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Micro injection moulding process and product characterization

机译:微注射成型工艺和产品表征

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摘要

Due to its high efficiency for the large scale production of polymeric parts, micro injection moulding is one of the key technologies of the new millennium. Although a lot of researches have been conducted to identify the most effective processing conditions for micro injection moulding, the comprehension of the influence of all parameters on the quality, the properties and the reliability of the moulded parts is still an issue. In this context, this study aims to evaluate the effects of the micro injection moulding process conditions on the tensile properties of micro parts, investigating the influence of three main process parameters: the injection speed, the mould temperature and the melt temperature. A full factorial plan has been applied to study the contributions of these parameters and a second study has been performed to understand the synergic interaction between the two temperatures on the tensile strength. Due to its high level of potential crystallinity, a typical semi-crystalline thermoplastic resin was used in the experiments. The results of the analysis showed a great influence of the mould temperature (T_(mould) on the ultimate tensile strength and of the melt temperature (T_(melt)) on the deformation at the point of breaking; whereas the injection speed was significant on the overall mechanical performance. A new studied factor (T_(melt-) T_(mould) could affect the resulting molecular structure and consequently the mechanical behaviour, but itself is not sufficient to thoroughly explain the observed behaviour. Moreover, the visual inspection of the deformation mechanism at break shows three distinctive trends demonstrating the great variability of the mechanical properties of micro-injected specimens due to process conditions.
机译:由于其对于大规模生产聚合物零件的高效率,微注射成型是新千年的关键技术之一。尽管已经进行了许多研究来确定微注射成型的最有效的加工条件,但是要理解所有参数对成型件的质量,性能和可靠性的影响仍然是一个问题。在此背景下,本研究旨在评估微注射成型工艺条件对微零件拉伸性能的影响,研究三个主要工艺参数的影响:注射速度,模具温度和熔融温度。一项完整的析因计划已应用于研究这些参数的贡献,并且已进行了第二项研究以了解两个温度之间对拉伸强度的协同作用。由于其高的潜在结晶度,在实验中使用了典型的半结晶热塑性树脂。分析结果表明,模具温度(T_(模具)对极限拉伸强度的影响很大)和熔体温度(T_(熔体))对断裂点变形的影响很大;而注射速度对一个新的研究因素(T_(熔融-)T_(模具)可能会影响所得的分子结构,进而影响机械性能,但其本身不足以彻底解释所观察到的性能。断裂变形机理表现出三个明显的趋势,表明由于工艺条件的影响,显微注射样品的机械性能存在很大的变化。

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