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Non-Contact Structural Damage Detection Using Magnetic Admittance Approach with Circuitry Tuning

机译:使用磁导率方法和电路调整的非接触式结构损伤检测

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One limitation of piezoelectric impedance/admittance approach is that the sensor is permanently fixed after it is bonded/embedded into the mechanical structure to be monitored. Recently, the magnetic transducer, which is essentially an electrical coil inserted with a permanent magnet, is explored for impedance/admittance-based damage detection. Since there is no direct contact between the magnetic sensor and the host structure, the magnetic impedance/admittance approach is capable of online health monitoring of structures with complicated geometries and boundaries. Also, the magnetic impedance/admittance sensor is moveable above the structure surface, which may reduce the number of sensors needed to cover a large structural area. In an earlier study a new magnetic impedance sensing scheme with circuitry integration is proposed, which can greatly enhance the signal-to-noise ratio and amplify the damage induced admittance change. In this research, we systematically study the sensor location on the performance of the magnetic impedance/admittance-based damage detection scheme with circuitry integration. By examining the resonant peaks in the circuitry impedance curves, the damage-induced change of circuitry admittance and the two-way magneto-mechanical coupling, the different amplification effects of the magnetic sensor on the dynamical responses around mechanical modes is investigated. The criteria of tuning the capacitance of the tunable capacitor to achieve significantly amplified admittance changes in a wide frequency range are also developed. Correlated numerical and experimental studies are carried out to validate our proposed tuning criteria.
机译:压电阻抗/导纳方法的局限性在于,将传感器粘结/嵌入到要监视的机械结构中之后,该传感器将被永久固定。近来,为了基于阻抗/导纳的损伤检测,探索了磁换能器,该电磁换能器本质上是插入有永磁体的电线圈。由于磁传感器与主体结构之间没有直接接触,因此磁阻抗/导纳方法能够对具有复杂几何形状和边界的结构进行在线健康监测。而且,磁阻抗/导纳传感器可在结构表面上方移动,这可以减少覆盖大结构区域所需的传感器数量。在较早的研究中,提出了一种新的具有电路集成的磁阻抗传感方案,该方案可以大大提高信噪比并放大损伤引起的导纳变化。在这项研究中,我们系统地研究了传感器位置与基于电路集成的基于磁阻抗/导纳的损伤检测方案的性能。通过检查电路阻抗曲线中的谐振峰值,电路导纳的损伤引起的变化以及双向磁-机械耦合,研究了磁传感器对机械模式周围动力响应的不同放大效应。还开发了在宽频率范围内调整可调电容器的电容以实现明显放大的导纳变化的标准。进行了相关的数值和实验研究,以验证我们提出的调整标准。

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