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Experimental characterisation and modelling of polyethylene terephthalate preform for injection stretch blow moulding

机译:注射拉伸吹塑成型聚对苯二甲酸乙二醇酯预成型件的实验表征及建模

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摘要

Polyethylene terephthalate (PET) is a widely used polymer in the production of bottles by injection stretch blow moulding (1SBM). In this work, we present a characterisation method to identify material properties directly from a preform, considering temperature and stress-relaxation effects related to its viscoelastic response. A customised oven and gripping system were designed to perform uniaxial tests in a proper temperature range on tubular specimens obtained from preforms. A visco-hyperelastic model is then proposed: a Marlow-type strain energy function coupled with a Prony series and William-Landel-Ferry equation to include time and temperature dependency. Finally, a case study of ISBM process is implemented in a finite element code considering this constitutive model. Strain maps and predicted thickness of the bottle wall were evaluated as process quality indicators. Simulation results showed good agreement with measurements on the real processed bottle, confirming the usefulness of the approach for product or process parameters optimisation.
机译:聚对苯二甲酸乙二醇酯(PET)是通过注射拉伸吹塑(1SBM)生产瓶子中的广泛使用的聚合物。在这项工作中,我们提出了一种表征方法,可直接从预制件识别材料性质,考虑与其粘弹性响应相关的温度和应力松弛效果。设计了一种定制的烤箱和夹持系统,用于在从预制件获得的管状试样上的适当温度范围内进行单轴测试。然后提出了一种Visco-Hyper弹性模型:与Proy系列和William-Landel-Ferry方程联接的Marlow型应变能功能,包括时间和温度依赖性。最后,考虑到该本构模型,在有限元代码中实现了对ISBM过程的案例研究。瓶壁的应变贴图和预测厚度被评估为工艺质量指示剂。仿真结果表明,真实加工瓶上的测量结果良好,确认了产品或工艺参数优化方法的有用性。

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