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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Resonance and antiresonance of symmetric and asymmetric cantilevered piezoelectric flexors
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Resonance and antiresonance of symmetric and asymmetric cantilevered piezoelectric flexors

机译:对称和不对称悬臂压电屈曲的共振和反共振

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The resonances of dynamically excited symmetric piezoelectric bimorphs have been determined from the equations of state. Under the effect of sinusoidal stimuli: a moment exerted at the tip M, a force exerted perpendicular to the plane of the bimorph also applied at the tip F, a uniformly applied pressure p, and an electrode voltage V, they respond with a sinusoidal tip rotation /spl alpha/, tip deflection /spl delta/, volume displacement /spl nu/, and electrode charge Q. All of the former are related to all of the latter through a dynamic admittance matrix B. The antiresonance frequency of the capacitance C have been found while also antiresonance in off-diagonal elements have been determined. The latter indicate that at these frequencies the bimorph does not work as an actuator or sensor in the particular domain of the off-diagonal. The mode shape at these antiresonance frequencies has been determined. The antiresonance of b/sub 14/ determines that for this frequency the tip has deflection but no rotation, while the antiresonance of b/sub 24/ indicates that the tip has rotation but no deflection. No antiresonance in the volume displacement is found, indicating that the bimorph is a pressure converter (microphone) at all frequencies. Micromachined piezoelectric heterogeneous bimorphs have been fabricated using the techniques of I.C. fabrication. Their deflections have been measured as a function of frequency and applied voltage, while these have been compared with the theoretical predictions. An anomalously large quadratic deflection has been found, superimposed on the linear piezoelectric behavior. The agreement between the linear part of the experimental deflection and the theory was quite good.
机译:动态激发的对称压电双压电晶片的共振已根据状态方程确定。在正弦波刺激的作用下:在尖端M上施加力矩,垂直于双压电晶片平面施加的力也施加在尖端F上,均匀施加压力p和电极电压V,它们以正弦形尖端响应旋转/ spl alpha /,尖端偏转/ spl delta /,体积位移/ spl nu /和电极电荷Q。所有前者都通过动态导纳矩阵B与所有后者相关。电容C的反谐振频率已经发现,同时还确定了非对角线元素的反共振。后者表明,在这些频率下,双压电晶片在非对角线的特定区域中不充当致动器或传感器。已经确定了在这些反谐振频率下的模式形状。 b / sub 14 /的反共振确定该频率下尖端有偏斜但没有旋转,而b / sub 24 /的反共振表明该尖端有偏斜但没有偏斜。在体积位移中未发现反共振,表明双压电晶片在所有频率下都是压力转换器(麦克风)。微加工的压电异质双压电晶片已经使用I.C.制造。他们的挠度已作为频率和施加电压的函数进行了测量,同时将这些挠度与理论预测值进行了比较。发现异常大的二次偏转,叠加在线性压电行为上。实验偏转的线性部分与理论之间的一致性很好。

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