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Ultrasound flow sensor based on arrays of piezoelectric transducers integrated in a composite

机译:超声波流量传感器,基于压电换能器阵列集成在复合材料中

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The functionalization of fiber-reinforced polymer composites by integration of piezoelectric transducers allows for both the measurement and the excitation of guided waves within the component. A common use for guided waves in composite components is nondestructive examination. In the presented work, however, the radiation of ultrasound waves from the surface of the component due to guided waves in the component is utilized. Glass fiber-reinforced polypropylene (GF/PP) plates with integrated arrays of piezoelectric macro fiber composite (MFC) transducers are used as ultrasound transmitter and receiver. The plates are then set up as facing walls of a rectangular duct and the sound transit times between the plates are measured. From the measured sound transit times, the velocity of gas flow inside the composite duct is determined. In that way, a flow sensor integrated in the walls of a flow channel, e.g. an air duct, made of composites is built. This paper focuses on the manufacturing of such an integrated flow sensor.
机译:通过压电换能器的整合纤维增强聚合物复合材料的官能化允许测量和部件内的引导波的激发。复合部件中的导向波的常用用途是无损检查。然而,在所提出的工作中,利用由于部件中的引导波而来自部件表面的超声波辐射。具有压电宏观纤维复合材料(MFC)传感器的集成阵列的玻璃纤维增​​强聚丙烯(GF / PP)板用作超声变送器和接收器。然后将板设置为面对矩形管道的壁,并且测量板之间的声音传递时间。从测量的声音传输时间,确定复合管道内的气流的速度。以这种方式,流动传感器集成在流动通道的壁中,例如。由复合材料制成的空气管道。本文重点介绍了这种集成流量传感器的制造。

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