EP2152982B1 - Dispositif de ventilation, notamment pour toits pentus - Google Patents

Dispositif de ventilation, notamment pour toits pentus Download PDF

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Publication number
EP2152982B1
EP2152982B1 EP07785806.6A EP07785806A EP2152982B1 EP 2152982 B1 EP2152982 B1 EP 2152982B1 EP 07785806 A EP07785806 A EP 07785806A EP 2152982 B1 EP2152982 B1 EP 2152982B1
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EP
European Patent Office
Prior art keywords
ventilation
strip according
ventilation strip
holes
strip
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EP07785806.6A
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German (de)
English (en)
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EP2152982A1 (fr
Inventor
Michael Krenz
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.)
Monier Roofing Components GmbH
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Monier Roofing Components GmbH
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Publication of EP2152982A1 publication Critical patent/EP2152982A1/fr
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    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04DROOF COVERINGS; SKY-LIGHTS; GUTTERS; ROOF-WORKING TOOLS
    • E04D13/00Special arrangements or devices in connection with roof coverings; Protection against birds; Roof drainage ; Sky-lights
    • E04D13/17Ventilation of roof coverings not otherwise provided for
    • E04D13/174Ventilation of roof coverings not otherwise provided for on the ridge of the roof
    • E04D13/176Ventilation of roof coverings not otherwise provided for on the ridge of the roof formed by flexible material suitable to be rolled up
    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04DROOF COVERINGS; SKY-LIGHTS; GUTTERS; ROOF-WORKING TOOLS
    • E04D13/00Special arrangements or devices in connection with roof coverings; Protection against birds; Roof drainage ; Sky-lights
    • E04D13/17Ventilation of roof coverings not otherwise provided for
    • E04D13/174Ventilation of roof coverings not otherwise provided for on the ridge of the roof
    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04DROOF COVERINGS; SKY-LIGHTS; GUTTERS; ROOF-WORKING TOOLS
    • E04D13/00Special arrangements or devices in connection with roof coverings; Protection against birds; Roof drainage ; Sky-lights
    • E04D13/17Ventilation of roof coverings not otherwise provided for
    • E04D13/178Ventilation of roof coverings not otherwise provided for on the eaves of the roof

Definitions

  • the invention relates to a ventilation belt according to the preamble of patent claim 1.
  • Ventilation belts are often used to seal a gap between a ridge roof or ridge batten. They are usually designed as rolls, which are rolled out on a ridge or burr board.
  • Ventilators are used on the one hand to prevent the ingress of water, snow or vermin into the roof interior, on the other hand also to ventilate the space under the roof, so z. B. no condensation or fouling or mold fungus occurs.
  • Known ventilation belts do not meet all these requirements. Keeping away water, snow and vermin, they are often not sufficiently permeable to air.
  • a ventilation band is already known, which has a median strip and two side strips, wherein the side parts have apertures ( US 5 094 041 ).
  • the side parts may consist of accordion-like pieces arranged one above the other.
  • a ventilation band with a median strip and two side strips is known, whose median strip has openings ( GB 2 155 516 A ). On the side strips are substantially perpendicular to these standing ventilation strips, which are provided with openings.
  • a ridge or ridge sealing strip with ventilation function which consists of a wavy at the edges and in the middle air-permeable strips (EP 1 260 650 A2 ).
  • This strip has recesses provided in its center and extending transversely to the strip, by closing the transversely extending edges.
  • venting element for a roof space having a plurality of ventilation walls, which are arranged between an upper and a lower plate ( JP 2001 323618 A ). These ventilation walls are arranged vertically or obliquely and have several holes. However, this venting element can not be wound into a roll.
  • EP 1 284 330 A1 contains all the technical features of the introductory part of the first claim.
  • the invention has for its object to provide a ventilation belt that ensures a high exchange of air without water, snow or vermin pass through this ventilation belt.
  • the invention thus relates to a ventilation belt with at least two parallel side strips and a median strip.
  • Ventilation belts run in parallel to the side strip, which are formed by peripherally connected walls or webs.
  • the ventilation straps can have a variety of shapes.
  • At least one ventilation duct is provided; but it is also possible to provide several ventilation ducts. By using certain materials for the ventilation belt that have restoring forces, the at least one ventilation duct can automatically open when the ventilation belt is deployed. But it is also possible to effect an opening of the at least one ventilation duct by pulling on the side strips.
  • a rollable ventilation belt has ventilation openings with good ventilation properties of the plane lying below a roof skin, wherein these ventilation openings are secured against driving rain, flying snow and the like.
  • the ingress of driving rain or snow is prevented by one or more channels made of breathable or dense materials with openings.
  • the ventilation area can be either permanently open geometrically or later, d. H. after unrolling the ventilation band, form the channel or channels.
  • different levels of ventilation can be formed, which are arranged either side by side or in the installed position offset one above the other. Each additional ventilation level is another obstacle against the ingress of driving rain. Drainage channels in all levels, except the innermost, ensure the outflow of water in the possibly existing intermediate levels to the outside.
  • the Fig. 1 shows a roof ridge 1 with roof tiles 2, 3, 4, 5, 6, 7, 8, 9 and a ventilation tape 10 according to the invention, which has two side strips 11, 12 and a central strip 13.
  • the side strips 11, 12 rest on the roof tiles 2 to 9, while the central strip 13 rests on a ridge batten 14.
  • the side strips 11, 12 are made of a plastically deformable material - or have this at least at its end - that they conform to the shape of the tiles 2 to 9. This is in the Fig. 1 not shown.
  • a ventilation channel 15 is provided, which has a rectangular shape which is formed by four walls 16, 17, 18, 19. In the walls 17 and 18 are openings, which in the Fig. 1 are not recognizable. While the wall 19 is formed by the central strip 13, the wall 16 is formed by the side strip. The wall 18 may also be part of the side strip 12. The same applies to the wall 17, which may represent a continuation of the central strip 13.
  • Fig. 2 is a side view of the ventilation belt 10 according to Fig. 1 shown. It can be seen here the side strips 12 and the median strip 13. In the wall 17 a plurality of openings 20 to 25 are provided. The openings in the opposite wall 18 are in Fig. 2 not recognizable.
  • the ventilation duct 15, which is formed by the walls 16 to 19, is in the Fig. 3 shown enlarged. It concerns thereby, in the Fig. 1 area labeled "A". It can be seen provided in the wall 17 openings 20, 21 and provided in the wall 18 openings 26, 27. The openings 26 and 27 are offset from the openings 20, 21 by the distance "b”. If z. B. flying snow, the apertures 20, 21 should have happened, he meets on the opposite wall 18 on a closed surface and not on the opening 26, 27. Due to the arrangement of the apertures 20, 21, 26, 27 creates a kind of labyrinth. The incoming air is redirected on its way into the roof interior, whereby the snow is denied the way into the roof interior.
  • FIG. 4a another embodiment of a ventilation band 45 is shown in a plan view.
  • Two side strips 30, 31 and a median strip 32 can again be seen here.
  • the regions 33, 34 of the central strip 32 are those which are connected to the undulating side strips 30, 31, eg adhesively bonded.
  • openings 50 and 51 are provided, which are formed as circular holes. Behind these openings 50 and 51 can be seen material, because the ventilation belt 45 is compressed. When compressed, it can be rolled up.
  • the Fig. 4b shows the same ventilation band 45 as the Fig. 4a , but in a lower view, ie in the supine position.
  • the ventilation belt 45 is in the uncompressed state.
  • This ventilation belt 45 has two mutually parallel ventilation ducts 185, 186. It can be seen here, the openings 40 and 35 to 38 in the walls 46 and 48 and the openings 50 and 51 in the walls 47 and 49. The openings 35 to 39 and 40 to 44 were in the Fig. 4a not yet recognizable.
  • the Fig. 5 shows the right half of another embodiment of a ventilation belt 60 of non-split, flexible material, in a front view. It can be seen here that the central strip 61 is bent downwards at its ends and first forms the wall 62, then the wall 63, then the wall 64, then the wall 65, then the wall 66 and finally merges into a side strip 67. Where the wall 65 rests on the central strip 61 can be welded or otherwise made a connection. The same applies to the support of the wall 63 on the side strip 67.
  • the openings in the walls 62, 64, 66 are in the representation of Fig. 5 not recognizable.
  • the embodiment of the Fig. 5 two ventilation channels 68, 69 on.
  • venting band 60 again shown from the side.
  • openings 70 to 74 can be seen in the wall 62.
  • the Fig. 7 shows a further variant of a ventilation belt 75.
  • the flexible ventilation belt 75 has a ventilation duct 76, the center strip 77 merges into an inclined wall 78 with the openings 79, 80.
  • the side strip 81 is in an inclined wall 82 with the opening 83, 84 via.
  • the ventilation duct 76 in this case has the cross-sectional shape of a trapezoid.
  • FIG. 8 is a further variant of a flexible ventilation belt 85 with two ventilation channels 86, 87 shown.
  • the walls 88 to 90, which form the ventilation channels 86, 87 are inclined, so that they form triangles. It can be seen perforations 91, 92 in the wall 90, an opening 93 in the wall 89 and two openings 94, 95 in the wall 88.
  • perforations 91, 92 in the wall 90 an opening 93 in the wall 89 and two openings 94, 95 in the wall 88.
  • the ventilation channel 87 still locks 96 and 97 and 98 can be seen, behind the openings 93rd or 91 and 92 are arranged. This results in a labyrinth.
  • the resulting air flow is indicated by arrows 100 to 104.
  • a median strip is designated 105, while a side strip is designated 106.
  • the Fig. 9 shows a further ventilation belt 107, which also has two ventilation ducts 108, 109 and similar to the ventilation belt 85 is constructed.
  • FIG. 10 another ventilation belt 110 is shown, which is laid in the ridge area of a roof.
  • the center strip 111 is laid on the ridge batten 122, and the ventilation strip 110 is sealed with a ridge roof tile 112.
  • the right half of the ventilation belt 110 will be described in more detail below.
  • the center strip 111 forms a first straight piece 114, which then extends at an angle of about 90 degrees to the left and forms a wall 115. After this, the center strip 111, after a rotation to the right, runs parallel to the upper side of the roof tile 113, forming a wall 116. After another left turn of the central strip 111 forms a wall 117 to extend parallel to the straight piece 114 after a further left turn.
  • a side strip 118 initially runs parallel to the surface of the roof tile 113, and then turns up to abut the piece 114 of the center strip 111. As a result, a wall 119 is formed, which forms a ventilation channel 120 together with the straight piece 114 and the wall 115.
  • Ventilation channel 121 is formed by the walls 117, 115, 116.
  • the walls 117, 115 and 119 are openings, which in the Fig. 10 are not recognizable.
  • 122, 123 and 124 ridge battens are called, which carry the roof tiles 112, 113 and 99.
  • the left area of the in the Fig. 10 shown ventilation bands 110 is formed mirror-symmetrically to the right area and is therefore not described in detail.
  • FIG. 11 corresponds to the representation of Fig. 10 except that it is a perspective view. It can be seen here the openings 125 to 127 in the wall 117, and an opening 128 in the wall 115 and an opening 129 in the wall 119th
  • ventilation duct not only includes a ventilation duct 120 continuous in the longitudinal direction of the ventilation belt 110 but also an interrupted ventilation duct 120.
  • a section of the eaves area 130 of a pitched roof is shown.
  • three parallel rafters 131 to 133 extending in the direction of ridge and counter battens 134 to 136, which are fastened on the upper sides of the rafters 131 to 133, can be seen.
  • Transverse slats 137, 138 extend perpendicularly to the rafters 131 to 133 and the counter-slats 134 to 136.
  • This arrangement results in two levels of ventilation, a lower ventilation level 179 and an upper ventilation level 180. Via the lower ventilation level 179 is penetrated or füriffundieres condensation discharged. The upper ventilation level 180 thereby supports the task of the lower ventilation level 179 and additionally ensures rapid drying of the underlay membrane 139.
  • a section of the in Fig. 12 shown eaves area 130 is in the Fig. 13 shown, together with a ventilation belt 140.
  • This ventilation belt 140 is similar to that in Fig. 5 shown half of the ventilation belt 60.
  • the side strips 141, 142 include an angle of 90 degrees.
  • openings 146 to 149 are provided in the mutually parallel walls 143, 144, 145 of the ventilation belt 140 openings 146 to 149 are provided.
  • the one side strip 142 lies on a front side 150 of a rafter 151, while the other side strip 141 rests on a counter batten 152 and abuts a crossbar 153.
  • the ventilation belt 140 is connected to the counter-batten 152 and the rafter 151 via connecting elements, of which only two are provided with the reference numbers 181, 182. These fasteners may be, for example, nails.
  • the ventilation belt 140 can be glued over its side strips 141, 142 with the rafter 151 and the counter-lath 152, however, it is advantageous if the ventilation belt 140 is additionally fastened via connecting elements to the rafter 151 or the counter-lath 152.
  • the side strips 141, 142 can consist of only one material or of several superimposed materials.
  • This ventilation band 140 is made of a substantially flexible material.
  • This ventilation belt 140 may consist of an air-impermeable or of an at least partially air-permeable sheet material. This material may be film-like or cloth-like. The substance used is preferably an organic substance. If the material is film-like, then thin plastic films, metal foils or even organic films are used which have a thickness of up to about 1 mm. Depending on the nature of the material, the ventilation belt 140 may be water-repellent or at least partially water-permeable.
  • the ventilation band 140 can assume two different states. In a first state, the compressed state, the ventilation channels 176, 177 are not open. This is the case when the ventilation belt 140 is rolled up. In a second state, the uncompressed state, the ventilation channels 176, 177 are open. This happens, for example, when unrolling the ventilation belt 140. In this case, by using certain materials for this ventilation belt 140, the ventilation ducts 176, 177 can automatically open when the ventilation belt 140 rolls out. This is the case, for example, when using materials for the ventilation belt 140 that have restoring forces.
  • Ventilation ducts 176, 177 are shown, it is also conceivable that the ventilation ducts 176, 177 in the erected state in cross-section have a different shape.
  • the ventilation ducts 176, 177 in the assembled state a trapezoidal, triangular or even shovel-shaped Have cross-section.
  • Also formed as holes perforations 146 to 149 may have different shapes.
  • the apertures 146-149 may be circular, rectangular, triangular, or U-shaped. It is not necessary, as in Fig. 13 illustrated that the opposing openings 146 to 149 are offset from each other. It is also conceivable that these openings opposite each other.
  • openings of different types are arranged in the ventilation channels 176, 177, for example, water barriers can be arranged between these openings of different types.
  • the openings can be covered with an air-permeable fleece. Although the opening per se remains permeable to air, but thereby the amount of exchanged air less. This is particularly advantageous if you want to provide an air duct that allows less air exchange, but without changing the size of the openings. It can be regulated with a constant size of the openings and a constant number of these air exchange, without having to provide a new ventilation band.
  • the nonwoven fabric may be simply attached to the wall 143 so as to cover the apertures formed as vent holes 146, 147.
  • Ventilator belt 140 is supplied as a roll. In this state, it is compressed, so that the walls of the ventilation ducts 176, 177 lie flat against one another and the ventilation ducts 176, 177 are closed. An increase in volume does not occur. Such a role is in Fig. 20 shown.
  • Fig. 14 shows a provided for the eaves area ventilation belt 183 in the compressed state. It can be seen here a first side strip 154 and a second side strip 155.
  • the walls 156 to 158 of the ventilation belt 183 are folded and run almost parallel to the side strips 154, 155. These walls 156 to 158 and the side strips 154, 155 may consist of a substantially consist of flexible material. Between the walls 156 to 158 two ventilation channels 187, 188 are arranged.
  • the symbolized by the arrows 159, 160 forces can be applied for example with two hands.
  • This ventilation belt 183 may, for. B. be arranged in a eaves area of roofs.
  • FIG. 17 another ventilation belt 161 is shown, in which the walls automatically set up when the ventilation belt 161 is unwound from a roll. Between the strips 162, 163, the walls 164 to 166 are arranged. Between each two walls 164 to 166 are spring elements 167, 168, which exert forces on the strips 162, 163, in the opposite direction.
  • These two mutually parallel ventilation ducts can be arranged side by side, but also one above the other.
  • the spring element 167 is in Fig. 19 shown in isolation. It can be seen here that it has two legs 170, 171, which form an L. The one leg 171 has a plurality of prongs 172, 173, while the other leg 170 is a continuous surface.
  • the spring element 167 is made of an elastically resilient material, which resumes its original position after the end of the action of a force compressing the spring element 167.
  • the ventilation belt 161 In the compressed state, cf. Fig. 17 , the ventilation belt 161 can be wound into a roll. By the process of rolling sufficient forces are applied to compress the venting band 161. It is thus only at the beginning of roll formation, the end of the ventilation belt 161 manually squeeze.
  • a roller 175 is shown, which is the wound ventilation belt 140 according to Fig. 13 is.
  • this ventilation band 140 the side strip 141 is pressed against the side strip 142. This can be started with the unwinding.

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  • Engineering & Computer Science (AREA)
  • Architecture (AREA)
  • Civil Engineering (AREA)
  • Structural Engineering (AREA)
  • Building Environments (AREA)
  • Diaphragms And Bellows (AREA)
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  • Orthopedics, Nursing, And Contraception (AREA)
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  • Specific Sealing Or Ventilating Devices For Doors And Windows (AREA)

Claims (24)

  1. Bande de ventilation (10, 45, 60, 75, 85, 107, 110), en particulier pour toits pentus, comprenant :
    1.1 au moins deux rubans latéraux (11, 12 ; 30, 31 ; 67, 81, 106, 118) s'étendant parallèlement l'un à l'autre et
    1.2 au moins un canal de ventilation (15 ; 68, 69 ; 76, 86, 87 ; 108, 109 ; 120, 121 ; 176, 177 ; 187, 188) sensiblement fermé s'étendant parallèlement aux rubans latéraux (11, 12 ; 30, 31 ; 67, 81, 106, 118),
    1.2.1 dans laquelle le au moins un canal de ventilation (15 ; 68, 69 ; 76, 86, 87 ; 108, 109 ; 120, 121 ; 176, 177 ; 187, 188) dispose de parois qui présentent des percées (20-25 ; 26, 27 ; 40 ; 50, 51 ; 70-74 ; 79, 80 ; 83, 84 ; 91, 92 ; 94, 95 ; 125-129),
    la bande de ventilation (10, 45, 60, 75, 85, 107, 110) peut adopter deux états, dans laquelle le premier état est l'état comprimé, dans lequel le au moins un canal de ventilation (15 ; 68, 69 ; 76, 86, 87 ; 108, 109 ; 120, 121 ; 176, 177 ; 187, 188) n'est pas ouvert, et dans laquelle le second état est l'état non comprimé, dans lequel le au moins un canal de ventilation (15 ; 68, 69 ; 76, 86, 87 ; 108, 109 ; 120, 121 ; 176, 177 ; 187, 188) est ouvert et caractérisée en ce que le au moins un canal de ventilation (15 ; 68, 69 ; 76, 86, 87 ; 108, 109 ; 120, 121 ; 176, 177 ; 187, 188) présente des premières et secondes percées (20-27 ; 35-38 ; 40 ; 50, 51 ; 70-74 ; 79, 80 ; 83, 84 ; 91-95 ; 125 ; 129 ; 146 ; 149) dans des parois opposées.
  2. Bande de ventilation selon la revendication 1, caractérisée en ce qu'un ruban central (13, 32, 61, 77, 105, 111) est aménagé entre les rubans latéraux (11, 12 ; 30, 31 ; 67, 81, 106, 118).
  3. Bande de ventilation selon la revendication 2, caractérisée en ce qu'au moins un canal de ventilation (15 ; 68, 69 ; 76, 86, 87 ; 108, 109 ; 120, 121 ; 176, 177 ; 187, 188) est prévu entre le respectivement un ruban latéral (11, 12 ; 30, 31 ; 67, 81, 106, 118) et le ruban central (13, 32, 61, 77, 105, 111).
  4. Bande de ventilation selon la revendication 1, caractérisée en ce que la bande de ventilation (10, 45, 60, 75, 85, 107, 110) est un rouleau dans le premier état.
  5. Bande de ventilation selon la revendication 1, caractérisée en ce que la bande de ventilation (10, 45, 60, 75, 85, 107, 110) est déroulée dans le second état.
  6. Bande de ventilation selon la revendication 1, caractérisée en ce que la bande de ventilation (10, 45, 60, 75, 85, 107, 110) est constituée d'un matériau qui exerce lors du déroulement des forces de rappel de sorte que le canal de ventilation ((15 ; 68, 69 ; 76, 86, 87 ; 108, 109 ; 120, 121 ; 176, 177 ; 187, 188) soit mis en place.
  7. Bande de ventilation selon la revendication 1, caractérisée en ce que le canal de ventilation (15 ; 68, 69 ; 76, 86, 87 ; 108, 109 ; 120, 121 ; 176, 177 ; 187, 188) est mis en place par action d'une force externe sur la bande de ventilation (10, 45, 60, 75, 85, 107, 110).
  8. Bande de ventilation selon la revendication 6, caractérisée en ce qu'elle est constituée d'un matériau qui induit les forces de rappel.
  9. Bande de ventilation selon la revendication 1, caractérisée en ce que des éléments élastiques (167, 168), qui induisent la mise en place du canal de ventilation, sont incorporés au canal de ventilation (15 ; 68, 69 ; 76, 86, 87 ; 108, 109 ; 120, 121 ; 176, 177 ; 187, 188).
  10. Bande de ventilation selon la revendication 1, caractérisée en ce que la bande de ventilation (10, 45, 60, 75, 85, 107, 110) est constituée d'un matériau sensiblement souple.
  11. Bande de ventilation selon la revendication 1, caractérisée en ce que les canaux de ventilation (68, 69 ; 86, 87 ; 108, 109) sont aménagés l'un à côté de l'autre.
  12. Bande de ventilation selon la revendication 1, caractérisée en ce que les canaux de ventilation sont aménagés l'un au-dessus de l'autre.
  13. Bande de ventilation selon la revendication 1, caractérisée en ce que les canaux de ventilation sensiblement fermés (15, 68, 69) présentent à l'état monté une section transversale rectangulaire.
  14. Bande de ventilation selon la revendication 1, caractérisée en ce que les canaux de ventilation sensiblement fermés (76) ont à l'état monté en coupe transversale la forme d'un trapèze.
  15. Bande de ventilation selon la revendication 1, caractérisée en ce que les canaux de ventilation sensiblement fermés (86, 87 ; 108, 109) présentent à l'état monté une section transversale de forme triangulaire.
  16. Bande de ventilation selon la revendication 1, caractérisée en ce que les canaux de ventilation sensiblement fermés présentent à l'état monté une section transversale en forme de gaine.
  17. Bande de ventilation selon la revendication 1, caractérisée en ce que les percées (35-44, 50, 51) sont des trous circulaires.
  18. Bande de ventilation selon la revendication 1, caractérisée en ce que les percées (20-25 ; 70-74 ; 83, 84 ; 91, 92 ; 94, 95 ; 125-127) sont des trous rectangulaires.
  19. Bande de ventilation selon la revendication 1, caractérisée en ce que les percées (79, 80 ; 91, 92) sont des trous en forme de U.
  20. Bande de ventilation selon la revendication 1, caractérisée en ce qu'il est prévu entre le premier et le second type de percées une retenue d'eau (96, 98).
  21. Bande de ventilation selon la revendication 1, caractérisée en ce que les premières et les secondes percées (20, 21 ou 26, 27) sont décalées l'une par rapport à l'autre.
  22. Bande de ventilation selon la revendication 1, caractérisée en ce qu'il est prévu des ouvertures séparées entre les premières percées (20-25) et les rubans latéraux.
  23. Bande de ventilation selon la revendication 4, caractérisée en ce que les canaux de ventilation s'ouvrent automatiquement après le déroulement sous l'effet de forces de rappel intégrées.
  24. Bande de ventilation selon la revendication 4, caractérisée en ce que les canaux de ventilation sont ouverts par extension latérale de la bande de ventilation.
EP07785806.6A 2007-06-05 2007-06-05 Dispositif de ventilation, notamment pour toits pentus Active EP2152982B1 (fr)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
PCT/EP2007/004981 WO2008148408A1 (fr) 2007-06-05 2007-06-05 Dispositif de ventilation, notamment pour toits pentus

Publications (2)

Publication Number Publication Date
EP2152982A1 EP2152982A1 (fr) 2010-02-17
EP2152982B1 true EP2152982B1 (fr) 2016-02-10

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US (1) US8726593B2 (fr)
EP (1) EP2152982B1 (fr)
CN (1) CN101688398B (fr)
DK (1) DK2152982T3 (fr)
ES (1) ES2566773T3 (fr)
HR (1) HRP20090622B1 (fr)
HU (1) HUE028941T2 (fr)
PL (1) PL2152982T3 (fr)
RS (1) RS52975B (fr)
WO (1) WO2008148408A1 (fr)

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Also Published As

Publication number Publication date
RS52975B (sr) 2014-02-28
PL2152982T3 (pl) 2016-09-30
WO2008148408A1 (fr) 2008-12-11
CN101688398A (zh) 2010-03-31
US8726593B2 (en) 2014-05-20
HUE028941T2 (hu) 2017-01-30
HRP20090622B1 (hr) 2017-06-02
US20100154337A1 (en) 2010-06-24
ES2566773T3 (es) 2016-04-15
CN101688398B (zh) 2013-12-04
EP2152982A1 (fr) 2010-02-17
HRP20090622A2 (hr) 2009-12-31
RS20090505A (en) 2010-10-31
DK2152982T3 (en) 2016-04-11

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