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A Modeling Approach to the Effect of Resin Characteristics on Parison Formation in Extrusion Blow Molding

机译:挤出吹塑中树脂特性对Parison形成影响的建模方法

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摘要

The most critical stage in the extrusion blow-molding process is the parison formation, as the dimensions of the blow-molded part are directly related to the parison dimensions. The swelling due to stress relaxation and sagging due to gravity are strongly influenced by the resin characteristics, die geometry, and operating conditions. These factors significantly affect the parison dimensions. This could lead to a considerable amount of time and cost through trial and error experiments to get the desired parison dimensions based upon variations in the resin characteristics, die geometry, and operating conditions. The availability of a modeling technique ensures a more accurate prediction of the entire blow-molding process, as the proper prediction of the parison formation is the input for the remaining process phases. This study considers both the simulated and the experimental effects of various high-density polyethylene resin grades on parison dimensions. The resins were tested using three different sets of die geometries and operating conditions. The target parison length was achieved by adjusting the extrusion time for a preset die gap opening. The finite element software BlowParisonuae was used to predict the parison formation, taking into account the swell and sag. Good agreements were found between the predicted parison dimensions and the experimental data
机译:挤压吹塑过程中最关键的阶段是型坯的形成,因为吹塑零件的尺寸与型坯的尺寸直接相关。应力松弛引起的溶胀和重力引起的下垂受到树脂特性,模具几何形状和操作条件的强烈影响。这些因素显着影响型坯尺寸。根据树脂特性,模具几何形状和操作条件的变化,通过试错实验来获得所需的型坯尺寸可能会导致大量的时间和成本。建模技术的可用性可确保对整个吹塑成型过程进行更准确的预测,因为对型坯形成的正确预测是其余过程阶段的输入。本研究考虑了各种高密度聚乙烯树脂牌号对型坯尺寸的模拟和实验效果。使用三组不同的模具几何形状和操作条件对树脂进行了测试。型坯长度的目标是通过调整预设模具间隙的挤出时间来实现的。考虑到膨胀和下垂,使用有限元软件BlowParison uae来预测型坯的形成。在预测的型坯尺寸和实验数据之间找到了很好的一致性

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