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引用次数: 2

摘要

提出了一种利用低频和共振频率测量来表征非线性机电系数和损耗的方法。然后建立一个综合整个非线性的等效电路:它包括两个分量(一个电抗和一个电阻),它们取决于电位移的幅度,连接在低电平梅森等效电路的输入端。将这种电路应用于高功率驱动的压电陶瓷或换能器上,证实了在反谐振频率附近可以获得更好的性能。物理解释是基于电场和振动速度对非180畴壁运动的相互冲突的影响。
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Nonlinear characterization of high power transducers
A method for characterizing the nonlinear electromechanical coefficients and losses using measurements at low frequency and at resonance frequency is proposed. Then an electrical equivalent circuit synthesizing the whole nonlinearities is built up : it includes two components (a reactance and a resistance), which are dependent on the amplitude of the electric displacement, connected at the input of the low level Mason equivalent circuit. Applying such a circuit on piezoceramics or transducers driven at high power confirms that better performances are achieved near the antiresonance frequency. Physical interpretation is based on conflicting influences of electric field and vibration velocity on the motion of the non 180 domain walls.
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