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SEMIDEFINITE MODAL ANALYSIS OF PAPER FINISHING UNIT WITH VARIABLE STIFFNESS ROLL PRESSING MECHANISM

机译:可变刚度辊压机构的纸后整理单元的半模态分析

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摘要

It has been observed serious roll bending vibrations in paper finishing systems, where the web is driven through the contact zone of two rolls pressed together. The upper roll is mounted rigidly on to the machine frame while the lower roll is moved by a hydraulic loading arm. The support conditions for the lower roll are orthotropic because the horizontal bearing stiffness differs from the equivalent vertical hydraulic stiffness. Continuous discussion among the machine builders and end-users is subjected to the question whether the hydraulic spring should be stiff or soft in order to reduce the oscillating component of the line load between the rolls. It has been introduced a new variable stiffness loading circuit, whose vibration characteristics are investigated here. A dynamic model of the system consists of semidefinite eigenvector expansions developed for the machine frame and rolls. The lifting circuit is considered as stiff, medium stiff and soft joint between the frame and lower roll. Frequence response analysis is carried out to find out the dynamic amplification of line load with respect to harmonic paper thickness variation entering the nip under sliding running speed conditions.
机译:已经观察到在纸张整理系统中严重的辊弯曲振动,其中纸幅被驱动通过两个压在一起的辊的接触区域。上辊牢固地安装在机架上,而下辊则通过液压加载臂移动。下辊的支撑条件是正交各向异性的,因为水平轴承刚度不同于等效的垂直水力刚度。机器制造商和最终用户之间的不断讨论提出了这样一个问题,即液压弹簧是刚性的还是软质的,以减少辊子之间线负载的振荡分量。已经介绍了一种新的可变刚度加载电路,在此研究其振动特性。系统的动态模型由为机架和轧辊开发的半确定特征向量展开组成。提升回路被认为是框架和下辊之间的刚性,中等刚性和软性连接。进行了频率响应分析,以发现在滑动运行速度条件下,线负载相对于进入压区的谐波纸厚度变化的动态放大。

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