IP Library Granted Patent US 12,049,372
Granted Patent B2
US 12,049,372 · App. 17/350,213 · Granted Jul 30, 2024

Method for producing coreless roll products

Inventors: Michael E. Techlin (De Pere, WI); Cory L. Schubring (De Pere, WI); Elijah Scriven (Green Bay, WI); Stefano Spinelli (Green Bay, WI); Scott K. Houle (Green Bay, WI)
Assignee: Paper Converting Machine Company
B65H18/14B65H19/2292B65H19/29B65H23/005B65H23/044B65H23/195B65H26/08B65H18/023B65H19/2269B65H2301/41432B65H2511/114B65H2511/13B65H2511/14
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Quick Facts
Patent No.
US 12,049,372
App. No.
17/350,213
Granted
Jul 30, 2024
Kind
B2
Abstract

A converting line for coreless roll products includes a rewinding machine and a controller. A log of convolutely wound web material is wound in the rewinding machine during a wind cycle. A diameter of the log, a caliper of the web material, and an amount of tension of the web is determined at a plurality of time points during a time period of the winding cycle. The controller is enabled to generate a signal to change an operating condition of the converting line based upon at least one of a diameter determination at a time point during the wind cycle, a caliper determination at a time point during the wind cycle, a wound web amount determination at a time point during the wind cycle, and a tension determination at a time point during the wind cycle.

Claims (35)

1. A method of controlling a converting line, wherein the converting line includes a rewinding machine and a control system of the converting line, the method comprising:

winding a log of convolutely wound web material in the rewinding machine during a wind cycle;

determining a diameter of the log of convolutely wound web material wound in the rewinding machine at a plurality of time points during a time period of the winding cycle;

measuring a post-winding log diameter of the log at a position in the converting line downstream of the rewinding machine:

determining a caliper of the web material of the log of convolutely wound web material at corresponding time points during the time period of the winding cycle; and

enabling the control system to generate a signal to change an operating condition of the converting line based upon: (a) at least one of (i) a diameter determination at a time point during the time period of the wind cycle, (ii) a caliper determination at a time point during the time period of the wind cycle, (iii) a wound web amount determination at a time point during the time period of the wind cycle, and (iv) a tension determination at a time point during the time period of the wind cycle; and (b) the post-winding log diameter.

2. The method of claim 1 further comprising

determining an amount of tension of the web material at corresponding time points during the time period of the winding cycle with a sensor associated with at least one roller adapted and configured for guiding the web material through the converting line.

3. The method of claim 1 wherein the step of determining the caliper includes measuring a distance between a sensor and a surface of a roll of web material as the roll of the web material is unwound from an unwinder associated with the converting line.

4. The method of claim 1 further comprising:

determining log firmness at a point after winding of the log; and

(c) enabling the control system to generate a signal to change an operating condition of the converting line based upon the determined log firmness.

5. The method of claim 4 wherein the step of winding the log of convolutely wound web material includes winding the log on a mandrel when the log is in a winding nest of the rewinding machine and subsequently extracting the mandrel from the log in an extractor when the log is away from the winding nest, and the step of determining log firmness comprises determining log firmness with a sensor associated with the extractor.

6. The method of claim 5 wherein the step of determining log firmness with the sensor associated with the extractor includes measuring torque associated with a motor of the extractor.

7. The method of claim 5 , further comprising enabling the control system to generate a signal to change an operating condition of the extractor based upon the measured log firmness.

8. The method of claim 4 wherein the step of winding the log of convolutely wound web material includes winding the log on a mandrel when the log is in a winding nest of the rewinding machine and subsequently extracting the mandrel from the log in an extractor when the log is away from the winding nest, and the step of determining log firmness comprises measuring log firmness with a sensor associated with a peripheral restraint of the extractor.

9. The method of claim 8 wherein the step of measuring log firmness with the sensor associated with the peripheral restraint of the extractor includes measuring pressure applied by the peripheral restraint against the log positioned in the extractor.

10. The method of claim 8 , further comprising enabling the control system to generate a signal to change an operating condition of the peripheral restraint of the extractor based upon the measured log firmness.

11. The method of claim 1 wherein the step of winding the log of convolutely wound web material includes winding the log on a mandrel when the log is in a winding nest of the rewinding machine and subsequently extracting the mandrel from the log in an extractor when the log is away from the winding nest, and the step of measuring the post-winding log diameter comprises measuring the post-winding log diameter with a sensor associated with the extractor.

12. The method of claim 11 , further comprising enabling the control system to generate a signal to change an operating condition of the extractor based upon the measured the post-winding log diameter.

13. The method of claim 1 wherein the step of winding the log of convolutely wound web material includes winding the log on a mandrel when the log is in a winding nest of the rewinding machine and subsequently extracting the mandrel from the log in an extractor when the log is away from the winding nest, and the step of measuring the post-winding log diameter comprises measuring the post-winding log diameter with a sensor associated with a peripheral restraint of the extractor.

14. The method of claim 13 , further comprising enabling the control system to generate a signal to change an operating condition of the peripheral restraint based upon the measured post-winding log diameter.

15. The method of claim 1 further comprising providing a tail seal unit in the converting line subsequent to the rewinding machine, and the step of measuring the post-winding log diameter after winding comprises measuring the post-winding log diameter with a sensor associated with the tail seal unit.

16. The method of claim 15 further comprising enabling the control system to generate a signal to change an operating condition of the tail seal unit based upon the measured post-winding log diameter.

17. The method of claim 1 further comprising providing a log saw in the converting line subsequent to the rewinding machine, and enabling the control system to generate a signal to change an operating condition of the log saw based upon the measured post-winding log diameter.

18. The method of claim 17 wherein the step of enabling the control system to generate the signal to change the operating condition of the log saw based upon the log diameter after winding includes adjusting log saw clamps based upon the measured post-winding log diameter.

19. The method of claim 1 further comprising:

providing an unwinder in the converting line prior to the rewinding machine; and

enabling the control system to generate the signal to change the operating condition of the unwinder based upon: (a) the at least one of (i) the diameter determination at the time point during the time period of the wind cycle, (ii) the caliper determination at the time point during the time period of the wind cycle, (iii) the wound web amount determination at the time point during the time period of the wind cycle, and (iv) the tension determination at the time point during the time period of the wind cycle; and (b) the post-winding log diameter.

20. The method of claim 1 wherein the step of winding the log of convolutely wound web material in the rewinding machine during the wind cycle includes winding the web comprising a non-woven substrate.

21. The method of claim 1 wherein the converting line includes an unwinder followed by the rewinding machine followed by a tail seal unit followed by an extractor followed by an accumulator followed by a log saw, and the step of enabling the control system to generate the signal to change the operating condition of the converting line comprises changing an operating condition of at least one of the unwinder, the rewinder, the tail seal unit, the extractor, the accumulator, and the log saw.

22. A method of controlling a converting line, wherein the converting line includes a rewinding machine and a controller of a control system of the converting line, the method comprising:

winding a log of convolutely wound web material in the rewinding machine;

measuring a post-winding diameter of the log of convolutely wound web material at position in the converting line downstream of the rewinding machine, a caliper of the web material of the log of convolutely wound web material, and a log firmness of the log of convolutely wound web material; and

enabling the controller to generate a signal to change an operating condition of the converting line based upon of the respective post-winding diameter measurement, the caliper measurement, and the log firmness measurement.

Assignments (2)
CHANGE OF NAME Recorded Sep 6, 2024
From: PAPER CONVERTING MACHINE COMPANY
To: BW CONVERTING, INC.
Reel/Frame 068866/0798 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 17, 2021
From: TECHLIN, MICHAEL E.; SCHUBRING, CORY L.; SCRIVEN, ELIJAH; SPINELLI, STEFANO; HOULE, SCOTT K.
To: PAPER CONVERTING MACHINE COMPANY
Reel/Frame 056578/0250 →
Continuity (2)
Provisional Application 63044585 · Jun 26, 2020
Related Publication 20210403266A1 · Dec 30, 2021
Cited By (1)
US 12,552,627