US2021213500A1PendingUtilityA1

Adaptation of a roll model

Assignee: PRIMETALS TECHNOLOGIES GERMANY GMBHPriority: Jan 15, 2020Filed: Dec 1, 2020Published: Jul 15, 2021
Est. expiryJan 15, 2040(~13.5 yrs left)· nominal 20-yr term from priority
B21B 31/08B21B 38/00B21B 38/006B21B 38/04B21B 2267/12B21B 31/103B21B 1/22B21B 2267/06B21B 31/10B21B 37/74
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Claims

Abstract

A storage device for two rolls in a roll stand is a component part of the roll stand or can be positioned relative to the roll stand in such a way that the rolls can be transferred from the roll stand into the storage device or vice versa. At least one measuring system is provided, by means of which the temperatures and/or the diameters of the rolls can be detected individually and independently of one another, at least at predefined detection positions, as viewed in the direction of the roll axes. After transmission to an automation unit that controls the roll stand, the unit can adapt a roll model, by means of which it repeatedly determines the temperatures and/or the diameters of the rolls, at predefined determination positions, in the direction of the roll axes, using operating data of the roll stand for the rolls of the same type.

Claims

exact text as granted — not AI-modified
1 - 9 . (canceled) 
     
     
         10 . A storage device for two rolls of a same type in a roll stand, comprising:
 at least one measuring system for detecting at least one of a temperature and a diameter of the two rolls individually and independently of one another, at least at predefined detection positions, as viewed in a direction of roll axes of the two rolls;   wherein the storage device is one of a component part of the roll stand and positioned relative to the roll stand in such a way that the two rolls can be transferred from the roll stand into the storage device and from the storage device into the roll stand.   
     
     
         11 . The storage device of  claim 10 , wherein the storage device is designed as a roll changing carriage. 
     
     
         12 . The storage device of  claim 11 , wherein, for each roll, the at least one measuring system has a plurality of measuring devices that are fixed in location relative to a main body of the storage device, the at least one measuring system adapted to detect the at least one of the temperature and the diameter of a respective roll of the two rolls at one of the predefined detection positions, as viewed in the direction of the roll axes, by the plurality of measuring devices. 
     
     
         13 . The storage device of  claim 11 , wherein, for each roll, the at least one measuring system has a plurality of measuring devices that are movable relative to a main body of the storage device, the at least one measuring system adapted to detect the at least one of the temperature and the diameter of a respective roll of the two rolls in a respective subsection, including in each case at least one of the predefined detection positions, as viewed in the direction of the roll axes, by the plurality of measuring devices. 
     
     
         14 . The storage device of  claim 10 , wherein, for each roll, the at least one measuring system has a single measuring device, the single measuring device adapted to detect the at least one of the temperature and the diameter of a respective roll of the two rolls at all of the predefined detection positions, as viewed in the direction of the roll axes. 
     
     
         15 . The storage device of  claim 14 , wherein the single measuring device is arranged on a main body so as to be movable as viewed in the direction of the roll axes, the single measuring device adapted to be moved over an entire effective barrel length of the respective roll. 
     
     
         16 . The storage device of  claim 14 , wherein the single measuring device is arranged in a fixed location on a main body of the storage device so that the respective roll is moved past the single measuring device during transfer one of from the roll stand into a roll changing carriage, and from the roll changing carriage to the roll stand. 
     
     
         17 . The storage device of  claim 10 , wherein there is a data link between the at least one measuring system and an automation unit that controls the roll stand, the at least one measuring system adapted to transmit at least one of the detected temperatures and the detected diameters automatically to the automation unit, the automation unit adapted to associate the at least one of the detected temperatures and the detected diameters with the predefined detection positions. 
     
     
         18 . An operating method for a roll stand, comprising:
 rolling flat rolling stock between two rolls of a same type in the roll stand;   determining repeatedly, by an automation unit that controls the roll stand, at least one of temperatures and diameters of the two rolls, at least at predefined determination positions, as viewed in the direction of the roll axes, using a roll model and operating data of the roll stand for the rolls of the same type;   activating, based on the at least one of the temperatures and the diameters determined, the roll stand, so that a rolling gap of the roll stand is set during the rolling of the flat rolling stock, in accordance with setpoint inputs;   removing the two rolls from the roll stand;   transferring the two rolls into a roll changing carriage;   detecting at least one of detected temperatures and detected diameters of the two rolls in an automated manner, at least at predefined detection positions, as viewed in the direction of the roll axes, one of during the removing of the two rolls from the roll stand, during the transferring of the two rolls into the roll changing carriage, and immediately following the transferring operation, by a measuring system arranged one of on the roll stand and on the roll changing carriage;   transmitting automatically the at least one of the detected temperatures and the detected diameters to the automation unit, the automation unit adapted to associate the at least one of the detected temperatures and the detected diameters with the predefined detection positions;   comparing, by the automation unit, the at least one of the temperatures and the diameters determined by the roll model with the at least one of the detected temperatures and the detected diameters; and   adapting the roll model based on the comparing.

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