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Numerical Computations of Radial Vibrations of Axially Polarized Piezoelectric Circular Cylinder

机译:轴向极化压电圆柱的径向振动的数值计算

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Influence of the initial stresses on the frequency equation and the natural frequencies for radial vibrations of axially polarized piezoelectric circular cylinder have been taken into account. The mechanical boundary conditions correspond to those of stress free lateral surfaces while the electrical boundary conditions correspond to those of open and short circuit are considered. The satisfaction of the boundary conditions lead to the frequency equation, in the form of determinant involving Bessel functions, have been taken into consideration. The roots of the frequency equations give the values of the characteristic circular frequency parameters of the first three modes for various geometries. These roots are numerically computed and programmed for numerical evaluation by ''Bisection Method Iterations Technique (BMIT)'' and presented graphically for various thickness of the circular cylinder and for different values of the initial stress. The effect of the initial stress on the natural frequencies are illustrated graphically for a transversely isotropic piezoelectric martial PZT?4 circular cylinder. It is found that both the thickness of the circular cylinder and the initial stress have a substantial effect on the dispersion behavior. The results obtained in this paper may be applied to the vibrations of annular accelerometers operating in the radial shear mode. Also, they have theoretical basis application and have meaningful design for piezoelectric probes and electro-acoustic devices in the nondestructive evaluation.
机译:考虑了初始应力对频率方程和轴向极化压电圆柱体径向振动固有频率的影响。机械边界条件与无应力侧面的条件相对应,而电边界条件与开路和短路的条件相对应。边界条件的满足导致了频率方程,其形式是涉及贝塞尔函数的行列式。频率方程的根给出了各种几何形状的前三个模式的特征圆形频率参数的值。这些根由“ Bisection方法迭代技术(BMIT)”进行数值计算和编程以进行数值评估,并以图形方式显示各种圆柱体的厚度和不同的初始应力值。图中以横向各向同性压电武术PZTα4圆柱体形式显示了初始应力对固有频率的影响。发现圆柱体的厚度和初始应力都对分散行为有很大影响。本文获得的结果可应用于以径向剪切模式运行的环形加速度计的振动。而且,它们在无损评估中具有理论基础的应用,并对压电探针和电声设备具有有意义的设计。

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