IP Library Granted Patent US 7,211,297
Granted Patent B2
US 7,211,297 · App. 10/615,627 · Granted May 1, 2007

Apparatus for decreasing skip coating on a paper web

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Quick Facts
Patent No.
US 7,211,297
App. No.
10/615,627
Granted
May 1, 2007
Kind
B2
Abstract

An fountain applicator for applying coating liquid onto a web of paper carried past the applicator, has a coating liquid flow path that includes a curved surface along which a sheet of the coating liquid is flowed to subject the sheet to centrifugal force to cause air entrained in the coating liquid to move away from one side of the sheet that is toward the curved surface, so that the one side is relatively free of entrained air. After being flowed along the curved surface, the sheet of coating liquid is directed toward the web in a free standing jet curtain of coating liquid, to contact the web surface primarily with the one relatively air-free side of the coating liquid sheet to decrease the occurrence of skip coating on the web surface, especially when the web is traveling past the applicator at high speeds. The coating is applied in excess onto the web surface and is metered and leveled to a desired coat weight by a downstream doctor. The downstream doctor may comprise a single metering device, or it may comprise an intermediate metering device followed by a final metering and leveling device.

Claims (61)

1. A method of applying coating liquid onto a surface of a web moving in a given direction, comprising:

introducing coating liquid under pressure onto a concave curved surface that curves toward the web surface and has a terminal portion spaced from and extending toward the web surface in the direction of movement of and at an acute angle to the web surface;

flowing the coating liquid along the concave curved surface to form a sheet of coating liquid on the curved surface, to subject the sheet of coating liquid to centrifugal force to concentrate coating liquid toward one side of the coating liquid sheet that is toward the concave curved surface, and to redirect the coating liquid sheet for flow in the direction of movement of the web surface;

directing the coating liquid sheet from the terminal portion toward and in the direction of movement of and at an acute angle relative to the web surface to contact the web surface with the one side of the coating liquid sheet that was toward the curved surface to apply onto the web surface a layer of coating liquid; and

doctoring the coating liquid on the web surface.

2. A method as in claim 1 wherein said directing step operates to contact the web surface with the one side of the coating liquid sheet that was toward the curved surface while maintaining an opposite side of the coating liquid sheet that was away from the curved surface out of substantial contact with the web surface.

3. A method as in claim 1 , wherein said flowing and directing steps flow coating liquid along the concave curved surface and from the terminal portion such that upon the coating liquid flowing from the terminal portion, coating liquid at the one side of the coating liquid sheet flows substantially only toward the web surface and is contended with and carried away on the moving surface.

4. A method as in claim 1 , including the step of flowing the coating liquid under pressure through a passage extending in a direction against the direction of movement of the web surface, said introducing step comprising flowing coating liquid from the passage under pressure onto the concave curved surface in a direction against the direction of movement of the web surface.

5. A method as in claim 4 , wherein said step of flowing the coating liquid from the passage onto the concave curved surface flows the coating liquid along a straight surface extending between the curved surface and the terminal portion.

6. A method as in claim 1 , wherein the concave curved surface curves in one direction only so that the sheet of coating liquid is always subjected to centrifugal force in one direction only.

7. A method as in claim 1 , wherein the concave curved surface is bounded.

8. A method as in claim 7 , wherein both the concave curved surface and the terminal portion are bounded and said flowing step flows coating along the bounded concave curved surface such that upon the coating liquid sheet flowing from the terminal portion, coating liquid at the one side of the coating liquid sheet flows substantially only toward the web surface and contacts and remains on the web surface.

9. A method as in claim 1 , wherein the concave curved surface is unbounded.

10. A method as in claim 1 , wherein the concave curved surface has an arcuate extent of no more than about 90°.

11. A method as in claim 1 , wherein said introducing and directing steps flow coating liquid along the concave curved surface and from the terminal portion such that upon the coating liquid flowing from the terminal portion, coating liquid at the one side of the coating liquid sheet flows toward the web surface without return to the terminal portion and is carried away on the web surface.

12. A method of applying coating liquid onto a surface of a web moving in a given direction, comprising:

flowing coating liquid along a flow path that includes a concave curved surface that curves toward the web surface and a terminal portion spaced from and extending toward the web surface in the direction of movement of and at an acute angle to the web surface;

forming the coating liquid flowing along the concave curved surface into a sheet of coating liquid on the concave curved surface to subject the sheet of coating liquid to centrifugal force to cause air that may be in the coating liquid sheet to move away from one side of the coating liquid sheet that is toward the concave curved surface and toward an opposite side of the coating liquid sheet that is remote from the concave curved surface and to cause coating liquid to move and concentrate toward the one side of the coating liquid sheet, the concave curved surface redirecting the coating liquid sheet for flow in the direction of movement of the web surface;

directing the coating liquid sheet from the terminal portion toward and in the direction of movement of and at an acute angle relative to the web surface to cause the one side of the coating liquid sheet that was toward the concave curved surface to have primary contact with and to apply onto the web surface a layer of coating liquid that is relatively free of air; and

doctoring the coating liquid on the web surface.

13. A method as in claim 12 , wherein said flowing, forming and directing steps cause the one side of the coating liquid sheet that was toward the concave curved surface to have primary contact with the web surface while maintaining the opposite side of the coating liquid sheet that was remote from the concave curved surface out of substantial contact with the web surface.

14. A method as in claim 12 , wherein said flowing, forming and directing steps flow coating liquid along the flow path and the concave curved surface and from the terminal portion such that upon the coating liquid sheet flowing from the terminal portion, coating liquid at the one side of the coating liquid sheet flows substantially toward the web surface and is contacted with and carried away on the web surface.

15. A method as in 12 , wherein said flowing step comprises flowing coating liquid under pressure onto the concave curved surface.

16. A method as in claim 12 , wherein said step of flowing coating liquid along the flow path comprises flowing coating liquid in a direction against the direction of movement of the web surface prior to flowing the coating liquid along the concave curved surface.

17. A method as in claim 12 wherein said flowing step flows coating liquid along a flow path that includes a concave curved surface that is immediately preceded by a straight section of the flow path and then curves in one direction only.

18. A method as in claim 12 , wherein the concave curved surface is bounded along an enclosed length of the flow path.

19. A method as in claim 12 , wherein both the concave curved surface and the terminal portion are bounded along an enclosed length of the flow path and said flowing step flows coating liquid along the enclosed length of the flow path such that upon the coating liquid sheet being directed from the terminal portion, coating liquid at the one side of the coating liquid sheet flows substantially toward the web surface and contacts and remains on the web surface.

20. A method as in claim 19 , wherein said flowing step comprises flowing coating liquid under pressure onto the concave curved surface.

21. A method as in claim 12 , wherein the concave curved surface is unbounded along an unenclosed length of the flow path.

22. A method as in claim 12 , wherein the concave curved surface has an arcuate extent of no more than about 90°.

23. A method as in claim 12 , wherein said step of flowing the coating liquid along the flow path flows the coating liquid along a straight surface of the flow path extending between the curved surface and the terminal portion.

24. A method as in claim 12 , wherein said step of flowing the coating liquid along the flow path flows the coating liquid along a straight surface of the flow path immediately prior to the curved surface and the terminal portion.

25. A method as in claim 12 , wherein the curved surface curves in one direction only.

26. A method as in claim 12 , wherein said flowing, forming and directing steps flow coating liquid along the flow path and the concave curved surface and from the terminal portion such that upon the coating liquid sheet flowing from the terminal portion, coating liquid at the one side of the coating liquid sheet flows from the terminal portion to the web surface without return to the terminal portion and is carried away on the web surface.

27. A method of applying coating liquid onto a surface of a web moving in a given direction, comprising:

flowing coating liquid along an elongate bounded concave curved surface that is positioned proximate to, spaced from and transversely of the web surface to subject the coating liquid to centrifugal force that causes air that may be in the coating liquid to move away from the concave curved surface and coating liquid to move and concentrate toward the concave curved surface; and

directing the coating liquid, after it has flowed along the curved surface, in a free standing elongate jet curtain of coating liquid toward, across and against the web surface to contact the web surface primarily with one side of the jet curtain of coating liquid that was toward the curved surface to apply an excess layer of coating liquid onto the web surface.

28. A method as in claim 27 , wherein said directing step operates to contact the web surface primarily with the one side of the jet curtain of coating liquid that was toward the curved surface while maintaining an opposite side of the jet curtain of coating liquid that was remote from the curved surface out of substantial contact with the web surface.

29. A method as in claim 27 , wherein said flowing and directing steps operate such that upon the coating liquid being directed in an elongate jet curtain toward, across and against the web surface, the coating liquid at the one side of the jet curtain of coating liquid travels substantially toward the web surface and flows against and is carried away on the web surface.

30. A method as in claim 27 , including the step of doctoring coating liquid on the surface of the web.

31. A method as in claim 27 , wherein said flowing and directing steps operate such that, upon the jet curtain of coating liquid being directed toward the moving surface, coating liquid at the one side of the jet curtain of coating liquid flows substantially toward the moving surface and flows against and remains on the moving surface.

32. A method as in claim 31 , including the step of doctoring the excess layer of coating liquid on the surface of the web.

33. A method as in claim 27 , wherein said flowing step comprises delivering coating liquid under pressure to an elongate outlet nozzle, emitting the coating liquid from the elongate outlet nozzle in an elongate sheet of coating liquid, and flowing the elongate sheet of coating liquid emitted from the outlet nozzle along an elongate straight surface and then under pressure off of the straight surface and onto and along the elongate curved surface to subject the coating liquid sheet to centrifugal force.

34. A method as in claim 27 , including the step, performed prior to said flowing step, of causing the coating liquid to flow through an air removal device that removes from the coating liquid an amount of entrained air.

35. A method as in claim 27 , wherein the curved surface has an arcuate extent of no more than about 90°.

36. A method as in claim 27 , wherein the curved surface has a radius in the range of about 0.125 inch to 0.500 inch.

37. A method as in claim 27 wherein said flowing step comprises flowing coating liquid along a straight surface immediately prior to flowing the coating liquid along the concave curved surface and the concave curved surface curves in one direction only.

38. A method of applying coating liquid onto a surface of a web moving in a given direction, comprising:

flowing coating liquid along a flow path that includes a generally straight section immediately upstream from at least one portion of the flow path that changes in direction in one direction only and leads to a terminal portion of the flow path spaced from and extending toward the web surface in the direction of movement of and at an acute angle to the web surface;

forming the coating liquid flowing along the flow path into a sheet of coating liquid on the at least one portion to subject the coating liquid sheet to centrifugal force to cause coating liquid to concentrate toward one side of the coating liquid sheet; and

directing the coating liquid sheet from the terminal portion toward, in the direction of movement of and at an acute angle relative to the web surface to cause the one side of the coating liquid sheet to have primary contact with and to apply onto the web surface a layer of coating liquid.

39. A method as in claim 38 , wherein said flowing step flows the coating liquid along a flow path in which all portions of the flow path are either straight or change in direction in one direction only so that the coating liquid sheet is subjected to centrifugal force that causes coating liquid to concentrate only toward the one side of the coating liquid sheet.

40. A method as in claim 38 , wherein said flowing step flows the coating liquid along a flow path in which the at least one portion of the flow path is at least one curved portion of the flow path.

41. A method as in claim 38 , wherein said flowing, forming and directing steps operate such that upon the coating liquid sheet flowing from the flow path terminal portion, coating liquid at the one side of the coating liquid sheet flows substantially toward the web surface and is contacted with and carried away on the web surface.

42. A method as in claim 41 , including the step of doctoring coating liquid on the web surface.

43. A method as in claim 41 , wherein said flowing step flows the coating liquid along a flow path in which the at least one portion of the flow path is at least one curved portion of the flow path.

44. A method as in claim 41 , wherein the at least one curved portion of the flow path is at least one concave curved portion of the flow path.

45. A method as in claim 44 , wherein the at least one concave curved portion and the terminal portion are unbounded within an unenclosed length of the flow path.

46. A method as in claim 44 , wherein the at least one concave curved portion and the terminal portion are bounded within an enclosed length of the flow path and said flowing step flows coating liquid along the enclosed length of the flow path such that, upon the coating liquid sheet being directed from the flow path terminal portion, the one side of the coating liquid sheet flows substantially toward the web surface and contacts and remains on the web surface.

47. A method as in claim 38 , including the step of doctoring the layer of coating liquid on the web surface.

48. A method as in claim 38 , wherein said flowing step flows coating liquid under pressure along the generally straight section and onto the at least one portion of the flow path.

Assignments (23)
RELEASE OF SECURITY INTEREST Recorded Apr 8, 2019
From: COMPUTERSHARE TRUST COMPANY OF CANADA
To: CATALYST PAPER CORPORATION
Reel/Frame 048824/0506 →
CORRECTIVE ASSIGNMENT TO CORRECT THE SPELLING OF THE SIX CONVEYING PARTY'S DATA PREVIOUSLY RECORDED ON REEL 041549 FRAME 0589. ASSIGNOR(S) HEREBY CONFIRMS THE SECURITY INTEREST. Recorded Jun 2, 2017
From: CATALYST PAPER CORPORATION; CATALYST PAPER HOLDINGS INC.; CATALYST PAPER (USA) INC.; CATALYST PAPER (SNOWFLAKE) INC.; PACIFICA PAPERS SALES INC.; PACIFICA PAPERS US INC.; PACIFICA POPLARS INC.; CATALYST PAPER OPERATIONS INC.
To: COMPUTERSHARE TRUST COMPANY OF CANADA, AS COLLATERAL TRUSTEE
Reel/Frame 042670/0216 →
SECURITY INTEREST Recorded Mar 12, 2017
From: CATALYST PAPER CORPORATION; CATALYST PAPER HOLDINGS INC.; CATALYST PAPER (USA) INC; CATALYST PAPER (SNOWFLAKE) INC.; PACIFICA PAPERS SALES INC.; PACIFICA PAPERS SALES US INC; PACIFICA POPLARS INC.; CATALYST PAPER OPERATIONS INC.
To: COMPUTERSHARE TRUST COMPANY OF CANADA, AS COLLATERAL TRUSTEE
Reel/Frame 041549/0589 →
RELEASE OF SECURITY INTEREST Recorded Jul 15, 2016
From: WILMINGTON TRUST, NATIONAL ASSOCIATION
To: NEWPAGE CORPORATION; NEWPAGE WISCONSIN SYSTEM INC.; NEWPAGE CONSOLIDATED PAPERS INC.
Reel/Frame 039357/0700 →
RELEASE OF SECURITY INTEREST Recorded Jul 15, 2016
From: BARCLAYS BANK PLC
To: NEWPAGE CORPORATION; NEWPAGE CONSOLIDATED PAPERS, INC.; NEWPAGE WISCONSIN SYSTEM INC.
Reel/Frame 039166/0501 →
RELEASE OF SECURITY INTEREST Recorded Jul 15, 2016
From: BARCLAYS BANK PLC
To: NEWPAGE CORPORATION; NEWPAGE CONSOLIDATED PAPERS, INC.; NEWPAGE WISCONSIN SYSTEM INC.
Reel/Frame 039355/0278 →
RELEASE OF SECURITY INTEREST Recorded Jul 15, 2016
From: BARCLAYS BANK PLC
To: NEWPAGE CORPORATION; NEWPAGE CONSOLIDATED PAPERS, INC.; NEWPAGE WISCONSIN SYSTEM INC.
Reel/Frame 039166/0294 →
SECURITY INTEREST Recorded Jan 29, 2016
From: NEWPAGE INVESTMENT COMPANY LLC; NEWPAGE CORPORATION
To: BARCLAYS BANK PLC
Reel/Frame 037618/0877 →
SECURITY INTEREST Recorded Jan 29, 2016
From: NEWPAGE INVESTMENT COMPANY, LLC; NEWPAGE CORPORATION
To: BARCLAYS BANK PLC
Reel/Frame 037618/0853 →
INTELLECTUAL PROPERTY SECURITY INTEREST ASSIGNMENT AGREEMENT Recorded Jan 4, 2016
From: CREDIT SUISSE AG, CAYMAN ISLANDS BRANCH
To: WILMINGTON TRUST, NATIONAL ASSOCIATION
Reel/Frame 037415/0430 →
SECURITY AGREEMENT Recorded Mar 7, 2014
From: NEWPAGE CORPORATION; NEWPAGE CONSOLIDATED PAPERS INC.; NEWPAGE WISCONSIN SYSTEM INC.
To: BARCLAYS BANK PLC, AS ADMINISTRATIVE AGENT AND COLLATERAL AGENT
Reel/Frame 032410/0239 →
SECURITY AGREEMENT Recorded Mar 7, 2014
From: NEWPAGE CORPORATION; NEWPAGE CONSOLIDATED PAPERS INC.; NEWPAGE WISCONSIN SYSTEM INC.
To: CREDIT SUISSE AG, CAYMAN ISLANDS BRANCH, AS COLLATERAL AGENT
Reel/Frame 032410/0273 →
SECURITY INTEREST RELEASE 029536/0941 Recorded Feb 27, 2014
From: JPMORGAN CHASE BANK, N.A., AS ADMINISTRATIVE AGENT
To: NEWPAGE CORPORATION; NEWPAGE WISCONSIN SYSTEM INC.
Reel/Frame 032365/0043 →
SECURITY INTEREST RELEASE 029538/0140 Recorded Feb 27, 2014
From: BARCLAYS BANK PLC, AS COLLATERAL AGENT
To: NEWPAGE WISCONSIN SYSTEM INC.
Reel/Frame 032364/0645 →
SECURITY AGREEMENT Recorded Dec 28, 2012
From: NEWPAGE CORPORATION; NEWPAGE WISCONSIN SYSTEM INC.
To: JPMORGAN CHASE BANK, N.A., AS ADMINISTRATIVE AGENT
Reel/Frame 029536/0941 →
RELEASE OF SECURITY INTEREST Recorded Dec 24, 2012
From: BANK OF NEW YORK MELLON
To: NEWPAGE CORPORATION, NEWPAGE WISCONSIN SYSTEM INC.
Reel/Frame 029529/0873 →
SECURITY AGREEMENT Recorded Dec 22, 2012
From: NEWPAGE WISCONSIN SYSTEM INC.
To: BARCLAYS BANK PLC, AS COLLATERAL AGENT
Reel/Frame 029538/0140 →
AMENDMENT TO PATENT SECURITY AGREEMENT (TO REFLECT NAME CHANGE OF RECEIVING PARTY) Recorded Sep 16, 2009
From: NEWPAGE WISCONSIN SYSTEM, INC. (F/K/A STORA ENSO NORTH AMERICA CORP.)
To: THE BANK OF NEW YORK MELLON, AS PRIORITY LIEN COLLATERAL TRUSTEE
Reel/Frame 023234/0869 →
AMENDMENT TO PATENT SECURITY AGREEMENT (TO REFLECT NAME CHANGE OF RECEIVING PARTY) Recorded Sep 16, 2009
From: NEWPAGE WISCONSIN SYSTEM, INC. (F/K/A STORA ENSO NORTH AMERICA CORP.)
To: THE BANK OF NEW YORK MELLON, AS PARITY LIEN COLLATERAL TRUSTEE
Reel/Frame 023234/0884 →
CORRECTIVE ASSIGNMENT TO CORRECT THE CHANGE OF NAME PREVIOUSLY RECORDED ON REEL 020385 FRAME 0519. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNEE SHOULD READ NEWPAGE WISCONSIN SYSTEM INC. NOT NEWPAGE WISCONSIN SYSTEMS INC.. Recorded Feb 29, 2008
From: STORA ENSO NORTH AMERICA CORP.
To: NEWPAGE WISCONSIN SYSTEM INC.
Reel/Frame 020582/0304 →
CHANGE OF NAME Recorded Jan 18, 2008
From: STORA ENSO NORTH AMERICA CORP.
To: NEWPAGE WISCONSIN SYSTEMS INC.
Reel/Frame 020385/0519 →
SECURITY AGREEMENT Recorded Jan 4, 2008
From: STORA ENSO NORTH AMERICA CORP.
To: THE BANK OF NEW YORK, AS PARITY LIEN COLLATERAL TRUSTEE
Reel/Frame 020317/0526 →
SECURITY AGREEMENT Recorded Dec 31, 2007
From: STORA ENSO NORTH AMERICA CORP.
To: THE BANK OF NEW YORK, AS PRIORITY LIEN COLLATERAL TRUSTEE
Reel/Frame 020299/0766 →