论用强耦合变分公式模拟机电问题的优点

V. Rochus, D. Rixen, J. Golinval
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引用次数: 0

摘要

本文介绍了用强耦合公式来模拟微机电系统中出现的机电耦合的优点。经典软件通常采用交错方法在两种不同的代码之间迭代以获得耦合问题的解。在本研究中,提出了一个强耦合公式,并计算了整个问题的切向刚度矩阵。利用该矩阵,可以应用Riks-Crisfield算法等非线性算法求解静态非线性问题,准确确定静态拉入电压。此外,可以在每个平衡位置周围计算固有频率。结构的动力特性也可以进行研究,并定义了两个新的参数:动态拉入电压和动态拉入时间。这种由变分原理导出的强耦合方法也可用于拓扑优化和扩展有限元
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On the Advantages of Using a Strong Coupling Variational Formulation to Model Electro-Mechanical Problem
This paper presents the advantages of a strong coupled formulation to model the electro-mechanical coupling appearing in MEMS. Usually the classical softwares use a staggered methodology iterating between two different codes to obtain the solution of the coupled problem. In this research a strong coupled formulation is proposed and a tangent stiffness matrix of the whole problem is computed. Using this matrix, nonlinear algorithms such as the Riks-Crisfield algorithm may be applied to solve the static nonlinear problem and determine accurately the static pull-in voltage. Moreover, the natural frequencies may be computed around each equilibrium positions. The dynamic behaviour of the structure may also be studied and two new parameters are defined: the dynamic pull-in voltage and the dynamic pull-in time. This strong coupled methodology deriving from variational principle may also be used for topology optimisation and extended finite elements
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