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Improved Gate System for Scrap Reduction in Injection Molding Processes

机译:改进的浇口系统,可减少注塑过程中的废料

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This paper introduces a new geometry of the gate system in injection moulding process. The corners of existing edge gates results in the turbulence of molten plastic into the cavity which leads to internal and external defects. The aim of the new geometry is to reduce the internal and external defects of injected parts. Also easier de-gating of final part for the new geometry which decreases the visible blemish of final part after de-gating is a target of this study. A new design of edge gate is suggested for two circular flat plates with a thickness of 1mm. Internal and external defects in the plastic part are analysed with SolidWorks Plastics to validate the proposed geometry. The contribution of this research is to modify the geometry of existing edge gate by removing the corners of rectangular edge gate to reduce the scrap rate of injected parts. Also, a smooth flow of molten plastic into the cavities reduces the internal and external defects. The outcome demonstrates filling the cavities with no short shot. Also, no weld lines, meld lines or sink marks were detected with new design of the edge gate. Finally, the injected part with new design of the edge gate has less visible blemish in comparison with existing edge gate.
机译:本文介绍了注射成型过程中浇口系统的新几何形状。现有边缘浇口的拐角导致熔融塑料进入腔体的湍流,从而导致内部和外部缺陷。新几何形状的目的是减少注射零件的内部和外部缺陷。本研究的目标还在于简化新几何形状的最终零件的变形,以减少变形后最终零件的可见瑕疵。对于两个厚度为1mm的圆形平板,建议采用新的边缘浇口设计。使用SolidWorks Plastics分析塑料零件中的内部和外部缺陷,以验证建议的几何形状。这项研究的贡献在于,通过去除矩形边缘浇口的拐角来减少注射零件的报废率,从而修改了现有边缘浇口的几何形状。而且,熔融塑料顺利流入型腔可减少内部和外部缺陷。结果表明没有短射就可以填充型腔。同样,采用新设计的边缘浇口也未检测到熔接线,熔接线或凹陷痕迹。最后,与现有的边缘浇口相比,采用新型边缘浇口的注塑零件具有较少的可见瑕疵。

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