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Analysis of the Downscaling Effect and Definition of the Process Fingerprints in Micro Injection of Spiral Geometries

机译:微量注射螺旋形几何图形的降尺度效果和过程指纹的定义分析

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摘要

Microinjection moulding has been developed to fulfil the needs of mass production of micro components in different fields. A challenge of this technology lies in the downscaling of micro components, which leads to faster solidification of the polymeric material and a narrower process window. Moreover, the small cavity dimensions represent a limit for process monitoring due to the inability to install in-cavity sensors. Therefore, new solutions must be found. In this study, the downscaling effect was investigated by means of three spiral geometries with different cross sections, considering the achievable flow length as a response variable. Process indicators, called “process fingerprints”, were defined to monitor the process in-line. In the first stage, a relationship between the achievable flow length and the process parameters, as well as between the process fingerprints and the process parameters, was established. Subsequently, a correlation analysis was carried out to find the process indicators that are mostly related to the achievable flow length.
机译:已经开发出微注射成型以满足在不同领域中大量生产微组件的需求。该技术的挑战在于微型组件的缩小规模,这导致聚合物材料更快的固化和更窄的工艺窗口。此外,由于无法安装腔内传感器,小腔体尺寸代表了过程监控的限制。因此,必须找到新的解决方案。在这项研究中,考虑到可达到的流量长度作为响应变量,通过具有不同横截面的三种螺旋几何形状研究了降尺度效应。定义了称为“过程指纹”的过程指示器以在线监视过程。在第一阶段,建立可达到的流量长度与过程参数之间的关系,以及过程指纹与过程参数之间的关系。随后,进行了相关分析以找到与可达到的流量长度最相关的过程指标。

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