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采用双轴驱动技术高效驱动压电换能器。

Efficient Driving of Piezoelectric Transducers Using a Biaxial Driving Technique.

作者信息

Pichardo Samuel, Silva Rafael R C, Rubel Oleg, Curiel Laura

机构信息

Thunder Bay Regional Research Institute, Thunder Bay, Ontario, Canada; Electrical Engineering, Lakehead University, Thunder Bay, Ontario, Canada.

Electrical Engineering, Lakehead University, Thunder Bay, Ontario, Canada.

出版信息

PLoS One. 2015 Sep 29;10(9):e0139178. doi: 10.1371/journal.pone.0139178. eCollection 2015.

Abstract

Efficient driving of piezoelectric materials is desirable when operating transducers for biomedical applications such as high intensity focused ultrasound (HIFU) or ultrasound imaging. More efficient operation reduces the electric power required to produce the desired bioeffect or contrast. Our preliminary work [Cole et al. Journal of Physics: Condensed Matter. 2014;26(13):135901.] suggested that driving transducers by applying orthogonal electric fields can significantly reduce the coercivity that opposes ferroelectric switching. We present here the experimental validation of this biaxial driving technique using piezoelectric ceramics typically used in HIFU. A set of narrow-band transducers was fabricated with two sets of electrodes placed in an orthogonal configuration (following the propagation and the lateral mode). The geometry of the ceramic was chosen to have a resonance frequency similar for the propagation and the lateral mode. The average (± s.d.) resonance frequency of the samples was 465.1 (± 1.5) kHz. Experiments were conducted in which each pair of electrodes was driven independently and measurements of effective acoustic power were obtained using the radiation force method. The efficiency (acoustic/electric power) of the biaxial driving method was compared to the results obtained when driving the ceramic using electrodes placed only in the pole direction. Our results indicate that the biaxial method increases efficiency from 50% to 125% relative to the using a single electric field.

摘要

在操作用于生物医学应用(如高强度聚焦超声(HIFU)或超声成像)的换能器时,需要高效驱动压电材料。更高效的操作可降低产生所需生物效应或对比度所需的电功率。我们的初步工作[科尔等人。《物理学杂志:凝聚态物质》。2014年;26(13):135901。]表明,通过施加正交电场驱动换能器可显著降低阻碍铁电开关的矫顽力。我们在此展示使用HIFU中常用的压电陶瓷对这种双轴驱动技术进行的实验验证。制作了一组窄带换能器,其中两组电极呈正交配置(沿传播方向和横向模式)。选择陶瓷的几何形状,使其传播模式和横向模式的共振频率相似。样品的平均(±标准差)共振频率为465.1(±1.5)kHz。进行了实验,其中每对电极独立驱动,并使用辐射力法获得有效声功率的测量值。将双轴驱动方法的效率(声功率/电功率)与仅在极向放置电极驱动陶瓷时获得的结果进行了比较。我们的结果表明,相对于使用单电场,双轴方法可将效率提高50%至125%。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a78b/4587744/d2004531160a/pone.0139178.g001.jpg

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