SYSTEMATIC ANALYSIS OF INVARIANCE OF SEPARATE CONTROL CUTS OF HIGH-SPEED ROLLING WITH A LOOP ON CONTINUOUS SMALL SECTION MILL

Authors

  • O.P. Yegorov
  • M.V. Mykhailovsky
  • M.O. Rybalchenko

DOI:

https://doi.org/10.34185/1991-7848.itmm.2025.01.007

Keywords:

continuous small-section mill, speed mode, rolling with a loop, separate control circuits.

Abstract

The condition of the rolled products in the interstand gaps of continuous small-section mills is determined by the difference in rolling speeds at the exit from the previous stand and at the entrance to the next stand. A change in the rolling speed in any of the stands in the gap, arising under the action of process disturbances, leads to a deviation from the initial rolling mode in this gap. Elimination of such a deviation is achieved by targeted correction of the roll speed of one of the stands. However, this disrupts the speed mode in the adjacent interstand gap along the rolling direction, which activates the tension control circuit in it, and then in the subsequent gaps, which can destabilize the operation of the entire mill. To solve this problem, when changing the roll speed of one of the stands of the continuous group, it is necessary to simultaneously change the roll speed of all subsequent (along the rolling direction) or all previous (counter-rolling direction) stands in a coordinated manner. Computer modeling of the operation of the control system for the rolling speed mode with a loop confirmed the effectiveness of the proposed method based on the system analysis of an operation invariance of separate loop stabilization circuits.

References

Pidvyshchennia enerhoefektyvnosti elektromekhanichnoho kompleksu vyrobnytstva sortovoho prokatu: zvit z NDR / Kerivnyk Yehorov O. P. № 0113U003260s. Dnipropetrovsk: Natsionalna metalurhiina akademiia Ukrainy, 2014. 151 s.

Avtomatyzatsyia tekhnolohycheskykh protsessov na melkosortnykh prokatnykh stanakh: monohrafyia / A. S. Beshta, V. N. Kuvaev, O. E. Potap, A. P. Yehorov. Dnepropetrovsk: Zhurfond, 2014. 283 s.

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Published

2025-06-04

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