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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Using FEA to treat piezoelectric low-frequency resonators
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Using FEA to treat piezoelectric low-frequency resonators

机译:使用FEA处理压电低频谐振器

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摘要

In developing small micromachined components, it is difficult and costly to rely only on experiments. Nevertheless, a detailed understanding of their functioning, also on a system level, is essential if their numerous device possibilities are to be used to their fullest extent. Development efforts can be focused on the device if performance predictions can be made with available computer software. This paper addresses the use of available finite element analysis (FEA) programs. A comparison of simulation and analytic results shows that FEA can be used to accurately predict properties such as static and harmonic response, frequency-dependent impedance, and piezo-induced changes in resonance frequencies. A limitation is the need for CPU-power, especially when determining high overtones. Also, piezoelectric materials with a finite resistivity are more complicated to handle.
机译:在开发小型微机械部件时,仅依靠实验是困难且昂贵的。但是,如果要充分利用其众多设备的可能性,则必须在系统级别上对其功能进行详细的了解。如果可以使用可用的计算机软件进行性能预测,则开发工作可以集中在设备上。本文介绍了可用的有限元分析(FEA)程序的使用。仿真结果和分析结果的比较表明,有限元分析可用于准确预测诸如静态和谐波响应,频率相关的阻抗以及压电感应的谐振频率变化等特性。一个限制是需要CPU能力,尤其是在确定高泛音时。而且,具有有限电阻率的压电材料的处理更加复杂。

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