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首页> 外文期刊>Journal of Dynamic Systems, Measurement, and Control >Governing Equations for Web Tension and Web Velocity in the Presence of Nonideal Rollers
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Governing Equations for Web Tension and Web Velocity in the Presence of Nonideal Rollers

机译:存在非理想压路机时幅材张力和幅材速度的控制方程

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Since rotating machinery is used to transport flexible materials (commonly known as webs) on rollers, it is common to observe periodic oscillations in measured signals such as web tension and web transport velocity. These periodic oscillations are more prevalent in the presence of nonideal elements such as eccentric rollers and out-of-round material rolls. One of the critical needs in efficient transport of webs is to maintain web tension at a prescribed value. Tension regulation affects almost all key processes involved during web transport including printing, registration, lamination, winding, etc. Governing equations for web tension and transport velocity that can accurately predict measured behavior in the presence of nonideal rollers are beneficial in understanding web transport behavior under various dynamic conditions and the design of suitable web tension and speed control systems. The focus of this paper is on modeling the effect of eccentric rollers and out-of-round material rolls on web tension and web transport velocity. The new governing equations for web velocity on an eccentric roller and web tension in spans adjacent to the eccentric roller are presented and discussed; a web span is the free web between two consecutive rollers. To solve these governing equations, the location of the entry and exit point of the web on the eccentric roller as it rotates and the length of the web spans adjacent to the eccentric roller are required; a procedure for obtaining this information is described. To corroborate the models and the developed approach, data from experiments on a large experimental web platform are compared with data from model simulations, and a representative sample of the results are presented and discussed.
机译:由于旋转机械用于在辊上传输柔性材料(通常称为纤维网),因此通常会观察到诸如纤维网张力和纤维网传输速度之类的测量信号中的周期性振荡。在存在非理想元素(例如偏心辊和不圆物料辊)的情况下,这些周期性振荡更为普遍。有效输送纸幅的关键需求之一是将纸幅张力保持在规定值。张力调节会影响纸幅传输过程中涉及的几乎所有关键过程,包括印刷,套准,层压,卷绕等。控制纸幅张力和传输速度的方程可以准确地预测存在非理想辊的情况下的测量行为,有助于理解在以下情况下的纸幅传输行为。各种动态条件以及合适的纸幅张力和速度控制系统的设计。本文的重点是对偏心辊和不圆物料辊对幅材张力和幅材传输速度的影响进行建模。提出并讨论了偏心辊上的幅材速度和邻近偏心辊的跨度中的幅材张力的新控制方程;卷筒纸跨度是两个连续的辊之间的自由卷筒纸。为了求解这些控制方程,需要在偏心辊旋转时卷材的入口和出口点的位置以及邻近偏心辊的卷材跨度的长度;描述获取该信息的过程。为了证实模型和开发的方法,将大型实验Web平台上的实验数据与模型仿真的数据进行比较,并给出并讨论了结果的代表性示例。

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