Micro injection molding is very suitable for mass production of thermoplastics-based micro- and mini- parts. Analyzing of the filling process in micro injection molding is helpful and important for the optimization of fabrication process and molding structure.
微注塑成型制造方法非常适合于热塑性材料微小型器件大批量生产,对微注塑关键步骤—充型进行分析计算,有助于微注塑工艺参数和模具结构优化。
参考来源 - 高聚物熔体表面特性测试及对微注塑影响研究The significance of polymer melt plastification technology in micro injection molding was expatiated,several polymer plastification technologies in micro injection molding,including plunger plastification,screw plastification,electromagnetism dynamic plastification,and ultrasonic plastification were analysed and compared. The development trend of polymer plastification technology was prospected.
阐述了聚合物熔融塑化技术在微注射成型中的重要性,比较、分析了当前出现的柱塞式塑化、螺杆式塑化、电磁动态塑化及超声塑化等4种聚合物的熔融塑化方式,展望了未来微注射成型中聚合物熔融塑化技术的发展趋势。
参考来源 - 微注射成型中聚合物熔融塑化技术·2,447,543篇论文数据,部分数据来源于NoteExpress
Firstly, previous researches on micro injection molding and visual mold are summarized.
首先,归纳总结了微注塑成型方法与注塑成型可视化方法的研究现状。
Micro injection molding is most appropriate for commercial production of microfluidic chips owing to its high productivity.
注塑成型因生产效率高、适用于批量生产而成为微流控芯片商业化的首选成型方法。
Contraction flow behavior contributes significantly to the orientation and structure of molecular in micro injection molding.
聚合物流体的收缩流动行为是微注射成型工艺过程中影响分子取向与结构的重要因素。
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