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首页> 外文期刊>Mathematical Problems in Engineering >Modeling the Structural-Thermal-Electrical Coupling in an Electrostatically Actuated MEMS Switch and Its Impact on the Switch Stability
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Modeling the Structural-Thermal-Electrical Coupling in an Electrostatically Actuated MEMS Switch and Its Impact on the Switch Stability

机译:建模静电驱动MEMS开关中的结构-热电耦合及其对开关稳定性的影响

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摘要

Modeling and analysis for the static behavior and collapse instabilities of a MEMS cantilever switch subjected to both electrical and thermal loadings are presented. The thermal loading forces can be as a result of a huge amount of switching contact of the microswitch. The model considers the microbeam as a continuous medium and the electric force as a nonlinear function of displacement and accounts for its fringing-field effect. The electric force is assumed to be distributed over specific lengths underneath the microbeam. A boundary-value solver is used to study the collapse instability, which brings the microbeam from its unstuck configuration to touch the substrate and gets stuck in the so-called pinned configuration. We have found negligible influence of the temperature on the static stability of the switch. We then investigate the effect of the thermal heating due to the current flow on the cantilever switch while it is in the on position (adhered position). We also found slight effect on the static stability of the switch.
机译:提出了针对MEMS悬臂开关的静态行为和崩溃不稳定性的建模和分析,该静态行为和崩溃不稳定性都受到电和热负载的影响。热负载力可能是微型开关的大量开关触点的结果。该模型将微束视为连续介质,并将电力视为位移的非线性函数,并考虑了其边缘场效应。假定电力在微束下方的特定长度上分布。边界值求解器用于研究塌陷不稳定性,塌陷不稳定性会使微束从其未粘滞构型接触到基材,并卡在所谓的钉扎构型中。我们发现温度对开关静态稳定性的影响可以忽略不计。然后我们研究悬臂开关在接通位置(粘附位置)时由于电流在悬臂开关上引起的热加热效应。我们还发现对开关的静态稳定性影响很小。

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  • 来源
    《Mathematical Problems in Engineering 》 |2013年第9期| 608107.1-608107.8| 共8页
  • 作者单位

    Mechanical Engineering Department, King Fahd University of Petroleum and Minerals, Dhahran 31261, Saudi Arabia;

    Mechanical Engineering Department, State University of New York at Binghamton, Binghamton, NY 13902, USA;

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