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。
Based on the analyses of wall slip mechanism of polymer melt flowing, the effects of wall slip on melt filling flow behavior in micro injection molding were investigated.
分析了微尺度下熔体壁面滑移机理,研究了微注塑成形中壁面滑移对熔体充模流动行为的影响。
In order to solve the problems in the micro injection molding, some measures of improvement in the plasticizing, injection, metering units, and monitoring system were proposed.
综述了微注射成型技术存在的问题和改进方法,探讨了微注射成型机的塑化、注射和计量等装置的结构性能改进,并提出了监测系统的改进方案。
Micro powder injection molding is becoming hot spot rapidly because of its broad marketplace prospect, but as the flow mechanism is not still clear, it leads to the instability of product quality.
粉末微注射成型由于其市场前景广阔而迅速成为当今的研究热点,但由于其流动机理尚不明朗导致产品质量不稳定。
Micro powder injection molding is becoming hot spot rapidly because of its broad marketplace prospect, but as the flow mechanism is not still clear, it leads to the instability of product quality.
粉末微注射成型由于其市场前景广阔而迅速成为当今的研究热点,但由于其流动机理尚不明朗导致产品质量不稳定。
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