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Research on Microchannel of PMMA Microfluidic Chip under Various Injection Molding Parameters

机译:各种注射成型参数下PMMA微流体芯片微通道研究

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Microfluidic chip has bright application prospect in the field of chemical and biological analysis. PMMA is the best material for microfluidic chip fabrication because of its low cost, prominent electrochemical properties and biological compatibility. In this work, a triple-channel microfluidic chip was designed; a nickel mold insert with microstructure was fabricated by UV-LIGA technology, and then the injection mold was designed and fabricated. The change in cross-section dimensions of microchannel was chosen as evaluating indicator, and micro-injection molding experiments were carried out. Then the influence of process parameters on cross-section dimensions of microchannel was observed with microscope. Experiment results demonstrated that substrate and cover plate could be manufactured in a single injection molding process by "1+1" type mold, and the manufacturing cycle was reduced to less than 20s, so production efficiency was greatly enhanced. Best combination of process parameters was obtained when mold temperature was 80°C, melt temperature was 250°C and injection rate was 297mm/s. Thereby, high quality substrate and cover plate could be manufactured efficiently.
机译:微流体芯片在化学和生物分析领域具有明亮的应用前景。 PMMA是微流体芯片制备的最佳材料,因为其低成本,突出的电化学性能和生物相容性。在这项工作中,设计了一个三通道微流体芯片;通过UV-LIGA技术制造具有微观结构的镍模具插入物,然后设计并制造注射模。选择微通道的横截面尺寸的变化作为评价指标,进行微注射成型实验。然后用显微镜观察过程参数对微通道横截面尺寸的影响。实验结果表明,基板和盖板可以通过“1 + 1”型模具在单个注塑过程中制造,并且制造循环降低至小于20s,因此生产效率大大提高。当模具温度为80℃时,获得最佳组合过程参数,熔体温度为250℃,注射速率为297mm / s。由此,可以有效地制造高质量的基板和盖板。

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