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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Piezoelectric beams and vibrating angular rate sensors
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Piezoelectric beams and vibrating angular rate sensors

机译:压电梁和振动角速率传感器

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A tuning fork angular rate sensor made out of a single piece of quartz has been studied. The piezoelectric effect is used both to excite a reference vibration in the plane of the tuning fork and to detect a vibration normal to this plane. The amplitude of the second vibration is directly proportional to the applied angular velocity. The structure is made rigid in order for it to survive in a harsh environment. This implies that the only vibrationally active areas are the tines of the tuning fork. The performance of the sensor is predicted with the help of a phenomenological piezoelectric beam theory. This theory shows that it suffices to study the two-dimensional (2-D) dielectric field in the cross-sections of the beams in order to obtain the values of the piezoelectric equivalent components. Estimates of these values can be obtained without the use of special computer programs. The predictions are shown to be in agreement with measurements.
机译:已经研究了由一块石英制成的音叉角速度传感器。压电效应既可以用来激励音叉平面内的参考振动,也可以检测垂直于该平面的振动。第二振动的幅度与所施加的角速度成正比。为了使它在恶劣的环境中生存,该结构被制成刚性的。这意味着唯一的振动有效区域是音叉的尖齿。借助现象学压电束理论可预测传感器的性能。该理论表明,足以研究梁横截面中的二维(2-D)电介质场,以获得压电等效分量的值。无需使用特殊的计算机程序即可获得这些值的估计值。预测显示与测量结果一致。

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