EP2297411B1 - Bandes d'étanchéité en mousse - Google Patents

Bandes d'étanchéité en mousse Download PDF

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Publication number
EP2297411B1
EP2297411B1 EP09745644.6A EP09745644A EP2297411B1 EP 2297411 B1 EP2297411 B1 EP 2297411B1 EP 09745644 A EP09745644 A EP 09745644A EP 2297411 B1 EP2297411 B1 EP 2297411B1
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EP
European Patent Office
Prior art keywords
sealing strip
foam material
material sealing
height
region
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.)
Active
Application number
EP09745644.6A
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German (de)
English (en)
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EP2297411A1 (fr
Inventor
Frank Wörmann
Markus Komma
Alfred KÖPPL
Helmar Nauck
Jörg BIRKELBACH
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.)
Tremco CPG Germany GmbH
Original Assignee
Tremco Illbruck 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 Tremco Illbruck GmbH filed Critical Tremco Illbruck GmbH
Priority to EP16171161.9A priority Critical patent/EP3088621A1/fr
Priority to PL09745644T priority patent/PL2297411T3/pl
Publication of EP2297411A1 publication Critical patent/EP2297411A1/fr
Application granted granted Critical
Publication of EP2297411B1 publication Critical patent/EP2297411B1/fr
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    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04BGENERAL BUILDING CONSTRUCTIONS; WALLS, e.g. PARTITIONS; ROOFS; FLOORS; CEILINGS; INSULATION OR OTHER PROTECTION OF BUILDINGS
    • E04B1/00Constructions in general; Structures which are not restricted either to walls, e.g. partitions, or floors or ceilings or roofs
    • E04B1/62Insulation or other protection; Elements or use of specified material therefor
    • E04B1/66Sealings
    • E04B1/68Sealings of joints, e.g. expansion joints
    • E04B1/6812Compressable seals of solid form
    • 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
    • E06B2001/626Tightening or covering joints between the border of openings and the frame or between contiguous frames comprising expanding foam strips

Definitions

  • the invention relates to a suitable for sealing a window frame against a window reveal foam sealing strip, which is impregnated for delayed recovery, the foam sealing strip has two opposite, respectively in the installed state of the inner or the outer side of the window frame facing narrow sides and to rest against the Window side or soffit suitable broadsides, further at least one formed as a height range edge portion of the cross section in the fully recovered state starting from a broadside given base surface has a greater height than a subsequent widthwise low range, the height range and the low range in alignment with a longitudinal direction run the foam sealing strip and in the fully recovered state on the surface opposite the base surface is given a curved cross-sectional shape of the surface.
  • foam sealing strips have already become known in various embodiments.
  • EP 1 811 111 A2 to refer.
  • EP 1 131 525 B1 the foam sealing strip known from the first-mentioned document, a strip element or foam strip is assigned, which deforms a base surface of the foam sealing strip, the base area assigned to a self-adhesive layer, such that a narrow side is associated with an increase in the foam material. Sealing strip results, so in the installed state, a higher compression.
  • a sealing element in particular a joint sealing strip, especially a pre-compressed or uncompressed joint sealing strip with or without pressure-sensitive adhesive, for the sealing of an edge region of a component against an adjacent connection region of a building, vehicle or the like.
  • the EP 2 112 292 is state of the art under Article 54 (3) EPC and therefore not relevant to issues of inventive step.
  • the EP 0 976 882 A2 discloses a sealing body of soft, preferably open-cell and impregnated foam, which is particularly characterized in that the sealing body is profiled on one or on opposite surfaces.
  • the invention has the object of specifying a foam sealing strip, which can advantageously achieve a different compression of the sealing strip across the width in the installed state, but avoids the risk of condensation within the foam sealing strip.
  • the base surface is a flat, extending over the entire width and by the integral with respect to the foam cross-section itself formed base surface.
  • the designations of the outer surfaces of the foam sealing strip as broadsides or narrow sides are chosen with regard to the usual given geometry in the installed state.
  • the broad side is (in a cross-sectional view) the dimension extending in the joint depth (for example perpendicular to the plane of a window frame) and the narrow side is the dimension extending in the joint width (in the plane of the window frame in the example).
  • a narrow side but also have a larger dimension than a broadside.
  • the low region has one tenth or more of the dimension of a broad side, that is to say the width dimension of the sealing strip.
  • the low region has up to nine tenths of the dimension of a broadside.
  • all intermediate values are also included here in the disclosure, in particular in 1/10 steps of the width dimension.
  • the formation of the foam sealing strip in cross section may be asymmetrical.
  • one - and according to the invention only one - height area, namely at the edge, is provided.
  • This design is particularly suitable with regard to a use to achieve a higher vapor-tightness on one side, just usually the inside in the installed state, as is known from the aforementioned EP 1 811 111 A2 is known.
  • a height of the low region corresponds to 60% to 80%, preferably 60% to 70% of the height of the height range.
  • the height is the dimension measured in the narrow side direction or expansion direction from the base or a self-adhesive strip.
  • any intermediate values in particular in 1/10% increments from the lower and / or upper limit to the respective other limit, are also included to a limited extent.
  • the transition, seen in cross-section, from a height range to a low range is curved.
  • the curvature line has a point of inflection in cross-section.
  • the height region or the raised second foam-sealing strip is aligned with a side surface of the first foam-sealing strip.
  • a thread grid to be arranged in the bonding area between the first foam sealing strip and the second foam sealing strip.
  • the height range in particular a height range leading to a height range which leads to different vapor tightness with regard to the side regions, be set differently in color than the low region.
  • This color setting can serve, for example, to be used as an installation aid, since in this respect is to ensure a correct installation. The higher tightness must be provided on the inside of the room.
  • a height range may be in the fully recovered state having a height, measured from a base surface, which corresponds to half to 1.5 times a width extension of the sealing strip (total).
  • This bandwidth also includes all intermediate values, if not already indicated by way of example, as disclosed, in particular in 1/10 steps from the lower and / or upper limit to the respective other limit or restricted in the sense of singular values.
  • the fully recovered height of the foam sealing strip in the height range preferably corresponds to 0.25 to 0.75 of the width of the sealing strip. Also in this regard, the disclosure includes, as detailed above, all intermediate values.
  • the foam sealing strip in the packaging state has a similar compression across its width.
  • a similar compression in the packaging state there is also a similar provision in the course of installation in the on-site joint.
  • the foam sealing strip "grows" in the Course of provision over its entire page to the same extent. It is practically impossible to observe that the altitude range would reset itself more quickly.
  • an advantageous one-piece design of the foam sealing strip can also be made due to this measure.
  • Said similar compression ie, that despite different height extent of the foam strip across the width in fully restored state, the degree of compression in the packaging state across the width is the same, can basically be achieved for example by a suitably adapted packaging corresponding to the foam strip over the width his - similar - compressed contour follows.
  • the package itself may be provided in this contour, such as the cover is designed as a corresponding hard material cover with one of the correspondingly structured surface of the foam sealing strip following cross-sectional contour ,
  • the similar compression is achieved by an insert part assigned to the region which has a lower height in the completely reset state, that is to say the low region.
  • This insert may be a strip-shaped part, as it basically already from the aforementioned EP 1 811 111 A2 is known. However, it is only inserted so that it is removable at any time after release of the provision and should also be removed as intended. The insert is only on the sealing strip; it is not connected with this.
  • the foam-sealing strip has a self-adhesive layer (assigned to the rear or to the window frame)
  • the insert is preferably arranged on the surface of the foam-sealing strip facing away from the self-adhesive layer.
  • the surface of the foam sealing strip on which the insert part is arranged is accordingly preferably (alone) the surface of the low region.
  • the insert can basically also be a foam part.
  • the foam part is in terms of its elasticity and resilience, which may also be a rigid foam part, designed so that it provides the desired same compression of the foam sealing strip in the packaging state over the entire width due to its size.
  • the insert does not need to be completely removable his. It may also be provided, for example, only foldable.
  • the similar compression of the foam sealing strip across the width can be achieved by two oppositely directed identical foam-like sealing strips arranged at least partially overlapping one another. This means directed in opposite directions that the areas of greater height, the height areas, facing in opposite directions. With regard to a partial overlap on the one hand, only the areas of lesser height, the low areas, can be arranged one above the other. On the other hand, however, such foam sealing strips can also be superimposed overall, d. H. be arranged completely overlapping.
  • the insert consists of a biodegradable material.
  • the insert part contrary to the additional part, as in the subject matter of the aforementioned EP 1 811 111 A2 is provided, is removed before installing the foam sealing strip of this or at least from the area where it was located in the packaging state. It is currently not or at least not fully or not installed in the packaging state given arrangement. Preferably, it is completely removed and disposed of as waste.
  • rye flour As biodegradable materials, various embodiments are offered in detail.
  • elements based on rye flour must be referenced. It may, for example, on the basis of rye flour, water, fine-grained aggregates such as kieselguhr and lime, wood fibers in bale or jute fabric, preferably also by foaming, a solid state part can be achieved, which is favorable for the purpose used here.
  • fine-grained aggregates such as kieselguhr and lime
  • wood fibers in bale or jute fabric preferably also by foaming
  • it may also be a biodegradable plastic which is based as a main component on flour, which in turn is obtained by mill-technical fractionation from rye.
  • the material is then in the form of granules, which in Plastic extrusion or plastic injection molding machines can be processed. When finished, it prefers a frothy character.
  • it may be a material known under the trade name GETREX.
  • the insert part can also be a blank part, that is, for example cut from a wider part.
  • Fig. 1 Shown and described is first with reference to Fig. 1 a wound to a roll 1 foam sealing strip 2, in the delivery or packaging state, approximately wound up on a roll as in Fig. 1 shown, having a non-uniform width across the width (without the insert 10).
  • the foam-sealing strip 2 can also be wound without the insert 10 to a roll. In this case, it has a rectangular or approximately rectangular profile on the roll.
  • the foam sealing strip 2 is (also) in the fully retracted condition, see Fig. 2 or. Fig. 2a , a (geometrically similar) across the width uneven profile.
  • a first narrow edge side 3 is given a smaller height h (thickness), that is to say a low region 14 is formed, and a second narrow edge side 4 is assigned a greater height H (thickness), ie a height region 15.
  • the height portion 15 and the lower portion 14 are formed in alignment with a longitudinal direction of the foam sealing strip.
  • Over the length of the foam-sealing strip 2 is always given the same cross-sectional profile.
  • Fig. 3 Due to the given, over the width of the window practically the same sealing gap between a window frame 5 and a wall reveal 6 a maximum and over the width of the sealing gap (dimensions perpendicular to the plane of an example.
  • a base surface F of the foam sealing strip forming foam is flat and extended over the entire width B. This also applies, for example, the below explained in particular in more detail embodiments according to the FIG. 8a ,
  • the insert 10 provides for uniform compression across the width.
  • the insert 10 complements the low region 14 so that the outer surface of the insert 10 is aligned with the associated surface of the height portion 15.
  • the height h is between 60 and 70% of the height H and open-cell flexible polymer foam is used, but such insert has been found to be unnecessary.
  • Fig. 2 is shown in a dashed line, as (qualitatively) a non-inventive foam sealing strip 2 would look at full expansion (the insert 10 is then removed).
  • This can be geometrically similar to the compressed state, which is the representation of the Fig. 2 corresponds to when a corresponding insert 10 is used in the compressed state.
  • the step between the low region 14 and the high region 15 also becomes correspondingly larger. In the compressed state, therefore, regardless of the non-uniform across the width profile of the foam sealing strip when using an insert a virtually equal degree of compression is given.
  • the ratio between the height in the fully retracted state to the height in the compressed state is then the same across the width.
  • the self-adhesive layer 7 desired for installation and the covering layer 8 located thereon are formed on the broad side of the foam-sealing strip 2 facing away from the profiling 9 of the foam-sealing strip.
  • the possibly used Insert 10 can be easily removed and disposed of after unwinding of the foam sealing strip from the roll.
  • the insert 10 is one made of a biodegradable material, as described earlier.
  • the height range 15, which is assigned in the embodiment of the narrow side 4, may extend in the width direction over 5% or more of the total width of the foam sealing strip. Preferably up to half, that is 50% of the width of the foam sealing strip. In the case of a symmetrical design, see below, the height range 15 preferably extends to about 40% or 45% of the width of the foam strip 2. Both height ranges 15 may be correspondingly up to about 80% to 90% of the width of the foam strip 2 extend. In this case, all intermediate values, in particular in 1/10% steps, are included as disclosed in the specified ranges.
  • the unilaterally greater height of the foam-sealing strip given in the expanded state exceeds the height of the area of lesser height by 5% or more. In particular, up to 50%.
  • the intermediate values, in particular in 1/10% steps, are also included here as disclosed.
  • the width of such a sealing strip may, for example, be between 40 and 120 mm, but also beyond.
  • the height of the fully restored foam may be in the range of lesser height (thickness), for example. 30 to 100 mm, or even beyond.
  • the respective intermediate values, in particular in 1/10-millimeter increments, are also included in these ranges as disclosed.
  • the cross section of the sealing strip may be composed of a rectangular section (over the entire width) and a square or rectangular section arranged on one side (relative to the fully expanded state). While both the narrow edge sides forming sides of the foam sealing strip are straight, preferably rectangular to the self-adhesive strip having base, the transition from the region of greater thickness to the region of lesser thickness parallel to a narrow edge side or with a cross-section in the tip Angle to a narrow edge side extending surface may be formed. According to the invention, however, that the peripheral edge forming the one height range and a low range has a constant curvature, cf. approximately FIGS. 2a and 8a (the latter not according to the invention). However, this only describes the geometric shape.
  • the foam sealing strip is preferably formed integrally with respect to the overall cross-sectional geometry.
  • FIGS. 4 and 5 further embodiments not according to the invention are shown.
  • two foam sealing strips 2, 2 ' are arranged one above the other, so that they are directed in opposite directions.
  • the areas of greater height are juxtaposed in this cross-sectional view, but arranged facing in opposite directions.
  • Each height range is associated with a region of lesser height of the other foam sealing strip opposite.
  • Such a combined arrangement of similar foam sealing strips 2, 2 'can be wound in the same way on a roll produced as a commercial product, as with regard to Fig. 1 is explained.
  • the foam sealing strips 2, 2 'could also be arranged one above the other only in the areas of lesser height.
  • the formally complementary foam sealing strips 2, 2 'can achieve a uniform compression in the installed state, without the need for an insert 10. Seen in this way, one foam-sealing strip 2 acts as an insert for the other foam-sealing strip 2 'or vice versa.
  • non-inventive object of Fig. 5 is given a packaging state in which a portion 11 of a foam sealing strip 2 is folded over on the foam sealing strip 2, that it complements the area of lesser height of the foam sealing strip 2 to a same height, as given in the height range 15 .
  • the area 11 can be folded back, so that the configuration according to Fig. 6 results, which at the same time also the initial configuration before the packaging state according to Fig. 5 is.
  • the cover layer 8 or 8 'are deducted in terms of production, for this purpose, in an integral starting product, a non-continuous separating cut 13 (FIG. Fig. 6 ).
  • the separating cut 13 has also divided the covering layer 8 and the self-adhesive layer 7 into partial regions 8, 8 'and 7, 7'. Also this embodiment makes it possible to achieve uniform compression in the packaging state without the need for an additional part such as an insert 10.
  • the given over the remaining web 12 integral connection of the two folding associated parts of the foam sealing strip represents an embodiment which may also be modified in that the parts are fully severed or a different or other foam part 11 in the Fig. 5 appropriate manner is placed on the foam sealing strip in the packaging state.
  • foam part 11 in the Fig. 5 appropriate manner is placed on the foam sealing strip in the packaging state.
  • Such another kind or other foam part would not necessarily have a self-adhesive layer 7 'and / or a cover layer 8' have.
  • FIGS. 7 to 9 shows a foam sealing strip 2 ", which has two height regions 15 and a low region 14.
  • the height regions 15 are in this case by the low region 14 - with respect to a cross-sectional view, see Fig. 8 - distant.
  • Such a configuration is particularly advantageous when it does not primarily concern a different vapor permeability of the side areas, although here, too, by a still different height extent of the height regions 15 about, or a corresponding impregnation (see. EP 1 811 111 A2 ) Such can be achieved.
  • the low region 14 can achieve a higher insulation value in the installed state, so that despite the comparatively high sealing force in the side regions, a comparatively high thermal resistance value, ie a high thermal insulation value, can be achieved.
  • Fig. 8a shows the already mentioned preferred curved profile.
  • an insert 10 may be inserted into the lower region 14, in order to be in the packaging state, that is to say preferably in accordance with a roll 1, cf. Fig. 7
  • the height regions 15 and the low region 14 extend in alignment with the longitudinal direction, In particular, in the embodiment a symmetry is also given to a central longitudinal plane EE of the foam sealing strip 2 ".
  • the in the FIGS. 1 and 7 shown roles are reproduced only for clarity with not adjacent to each other turns. Usually, the turns are close to each other.
  • the foam is preferably at least partially open-celled and elastically resilient soft foam.
  • flexible polyurethane foam for example, flexible polyurethane foam.
  • Fig. 8a is a (not inventive) straight transition, but here with clearly curved end portions, which provide the actual transition to the low range or to the level of the height range provided.
  • the base surface F is a flat surface that extends across the entire width of the given base surface. Based on this base area results in the curved cross-section transition between a height range and a low range, as already described. In the curved course, the curvature is provided so that there is a turning point, such as the representation of the Fig. 2a can be seen.
  • a fully recovered height H of the foam sealing strip preferably corresponds to half to 1.5 times the width B of the sealing strip, for example, the width of the width B.

Claims (12)

  1. Bande d'étanchéité en mousse (2, 2', 2") destinée à rendre étanche un cadre de fenêtre (5) par exemple, imprégnée pour un repositionnement retardé, la bande d'étanchéité en mousse (2, 2', 2") présentant, par rapport à une section transversale, deux côtés étroits (3, 4) opposés, tournés respectivement à l'état monté vers la face intérieure ou la face extérieure du cadre de fenêtre (5), et deux côtés larges appropriés à reposer contre la face de la fenêtre ou l'embrasure (6), au moins une zone de bordure de la section transversale, conçue sous la forme d'une zone élevée (15) présentant en outre, à l'état entièrement repositionné en partant d'une surface de base (F) située sur le côté large, une hauteur supérieure à une zone basse (14) adjacente dans la direction de la largeur, la zone élevée (15) et la zone basse (14) étant à affleurement dans une direction longitudinale de la bande d'étanchéité en mousse (2, 2', 2") et la surface de base (F) étant une surface plane et s'étendant sur la totalité de la largeur, et la zone basse (14) constituant dans la direction de la largeur un dixième ou plus de la dimension d'un côté large, la hauteur (h) de la zone basse (14) constituant entre 60 % et 80 % de la hauteur (H) de la zone élevée (15), respectivement par rapport à l'état entièrement repositionné, un tracé de la surface de section transversale courbe résultant sur la surface opposée à la surface de base (F) à l'état entièrement repositionné, et une seule zone élevée du côté bordure étant prévue et la largeur de la bande d'étanchéité étant comprise entre 40 et 120 mm, ou bien au-delà, caractérisée en ce que la surface de base est formée par la mousse elle-même présentant une section transversale monobloc et la ligne de courbure présentant un point culminant en section transversale.
  2. Bande d'étanchéité en mousse selon la revendication 1, caractérisée en ce qu'au moins une zone de bordure de la section transversale, conçue sous la forme de zone élevée (15), présente à l'état entièrement repositionné en partant d'une surface de base (F) plane située sur le côté large une hauteur supérieure à une zone basse (14) s'étendant dans la direction de la largeur, la zone élevée étant constituée par une accumulation en étages d'une première bande d'étanchéité en mousse (2) imprégnée formant la zone basse (14) à travers une deuxième bande d'étanchéité en mousse (16) imprégnée.
  3. Bande d'étanchéité en mousse selon l'une ou plusieurs des revendications précédentes, caractérisée en ce que
    (i) la zone basse (14) représente jusqu'à neuf dixième de la dimension d'un côté large
    et/ou
    (ii) la bande d'étanchéité est conçue de manière symétrique par rapport à un plan médian s'étendant transversalement par rapport à un côté large.
  4. Bande d'étanchéité en mousse selon l'une ou plusieurs des revendications précédentes, caractérisée en ce que - respectivement par rapport à un état entièrement repositionné - une hauteur (h) de la zone basse (14) correspond à 60 à 70 % de la hauteur (H) de la zone élevée (15).
  5. Bande d'étanchéité en mousse selon l'une ou plusieurs des revendications précédentes, caractérisée en ce que la hauteur (H) entièrement repositionnée de la bande d'étanchéité en mousse constitue de la moitié jusqu'à 1,5 fois l'extension en largeur (B) de la bande d'étanchéité, par rapport à une zone élevée (15).
  6. Bande d'étanchéité en mousse selon l'une ou plusieurs des revendications précédentes, caractérisée en ce que la bande d'étanchéité en mousse (2, 2', 2") présente à l'état emballé une compression de même type sur toute sa largeur.
  7. Bande d'étanchéité en mousse selon la revendication 6, caractérisée en ce que la compression de même type est obtenue dans la bande d'étanchéité en mousse (2, 2', 2") à l'état emballé par le biais d'une pièce d'insertion affectée à la zone basse (14).
  8. Bande d'étanchéité en mousse selon la revendication 7, caractérisée en ce que (i) la pièce d'insertion est conçue sous la forme d'un montant et/ou (ii) en ce que la pièce d'insertion se compose d'un matériau biodégradable et/ou (iii) en ce que la pièce d'insertion est une pièce en mousse (11).
  9. Bande d'étanchéité en mousse selon l'une ou plusieurs des revendications précédentes, caractérisée en ce que la compression de même type sur toute la largeur est obtenue grâce à deux bandes d'étanchéité en mousse (2, 2') se chevauchant au moins partiellement, dirigées dans le sens contraire.
  10. Bande d'étanchéité en mousse selon la revendication 9, caractérisée en ce que les deux bandes d'étanchéité en mousse (2, 2') sont de même forme.
  11. Bande d'étanchéité en mousse selon la revendication 7, caractérisée en ce que la pièce d'insertion conçue sous la forme de pièce en mousse (11) est configurée comme une pièce de la bande d'étanchéité en mousse (2) reliée de façon pivotante à charnière.
  12. Bande d'étanchéité en mousse selon la revendication 11, caractérisée en ce que la pièce d'insertion est formée par une coupe de séparation ne sectionnant pas la bande d'étanchéité en mousse.
EP09745644.6A 2008-05-13 2009-04-20 Bandes d'étanchéité en mousse Active EP2297411B1 (fr)

Priority Applications (2)

Application Number Priority Date Filing Date Title
EP16171161.9A EP3088621A1 (fr) 2008-05-13 2009-04-20 Bande d'etancheite alveolaire
PL09745644T PL2297411T3 (pl) 2008-05-13 2009-04-20 Piankowy pasek uszczelniający

Applications Claiming Priority (4)

Application Number Priority Date Filing Date Title
DE102008023375 2008-05-13
DE102008055505 2008-12-10
DE102009013107A DE102009013107A1 (de) 2008-05-13 2009-03-13 Schaumstoff-Dichtstreifen
PCT/EP2009/054655 WO2009138311A1 (fr) 2008-05-13 2009-04-20 Bandes d'étanchéité en mousse

Related Child Applications (2)

Application Number Title Priority Date Filing Date
EP16171161.9A Division EP3088621A1 (fr) 2008-05-13 2009-04-20 Bande d'etancheite alveolaire
EP16171161.9A Division-Into EP3088621A1 (fr) 2008-05-13 2009-04-20 Bande d'etancheite alveolaire

Publications (2)

Publication Number Publication Date
EP2297411A1 EP2297411A1 (fr) 2011-03-23
EP2297411B1 true EP2297411B1 (fr) 2019-01-23

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Application Number Title Priority Date Filing Date
EP16171161.9A Pending EP3088621A1 (fr) 2008-05-13 2009-04-20 Bande d'etancheite alveolaire
EP09745644.6A Active EP2297411B1 (fr) 2008-05-13 2009-04-20 Bandes d'étanchéité en mousse

Family Applications Before (1)

Application Number Title Priority Date Filing Date
EP16171161.9A Pending EP3088621A1 (fr) 2008-05-13 2009-04-20 Bande d'etancheite alveolaire

Country Status (8)

Country Link
US (1) US9021754B2 (fr)
EP (2) EP3088621A1 (fr)
CA (1) CA2724225C (fr)
DE (2) DE102009013107A1 (fr)
DK (1) DK2297411T3 (fr)
PL (1) PL2297411T3 (fr)
RU (1) RU2470128C2 (fr)
WO (1) WO2009138311A1 (fr)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP3839187A1 (fr) 2019-12-18 2021-06-23 ISO-Chemie GmbH Bande d'étanchéité

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Publication number Priority date Publication date Assignee Title
DE102006043050A1 (de) 2006-01-19 2007-07-26 Tremco Illbruck Produktion Gmbh Zur Abdichtung eines Fensterrahmens geeigneter Schaumstoff-Dichtstreifen sowie zum Einbau vorbereiteter Fensterrahmen
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RU2470128C2 (ru) 2012-12-20
DE202009016265U1 (de) 2010-03-18
CA2724225A1 (fr) 2009-11-19
WO2009138311A1 (fr) 2009-11-19
EP3088621A1 (fr) 2016-11-02
PL2297411T3 (pl) 2019-07-31
DE102009013107A1 (de) 2009-11-19
US9021754B2 (en) 2015-05-05
US20110120038A1 (en) 2011-05-26
CA2724225C (fr) 2015-12-22
DK2297411T3 (en) 2019-04-23
RU2010150757A (ru) 2012-06-20
EP2297411A1 (fr) 2011-03-23

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