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Influence of mould thermal properties on the replication of micro parts via injection moulding

机译:模具热性能对通过注塑成型微零件复制的影响

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The surface quality that results when replicating micro features is one of the most important process characteristics in micro injection moulding, and it constitutes a manufacturing constraint in applying the technique to a wider range of micro engineering applications. Moulding micro features with a high aspect ratio is a critical task, in particular when the feature width is small, due to a faster temperature decrease than in macro/meso scale cavities. In order to investigate the influence of the thermal diffusivity of the mould material in micro structured surfaces replication, in this paper two moulds, made respectively of tool steel and zirconia ceramic composite, have been used to replicate a micro structured surface. Micro Electrical Discharge Machining (μEDM) was employed to manufacture both the steel and the ceramic mould. The thermal diffusivity of the mould materials was measured in order to relate it to the degree of replication. Then, micro features were replicated via micro injection moulding, at the same controlled process conditions, and the replication degree was measured by means of an optical coordinate measurement machine. The results of the experimental tests display a sharp improvement of the quality of the micro structure replicated with the ceramic mould, that is when using a mould material with low thermal diffusivity. This effect, which is related to the ability of the material to delay the polymer skin solidification when the cavity is filled in, can be effectively exploit to enhance the capabilities of the current micro injection moulding technologies in manufacturing components with features characterized by higher complexity and aspect ratio.
机译:在复制微观特征时产生的表面质量是微注塑成型中最重要的工艺特性之一,并且它在将技术应用于更广泛的微工程应用方面构成了制造限制。具有高纵横比的模塑微特征是关键任务,特别是当特征宽度小时,由于比宏/台面尺度腔更快的温度降低。为了研究模具材料在微结构化表面复制中的热扩散率的影响,在本文中,分别由工具钢和氧化锆陶瓷复合材料制成的两个模具,用于复制微结构化表面。采用微电路放电加工(μEDM)制造钢和陶瓷模具。测量模具材料的热扩散率,以使其与复制程度相关联。然后,通过微注射成型在相同的受控工艺条件下通过微注射成型复制微观特征,通过光学坐标测量机测量复制度。实验试验的结果显示了用陶瓷模具复制的微结构的质量的显着提高,即使用具有低热扩散率的模具材料。这种效果与材料延迟腔填充时的材料延迟聚合物皮肤凝固的能力,可以有效地利用具有特征在于具有更高复杂性的特征的制造部件中的当前微注射成型技术的能力。宽高比。

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