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Evaluating material constitutive equations for the simulation of Incremental Sheet Forming applied to form thermoplastic materials

机译:评估材料本构方程,以模拟用于形成热塑性材料的增量板材成形

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Incremental Sheet Forming (ISF) is able to produce highly customized products at a reasonable manufacturing cost and it has gain importance in the last years, becoming the focus of interest for many researchers and institutions. Some recent publications have revealed an increasing interest in forming thermoplastic materials. There is a tremendous amount of effort put in developing a model that may describe the equilibrium hysteresis and rate-dependence of thermoplastic materials in ISF. This paper will present a brief review of the most common constitutive equations that "are able to model the behaviour of glassy polymers. It will be shown that by using a small number of material parameters defined in the Marlow model, it is possible to accurately predict experimental data collected on samples of PVC subjected to simple uniaxial test performed at room temperature. Additionally, some parts have been formed with ISF in order to verify whether the material is incompressible or not. It can be concluded that Marlow model might be used in future work to model the ISF manufacturing process.
机译:增量板成型(ISF)能够以合理的制造成本生产高度定制的产品,并且在最近几年中变得越来越重要,已成为许多研究人员和机构关注的焦点。最近的一些出版物揭示了对形成热塑性材料的兴趣日益增加。在开发可描述ISF中热塑性材料的平衡滞后和速率相关性的模型方面,我们付出了巨大的努力。本文将简要介绍“能够对玻璃态聚合物的行为进行建模的最常见的本构方程。它将显示出,通过使用Marlow模型中定义的少量材料参数,可以准确地预测在室温下对PVC样品进行简单单轴测试后收集的实验数据,此外,已经用ISF成型了一些零件以验证材料是否不可压缩,可以得出结论,将来可能会使用Marlow模型努力为ISF制造过程建模。

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