EP1649124A1 - Element de liaison de type bande - Google Patents

Element de liaison de type bande

Info

Publication number
EP1649124A1
EP1649124A1 EP04766258A EP04766258A EP1649124A1 EP 1649124 A1 EP1649124 A1 EP 1649124A1 EP 04766258 A EP04766258 A EP 04766258A EP 04766258 A EP04766258 A EP 04766258A EP 1649124 A1 EP1649124 A1 EP 1649124A1
Authority
EP
European Patent Office
Prior art keywords
connecting element
layer
sections
film
stretch film
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.)
Granted
Application number
EP04766258A
Other languages
German (de)
English (en)
Other versions
EP1649124B1 (fr
Inventor
Thomas Thiede
Jürgen Hess
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.)
RPM Ireland IP Ltd
Original Assignee
RPM Ireland IP Ltd
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 DE102004034601A external-priority patent/DE102004034601A1/de
Application filed by RPM Ireland IP Ltd filed Critical RPM Ireland IP Ltd
Priority to PL04766258T priority Critical patent/PL1649124T3/pl
Publication of EP1649124A1 publication Critical patent/EP1649124A1/fr
Application granted granted Critical
Publication of EP1649124B1 publication Critical patent/EP1649124B1/fr
Not-in-force legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Classifications

    • 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 invention relates first to a band-like Neritatiselement between a component, such as a frame member, for example.
  • a component such as a frame member, for example.
  • a window frame, and masonry wherein the Neritatiselement is adhered to the Eahmenbauteil and / or masonry, further comprising the Neritatiselement has a releasable Nernostirungsreserve.
  • a band-like Neritatiselement of the type in question is known from DE 10108437 AI.
  • This Neritatiselement has a triggerable Nericirungsreserve, which is achieved by Umschlagfaltung, pleating or creping.
  • the multilayer binding element has a stretchable elastic stretch film in any portion of its width and subdivides another non-stretchable layer into sections with the stretchable one Stretch film is firmly connected.
  • a Neritatiselement increased use and safety value is achieved. Due to the two-layer design, a building lent advantageous solution created which Zweilagtechnik is provided at least in the region of the extension reserve.
  • the two layers in the extension area are composed of a stretchable and a non-stretchable layer, which two layers are firmly connected.
  • the desired extensibility is achieved by the selected elasticity of the first layer forming stretch film.
  • the stretchable elastic stretch film as the first layer is provided in a portion of the Neritatisele- element width, more preferably in the middle of the width extension of the connecting element, which is further rolled up for the space-saving storage and handling over the length of the connecting element or rollable.
  • the further layer is subdivided in the form of strips, wherein further these strips run in the longitudinal direction of the ribbon-like connecting element, so that the desired extensibility in the width direction of the ribbon-like connecting element is given.
  • this can be island-shaped in the expansion, according to which the band-like connecting element has an extension reserve in both the width and the longitudinal direction.
  • This integrated renewal reserve will only start at a certain threshold, which may be quite low.
  • the band-like connecting element has a basic shape which is binding in terms of packaging, etc., that is to say corresponds to the common bandwidth.
  • the elastic stretch film is created on the basis of a diffusion-tight film.
  • the sections of the further layer are in a preferred embodiment in unstretched Expansion film directly to each other, so at least over a portion of its thickness.
  • Area of occupied with the sections stretch film has arranged on sides of the sections outer layer, which is designed as a plaster composite layer.
  • a fleece preferably a Spinnvliess is provided which serves as a support for a applied plaster layer.
  • this outer layer can be drawn over the entire, subdivided layer over the whole area.
  • the outer layer also has a subdivision which makes it possible to arrest the sections of the non-stretchable layer.
  • the outer layer is preferably also divided into sections, so on in the form of strips, which isolated sections are firmly attached to those of the pad.
  • the invention also relates to a connecting element according to the features of the preamble of claim 1, wherein it is proposed to improve the extensibility that the multilayer connecting element in any case in one portion of its width has a stretchable elastic stretch film and another non-stretchable layer in the corrugated cross-section angeo rdnet and is only arrested at associated crests with the expansion sheet.
  • the further layer or also the further layers arranged one above the other are preferably pleated in the region of their connection with the stretch film or. creped and thus form an extension reserve, which further preferably acts transversely to the longitudinal extent of the connecting element. Due to the point or line-like arrest with the stretch film stretching of the located between two arrested wave crests layer sections is possible.
  • the projecting in the longitudinal direction laterally over the stretch film Sections of the further layer are preferably not corrugated and therefore not set deh-ncopy.
  • the extensibility of the inherently non-stretchable layers that they have a slit transverse to the direction of elongation.
  • the slit can be continuous, then results in the mentioned strip-shaped training.
  • it can also consist of limited slots in particular. That is, they are slots that do not take advantage of the entire width of the belt, transverse to the direction of stretch.
  • it is also preferred that such slots are arranged in rows offset from one another. It then results in a pattern, as given (default) in a ribbed expanded metal. In the stretched state results in approximately a configuration, as it corresponds to said rib expanded metal.
  • the further layer is a metal foil, more preferably an aluminum foil. It is also conceivable to form the further layer as a nonwoven layer.
  • the further layer is subdivided into sections in order to obtain the extensibility of the connecting element, in particular by knurling the area associated with the extensible stretch film or by corrugation or shrinkage. Creping.
  • a film which is overlaid with the stretch film is a vapor diffusion-open, waterproof film. Also, this vapor diffusion-open film is divided in the region of the extension reserve in sections, preferably in the form of strips.
  • the further layer is connected to the Dehniuigsfolie by means of a directly adhering to the stretch film nonwoven layer.
  • the latter is also subdivided into sections, wherein the further layer arranged on this subdivided nonwoven layer is arrested in sections subdivided with the nonwoven layer.
  • the stretch film is siliconized as a further outer layer on its outside.
  • the expansion film has passage openings over part of the area occupied by it, so that this film has a corresponding passage effect in the case of a vapor diffusion-open configuration of the band-like connection element.
  • the through-holes may be, for example, offset holes arranged circular floor plan.
  • the expansion film is also processed. is milled so that it is divided into sections. These sections are equal to the sections of the inextensible layer created by knives in the longitudinal extension of the joint to be bridged.
  • the sections of the non-stretchable layer are arranged across the through openings, so that this results in a composite. In this case, the sections of the non-stretchable layer need not necessarily completely cover the Dm-chgangsö réelleen.
  • the band-like connecting element is divided according to the embodiment of the invention into three areas. In this case, the outer regions considered in the width direction ideally have no elastic properties.
  • the central area to be arranged in the joint area between the window frame and the masonry consists of a soft-elastic foil which, with consistently low forces, covers a wide range of, for example, a wide area. 50 to 200% stretch. The restoring forces do not affect the Klebverbind Kings.
  • the soft elastic film is preferably on one side relatively antiadhesive, eg. By additional Süikonmaschine and thus prevents sticking with a local foam to be introduced in the to be bridged Bauan gleichfuge. It is further indicated a band-like connecting element, which is composed of several individual layers, in which each layer has its own functional property. The width also uses materials of different properties.
  • the space-side layer preferably consists of a plaster base, preferably a PP nonwoven fabric, the intermediate layer-depending on the field of application-from a vapor-open or relatively vapor-tight and airtight layer.
  • the connecting element is laminated or coextruded with a highly elastic plastic film whose permanent deformation after the hysteresis measurement is ideally> 15%.
  • Suitable materials of the stretch film are preferably E / SB & PE 3-layer coextruded or SBS monofilms, SEBS monofilms and metallocene films.
  • the connecting element for attachment to the window frame and / or masonry with one or two adhesive layers (eg., Butyl, hotmelt, acrylate SK) on one side or alternately laminated.
  • the layer composite is separated in the longitudinal direction of the connecting element at a distance of approximately 0.5 to 5 mm, preferably 2 mm in the mold, for example by knives, wherein the elastic stretch film is not severed or cut.
  • a defined, highly elastic region is created in the composite, even if the individual films or nonwovens have little or no elastic properties.
  • FIG. 1 is an enlarged cross-section through a band-like connecting element according to the invention, wherein the thickness of the individual layers is exaggerated for reasons of clarity, a first embodiment concerning unresolved extension reserve;
  • Fig. 2 is an enlargement of the area -H in Fig. 1;
  • Fig. 3 shows the band-like connecting element of the first embodiment in the application in connection with a frame member and a masonry
  • FIG. 5 shows the enlarged area V in FIG. 4;
  • FIG. 6 shows the band-like connecting element of the embodiment according to FIG. 4 in the case of application
  • Fig. 7 is an enlarged cross-section through the band-like connecting element in a third embodiment
  • FIG. 10 shows the band-like connecting element in an embodiment according to FIG. 9 in the case of application;
  • FIG. 11 is an enlarged cross-section through a connecting element in a further Ausf ⁇ h ungsform.
  • Fig. 12 is an enlargement of the area -XU in Fig. 11;
  • FIG. 13 shows an illustration of the extension reserve corresponding to FIG. 12;
  • FIG. 14 is a sectional view corresponding to FIG. 9, showing a connecting element in a further embodiment
  • Fig. 15 shows the enlargement of the area XV in Fig. 14;
  • 16 is a sectional view of the connecting element according to a further embodiment
  • Fig. 17 is a representation corresponding to Fig. 8, but concerning the arrangement of the connecting element according to Fig. 16;
  • Fig. 18 is a plan view of a ribbon-like fastener having transversely extending slots
  • FIG. 19 is a side view of the article of FIG. 18; FIG. and
  • FIG. 20 shows a view when the article is stretched according to FIG. 18.
  • FIGS. 1 to 3 show a first embodiment of the band-like connecting element 1 according to the invention. This is consistently two- formed with a ply, based on the width of the connecting element 1, central position. All three layers are firmly attached to each other.
  • the central, in the longitudinal extent of the connecting element strip-shaped layer is formed from a stretchable elastic stretch film 2, so for example. From an SBS monofilm, which at least in the width direction, d. H. transverse to the longitudinal extent of the stretch film 2, is stretchable.
  • the thickness of this stretch film 2 is about 30 to 100 ⁇ m, preferably 70 ⁇ m.
  • the further layer 3 firmly connected to this expansion film 2 in this exemplary embodiment is an aluminum foil 4, to form a vapor-diffusion-tight composite.
  • the thickness of the aluminum foil is about 5 to 40 ⁇ m, pre- vented to 17 ⁇ m.
  • the considered in the width direction central region of the connecting element 1 is formed as auslö sable extension reserve R, where the covered by the elastic stretch film 2 center sections of the non-elastic layers 3 and 5 are divided into sections 7.
  • This is realized by knitting the layers 3 and 5 in the longitudinal direction of the connecting element 1, wherein the free cuts formed thereby between the sections 7 extend up to the upper side of the stretch film 2 facing the further layer 3, without these being cut or severed.
  • the cut-outs 8 between the sections 7 are cut in cross-section, so that in the unstretched state of the connecting element 1 according to FIGS. sections 7, in particular the sections 7 of the further layer 3 in the formed by the knife edge tip portion of the free cuts 8 abut each other.
  • the width of the stretch film 2 is dimensioned so that it overlaps in the width direction on both sides overlapping the last section 7 of the further layer 3.
  • the further layer 3 -Alufolie 4- and the outer layer 5 -Putzverbundlage 6- are each carrier of arresting elements. These are distributed on the sides, assigned on the flat side. Thus, a strip of permanent adhesive composition 9 is arranged laterally of the stretch film 2 on the underside of the further layer 3 facing this. Butyl rubber is preferably used here.
  • the thickness of the permanent adhesive layer is between 2 and 5 mm, preferably 1.5 mm.
  • the outer layer 5 carries on its side facing away from the further layer 3 in a projection laterally offset from the stretch film 2 a pressure sensitive adhesive er coating 10. This serves to arrest with a mostly smooth-surface frame member 11, which, for example, in an opening of masonry 12 used becomes.
  • the permanent adhesive composition is used for immediate adhesive bonding of the connecting element 1 with the masonry 12th
  • the approximately hand-wide connecting element 1 is formed in the application according to Mg. 3 in a verspringendes, for example. Double-S-shaped profile and so the Wandungsaus Principleung and the frame member 11 associated with it, with both the inner surface of the masonry 12 and the frame member 11 fitting is connected or glued to it. The bonding with the frame member 11 takes place on the outside thereof.
  • the band-like connecting element 1 is so designed that changes in the gap width a between masonry 12 and frame member 11 can not lead to damage or tearing of the connecting element 1.
  • the connecting element 1 has a releasable extension reserve R, which is effective from a certain threshold.
  • R releasable extension reserve
  • This is achieved by the arrangement of a, the masonry joint 13 between masonry 12 and frame member 11 spanning stretch film 2, wherein the example. Laminated further layers 3 and 5 due to the free cuts 8 can perform these strains with.
  • fanning or fan-out or a nearly parallel spacing of the sections 7 relative to each other can be achieved.
  • the variant according to the Mg. 4 to 6 represents a solution in which the connecting element 1 is formed open to vapor diffusion.
  • the stretch film 2 of this embodiment is covered with a further layer 3 of a nonwoven 14, in particular PP fleece, over which a vapor-permeable, waterproof film 15 extends.
  • an outer layer 5 is provided as Putzverbundlage 6, so for example. Consisting of a PP spunbonded fabric.
  • the three layers and the stretch film 2 are firmly connected to each other, wherein the further layer 3-fleece 14-, the vapor-permeable film 15 and the outer layer 5 -purpose plaster layer are formed 6 widthwise equal.
  • all layers (further layers 3, film 15 and outer layer 5) arranged in this embodiment are also subdivided into sections 7 in the longitudinal extension of the connecting element 1 by knives, which are spaced apart from one another by the middle section 8 in the width direction of the connecting element 1 ,
  • a layer permanent adhesive composition 9 is arranged on the underside of the expansion film 2 facing another layer 3 is adjacent and spaced from the stretch film 2.
  • a layer permanent adhesive composition 9 is arranged on the underside of the expansion film 2 facing another layer 3 is adjacent and spaced from the stretch film 2.
  • Side change opposite to the top of the outer layer 5 is in a projection to the stretch film 2 next to this and spaced from this arranged an adhesive liver coating 10 is provided.
  • FIG. 6 shows an application example in which the connecting element 1 according to the embodiment of FIGS. 4 and 5 is fastened to a frame component 11 by means of the pressure-sensitive adhesive coating 10 and to an opposite outer surface of a masonry 12 by means of the permanent adhesive composition 9 Masonry joint 13 towards the outside of the building.
  • an extension reserve R is created by the arrangement of parallel to each other, formed at a distance of 2 mm free cuts 8 and the arrangement of the formed sections 7 covering Dehniuigsfolie 2.
  • a connecting element 1 which is a combination element consisting of a connecting element 1 according to the first embodiment and a connecting element 1 of the second embodiment.
  • a central pressure-sensitive adhesive coating 10 which is considered over the width of the connecting element 1 is provided, from which On the one hand in the width direction extends a dam-open-diffusion zone and on the other side a vapor-diffusion-proof zone.
  • the vapor-diffusion-tight zone which extends downwards in the illustration, essentially consists of an aluminum foil 4 and a plaster composite layer 6 forming the outer layer 5.
  • a strip of permanent adhesive composition 9 is arranged on the edge of the underside of the aluminum foil 4.
  • the vapor-permeable region extending upward into Mg. 7 is formed with a further layer 3 of a fleece 14, a vapor-permeable, watertight film 15 and an outer layer 5 in the form of a plaster composite layer 6.
  • a strip permanent adhesive composition 9 is arranged on the underside in the edge region of the nonwoven layer 14.
  • the expansion film 2 extends under firm bond with the further layer 3 arranged above it, wherein the expansion film 2 is designed such that it widthwise in each case at a small distance to the strip of permanent pasting 9 ends.
  • the expansion film 2 is broadly at least designed such that it overlaps sections 7 which have been measured both in the vapor-diffusion-open area and sections 7 measured in the vapor-diffusion-tight area and, moreover, also form a composite of the layers relative to one another.
  • connection Dungselements 1 the masonry joint 13 transversely, outwardly guided and fixed by means of the underside of the nonwoven layer 14 arranged permanent pasting 9 on the masonry 12.
  • the vapor diffusion-tight portion of the connecting element 1 is also the masonry joint 13 traversing, drawn towards the interior of the room, this also with attachment of the I dabitess means of permanent adhesive 9 with the masonry 12th
  • the connecting element 1 of the third embodiment according to FIG. 7 has two extension reserves R, so that advantageously a very wide variety of structural / structural workpiece movements can be absorbed without demolition of the adhesive joints.
  • FIG. 9 shows a fourth embodiment of the connecting element 1 according to the invention, which is essentially the same as the first embodiment according to FIGS. 1 to 3.
  • the stretch film 2 is pulled over the region of the extension reserve R out into an edge region on the underside of the further layer 3, wherein further the stretch film 2 is provided as a further outer layer 16 on its outside with a silicone layer.
  • the stretch film is thus on one side relatively anti-adhesive, which in the application according to the representation in Mg. 10, a bonding is prevented with introduced into the building joint 13 Ortschaum.
  • the desired extensibility in the region of the extension reserve R is still maintained.
  • the extension reserve R in the region of the non-stretchable further layer 3 is achieved by creping this layer 3 in the covering area to the stretch film 2.
  • the waves of the further layer 3 are in this case aligned transversely to the longitudinal extent of the connecting element. Accordingly, stretching of the corrugated sheet section in the transverse direction can be achieved.
  • the further layer 3 is adhered to the stretch film 2 associated wave crests 17 with the stretch film 2 line-like.
  • the free wave height and the distance between the arresting lines are adapted to the desired extensibility of the connecting element 1 in the region of the stretch film 2.
  • An elongation of the stretch film 2 is reproduced by stretching the creped ply section.
  • the one or both sides in the transverse direction over the stretch film 2 superior portions of the further layer 3 are not formed undulating and are therefore not stretchable.
  • the further layer 3 can be an aluminum foil, a nonwoven layer or even a vapor-permeable, waterproof film. Also, as indicated, a plurality of superimposed further, non-stretchable layers may be provided, which are pleated or creped in the overlap region to the stretch film 2 and also partially mutually arrested.
  • a connecting element 1 is shown in a further embodiment, the expansion film 2 for steam vapor-open training similar to the other, non-stretchable layer 3 gemessert concerned. is milled.
  • the otherwise vapor-diffusion-sealed stretch film 2 is penetrated by the measuring Sern divided into sections 18, which sections 18 are connected by the extension reserve R ensuring portions 7 of the non-stretchable layer 3.
  • the middle cuts 19 extend between the sections 18 of the stretch film 2 up to the facing upper side of the further layer 3, without these being cut by this knife edge.
  • the passage openings 20 between the sections 18, which in particular adjust during expansion, are overlapped by the sections 7 of the layer 3, the sections 18 and 7 preferably having the same dimensions in the width direction of the connecting element 1 and the slot-like through openings being more preferred are evenly overlapped on both sides of the sections 7.
  • the sections 18 and 7 extend in the longitudinal direction of the joint to ensure extensibility in the width direction of the connecting element 1.
  • connection element 1 in accordance with Mg. 14 is adjusted in a vapor-diffusion manner for bridging a building-exterior masonry joint.
  • the ineligible layer 3 consists of a correspondingly open composite film 23, which on the side facing the expansion film 2 is end-capped with a permanent adhesive composition 9. The latter is covered with a removable silicone film 21.
  • the further layer 3 which at the same time forms the outer layer 5 carries on its side facing away from the stretch film 2 and in the end region opposite the section having the permanent pasting compound 9 a pressure-sensitive adhesive covering 10 likewise covered with a removable silicone film 22.
  • a pressure-sensitive adhesive covering 10 likewise covered with a removable silicone film 22.
  • the above-described connecting element can also be formed as a combination connecting element for bridging the gap 13 inwardly and outwardly, wherein the inward-facing non-stretchable layer 3 is formed vapor-tight.
  • This inner layer can thus be, for example, an aluminum foil 4.
  • the extension reserve R of this vapor diffusion-tight portion is formed by a diffusion-tight, non-milled stretch film 2, which bridges a milled or milled area of the further layer 3.
  • a transverse slit of the layers 3 and 5 located on the stretch film 2 is provided.
  • slits 24 extending transversely to the elongation direction with a limited extent.
  • the slits 24 are arranged in rows, each with fixed bridges 25 located in a row therebetween.
  • the slits 24 are offset in the rows from one another such that a slot 24 of one row bridges a fixed bridge 25 of the other row. He prefers to reach beyond that.

Landscapes

  • Engineering & Computer Science (AREA)
  • Civil Engineering (AREA)
  • Structural Engineering (AREA)
  • Laminated Bodies (AREA)
  • Building Environments (AREA)

Abstract

L'invention concerne un élément de liaison (1) de type bande situé entre un composant cadre (11), par exemple, un cadre de fenêtre, et un ouvrage de maçonnerie (12). Cet élément de liaison (1) peut être collé au composant cadre (11) et/ ou à l'ouvrage de maçonnerie (12) et présente une réserve de longueur ( R ) disponible. L'invention vise à apporter une amélioration relative aux contraintes mécaniques éventuellement dues à des dilatations de la maçonnerie et/ ou du composant cadre. A cet effet, l'élément de liaison multicouche (1) présente systématiquement, dans une section de sa largeur, un film de dilatation élastique (2) et une autre couche non extensible (3) est reliée au film de dilatation (2) extensible dans des sections (7) subdivisées.
EP04766258A 2003-07-24 2004-07-19 Element de liaison de type bande Not-in-force EP1649124B1 (fr)

Priority Applications (1)

Application Number Priority Date Filing Date Title
PL04766258T PL1649124T3 (pl) 2003-07-24 2004-07-19 Taśmowy element łaczący

Applications Claiming Priority (4)

Application Number Priority Date Filing Date Title
DE10333635 2003-07-24
DE102004012472 2004-03-15
DE102004034601A DE102004034601A1 (de) 2003-07-24 2004-07-16 Bandartiges Verbindungselement
PCT/EP2004/051539 WO2005010308A1 (fr) 2003-07-24 2004-07-19 Element de liaison de type bande

Publications (2)

Publication Number Publication Date
EP1649124A1 true EP1649124A1 (fr) 2006-04-26
EP1649124B1 EP1649124B1 (fr) 2011-11-09

Family

ID=34108292

Family Applications (1)

Application Number Title Priority Date Filing Date
EP04766258A Not-in-force EP1649124B1 (fr) 2003-07-24 2004-07-19 Element de liaison de type bande

Country Status (3)

Country Link
EP (1) EP1649124B1 (fr)
PL (1) PL1649124T3 (fr)
WO (1) WO2005010308A1 (fr)

Families Citing this family (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US8302353B2 (en) 2004-10-15 2012-11-06 Thomas Bren Water intrusion prevention method and apparatus
EP1741867A1 (fr) * 2005-06-30 2007-01-10 SYLID Systemlogistik und Industriedienstleistung GmbH Garniture d'étanchéité
EP1795687A1 (fr) * 2005-12-09 2007-06-13 SYLID Systemlogistik und Industriedienstleistung GmbH Garniture d'étanchéité
ES2381170B1 (es) * 2009-03-27 2013-04-15 Universitat Politècnica De Catalunya Conector vertical entre paredes no portantes de obra de fabrica en edificacion.
DE202010006938U1 (de) * 2010-05-18 2010-08-19 Wedi, Stephan Dampfisolierende Wandverkleidung

Family Cites Families (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP1290289B1 (fr) * 2000-04-25 2008-12-31 E.I. Du Pont De Nemours And Company Materiaux extensibles de recouvrement etanche et processus d'installation
EP1213430B1 (fr) * 2000-12-06 2006-10-18 RPM Ireland IP Ltd. Elément de raccord en forme de ruban
DE20112658U1 (de) * 2001-08-02 2001-10-31 Kronenberg Bernd Dichtstreifen zum Abdichten eines in eine Laibung eines Gebäudes eingesetzten Rahmens
DE20206254U1 (de) * 2002-04-19 2002-08-08 Wirz Peter Dichtungsband

Non-Patent Citations (1)

* Cited by examiner, † Cited by third party
Title
See references of WO2005010308A1 *

Also Published As

Publication number Publication date
EP1649124B1 (fr) 2011-11-09
WO2005010308A1 (fr) 2005-02-03
PL1649124T3 (pl) 2012-03-30

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