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Optimization of the Thickness of PET Bottles during Stretch Blow Molding by Using a Mesh-free (Numerical) Method

机译:无网格(数值)方法优化吹瓶过程中PET瓶的厚度

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摘要

The stretch-blow molding process of polyethylene terephtha-late (PET) bottles generates some important modifications in the mechanical properties of the material. Considering, the process temperature (T > T_g) that is usually used, the material exhibits a very high viscosity and involves a strain hardening effect associated with the microstructure evolution. An anisotropic viscoplastic model coupled with induced properties, identified from experimental results of uniaxial and. biaxial tensile tests previously published by Chevalier and Marco (2006), is presented in a first part of the paper. Secondly, we perform a numerical simulation to simulate the free inflation of a preform under an internal pressure with different parameters. Because the final strains are up to 300 to 400 %, it generates important distortion of node distribution and we chose to use the mesh-free Constrained Natural Elements Method (C-NEM) for numerical simulation. The final goal is to use these simulations in order to fit the best parameter set leading to a quasi-homogeneous distribution of the thickness along the bottle. Homogeneous thickness implies homogeneous biaxial stretching and more uniform induced properties for the final bottle and this is an important industrial goal.
机译:聚对苯二甲酸乙二醇酯(PET)瓶的拉伸吹塑成型工艺对材料的机械性能产生了一些重要的影响。考虑到通常使用的工艺温度(T> T_g),该材料表现出非常高的粘度并涉及与显微组织演变相关的应变硬化效应。从单轴和的实验结果确定了各向异性的粘塑性模型与诱导特性。本文的第一部分介绍了先前由Chevalier和Marco(2006)发表的双轴拉伸试验。其次,我们进行数值模拟,以模拟具有不同参数的内部压力下瓶坯的自由充气。因为最终应变高达300%到400%,所以它会产生重要的节点分布变形,因此我们选择使用无网格的自然自然约束方法(C-NEM)进行数值模拟。最终目标是使用这些模拟来拟合最佳参数集,从而导致沿瓶子的厚度达到准均匀分布。均匀的厚度意味着最终瓶子的均质双轴拉伸和更均匀的诱导性能,这是一个重要的工业目标。

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