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Micromachining Microchannels on Cyclic Olefin Copolymer (COC) Substrates with the Taguchi Method

机译:Taguchi法在环烯烃共聚物(COC)基底上微加工微通道

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Micromilling is a straightforward approach to the manufacture of polymer microfluidic devices for applications in chemistry and biology. This fabrication process reduces costs, provides a relatively simple user interface, and enables the fabrication of complex structures, which makes it ideal for the development of prototypes. In this study, we investigated the influence of micromilling parameters on the surface roughness of a cyclic olefin copolymer (COC) substrate. We then employed factor analysis to determine the optimal cutting conditions. The parameters used in all experiments were the spindle speed, the feed rate, and the depth of cut. Roughness was measured using a stylus profilometer. The lowest roughness was 0.173 ????m at a spindle speed of 20,000 rpm, feed rate of 300 mm/min, and cut depth of 20 ????m. Factor analysis revealed that the feed rate has the greatest impact on surface quality, whereas the depth of cut has the least impact.
机译:微研磨是制造用于化学和生物学的聚合物微流体装置的直接方法。这种制造过程降低了成本,提供了相对简单的用户界面,并使得能够制造复杂的结构,这使其非常适合原型开发。在这项研究中,我们研究了微铣削参数对环状烯烃共聚物(COC)基材表面粗糙度的影响。然后,我们使用因素分析来确定最佳切割条件。所有实验中使用的参数是主轴转速,进给速度和切削深度。使用测针轮廓仪测量粗糙度。在主轴转速为20,000rpm,进给速度为300mm / min,切削深度为20μm时,最低粗糙度为0.173μm。因子分析表明,进给速度对表面质量的影响最大,而切削深度的影响最小。

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