Process Stability in Multilayer Sheet Extrusion

R. K. Upadhyay, G. Tryson
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引用次数: 0

Abstract

Calendering of multi-layer sheets is an excellent process for production of sheets and films for thermoformable feedstocks. The quality of the sheet surface and throughput rate are strongly affected by thermal and adhesive properties of constituent materials and temperatures of individual layers and nip-rolls. We conducted a set of experiments that allows us to relate process conditions to sheet quality and develop mathematical functions for process optimization. In addition, we have developed a physics-based model to calculate transient thermal distribution in the sheet and adhesive strength between rolls and sheet surface. Model predictions of temperature are in good agreement with actual surface temperature measurement. The model can be used to relate quality characteristics to thermal gradients and adhesive strength and can become a useful tool for development the of optimum process envelope for highest throughput.
多层薄板挤压的工艺稳定性
压延多层片材是生产可热成型原料片材和薄膜的优良工艺。板料的表面质量和生产效率受到组成材料的热和粘合性能以及各层和夹辊的温度的强烈影响。我们进行了一组实验,使我们能够将工艺条件与板材质量联系起来,并为工艺优化开发数学函数。此外,我们还开发了一个基于物理的模型来计算板材中的瞬态热分布以及辊与板材表面之间的粘合强度。模型预测的温度与实际测量的表面温度很吻合。该模型可用于将质量特性与热梯度和粘接强度联系起来,并可成为开发最高吞吐量的最佳工艺包线的有用工具。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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