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An Anisotropic Visco-hyperelastic model for PET Behavior under ISBM Process Conditions

机译:ISBM工艺条件下PET行为的各向异性粘超弹性模型

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摘要

The mechanical behavior of Polyethylene Terephthalate (PET) under the severe loading conditions of the injection stretch blow molding (ISBM) process is strongly dependent on strain rate, strain and temperature. In this process, the PET near the glass transition temperature (Tg) shows a strongly non linear elastic and viscous behavior. In author’s previous works, a non linear visco-hyperelastic model has been identified from equi-biaxial tensile experimental results. Despite the good agreement with biaxial test results, the model fails to reproduce the sequential biaxial test (with constant width first step) and the shape evolution during the free blowing of preforms. In this work, an anisotropic version of this visco-hyperelastic model is proposed and identified form both equi and constant width results. The new version of our non linear visco-hyperelastic model is then implemented into the Abaqus environment and used to simulate the free blowing process. The comparison with the experimental results managed in Queen’s University Belfast validates the approach.
机译:聚对苯二甲酸乙二酯(PET)在注拉吹塑(ISBM)工艺的苛刻负载条件下的机械性能在很大程度上取决于应变率,应变和温度。在此过程中,接近玻璃化转变温度(Tg)的PET表现出很强的非线性弹性和粘性。在作者先前的工作中,已经根据等双轴拉伸实验结果确定了非线性粘-超弹性模型。尽管与双轴测试结果吻合得很好,但是该模型无法重现连续的双轴测试(第一步具有恒定的宽度),并且在预制坯的自由吹塑过程中无法进行形状演变。在这项工作中,提出了该粘滞-超弹性模型的各向异性版本,并从等宽和等宽结果中进行了识别。然后,我们的非线性粘-超弹性模型的新版本在Abaqus环境中实现,并用于模拟自由吹气过程。与贝尔法斯特女王大学管理的实验结果进行比较,验证了该方法。

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