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Rotor damage detection by using piezoelectric impedance

机译:使用压电阻抗检测转子损坏

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Rotor is a core component of rotary machinery. Once the rotor has the damage, it may lead to a major accident. Thus the quantitative rotor damage detection method based on piezoelectric impedance is studied in this paper. With the governing equation of piezoelectric transducer (PZT) in a cylindrical coordinate, the displacement along the radius direction is derived. The charge of PZT is calculated by the electric displacement. Then, by the use of the obtained displacement and charge, an analytic piezoelectric impedance model of the rotor is built. Given the circular boundary condition of a rotor, annular elements are used as the analyzed objects and spectral element method is used to set up the damage detection model. The Electro-Mechanical (E/M) coupled impedance expression of an undamaged rotor is deduced with the application of a low-cost impedance test circuit. A Taylor expansion method is used to obtain the approximate E/M coupled impedance expression for the damaged rotor. After obtaining the difference between the undamaged and damaged rotor impedance, a rotor damage detection method is proposed. This method can directly calculate the change of bending stiffness of the structural elements, it follows that the rotor damage can be effectively detected. Finally, a preset damage configuration is used for the numerical simulation. The result shows that the quantitative damage detection algorithm based on spectral element method and piezoelectric impedance proposed in this paper can identify the location and the severity of the damaged rotor accurately.
机译:转子是旋转机械的芯部件。一旦转子有损坏,它可能导致重大事故。因此,本文研究了基于压电阻抗的定量转子损伤检测方法。利用压电换能器(PZT)的控制方程在圆柱坐标中,导出沿半径方向的位移。 PZT的电荷由电置换计算计算。然后,通过使用所获得的位移和电荷,构建转子的分析压电阻抗模型。鉴于转子的圆形边界条件,环形元件用作分析的对象,并且光谱元件方法用于建立损坏检测模型。通过应用低成本阻抗测试电路推导出未损坏转子的电力(E / M)耦合阻抗表达。泰勒膨胀方法用于获得损伤转子的近似E / M耦合阻抗表达式。在获得未损坏和损坏的转子阻抗之间的差异后,提出了一种转子损坏检测方法。该方法可以直接计算结构元件的弯曲刚度的变化,因此可以有效地检测转子损坏。最后,预设损坏配置用于数值模拟。结果表明,本文提出的基于光谱元件方法和压电阻抗的定量损伤检测算法可以精确地识别损坏转子的位置和严重程度。

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