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Numerical Investigation of the Gas Flow Temperature on the Thermoforming and Blow-Molding Processes

机译:热成型和吹塑过程中气体流动温度的数值研究

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摘要

In this article, we consider a finite element approach for analysis of the effect of the air flow temperature on the forming of a thin, isotropic, and incompressible thermoplastic membrane. Also, to take into account the enclosed gas volume, responsible for inflation of the thermoplastic membrane, we considered a thermodynamic approach to express external work in terms of a closed volume. The dynamic pressure load is thus deduced from the van der Waals equation of state. The viscoelastic behavior of the K-BKZ model is considered. Numerical validation is performed by comparing the obtained results with the theoretical results for the HDPE grade. Moreover, the effect of the temperature of the gas on the thickness and stress distribution is presented.
机译:在本文中,我们考虑了一种有限元方法来分析气流温度对各向同性且不可压缩的热塑性薄膜形成过程的影响。另外,考虑到封闭气体的体积,该体积是造成热塑性膜膨胀的原因,我们考虑了一种热力学方法,以封闭体积表示外部功。因此,从范德华状态方程推导出动压载荷。考虑了K-BKZ模型的粘弹性行为。通过将获得的结果与HDPE等级的理论结果进行比较来进行数值验证。此外,提出了气体温度对厚度和应力分布的影响。

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