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Modeling the Constitutive Behaviour of PET for Stretch Blow Moulding

机译:建模宠物施拉吹塑的本构行为

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There are a substantial amount of constitutive models that have been developed to capture the finite deformation behavior of polymers for forming simulations. Most of these models have been used to capture the behavior in uniaxial and simultaneous biaxial modes of deformation. However, very few have attempted to model the sequential biaxial deformation behavior which is more appropriate for the stretch blow moulding process. The aim of this work is to develop a model for PET to successfully capture the sequential stress-strain behavior as a function of temperature and strain rate, thus making it suitable for use in simulations of stretch blow moulding. Biaxial test data has been generated at temperatures and strain rates appropriate for stretch blow moulding and a model developed by Buckley et al. has been implemented within the commercial finite element package Abaqus/Explicit. In parallel, an efficient automatic curve fitting procedure has been developed to enable the material parameters to be easily found from biaxial test data. The results show that the Buckley model can predict the stress response of equibiaxial deformation well, but cannot predict the sequential biaxial deformation.
机译:已经开发了大量的组成型模型,以捕获聚合物的有限变形行为以形成模拟。这些模型中的大多数已被用于捕获单轴和同时双轴变形模式中的行为。然而,很少有人试图模拟顺序双轴变形行为,这更适合于拉伸吹塑方法。这项工作的目的是为PET开发一种模型,以成功捕获作为温度和应变速率的函数的顺序应力 - 应变行为,从而适用于模拟拉伸吹塑。在适用于拉伸吹塑成型的温度和应变率和由Buckley等人开发的模型中产生了双轴测试数据。已在商业有限元包中实施ABAQUS /显式。并行地,已经开发了一种有效的自动曲线拟合程序,以使材料参数能够从双轴测试数据中容易地找到。结果表明,巴克利模型可以预测偏心变形的应力响应,但不能预测顺序双轴变形。

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