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Surface features of polymer and ceramic microstructured parts manufactured by micro injection molding

机译:通过微注塑成型制造的聚合物和陶瓷微结构部件的表面特征

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Microstructures are produced respectively by polymer and powder micro injection molding under different process conditions. Two different types of mold insert are designed and manufactured by ICP etching: one with exhaust passage and the other with micro blind hole. This paper investigates the effects of injection parameters, mold vacuum, and silicon mold on the surface quality of polymer microstructures and ceramic green parts. The effects of powder content and sinter temperature on the surface roughness of ZrO2 microstructures are also studied Investigation indicates that inappropriate injection conditions will induce rough and cured surface with cavity. The surface quality of micro structures will improve obviously if the mold is vacuumed before the injection stage. The roughness of etched silicon mold surface is about 0.31μm. These completely filled polymer microstructures and ZrO2 green parts have approximately same roughness with the silicon mold. If microcavities were filled completely, the effects of injection pressure, mold temperature and holding time on the surface roughness of polymer and ceramic green microstructures is not obvious. Sub-micron ZrO2 powder could improve the surface roughness of sintered ceramic microstructures.
机译:在不同的工艺条件下,分别通过聚合物和粉末微注射成型产生微观结构。通过ICP蚀刻设计和制造了两种不同类型的模具插件:一个带排气通道,另一个具有微盲孔。本文研究了注射参数,模具真空和硅模具对聚合物微观结构和陶瓷绿部件的表面质量的影响。还研究了粉末含量和烧结温度对ZrO 2 微结构的影响表明,调查表明,不恰当的注射条件将诱导粗糙和固化表面。如果在注射阶段之前,微结构的表面质量将显而易见。蚀刻硅模板的粗糙度约为0.31μm。这些完全填充的聚合物微结构和ZrO 2 绿色部件与硅模具大致相同的粗糙度。如果完全填充微腔,则注射压力,模具温度和保持时间对聚合物和陶瓷绿色微观结构的表面粗糙度的影响并不明显。亚微米ZrO 2 粉末可以改善烧结陶瓷微观结构的表面粗糙度。

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