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Processing and electromechanical properties of lead zirconate titanate thick films by electrophoretic deposition

机译:电泳沉积钛酸锆钛酸铅厚膜的制备及其机电性能

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摘要

Electrophoretic deposition (EPD) was used for the fabrication of piezoelectric [lead zirconate titanate (PZT)] thick films on alumina substrates. The EPD was performed in constant current mode from an ethanol based suspension consisting of PZT and PbO particles. The influence of addition of ethyl cellulose (EC) and sintering temperature on the thickness, density, homogeneity and functional response of PZT thick films is studied. Results show that the highest electromechanical performance is obtained for the PZT thick films sintered at 900 or 950 degrees C, with a thickness coupling factor k(t) of 50%. The addition of EC influenced the thickness of the PZT thick films but had only minor effect on the porosity content for sintering temperatures over 900 degrees C. Moreover, elastic constants of the thick films based on the suspension with EC were lower, which leads to lower acoustic impedance (15 MRa) while maintaining high (k(t)) value. In this last case, a better acoustic matching can be expected with propagation media such as water or biological tissues for ultrasound medical imaging applications.
机译:电泳沉积(EPD)用于在氧化铝基板上制造压电[锆钛酸铅(PZT)]厚膜。 EPD是在恒流模式下从由PZT和PbO颗粒组成的乙醇悬浮液中进行的。研究了乙基纤维素(EC)的添加量和烧结温度对PZT厚膜厚度,密度,均匀性和功能响应的影响。结果表明,在900或950摄氏度下烧结的PZT厚膜具有最高的机电性能,厚度耦合系数k(t)为50%。 EC的添加影响了PZT厚膜的厚度,但对烧结温度超过900摄氏度的孔隙率影响很小。此外,基于具有EC悬浮液的厚膜的弹性常数较低,导致较低声阻抗(15 MRa),同时保持高(k(t))值。在后一种情况下,可以预期与传播介质(例如水或生物组织)在超声医学成像应用中有更好的声学匹配。

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