IP Library › Granted Patent US 10,378,214
Granted Patent B2
US 10,378,214 · App. 16/273,872 · Granted Aug 13, 2019

Insulation system for buildings

Inventor: G. Matt Krause (Allegan, MI)
Assignee: Advanced Architectural Products, LLC
E04F13/0821E04B1/7629E04B9/28E04C2/243E04C2/388E04F13/0826E04F13/12E04B2001/405E04C2/20E04F13/07E04F13/08E04F13/081E04F2201/01
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Quick Facts
Patent No.
US 10,378,214
App. No.
16/273,872
Granted
Aug 13, 2019
Kind
B2
Abstract

An insulation system for coupling to a building substrate comprising a plurality of insulation panels, bracket members and splice members. Each insulation panel includes a longitudinal slot. Each bracket member is formed from a polymer and includes an elongated body having a body wall, a first end wall and a second end wall. Upper and lower ribs extend from the body wall and are structurally configured to extend into the longitudinal slot of each of the plurality of insulation panels, and to elastically deform the longitudinal slot so as to effectively seal along a length thereof, defining a vapor barrier. A similar structure is on each splice member. The bracket members are positioned in a spaced apart relationship with insulation panels therebetween. The upper and lower ribs extend into corresponding ones of the longitudinal slots of the insulation panels, with splice members extending between adjacent adjacently abutting insulation panels.

Claims (32)

1. An insulation method comprising:

providing a plurality of insulation panels, each insulation panel including a front face, a back face and a plurality of side surfaces extending therebetween, the side surfaces including a longitudinal slot extending along at least a portion thereof;

providing a plurality of bracket members, each bracket member including an elongated body having a body wall, a first end wall extending from a first end of the body wall and a second end wall extending from the second end of the body wall opposite the first end wall, the body wall having a top surface and a bottom surface, and an upper rib extending upwardly from the top surface of the body wall spaced apart from each of the first end wall and the second end wall, and a lower rib extending downwardly from the bottom surface of the body wall spaced apart from each of the first end wall and the second end wall, each of the upper rib and the lower rib structurally configured to extend into the longitudinal slot of each of the plurality of insulation panels, wherein the insertion of the respective upper rib and lower rib at least elastically deforms the longitudinal slot into which inserted so as to effectively seal along a length thereof, thereby defining a vapor barrier therebetween, wherein the first end wall includes a lower flange portion that extends beyond the bottom surface of the body wall;

positioning the plurality of bracket members in a spaced apart relationship; and

extending insulation panels between the plurality of bracket members, wherein the upper and lower ribs extend into corresponding ones of the longitudinal slots of the insulation panels.

2. The insulation method of claim 1 wherein the first end wall extends upwardly from the top surface of the body wall and the second end wall extends downwardly from the bottom surface of the body wall.

3. The insulation method of claim 1 wherein the first end wall and the second end wall are substantially parallel to each other and substantially perpendicular to the body wall.

4. The insulation method of claim 1 further comprising providing a plurality of splice members, each splice member including a first rib portion and a second rib portion extending in opposite directions from a meeting region therebetween, the first rib portion and the second rib portion structurally configured to extend into the longitudinal slot of each of the plurality of insulation panels, wherein the insertion of the respective first rib portion and second rib portion at least elastically deforms the longitudinal slot into which inserted so as to effectively seal along a length thereof, thereby defining a vapor barrier therebetween.

5. The insulation method of claim 1 wherein the plurality of insulation panels comprise a foam member.

6. The insulation method of claim 1 wherein the first end wall is coupled to a building substrate.

7. The insulation method of claim 1 wherein the lower flange portion includes a capillary break on an outer surface thereof.

8. An insulation method comprising:

providing a plurality of insulation panels, each insulation panel including a front face, a back face and a plurality of side surfaces extending therebetween, the side surfaces including a longitudinal slot extending along at least a portion thereof; and

providing a plurality of bracket members, each bracket member including an elongated body having a body wall, a first end wall extending from a first end of the body wall and a second end wall extending from the second end of the body wall opposite the first end wall, the body wall having a top surface and a bottom surface, and an upper rib extending upwardly from the top surface of the body wall spaced apart from each of the first end wall and the second end wall, and a lower rib extending downwardly from the bottom surface of the body wall spaced apart from each of the first end wall and the second end wall, each of the upper rib and the lower rib structurally configured to extend into the longitudinal slot of each of the plurality of insulation panels, wherein the insertion of the respective upper rib and lower rib at least elastically deforms the longitudinal slot into which inserted so as to effectively seal along a length thereof, thereby defining a vapor barrier therebetween, wherein the second end wall includes a capillary break at an outer surface thereof where the second end wall meets the body wall;

positioning a plurality of bracket members in a spaced apart relationship; and

extending insulation panels between the plurality of bracket members, wherein the upper and lower ribs extend into corresponding ones of the longitudinal slots of the insulation panels.

9. The insulation method of claim 8 wherein the upper rib includes a first side and a second side, each of the first side and the second side being parallel to each other and perpendicular to the top surface of the body wall.

10. The insulation method of claim 8 wherein the lower rib includes a first side and a second side, each of the first side and the second side being parallel to each other and perpendicular to the bottom surface of the body wall.

11. The insulation method of claim 8 wherein the upper rib and the lower rib are co-planar and on opposite sides of each other.

12. The insulation method of claim 8 wherein the upper rib and the lower rib each include a cross-sectional configuration which is the same and which is substantially uniform along the length thereof.

13. The insulation method of claim 12 wherein the upper rib, the lower rib, the first rib portion and the second rib portion have a substantially identical cross-sectional configuration.

14. The insulation method of claim 8 further comprising providing a plurality of splice members, each splice member including a first rib portion and a second rib portion extending in opposite directions from a meeting region therebetween, the first rib portion and the second rib portion structurally configured to extend into the longitudinal slot of each of the plurality of insulation panels, wherein the insertion of the respective first rib portion and second rib portion at least elastically deforms the longitudinal slot into which inserted so as to effectively seal along a length thereof, thereby defining a vapor barrier therebetween.

15. An insulation method comprising:

providing a plurality of insulation panels, each insulation panel including a front face, a back face and a plurality of side surfaces extending therebetween, the side surfaces including a longitudinal slot extending along at least a portion thereof; and

providing a plurality of bracket members, each bracket member including an elongated body having a body wall, a first end wall extending from a first end of the body wall and a second end wall extending from the second end of the body wall opposite the first end wall, the body wall having a top surface and a bottom surface, and an upper rib extending upwardly from the top surface of the body wall spaced apart from each of the first end wall and the second end wall, and a lower rib extending downwardly from the bottom surface of the body wall spaced apart from each of the first end wall and the second end wall, each of the upper rib and the lower rib structurally configured to extend into the longitudinal slot of each of the plurality of insulation panels, wherein the insertion of the respective upper rib and lower rib at least elastically deforms the longitudinal slot into which inserted so as to effectively seal along a length thereof, thereby defining a vapor barrier therebetween, wherein the first end wall includes a first reinforcement channel extending along one of an outer surface and an inner surface thereof, and a first insert rigidity member slidably positioned within the first reinforcement channel;

positioning a plurality of bracket members in a spaced apart relationship; and

extending insulation panels between the plurality of bracket members, wherein the upper and lower ribs extend into corresponding ones of the longitudinal slots of the insulation panels.

16. The insulation method of claim 15 wherein the second end wall includes a second reinforcement channel extending along one of an outer surface and an inner surface thereof, the method further comprising providing a second rigidity member slidably positioned within the second reinforcement channel.

17. The insulation method of claim 16 wherein the first and second rigidity members comprise a metal strip.

18. The insulation method of claim 16 wherein the first reinforcement channel extends along the outer surface of the first end wall and the second reinforcement channel extends along the inner surface of the second end wall.

19. The insulation method of claim 15 wherein the plurality of insulation panels have at least one surface which is covered with one of a foil or a coating.

20. The insulation method of claim 15 further comprising providing a plurality of splice members, each splice member including a first rib portion and a second rib portion extending in opposite directions from a meeting region therebetween, the first rib portion and the second rib portion structurally configured to extend into the longitudinal slot of each of the plurality of insulation panels, wherein the insertion of the respective first rib portion and second rib portion at least elastically deforms the longitudinal slot into which inserted so as to effectively seal along a length thereof, thereby defining a vapor barrier therebetween.

Continuity (8)
Continuation 15415068 · Jan 25, 2017
Continuation 15067966 · Mar 11, 2016
Continuation PCTUS2014055118 · Sep 11, 2014
Continuation 14281949 · May 20, 2014
Continuation In Part 13763915 · Feb 11, 2013
Continuation In Part 12984051 · Jan 4, 2011
Provisional Application 61876731 · Sep 11, 2013
Related Publication 20190177981A1 · Jun 13, 2019