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首页> 外文期刊>Journal of Micromechanics and Microengineering >Filling of high aspect ratio micro features of a microfluidic flow cytometer chip using micro injection moulding
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Filling of high aspect ratio micro features of a microfluidic flow cytometer chip using micro injection moulding

机译:使用微注塑成型填充微流体流式细胞仪芯片芯片的高纵横比微特征

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摘要

Micro injection moulding has been demonstrated as one of the most efficient mass production technologies for manufacturing polymeric microfluidic devices, which have been widely used in life sciences, environmental and analytical fields and agro-food industries. However, the filling of micro features for typical microfluidic devices is complicated and not yet fully understood, which consequently restricts the chip development. In the present work, a microfluidic flow cytometer chip with essential high aspect ratio micro features was used as a typical model to study their filling process. Short-shot experiments and single factor experiments were performed to examine the filling progress of such features during the injection and packing stages of the micro injection moulding process. The influence of process parameters such as shot size, packing pressure, packing time and mould temperature were systematically monitored, characterised and correlated with 3D measurements and real response of the machine such as screw velocity and screw position. A combined melt flow and creep deformation model was proposed to explain the complex influence of process on replication. An approach of over-shot micro injection moulding was proposed and was shown to be effective at improving the replication quality of high aspect ratio micro features.
机译:微注塑成型已被证明是制造聚合物微流体装置的最有效的批量生产技术之一,这些技术已广泛用于生命科学,环境和分析领域和农业食品工业。然而,典型微流体装置的微观特征的填充是复杂的,并且尚未完全理解,因此限制了芯片开发。在本作本作中,用必要的高纵横比微观特征的微流体流式细胞仪芯片用作研究其填充过程的典型模型。进行短拍实验和单一因子实验,以检查微注射成型过程的注射和包装阶段期间这些特征的填充进展。系统地监测工艺参数,如拍摄尺寸,包装压力,包装时间和模具温度的影响,其特征和与螺钉速度和螺钉位置的3D测量和实际响应相关。提出了一种组合的熔体流动和蠕变变形模型来解释过程对复制的复杂影响。提出了一种过滴微注射成型的方法,并显示出改善高纵横比微特征的复制质量有效。

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