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An Approach for Fabrication of Polymer-based Bio-analytical Microfluidic Devices

机译:一种基于聚合物的生物分析微流控装置的制造方法

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This research performed on the fabrication of thermal bonding of polymer microfluidic devices. Hot embossing process and thermal bonding were both achieved. Fine replication by micro hot embossing using polycarbonate substrate has been modified. Nanoscan machine using optical technique can be used to analyze the fabricated microstructures. Hot embossing results show that the near perfect replication of microstructure has been demonstrated, and the shrink degree of the geometry is less than 3%. The two stage process of thermal bonding was performed. The advantage of this method is to prevent the channel filled with the cover plate. The bond strength of the interface for the micro channel is greater than 17MPa using pull test method. The best results were able to seal the microstructure and drilled hole properly and allow for fluids to flow through channel from one reservoir to another one.
机译:这项研究是对聚合物微流体装置的热键合制造进行的。均实现了热压花工艺和热粘合。通过使用聚碳酸酯基材的微热压纹的精细复制已得到改进。使用光学技术的纳米扫描机可以用来分析所制造的微结构。热压花结果表明,已经证明了微结构的近乎完美的复制,并且几何形状的收缩率小于3%。进行热粘合的两阶段过程。该方法的优点是防止通道充满盖板。使用拉力测试方法,微通道界面的结合强度大于17MPa。最好的结果是能够正确密封微结构和钻孔,并使流体从一个储层流到另一个储层。

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