通过中温交流极化和电平行堆叠增强200 kHz PMN-PT晶体换能器性能。

IF 3 2区 工程技术 Q1 ACOUSTICS
Zibo Jiang, Kaijia Wu, Zuo-Guang Ye
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引用次数: 0

摘要

尽管弛豫铁电晶体具有优异的压电性能,但由于压电材料的弱矫顽力场造成的低灵敏度和低灵敏度,使得弛豫铁电晶体在中低频超声换能器中尚未得到广泛应用。在本研究中,设计并制作了一种新型换能器,将两个极性相反的PMN-0.27PT晶体在优化的极化条件下堆叠,该换能器具有增强的元件电容和改善的压电性能,从而获得更好的灵敏度和更宽的带宽。研究发现,在65℃(MT-LV ACP)介质温度下,采用优化条件(方波205 Vrms/mm, 0.1 Hz 3个周期),晶体的相对介电常数比常温下的常规直流极化(RT DCP)提高了16%,机电耦合系数提高了6%,压电系数提高了27%。用MT-LV ACP单层PMN-0.27PT晶体制作的200 kHz单元件换能器,与RT DCP单层PMN-0.27PT晶体制作的换能器相比,带宽提高了6.4%,接收器自由场电压响应提高了23.6%。此外,由厚度相同但极化方向相反的两个堆叠PMN-0.27PT薄片制成的换能器不仅产生与由相同高度的单层晶体制成的换能器相似的中心频率和带宽,而且产生四倍元电容,从而导致更好的电阻抗匹配,从而使灵敏度提高了224%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Enhanced Performance of 200 kHz PMN-PT Crystal Transducers through Medium Temperature AC Poling and Electrically Parallel Stacking.

Despite their excellent piezoelectric properties, relaxor-based ferroelectric crystals have not been widely used in medium to low frequency ultrasound transducers because of the low sensitivity arising from a low capacitance and the low signal intensity due to a weak coercive field of the piezoelectric materials. In this study, a new type of transducer has been designed and fabricated by stacking two PMN-0.27PT crystals of opposite polarizations poled under optimized poling conditions, which exhibits an enhanced element capacitance and improved piezoelectric performance, leading to a better sensitivity and a broader bandwidth. It is found that using the optimized condition of low voltage alternative current poling (square wave 205 Vrms/mm, 3 cycles at 0.1 Hz) at a medium temperature of 65°C (MT-LV ACP), the relative permittivity of the crystal is increased by 16%, the electromechancial coupling factor increased by 6% and the piezoelectric coefficient increased by 27%, compared with the conventional direct current poling at room temperature (RT DCP). The 200 kHz single element transducer fabricated from the MT-LV ACP single layer PMN-0.27PT crystal exhibits a -6dB bandwidth that is increased by 6.4% and a receiver free field voltage response that is increased by 23.6%, respectively, compared with a similar transducer made from RT DCP single layer PMN-0.27PT. In addition, the transducer fabricated from two stacked PMN-0.27PT platelets of identical thicknesses but opposite poling directions not only produces similar center frequency and bandwidth as the transducer made from single layer crystal of the same height, but also produces quadrupled element capacitance, which leads to a much better electrical impedance match, resulting in a sensitivity increase up to 224%.

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来源期刊
CiteScore
7.70
自引率
16.70%
发文量
583
审稿时长
4.5 months
期刊介绍: IEEE Transactions on Ultrasonics, Ferroelectrics and Frequency Control includes the theory, technology, materials, and applications relating to: (1) the generation, transmission, and detection of ultrasonic waves and related phenomena; (2) medical ultrasound, including hyperthermia, bioeffects, tissue characterization and imaging; (3) ferroelectric, piezoelectric, and piezomagnetic materials, including crystals, polycrystalline solids, films, polymers, and composites; (4) frequency control, timing and time distribution, including crystal oscillators and other means of classical frequency control, and atomic, molecular and laser frequency control standards. Areas of interest range from fundamental studies to the design and/or applications of devices and systems.
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