IP Library Granted Patent US 7,654,660
Granted Patent B2
US 7,654,660 · App. 11/113,663 · Granted Feb 2, 2010

Energy activated printing process

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Quick Facts
Patent No.
US 7,654,660
App. No.
11/113,663
Granted
Feb 2, 2010
Kind
B2
Abstract

Reactive inks and methods of generating an image on a substrate using both reactive and heat activated inks are presented. An image is printed on a substrate, without reacting the reagents in the ink. Subsequently, the reagents are reacted to fix the image to a substrate, with substantial permanency and fastness. Sublimation or similar heat activated dyes are printed are also printed on the substrate. The sublimation or similar heat activated dyes are activated, and have an affinity for polymer that is applied to the substrate.

Claims (24)

1. A method of digital printing, comprising the steps of:

preparing a reactive ink comprising a first reagent, and a second reagent, wherein said first reagent is reactive with said second reagent;

supplying a digital printer with said reactive ink;

digitally printing said reactive ink on a substrate;

digitally printing an ink comprising a heat activated dye on said substrate; and

subsequently reacting said first reagent with said second reagent to bind said reactive ink to said substrate, and heat activating said heat activated dye to fix said heat activated dye to a polymer that is present on said substrate.

2. A method of digital printing as described in claim 1 , wherein said reactive ink comprises polymer.

3. A method of digital printing as described in claim 1 , wherein said reactive ink comprises heat activated dye.

4. A method of digital printing as described in claim 1 , wherein said reactive ink comprises pigment.

5. A method of digital printing as described in claim 1 , wherein said ink comprising heat activated dye is printed over said reactive ink after said reactive ink is printed.

6. A method of digital printing as described in claim 1 , wherein said ink comprising heat activated dye comprises polymer.

7. A method of digital printing as described in claim 1 , wherein said first reagent comprises a functional group that reacts with active hydrogen, and said second reagent comprises active hydrogen.

8. A method of digital printing as described in claim 1 , wherein said heat activated dye is a disperse dye.

9. A method of digital printing as described in claim 1 , wherein said heat activated dye is a sublimation dye.

10. A method of digital printing as described in claim 1 , wherein said heat activated dye forms an image on said substrate.

11. A method of digital printing as described in claim 10 , wherein said reacting said first reagent with said second reagent to bind said reactive ink to said substrate binds said polymer to said substrate.

12. A method of digital printing as described in claim 1 , wherein said substrate comprises natural fabric.

13. A method of digital printing as described in claim 12 , wherein said natural fabric comprises cotton.

14. A method of digital printing as described in claim 1 , wherein said substrate consists of natural fabric.

15. A method of digital printing as described in claim 14 , wherein said natural fabric comprises cotton.

16. A method of digital printing as described in claim 1 , wherein said reactive ink comprises a colorant and said colorant and said heat activated dye form an image on said substrate.

17. A method of digital printing as described in claim 1 , wherein said reactive ink comprises a colorant, and wherein said reacting said first reagent with said second reagent to bind said reactive ink to said substrate binds said colorant to said substrate and said heat activated ink is heat activated to fix said heat activated ink to said polymer, and said colorant and said heat activated dye form an image on said substrate.

18. A method of digital printing as described in claim 1 , wherein said reactive ink comprises a colorant, and wherein said reacting said first reagent with said second reagent to bind said reactive ink to said substrate binds said colorant and said polymer to said substrate, and said heat activated ink is heat activated to fix said heat activated ink to said polymer, and said colorant and said heat activated dye form an image on said substrate.

19. A method of digital printing as described in claim 1 , wherein said first reagent comprises a functional group that reacts with active hydrogen, and said second reagent comprises active hydrogen, and wherein said first reagent is printed on said substrate and said second reagent is separately printed on said substrate, and said first reagent and said second reagent react on said substrate to bind said reactive ink to said substrate.

Assignments (4)
RELEASE OF SECURITY INTEREST Recorded Sep 30, 2015
From: WELLS FARGO BANK, NATIONAL ASSOCIATION
To: SAWGRASS TECHNOLOGIES, INC.
Reel/Frame 036719/0738 →
SECURITY AGREEMENT Recorded May 17, 2013
From: SAWGRASS TECHNOLOGIES, INC.
To: WELLS FARGO BANK, NATIONAL ASSOCIATION
Reel/Frame 030427/0567 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 4, 2008
From: XU, MING; THOMPSON, KIMBERLEE; ZHANG, SUKUN
To: SAWGRASS TECHNOLOGIES, INC.
Reel/Frame 021482/0006 →
NOTICE OF GRANT OF SECURITY INTEREST Recorded Jun 20, 2006
From: SAWGRASS TECHNOLOGIES, INC.; TROPICAL GRAPHICS, LLC
To: BANK OF AMERICA, N.A.
Reel/Frame 017811/0604 →