dB higher than that of the conventional PZT ceramic probe (PZT-5H type). In this paper, the electrical properties of the PSMNZT ceramics and the simulation results for pulse-echo characteristics of the phased-array probes are introduced.
采用传统工艺合成了复杂体系陶瓷Pb(Sc(1/2)Nb(1/2))O3 - Pb(Mg(1/3)Nb(2/3))O3 - Pb(Ni(1/2)Nb(1/2))O3 - (Pb0.965,Sr0.035)(Zr,Ti)O3(PSN - PMN - PNN - PSZT,简称为PSMNZT),并对该陶瓷用于超声医学换能器的介电和压电性能进行了研究。为了使阵列探头中的换能器与同轴电缆之间的电阻抗相匹配,需要换能器具有高电容。尽管许多工厂生产出了具有高介电常数(ε33t/ε0 > 5000,k'33 < 70%)的压电陶瓷,但其介电常数仍不足。然而,我们已经报道过,铅钙钛矿结构中的低分子量B位离子对于实现更好的介电和压电性能很重要。我们聚焦于由轻质B位元素组成的复杂体系陶瓷PSMNZT。在该陶瓷中确认了最大介电常数ε33T/ε0 = 7200,其中k'33 = 69%,d33 = 940 pC/N,居里温度T(c) = 135℃。此外,使用梅森模型模拟了脉冲回波特性。PSMNZT陶瓷探头的回波幅度比传统的PZT陶瓷探头(PZT - 5H型)高约5.5 dB。本文介绍了PSMNZT陶瓷的电学性能以及相控阵探头脉冲回波特性的模拟结果。