DK145511B - FRAMES FOR WINDOWS, DOORS OR FACED PARTS - Google Patents

FRAMES FOR WINDOWS, DOORS OR FACED PARTS Download PDF

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Publication number
DK145511B
DK145511B DK39774A DK39774A DK145511B DK 145511 B DK145511 B DK 145511B DK 39774 A DK39774 A DK 39774A DK 39774 A DK39774 A DK 39774A DK 145511 B DK145511 B DK 145511B
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DK
Denmark
Prior art keywords
frame
frames
doors
windows
insulating body
Prior art date
Application number
DK39774A
Other languages
Danish (da)
Other versions
DK145511C (en
Inventor
Gerhard Doering
Original Assignee
Erbsloeh Julius & August
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Priority claimed from DE2033442A external-priority patent/DE2033442C3/en
Priority claimed from DK330871A external-priority patent/DK145584C/en
Application filed by Erbsloeh Julius & August filed Critical Erbsloeh Julius & August
Priority to DK39774A priority Critical patent/DK145511C/en
Publication of DK145511B publication Critical patent/DK145511B/en
Application granted granted Critical
Publication of DK145511C publication Critical patent/DK145511C/en

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Description

i 145511in 145511

Opfindelsen angår en ramme til vinduer, døre eller facadeelementer, hvilken ramme består af to med indbyrdes afstand placerede rammehalvdele af metalprofiler, navnlig af letmetal, som er indbyrdes forbundet ved mindst ét isoleringsle-5 gerne, navnlig af opskummeligt formstof, hvorved rammehalvdelene har underskårne noter til modtagelse af svalehaleformede fremspring på isoleringslegemet.BACKGROUND OF THE INVENTION 1. Field of the Invention The invention relates to a frame for windows, doors or facade elements, which consists of two spaced apart halves of metal profiles, in particular of light metal, which are interconnected by at least one insulating layer, in particular of foamable plastic, the frame halves having cut grooves. for receiving dovetail-shaped projections on the insulating body.

Der kendes eller har været foreslået forskellige fremgangsmåder til tilvejebringelse af isoleringslegemet mellem ram-10 mehalvdelene. Ved ét system bliver det endnu flydende formstof udstøbt i hulrummet af et til at begynde med i ét stykke udført profil, hvis vægge, efter at formstoffet er stivnet, bliver gennemskåret og adskilt ved spånfjernende bearbejdning. Man har imidlertid også foreslået at indspænde de to 15 rammehalvdele med indbyrdes afstand i en form, som efter stivnen af det indfyldte formstof atter fjernes.Various methods are known or proposed for providing the insulating body between the frame halves. In one system, the still liquid resin is molded into the cavity by a profile made initially in one piece, the walls of which, after the resin is solidified, are cut and separated by chip removing machining. However, it has also been proposed to clamp the two frame halves at a distance, in a shape which is removed again after the stiffness of the filled plastic.

I begge disse tilfælde må isoleringslegemet ved siden af sin isolationsegenskab også tjene en støttefunktion. Jo mere elastisk eftergivende isoleringslegemets materiale er, des min-20 dre stiv er den sammensatte profilramme. Dette viser sig især at være uheldigt, når rammen udsættes for ydre mekaniske påvirkninger, f.eks. når den skal påcllpses glaslister på de enkelte rammehalvdele, eller der påføres andre spændingskræfter i 25 Opfindelsens formål er derfor at stabilisere de efter ovennævnte metoder fremstillede sammensatte profilrammer, uden at deres isolationsevne derved nedsættes.In both of these cases, the insulating body, in addition to its insulating property, must also serve a supporting function. The more resiliently resilient the insulating body material, the less rigid the composite profile frame. This is found to be particularly unfortunate when the frame is subjected to external mechanical stresses, e.g. When it is to be applied to glass moldings on the individual frame halves, or other tension forces are applied in the object of the invention, therefore, the purpose of the invention is to stabilize the composite profile frames made according to the above methods, without thereby reducing their insulating capacity.

Dette formål opnås ifølge opfindelsen ved at tilvejebringe en underskåren not i hver rammehalvdel langs mindst én side-30 flade af den sammensatte profilramme, samt ved at anbringe et stift støtteprofil af formstof, som danner bro over isoleringslegemet og mellem rammehalvdelene.This object is achieved according to the invention by providing a cut groove in each frame half along at least one side surface of the composite profile frame, and by placing a rigid support profile of resin which bridges the insulating body and between the frame halves.

Derved bliver det muligt at formindske eller helt ophæve den relative bevægelighed mellem de metalliske rammedele af den 145511 2 sammensatte profilramme, når man f.eks. ved påclipsning og indspænding af en glasliste på den ene rammehalvdel udøver en trækkraft på isoleringslegemet under fremkaldelse af mekaniske spændinger, samtidig med at den ved isoleringslegemet 5 opnåede isolationsevne bevares på grund af formstofmateri-alets isolerende og stabiliserende egenskaber.This makes it possible to reduce or completely eliminate the relative mobility between the metallic frame parts of the composite profile frame, when e.g. by clipping and clamping a glass molding on one frame half exerts a tensile force on the insulating body while eliciting mechanical stresses, while retaining the insulating power obtained by the insulating body 5 due to the insulating and stabilizing properties of the plastics material.

Opfindelsen vil blive nærmere forklaret under henvisning til tegningen, der skematisk viser eksempler på rammeprofiler ifølge opfindelsen, og hvor 10 fig. 1 viser et rammeprofil i tværsnit og fig. 2 ligeledes i tværsnit to sammensatte profilrammer til dannelse af henholdsvis fløjramme og blændramme.The invention will be explained in more detail with reference to the drawing which schematically shows examples of frame profiles according to the invention, in which 10 fig. 1 shows a frame profile in cross section and FIG. 2 also in cross section two composite profile frames for forming wing frame and aperture frame respectively.

En som en sammenhængende enhed fremstillet profilramme 1, der f.eks. kan være fremstillet af letmetal ved strengpres-15 ning, består af de to rammehalvdele 2 og 3, der er indbyrdes forbundet ved vægge 6, som kan fjernes. Disse bortfjernelige vægge 5 lukker til siderne af for et mellem rammehalvdelene 2,3 værende mellemrum eller hulrum 4 med styrerender 5, i hvilke senere et isoleringslegeme 11 forankres (se fig. 2).A profile frame 1 manufactured as a continuous unit, e.g. may be made of light metal by string pressing, consists of the two frame halves 2 and 3, which are interconnected by walls 6, which can be removed. These removable walls 5 close to the sides of a gap or cavity 4 with guide ends 5 between the frame halves 2,3, in which later an insulating body 11 is anchored (see Fig. 2).

20 Ved kanterne af de bortfjernelige vægge 6 forefindes der gennemgående svækningskærve 7, som fortrinsvis er indskåret i væggen fra siden. Det er let at forestille sig, at væggene 6 ved forholdsvis ringe kraft kan rives løs henholdsvis opefter og nedefter. Forinden disse arbejder imidlertid foreta-25 ges, bliver der i mellemrummet 4 indført et formstof i flydende tilstand, der enten stivner som en blok eller antager fast form ved opskumning. Det således dannede isoleringslegeme 11 holder de to rammehalvdele 2 og 3 sammen, når væggene 6 fjernes som forklaret. Fremfor alt kommer det ved 30 fjernelsen af væggene an på, at isoleringslegemets overflade ikke bliver beskadiget.At the edges of the removable walls 6, there are continuous weakening joints 7, which are preferably cut into the side wall. It is easy to imagine that the walls 6 can be detached upwards and downwards with relatively little force, respectively. However, before these operations are performed, a liquid-state resin is introduced into the gap 4 which either solidifies as a block or assumes solid form upon foaming. The insulating body 11 thus formed holds the two frame halves 2 and 3 together when the walls 6 are removed as explained. Above all, upon removal of the walls, the surface of the insulating body is not damaged.

Til begge sider for en væg 6 forefindes der styrerender 8,9 i de to rammehalvdele 2,3, som tjener til at optage et støtteprofil 10 henholdsvis et tætningsprofil 12 (se fig. 2).On both sides of a wall 6, guide ends 8,9 are provided in the two frame halves 2,3 which serve to receive a support profile 10 and a sealing profile 12, respectively (see Figure 2).

DK39774A 1970-07-06 1974-01-25 FRAMES FOR WINDOWS, DOORS OR FACED PARTS DK145511C (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
DK39774A DK145511C (en) 1970-07-06 1974-01-25 FRAMES FOR WINDOWS, DOORS OR FACED PARTS

Applications Claiming Priority (6)

Application Number Priority Date Filing Date Title
DE2033442 1970-07-06
DE2033442A DE2033442C3 (en) 1970-07-06 1970-07-06 Composite profile frame for windows, doors or the like
DK330871 1971-07-05
DK330871A DK145584C (en) 1970-07-06 1971-07-05 COMPOSED PROFILE FRAME
DK39774 1974-01-25
DK39774A DK145511C (en) 1970-07-06 1974-01-25 FRAMES FOR WINDOWS, DOORS OR FACED PARTS

Publications (2)

Publication Number Publication Date
DK145511B true DK145511B (en) 1982-11-29
DK145511C DK145511C (en) 1983-05-02

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Family Applications (1)

Application Number Title Priority Date Filing Date
DK39774A DK145511C (en) 1970-07-06 1974-01-25 FRAMES FOR WINDOWS, DOORS OR FACED PARTS

Country Status (1)

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DK (1) DK145511C (en)

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Publication number Publication date
DK145511C (en) 1983-05-02

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