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Investigation of Heat Transfer in 9-Layer Film Blowing Process by using Variational Principles

机译:使用变分原理研究9层薄膜吹割过程中的热传递

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In this work, coextrusion experiments utilizing an industrial 9-layer Brampton Engineering coextrusion film blowing line has been performed under different processing conditions (low/high air cooling intensity) in order to evaluate variational principles based modeling approach using energy equation utilizing variable heat transfer coefficient along the multi-layer bubble. It has been revealed that the variational principle based model can describe the bubble shape and temperature profile reasonably well even if the multi-layer film has been viewed as the static elastic membrane characterized only by one material parameter - bubble compliance J, which was not allow to vary along the bubble. Moreover, it has been found that if the freezeline height becomes long, heat transfer coefficient starts to vary significantly along the bubble which has crucial impact on the temperature profile along the multi-layer bubble. The performed theoretical parametric study revealed that increase in blow-up ratio or decrease in bubble curvature and air temperature causing bubble cooling efficiency increases, which allows to cooled down the multi-layer bubble for the given freezeline height to solidification temperature by smaller amount of the air volume flow rate.
机译:在这项工作中,利用工业9层Brampton工程共挤出薄膜吹割线的共挤出实验已经在不同的加工条件(低/高空气冷却强度)下进行,以便利用可变传热系数的能量方程评估基于的基于模拟方法的基于模拟方法沿着多层泡沫。已经揭示了基于变分原理的模型可以合理地描述气泡形状和温度分布,即使多层薄膜已被视为静态弹性膜,其特征在于不允许的一个材料参数 - 气泡顺应性J沿着泡沫变化。此外,已经发现,如果自由曲线高度变长,则传热系数沿着气泡开始显着变化,这对沿着多层气泡的温度曲线具有至关重要的影响。所进行的理论化参数研究表明,吹血比或气泡曲率和空气温度的降低增加,导致气泡冷却效率增加,这允许通过较少量的较少量将给定的自由型高度冷却到凝固温度的多层气泡。空气量流速。

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