UMEDIA Research Group, Centre for Physical Technologies, Spanish National Research Council (CSIC), Madrid, Spain.
Sensors (Basel). 2013 May 10;13(5):5996-6013. doi: 10.3390/s130505996.
This work presents the design, construction and characterization of air-coupled piezoelectric transducers using 1-3 connectivity piezocomposite disks with a stack of matching layers being the outer one an active quarter wavelength layer made of polypropylene foam ferroelectret film. This kind of material has shown a stable piezoelectric response together with a very low acoustic impedance (<0.1 MRayl). These features make them a suitable candidate for the dual use or function proposed here: impedance matching layer and active material for air-coupled transduction. The transducer centre frequency is determined by the l/4 resonance of the polypropylene foam ferroelectret film (0.35 MHz), then, the rest of the transducer components (piezocomposite disk and passive intermediate matching layers) are all tuned to this frequency. The transducer has been tested in several working modes including pulse-echo and pitch-catch as well as wide and narrow band excitation. The performance of the proposed novel transducer is compared with that of a conventional air-coupled transducers operating in a similar frequency range.
本工作提出了使用具有 1-3 连通性压电器件的空气耦合压电换能器的设计、构建和特性,其中堆叠的匹配层作为外部的主动四分之一波长层由聚丙烯泡沫铁电体薄膜制成。这种材料表现出稳定的压电响应,同时具有非常低的声阻抗(<0.1 MRayl)。这些特性使它们成为这里提出的双重用途或功能的合适候选者:阻抗匹配层和空气耦合换能的有源材料。换能器的中心频率由聚丙烯泡沫铁电体薄膜的 1/4 共振决定(0.35 MHz),然后,换能器的其余组件(压电器件和无源中间匹配层)都调谐到这个频率。该换能器已经在多种工作模式下进行了测试,包括脉冲回波和纵波-横波检测以及宽带和窄带激励。所提出的新型换能器的性能与在类似频率范围内工作的传统空气耦合换能器进行了比较。