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Air-coupled ultrasonic ferroelectret transducers with additional bias voltage for testing of composite structures

机译:带额外偏置电压的空气耦合超声波换铁器,用于测试复合结构

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Common air-coupled transducers for non-destructive testing consist of a piezocomposite material and several matching layers. Better acoustical matching to air is achieved by transducers based on charged cellular polypropylene (PP). This material has about hundred times lower acoustic impedance than any piezocomposite, having about the same piezoelectric coefficient. The piezoelectric properties of cellular PP are caused by the polarization of air cells. Alternatively, a ferroelectret receiver can be understood as a capacitive microphone with internal polarization creating permanent internal voltage. The sensitivity of the receiver can be increased by applying additional bias voltage. We present an ultrasonic receiver based on cellular PP including a high-voltage module providing bias voltage up to 2 kV. The application of bias voltage increased the signal by 12 to 15 dB with only 1 dB increase of the noise. This receiver was combined with a cellular PP transmitter in through transmission to inspect several test specimens consisting of glass-fiber-reinforced polymer face sheets and a porous closed-cell PVC core. These test specimens were inspected before and after load. Fatigue cracks in the porous PVC core and some fatigue damage in the face sheets were detected. These test specimens were originally developed to emulate a rotor blade segment of a wind power plant. Similar composite materials are used in lightweight aircrafts for the general aviation. The other inspected test specimen was a composite consisted of glass-fiber-reinforced polymer face sheets and a wooden core. The structure of the wooden core could be detected only with cellular PP transducers, while commercial air-coupled transducers lacked the necessary sensitivity. Measured on a 4-mm thick carbon-fiber-reinforced polymer plate, cellular PP transducers with additional bias voltage achieved a 32 dB higher signal-to-noise ratio than commercial air-coupled transducers.
机译:用于非破坏性测试的常见的空气耦合换能器由压电复合材料和几种配套层组成。通过基于带电的细胞聚丙烯(PP)的换能器实现更好地与空气匹配。该材料具有比任何压电复合材料更低的声阻抗大约百倍,具有截然不同的压电系数。细胞PP的压电性能是由空气电池的偏振引起的。或者,铁电器接收器可以被理解为具有内部偏振的电容麦克风,从而产生永久内部电压。通过施加额外的偏置电压可以增加接收器的灵敏度。我们基于蜂窝PP呈现超声波接收器,包括高压模块,该高压模块提供高达2kV的偏置电压。偏置电压的应用增加了12至15dB的信号,只有1 dB的噪声增加。通过传输将该接收器与蜂窝PP发射器相结合,以检查由玻璃纤维增​​强聚合物面板和多孔闭孔PVC芯组成的几种试样。在负载之前和之后检查这些试样。检测到多孔PVC核心中的疲劳裂缝和面板中的一些疲劳损坏。最初开发了这些测试标本以仿真风电厂的转子叶片段。类似的复合材料用于一般航空的轻质飞机。另一种检查的试样是一种复合材料,由玻璃纤维增​​强聚合物面板和木制芯组成。可以仅使用蜂窝PP换能器检测木芯的结构,而商用耦合换能器缺乏必要的灵敏度。在4mm厚的碳纤维增强聚合物板上测量,具有额外偏置电压的蜂窝PP换能器,比商业空气耦合换能器更高的信噪比达到32dB。

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