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PDMS Microcantilever-Based Flow Sensor Integration for Lab-on-a-Chip

机译:基于片上实验室的基于PDMS微悬臂的流量传感器集成

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摘要

In this paper, a simple practical method is presented to fabricate a high aspect ratio horizontal polydimethylsiloxane (PDMS) microcantilever-based flow sensor integrated into a microfluidic device. A multilayer soft lithography process is developed to fabricate a thin PDMS layer involving the PDMS microcantilever and the microfluidics network. A three-layer fabrication technique is explored for the integration of the microflow meter. The upper and lower PDMS layers are bonded to the thin layer to release the microcantilever for free deflection. A 3-D finite element analysis is carried out to simulate fluid-structure interaction and estimate cantilever deflection under various flow conditions. The dynamic range of flow rates that is detectable using the flow sensor is assessed by both simulation and experimental methods and compared. Limited by the accuracy of the 1.76- $mu{rm m}$ resolution of the image acquisition method, the present setup allows for flow rates as low as 35 $mu{rm L}/{rm min}$ to be detected. This is equal to 0.8-$mu{rm N}$ resolution in equivalent force at the tip. This flow meter can be integrated into any type of microfluidic-based lab-on-a-chip in which flow measurement is crucial, such as flow cytometry and particle separation applications.
机译:在本文中,提出了一种简单实用的方法来制造集成到微流体设备中的高长宽比水平聚二甲基硅氧烷(PDMS)微悬臂梁式流量传感器。开发了多层软光刻工艺以制造包括PDMS微悬臂梁和微流体网络的薄PDMS层。探索了一种三层制造技术来集成微流量计。上层和下层PDMS层粘结到薄层上,释放出微悬臂以自由偏转。进行了3-D有限元分析,以模拟流体-结构相互作用,并估计各种流动条件下的悬臂挠度。使用流量传感器可以检测到的动态流量范围通过模拟和实验方法进行评估并进行比较。受图像获取方法的分辨率1.76- $ mu {rm m} $ 分辨率的精度限制,本设置允许可以检测到低至35的流速。 $ mu {rm L} / {rm min} $ 。这等于在尖端的等效力下的0.8- $ mu {rm N} $ 分辨率。该流量计可以集成到任何类型的基于微流体的芯片实验室中,其中流量测量至关重要,例如流式细胞仪和颗粒分离应用。

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