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Large-area Piezoceramic Coating with IDT Electrodes for Ultrasonic Sensing Applications

机译:具有IDT电极的大面积压电陶瓷涂层,用于超声传感应用

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In the present paper, the ultrasonic strain sensing performance of large-area piezoceramic coating with Inter Digital Transducer (IDT) electrodes is studied. The piezoceramic coating is prepared using slurry coating technique and the piezoelectric phase is achieved by poling under DC field. To study the sensing performance of the piezoceramic coating with IDT electrodes for strain induced by the guided waves, the piezoceramic coating is fabricated on the surface of a beam specimen at one end and the ultrasonic guided waves are launched with a piezoelectric wafer bonded on another end. Often a wider frequency band of operation is needed for the effective implementation of the sensors in the Structural Health Monitoring (SHM) of various structures, for different types of damages. A wider frequency band of operation is achieved in the present study by considering the variation in the number of IDT electrodes in the contribution of voltage for the induced dynamic strain. In the present work, the fabricated piezoceramic coatings with IDT electrodes have been characterized for dynamic strain sensing applications using guided wave technique at various different frequencies. Strain levels of the launched guided wave are varied by varying the magnitude of the input voltage sent to the actuator. Sensitivity variation with the variation in the strain levels of guided wave is studied for the combination of different number of IDT electrodes. Piezoelectric coefficient e_(11) is determined at different frequencies and at different strain levels using the guided wave technique.
机译:在本文中,研究了大面积压电涂层与互数字换能器(IDT)电极的超声波应变感测性能。使用浆料涂布技术制备压电陶瓷涂层,通过在DC场下抛光来实现压电相。为了研究用IDT电极的压电陶瓷涂层对由引导波引起的菌株的压电涂层的感测性能,压电陶瓷涂层在一端的梁样本的表面上制造,并且通过压电晶片在另一端粘合的压电晶片发射了超声波引导波。通常,对于各种结构的结构健康监测(SHM)中的传感器有效地实现,需要更广泛的操作频带,用于不同类型的损坏。通过考虑诱导动态应变的电压贡献中的IDT电极数的变化,在本研究中实现了更广泛的操作带。在本作工作中,具有IDT电极的制造压电陶瓷涂层,其特征在于使用各种不同频率的引导波技术的动态应变感测应用。通过改变发送到致动器的输入电压的大小来改变发射的引导波的应变水平。研究了引导波的应变水平变化的灵敏度变化,用于不同数量的IDT电极的组合。使用引导波技术在不同频率和不同的应变水平处确定压电系数E_(11)。

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