IP Library Granted Patent US 10,876,350
Granted Patent B2
US 10,876,350 · App. 16/244,690 · Granted Dec 29, 2020

Insulating glass unit compression-injection coated patch and method

Inventors: Leslie M. Canning, Jr. (Cambridge, OH); Nathan T. Tuttle (New Concord, OH); Cody J. Walsh (Salmon, WA); Joseph D. Florio (Cambridge, OH); Kenneth F. Wayman (Port Washington, OH)
Assignee: Quanex IG Systems, Inc.
E06B3/67326B32B7/12B32B17/06E06B3/667E06B3/66328E06B3/66342E06B3/6775E06B3/67339B32B37/06B32B37/10B32B37/12E06B3/66323E06B3/67356E06B2003/6638Y02B80/22
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Quick Facts
Patent No.
US 10,876,350
App. No.
16/244,690
Granted
Dec 29, 2020
Kind
B2
Abstract

A method for applying a patch to a spacer discontinuity or other seal breach includes the step of applying pressure to the patch during the application of the patch to cause sealant carried by the patch to be injected into the spacer discontinuity. This step can be performed with or without the application of heat. Pressure is applied to the patch long enough to position the sealant entirely across the gap between the lites such that the sealant wets out against both interior glass surfaces. Pressure is also applied to the patch long enough to inject sealant into openings defining the discontinuity. A sealant is then applied over the entire patch. The structure of the patch and the patched IG unit are provided.

Claims (32)

1. An insulating glazing unit comprising:

first and second lites connected to a spacer having a spacer discontinuity;

the first and second lites each having an outer perimeter edge; the spacer being disposed inwardly of outer perimeter edges of the first and second lites to define a channel;

a patch having a substrate and a layer of patch sealant; the patch disposed in the channel between the first and second lites over the spacer discontinuity; a portion of the patch sealant being disposed in the discontinuity; and

a sealant covering the entire substrate of the patch.

2. The insulating glazing unit of claim 1 , wherein the patch includes a solid substrate; the layer of patch sealant being directly connected to the solid substrate.

3. The insulating glazing unit of claim 1 , wherein the patch sealant is continuous between the first and second lites.

4. The insulating glazing unit of claim 1 , further comprising argon gas disposed between the first and second lites inwardly of the spacer.

5. The insulating glazing unit of claim 1 , wherein the patch is centered over the spacer discontinuity.

6. The insulating glazing unit of claim 1 , wherein the spacer is connected to the first and second lites with a spacer adhesive.

7. The insulating glazing unit of claim 6 , wherein the spacer adhesive is an acrylic adhesive.

8. The insulating glazing unit of claim 1 , wherein the spacer discontinuity is located at a spacer corner.

9. The insulating glazing unit of claim 1 , wherein the patch sealant has a thickness between 1 mm and 2.54 mm.

10. The insulating glazing unit of claim 9 , wherein the patch sealant includes polyisobutylene.

11. The insulating glazing unit of claim 10 , wherein the substrate of the patch is a solid flexible film.

12. An insulating glazing unit comprising:

first and second lites connected to a spacer having a spacer discontinuity; the first and second lites each having an outer perimeter edge; the spacer being disposed inwardly of outer perimeter edges of the first and second lites to define a channel; and

a patch having a substrate and a layer of patch sealant; the patch disposed entirely within the channel between the first and second lites and disposed over the spacer discontinuity; a portion of the patch sealant being disposed in the discontinuity.

13. The insulating glazing unit of claim 12 , wherein the patch includes a solid substrate; the layer of patch sealant being directly connected to the solid substrate.

14. The insulating glazing unit of claim 12 , wherein the patch sealant is continuous between the first and second lites.

15. The insulating glazing unit of claim 12 , further comprising a sealant disposed in the channel over the substrate of the patch.

16. The insulating glazing unit of claim 12 , wherein the patch sealant has a thickness between 1 mm and 2.54 mm.

17. The insulating glazing unit of claim 16 , wherein the patch sealant includes polyisobutylene.

18. The insulating glazing unit of claim 17 , wherein the substrate of the patch is a solid flexible film.

19. An insulating glazing unit comprising:

first and second lites connected to a spacer having a spacer discontinuity; the spacer discontinuity being located at a spacer corner;

the first and second lites each having an outer perimeter edge; the spacer being disposed inwardly of outer perimeter edges of the first and second lites to define a channel;

a patch having a substrate and a layer of patch sealant; the patch disposed entirely within the channel and disposed over the spacer discontinuity; a portion of the patch sealant being disposed in the discontinuity;

the patch sealant being continuous between the first and second lites; and

a sealant disposed in the channel over the substrate of the patch.

20. The insulating glazing unit of claim 19 , wherein the patch sealant has a thickness between 1 mm and 2.54 mm.

21. The insulating glazing unit of claim 20 , wherein the substrate of the patch is a solid flexible film.

Assignments (1)
SECURITY INTEREST Recorded Apr 18, 2019
From: QUANEX IG SYSTEMS, INC.
To: WELLS FARGO BANK, NATIONAL ASSOCIATION, AS AGENT
Reel/Frame 048928/0076 →
Continuity (3)
Division 15256122 · Sep 2, 2016
Provisional Application 62214704 · Sep 4, 2015
Related Publication 20190162013A1 · May 30, 2019