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Enhancing the bandwidth of piezoelectric composite transducers for air-coupled non-destructive evaluation

机译:增强压电复合换能器的带宽,以进行空气耦合无损评估

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摘要

This paper details the development of a novel method for increasing the operational bandwidth of piezocomposites without the need for lossy backing material, the aim being to increase fractional bandwith by geometrical design. Removing the need for lossy backing materials, should in turn increase the transmit efficiency in the desired direction of propagation. Finite element analysis has been employed to determine the mode of operation of the new piezocomposite devices and shows good correlation with that derived experimentally. Through a series of practical and analytical methods it has been shown that additional thickness mode resonances can be introduced into the structure by a simple machining process. The shaped composites described in this paper offer increased operational bandwidth. A simple example of a two step thickness design is described to validate and illustrate the principle. A more complex conical design is presented that illustrates a possible tenfold increase in bandwidth from 30kHz to 300kHz, operating in air without backing. An illustration of the applicability of this type of transducer technology for frequency agile guided mode non-destructive evaluation is then presented.
机译:本文详细介绍了一种新的方法的开发,该方法无需使用有损耗的背衬材料即可增加压电复合材料的工作带宽,其目的是通过几何设计来增加分数带宽。消除对有损耗的背衬材料的需求,应反过来又可以在所需的传播方向上提高传输效率。有限元分析已被用来确定新型压电复合材料器件的工作模式,并显示出与实验得出的良好相关性。通过一系列实用和分析方法,已经表明,可以通过简单的机加工工艺将额外的厚度模式共振引入结构。本文所述的成型复合材料可提供更高的工作带宽。描述了一个两步厚度设计的简单示例,以验证和说明原理。提出了一种更复杂的圆锥形设计,该设计说明了在无背衬的情况下在空中工作时带宽可能从30kHz增加到300kHz的十倍。然后给出了这种换能器技术对频率捷变制导模式无损评估的适用性说明。

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