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Strip lateral position control using electromagnets in continuous processing line

机译:连续生产线中使用电磁体的带材横向位置控制

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In continuous metal strip processing lines, such as pickling, annealing and surface treatment lines, lateral instability of strips is a common problem. Strip lateral movement has a bad influence on productivity of the processing lines. A simple and effective device to control a lateral position of a strip is required because conventional preventions such as a steering roll and crown roll are not effective. In this study, a method of controlling a strip lateral position using electromagnets was investigated. First, theoretical equations were derived to predict capability to control a strip. Next, the derived theory was verified compared with lab experiments. The results obtained can be summarized as follows: (1) The theoretical equations of velocity of lateral movement are derived from inclination when the strip is attracted by electromagnet(s). The inclination is calculable from geometric relation. (2) It is found that the theoretical equations are valid by lab experiments in the conditions of changing attracting displacement and line speed. Controlling lateral movement using electromagnets is possible, and the control capability can be estimated by the derived theory. (3) The velocity of lateral movement in the case of attracting the half of strip width is three times as fast in the case of attracting the edge of the strip.
机译:在诸如酸洗,退火和表面处理线之类的连续金属带材生产线中,带材的横向不稳定性是一个普遍的问题。带钢横向运动对生产线的生产率有不利影响。需要一种简单且有效的装置来控制带材的横向位置,因为常规的预防措施,例如转向辊和冠辊均无效。在这项研究中,研究了一种使用电磁体控制钢带横向位置的方法。首先,推导理论方程以预测控制带材的能力。接下来,将导出的理论与实验室实验进行比较。得到的结果可以概括如下:(1)当带钢被电磁体吸引时,横向运动的速度的理论方程式是从倾角推导的。可根据几何关系计算倾斜度。 (2)发现,在改变吸引位移和线速度的条件下,理论方程通过实验室实验是有效的。使用电磁体控制横向运动是可能的,并且可以通过派生的理论估算控制能力。 (3)在吸引条带宽度的一半的情况下,横向运动的速度是在吸引条带边缘的情况下的三倍。

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