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Analysis of hybrid electrothermomechanical microactuators with integrated electrothermal and electrostatic actuation

机译:集成电热静电驱动的混合式电热机械微致动器分析

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摘要

The goal of this research is to integrate electrothermal and electrostatic actuation in microelectromechanical systems (MEMS). We look at cases where these two types of actuation are intimately coupled and argue that such integrated electrothermomechanical microactuators have more advantages than pure electrothermal or electrostatic devices. We further propose a framework to model hybrid electrothermomechanical actuation to get a consistent solution for the coupled mechanical, thermal and electrical fields in the steady-state. Employing a Lagrangian approach, the inhomogeneous current conduction equation is used to describe the electric potential, while the thermal and displacement fields are obtained by solving the nonlinear heat conduction equation and by performing a large deformation mechanical analysis, respectively. To preserve numerical accuracy and reduce computational time, we also incorporate a boundary integral formulation to describe the electric potential in the medium surrounding the actuator. We show through the example of a hybrid double-beam actuator, that electrothermomechanical actuation results in low voltage, low power operation that could be used for switching applications in MEMS. We also extend the same device towards bidirectional actuation and demonstrate how it may be used to overcome common problems like stiction that occur in MEMS switches.
机译:这项研究的目的是将电热和静电致动集成在微机电系统(MEMS)中。我们研究了这两种类型的致动紧密耦合的情况,认为这种集成的电热微致动器比纯电热或静电装置具有更多的优势。我们进一步提出了一个框架,对混合电热机械致动进行建模,以获得稳态下耦合的机械,热和电场的一致解决方案。采用拉格朗日方法,非均匀电流传导方程用于描述电势,而热场和位移场分别通过求解非线性热传导方程和进行大变形力学分析获得。为了保持数值精度并减少计算时间,我们还采用边界积分公式来描述执行器周围介质中的电势。我们通过一个混合双光束致动器的例子来说明,电热机械致动器可以产生低电压,低功率的操作,可用于MEMS的开关应用。我们还将同一设备扩展为双向驱动,并演示如何将其用于克服常见问题,例如MEMS开关中发生的静摩擦。

著录项

  • 作者

    Alwan Aravind;

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  • 年度 2011
  • 总页数
  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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