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首页> 外文期刊>Journal of microanolithography, MEMS, and MOEMS >Optimization of an optical disk manufacturing process for polymer microfluidic substrates by using the design of experiment methodology
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Optimization of an optical disk manufacturing process for polymer microfluidic substrates by using the design of experiment methodology

机译:通过实验方法的设计优化聚合物微流控基片的光盘制造工艺

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摘要

We present an improved method for manufacturing microfluidic structures on a polymer-based substrate, and the design of experiment (DOE) is used to extract the optimum injection parameters. The long cycle time of the injection molding causes high costs in manufacturing, and this prevents conventional techniques from being widely used for mass production. Therefore, this study adopts a new optical disk process to reduce the cycle time. The cycle time of the new method can be reduced by more than ten-fold compared with that of traditional ones. Also, this new method can prevent damage on the mirror plate of the mold. The mold system is composed of a mold insert (stamper) holder and a vacuum system to join the mold insert with the mold. In this way, the time needed to change the stamper is drastically decreased. Our proposed method has the ability to reduce the time required to insert the mold from several hours to a few minutes, to prevent damage on the mirror plate of the mold, and to decrease the cycle time of molding from several minutes to 4 sec. The DOE is applied to study the effects of molding parameters on replication rate of depth, width deviation, birefringence, tilt and surface roughness of the microfluidic substrates. The experimental results show that the proposed method is suitable for mass production.
机译:我们提出了一种在聚合物基衬底上制造微流体结构的改进方法,并通过实验设计(DOE)提取了最佳注射参数。注射成型的长循环时间导致高制造成本,并且这阻止了常规技术被广泛用于批量生产。因此,本研究采用了一种新的光盘工艺来减少周期时间。与传统方法相比,新方法的循环时间可减少十倍以上。同样,这种新方法可以防止损坏模具的镜板上。模具系统由模具插件(压模)支架和将模具插件与模具连接的真空系统组成。以这种方式,大大减少了更换压模所需的时间。我们提出的方法能够将插入模具所需的时间从数小时减少到几分钟,防止损坏模具的镜板上,并将成型的循环时间从数分钟减少到4秒。 DOE用于研究成型参数对微流体基材的深度复制率,宽度偏差,双折射,倾斜和表面粗糙度的影响。实验结果表明,该方法适用于批量生产。

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