EP1795687A1 - Garniture d'étanchéité - Google Patents

Garniture d'étanchéité Download PDF

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Publication number
EP1795687A1
EP1795687A1 EP05026936A EP05026936A EP1795687A1 EP 1795687 A1 EP1795687 A1 EP 1795687A1 EP 05026936 A EP05026936 A EP 05026936A EP 05026936 A EP05026936 A EP 05026936A EP 1795687 A1 EP1795687 A1 EP 1795687A1
Authority
EP
European Patent Office
Prior art keywords
sealing device
sealing strip
sealing
frame
strip
Prior art date
Legal status (The legal status 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 status listed.)
Withdrawn
Application number
EP05026936A
Other languages
German (de)
English (en)
Inventor
Hans-Dieter Niemann
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Sylid Systemlogistik und Industriedienstleistung GmbH
Original Assignee
Sylid Systemlogistik und Industriedienstleistung GmbH
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
Application filed by Sylid Systemlogistik und Industriedienstleistung GmbH filed Critical Sylid Systemlogistik und Industriedienstleistung GmbH
Priority to EP05026936A priority Critical patent/EP1795687A1/fr
Priority to EP06013598A priority patent/EP1741867A1/fr
Publication of EP1795687A1 publication Critical patent/EP1795687A1/fr
Withdrawn legal-status Critical Current

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    • EFIXED CONSTRUCTIONS
    • E06DOORS, WINDOWS, SHUTTERS, OR ROLLER BLINDS IN GENERAL; LADDERS
    • E06BFIXED OR MOVABLE CLOSURES FOR OPENINGS IN BUILDINGS, VEHICLES, FENCES OR LIKE ENCLOSURES IN GENERAL, e.g. DOORS, WINDOWS, BLINDS, GATES
    • E06B1/00Border constructions of openings in walls, floors, or ceilings; Frames to be rigidly mounted in such openings
    • E06B1/62Tightening or covering joints between the border of openings and the frame or between contiguous frames
    • EFIXED CONSTRUCTIONS
    • E06DOORS, WINDOWS, SHUTTERS, OR ROLLER BLINDS IN GENERAL; LADDERS
    • E06BFIXED OR MOVABLE CLOSURES FOR OPENINGS IN BUILDINGS, VEHICLES, FENCES OR LIKE ENCLOSURES IN GENERAL, e.g. DOORS, WINDOWS, BLINDS, GATES
    • E06B1/00Border constructions of openings in walls, floors, or ceilings; Frames to be rigidly mounted in such openings
    • E06B1/62Tightening or covering joints between the border of openings and the frame or between contiguous frames
    • E06B2001/628Separate flexible joint covering strips; Flashings

Definitions

  • the application relates to a sealing device with a sealing strip for sealing bridging a gap between an insertable into a soffit of a building frame and the soffit, wherein the sealing strip along a first in the longitudinal extent thereof extending edge region is connected to the soffit and along an opposite second edge region Einsteckprofil for connecting to the frame, which Einsteckprofil comprises a plug-in part for latching insertion in a correspondingly formed Einstecknut on the frame.
  • sealing device For reasons of thermal protection, it is necessary to seal a frame inserted in a soffit of a building, for example a window or door frame, against the soffit.
  • the aforementioned sealing device is used.
  • Such sealing devices are arranged circumferentially around the frame and connected on the one hand with the frame and the other with the reveal, so that the gap formed between the frame and soffit is covered by the sealing device and thus sealed.
  • Sealing devices for sealing bridging a gap between a usable in a soffit of a building frame and the soffit have long been known.
  • the DE 297 15 660 U1 and DE 296 05 456 U1 Such sealing devices.
  • a sealing device which is attached by means of a Einsteckprofils the frame is made of DE 198 01 865 A1 known.
  • Another sealing device describes the DE 201 17 273 U1 ,
  • a generic sealing device from which the invention proceeds, is in the EP 1 471 202 A2 described. Again, the determination of the sealing means on the frame by means of a male part by insertion into a designated circumferential groove on the frame and the attachment to the soffit by means of an adhesive strip, wherein both the adhesive strip and the male member are respectively formed at opposite edge regions of the sealing strip.
  • the invention is therefore an object of the invention to provide a sealing device of the type mentioned, which always ensures a secure connection between the sealing strip and the Einsteckprofil with technically simple means and is still free from the problems known in the art.
  • the essence of the invention is in the preparation of the desired connection between the sealing strip and the male profile, exploiting the temperature dependence of the physical states of the parts so that an adhesive-free connection can be made by appropriate heat utilization.
  • One way of producing a compound according to the invention is that the sealing strip is welded to the male profile.
  • sealing strip is welded to the plug-in part opposite side of the Einsteckprofils with the male profile.
  • sealing strip is welded to the male profile on the side of the male with the male profile.
  • welding operations can be carried out on both sides.
  • a further development of the invention provides that the male profile is an extrusion and has been connected during or after its extrusion with the sealing strip.
  • the receiving part has a groove for receiving a bead for clamping adhesion between the groove and bead arranged sealing strip.
  • the sealing strip after the extrusion of the Einsteckprofils, but before the extrusion of the bead in the groove can be introduced.
  • the male profile is made in one piece with the male and female parts made of a thermoplastic or rubber-like material.
  • the male part protrudes at right angles from one side of the sealing strip with a flat position of the sealing strip.
  • the male part is opposite the sealing strip at right angles from one side of the same and can therefore be used usually on the frame of windows or doors existingschreibstecksein and secured there latching.
  • a development of the invention provides that the first edge region has an adhesive strip for connection to the soffit or can be connected to the soffit via a molding compound applied to the soffit.
  • a development of the invention provides that the first edge region is formed folded double-folded and the adhesive strip is applied in the region of the double-layer Umfalzung.
  • the sealing strip which lies twice at this edge region as a result of the fold-over is substantially stiffer and can therefore be permanently pressed against the course of the reveal by plastic deformation and adhesively bonded here by means of the adhesive strip or the molding compound.
  • the molding compound is arranged in a tube.
  • the sealing strip may consist of a multilayer composite web, which is always waterproof and windproof, but optionally vapor diffusion open or vapor diffusion tight.
  • the composite web has a middle layer of a compact film which is arranged between two layers of nonwovens based on thermoplastic materials and adheres firmly to them.
  • this middle layer gives the optionally vapor-diffusion-open or vapor-diffusion-proof property with simultaneous water and windproofness.
  • the composite web is at least partially equipped with a plastically deformable layer. This makes it particularly easy adjust the course of the soffit and / or the frame and remains in the once given form permanently.
  • the plastically deformable layer is formed from a plastically deformable metal in the form of a film, a fabric, Geleges, knitted fabric, wires or the like.
  • the plastically deformable layer consists of a subsequently smooth-rolled expanded metal. This makes it possible to follow even better unevenness on the soffit, without having to spend large pressure forces for it. Furthermore, due to the "fixed" crossing points, large mesh sizes are possible. This leads to a large weight reduction and also to a reduction in material costs. Finally, the subsequent smoothing ensures that the metal surfaces of the grid no longer have sharp edges that could lead to the destruction of the composite web layers.
  • Another special feature of the expanded metal is that the plastically deformable expanded metal adapts almost 100% of the masonry when it is pressed.
  • the plastically deformable layer is formed from a plastically deformable plastic in the form of a film, a sheet or plastic wires. It is also possible that the plastically deformable layer is applied over the entire surface of a middle layer covering layer of a non-woven.
  • the sealing of an element to the outside should be windproof and impact-proof but open to diffusion, airtight or diffusion-tight on the inside become. It is therefore advantageous if a diffusion-open outer sealing strip is arranged at the second edge region. So it can be used for FMD seals.
  • a further development of the invention provides that the insertion part is hook-shaped.
  • the end portion of the hook-shaped plug-in part is formed by a clamping foot, which may consist of hard plastic or soft plastic. Therefore, the clamp foot can either support strong rest, or additionally also have a sealing effect.
  • a further advantageous embodiment is given by the fact that the end portion of the hook-shaped male part is provided with ribs directed to the insertion. This prevents any possible slipping out of the clamping foot from the frame groove, which is e.g. can occur if there is no undercut in the groove. The ribs can then serve a certain catch.
  • the ribs have different heights alternately. It is possible that when slipping out tilt the long ribs and press the short ribs against the wall of the groove. What prevents slipping out of the insertion profile. Finally, the ends of the ribs could be jagged.
  • the male profile is provided with a cleaning edge that protrudes slightly above the frame edge in the assembled state. Since this cleaning edge protrudes slightly beyond the frame edge, it forms a kind of "stop" for the plasterer. Furthermore, the cleaning edge ensures a precise solder and flush flush finish.
  • the sealing device often has a plastically deformable layer of a metallic wire mesh, the ends of which may protrude sharp edges in the edge region of the sealing strip, it is advantageous to reduce the risk of injury of the assembly personnel when the male part has a U-shaped receiving part viewed in cross section, in which the edge region of the sealing strip is received under edge-side enclosure, or in cross-section L-shaped, wherein the shorter leg rests against the second edge.
  • the plastically deformable layer of the composite web can moreover be covered on the outside with a cover layer made of a nonwoven based on thermoplastic materials and be adhesively bonded to it.
  • the sealing strip according to the invention consequently comprises a composite web of a total of five layers, namely one arranged between two nonwoven layers Layer of a compact film, a plastic deformable layer which is applied to one of the nonwoven layers on the side facing away from the compact film, and on the outside of another cover layer of a nonwoven, which covers the plastically deformable layer on the outside.
  • the layers of the composite web contain thermoplastic materials, they are preferably built on the basis of equal, similar or compatible plastics for the purpose of easier receivability, which are also adhesively bonded to one another under the action of air and heat by the known methods by laminating or laminating.
  • the invention also relates to the use of above-mentioned sealing devices prior to their attachment to the soffit as a protective cover of fitting parts of the frame and sash existing and to be used unit, wherein the male part is inserted in the insertion of the frame.
  • the first edge region is detachably fastened to the casement frame.
  • this can be achieved by inserting the first edge region in the glazing rebate of the sash frame, or by releasably adhering the first edge region to the sash frame, or by fixing the first edge region to the sash frame via an adhesive tape.
  • the layers of the composite web formed from the nonwoven are preferably formed from nonwovens of endless filaments and / or meltblown microfibers based on polyolefins, such as polyethylene or polypropylene or polyesters, for example polyethylene terephthalate PVC or a polyamide. These layers preferably have a basis weight of 10 to 50 g / m 2 , preferably 20 to 60 g / m 2 .
  • the middle layer of the composite web of a compact film is formed, for example, based on polyolefins, such as polyethylene or polypropylene or a copolyester in a thickness of 10 to 50 .mu.m, preferably about 25 .mu.m, wherein the sealing strip has a water vapor diffusion density WDD according to DIN EN ISO 572 of 500 to 2000 g / m 2 24h, preferably about 1200 g / m 2 24h, which gives the composite web used the desired water vapor permeability.
  • polyolefins such as polyethylene or polypropylene or a copolyester in a thickness of 10 to 50 .mu.m, preferably about 25 .mu.m
  • the sealing strip has a water vapor diffusion density WDD according to DIN EN ISO 572 of 500 to 2000 g / m 2 24h, preferably about 1200 g / m 2 24h, which gives the composite web used the desired water vapor permeability.
  • the middle layer of the composite web can also be formed from a compact film based on polyolefins or an aluminum thin film in a thickness of 10 to 250 .mu.m, preferably 20 to 100 .mu.m, and the air layer thickness of the sealing strip equivalent to water vapor diffusion is then at least 2 .mu.m, preferably at least 5m and more preferably at least 50 microns, so that such a composite web for the sealing strip according to the invention is vapor diffusion tight.
  • Next measures to facilitate processing provide that the adhesive strip applied along the edge region is covered with a peelable masking tape, which is only removed immediately before the gluing of the sealing strip on the soffit.
  • a further laying ability can also be achieved by the fact that the sealing strip is wavy deformed at least partially, preferably the wave crests and wave troughs extend transversely to the longitudinal extent of the sealing strip and this give therefore increased longitudinal strain, which makes it easier to lay in corners ,
  • a sealing strip according to the invention is preferred in which the plastically deformable layer of the composite web is covered on the outside with a cover layer made of a nonwoven based on thermoplastic materials and adhesively bonded thereto.
  • All layers of the composite web are preferably formed on the basis of identical, identical or compatible with one another and adhesively bonded to one another by laminating or laminating under the action of pressure and heat.
  • the nonwoven layers of the composite web are preferably formed from nonwoven filaments of continuous filaments and / or meltblown microfibers based on polyolefins such as polyethylene or polypropylene or a polyester such as polyethylene terephthalate PVC or a polyamide.
  • the nonwoven layers of the composite web have a weight per unit area of 10 to 150 g / m 2 , preferably 20 to 60 g / m 2 .
  • the middle layer of the composite web is preferably made of a compact film based on polyolefins, such as polyethylene or polypropylene or a copolyester in a thickness of 10 to 50 microns, preferably about 25 microns, wherein the sealing strip has a water vapor diffusion current density of 500 to 2000 g / m 2 24 h, preferably about 1200 g / m 2 24 h.
  • polyolefins such as polyethylene or polypropylene or a copolyester in a thickness of 10 to 50 microns, preferably about 25 microns
  • the sealing strip has a water vapor diffusion current density of 500 to 2000 g / m 2 24 h, preferably about 1200 g / m 2 24 h.
  • the middle layer of the composite web is formed of a compact film based on polyolefins or an aluminum thin film in a thickness of 10 to 250 microns, and the equivalent to water vapor diffusion air layer thickness of the sealing strip is at least 2 microns, preferably at least 50 microns.
  • the adhesive strip applied along the edge region of the sealing strip is preferably covered with a peelable masking tape.
  • FIGS. 1 and 2 show a frame of a window inserted into a soffit 4 of a building, wherein FIG 2 shows the plan view and FIG. 1 shows the section according to arrows zz in FIG.
  • the frame of the window consists of a frame 2 and in a conventional manner movable hinged thereto sash 3.
  • a circumferential gap 40 is formed in installation position of the window, which must be sealed.
  • a sealing strip 1 is used, which is arranged circumferentially around the frame 2 and on the one hand with frame 2 and on the other hand connected to the reveal 4, so that the gap 40 covers and is sealed.
  • the sealing strip 1 is formed by means of a insertion profile 14 arranged along an edge region thereof in a correspondingly formed circumferential groove 20 of the window frame. 2 anchored and secured by insertion, while the opposite edge region of the sealing strip 1 karts an adhesive strip 13 is attached to the soffit 4.
  • the sealing strip 1 shown in Fig. 4a is formed by a composite web 10, the more detailed structure is illustrated by the enlarged view according to detail X in Figure 3.
  • a three-layer composite comprising an outer layer 100, for example, of a spunbonded non-woven polypropylene filament having a basis weight of preferably 40 to 60 g / m 2 , on which a membrane 101 is arranged as a middle layer of a polypropylene film and in turn one referred to as the inner layer 102
  • Layer of a protective fleece based on polypropylene fibers having a basis weight of preferably only 10 to 20 g / m 2 is applied.
  • This three-layer base composite of the layers 100,101,102 already ensures the desired waterproofness and windproofness of the composite web 10, depending on the desired property of the composite web 10 serving as a membrane layer 101 is formed of a polypropylene film either open to vapor diffusion or vapor diffusion tight, which ultimately also the composite web 10 the appropriate property.
  • a plastically deformable layer 103 for example made of a wire mesh made of soft annealed copper or aluminum, is applied on top of the inner layer 102 made of a polypropylene nonwoven serving as a protective layer.
  • the inner layer 102 serving as a protective layer protects the sensitive membrane 101 from direct contact with the plastically deformable layer 103, so as to prevent possible damage by friction or puncturing of the membrane.
  • the composite web 10 has a further nonwoven layer 104, which covers the plastically deformable layer 103 on the outside and is formed, for example, from polypropylene fibers having a basis weight of preferably 20 to 40 g / m 2 .
  • All five aforementioned layers 100,101,102,103,104 are adherent to each other, for example, connected by a laminating process.
  • the embedded plastically deformable layer 103 of, for example, a wire mesh formed from a thus formed composite web 10 sealing strip 1 can be easily adapted to the course of the frame 2 and / or the soffit 4 and remains permanently in the once predetermined shape.
  • Particularly suitable is an expanded metal, which has subsequently been smoothed, so that no sharp edges can protrude more.
  • an adhesive strip 13 for example based on a butyl rubber is arranged on a first edge region 10a of the sealing strip 1, which when not in use until just before installation of the sealing strip by means of a removable cover strip 13a Example based on a plastic film or a siliconized paper is covered.
  • the sealing strip 1 as shown in Figure 1, permanently adhered to the soffit 4.
  • the sealing strip 1 is applied along the longitudinal axis of the sealing strip 1 extending into the plane of the drawing in FIG. 4a over the entire edge region 10a of the sealing strip 1 extending in this longitudinal extent. This longitudinal extent can be seen from FIG. 2 on the basis of the exemplary axis L.
  • the already mentioned insertion profile 14 is arranged, which serves the attachment of the sealing strip 1 on the frame 2.
  • the insertion part 14 comprises an insertion part 140 of, for example, a mushroom-like cross-section, which can be latched into the correspondingly formed groove 20 on the blind frame 2 and, moreover, comprises an integrally formed on the insertion part 140 receiving part 141, which in the representation of FIG. Viewed 4a seen cross section has an approximately U-shaped configuration, wherein the opening of the U-shaped cross-section is formed approximately at right angles to the male member 140.
  • the U-shape of the receiving part 141 of the Einsteckprofils 14 serves to receive the edge portion 10b of the sealing strip 1 under edge-side enclosure, d. H. the edge region of the sealing strip 10b is inserted into the receiving part 141 of the insertion profile 14 along the longitudinal axis of the sealing strip 1 and fastened in this position.
  • edge-side enclosure of the edge portion 10b a relation to the prior art significantly enlarged contact surface between the male profile 14 and the composite web 10 of the sealing strip 1, so that the effected here along the contact surfaces connection between the two parts considerably firmer and thus more durable can be performed ,
  • the male profile 14 with its U-shaped receiving part 141, viewed in cross-section, in which the edge region 10b of the sealing strip 1 is accommodated, also offers greater security against damage during assembly of the window frame 2.
  • the usual assembly sequence for mounting a window within a soffit 4 provides that the frame 2 is first arranged in the soffit 4, wherein already at this time the sealing strip 1 on one side, namely by means of its Einsteckprofils 14 on the frame 2 in the in FIG. 1 apparent manner is attached, however, the adhesive connection to the soffit 4 is not yet made. Then, the frame 2 is prefixed within the reveal 4 by setting a desired gap dimension of the circumferential gap 40 by means of wedges, such a wedge is schematically indicated by dashed lines in Figure 1 with reference numeral K.
  • the sealing strip 1 is finally attached by gluing by means of the adhesive strip 13 to the soffit 4 to complete the sealing of the gap 40.
  • the male part 140 of the Einsteckprofils 14 extends in the flat position of the sealing strip 1 shown in Fig.4a approximately at right angles from one side of the composite web 10 of the sealing strip 1 projecting.
  • the adhesive strip 13 may be arranged along the opposite edge region 10a of the sealing strip 1 on the surface opposite the insertion part 140 of the composite web 10, as shown in Fig.4a, or on the same surface as the male part 140th
  • FIG. 4 b An embodiment modified from the exemplary embodiment in FIG. 4 a can be seen from FIG. 4 b, in which the same parts have the same reference numerals and will not be explained again below.
  • the edge region 10a of the sealing strip 1 which is equipped with the adhesive strip 13 for connection to the reveal 4, is folded over and therefore the edge region 10a is double-layered, ie the composite web 10 is arranged here twice over each other.
  • This Umfalzung the edge portion 10a of the sealing strip causes a stiffening thereof, so that a thus formed sealing strip 1 has a higher dimensional stability and can be processed even better.
  • the Umfalzung of the edge portion 10 a the cutting edge S of the edge region is no longer along the outer edge of the composite web 10, so that if necessary.
  • the sealing strip 1 can also be wavy at least in sections in order to give it greater deformability in the direction of its longitudinal extension, which is the laying of the sealing strip 1 in the corner area of the window frame 2 and the reveal 4 relieved.
  • the sealing strip 1 described above may also be formed of composite webs 10 having a different layer number and composition, but in any case the male profile 14 with its U-shaped receiving portion 141 and integrally molded male portion 140 provides a substantially improved connection to the composite web 10 and greater protection against injury to a mechanic on the one hand as well as the composite web during assembly on the other.
  • the male profile 14 is made to provide a preferably integral formation of male member 140 and female member 141 made of a suitable thermoplastic or rubber-like material, for example, this is called the training of PM-MA.
  • FIGS. 5a and 5b differ from those described above in the first place Line through the shape of the male part 140.
  • the simplest embodiment of a seal is also shown in Fig. 5a.
  • the receiving part 141 consists only of a rectangular in cross section strips whose one edge terminates with the first edge portion 10b. But it is also possible, which is not shown here, the receiving part 141 seen in cross-section L-shaped design. In this case, the shorter leg serves to cover the second edge 10b in order to achieve an effect at least similar to the insertion profile 14 described above.
  • FIGS. 6a and 6b a possibility for producing the connection between the insertion profile 14 and the sealing strip 1 is shown.
  • FIG. 6a While only a first welding device, which is indicated by the arrow A, is used in FIG. 6a in order to establish a connection, for example by means of ultrasonic welding, according to FIG. 6b, in addition to the first welding device A, a second welding device B is also used the first welding device A opposite side is arranged. Also in Fig.6b, preferably the ultrasonic welding can be applied.
  • the insertion profile 14 is produced by means of an extruder and a tool and fed directly to the plug-in profile via a feed device Z in the vicinity of the tool of the sealing strip 1.
  • the distance of leaving the Einsteckprofils 14 from the tool to the merging of Einsteckprofil 14 and sealing strip 1 depends on the necessary for a sufficiently strong connection temperature of the freshly extruded Einsteckprofils 14 from. This temperature should have about the softening temperature of the sealing strip 1 then, so this connection also can be produced.
  • the entire sealing device can then also be guided by corresponding pressurizing devices, such as, for example, a pair of rollers.
  • the male profile 14 mainly consists of the receiving part 141, which is rectangular in cross-section as in the other embodiments.
  • the insertion part 140 is hook-shaped in the embodiments shown in the above figures.
  • This plug-in part 140 consists essentially of hard plastic with anextrudiertm sealing material. It is provided that the arranged at the receiving part 141 and facing the insertion groove 20 is provided with a seal 22.
  • the end portion of the hook-shaped insertion part 14 is in this case formed by a clamping foot 23, which may consist of hard plastic or else of soft plastic. If it is made of soft plastic, it serves as a further seal.
  • the receiving part 141 can also be produced with two different plastics.
  • the portion of the receiving part 141 located below the hook end is made of soft plastic W and serves for welding.
  • ribs 29 are attached according to Figures 16a-c at the clamping foot 23. These ribs 29 have different lengths. When slipping out tilt the long ribs 29 and press the short ribs 29 against the wall of the Einstecknut 20 and thus prevent slipping out of the Einsteckprofils 14. A further improvement could take place, that, as shown in Fig. 16b, the ends of the ribs 29 are serrated.
  • the sealing strip 1 may also be welded to the male profile 14.
  • the Einsteckprofil 14 completely made of hard plastic or partially made of soft plastic W. If the Einsteckprofil 14 consists of half soft plastic W can be very easily dowelled or screwed through this area, see Fig.9.
  • the sealing of an element to the outside should be windproof and impact-proof, but non-permeable.
  • this seal should be made airtight or diffusion-tight to the inside.
  • Fig.10 a solution for this task is shown. In each case two different FMD seals are used.
  • an adhesive strip 13 may be present at the edge region.
  • a sealant is used, which is present in a filled tube 28 which may be closed at the ends and provided with a tear seam. It may be welded or glued to the sealing strip 1. If the element is placed in the soffit 4, you can open the hose 28 by pulling or the like at the tear seam and the sealant exits and the sealing strip 1 is securely and tightly glued to the soffit 4. This is shown in FIG.
  • a so-called plaster edge 27 may be attached to the male profile 14. This is shown in FIGS. 12 and 13.
  • the cleaning edge 27 consists of a directed at the end of the receiving part 141 in the direction of the frame 2 projection which bears firmly against the frame.
  • the cleaning edge consists of an extension of the receiving part 141, which projects beyond the edge of the frame 2 or the reveal 4.
  • a sealing device of the above type before its attachment to the soffit 4 also serve as a protective cover of fitting parts of a frame 2 to be used.
  • the plug-in part 140 is then inserted into the insertion groove 20 of the frame 2. So that then the fitting parts can be protected for example, the transport, the edge portion 10a is releasably attached to the sash frame 3.
  • first edge region 10a is inserted in the glazing rebate of the casement 3. But this first edge region 10a can also be releasably adhered to the sash 3. Whereby one possibility can consist of an adhesion band.
  • Another assembly aid which is to color the sealing device, in particular the sealing strip 1 blue or red.
  • a blue-colored sealing strip 1 should then be directed outwards to the environment, while the red-colored then should be directed inward to the warmer inside.

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  • Engineering & Computer Science (AREA)
  • Civil Engineering (AREA)
  • Structural Engineering (AREA)
  • Building Environments (AREA)
EP05026936A 2005-06-30 2005-12-09 Garniture d'étanchéité Withdrawn EP1795687A1 (fr)

Priority Applications (2)

Application Number Priority Date Filing Date Title
EP05026936A EP1795687A1 (fr) 2005-12-09 2005-12-09 Garniture d'étanchéité
EP06013598A EP1741867A1 (fr) 2005-06-30 2006-06-30 Garniture d'étanchéité

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EP05026936A EP1795687A1 (fr) 2005-12-09 2005-12-09 Garniture d'étanchéité

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EP1795687A1 true EP1795687A1 (fr) 2007-06-13

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
AT518553B1 (de) * 2016-10-31 2017-11-15 Müller Günther Dichtprofil zum abdichten eines fenster- oder türstocks im bereich einer fensterbank

Citations (10)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP0575834A1 (fr) * 1992-06-24 1993-12-29 Saar-Gummiwerk GmbH Procédé pour la fabrication des bandes de toiture avec des feuilles élastomériques et une bande profilée en élastomère
DE29508614U1 (de) * 1994-06-13 1995-10-12 Wolff Ehrhard Dichtung für die Fuge zwischen Fenster- bzw. Türen-Blendrahmen und Außenmauerwerk von Gebäuden
DE29605456U1 (de) 1996-03-25 1996-07-11 Illbruck Bau Prod Gmbh Co Kg Bandartiges Verbindungselement
DE29715660U1 (de) 1997-09-01 1999-05-27 Illbruck Bau Technik Gmbh & Co Bandartiges Verbindungselement
DE19801865A1 (de) 1998-01-20 1999-07-22 Reichstadt Hans Udo Dichtleiste für Fenster
DE20117273U1 (de) 2001-08-02 2002-01-10 Kronenberg Bernd Dichtstreifen zum abdichtenden Überbrücken einer Fuge zwischen einem in eine Laibung eines Gebäudes eingesetzten Rahmen und der Laibung
DE20300389U1 (de) * 2003-01-10 2003-04-03 Schueco Int Kg Dichtungsbahn
DE202004006520U1 (de) * 2004-04-24 2004-07-01 "Dichtec" Gesellschaft Zur Herstellung Von Dichtungsmaterialien Mbh Dichtstreifen beziehungsweise Abdichtungsanordnung für die Abdichtung zwischen einem Fenster- oder Türrahmen und der Leibung einer Öffnung in einer Gebäudewand
EP1471202A2 (fr) 2003-04-25 2004-10-27 Profine GmbH Joint d'étanchéité pour sceller une fente entre un cadre et le tableau de la baie
WO2005010308A1 (fr) * 2003-07-24 2005-02-03 Rpm Ireland Ip Limited Element de liaison de type bande

Patent Citations (10)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP0575834A1 (fr) * 1992-06-24 1993-12-29 Saar-Gummiwerk GmbH Procédé pour la fabrication des bandes de toiture avec des feuilles élastomériques et une bande profilée en élastomère
DE29508614U1 (de) * 1994-06-13 1995-10-12 Wolff Ehrhard Dichtung für die Fuge zwischen Fenster- bzw. Türen-Blendrahmen und Außenmauerwerk von Gebäuden
DE29605456U1 (de) 1996-03-25 1996-07-11 Illbruck Bau Prod Gmbh Co Kg Bandartiges Verbindungselement
DE29715660U1 (de) 1997-09-01 1999-05-27 Illbruck Bau Technik Gmbh & Co Bandartiges Verbindungselement
DE19801865A1 (de) 1998-01-20 1999-07-22 Reichstadt Hans Udo Dichtleiste für Fenster
DE20117273U1 (de) 2001-08-02 2002-01-10 Kronenberg Bernd Dichtstreifen zum abdichtenden Überbrücken einer Fuge zwischen einem in eine Laibung eines Gebäudes eingesetzten Rahmen und der Laibung
DE20300389U1 (de) * 2003-01-10 2003-04-03 Schueco Int Kg Dichtungsbahn
EP1471202A2 (fr) 2003-04-25 2004-10-27 Profine GmbH Joint d'étanchéité pour sceller une fente entre un cadre et le tableau de la baie
WO2005010308A1 (fr) * 2003-07-24 2005-02-03 Rpm Ireland Ip Limited Element de liaison de type bande
DE202004006520U1 (de) * 2004-04-24 2004-07-01 "Dichtec" Gesellschaft Zur Herstellung Von Dichtungsmaterialien Mbh Dichtstreifen beziehungsweise Abdichtungsanordnung für die Abdichtung zwischen einem Fenster- oder Türrahmen und der Leibung einer Öffnung in einer Gebäudewand

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
AT518553B1 (de) * 2016-10-31 2017-11-15 Müller Günther Dichtprofil zum abdichten eines fenster- oder türstocks im bereich einer fensterbank
AT518553A4 (de) * 2016-10-31 2017-11-15 Müller Günther Dichtprofil zum abdichten eines fenster- oder türstocks im bereich einer fensterbank

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