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A material rigidity effect of a bimorph piezoelectric actuator

机译:双压电晶片压电致动器的材料刚度效应

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This paper presents the numerical modeling of a piezoelectric actuator used to avoid the limitation of the lock-in region in a ring resonator. Ring resonators have proved suitable for use as inertial sensors for navigation, guidance and attitude controls. However, their accuracy has been limited by the lock-in region due to frequency coupling between two counter-propagating waves at low rotation rates. This coupling introduces no phase difference, and no angular increment is detected. The problem can be overcome by mechanically dithering the ring resonator. Mechanically, the vibro-elastic bimorph piezoelectric actuator has been used as a control but is influenced by piezoelectric rigidity effects. To more accurately predict the dithering frequency of a mechanical dither, numerical modeling of a piezoelectric actuator includes the piezoelectric rigidity effect of the actuator, which occurs in both the static and dynamic behaviors of composite plates having piezoelectric layers symmetrically bonded to the top and bottom surfaces.
机译:本文介绍了用于避免环形谐振器中锁定区域限制的压电致动器的数值模型。环形谐振器已被证明适合用作导航,制导和姿态控制的惯性传感器。但是,由于两个反向传播的波在低转速下的频率耦合,它们的精度受到锁定区域的限制。这种耦合不会引入相位差,也不会检测到角度增量。通过机械振动环形谐振器可以解决该问题。在机械上,振动弹性双压电晶片压电致动器已被用作控件,但受到压电刚度影响。为了更准确地预测机械抖动的抖动频率,压电促动器的数值建模包括促动器的压电刚度效应,这种效应出现在复合板的静态和动态行为中,复合板的压电层对称地粘结在上下表面上。

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