US2004140037A1PendingUtilityA1

Sash for a window or door

Priority: Apr 3, 2001Filed: Apr 2, 2002Published: Jul 22, 2004
Est. expiryApr 3, 2021(expired)· nominal 20-yr term from priority
E06B 3/56
24
PatentIndex Score
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Claims

Abstract

A wing for a window or a door is provided with a profile frame ( 1 ), which forms a rabbet ( 3 ) receiving an insulating glass component ( 2 ) and has a perimeter surface ( 6 ) that surrounds the insulating glass component ( 2 ) on the end side thereof and a rabbet surface ( 12 ) that extends beyond the edge of the insulating glass component ( 2 ), and with an adhesive layer ( 7 ) for securing the insulating glass component ( 2 ) within the rabbet ( 3 ), said adhesive layer filling, at least in perimeter areas, a perimeter slot ( 8 ) between the end surfaces ( 5 ) of the insulating glass component ( 2 ) and the perimeter surface ( 6 ) of the rabbet ( 3 ) located opposite said end surfaces ( 5 ). To permit replacement of the insulating glass component, it is suggested that, in the region of a cover pane ( 11 ) of the insulating glass component ( 2 ) that faces the rabbet surface ( 12 ), a perimeter boundary ridge ( 22 ) for confining the adhesive layer ( 7 ) be provided at a distance from the front of the rabbet surface ( 12 ).

Claims

exact text as granted — not AI-modified
1 . A wing for a window or a door with a profile frame ( 1 ), which forms a rabbet ( 3 ) receiving an insulating glass component ( 2 ) and has a perimeter surface ( 6 ) that surrounds the insulating glass component ( 2 ) on the end side thereof and a rabbet surface ( 12 ) that extends beyond the edge of the insulating glass component ( 2 ), and with an adhesive layer ( 7 ) for securing the insulating glass component ( 2 ) within the rabbet ( 3 ), said adhesive layer filling, at least in perimeter areas, a perimeter slot ( 8 ) between the end surfaces ( 5 ) of the insulating glass component ( 2 ) and the perimeter surface ( 6 ) of the rabbet ( 3 ) located opposite said end surfaces ( 5 ), characterized in that there is provided, at a distance from the front of the rabbet surface ( 12 ), in the region of a cover pane ( 11 ) of the insulating glass component ( 2 ) that faces the rabbet surface ( 12 ), a perimeter boundary ridge ( 22 ) for confining the adhesive layer ( 7 ).  
     
     
         2 . The wing according to  claim 1 , characterized in that the boundary ridge ( 22 ) is provided on the insulating glass component ( 2 ).  
     
     
         3 . The wing according to  claim 1 , characterized in that the boundary ridge ( 22 ) protrudes upward from the perimeter surface ( 6 ) of the rabbet ( 3 ).  
     
     
         4 . The wing according to one of the claims  1  through  3 , characterized in that the boundary ridge ( 22 ) ends at a distance from the front of the insulating glass component ( 2 ) or the perimeter surface ( 6 ) of the rabbet ( 3 ).  
     
     
         5 . The wing according to one of the claims  1  through  4 , characterized in that the boundary ridge ( 22 ) is severable.  
     
     
         6 . The wing according to one of the claims  1  through  5 , characterized in that the perimeter surface ( 6 ) of the rabbet ( 3 ) forms a recessed groove on the side of the boundary ridge ( 22 ) that faces the rabbet surface.  
     
     
         7 . A method of manufacturing a wing for a window or a door according to  claim 1 , the insulating glass component ( 2 ) being inserted into the rabbet ( 3 ) of the horizontally positioned profile frame ( 1 ) and being fastened therein by bonding, characterized in that the insulating glass component ( 2 ) is first inserted into the rabbet ( 3 ) of the profile frame ( 1 ) and that the perimeter slot ( 8 ) between the end surfaces ( 5 ) of the insulating glass component ( 2 ) and the perimeter surface ( 6 ) of the rabbet ( 3 ) located opposite said end surfaces ( 5 ) is next filled with an elastic adhesive, at least in perimeter areas, as far as the boundary ridge ( 22 ).  
     
     
         8 . The method of  claim 7 , characterized in that the adhesive is injected or forced under pressure into the perimeter slot.  
     
     
         9 . The method according to  claim 7  or  8 , characterized in that a hot melt adhesive is employed as an elastic adhesive.  
     
     
         10 . The method according to  claim 7  or  8 , characterized in that a reactive adhesive, preferably a polyurethane-based, epoxide-based or (meth)acrylatebased two-component adhesive, is employed as an elastic adhesive.

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