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Determination of the complex material constants of PMN-28%PT piezoelectric single crystals

机译:PMN-28%PT压电单晶复合材料常数的确定

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The accurate characterization of piezoelectric crystals should include the loss properties of the materials, which are represented as the imaginary parts of the material constants. The full complex properties of PMN-PT single crystals have never been evaluated. This paper proposes an automated iterative method to determine the complex material constants of PMN-28%PT single crystals. The PMN-28%PT single crystals were grown using the Bridgman method and were poled along the [001] direction to have 4mm effective symmetry. Five different resonators suitable for 4mm symmetry were used to analyze the impedance and admittance spectra of the distinctive resonant modes. The complex material constants were determined by the nonlinear regression of the impedance and admittance spectrum equations for each resonator through the iteration process to fit the measured spectra of the corresponding modes. The efficacy of the characterization method and the accuracy of the complex material constants determined using this method were verified by a comparison of the immittance spectra from the measurements with those from the calculation using the complex constants.
机译:压电晶体的准确表征应包括材料的损耗特性,这些损耗特性表示为材料常数的虚部。从未评估过PMN-PT单晶的全部复杂特性。本文提出了一种自动迭代方法来确定PMN-28%PT单晶的复杂材料常数。使用Bridgman方法生长PMN-28%PT单晶,并沿[001]方向极化以具有4mm的有效对称性。使用五个适合4mm对称性的不同谐振器来分析独特谐振模式的阻抗和导纳谱。通过迭代过程对每个谐振器的阻抗和导纳谱方程进行非线性回归,以拟合相应模式的测得谱,从而确定了复杂的材料常数。表征方法的有效性和使用该方法确定的复合材料常数的准确性,通过比较测量所得的阻抗谱和使用复合常数计算所得的光谱进行了验证。

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