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EFFECT OF SURFACE ROUGHNESS IN MICRO INJECTION MOULDING PROCESS OF THIN CAVITIES

机译:表面粗糙度在薄型腔微注射成型工艺中的作用

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摘要

Due to its ability to produce low-cost and high repeatable micro polymeric parts, injection moulding of micro components is emerging as one of the most promising enabling technologies for the manufacturing of polymeric micro-parts in in many different fields, from IT to Healthcare, to Medicine. However, when approaching the micro-scale, different issues related to the process should be addressed, especially as the depth of the mould cavity becomes very thin. In particular, the mould roughness could affect the surface quality of the produced micro components, like in macro moulding, as well as the complete filling of the parts. Although micro-injection moulding process has been extensively studied, further research on the effect of mould roughness conditions and on non-Newtonian fluid flow in micro-cavities are required. This will shed a light and open up new paths for a deeper understanding of the moulding scenario. The main objective of the present paper is the evaluation of the influence of the mould roughness on the polymer flow during micro injection moulding process. The test parts have been realized in POM material and have thickness lower than 250 urn. The test part design has been properly conceived in order to neglect the effect of dimensions and geometry and to highlight the roughness contribution during the filling phase of micro injection moulding process. The experimentation has been performed considering cavities with different roughness values (3 levels) and decreasing depths (3 levels), for a total of nine test parts manufactured by micro-electrical discharge machining process (μ-EDM). The results of the experiments are discussed in the paper and show that cavity surface roughness affects the injection process as the moulding scale level is decreased. In particular, when the cavity depths are reduced, higher surface roughness promotes the filling of components and this finding could be ascribed to the increase of wall slip effect.
机译:由于其生产低成本和高重复性的微型聚合物零件的能力,微型零件的注塑成型正在成为从IT到医疗保健等许多不同领域中制造聚合物微型零件的最有前途的使能技术之一。去医学。但是,当接近微米级时,应解决与该过程有关的不同问题,尤其是当模腔的深度变得非常薄时。尤其是,模具粗糙度可能会影响所生产的微型部件的表面质量,例如在宏观成型中以及对零件的完全填充。尽管对微注射成型工艺进行了广泛的研究,但仍需要对模具粗糙度条件和微腔中非牛顿流体流动的影响进行进一步研究。这将为进一步加深对成型场景的理解开辟一条道路,并开辟新的道路。本文的主要目的是评估微注射成型过程中模具粗糙度对聚合物流动性的影响。测试部件采用POM材料制成,厚度小于250微米。测试零件的设计经过适当构思,以忽略尺寸和几何形状的影响,并突出显示微注射成型过程的填充阶段中的粗糙度影响。考虑到具有不同粗糙度值(3个级别)和减小的深度(3个级别)的型腔,进行了该实验,总共有9个通过微电火花加工工艺(μ-EDM)制造的测试零件。实验结果在论文中进行了讨论,结果表明,随着模塑规模的降低,模腔表面的粗糙度会影响注射过程。特别地,当腔深度减小时,较高的表面粗糙度促进了部件的填充,并且该发现可归因于壁滑效应的增加。

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