System and method for affixing insulated panels
10494813 ยท 2019-12-03
Assignee
Inventors
Cpc classification
E04C2/38
FIXED CONSTRUCTIONS
E04C2/296
FIXED CONSTRUCTIONS
E04B1/6125
FIXED CONSTRUCTIONS
F25D23/063
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F25D13/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
E04B1/14
FIXED CONSTRUCTIONS
F25D2201/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
E04B1/6183
FIXED CONSTRUCTIONS
International classification
Abstract
An insulated panel system includes a joint disposed between two insulated panels. The joint has a male portion and a female portion. The female portion has a flange, sidewalls, and a base that can be secured to an existing structure. The male portion includes a top plate with sealing sides that rest against the face of the insulated panel when inserted into the female portion. The sealing sides prevent warm air and/or moisture from ingress into a refrigerated space defined by the insulated panels. Also disclosed is a sealing joint for insulated structural panels.
Claims
1. An insulated veneer panel system, comprising: an insulated panel wall including a first insulated structural panel coupled to a second insulated structural panel, each of the first and second insulated structural panels including a structural member, sheathing, and a foam insulation disposed between the sheathing; a veneer panel operatively coupled to the insulated panel wall, the veneer panel including an edge; a locking joint operatively coupling the veneer panel to the insulated panel wall, the locking joint comprising a male portion and a female portion, the male portion including a strut and a top plate that terminates at at least a first edge distal from the strut with a sealing flange, the strut operable for insertion into the female portion; the female portion including a flange, a first sidewall, and a base, the flange being operable to overlap the edge of the veneer panel, the sidewall being operable to abut the edge of the veneer panel, and the base is secured to a surface of the insulated panel wall, and wherein when the male portion is inserted into the female portion, the sealing flange of the male portion contacts a surface of the veneer panel.
2. The insulated veneer panel system of claim 1, wherein the strut of the male portion further comprises louvres operable to engage louvres disposed on an interior of the sidewall of the female portion when the male portion is inserted into the female portion.
3. The insulated veneer panel system of claim 1, wherein the male portion is operable to be secured to the female portion with adhesive when the male portion is inserted into the female portion.
4. The insulated veneer panel system of claim 1, further comprising a fastener operable to secure the base of the female portion to one of the insulated structural panels.
5. The insulated veneer panel system of claim 1, wherein the female portion further comprises an integrated fastener operable to engage the surface of one of the insulated structural panels.
6. The insulated veneer panel system of claim 1, wherein the locking joint is configured to engage one of the insulated structural panels at an approximate midpoint between the extreme lateral edges of the insulated structural panel.
7. The locking joint of claim 1, further comprising a second veneer panel, wherein the female portion of the locking joint includes a second sidewall separated from the sidewall by the base, wherein the second sidewall abuts an edge of the second veneer panel, and wherein the male portion includes a second sealing flange at a second edge opposite the sealing flange, and wherein the second sealing flange engages the second veneer panel when the male portion is inserted into the female portion, and wherein the second veneer panel is secured to the insulated panel wall.
8. The locking joint of claim 1, wherein the sealing flange of the male portion is deformable to seal against an exterior surface of the veneer panel.
9. A method for protecting an insulated structural panel wall with an insulated veneer panel, the method comprising: covering a joint of an insulated structural panel wall, the insulated structural panel wall including first and second insulated structural panels coupled at the joint, each of the first and second insulated structural panels including a structural member, sheathing, and a foam insulation disposed between the sheathing; securing a veneer panel to one of the first and second insulated structural panels to overlap the joint by coupling a locking joint to the veneer panel and to the one of the first and second insulated structural panels, wherein the locking joint comprises a male portion comprising a top plate that terminates at an edge of the top plate with a sealing flange and a strut, and a female portion sized to receive the strut of the male portion and wherein the female portion comprises a flange operable to overlap an edge of the veneer panel, a sidewall operable to abut the edge of the veneer panel, and a base operable to rest against an exterior surface of the one of the first and second insulated structural panels, and wherein the sealing flange of the male portion engages an exterior surface of the veneer panel when the male portion is inserted in the female portion.
10. The method of claim 9, comprising attaching the male portion to the female portion with an adhesive.
11. The method of claim 9, comprising coupling the male portion to the female portion by engaging locking louvres disposed on a surface of the strut of the male portion with corresponding locking louvres disposed on an interior surface of the sidewall of the female portion.
12. The method of claim 11, wherein the locking louvres of the male portion are integral to the strut.
13. The method of claim 12, wherein the locking louvres of the female portion are integral to the sidewall.
14. The method of claim 9, further comprising securing the base of the female portion to the exterior surface of the one of the first and second insulated structural panels with a fastener.
15. The method of claim 14, further comprising securing the veneer panel to the exterior surface of the one of the first and second insulated structural panels.
16. The method of claim 9, wherein securing the veneer panel to one of the first and second insulated panels includes laterally offsetting the locking joint relative to the joint between the first and second insulated structural panels such that the veneer panel overlays the joint of the insulated structural panel wall.
17. A locking joint assembly for securing insulated veneer panels to an insulated structural panel wall, comprising: an insulated panel wall including a first insulated structural panel coupled to a second insulated structural panel at a joint, each of the first and second insulated structural panels including a structural member, sheathing, and a foam insulation disposed between the sheathing; a first veneer panel operatively coupled to the insulated panel wall, the veneer panel including an interior edge; a second veneer panel operatively coupled to the insulated panel wall, the second veneer panel including an interior edge facing the interior edge of the first veneer panel; a locking joint operatively coupling the first veneer panel to the second veneer panel and secured to an exterior surface of the insulated panel wall, the locking joint offset from the joint of the insulated structural panel wall, wherein the locking joint includes a male portion and a female portion, the male portion including a strut sized for inserting into the female portion and a top plate that terminates at a longitudinal edge with a sealing flange, wherein the longitudinal edge being substantially parallel to the interior edge of the first veneer panel; the female portion including a flange, a sidewall, and a base, the flange of the female portion being operable to overlap the interior edge of the first veneer panel, the sidewall being operable to abut the interior edge of the first veneer panel, and the base being operable to rest against the exterior surface of the insulated panel wall, wherein the male strut comprises louvres operable to securely engage louvres disposed on an interior surface of the sidewall of the female portion to secure the male portion to the female portion when the sealing flange rests against an exterior surface of the first veneer panel.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION OF THE INVENTION
(12) The present invention is directed to systems and methods of maintaining the insulative properties of insulated structural panels.
(13) The insulated structural panel is primarily assembled by virtue of the closed-cell polyurethane foam 28 acting as an adhesive to hold the sheathing and structural members in place. Insulated structural panels 20 or further typically design such that vertical structural members 22 include a tongue-in-groove design. A latch 30 and latch-bar 32, or other suitable connecting hardware is typically disposed within the panel to facilitate joining the panels together. When the latch 30 is actuated to engage the latch-bar 32, for example, the insulated structural panels are drawn tightly together, as shown in
(14) The width of the structural panel may be determined by the application for which the insulated structural panels are to be used. The insulated polyurethane structural panels have a typical thermal resistance (R-value) of R-8 per inch. Typical insulated structural panels that are to 6 inches in width, accordingly have corresponding R-values of R-24 to R-48. The structural members 22 and 24, however, when constructed of wood, only have a total R-value of R-3 to R-6. Because of the poor insulative properties of structural panels manufactured with wood structural members 22, more warm air moves toward the lower-pressure refrigerated space predominantly at joint 30. Over time, as the relatively warm and moist outside air travels through the joint 30, condensation may form. In the case of an insulated structural panel system used for refrigeration, this condensation may remain in liquid form and become a source of potential mold or bacterial growth. In the case of insulated structural panel freezer systems, condensation formed a joint 30 can result in the formation of ice, which, when formed in, or within joint 30 can expand the joint. Expansion of this joint 30 further degrades the efficacy of the insulated structural panel system, especially at the joint 30.
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(17) Flanged female joint 200 is constructed to fit between two veneer panels 50. In practice, it is preferable, though unnecessary, for the joint 200 to abut the edges of veneer panels 50, as shown in
(18) The veneer panels 50 are positions such that they are adjacent to flanges 210 and sidewalls 212. When the female flanged joint 200 is fastened to a structural panel 50, with veneer panels 50 fully inserted behind the flange, the female flange joint 200 holds the veneer panels in place. Capped male insert 100 is then inserted into the flanged female joint 200 such that louvres 116 engaged louvres 216 to lock the capped male insert in place, and so that seals 114 are in contact with the surface of veneer panels 50 to prevent ambient air or liquid from ingress into the joint between the veneer panels 50 or structural panels 20.
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(20) In another embodiment of the present invention, a structural seal 300 is provided in
(21) The structural seal 300 of the present embodiment includes lateral members 310 that terminate on either end at sealing edges 314. A vertical member 312 is disposed between the lateral members 310. Preferably, the depth of the vertical member 310 is such that the interior portions of lateral members 310 are in contact with the sheathing 26 of insulated structural panels 20. Additionally, an opening or slit 316 is disposed within the vertical member 312 that corresponds to the location of the one or more latches 30 and latch-bars 32 that connect structural panels 20 to one another. During operation, the structural seal 300 is disposed between two insulated structural panels 20. When the a latch 30 is engaged with latch-bar 32 to bring the panel joints snug to one another, the panels are brought into sealing contact with vertical member 312 to reduce the likelihood of refrigerated air from within a refrigerated space bounded by structural panels 20 coming into contact with ambient air on the exterior, and to prevent unwanted condensation from forming between the structural panels 20. The lateral members 310 are preferable disposed directly against the sheathing 26 to extend the portion of the seal beyond the joint between structural members 22 to move the potential for leaked air further from the joint itself.
(22) Any of the inventions disclosed herein, such as locking joints 100 and 100 or structural seal 300 may be constructed of any number of deformable polymers with varying degrees of stiffness. Examples of polymers that may be used in accordance with the present invention include, but are not limited to, PVC, plastics, nylons, or other suitable materials that are deformable when placed under a stress load.
(23) While the present invention has been described in detail, it is not intended to be limited. Accordingly, various changes, variations, and substitutions may be made without departing with the scope of the invention as disclosed.