传感器
声学
压电
信号(编程语言)
振幅
压力传感器
休克(循环)
电压
冲击波
脉搏(音乐)
材料科学
计算机科学
物理
光学
电气工程
工程类
机械
内科学
程序设计语言
热力学
医学
作者
Thomas Dreyer,Marko Liebler,Rainer Riedlinger,Siegfried Ginter
摘要
The application of focused intense sound pulses to treat several orthopedic diseases has gained in importance during the past years. Self-focusing piezoelectric transducers known from ESWL are not well suited for this purpose due to their size. Therefore compact transducers have to be designed. This implies an increase of the pressure pulse amplitude generated at the radiating surface. A stacked placement of two piezoelectric layers driven by two high-voltage pulses with an adjustable delay accomplishes this. Several designs are presented here representing transducers of different sizes. In principle piezoelectric transducers have the ability to vary the pressure pulse shape to a wider extent than other shock wave sources. Based on FEM simulations of the transducer the influence of some driving parameters, like a variation of the interpulse delay or shape of the driving voltage, on the resulting focal pressure signal is demonstrated. The results show the feasibility to control some parameters of the signal, for example the peak negative pressure amplitude. This possibility could provide new aspects in basic research as well as in clinical applications.
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