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首页> 外文期刊>International journal of plastics technology >Elliptical cross sectional shape of runner system in injection mold design
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Elliptical cross sectional shape of runner system in injection mold design

机译:注塑模具设计中流道系统的椭圆截面形状

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This paper presents a new cross sectional shape of the runner system in the mold design of the injection molding process. The aim of the new geometry is to reduce scrap, cycle time and ease the ejection of runner system from mold tools. An elliptical cross sectional shape of runner with different ratios was proposed for two circular flat plates with thickness 1 mm. Finite element method (FEM) is employed in SolidWorks Plastic for simulation of the injected part. Short shot defect in the plastic part during the injection molding process is analyzed by SolidWorks Plastic to validate the new proposed geometry. An experimental study of the injection molding process of polypropylene circular flat plates is conducted for the new geometry. The input machine parameters selected are filling time, melt temperature, mold temperature, pressure holding time, and pure cooling time. The research outcomes show no short shot defect associated with the new geometry and also significant 25 and 2.5 % reduction in scrap and cooling time respectively compared to round cross sections. Reduction in contact surface of the runner system with mold walls improved the ease of ejection of runner system out of the cavity as well. The contribution of this study is to design a new geometry of a cold runner system to reduce scrap, cycle time and also provide easy ejection of runner system in the injection molding.
机译:本文介绍了注塑系统模具设计中流道系统的新横截面形状。新几何形状的目的是减少废料,缩短循环时间并简化流道系统从模具中弹出。对于厚度为1mm的两个圆形平板,提出了具有不同比例的流道的椭圆形横截面形状。 SolidWorks Plastic中采用了有限元方法(FEM)来模拟注塑零件。 SolidWorks Plastic分析了注塑过程中塑料零件中的短射缺陷,以验证新提议的几何形状。针对新的几何形状,对聚丙烯圆形平板的注射成型工艺进行了实验研究。选择的输入机器参数为填充时间,熔融温度,模具温度,保压时间和纯冷却时间。研究结果表明,与新几何形状无关的短射缺陷,并且与圆形截面相比,废料和冷却时间分别减少了25%和2.5%。流道系统与模具壁的接触表面的减少也改善了流道系统从型腔中弹出的容易性。这项研究的目的是设计一种冷流道系统的新几何形状,以减少废料,缩短循环时间,并在注塑过程中使流道系统易于弹出。

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