卷绕辊中夹带空气的瞬间放电

M. Keshavan, J. Wickert
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引用次数: 12

摘要

当磁带或其他网状材料缠绕在辊子上时,空气随着流入的气流移动,辊子被迫在气流的切点处进入汇聚的楔形。这样形成的螺旋形空气轴承可以将许多包裹延伸到辊的内部。当辊子随后停下来时,夹带的空气从辊子中排出,辊子的半径逐渐减小,直到所有相邻的胶带层都直接接触。本文建立了该暂态放电过程的模型,并计算了稳态绕组后轧辊的稳定速率。该模型的预测结果与实验室实验结果进行了比较,在实验室实验中,通过激光干涉测量法在卷绕的稳定夹带和瞬态放电阶段测量了卷绕辊的半径。胶带的张力、速度、宽度和表面粗糙度的参数效应被特别处理,以减少辊子稳定所需的时间。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Transient Discharge of Entrained Air From a Wound Roll
As magnetic tape or other web-like material is wound onto a roll, air moving with the incoming stream and the roll becomes forced into the converging wedge at the stream’s point of tangency. The spiral-shaped air bearing so formed can extend many wraps into the roll’s interior. When the roll is subsequently brought to rest, the entrained air discharges from it, and the roll’s radius gradually decreases until all adjacent tape layers have come into direct contact. In the present paper, a model is developed for this transient discharge process, and for the rate at which the roll stabilizes following steady-state winding. Predictions of the model are compared with results from laboratory experiments in which the roll’s radius is measured through laser interferometry during the steady entrainment, and transient discharge, stages of winding. Parametric effects of the tape’s tension, speed, width, and surface roughness are specifically addressed with a view towards reducing the time required for the roll to stabilize.
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