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Milling Positive Master for Polydimethylsiloxane Microfluidic Devices: The Microfabrication and Roughness Issues

机译:聚二甲基硅氧烷微流控设备的正铣削母版:微加工和粗糙度问题

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摘要

We provide a facile and low-cost method (F-L) to fabricate a two-dimensional positive master using a milling technique for polydimethylsiloxane (PDMS)-based microchannel molding. This method comprises the following steps: (1) a positive microscale master of the geometry is milled on to an acrylic block; (2) pre-cured PDMS is used to mold the microscale positive master; (3) the PDMS plate is peeled off from the master and punctured with a blunt needle; and (4) the PDMS plate is O2 plasma bonded to a glass slide. Using this technique, we can fabricate microchannels with very simple protocols quickly and inexpensively. This method also avoids breakage of the end mill (ϕ = 0.4 mm) of the computerized numerical control (CNC) system when fabricating the narrow channels (width < 50 µm). The prominent surface roughness of the milled bottom-layer could be overcomed by pre-cured PDMS with size trade-off in design. Finally, emulsion formation successfully demonstrates the validity of the proposed fabrication protocol. This work represents an important step toward the use of a milling technique for PDMS-based microfabrication.
机译:我们提供了一种简便且低成本的方法(F-L),该方法可使用基于聚二甲基硅氧烷(PDMS)的微通道成型的铣削技术来制造二维正原版。该方法包括以下步骤:(1)将正的微型几何原版研磨到丙烯酸块上; (2)预固化的PDMS用于模制微型正母版; (3)将PDMS板从母板上剥离并用钝针刺穿; (4)将PDMS板用O 2等离子结合到载玻片上。使用这种技术,我们可以快速,廉价地用非常简单的协议制造微通道。这种方法还可以避免在制造窄通道(宽度<50 µm)时数控数控系统(CNC)的立铣刀(ϕ = 0.4 mm)损坏。可以通过预固化的PDMS克服铣削底层的突出表面粗糙度,而在设计时要权衡取舍。最后,乳液的形成成功地证明了所提出的制造方案的有效性。这项工作代表了将铣削技术用于基于PDMS的微加工的重要一步。

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