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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Optimization of Elastic Nonlinear Behavior Measurements of Ceramic Piezoelectric Resonators with Burst Excitation
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Optimization of Elastic Nonlinear Behavior Measurements of Ceramic Piezoelectric Resonators with Burst Excitation

机译:爆炸激励下陶瓷压电谐振器弹性非线性行为测量的优化

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A system of nonlinear measurement and nonlinear elastic characterization of resonators is presented, which increases the possibilities and characteristics of the other classic nonlinear characterization methods. This characterization has been necessary due to the use of resonators in power devices, where their behavior departs from the linear characteristics. The use of burst signals and a system of acquisition and data processing is proposed instead of impedance analyzers, thus avoiding the thermal effects associated with the high-signal measures, which are necessary for this characterization. The measures are repeated for different amplitudes and at the same frequency near the resonance by a single amplitude sweep, which is simpler and faster to carry out than the multiple frequency sweepings used in other methods. As a last resort, a variation on the proposed method, closer to the classical measures, is put forward, in which the resonance is ensured in all the measures. Special emphasis is placed on obtaining nonlinear characterization of the piezoceramic material in order to increase its optimization in the transducers in terms of both its use and its composition and structure.
机译:提出了谐振器的非线性测量和非线性弹性表征系统,这增加了其他经典非线性表征方法的可能性和特性。由于在功率器件中使用谐振器,因此其特性与线性特性背离,因此必须进行这种表征。提出了使用突发信号以及采集和数据处理系统来代替阻抗分析仪,从而避免了与高信号测量相关的热效应,而热效应是表征的必要条件。通过单次振幅扫描在共振附近以相同的频率对不同的振幅重复测量,这比其他方法中使用的多次频率扫描更简单,更快速。作为最后的手段,提出了对所提出的方法的一种变型,更接近于经典的措施,其中在所有措施中确保了共振。特别强调获得压电陶瓷材料的非线性特性,以增加其在换能器中的用途,组成和结构方面的优化。

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