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A microfluidic method to measure bulging heights for bulge testing of polydimethylsiloxane (PDMS) and polyurethane (PU) elastomeric membranes

机译:一种测量凸起高度的微流体方法,用于对聚二甲基硅氧烷(PDMS)和聚氨酯(PU)弹性膜进行凸起测试

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摘要

Thin and flexible elastomeric membranes are frequently used in many microfluidic applications including microfluidic valves and organs-on-a-chip. The elastic properties of these membranes play an important role in the design of such microfluidic devices. Bulge testing, which is a common method to characterize the elastic behavior of these membranes, involves direct observation of the changes in the bulge height in response to a range of applied pressures. Here, we report a microfluidic approach to measure the bulging height of elastic membranes to replace direct observation of the bulge height under a microscope. Bulging height is measured by tracking the displacement of a fluid inside a microfluidic channel, where the fluid in the channel was designed to be directly in contact with the elastomeric membrane. Polydimethylsiloxane (PDMS) and polyurethane (PU) membranes with thickness 12–35 μm were fabricated by spin coating for bulge testing using both direct optical observation and the microfluidic method. Bulging height determined from the optical method was subject to interpretation by the user, whereas the microfluidic approach provided a simple but sensitive method for determining the bulging height of membranes down to a few micrometers. This work validates the proof of principle that uses microfluidics to accurately measure bulging height in conventional bulge testing for polydimethylsiloxane (PDMS) and polyurethane (PU)eElastomeric membranes.
机译:薄而柔软的弹性体膜经常用于许多微流体应用中,包括微流体阀和单片器官。这些膜的弹性性质在此类微流体装置的设计中起重要作用。隆起测试是表征这些膜的弹性行为的常用方法,它涉及直接观察到隆起高度响应于所施加压力范围的变化。在这里,我们报告了一种微流体方法来测量弹性膜的凸起高度,以代替在显微镜下直接观察凸起高度的方法。通过跟踪微流体通道内的流体的位移来测量凸出高度,其中将通道中的流体设计为直接与弹性体膜接触。通过旋涂制备了厚度为12–35μm的聚二甲基硅氧烷(PDMS)和聚氨酯(PU)膜,使用直接光学观察和微流体方法进行了凸起测试。由光学方法确定的凸出高度由用户来解释,而微流体方法提供了一种简单而灵敏的方法来确定低至几微米的膜的凸出高度。这项工作验证了使用微流控技术准确测量聚二甲基硅氧烷(PDMS)和聚氨酯(PU)弹性膜常规膨胀测试中膨胀高度的原理证明。

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