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首页> 外文期刊>International Polymer Processing: The Journal of the Polymer Processing Society >The Effects of Processing Parameters on the Residual Wall Thickness Distribution at the Sharp Angle Corner of Water Assisted Injection Molded Parts
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The Effects of Processing Parameters on the Residual Wall Thickness Distribution at the Sharp Angle Corner of Water Assisted Injection Molded Parts

机译:工艺参数对水辅助注塑件尖角拐角处残余壁厚分布的影响

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摘要

Water-assisted injection molding (WAIM) has been widely used for tubular plastic parts due to its advantages of relatively low cost and fast cycling time. However, the non-uniform distribution of the wall thickness, especially at the sharp corner, is still a basic problem in the WAIM process. This work presents the effects of sharp corner angles on wall thickness distribution in sections near corners for various processing conditions of the WAIM process, including melt temperature, mold temperature, water delay time, water holding time, and holding pressure. Three grades of polypropylene (PP) resins with different melt flow indices were studied using seven mold geometries that varied the angle of the sharp corner section. The wall thickness distribution at the corner sections were characterized in terms of inner and outer residual wall thicknesses, hollow core ratio, and the percentage of difference between the inner and outer wall thicknesses. In addition, computational fluid dynamic simulations with Moldflow Plastics Insight version 4.1 were performed for each sharp corner angle. It was found that the wall thickness distribution of the straight tube was more uniform than those of the curve tubes. Water injection delay time and water pressure were the major parameters that had a significant impact on the hollowed core ratios, while the percent difference between inner and outer wall thicknesses was mainly influenced by melt temperature.
机译:水辅助注射成型(WAIM)由于其相对较低的成本和快速的循环时间而被广泛用于管状塑料零件。但是,壁厚的不均匀分布,特别是在尖角处,仍然是WAIM过程中的基本问题。对于WAIM工艺的各种加工条件,包括熔体温度,模具温度,水延迟时间,保水时间和保压压力,这项工作提出了尖角对壁角附近区域壁厚分布的影响。使用七个改变尖角截面角度的模具几何形状,研究了三种具有不同熔体流动指数的聚丙烯(PP)树脂。拐角处的壁厚分布通过内外壁剩余壁厚,空心比以及内外壁厚之差百分比来表征。此外,对每个尖角进行了Moldflow Plastics Insight 4.1版的计算流体动力学模拟。发现直管的壁厚分布比弯管的壁厚分布更均匀。注水延迟时间和水压是影响空心率的主要参数,而内,外壁厚度之间的百分比差异主要受熔体温度影响。

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