EP0715671B1 - Dispositif d'aeration pour toits - Google Patents

Dispositif d'aeration pour toits Download PDF

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Publication number
EP0715671B1
EP0715671B1 EP94925473A EP94925473A EP0715671B1 EP 0715671 B1 EP0715671 B1 EP 0715671B1 EP 94925473 A EP94925473 A EP 94925473A EP 94925473 A EP94925473 A EP 94925473A EP 0715671 B1 EP0715671 B1 EP 0715671B1
Authority
EP
European Patent Office
Prior art keywords
collar
cap
ventilator according
roof ventilator
connection pipe
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.)
Expired - Lifetime
Application number
EP94925473A
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German (de)
English (en)
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EP0715671A1 (fr
Inventor
Klaus Craemer
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Individual
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Individual
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Filing date
Publication date
Application filed by Individual filed Critical Individual
Priority to SI9430203T priority Critical patent/SI0715671T1/xx
Publication of EP0715671A1 publication Critical patent/EP0715671A1/fr
Application granted granted Critical
Publication of EP0715671B1 publication Critical patent/EP0715671B1/fr
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

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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
    • E04D13/14Junctions of roof sheathings to chimneys or other parts extending above the roof
    • E04D13/147Junctions of roof sheathings to chimneys or other parts extending above the roof specially adapted for inclined roofs
    • E04D13/1471Junctions of roof sheathings to chimneys or other parts extending above the roof specially adapted for inclined roofs using a hinge mechanism for adaptation to the inclined roof

Definitions

  • the invention relates to a roofing slab designed roof vent with a medium-sized, dome-shaped cathedral that is taller in height than its width and less than its length, and the top has an opening for passage a ventilation connection pipe, the diameter of which is about corresponds to the width of the cathedral and is smaller than its length, and which one the top of the cathedral overlapping cap has one in the crown area Has air passage hole and covering the Distance extends that the ventilation connection pipe in the direction the length of the cathedral to the edge of the cathedral.
  • a roof vent of this type is European Patent application 0 454 900 known.
  • Such one Tilt adjustment of matching roof covering slabs form both technically and functionally the basic type of a variable roof accessory (e.g. breather, antenna carrier bushing).
  • a variable roof accessory e.g. breather, antenna carrier bushing.
  • an elongated hole in the cathedral is necessary, the favorable basic condition is inherent before, the cross section of the circular ventilation connection pipe larger in cross section in the area of the opening of the cathedral to train.
  • Such an increase in cross-section drops in its venting effectiveness itself then still significant if an inclination adjustment the usual cap is the elongated hole size bridged, compare Figure 9 of the above EPOS.
  • a solution can also be found from the same, after the dome and ventilation connection pipe integrally molded are.
  • the desired low fan is in both cases in front, which can optionally be covered with a cover cap can be. But because of the semi-spherical shape the opening from the apex in the two end areas more or less towards the foot of the cathedral falls, especially with such roofing slabs, which has a strongly relief-like profile have something in the case of low fans that require covering greater clearance or overhang of the cathedral desired.
  • the object of the invention is a generic Roof vent so that with structural and technically simple means a larger projection is achieved.
  • the procedure is such that the connecting edge of the Air passage hole of the cap the ventilation connection pipe surrounds by a distance that the cap from the connecting edge out into a substantially vertically projecting upward Collar merges and that the upper front edge of the Ventilation connection pipe over an opening Funnel continues in the inner wall of the collar.
  • the collar also has a cross section larger, longitudinal diameter in whose Extend the ventilation connection pipe, which is circular in cross section itself over funnel-shaped sliding surfaces the inner wall of the collar continues and that each perpendicular to this extension in a smaller one Diameter of the collar cross-section the inner walls of collar and ventilation connection pipe in one level lie.
  • the invention further proposes that the cross section of the support fingers is flat and this at an acute angle to the course of the front edge of the collar lies.
  • the latter produces a larger area Cross-section as the shortest way the front edge crossing support finger.
  • an index lead on the jacket wall of the ventilation connection pipe which an index opening at the cathedral is assigned, in which the Index lead to fit the assembly end position of the Ventilation connection pipe enters. That way ensures that only form-coordinated Parts are assembled on the building, which is also in the Is important with regard to product liability.
  • the collar and the Overlap to the jacket wall of the collar on the ridge side on greatest is. This results in an effective baffle for Running water.
  • the assignment individualization is optimized the main parts of the roof vent, if it is done that the index lead as going beyond the dimension of a wall thickness of the cathedral Wall protuberance is formed and the Index opening as a form-fitting receptacle on the cap.
  • One the corresponding "keyhole", ie recording, the cap which does not have, cannot be used, i.e. can be assigned to the cathedral, unless you remove the index lead. This but would have the formation of a leak Gap.
  • the formation of a protuberance is easy to manufacture and without much effort realizable. So it is also an advantage if the recording designed as a wall protuberance of the cap is.
  • the corresponding wall protrusion of the cap follows the outer contour of the wall protuberance of the cathedral.
  • the roof vent D is designed as a low fan assignable to a roof covering plate 1 (roof tile).
  • the latter has an essentially rectangular plan on. It is the shape or the type of it surrounding roofing slabs corresponding to the roof skin designed.
  • roof covering plate 1 From the profiled also in the manner of roof tiles Covering plate 1 goes to an upward-facing dome 2 out.
  • the roof covering plate 1 is molded on the same and extends in the central area of the same. He (2) is further in the inclination direction of the roof covering plate 1 longer than its width.
  • the height of the dome 2 is greater than that Width and less than the length of the cathedral. It deals is a double curved projection, the im essentially parallel parts of the cathedral 2 in the foot or base area of the same flat, vertical Form side walls 3, which in the upper area dome-shaped. In the longitudinal direction there is a Greater curvature in terms of radius than in the transverse direction.
  • the one that determines the curvature of the longitudinal curvature Radius R is based approximately at the intersection of the diagonals of the Basically rectangular roofing tile. This radius point is denoted by x and is approximately at the level of Underside of 1.
  • the radius point of the transverse arch bears the reference symbol x '.
  • the transition of the side walls 3 in the transverse curvature also lies on a circular one Arc path B around the radius point x.
  • the one from the radius point x 'outgoing radius R' is approximately half the length the radius 'R' starting from the radius point x
  • the apex region is of the cathedral 2 cut open. He describes an im essential oval elongated hole 4. That from the start the inclination adjustability of a sweeping Ventilation connection tube 5 parked slot 4 is from Overlay the material of the roof vent D to close it. It is a cap 6. The latter is the Ventilation connection pipe 5 molded on the same. The cap 6 takes at least one of the outer surface of the Domes 2 correspondingly adapted shape, supports so full and tight in the crown area of the cathedral 2 from. The course corresponding to the contour is partially Figures 1 and 10 emerge.
  • the cap 6 seated on the dome 2 then goes to an upper oval, approximately the contour of the elongated hole 4 corresponding or elliptical connecting edge 7 in one essentially vertical collar 8 over. That brings a chimney-shaped elevation of the practically otherwise the coupling of the cap 6 forming the ventilation level, in which a ventilation grille 9 is formed.
  • the ventilation grille 9 here consists of two the central area of the roof vent D cross bars 10. These are placed just below the upper front edge 11 of the cross-sectionally elliptical collar 8. It is in Cross-section rectangular bars with the longer one Point side down. As shown in Figure 3, extend the bars 10 of the ventilation grille 9 in Area of the shorter elliptical axis of the collar 8. You connect the longer, flatter domed sections a of the collar 8 and thus convey a high inner Stability.
  • the upper end edge 12 of the ventilation connection pipe 5 settles in via an upwardly opening funnel T in the inner wall of the collar 8 continues; its (T) edge is rooted in this. In this way, pointing in the longer ellipse axis, two crescent-shaped sliding surfaces 13 and 14.
  • This collar clearly above the circular cross section of the Ventilation connection pipe 5 and go from their highest, extreme point in the manner of a penetration line back to the height of the upper front edge 12.
  • This Wedge area runs in the area of the shorter Ellipse axis to zero (compare FIGS. 1 and 10), so that there is the same level of the inner surface of the Ventilation connection pipe 5 and inner wall of the collar 8 becomes recognizable.
  • the pitch angle of the two sliding surfaces 13.14 is 30 °, measured to a horizontal.
  • the sliding surfaces 13, 14 conduct when the ventilation grille is left open 9 For example, rain in the ventilation connection pipe 5. In return, for the rising Steam etc. a relaxation zone with the effect increased ventilation efficiency.
  • the tube 5 ends in a kind of bowl.
  • the upward collar 8 is on its top cut at an angle.
  • the bevel cut is at 15 ° a horizontal line.
  • the front edge 11 takes in the direction the ridge a greater height to the elliptical edge of the hole 15 of the collar 8 as the eaves side.
  • the relationship is approximately 7: 1. There is almost parallelism to the slope of the roofing slab (see Figures 1 and 10).
  • the collar 8 sits down say as a section of equal height in the attachment point Connection edge 7 of the cap 6 continues.
  • the height of this section corresponds approximately to the height of the ridge-side Section of the collar 8.
  • the funnel T about halfway up the collar, but that funnel end through the bevel cut of the front edge 11 increasingly wedges.
  • the floating of running water avoids. Rather, it brings closer curved section b of the elliptical wall the collar 8 a kind of flow divider for the Case that the running water should go higher than that there, i.e. ridge side, deep-drawn cap 6.
  • the cap 6 is even drawn strikingly lower on the ridge side.
  • Your first-sided edge section 16 is except for the Bottom of a recess 17 of the roofing slab extended.
  • On the bottom of the recess 17 is supported the edge section 16 from. Swiveling the cap 6 and thus the ventilation connection pipe 5 about the axis x is not possible on the ridge side.
  • there is also one that prevents it from tilting Support. The latter is that the eaves-side edge edge section of the elongated hole 4 itself in the throat between the underside of the sliding surface 14 and supports the jacket wall of the ventilation connection pipe 5.
  • the third support point that prevents tipping the three-point bondage thus created is of a bar 18 formed. It sets in pairs on the wall the ventilation connection pipe 5, in the area the horizontal axis labeled x. Said Strips 18 extend in the diametral of the tube 5, in the plane of the shorter axis of the ellipse. They sit in a storage recess 19 of the parallel Side walls 3 of the dome 2.
  • Figure 4 illustrates an am lower end of the bar 19 realized bevel 20, which is the receiving hole of the roofing slab expands slightly during clip assembly, i.e. so the side walls 3 of the cathedral 2 spreads slightly, which then, under the effect of the restoring force of the material again approach each other until they are the wall of the ventilation connection pipe 5 touch again.
  • the opening ⁇ of the chimney-like collar 8 is taken into account a precaution to assign a cover cap 23.
  • Of the Locking pin 25 is also molded as a hollow pin and runs parallel to a downward facing wall 27 of the cover cap 23.
  • the jacket wall 27 surrounds in an overlapping assignment the collar 8 with good ventilation, i.e. as little pressure loss as possible Flow-creating radial and vertical section to the collar wall.
  • Figures 1 and 10 make it clear that the collar 8 and the overlap to the jacket wall of the Collar are largest on the ridge side.
  • the first-sided End of the jacket wall 27 of the cap 23 forms one effective splash water baffle.
  • the parallel rectification of the central locking pin 25 and the jacket wall 27 enables a cross slide free Demold the cover cap 23.
  • the cover cap 26 23 is both sloping in the ridge / eaves as well as slightly convex in parallel from above arched.
  • the ceiling 26 runs in its basic orientation acute to a horizontal. This angle is at approx. 10 ° to the horizontal.
  • the plug-in active points to the captive assignment Section of the locking pin 25 a cross recess. This creates four locking hooks 28 with outward directional locking lug 29. It engages under the lower one Front edge of a sleeve 30 forming the plug receptacle 24.
  • the sleeve 30 is between the pair and parallel Lattice bars 10 lying, molded onto them. So it essentially forms one in the center longer elliptical axis oriented, approximately double semicircular Material bridge between the two bars 10th
  • the cover cap 23 In addition to the central locking pin 25 are the cover cap 23 four support fingers 31 formed. Hold the latter the cap 23 at a vertical distance from the front edge 11 of the collar 8. They leaned against this edge of the forehead 11 onwards. It is about the support fingers free-standing formations below the ceiling 26. How Figure 5 illustrates, there is a sufficient edge distance before, which is preferably the same all around spaced vent gap 32 leaves.
  • the cross section the support finger 31 is long rectangular. The corresponding flat shape goes from the figure mentioned forth.
  • the support fingers 31 are in the narrower curvature areas the one that is also elliptical in outline Cover cap 23 realized. They point with their longer ones Extension edge in the direction of the central locking pin 25. As a result, they lie at an acute angle to the course of the Front edge 11 of the collar 8. So there is a larger area Support cross section before than with a strict one transverse alignment to the front edge 11.
  • FIGS. 1, 6 and 10 are Support fingers 31 of different lengths.
  • the first-sided are shorter, the eaves-sided of about double Length. This brings the closeness of the ridge closer upper end edge 11 to the ceiling 26. Something striking Splashing water is not easy in the Able to get into the opening ⁇ .
  • the eaves side an almost double distance between the one there Area of the front edge 11 and the ceiling 26 in front. Any splashing water reaching the ceiling 26 or Consensus flows according to the concave seen from the inside Curvature of the ceiling 26 in the area of the inside of the Shell wall 27 of the cover cap 23. It gets wide there spaced away from the collar 8.
  • the lower edge 6 'of the cap 6 is curved in the shape of a protective helmet, favored by the corresponding neck side that is, first-side lowering of its edge section 16. Such a curly, practically parallel to the room extending lower edge also has the hole-overlapping Cover cap 23, i.e. the lower front edge 27 ' her wall 27.
  • the gap spacing can go to zero on the ridge side.
  • the matching index opening 22 is the inside of the Molded cap 6. Also the index opening 22 as a form-fitting one Recording for the index projection 21 on the cap 6 is generated in the form of a wall protuberance.
  • Both the index projection 21 and the index opening 22 are designed in the form of ribs.
  • the index lead 21 forming rib extends in the roof pitch direction in the plane E-E (Fig. 13), namely lying on the eaves side. It goes all over the back of the Domes 2, i.e. starting at the edge of slot 4 and ending at the foot of the cathedral 2, formed from the top of the covering plate 1.
  • the corresponding individualization means works like this with an inclinable Roof vent, since the ribs in the direction of inclination the cap 6 tiltable by x and the corresponding tilting ventilation connection pipe 5.
  • a similar individualization device can be used on the ridge side be provided.
  • the index lead 21 and the index opening 22, i.e. their respective same-wall protuberance or ribs in the Cross-section are designed essentially trapezoidal with the base facing the inside of the cathedral are the corresponding ones Undercuts according to Figures 16 and 18.
  • the undercut flanks of the index projection 21 are denoted by 21 'and the undercut flanks the wall protuberance forming the index opening 22 at 22 '.
  • 21 ' lies the basis of the also trapezoidal Cross-section zone but facing away from the cathedral 2.
  • the variant according to FIG. 18 is based on the same basic principle like that of Figure 17, except that at the top of the triangle a strip-like shape which forms the index lead 21 Bridge 38 attaches, from its dome-side cross center the leg-forming profile 39 go out, which towards the dome 2 including an angle of diverge approx. 90 °. Place webs 38 and legs 39 a clear K profile, the free ends of the Change leg into the shape of dome 2.
  • the K-typical Gusset spaces 40 form locking recesses for locking projections 41 at the edge of the groove-shaped index opening 22.
  • the locking projections are emphasized on the free Ends of the web 38 can be pressed. In certain cases but also end-face threading of the components 2 and 6 grab.
  • the K can be recognized as a symbol of an indication of origin as an initial for "Klöber".

Landscapes

  • Architecture (AREA)
  • Civil Engineering (AREA)
  • Structural Engineering (AREA)
  • Engineering & Computer Science (AREA)
  • Building Environments (AREA)
  • Roof Covering Using Slabs Or Stiff Sheets (AREA)
  • Ventilation (AREA)
  • Buildings Adapted To Withstand Abnormal External Influences (AREA)
  • Sink And Installation For Waste Water (AREA)
  • Air-Flow Control Members (AREA)
  • Glass Compositions (AREA)
  • Control Of Motors That Do Not Use Commutators (AREA)
  • Massaging Devices (AREA)

Claims (18)

  1. Aérateur de toiture (D) réalisé sous la forme d'une plaque de couverture de toiture (1) avec un dôme (2) en forme de coupelle, placé centralement, dont la hauteur est supérieure à la largeur et inférieure à sa longueur, et qui comporte en face supérieure une ouverture destinée au passage d'un tube de raccordement d'aération (5), dont le diamètre correspond environ au diamètre du dôme (2) et est inférieur à sa longueur et qui comporte un capuchon (6) recouvrant le bord supérieur du dôme (2), capuchon présentant dans la zone de sommet un trou de passage d'air avec une arête de raccordement (7) et s'étendant en recouvrement sur la distance que laisse subsister le tube de raccordement d'aération (5), en direction de la longueur du dôme (2) vis-à-vis de la hordure de ce dôme, caractérisé en ce que l'arête de raccordement (7) du trou de passage d'air du capuchon (6) entoure le tube de raccordement d'aération (5) à distance, en ce que le capuchon (6) se transforme, en partant de l'arête de raccordement (7), en une collerette faisant saillie vers le haut sensiblement verticalement, et en ce que le bord frontal supérieur (12) du tube de raccordement de ventilation (5) se prolonge par un entonnoir (T) s'ouvrant vers le haut, dans la paroi intérieure de la collerette (8).
  2. Aérateur de toiture selon la revendication 1, caractérisé en ce que la collerette (8) présente en section transversale un diamètre, supérieur dans la direction longitudinale, dans l'étendue duquel le tube de raccordement d'aération (5) à section transversale circulaire se prolonge par des surfaces de glissement (13, 14) en forme d'entonnoir, pour donner la paroi intérieure de la collerette (8), et en ce que chaque fois, perpendiculairement par rapport à cette étendue, là où l'on a le plus petit diamètre de la section transversale de collerette, les parois intérieures de la collerette (8) et du tube de raccordement de ventilation (5) sont situées dans un même plan.
  3. Aérateur de toiture selon l'une ou plusieurs des revendications précédentes. caractérisé en ce qu'une grille d'aération (9) est disposée dans la collerette (8).
  4. Aérateur de toiture selon l'une ou plusieurs des revendications précédentes. caractérisé par un logement d'enfichage (24), disposé centralement par rapport à l'axe (y-y) du tube de raccordement d'aération, destiné à un tourillon d'encliquetage (25) d'un capuchon de recouvrement (23) comportant une paroi d'enveloppe (27) orientée vers le bas. qui s'étend à une distance de la valeur d'un interstice, en courant parallèlement à la paroi de la collerette (8).
  5. Aérateur de toiture selon l'une ou plusieurs des revendications précédentes, caractérisé en ce que les barres de grillage (10) de la grille d'aération (9) s'étendent dans le petit axe de l'ellipse.
  6. Aérateur de toiture selon la revendication 3 ou 5, caractérisé en ce que le logement d'enfichage (24) est situé entre les barres de grille (10) de la grille d'aération (9).
  7. Aérateur de toiture selon l'une ou plusieurs des revendications précédentes, caractérisé par une transition exempte de contre-dépouille entre la bordure frontale supérieure (12) du tube de raccordement d'aération (5) et de la paroi intérieure de la collerette (8).
  8. Aérateur de toiture selon la revendication 4, caractérisé en ce que le capuchon de recouvrement (23) comporte en plus du tourillon d'encliquetage central (25) des
       doigts d'appui (31) de longueurs différentes, prenant appui sur le bord frontal supérieur (11) de la collerette (8).
  9. Aérateur de toiture selon une ou plusieurs des revendications précédentes, caractérisé en ce que le bord frontal supérieur (11) de la collerette (8) est découpé en descendant obliquement dans la direction de l'inclinaison de la toiture.
  10. Aérateur de toiture selon la revendication 8, caractérisé en ce que la section transversale des doigts d'appui (31) a une forme plate et est située sous un angle aigu par rapport à l'allure de la bordure frontale (11) de la collerette.
  11. Aérateur de toiture selon l'une ou plusieurs des revendications précédentes, caractérisé par une saillie d'indexation (21) réalisée sur la paroi d'enveloppe du tube de raccordement d'aération (5), saillie (21) à laquelle est associée une ouverture d'indexation (22). ménagée sur le dôme (2) et dans laquelle la saillie d'indexation (21) pénètre pour ajuster la position de montage finale du tube de raccordement d'aération (5).
  12. Aérateur de toiture selon l'une ou plusieurs des revendications précédentes. caractérisé en ce que la collerette (8) et le chevauchement par rapport à la paroi d'enveloppe de la collerette (8) sont les plus grands du côté du faíte.
  13. Aérateur de toiture selon la revendication 11, caractérisé en ce que la saillie d'indexation (21) est constituée sous la forme d'un renflement vers l'extérieur de la paroi faisant la distance d'une épaisseur de paroi du dôme (2) et l'ouverture d'indexation (22) est réalisée sous la forme d'un logement à forme associée ménagée sur le capuchon (6).
  14. Aérateur de toiture selon la revendication 13, caractérisé en ce que le logement est également constitué par un renflement de paroi du capuchon (6).
  15. Aérateur de toiture selon la revendication 11, caractérisé en ce que la saillie d'indexation (21) et l'ouverture d'indexation (22) sont configurées sous la forme de nervures s'étendant dans la direction d'inclinaison de la toiture. faisant tout l'arrière du dôme (2), respectivement la hauteur du capuchon (6).
  16. Aérateur de toiture selon la revendication 15, caractérisé en ce que les nervures sont dotées d'une contre-dépouille.
  17. Aérateur de toiture selon la revendication 16, caractérisé en ce que la contre-dépouille est constituée par un profilé en K.
  18. Aérateur de toiture selon la revendication 11, caractérisé en ce qu'à l'ouverture d'indexation (22) est associée, dans la zone d'une embouchure de gorge (35) proche du bord de capuchon, une pièce de fermeture (36) maintenue par des nervures destinées à la rupture (37).
EP94925473A 1993-09-02 1994-08-24 Dispositif d'aeration pour toits Expired - Lifetime EP0715671B1 (fr)

Priority Applications (1)

Application Number Priority Date Filing Date Title
SI9430203T SI0715671T1 (en) 1993-09-02 1994-08-24 Roof ventilating device

Applications Claiming Priority (3)

Application Number Priority Date Filing Date Title
DE4329618 1993-09-02
DE4329618A DE4329618A1 (de) 1993-09-02 1993-09-02 Dachentlüfter
PCT/EP1994/002801 WO1995006792A1 (fr) 1993-09-02 1994-08-24 Dispositif d'aeration pour toits

Publications (2)

Publication Number Publication Date
EP0715671A1 EP0715671A1 (fr) 1996-06-12
EP0715671B1 true EP0715671B1 (fr) 1998-12-16

Family

ID=6496655

Family Applications (1)

Application Number Title Priority Date Filing Date
EP94925473A Expired - Lifetime EP0715671B1 (fr) 1993-09-02 1994-08-24 Dispositif d'aeration pour toits

Country Status (8)

Country Link
EP (1) EP0715671B1 (fr)
AT (1) ATE174650T1 (fr)
AU (1) AU7536994A (fr)
CZ (1) CZ288807B6 (fr)
DE (2) DE4329618A1 (fr)
DK (1) DK0715671T3 (fr)
ES (1) ES2126142T3 (fr)
WO (1) WO1995006792A1 (fr)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP2818802A1 (fr) 2013-06-25 2014-12-31 Monier Roofing Components GmbH Dispositif de ventilation de toit en matière minérale, en particulier en argile

Family Cites Families (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE2559412A1 (de) * 1975-08-07 1977-02-10 Kloeber Johannes Dachdurchfuehrung
FR2348338A1 (fr) * 1976-04-12 1977-11-10 Serva Soc Dispositif de sortie en toiture pour conduits de ventilation
DE3643319A1 (de) * 1986-12-18 1988-06-30 Kloeber Johannes Dacheindeckungsplatte
DE3937571A1 (de) * 1989-11-11 1991-05-16 Friedrich Wiegand Gmbh Universal-dachentluefter
DE9005009U1 (de) * 1990-05-03 1991-08-29 Klöber, Johannes, 5828 Ennepetal Dachentlüfter

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP2818802A1 (fr) 2013-06-25 2014-12-31 Monier Roofing Components GmbH Dispositif de ventilation de toit en matière minérale, en particulier en argile
DE102013106605A1 (de) 2013-06-25 2015-01-08 Monier Roofing Components Gmbh Dachentlüftungsvorrichtung aus einem mineralischen Werkstoff, insbesondere Ton

Also Published As

Publication number Publication date
CZ288807B6 (cs) 2001-09-12
ES2126142T3 (es) 1999-03-16
DK0715671T3 (da) 1999-08-23
ATE174650T1 (de) 1999-01-15
WO1995006792A1 (fr) 1995-03-09
DE4329618A1 (de) 1995-03-09
AU7536994A (en) 1995-03-22
CZ60696A3 (en) 1996-07-17
DE59407498D1 (de) 1999-01-28
EP0715671A1 (fr) 1996-06-12

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