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Transient pull-in simulation of electrostatic microvalve with physics-based contact function

机译:基于物理的接触功能的静电微仪模拟

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We report the fluid-structure interaction (FSI) modeling of an electrostatic actuated gas modulating microvalve. A physics-based contact function was introduced, with improved stability compared to pure penalty and augmented Lagrangian. The valve position and the transient gas flux at the inlet and outlet of the valve during the pull-in and snap-out events were simulated, showing voltage hysteresis and distinct flow patterns between the two events.
机译:我们报道了静电致动气体调节微型阀的流体结构相互作用(FSI)建模。 引入了基于物理的接触功能,与纯粹的惩罚和增强拉格朗日相比,稳定性提高。 模拟阀门位置和阀门入口和出口处的瞬态气体通量进行了模拟,显示了两个事件之间的电压滞后和不同的流动模式。

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