光学薄膜动态镀膜线张力控制研究

Chen Ya-wei, Hui Jing
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引用次数: 0

摘要

根据光学薄膜的涂膜线在恒速运行,张力是稳定的。但在减速过程中,张力会出现较大的波动。在分析镀膜线加速速度、转矩和张力之间关系的基础上,建立了镀膜线轧制系统动力学模型。因此在从恒速轧制到加速轧制的过程中,需要加大动态转矩补偿,而动态转矩补偿的精度决定了张力的稳定性。在动态转矩补偿和实时测量惯性的基础上,提出了一种基于张力的实时动态转矩补偿控制策略。实际结果表明,所提出的控制策略抑制了涂层线轧制过程中加速张力波动的影响,验证了所提出方法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Research on Tension Control for Coating Line of Optical Films in Dynamic Process
According to the coating line of optical films at constant speed operation, the tension is stable. However, the tension would appear larger fluctuation in the process of deceleration. On basis of analyzing the relationship among accelerating speed, torque and tension in the coating line, the rolling system dynamics model is set up. Therefore in the process of rolling from constant speed to accelerate, it need to increase the dynamic torque compensation, and the accuracy of dynamic torque compensation determines the stability of the tension. Based on the dynamic torque compensation and real-time measurement of inertia, a real-time dynamic torque compensation control strategy is proposed based on tension. The practical results show that the proposed control strategy that make the coating line rolling in the process of accelerated tension fluctuation is suppressed, and verify the effectiveness of the proposed method.
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