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首页> 外文期刊>Journal of Dynamic Systems, Measurement, and Control >Resonant Frequencies in Web Process Lines Due to Idle Rollers and Spans
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Resonant Frequencies in Web Process Lines Due to Idle Rollers and Spans

机译:空闲辊和跨距引起的Web生产线中的共振频率

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This paper presents the results of a study on the resonant frequencies of a system of idle rollers and web spans. A simple linear model that describes the behavior of tension in a web span is considered. It is shown experimentally on a web platform that the simple model is capable of predicting resonant frequencies in an idler system consisting of idle rollers and spans between two driven rollers. This model is used to investigate the behavior of the minimum resonant frequency as a function of the number of idle rollers and span lengths. Analytical solutions for computing the minimum resonant frequency for the one-idler system (one idle roller and two spans) and the two-idler system (two idle rollers and three spans) are given. Discussions on how to maximize the minimum resonant frequency for two-, three-, and four-idler systems based on numerical analysis are also given. An analytical approximation of the minimum resonant frequency for equal span lengths and any number of idle rollers is derived. This approximation is a lower bound on the minimum resonant frequency and tends to converge to it, with the increase in the number of idle rollers.. This is useful in getting a quick and reliable estimate of the minimum resonant frequency in festoons/accumulators which contain many idle rollers and web spans of equal lengths. The results of this study are expected to be useful to the web machine designer and developers of web tension control systems.
机译:本文介绍了对惰辊和幅材跨度系统共振频率的研究结果。考虑一个简单的线性模型,该模型描述了纸幅跨度中的张力行为。在网络平台上的实验表明,该简单模型能够预测由惰辊和两个从动辊之间的跨度组成的惰轮系统中的共振频率。该模型用于研究最小共振频率的行为,该频率是空转辊数和跨度的函数。给出了用于计算一个惰轮系统(一个惰轮和两个跨度)和两个惰轮系统(两个惰轮和三个跨度)的最小共振频率的解析解。还讨论了如何基于数值分析来最大化两个,三个和四个惰轮系统的最小谐振频率。对于相等的跨距长度和任意数量的空转辊,得出最小共振频率的解析近似值。该近似值是最小共振频率的下限,并且随着空转辊数的增加而趋于收敛。这对于快速可靠地估计包含以下内容的花键/蓄能器中的最小共振频率很有用。相同长度的许多惰辊和幅材跨度。预期这项研究的结果将对卷筒纸张力控制系统的卷筒纸机器设计者和开发人员有用。

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