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A comprehensive experimental study and numerical modeling of parison formation in extrusion blow molding

机译:挤压吹塑型坯成型的综合实验研究和数值模拟

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摘要

Parison dimensions in extrusion blow molding are affected by two phenomena, swell due to stress relaxation and sag drawdown due to gravity. It is well established that the parison swell and sag are strongly dependent on the die geometry and the 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 the die geometry, the operating conditions, and the resin properties on the parison dimensions using high density polyethylene. Parison programming with a moving mandrel and the flow rate evolution in intermittent extrusion are also considered. The parison dimensions are measured experimentally by using the pinchoff mold technique on two industrial scale machines. The finite element software BlowParison\uae developed at IMI is used to predict the parison formation, taking into account the swell, sag, and nonisothermal effects. The comparison between the predicted parison/part dimensions and the corresponding experimental data demonstrates the efficiency of numerical tools in the prediction of the final part thickness and weight distributions.
机译:挤压吹塑中的Parison尺寸受两种现象影响:应力松弛引起的膨胀和重力引起的下垂。可以确定的是,型坯的膨胀和下垂强烈地取决于模具的几何形状和操作条件。建模技术的可用性可确保对整个吹塑工艺进行更准确的预测,因为型坯形成的正确预测是其余工艺阶段的输入。这项研究考虑了使用高密度聚乙烯的模具几何形状,操作条件和树脂性能对型坯尺寸的模拟和实验影响。还考虑了带移动心轴的Parison编程以及间歇挤压中的流量变化。型坯尺寸是通过在两台工业规模机器上使用夹断模具技术通过实验测量的。 IMI开发的有限元软件BlowParison \ uae用于预测型坯的形成,同时考虑了膨胀,下垂和非等温效应。预测的型坯/零件尺寸与相应的实验数据之间的比较证明了数值工具在预测最终零件厚度和重量分布方面的效率。

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