IP Library Granted Patent US 10,611,133
Granted Patent B2
US 10,611,133 · App. 15/917,003 · Granted Apr 7, 2020

Process for creating a sublimated printed heat-sealable applique

Inventors: Paul Weedlun (Fulton, MD); Patricia A. Mason (White Hall, MD); Gillian Ross (Ellicott City, MD); Owen McGovern (Columbia, MD)
Assignee: Lion Brothers Company, Inc.
B32B27/40B32B5/022B32B5/024B32B5/026B32B7/12B32B27/36B32B37/08B32B37/12B32B38/145B41M3/12B32B2307/4026B32B2307/41D06P5/004
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Quick Facts
Patent No.
US 10,611,133
App. No.
15/917,003
Granted
Apr 7, 2020
Kind
B2
Abstract

A process for producing a colorfast thermal appliqué using a polyester knit fabric blank, dye-sublimation printing a graphic image on the fabric blank, and laminating a triple-layer polyurethane adhesive on another side of the printed fabric blank. The triple-layer adhesive comprises a first layer of clear ink resistant polyurethane adhesive followed by a white-pigmented ink resistant polyurethane adhesive and a third clear layer of ink-resistant polyurethane adhesive. The first layer of the triple-layer adhesive is fused under combined temperature and pressure to the polyester blank until said first and second layers impregnates into said fabric blank. The fabric blank is then cut into a discrete finished appliqué that does not substantially change the physical and visual characteristics of a performance fabric substrate to which the appliqué is applied.

Claims (48)

1. A process for producing a thermal appliqué, comprising the steps of:

obtaining a fabric blank comprising a woven or non-woven material;

obtaining a stratified thermal adhesive laminate comprising a layer of pigmented ink resistant thermoplastic adhesive disposed between opposing layers of clear thermoplastic adhesive;

fusing said stratified thermal adhesive laminate on one side to said fabric blank under combined temperature and pressure until it impregnates into said fabric blank; and

cutting said fabric blank into a discrete appliqué.

2. The process for producing a thermal appliqué according to claim 1 , wherein said step of obtaining said fabric blank comprises obtaining said fabric blank having a graphic image printed on one side of said fabric blank.

3. The process for producing a thermal appliqué according to claim 1 , wherein said layer of pigmented ink resistant thermoplastic adhesive has a melting point higher than both said layers of clear thermoplastic adhesive.

4. The process for producing a thermal appliqué according to claim 3 , wherein said layer of pigmented ink resistant thermoplastic adhesive has a melting point within a range of between 80-210 degrees C.

5. The process for producing a thermal appliqué according to claim 4 , wherein said opposing layers of clear thermoplastic adhesive both have the same melting point.

6. The process for producing at thermal appliqué according to claim 5 , wherein said opposing layers of clear thermoplastic adhesive have the same melting point within the range between 60-160 degrees C.

7. The process for producing a thermal appliqué according to claim 1 , wherein said pigmented ink resistant thermoplastic adhesive layer comprises white pigment chosen from among a group consisting of titanium dioxide, antimony oxide, zinc oxide, magnesium silicate (talc), calcium sulfite, barium sulfate, zinc borate, anhydrous sodium potassium alumina silicate, and calcium carbonate.

8. The process for producing a thermal appliqué according to claim 1 , wherein said layer of pigmented ink resistant thermoplastic adhesive layer forms an ink-migration blocking layer.

9. A process for producing a thermal adhesive laminate for use with a thermal appliqué, comprising the steps of:

obtaining a layer of thermoplastic adhesive containing a pigment and having a first melting point; and

overlaying said layer of pigmented thermoplastic adhesive on both sides with clear thermoplastic adhesive at a temperature less than said first temperature.

10. A process for producing a thermal appliqué using the thermoplastic adhesive laminate of claim 9 , comprising the steps of:

obtaining a fabric blank comprising a woven or non-woven polyester knit;

printing a graphic image on one side of said fabric blank;

fusing said thermoplastic adhesive laminate to said fabric blank under combined temperature and pressure until it impregnates into said fabric blank; and

cutting said fabric blank into a discrete appliqué.

11. A stratified thermal adhesive laminate for use in conjunction with a thermal appliqué, comprising:

a layer of thermoplastic adhesive containing a pigment;

a layer of clear thermoplastic adhesive on one side of said layer of pigmented thermoplastic adhesive; and

a layer of clear thermoplastic adhesive on another side of said layer of pigmented thermoplastic adhesive;

wherein said layers of clear thermoplastic adhesive have a lower melting point than said layer of pigmented thermoplastic adhesive.

12. The stratified thermal adhesive laminate according to claim 11 , wherein said layer of pigmented thermoplastic adhesive has a melting point within a range of between 80-210 degrees C.

13. The stratified to thermal adhesive laminate according to claim 11 , wherein both of said layers of clear thermoplastic adhesive have melting points within the range of between 60-160 degrees C.

14. The stratified thermal adhesive laminate according to claim 10 , wherein said layer of pigmented ink resistant thermoplastic adhesive comprises a white pigment chosen from among a group consisting of titanium dioxide, antimony erode, zinc oxide, magnesium silicate (talc), calcium sulfate, barium sulfate, zinc borate, anhydrous sodium potassium alumina silicate, and calcium carbonate.

15. The stratified thermal adhesive laminate according to claim 11 , wherein said layer of pigmented ink resistant thermoplastic adhesive forms an ink-migration blocking layer.

16. A thermal appliqué, comprising:

a fabric patch comprising a woven or non-woven polyester knit having a graphic image on one side of said fabric patch; and

the stratified thermal adhesive laminate of claim 11 fused to one side of said fabric patch.

17. The stratified thermal adhesive laminate according to claim 16 , wherein said layer of pigmented ink resistant thermoplastic adhesive forms an opaque layer reducing show through of the underlying material to which the appliqué is applied.

18. The stratified thermal adhesive laminate according to claim 16 , wherein said layer of pigmented ink resistant thermoplastic adhesive forms an opaque layer that reduces visual white adhesive edge as a result of heat and pressure application of the appliqué.

19. The stratified thermal adhesive laminate according to claim 16 , wherein said layers of thermoplastic are thermoplastic polyurethane.

20. The stratified thermal adhesive laminate according to claim 16 , wherein said appliqué material is polyester based.

21. The stratified thermal adhesive laminate according to claim 20 , wherein said appliqué is printed using sublimation printing.

22. The process for producing a thermal appliqué according to claim 1 , wherein said pigmented ink resistant thermoplastic adhesive comprises a plurality of pigments.

23. The process for producing a thermal appliqué according to claim 22 , wherein said pigmented ink resistant thermoplastic adhesive comprises white pigment and black pigment.

24. The process for producing a thermal appliqué according to claim 1 , wherein said layer of pigmented ink resistant thermoplastic adhesive comprises a plurality of pigment layers.

25. The process for producing a thermal appliqué according to claim 24 , wherein said plurality of pigment layers comprise a white pigment and a black pigment.

26. The process for producing a thermal appliqué according to claim 25 , wherein said black pigment comprises one or more of carbon black and activated carbon.

27. A stratified thermal adhesive laminate for use in conjunction with a thermal appliqué, comprising:

a layer of white thermoplastic adhesive;

a layer of black thermoplastic adhesive on one side of said layer of white thermoplastic adhesive;

a first layer of clear thermoplastic adhesive on another side of said layer of white thermoplastic adhesive; and

a second layer of clear thermoplastic adhesive on one side of said layer of black thermoplastic adhesive;

wherein said first and second layers of clear thermoplastic adhesive have a lower melting point than said layers of white and black thermoplastic adhesive.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 14, 2023
From: LION BROTHERS COMPANY, INC.
To: AVERY DENNISON RETAIL INFORMATION SERVICES LLC
Reel/Frame 065871/0513 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 13, 2019
From: WEEDLUN, PAUL; MASON, PATRICIA A.; ROSS, GILLIAN; MCGOVERN, OWEN
To: LION BROTHERS COMPANY, INC.
Reel/Frame 051280/0419 →
Continuity (3)
Continuation 15592142 · May 10, 2017
Provisional Application 62469903 · Mar 10, 2017
Related Publication 20180345640A1 · Dec 6, 2018