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Resiliency of an air-floated web

机译:气浮网的弹性

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Air-flotation ovens are used for non-contact drying of coated web materials such as photographic film, magnetic media, and paper. In a typical air-flotation over, the air bars are arranged in such a way that the path of web is nearly sinusoidal. When web tension fluctuates, the distance between the web and the air bars also changes. This phenomenon affects the longitudinal dynamics and tension control of an air-floated web. In some cases, tension fluctuations can cause the web to touch the air bars, resulting in damage to the coating and the web. This paper discusses an analytical model of the extensional resiliency of an air-floated web. The analysis shows that at low tension the machinedirectional stiffness of an air-floated web is small, being dominated by the air cushion effects. At higher web tension, however, the effects of material deformation become more important than the air cushion effects. The analysis is compared with the experimental results obtained in a pilot air-flotation oven. The analytical and experimental results show the same trends, though the analytical model tends to underpredict the longitudinal stiffness of air-supported web.
机译:气浮炉用于非接触式干燥涂布的卷筒纸材料,例如摄影胶片,磁性介质和纸张。在典型的气浮过程中,气杆的布置方式应使网的路径接近正弦曲线。当幅材张力波动时,幅材和气杆之间的距离也会改变。这种现象影响气浮纤维网的纵向动力学和张力控制。在某些情况下,张力波动会导致纤网接触气杆,从而损坏涂层和纤网。本文讨论了气浮网的拉伸弹性的分析模型。分析表明,在低张力下,气浮纤维网的纵向刚度很小,主要受气垫效应的影响。然而,在较高的纸幅张力下,材料变形的影响变得比气垫效应更为重要。将分析与在气浮试验炉中获得的实验结果进行比较。尽管分析模型往往会低估空气支撑纤维网的纵向刚度,但分析和实验结果显示出相同的趋势。

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