首页> 外文期刊>Physics International >THE THEORETICAL SIMULATION OF AXIAL VIBRATIONS IN FINITE CYLINDRICAL PIEZOELECTRIC SHELL MADE OF THE TRIGONAL (3M) CRYSTAL
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THE THEORETICAL SIMULATION OF AXIAL VIBRATIONS IN FINITE CYLINDRICAL PIEZOELECTRIC SHELL MADE OF THE TRIGONAL (3M) CRYSTAL

机译:三角(3M)晶体制成的有限圆柱压电壳轴向振动的理论模拟

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摘要

The axial vibration in a thin layer of finite cylinder made of trigonal (3M) piezoelectric crystal are investigated. By using a closed form solution of the equations of motion and applying new boundary conditions the effects of the geometrical dimensions, axial hydrostatic pressure and electrostatic potential along the axis of the cylinder shell on oscillation frequency and amplitude of spatial vibrations are simulated.
机译:研究了由三角(3M)压电晶体制成的有限圆柱体薄层中的轴向振动。通过使用运动方程的闭式解并应用新的边界条件,可以模拟几何尺寸,轴向静水压力和沿气缸壳轴线的静电势对振动频率和空间振动幅度的影响。

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