用里兹方法研究各向异性圆柱的自由振动

Peng Hu, Bin Huang, Lijun Yi, T. Ma, Jianke Du, S. Zhgoon, Ji Wang
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引用次数: 1

摘要

弹性固体圆柱体广泛应用于各种机电结构,包括结构和功能元件。通过考虑结构参数和材料参数,对气缸进行优化设计和提高性能具有重要意义。通过扩展先前基于切比雪夫多项式位移展开的弹性圆柱体自由振动的工作,我们用里兹方法制定了石英晶体各向异性圆柱体的过程。这种分析的挑战包括材料性质依赖于极坐标系中的角位置,模态的强耦合以及特征值提取的密集矩阵。由特征值问题得到振动频率和振型。我们打算使用RUSpec的分析程序和软件程序对圆柱形样品进行材料表征。我们发现切比雪夫多项式足以表示精确振动解的位移。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Free vibrations of an anisotropic cylinder with the Ritz method
Cylinders of elastic solids are widely used in various mechanical and electrical structures for many purposes including structural and functional elements. Vibrations of cylinders are of interests for the optimal design and enhanced performance through the consideration of structural and material parameters. By extending earlier work on free vibrations of an elastic cylinder based on the expansion of displacements in Chebyshev polynomials, we formulated the procedure with the Ritz method for an anisotropic cylinder of quartz crystal. The challenges of such an analysis include the material properties dependence on the angular position in polar coordinates, strong couplings of modes, and dense matrices for eigenvalue extraction. The vibration frequency and mode shapes are obtained from the eigenvalue problem. We intended to use the analytical procedure and software program with the RUSpec for material characterization with cylindrical samples. We found the Chebyshev polynomials are adequate to represent displacements for accurate vibration solutions.
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