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Replication of micro-feature using variety of polymer and commonly used mould at elevated temperature and pressure

机译:使用各种聚合物和常用模具在升高的温度和压力下复制微型特征

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Due to the functional dependency of micro-systems technologies on stringent dimensions, masses and tolerances, strict quality requirement is paramount for mass producing micro-parts for use in micro-devices. The consistency of components produced could vary as a result of significant effects of process parameters or process noise, thereby necessitating the urge for experimental studies to determine the best process combination that will produce a variant free component that will meet the dimension, mass and other parameters requirement of its application use. In this paper, the influence of some process parameters on replication of micro-feature is explored. Parts with micro-feature designed are moulded using polyethylene and polypropylene. Design of experiment (DoE) approach was applied to correlate the fabricated parts quality to the processing parameters. Two level, half factorial 8-run (2~(4-1)) experimental plan was used to investigate the effect of four process parameters of melt temperature, injection pressure, mould temperature and holding time on the replicated quality of the moulded parts, with part mass as output parameter to reflect variability. Of all the investigated process parameters, result of experiment indicated melt temperature and holding time as most statistical significant processing parameter for parts produced using polypropylene.. While there are no statistically significant effects of process parameters for those parts produced using polyethylene, rather, variability is observed to have occurred as a result of process noise. Furthermore, the experiments show that variability in the response parameter during micro-injection moulding differs for different polymer. Therefore, appropriate polymer type should as well be made to match with suitable processing parameters so as to obtain quality replication of micro-feature when mass producing.
机译:由于微系统技术对严格尺寸,质量和公差的功能依赖性,严格的质量要求对于批量生产用于微型器件的微零件至关重要。由于工艺参数或过程噪声的显着影响,所产生的部件的一致性可能变化,从而需要进行实验研究的推动,以确定将产生符合尺寸,质量和其他参数的变体组合的最佳工艺组合要求其应用程序使用。在本文中,探讨了一些过程参数对微观特征复制的影响。使用聚乙烯和聚丙烯模塑微型特征的零件。实验(DOE)方法的设计被应用于将制造的零件质量与加工参数相关联。两个水平,半因子8运行(2〜(4-1))实验计划用于研究熔体温度,注射压力,模具温度和保持时间对模塑部件复制质量的四个工艺参数的影响,零件质量作为输出参数以反映变异性。在所有调查的工艺参数中,实验结果表明使用聚丙烯生产的部件的熔体温度和保持时间,因为使用聚乙烯产生的那些部件没有统计学上显着的影响,而是可变异性观察到由于过程噪声而发生。此外,实验表明,微注射成型期间的响应参数的可变性不同于不同的聚合物。因此,还应采用适当的聚合物类型与合适的加工参数匹配,以便在批量生产时获得微观特征的质量复制。

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