Web lateral instability caused by nonuniform paper properties

Fred J. Parent, J. Hamel, David Mcdonald
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Abstract

Lateral or cross-machine direction (CD) web movement in printing or converting can cause problems such as misregistration, wrinkles, breaks, and folder issues. The role of paper properties in this problem was studied by measuring lateral web positions on commercial printing presses and on a pilot-scale roll testing facility (RTF). The findings clearly showed that CD profiles of machine direction (MD) tension were a key factor in web stability. Uneven tension profiles cause the web to move towards the low-tension side. Although extremely nonuniform tension profiles are visible as bagginess, more often, tension profiles must be detected by precision devices such as the RTF. Once detected, the profiles may be analyzed to determine the cause of web offset and weaving problems. Causes of tension profiles can originate from nonuniform paper properties. For example, by means of case studies, we show that an uneven moisture profile entering the dryer section can lead to a nonuniform tension profile and lateral web movement. Time-varying changes in basis weight or stiffness may also lead to oscillations in the web’s lateral position. These problems were corrected by identifying the root cause and making appropriate changes. In addition, we developed a mathematical model of lateral stability that explains the underlying mechanisms and can be used to understand and correct causes of lateral web instability
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纸张性能不均匀引起的卷筒纸横向不稳定
在打印或转换过程中,横向或跨机器方向(CD)卷筒纸移动可能会导致错误对准、起皱、断裂和文件夹问题等问题。通过在商业印刷机和中试卷筒测试设备(RTF)上测量侧卷筒纸位置,研究了纸张性能在这个问题中的作用。研究结果清楚地表明,机器方向(MD)张力的CD分布是影响卷筒网稳定性的关键因素。不均匀的张力分布导致卷筒网向低张力侧移动。虽然非常不均匀的张力分布可见为松弛,但更多情况下,张力分布必须由精密设备(如RTF)检测。一旦检测到,就可以对轮廓进行分析,以确定卷筒纸偏移和织造问题的原因。造成张力轮廓的原因可能是由于纸的性质不均匀。例如,通过案例研究,我们表明,不均匀的水分剖面进入干燥器部分可能导致不均匀的张力剖面和横向网移动。随时间变化的基础重量或刚度也可能导致腹板横向位置的振荡。通过确定根本原因并进行适当的更改,这些问题得到了纠正。此外,我们开发了一个横向稳定性的数学模型,解释了潜在的机制,可以用来理解和纠正侧向腹板不稳定的原因
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