...
首页> 外文期刊>Ultrasonics, Ferroelectrics and Frequency Control, IEEE Transactions on >The improvement of dynamic characteristics of ultrasonic therapeutic transducers using fine-grain PZT-based piezoceramics
【24h】

The improvement of dynamic characteristics of ultrasonic therapeutic transducers using fine-grain PZT-based piezoceramics

机译:使用基于PZT的细粒压电陶瓷改善超声治疗换能器的动态特性

获取原文
获取原文并翻译 | 示例
           

摘要

Optimizing the dynamic resonant characteristics of ultrasonic therapeutic transducers depends most importantly on fine-grain piezoceramics with good resonant properties. In this paper, we prepare and compare modified Pb/sub 0.99/Sr/sub 0.01/[0.03(Mn/sub 1/3/Nb/sub 2/3/)-0.97(Zr/sub 0.51/Ti/sub 0.49/)]O/sub 3/ piezoceramics with 0.1 wt% CaCO/sub 3/ and 0.8 wt% PbO additives (PMZT3) synthesized by B-oxides precursor (BO) and conventional ceramic mixed-oxide methods (MO). Our experimental results show that the BO-type piezoceramics have better grain microstructure and better material properties [e.g., d/sub 33/= 340 pc/N, k/sub t/= 0.52, Q/sub m/= 1250, temperature coefficient of change rate of resonant frequency (TCF) = 0.01%/°C, and temperature coefficient of change rate of clamped capacitance (TCC) = 0.18%/°C]. We construct 1-MHz transducers using our BO and MO types of piezoceramics and examine their dynamic resonant characteristics as the transducers are driven by a power driver with open-loop control. Results show that the transducers with the BO-type piezoceramics have better dynamic characteristics, such as time stability (e.g., aging rate of resonant frequency at thickness mode = 0.26%/decade cycle, and aging rate of clamped capacitance = 0.55%/decade cycle) and temperature stability as BO-type piezoceramics. Furthermore, we observe that the clamped capacitance variation has more influence on the transducer dynamic characteristics than the resonant frequency variation, and we verify the observation from the partial derivative ratio of the transfer function derived by a simulated ultrasonic equivalent circuit system. It is concluded that the BO-type piezoceramics are better candidates than the MO-type samples for obtaining optimum dynamic resonant characteristics in ultrasonic therapeutic transducers.
机译:优化超声治疗换能器的动态共振特性最重要的是取决于具有良好共振特性的细晶粒压电陶瓷。在本文中,我们准备并比较了改良的Pb / sub 0.99 / Sr / sub 0.01 / [0.03(Mn / sub 1/3 / Nb / sub 2/3 /)-0.97(Zr / sub 0.51 / Ti / sub 0.49 / )] O / sub 3 /压电陶瓷,其中含有0.1 wt%的CaCO / sub 3 /和0.8 wt%的PbO添加剂(PMZT3),是通过B-氧化物前体(BO)和常规陶瓷混合氧化物方法(MO)合成的。我们的实验结果表明,BO型压电陶瓷具有更好的晶粒微结构和更好的材料性能[例如,d / sub 33 / = 340 pc / N,k / sub t / = 0.52,Q / sub m / = 1250,温度系数谐振频率(TCF)的变化率= 0.01%/°C,钳位电容(TCC)的温度变化率= 0.18%/°C]。我们使用BO和MO类型的压电陶瓷构造1-MHz传感器,并检查它们的动态谐振特性,因为这些传感器是由具有开环控制的电源驱动器驱动的。结果表明,具有BO型压电陶瓷的换能器具有更好的动态特性,例如时间稳定性(例如,厚度模式下谐振频率的老化率= 0.26%/十年周期,而钳位电容的老化率= 0.55%/十年周期)。 )和温度稳定性如BO型压电陶瓷。此外,我们观察到钳位电容变化比共振频率变化对换能器动态特性的影响更大,并且我们从模拟超声等效电路系统导出的传递函数的偏导数比率中验证了这一观察结果。结论是,在超声治疗换能器中,BO型压电陶瓷比MO型样品更适合用于获得最佳动态共振特性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号