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On an elliptic-parabolic MEMS model with two free boundaries

机译:在具有两个自由边界的椭圆抛物型MEMS模型

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摘要

We discuss an evolution free boundary problem of mixed type with two free boundaries modeling an idealized electrostatically actuated MEMS device. While the electric potential is the solution of an elliptic equation, the dynamics of the membranes' displacement is modeled by two parabolic equations. It is shown that the model is locally well-posed in time and that solutions exist globally for small source voltages whereas non-existence holds for large voltage values. Moreover, our model possesses a steady state solution that is asymptotically stable. Finally, we show that in the vanishing aspect ratio limit, solutions of the model converge toward solutions of the associated small aspect ratio problem.
机译:我们讨论了混合型的进化自由边界问题,其两个自由边界建模理想化的静电致动MEMS装置。 虽然电势是椭圆方程的解决方案,但是膜位移的动态由两个抛物线方程建模。 结果表明,该模型及时局部地置于局部良好,并且对于小源电压,全球存在该解决方案,而不存在以用于大电压值。 此外,我们的模型具有渐近稳定的稳态解决方案。 最后,我们表明,在消失的宽高比限制中,模型的解决方案会聚朝向相关的小宽高比问题的解。

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