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Modelling the Material Flow and Web Tension in the Vertical Form-Fill-Seal Packaging Process

机译:在垂直成型-填充-密封包装过程中建模物料流和卷筒张力

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摘要

Vertical form-fill-seal (VFFS) machines are widely used to form bags for packaging products such as confectionary and snack food. One critical component of the machine is the forming shoulder, which needs to manipulate, without damage, the packaging material from a flat state into a tube. Some models of the geometry of the shoulder are available and have been used to help with its design and manufacture. However, there currently exists no theoretical basis for determining the geometry of the forming shoulder needed to process particular packaging materials. This paper investigates the application of Euler's theory for material flow around cylinders to the case of forming shoulders used in vertical form-fill-seal systems. It is shown that the theory is indeed applicable, and an inequality relation between the measured coefficient of friction of the material and the forming shoulder parameters is established. It is further shown how this can be used to direct the design of a forming shoulder for a particular application.
机译:立式制袋包装机(VFFS)广泛用于包装糖果和休闲食品等产品的袋子。机器的一个重要组成部分是成型肩部,该成型肩部需要在不损坏包装材料的情况下将其从扁平状态变成管状。有一些肩部几何模型可供选择,并已用于帮助其设计和制造。但是,目前没有确定加工特定包装材料所需的成形肩部几何形状的理论基础。本文研究了欧拉理论在圆柱体周围的材料流向在垂直成型-填充-密封系统中使用的成型肩部的情况下的应用。结果表明,该理论确实适用,建立了实测材料的摩擦系数与成形肩部参数之间的不等式关系。进一步示出了如何将其用于指导特定应用的成形肩部的设计。

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