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导通与关断:纳米机电开关中的黏滞现象。

Switch on, switch off: stiction in nanoelectromechanical switches.

机构信息

Department of Applied Mathematics and Theoretical Physics, University of Cambridge, Cambridge, UK.

出版信息

Nanotechnology. 2013 Jul 12;24(27):275501. doi: 10.1088/0957-4484/24/27/275501. Epub 2013 Jun 13.

Abstract

We present a theoretical investigation of stiction in nanoscale electromechanical contact switches. We develop a mathematical model to describe the deflection of a cantilever beam in response to both electrostatic and van der Waals forces. Particular focus is given to the question of whether adhesive van der Waals forces cause the cantilever to remain in the 'ON' state even when the electrostatic forces are removed. In contrast to previous studies, our theory accounts for deflections with large slopes (i.e. geometrically nonlinear). We solve the resulting equations numerically to study how a cantilever beam adheres to a rigid electrode: transitions between 'free', 'pinned' and 'clamped' states are shown to be discontinuous and to exhibit significant hysteresis. Our findings are compared to previous results from linearized models and the implications for nanoelectromechanical cantilever switch design are discussed.

摘要

我们对纳米机电接触开关中的黏着现象进行了理论研究。我们建立了一个数学模型来描述在静电力和范德华力作用下悬臂梁的挠度。特别关注的是,在静电力移除后,黏附的范德华力是否会导致悬臂梁保持在“ON”状态。与之前的研究不同,我们的理论考虑了大斜率的挠度(即几何非线性)。我们通过数值方法求解了所得方程,以研究悬臂梁如何与刚性电极黏附:自由、固定和夹紧状态之间的转变被证明是不连续的,并表现出显著的滞后。我们的发现与线性化模型的先前结果进行了比较,并讨论了它们对纳米机电悬臂开关设计的影响。

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