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Free-tension setup system for bar rolling based on fuzzy inference

机译:基于模糊推理的钢筋轧制自由张力设置系统

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摘要

Precision rolling of a bar with a nominal diameter tolerance of ±0.1 mm has been put into practical operation. The precision bar rolling system comprises two parts: an interbillet dimensional control system consisting of a finishing size setup based on influence coefficients and a profile meter signal processing and a free-tension setup based on fuzzy inference, and an inbillet dimensional control system with multivariable control consisting of tension control and automatic gauge control (AGC) This paper deals with the interbillet dimensional control system. A free-tension setup was developed as follows. The difference in the rate of change in the rolling torque-load (=load parameter) of the No.i+1 stand between before and after the tail of the rolled material leaves the No.i stand is proportional to the interstand tension and is controlled to zero. Since large fluctuation of the rolled material temperature weakens the correlation between the rate of change of the load parameter and that of the interstand tension, the roll speed correction to be made for the next billet was determined based on fuzzy rules.
机译:公称直径公差为±0.1 mm的棒材的精密轧制已投入实际操作。精密棒材轧制系统包括两部分:小钢坯尺寸控制系统,包括基于影响系数和轮廓仪信号处理的精加工尺寸设置以及基于模糊推理的自由张力设置;以及具有多变量控制的小钢坯尺寸控制系统由张力控制和自动量规控制(AGC)组成。本文涉及小齿轮尺寸控制系统。自由张力装置的开发如下。 No.i + 1机架的轧制扭矩载荷(=负载参数)的变化率在轧制材料的尾部离开No.i机架前后之间的差与机架间张力成正比,且为控制为零。由于轧制材料温度的大的波动削弱了载荷参数的变化率和机架间张力的变化率之间的相关性,因此基于模糊规则确定要对下一个坯料进行的轧制速度校正。

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