Institute of Applied Acoustics, Shaanxi Normal University, Xian, Shaanxi 710062, China.
Ultrasonics. 2012 Jan;52(1):103-10. doi: 10.1016/j.ultras.2011.06.016. Epub 2011 Jul 7.
Based on the exact analytical theory, the radial vibration of an isotropic circular ring is studied and its electro-mechanical equivalent circuit is obtained. By means of the equivalent circuit model, the resonance frequency equation is derived; the relationship between the radial resonance frequency, the radial displacement amplitude magnification and the geometrical dimensions, the material property is analyzed. For comparison, numerical method is used to simulate the radial vibration of isotropic circular rings. The resonance frequency and the radial vibrational displacement distribution are obtained, and the radial radiation acoustic field of the circular ring in radial vibration is simulated. It is illustrated that the radial resonance frequencies from the analytical method and the numerical method are in good agreement when the height is much less than the radius. When the height becomes large relative to the radius, the frequency deviation from the two methods becomes large. The reason is that the exact analytical theory is limited to thin circular ring whose height must be much less than its radius.
基于精确的分析理论,研究了各向同性圆环的径向振动,并得到了其机电等效电路。通过等效电路模型,推导出了共振频率方程;分析了径向共振频率、径向位移振幅放大与几何尺寸、材料特性之间的关系。为了进行比较,采用数值方法模拟了各向同性圆环的径向振动。得到了共振频率和径向振动位移分布,并模拟了圆环在径向振动中的径向辐射声场。结果表明,当高度远小于半径时,解析法和数值法得到的径向共振频率吻合较好。当高度相对于半径变得较大时,两种方法的频率偏差较大。原因是精确的解析理论仅限于高度必须远小于半径的薄圆环。