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首页> 外文期刊>Journal of Micromechanics and Microengineering >Fabrication of robust tooling for mass production of polymeric microfluidic devices
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Fabrication of robust tooling for mass production of polymeric microfluidic devices

机译:大规模生产聚合物微流体装置的坚固工具的制造

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摘要

Polymer microfluidic devices are gaining popularity for bio-applications. In both commonly used methods for the fabrication of polymer microfluidic devices, i.e. injection molding and hot-embossing, the quality of a mold insert is of high importance. Micro powder injection molding (μPIM) provides a suitable option for metal mold insert fabrication. In this paper, two mold inserts with micro-features of different patterns and sizes were produced using 316L stainless steel powder and an in-house binder system. The mold inserts were successfully used to produce cyclic olefin copolymer (COC, trade name TOPAS) micromixer plates with micro-channels of widths 100μm and 50μm. Compared with CNC-machined hot work steel mold inserts, the quality of the micro-channels is better as far as geometrical quality and dimensional tolerance are concerned. However, surface finish and flatness of the μPIM mold inserts are inferior to those of CNC-machined mold inserts.
机译:聚合物微流体装置在生物应用中越来越受欢迎。在制造聚合物微流体装置的两种常用方法中,即注塑和热压花,模具嵌件的质量非常重要。微粉末注射成型(μPIM)为金属模具嵌件的制造提供了合适的选择。在本文中,使用316L不锈钢粉末和内部粘合剂系统生产了具有不同图案和尺寸的微特征的两个模具镶件。模具嵌件已成功用于生产宽度为100μm和50μm的微通道的环状烯烃共聚物(COC,商品名TOPAS)微混合器板。与数控加工的热作模具钢相比,就几何形状和尺寸公差而言,微通道的质量更好。但是,μPIM模具插件的表面光洁度和平面度不如CNC加工的模具插件。

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