...
首页> 外文期刊>Journal of Micromechanics and Microengineering >Comparative analysis of the planar capacitor and IDT piezoelectric thin-film micro-actuator models
【24h】

Comparative analysis of the planar capacitor and IDT piezoelectric thin-film micro-actuator models

机译:平面电容器和IDT压电薄膜微激励器模型的比较分析

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

A comparison of the analysis of similarly developed microactuators is presented. Accurate modeling and simulation techniques are vital for piezoelectrically actuated microactuators. Coupling analytical and numerical modeling techniques with variational design parameters, accurate performance predictions can be realized. Axi-symmetric two-dimensional and three-dimensional static deflection and harmonic models of a planar capacitor actuator are presented. Planar capacitor samples were modeled as unimorph diaphragms with sandwiched piezoelectric material. The harmonic frequencies were calculated numerically and compared well to predicted values and deformations. The finite element modeling reflects the impact of the d_(31) piezoelectric constant. Two-dimensional axi-symmetric models of circularly interdigitated piezoelectrically membranes are also presented. The models include the piezoelectric material and properties, the membrane materials and properties, and incorporates various design considerations of the model. These models also include the electro-mechanical coupling for piezoelectric actuation and highlight a novel approach to take advantage of the higher d_(31) piezoelectric coupling coefficient. Performance is evaluated for varying parameters such as electrode pitch, electrode width, and piezoelectric material thickness. The models also showed that several of the design parameters were naturally coupled. The static numerical models correlate well with the maximum static deflection of the experimental devices. Finally, this paper deals with the development of numerical harmonic models of piezoelectrically actuated planar capacitor and interdigitated diaphragms. The models were able to closely predict the first two harmonics, conservatively predict the third through sixth harmonics and predict the estimated values of center deflection using plate theory. Harmonic frequency and deflection simulations need further correlation by conducting extensive iterative harmonic simulations and experiments. The results, conclusions and potential improvements are discussed.
机译:提出了类似开发的微致动器的分析比较。准确的建模和仿真技术对于压电驱动的微执行器至关重要。将分析和数值建模技术与可变设计参数结合起来,可以实现准确的性能预测。提出了平面电容器致动器的轴对称二维和三维静态挠度和谐波模型。平面电容器样本被建模为具有夹层压电材料的单压电晶片隔膜。对谐波频率进行了数值计算,并将其与预测值和变形进行了很好的比较。有限元建模反映了d_(31)压电常数的影响。还提出了圆形指状压电膜的二维轴对称模型。该模型包括压电材料和特性,膜材料和特性,并结合了模型的各种设计考虑。这些模型还包括用于压电致动的机电耦合,并着重介绍了一种利用较高d_(31)压电耦合系数的新颖方法。针对各种参数(例如电极间距,电极宽度和压电材料厚度)评估性能。这些模型还表明,一些设计参数是自然耦合的。静态数值模型与实验装置的最大静态挠度很好地相关。最后,本文涉及压电致动平面电容器和叉指式振动膜的数值谐波模型的发展。这些模型能够精确地预测前两个谐波,保守地预测第三至第六个谐波,并使用板理论预测中心挠度的估计值。谐波频率和偏转仿真需要通过进行广泛的迭代谐波仿真和实验来进一步关联。讨论了结果,结论和潜在的改进。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号