Ealo Joao L, Seco Fernando, Jimenez Aantonio R
Insituto de Automática Industrial, Consejo Superior de Investigaciones Cientificas, Arganda del Rey, Madrid, Spain.
IEEE Trans Ultrason Ferroelectr Freq Control. 2008 Apr;55(4):919-29. doi: 10.1109/TUFFC.2008.727.
In this work, we explore the possibilities of electromechanical film (EMFi) as a new material for developing broadband transducers for ultrasonic air applications. The advantages of the EMFi film are its wide usable frequency range and easiness to use, making it highly suitable for self made, customizable ultrasonic sensors. This paper presents theoretical and experimental information focused on the needs of the sensor's end user, namely, frequency response, actual dynamic mass and Young's modulus, bandwidth, sensitivity, electromechanical dynamical model, acoustic response, and directivity. It is found empirically that the behavior of the film as an almost ideal piston-like acoustic source permits accurate prediction of the characteristics of transducers built on a developable surface. The results obtained represent the first step to more complex geometries, and, ultimately, to completely customizable field ultrasonic transducers.
在这项工作中,我们探索了将机电薄膜(EMFi)作为一种新型材料用于开发适用于超声空气应用的宽带换能器的可能性。EMFi薄膜的优点在于其可用频率范围广且易于使用,这使其非常适合自制的、可定制的超声传感器。本文围绕传感器终端用户的需求,呈现了理论和实验信息,这些需求包括频率响应、实际动态质量和杨氏模量、带宽、灵敏度、机电动力学模型、声学响应以及方向性。通过实验发现,该薄膜作为近乎理想的活塞状声源的特性,使得基于可展开表面构建的换能器的特性能够得到准确预测。所获得的结果是迈向更复杂几何形状的第一步,并最终迈向完全可定制的现场超声换能器。