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首页> 外文期刊>Journal of Micromechanics and Microengineering >Replication of microano-scale features by micro injection molding with a bulk metallic glass mold insert
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Replication of microano-scale features by micro injection molding with a bulk metallic glass mold insert

机译:通过使用大块金属玻璃模具插件进行微注射成型来复制微/纳米级特征

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The development of MEMS and microsystems needs a reliable mass production process to fabricate micro components with microano-scale features. In our study, we used the micro injection molding process to replicate microano-scale channels and ridges from a bulk metallic glass (BMG) cavity insert. High-density polyethylene was used as the molding material and the design of experiment approach was adopted to systematically and statistically investigate the relationship between machine parameters, real process conditions and replication quality. The peak cavity pressure and temperature were selected as process characteristic values to describe the real process conditions that the material experienced during the filling process. The experiments revealed that the replication of ridges, including feature edge, profile and filling height, was sensitive to the flow direction; cavity pressure and temperature both increased with holding pressure and mold temperature; replication quality can be improved by increasing cavity pressure and temperature within a certain range. The replication quality of microano features is tightly related to the thermomechanical history of material experienced during the molding process. In addition, the longevity and roughness of the BMG insert were also evaluated based on the number of injection molding cycles.
机译:MEMS和微系统的发展需要可靠的批量生产过程,以制造具有微米/纳米级特征的微元件。在我们的研究中,我们使用微注射成型工艺从块状金属玻璃(BMG)腔插入物中复制了微/纳米级通道和凸脊。以高密度聚乙烯为成型材料,采用实验方法设计,系统统计地研究了机器参数,实际工艺条件和复制质量之间的关系。选择峰值腔压力和温度作为过程特征值,以描述材料在填充过程中经历的实际过程条件。实验表明,脊的复制,包括特征边缘,轮廓和填充高度,对流向很敏感。模腔压力和温度都随着保压压力和模具温度的升高而增加;通过在一定范围内增加腔体压力和温度可以改善复制质量。微米/纳米特征的复制质量与成型过程中所经历的材料的热机械历史密切相关。此外,还根据注塑成型周期数评估了BMG刀片的寿命和粗糙度。

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