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Free vibrations of finite quartz crystal cylinders with the Rayleigh-Ritz method

机译:瑞利-里兹法(Rayleigh-Ritz method)的有限石英晶体圆柱体的自由振动

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We have extended the calculation procedure to cylindrical samples of anisotropic crystals for RUSpec measurements. The deformation is expressed with Chebyshev polynomials and the Rayleigh-Ritz method is used. We concentrated on anisotropic materials which can be more complicated for the formulation of vibration frequencies. The formulation is angular dependent with cylindrical coordinates. The calculation and experiment are carried out with quartz crystal samples and we found the results are accurate with frequencies and eventually obtained elastic constants which are in good agreement with known data. It is proven that the Rayleigh-Ritz method based on the deformation in Chebyshev polynomials offers simple and accurate solutions for vibration frequencies and mode shapes. With the known algorithms for matching elastic constants based on the measurement, we can obtain accurate elastic constants of anisotropic materials with a relatively simple procedure and test samples.
机译:我们将计算程序扩展到了用于RUSpec测量的各向异性晶体的圆柱样本。用Chebyshev多项式表示变形,并使用Rayleigh-Ritz方法。我们专注于各向异性材料,这种材料对于振动频率的制定可能会更加复杂。该公式是与圆柱坐标相关的角度。用石英晶体样品进行了计算和实验,我们发现结果在频率上是准确的,最终获得的弹性常数与已知数据非常吻合。事实证明,基于切比雪夫多项式的变形的Rayleigh-Ritz方法为振动频率和振型提供了简单而准确的解决方案。借助基于测量结果的匹配弹性常数的已知算法,我们可以通过相对简单的过程和测试样本来获得各向异性材料的精确弹性常数。

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