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Analysis of Membrane Behavior of a Normally Closed Microvalve Using a Fluid-Structure Interaction Model

机译:流体-结构相互作用模型分析常闭微阀的膜行为

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摘要

In this paper, membrane deflection against fluid flow and opening membrane (threshold) pressure were studied using fluid-structure interaction (FSI) analysis, and compared with experimental data obtained by Jaemin et al. In the current analysis, two different models (I-shaped and V-shaped) were used to perform the FSI simulation. In microvalve modeling, in order to reduce external actuator usage, interconnections are made between two similar microvalves. This typical interconnection creates a pressure distribution in a local environment. Furthermore, to differentiate the volume factor in a microvalve, a length/width (L/W) ratio term was used. Compared with higher- and lower-L/W-ratio models, the higher-L/W model eventually initiates more deflection in a low-pressure regime than the lower-L/W-ratio model. FSI simulations were performed for 4 μL/min, 6 μL/min, 8 μL/min, 10 μL/min, and 12 μL/min flow rates against membrane behavior, and performance evaluations of the microvalves were conducted. It was observed during an FSI simulation that the gate pressure applied to the lower surface deflects the membrane upward, thereby making contact with the wall. Two important parameters (material properties of the structural membrane and the inlet region height) were selected for analysis to evaluate changes in microvalve performance. These results are presented in the current study.
机译:在本文中,利用流体-结构相互作用(FSI)分析了膜对流体流动的挠度和打开膜(阈值)压力,并与Jaemin等人获得的实验数据进行了比较。在当前的分析中,使用了两个不同的模型(I形和V形)来进行FSI仿真。在微型阀建模中,为了减少外部执行器的使用,在两个相似的微型阀之间进行了互连。这种典型的互连在局部环境中产生压力分布。此外,为了区分微阀中的体积因子,使用了长/宽(L / W)比项。与较高和较低的L / W比模型相比,较高的L / W模型最终在低压状态下会引发比较低的L / W比率模型更大的偏转。针对膜行为对4μL/ min,6μL/ min,8μL/ min,10μL/ min和12μL/ min的流速进行FSI模拟,并对微阀进行性能评估。在FSI模拟过程中观察到,施加到下表面的闸门压力使薄膜向上偏转,从而与壁接触。选择两个重要参数(结构膜的材料特性和入口区域高度)进行分析,以评估微阀性能的变化。这些结果显示在当前研究中。

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