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Improved design of low-pressure fluidic microvalves

机译:低压流体微阀的改进设计

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Multilayer soft lithography (MSL) is used to fabricate monolithic elastomeric on-off microvalves by adopting a two-layer cross-channel architecture. The performance of microvalves is strongly dependent on the two-channel geometry (width, height and shape) and on the thickness of the interlayer membrane. Using a finite element model previously validated against experiments, we propose a new fluidic microvalve design, based on the concept of chemically swelling the thin interlayer membrane so as to induce two stable equilibrium configurations. The complete closure of the new valve may then be achieved by applying a much reduced actuation pressure, down to 1/4 of the pressure needed by the standard monostable design. The maximum stress in the interlayer membrane of the bistable valve also drops to 1/3 of the value corresponding to the standard design.
机译:多层软光刻(MSL)通过采用两层交叉通道结构来制造整体式弹性体开关微阀。微型阀的性能在很大程度上取决于两通道的几何形状(宽度,高度和形状)以及中间膜的厚度。使用先前经过实验验证的有限元模型,我们提出了一种新的流体微阀设计,该结构基于化学膨胀中间膜薄层的概念,从而产生两个稳定的平衡构型。然后,可以通过施加大大降低的致动压力(低至标准单稳态设计所需压力的1/4)来完全关闭新阀。双稳态阀的夹层膜中的最大应力也降至标准设计值的1/3。

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