EP1992756B1 - Toit à lamelles - Google Patents

Toit à lamelles Download PDF

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Publication number
EP1992756B1
EP1992756B1 EP20080004890 EP08004890A EP1992756B1 EP 1992756 B1 EP1992756 B1 EP 1992756B1 EP 20080004890 EP20080004890 EP 20080004890 EP 08004890 A EP08004890 A EP 08004890A EP 1992756 B1 EP1992756 B1 EP 1992756B1
Authority
EP
European Patent Office
Prior art keywords
bearing
slat
roof
slats
slat roof
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.)
Not-in-force
Application number
EP20080004890
Other languages
German (de)
English (en)
Other versions
EP1992756A3 (fr
EP1992756A2 (fr
Inventor
Leo Smout
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.)
Allwetterdach Esco Firma GmbH
Original Assignee
Allwetterdach Esco Firma 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 Allwetterdach Esco Firma GmbH filed Critical Allwetterdach Esco Firma GmbH
Publication of EP1992756A2 publication Critical patent/EP1992756A2/fr
Publication of EP1992756A3 publication Critical patent/EP1992756A3/fr
Application granted granted Critical
Publication of EP1992756B1 publication Critical patent/EP1992756B1/fr
Not-in-force legal-status Critical Current
Anticipated expiration legal-status Critical

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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
    • E06B7/00Special arrangements or measures in connection with doors or windows
    • E06B7/02Special arrangements or measures in connection with doors or windows for providing ventilation, e.g. through double windows; Arrangement of ventilation roses
    • E06B7/08Louvre doors, windows or grilles
    • E06B7/084Louvre doors, windows or grilles with rotatable lamellae
    • E06B7/086Louvre doors, windows or grilles with rotatable lamellae interconnected for concurrent movement
    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04BGENERAL BUILDING CONSTRUCTIONS; WALLS, e.g. PARTITIONS; ROOFS; FLOORS; CEILINGS; INSULATION OR OTHER PROTECTION OF BUILDINGS
    • E04B7/00Roofs; Roof construction with regard to insulation
    • E04B7/16Roof structures with movable roof parts
    • E04B7/163Roof structures with movable roof parts characterised by a pivoting movement of the movable roof parts

Definitions

  • the present invention relates to a lamellar roof with a plurality of mutually parallel lamellae, which at their transverse sides in each case by means of a lamella bearing, in which engages a corresponding bearing pin of the lamella about a longitudinal extension parallel to the pivot axis of stationary side parts between an open position and a closed position are pivotally mounted, wherein the lamellae cover in the closed position, each with its front edge, the trailing edge of the preceding lamella, and wherein each of the lamella bearing has a bearing shoe with which the corresponding bearing pin of the lamella is engaged.
  • Lamella roofs of the type mentioned are, for example, from the European patent EP 1 127 992 B1 and from the European patent EP 1 340 863 B1 known.
  • the lamella roofs disclosed in the two publications mentioned above can optionally be closed by a user in a rain-tight manner or opened in a manner permeable to light and air.
  • the slats are pivotally mounted between stationary side parts at their narrow transverse sides about an axis lying in the longitudinal direction lamella.
  • actuating mechanism which can be actuated by hand or by means of a motor drive, several, but mostly all lamellas of the lamellar roof can be pivoted jointly around their pivot axis for opening or closing.
  • the slats with respect to a roof surface are perpendicular or at least almost vertical, so that through the spaces between the slats a free light and air exchange is possible. Furthermore, the two side surfaces of the slats are accessible in this position for cleaning.
  • To close the slats are pivoted from the vertical position in the direction of the roof level. The fact that the individual slats are wider than their axial distance from each other, they overlap with their longitudinal edges when they are rotated from the vertical in the roof plane.
  • the fully closed position of the lamellar roof is achieved when in each case a lamella with its downwardly pivoted when closing the lower longitudinal edge on the upper side in the region of the trailing edge of the preceding lamella comes to rest. Angle profiles attached to these edges and interlocking in the closed state ensure that the roof is rainproof and that precipitation can run off to the side.
  • the slats consist of a frame made of aluminum profiles, in each of which a transparent cover element, for example of glass, polycarbonate or acrylic glass is used.
  • the lamellae of the lamellar roof are mounted slightly inclined in the longitudinal direction, so that via a rain gutter in the region of the end faces of the lamellae a discharge of rainfall, in particular rainwater, can be achieved.
  • the DE 33 37 436 C2 discloses a slat roof of a plurality of mutually parallel slats, each with a lamella bearing on the stationary side parts, in each of which a projecting from the transverse sides of the lamella bearing pin engages a parallel to the longitudinal axis pivot axis such that the respective slats between an open position and a closed Position are pivotally mounted and cover the front edges in the closed position, the respective trailing edges of the front lying slat.
  • the Slat bearing has a bearing shoe with which the corresponding bearing pin of the pivot axis is engaged.
  • the present invention has for its object to provide a lamella roof of the type mentioned above, in which the lamella bearings are designed so that they can be mounted in a simple manner and improved distribution and dissipation of the forces acting in the lamellae forces can be achieved so that the life of the fins bearing can be increased.
  • each of the lamella bearing has a bearing shoe with which the corresponding bearing pin of the lamella is engaged.
  • the bearing shoes are designed so that they can improve the distribution or dissipation of the forces acting in the lamella bearings forces. By this measure, the life of the lamella bearings can be increased in a particularly advantageous manner.
  • the bearing shoes comprise a bearing base and a bearing upper part which can be connected during assembly. When mounting the bearing pin can first be inserted into the bearing base and then then the bearing shell can be placed on the bearing base and attached to this.
  • the bearing shoes of the disk bearings are arranged at a distance from one another on the side parts of the disk roof.
  • each of the side parts has a bevelled running, over the entire length of the side part extending paragraph on which the bearing shoes are arranged.
  • the paragraph may be formed as a fold, which is formed integrally with the side part.
  • the bearing bottom part and the bearing upper part can preferably have a cylinder wall section on an end facing the front side of the disk, the cylinder wall sections forming a substantially cylindrical passage for a free end of the bearing journal after assembly.
  • the disk bearings have an axial securing means suitable for securing the bearing journal received in the bearing shoe against axial displacement.
  • the axial securing means are particularly advantageous especially for those lamella bearings which are arranged on the "higher" of the two side parts of the lamellar roof.
  • the bearing shoe can form a receiving space in which the axial securing means is accommodated in a preferred embodiment.
  • the axial securing means is rotatable within the receiving space.
  • the receiving space for the axial securing means may be formed in the bearing base.
  • the axial securing means may be secured to the front end of the journal.
  • the axial securing means has a substantially truncated cone-shaped base body.
  • the outer diameter of the main body may in particular be greater than the outer diameter of the front end of the journal. Due to the comparatively large outer diameter and thus defined, also comparatively large base of the body, the axial securing means in cooperation with the bearing base and the bearing shell the distribution or the derivative of the forces acting after assembly and during use of the lamellar in the respective lamellae forces in particular improve advantageously.
  • the basic body has a projection and that the bearing journal has a notch at a front end into which the projection is inserted in a form-fitting manner.
  • the substantially cuboid approach of the axial securing means and the notch at the front end of the journal act together as anti-rotation means to prevent undesirable rotation of the Axialtechnischsffens to prevent effective relative to the journal effectively.
  • the approach may preferably be formed integrally with the base body.
  • a closing element is attached to a journal.
  • the journal is integrally formed with the respective end member.
  • the closing element can close off the end face of two profile bodies of the lamella, which extend in their longitudinal direction and between which a cover element of the lamella is arranged of a transparent material, and connect them to one another.
  • the fin elements of the fins may have at least one water outlet to improve drainage of rainwater.
  • a lamellar roof 1 which is constructed according to a preferred embodiment of the present invention, is shown in a closed position
  • the basic structural design of the lamellar roof 1 will first be explained in more detail below.
  • the lamellar roof 1 has two oppositely disposed, fixed side parts 8, of which in Fig. 1 and 2 however, only one is shown. Between the two side parts 8, a plurality of slats 2, which are mounted slightly inclined and pivotally mounted on their narrow end faces in each case by means of suitable lamella bearings 9, the structural design of which will be discussed in detail below.
  • Each of the slats 2 can by pivoting about its pivot axis from the in Fig. 1 and 2 shown closed position in which the lamellar roof 1 is closed off rain, be pivoted into a partially or fully open position.
  • a rain gutter 10 is attached to at least one of the two side parts 8, but preferably on both side parts 8, can drain over the rainwater, which hits the lamellar roof 1. Since the lamellae 2 of the lamellar roof 1 are mounted with a slight downward gradient on the stationary side parts 8, the water striking the lamellas 2 can flow down the lamellas 2 and be discharged via the rain gutter 10 in the region of the end faces of the lamellae 2. In a flat (not inclined) footprint is to achieve a Gradients for the slats 2 one of the two side parts 8 higher than the opposite side part. 8
  • a first (front) longitudinal edge 22 of the blade 2 a second (rear) longitudinal edge 21 of an adjacent slat 2 covers.
  • This overlap area between slats 2 arranged adjacent to one another is preferably made watertight in order to effectively prevent the penetration of water in the closed position of the slatted roof 1.
  • each lamella 2 of the lamellar roof 1 has two profile bodies 21, 22, which are preferably made of aluminum and extend in the longitudinal direction of the lamella 2.
  • the lamella roof 1 comprises a plurality of identically constructed lamella assemblies.
  • a substantially plate-shaped cover member 20 is arranged, which is preferably made of a transparent material, for example of glass, polycarbonate or polymethylmethacrylate (acrylic glass).
  • the two profile bodies 21, 22 each have a longitudinal groove (not provided with reference numerals), in each of which at least one sealing element 23a, 23b is received.
  • the two sealing elements 23a, 23b in turn have a likewise not provided with reference, extending in the longitudinal direction retaining groove, in each of which the one of the two longitudinal edges 201 adjacent region of the cover 20 is added to the cover 2 securely and sealed to the two profile bodies 21, 22 to fix.
  • the slats 2 are closed at each of its two opposite end faces in each case by means of a closing element 3, which, as for example in Fig. 3 and 4 to recognize, in the transverse direction between the two profile bodies 21, 22 extends.
  • the end elements 3 for the slats 2 are preferably also made of aluminum and provide a connection between the two profile bodies 21, 22 of the slat 2 ago. On the structural design of the end elements 3 will be discussed in more detail below.
  • a cover unit 4 is preferably provided on each of the two narrow end faces (transverse sides) of the lamella 2, which has a base plate 40 and at least two plate elements 41, 42 pivotally attached to the base plate 40.
  • the cover unit 4 has two pivotable plate elements 41, 42.
  • three pivotable plate members 41, 42, 43 are provided.
  • Each of the in Fig. 3 and 4 shown plate elements 41, 42, 43 has a bearing pin, which engages in a corresponding bearing sleeve on the base plate 40, so that the plate members 41, 42, 43 can be pivoted relative to the base plate 40.
  • overlap the lateral edges of the plate members 41, 42, 43 in the closed position of the louvered roof 1 such that a nearly complete privacy for the movable parts of the lamella 2 can be achieved.
  • the slats 2 of the lamellar roof 1 at their end faces in each case a pivot lever 5.
  • the front side each mounted on a bearing journal 34 of the cover 3 pivot lever 5 of the slats 2 are coupled to each other after assembly via suitable coupling means such that all Slats 2 of the lamellar roof 1 by hand or in an alternative embodiment also powered by a motor in the Fig. 1 and 2 shown closed position can be transferred to an at least partially or fully open position.
  • the end elements 3 are preferably produced in one piece from aluminum and have an upper part 30 and a lower part 31.
  • the closing element 3 On a side facing away from the profiled bodies 21, 22 of the lamella 2, the closing element 3 has two separating webs 32, 33 arranged at a distance from one another in the longitudinal direction, which project in each case from the upper part 30 and the lower part 31 and are substantially bow-shaped in this embodiment.
  • the separating webs 32, 33 point in the direction of one of the two side parts 8 during assembly.
  • a water outlet opening 35 is defined and limited up or down, preferably over almost the entire length of the closing element 3 extends.
  • Providing (at least) one water outlet opening 35 in the end element 3 of the lamella 2 has the advantage that in use (rain) water, which impinges on the cover element 20 of the lamella 2 and flows down thereon due to the slightly inclined arrangement of the lamella 2 the water outlet opening 35 flow and into a gutter 10 of the lamellar roof 1, which is arranged on the side parts 8 below the bearing elements 9, can flow.
  • the water outlet opening 35 is arranged at the level of the cover 20 of the lamella 2, so that the water from the cover 2 can flow freely through the water outlet opening.
  • the upper part 30 of the end element 3 has, on a rear side, which faces the two profile bodies 21, 22 of the lamella 2, two spaced-apart mounting elements 36, 37, which can be inserted during assembly into corresponding profile chambers of the profile bodies 21, 22. to connect the end element 3 frontally with the profile bodies 21, 22 of the slat 2.
  • the closing element 3 also has a plurality of through holes 38 through which during assembly, such as in Fig. 4 to recognize fastening screws 6 can be performed to secure the closure element 3 securely to the profile elements 21, 22.
  • a sealing element 39 is arranged in this embodiment, which extends in the longitudinal direction of the closing element 3 and thus after assembly in the transverse direction of the blade 2.
  • the sealing element 39 has an elongated rectangular bearing surface 390 for the cover element 20 of the lamella 2. It can be seen that the bearing surface 390 of the sealing element 39 is aligned with the upper boundary surface 310 of the lower part 31, so that the area adjacent to the transverse edge 200 of the cover 20, after mounting through the water outlet opening 35 extending portion after mounting on the support surface 390th the sealing element 39 on the one hand and on the upper Limiting surface 310 of the lower part 31 rests on the other hand.
  • the cover member 20 is flush after assembly 20 flush with the front boundary edge of the upper boundary surface 310 of the lower part 31.
  • the lower part 31 further comprises a bearing pin 34 which extends from the front of the lower part 31, which faces one of the two side parts 8 of the lamellar roof 1 in the assembled state, substantially orthogonal away.
  • a bearing pin 34 which extends from the front of the lower part 31, which faces one of the two side parts 8 of the lamellar roof 1 in the assembled state, substantially orthogonal away.
  • a closure element. 3 is provided with at least one water outlet opening 35.
  • the provided on the opposite end face of the blade 2 end element 3 does not necessarily have have at least one water outlet opening 35.
  • both end elements 3 are constructed identically.
  • Fig. 1 It can be seen that the side parts 8 have a beveled, executed here as a bevel paragraph 80. On this shoulder 80 of each of the two side parts 8 a plurality of lamella bearings 9 are arranged spaced from each other, each associated with one of the end elements 3 of the slats 2 of the lamellar roof 1. It should be noted at this point that in Fig. 1 and Fig.2 only for one of the slats 2, the fin bearing 9 is shown completely. For the two remaining slats 2, only the bearing pin 34 and the axial securing means 7 attached thereto are shown.
  • the lamella bearings 9 are designed in two parts in this embodiment and each have a bearing base 90, the in 6 and 7 is shown in perspective, as well as a connectable with this upper bearing part 91, which in 8 and 9 is shown in perspective include.
  • the bearing base 90 and the bearing shell 91 form after mounting a bearing shoe, which allows improved distribution or dissipation of the forces acting in the plate bearings 9 forces.
  • Both the bearing base 90 and the bearing upper part 91 are preferably made of plastic. In particular, a plastic which is resistant to the influence of ultraviolet radiation can be used to produce the lower bearing part 90 and the upper bearing part 91.
  • the bearing base 90 has on one of the end face of the blade 2 facing the end of a cylinder wall portion 903 which forms after mounting with a corresponding cylinder wall portion 912 of the bearing shell 91 a substantially cylindrical passage through which a front end of the bearing pin 34 is guided in the assembled state and by means of the axial securing means 7 is secured.
  • the bearing upper part 91 has two assembly pins 910, which are arranged at a distance from one another and are substantially cylindrically shaped, which can engage in corresponding assembly openings 900 which are formed in the bearing base 90.
  • the bearing upper part 91 further has two spaced-apart through holes 911 through which suitable mounting means, in particular mounting screws or the like, can be guided during assembly of the bearing upper part 91 on the bearing base 90 in order to securely fasten the bearing upper part 91 to the bearing base 90.
  • the fasteners engage in two corresponding, formed in the bearing base 90 holes 901, which can be threaded holes, for example.
  • the bearing base 90 forms, in particular in Fig. 6 to recognize a receiving space 904, in the assembly during the axial securing means 7 for the bearing pin 34, which will be explained in more detail below, is used.
  • the axial securing means 7, which in 10 and FIG. 11 is preferably made of plastic, in particular also made of a resistant to the influence of ultraviolet radiation plastic and has a substantially truncated cone-shaped base body 70, on which a in Substantial cuboid projection 71 is integrally formed. It can be seen that the two opposing, transversely extending narrow side surfaces 710 of the substantially parallelepiped-shaped projection 71 are arcuately shaped. The other two opposite side surfaces 711 in the longitudinal direction are executed flat compared.
  • the substantially parallelepiped-shaped projection 71 can form fit in an in Fig.
  • the substantially parallelepiped projection 71 of the axial securing means 70 and the notch 311 at the front end of the trunnion 34 together act as anti-rotation means to effectively prevent undesired rotation of the axial securing means 70 relative to the trunnion 34.
  • the axial securing means 7 has a central through-bore 72 which is suitable for receiving a mounting screw in order to secure the axial securing means 7 securely to the bearing journal 34.
  • the through hole 72 starting from the base body 70 initially has a diameter d 1 .
  • the bore 72 then decreases within the base body 70 in steps to a diameter d 2 and extends with this diameter d 2 on through the substantially rectangular projection 71 therethrough.
  • a mounting bolt or the like may be passed through the central through-hole 72 and fixed to the front end of the trunnion 34.
  • the outer diameter of the base body 70 is greater than the outer diameter of the front end of the journal 34 and chosen so that the axial securing means 7 can rotate freely in an adjustment of the inclination of the blade 2 in the receiving space 904 of the fin bearing 9.
  • the axial securing means 7 prevents the bearing bolt 34 from undesirably moving in the axial direction out of the bearing shoe, which is formed by the bearing base 90 and the bearing upper part 91, and improves in cooperation due to the comparatively large outside diameter and the comparatively large base area defined thereby with the bearing base 90 and the bearing upper part 91, the distribution or the derivative of the forces acting after assembly and during use of the lamellar roof 1 in the laminar bearing 9 forces.
  • the structural design described here is of great advantage in particular for those lamella bearings 9 which are arranged on the "upper" of the two side parts 8, from which the gradient of the lamellar roof 1 for the lamellae 2 starts, since in this case the loads occurring in the lamella bearing 9 are particularly great are high.

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  • Engineering & Computer Science (AREA)
  • Architecture (AREA)
  • Civil Engineering (AREA)
  • Structural Engineering (AREA)
  • Physics & Mathematics (AREA)
  • Electromagnetism (AREA)
  • Roof Covering Using Slabs Or Stiff Sheets (AREA)
  • Building Environments (AREA)
  • Fittings On The Vehicle Exterior For Carrying Loads, And Devices For Holding Or Mounting Articles (AREA)

Claims (13)

  1. Toit à lamelles (1) comprenant une pluralité de lamelles (2) disposées parallèlement les unes aux autres, qui sont montées au niveau de leurs côtés transversaux, de manière à pouvoir pivoter à chaque fois au moyen d'un support de lamelle (9), dans lequel s'engage un tourillon (34) correspondant de la lamelle (2), autour d'un axe de pivotement parallèle à leur étendue longitudinale au niveau de parties latérales fixes (8) entre une position ouverte et une position fermée, les lamelles (2), dans la position fermée, recouvrant à chaque fois avec leur bord avant le bord arrière de la lamelle (2) située devant elles, et chacun des supports de lamelles (9) présentant un patin de support avec lequel le tourillon (34) correspondant de la lamelle (2) est en prise, caractérisé en ce que les patins de support comprennent une partie inférieure de support (90) et une partie supérieure de support (91) pouvant être connectée à celle-ci lors du montage.
  2. Toit à lamelles (1) selon la revendication 1, caractérisé en ce que les patins de support des supports de lamelles (9) sont disposés sur les côtés latéraux (8) du toit à lamelles (1) de manière espacée les uns des autres.
  3. Toit à lamelles (1) selon la revendication 1 ou 2, caractérisé en ce que chacune des parties latérales (8) présente un épaulement (80) réalisé sous forme inclinée, s'étendant sur toute la longueur de la partie latérale (8), sur lequel sont disposés les patins de support.
  4. Toit à lamelles (1) selon l'une quelconque des revendications 1 à 3, caractérisé en ce que la partie inférieure de support (90) et la partie supérieure de support (91) présentent une portion de paroi cylindrique (903, 912) au niveau d'une extrémité tournée vers le côté frontal de la lamelle (2), les portions de paroi cylindriques (903, 912) formant après le montage un passage essentiellement cylindrique pour une extrémité libre d'un tourillon (34).
  5. Toit à lamelles (1) selon l'une quelconque des revendications 1 à 4, caractérisé en ce qu'au moins certains des supports de lamelles (9) présentent un moyen de fixation axiale (7) approprié pour fixer le tourillon (34) reçu dans le patin de support de manière à empêcher son déplacement axial.
  6. Toit à lamelles (1) selon la revendication 5, caractérisé en ce que le patin de support forme un espace de réception (904) dans lequel est reçu le moyen de fixation axiale (7).
  7. Toit à lamelles (1) selon la revendication 6, caractérisé en ce que l'espace de réception (904) est réalisé dans la partie inférieure de palier (90).
  8. Toit à lamelles (1) selon l'une quelconque des revendications 5 à 7, caractérisé en ce que le moyen de fixation axiale (7) est fixé à l'extrémité avant du tourillon (34).
  9. Toit à lamelles (1) selon l'une quelconque des revendications 5 à 8, caractérisé en ce que le moyen de fixation axiale (7) présente un corps de base (70) formé essentiellement sous forme tronconique.
  10. Toit à lamelles (1) selon la revendication 9, caractérisé en ce que le diamètre extérieur du corps de base (70) est supérieur au diamètre extérieur de l'extrémité avant du tourillon (34).
  11. Toit à lamelles (1) selon la revendication 9 ou 10, caractérisé en ce que le corps de base (70) présente un gradin (71) et en ce que le tourillon (34) présente, à une extrémité avant, une encoche (311) dans laquelle le gradin (71) est inséré par engagement positif.
  12. Toit à lamelles (1) selon la revendication 11, caractérisé en ce que le gradin (71) est réalisé intégralement avec le corps de base (70).
  13. Toit à lamelles (1) selon l'une quelconque des revendications 1 à 12, caractérisé en ce qu'un élément de terminaison (3) comprenant le tourillon (34) est monté à chaque fois sur les côtés frontaux des lamelles (2).
EP20080004890 2007-05-15 2008-03-15 Toit à lamelles Not-in-force EP1992756B1 (fr)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
DE200710023007 DE102007023007B8 (de) 2007-05-15 2007-05-15 Lamellendach

Publications (3)

Publication Number Publication Date
EP1992756A2 EP1992756A2 (fr) 2008-11-19
EP1992756A3 EP1992756A3 (fr) 2011-04-06
EP1992756B1 true EP1992756B1 (fr) 2013-05-22

Family

ID=39427710

Family Applications (1)

Application Number Title Priority Date Filing Date
EP20080004890 Not-in-force EP1992756B1 (fr) 2007-05-15 2008-03-15 Toit à lamelles

Country Status (2)

Country Link
EP (1) EP1992756B1 (fr)
DE (1) DE102007023007B8 (fr)

Families Citing this family (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP2161393A2 (fr) 2008-09-09 2010-03-10 Prima Handels- und Beteiligungsgesellschaft Deutschland mbH Cabine pour fumeurs
DE202009012206U1 (de) 2009-09-09 2009-12-24 Prima Handels- Und Beteiligungsgesellschaft Deutschland Mbh Dach für eine Konstruktion im Innenbereich eines Gebäudes
GB2511053B (en) * 2013-02-20 2017-09-20 Orangebox Ltd A ceiling panel
BE1021848B1 (nl) * 2013-10-31 2016-01-22 Renson Sunprotection-Screens Nv Lamellendak
FR3055637B1 (fr) * 2016-09-05 2019-08-30 Henri Peuchot Alain Pergola comprenant au moins un cadre essentiellement rectangulaire et une pluralite de lames

Family Cites Families (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE3337436C2 (de) * 1982-10-21 1985-07-04 Alu-System AG, Wädenswil Lamellen-Sonnenschutz
AU547724B2 (en) * 1983-09-27 1985-10-31 Vergola Pty Ltd Adjustable louvre roof
CH662146A5 (en) * 1983-11-24 1987-09-15 Alu System Ag Lamellar roofing means
DE10008657C1 (de) * 2000-02-24 2001-09-13 Allwetterdach Esco Gmbh Lamellendach
ATE251261T1 (de) * 2002-02-22 2003-10-15 Allwetterdach Esco Gmbh Fa Lamellendach
DE202004016025U1 (de) * 2004-10-16 2004-12-09 Allwetterdach Esco Gmbh Lamellendach

Also Published As

Publication number Publication date
DE102007023007B3 (de) 2008-10-02
EP1992756A3 (fr) 2011-04-06
EP1992756A2 (fr) 2008-11-19
DE102007023007B8 (de) 2009-01-22

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