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首页> 外文期刊>Journal of Cellular Plastics >Study on reducing sink mark depth of a microcellular injection molded part with many reinforcing ribs
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Study on reducing sink mark depth of a microcellular injection molded part with many reinforcing ribs

机译:减少具有加强筋的微孔注塑件沉痕深度的研究

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As a novel injection molding process, microcellular injection molding process has the characteristics of saving material, decreasing warpage and surface sink mark, improving dimensional accuracy, etc. But for the plastic part with thick reinforcing ribs, if selection of process parameters are not reasonable, foaming quality of melt will be affected and obvious sink mark defects will appear on the surface of plastic part. This paper selected a medical appliance shell with many reinforcing ribs as research object. Simulation experiments of microcellular injection molding process were performed by using orthogonal experiment method. The influence of different process parameters, such as mold cavity surface temperature, melt temperature, injection rate, cooling time, weight reduction ratio and supercritical fluid level, on the surface sink mark of microcellular injection molding part was studied by using signal-to-noise ratio analysis and analysis of variance . The results showed that mold cavity surface temperature was the most important influence factor on surface sink mark depth of microcellular injection molding part, followed by weight reduction ratio, cooling time, supercritical fluid level, injection rate and melt temperature. Meanwhile, the optimal combination of process parameters was obtained for minimizing sink mark depth of microcellular injection molding part. The average surface sink mark depth of microcellular injection molding part molded by using the optimized process parameters was only 2.62 mu m, compared to 4.87 mu m of average surface sink mark depth of microcellular injection molding part molded by using the process parameters before optimization, the average sink mark depth of microcellular injection molding part was reduced by 46.2%. Finally, the forming mechanism of sink mark of microcellular injection molding part at locations of reinforcing ribs was discussed, and the influence mechanism of different process parameters on surface sink mark defects of microcellular injection molding part was also analyzed.
机译:作为一种新颖的注射成型工艺,微孔注射成型工艺具有节省材料,减少翘曲和表面凹陷痕迹,提高尺寸精度等特点。但是对于具有加厚加强筋的塑料零件,如果工艺参数的选择不合理,熔体的起泡质量将受到影响,塑料部件表面将出现明显的缩痕缺陷。本文选择具有许多加强筋的医疗器械壳体作为研究对象。采用正交试验法进行了微孔注射成型工艺的模拟实验。利用信噪比研究了模腔表面温度,熔体温度,注射速度,冷却时间,重量减少率和超临界流体水平等不同工艺参数对微孔注塑件表面沉痕的影响。比率分析和方差分析。结果表明,型腔表面温度是影响微孔注塑件表面沉痕深度的最重要因素,其次是减重比,冷却时间,超临界流体水平,注射速率和熔体温度。同时,获得了工艺参数的最佳组合,以最小化微孔注塑件的缩痕深度。使用优化工艺参数成型的微孔注塑件的平均表面沉痕深度仅为2.62μm,而采用优化前工艺参数成型的微孔注塑件的平均表面沉痕深度为4.87μm。微孔注塑件的平均缩痕深度减少了46.2%。最后,讨论了增强筋部位微孔注塑件凹陷痕的形成机理,并分析了不同工艺参数对微孔注塑件表面凹陷痕缺陷的影响机理。

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