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Injection molding of polymer micro- and sub-micron structures with high-aspect ratios

机译:高长宽比的聚合物微米和亚微米结构的注塑成型

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This work studies the injection molding characteristics of polymer micro- and sub-micron structures using demonstration mold inserts with micro- and sub-micron channels with high-aspect ratios. The effects of the injection molding parameters on the achievable aspect ratio of the micro- and sub-micron walls were investigated. Additionally, distinctive mold-filling behaviors and resulting defects were observed for various polymers, such as polymethyl methacrylate (PMMA), polypropylene (PP) and high-density polyethylene (HDPE). Experimental results reveal that the mold temperature determines the success of the injection molding of micro- and sub-micron walls. The satisfactory mold temperature for micro-injection molding significantly exceeds that for traditional injection molding. Moreover, the main injection pressure and the main injection time substantially affect the achievable aspect ratio of the micro- and sub-micron walls. Furthermore, unusual flow behaviors occur and poor molding results are obtained when PP and HDPE are used for micro-injection molding.
机译:这项工作使用具有高长宽比的具有微米和亚微米通道的示范模具插件研究了聚合物微米和亚微米结构的注塑特性。研究了注塑参数对可实现的微米和亚微米壁长宽比的影响。此外,对于各种聚合物,例如聚甲基丙烯酸甲酯(PMMA),聚丙烯(PP)和高密度聚乙烯(HDPE),观察到了独特的模具填充行为和所产生的缺陷。实验结果表明,模具温度决定了微米和亚微米壁的注塑成型成功与否。用于微注射成型的令人满意的模具温度大大超过了传统注射成型的温度。而且,主喷射压力和主喷射时间实质上影响了微米和亚微米壁的可达到的纵横比。此外,当使用PP和HDPE进行微注射成型时,会发生异常的流动行为并获得不良的成型结果。

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