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Fabrication of polymer microfluidic devices with 3D microfeatures that have near optical surface quality

机译:具有近光学表面质量的3D微泡的聚合物微流体装置的制备

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A low cost manufacturing method for creating polymer microfluidic devices with microfeatures that have near optical surface quality is described in this paper. The manufacturing method involves laser micromachining, partial hot embossing, and molding (LHEM) to create polymethylmethacrylate (PMMA) mold masters for device replication. A metallic hot intrusion mask with the desired microfeatures is first machined by laser and then used to produce the mold master by pressing the mask onto a PMMA substrate under applied heat and pressure. The resultant 3D micro-reliefs have near optical quality surface finishes. Design parameters such as the height and width of the extruded features are investigated in this study. The experimental results demonstrate that different heights of the extruded features of a mold master can be fabricated using a single mask at a set of process parameters. Examples of curved microchannels of the PMMA mold masters and an integrated microchannel/microlens of the mold master are presented to illustrate the proposed methodology.
机译:本文描述了一种低成本制造方法,用于产生具有近光学表面质量附近的微泡的聚合物微流体装置。制造方法涉及激光微加工,部分热压花和模塑(LHEM),以产生用于器件复制的聚甲基甲基丙烯酸甲酯(PMMA)模具主体。通过激光加工具有所需微泡的金属热入侵掩模,然后通过将掩模压在PMMA基板上,在应用的热量和压力下通过将掩模压在PMMA基板上来制造模具主体。所得到的3D微浮雕近光学质量表面饰面。在本研究中研究了诸如挤出特征的高度和宽度的设计参数。实验结果表明,可以在一组工艺参数下使用单个掩模来制造模具主体的挤出特征的不同高度。提出了PMMA模具主体的弯曲微通道和模具主体的集成微通道/微透镜的示例以说明所提出的方法。

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