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Optimization of winding conditions considering web thickness variation in width direction and experimental verification

机译:考虑幅材宽度方向宽度变化的卷绕条件优化和实验验证

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摘要

The webs such as paper, plastic film and thin metal are produced by Roll-to Roll manufacturing system, and are wound into a roll in the final process of this system. However, if the winding conditions of the web are inappropriate, the defects such as gage band, wrinkle and slippage will occur in wound roll, and then quality of products is significantly reduced. In previous studies, some analysis models of in-roll stress considering various factors, have been established to predict the defects. However, as far as authors know, there is few research regarding the gage band. In particular, the plastic films used for high functional flexible devices are being thinner, the defects can occur easily. In this paper, the in-roll stress analysis considering the web thickness variation in width direction and compressive deformation of web in the radial direction using the Hertz contact theory is presented. Moreover, optimization of winding conditions is conducted to prevent simultaneously the gage band, wrinkle and slippage. As a result, it was confirmed that the presented analysis can estimate the radial stress distribution of wound roll in the width direction. And, the effectiveness of optimized wind-up tension is verified theoretically and experimentally.
机译:诸如纸,塑料薄膜和薄金属之类的纤维网是通过卷对卷制造系统生产的,并在该系统的最终过程中被卷绕成卷。然而,如果幅材的卷绕条件不合适,则在卷绕辊上会出现诸如规矩带,皱纹和打滑之类的缺陷,从而显着降低产品质量。在以前的研究中,已经建立了一些考虑各种因素的轧辊内应力分析模型来预测缺陷。然而,据作者所知,关于量规带的研究很少。特别地,用于高功能柔性装置的塑料膜较薄,缺陷容易出现。本文采用赫兹接触理论,提出了考虑幅材宽度方向宽度变化和幅材径向压缩变形的辊内应力分析方法。而且,进行卷绕条件的优化以同时防止应变计带,皱纹和打滑。结果,证实了所提出的分析可以估计卷绕辊在宽度方向上的径向应力分布。并且,在理论上和实验上都证明了优化卷绕张力的有效性。

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