Shuyu Lin
Institute of Applied Acoustics, Shaanxi Normal University, Xian, Shaanxi, 710062, People's Republic of China.
J Acoust Soc Am. 2004 Jan;115(1):182-6. doi: 10.1121/1.1635836.
The resonance and antiresonance frequency, the effective electromechanical coupling coefficient, and the mechanical quality factor of a sandwich piezoelectric ultrasonic transducer are studied and optimized. The effect of the thickness of thick piezoelectric element electrodes on the transducer performance is analyzed. The effect of the length and position of the piezoelectric elements in the transducer is also studied. It is shown that, although using thick electrodes is beneficial for releasing heat produced by the piezoelectric elements, the effective electromechanical coupling coefficient and the mechanical quality factor are reduced. The length and the position of the piezoelectric elements affect the performances of the transducer. Increasing the length of the piezoelectric elements decreases the mechanical quality factor, but the effective electromechanical coupling coefficient increases. When the length reaches a certain value, the effective electromechanical coupling coefficient reaches a maximum value. When the piezoelectric elements are located at the geometrical center or the displacement node, the effective electromechanical coupling coefficient and the mechanical quality factor are maximized.
对夹心式压电超声换能器的共振和反共振频率、有效机电耦合系数以及机械品质因数进行了研究和优化。分析了厚压电元件电极厚度对换能器性能的影响。还研究了换能器中压电元件的长度和位置的影响。结果表明,虽然使用厚电极有利于释放压电元件产生的热量,但有效机电耦合系数和机械品质因数会降低。压电元件的长度和位置会影响换能器的性能。增加压电元件的长度会降低机械品质因数,但有效机电耦合系数会增加。当长度达到一定值时,有效机电耦合系数达到最大值。当压电元件位于几何中心或位移节点时,有效机电耦合系数和机械品质因数最大。