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MICROFLUIDIC LARGE SCALE INTEGRATION

机译:微流态大规模整合

摘要

Using basic physical arguments, a design and method for the fabrication of microfluidic valves using multilayer soft lithography is presented. Embodiments of valves in accordance with the present invention feature elastomer membrane portions of substantially constant thickness, allowing the membranes to experience similar resistance to an applied pressure across their entire width. Such on-off valves fabricated with upwardly- or downwardly-deflectable membranes can have extremely low actuation pressures, and can be used to implement active functions such as pumps and mixers in integrated microfluidic chips. Valve performance was characterized by measuring both the actuation pressure and flow resistance over a wide range of design parameters, and comparing them to both finite element simulations and alternative valve geometries.
机译:利用基本的物理论据,提出了一种使用多层软光刻技术制造微流体阀的设计和方法。根据本发明的阀的实施例的特征在于,弹性体膜部分具有基本恒定的厚度,从而允许膜在其整个宽度上对施加的压力具有相似的阻力。用向上或向下可偏转的膜制成的这种开关阀可具有极低的致动压力,并可用于实现诸如集成微流体芯片中的泵和混合器的功能。通过测量多种设计参数上的致动压力和流阻,并将其与有限元模拟和其他阀门几何形状进行比较,来表征阀门性能。

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