EP3957817B1 - Rollladenstruktur und montageverfahren - Google Patents

Rollladenstruktur und montageverfahren Download PDF

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Publication number
EP3957817B1
EP3957817B1 EP21186697.5A EP21186697A EP3957817B1 EP 3957817 B1 EP3957817 B1 EP 3957817B1 EP 21186697 A EP21186697 A EP 21186697A EP 3957817 B1 EP3957817 B1 EP 3957817B1
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EP
European Patent Office
Prior art keywords
photovoltaic panel
box
roller shutter
power supply
storage battery
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
EP21186697.5A
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English (en)
French (fr)
Other versions
EP3957817A1 (de
Inventor
Patrick Marcel CARREE
Pascal Jean-Marie ISCHOFFEN
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.)
Franciaflex SAS
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Franciaflex SAS
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Publication date
Application filed by Franciaflex SAS filed Critical Franciaflex SAS
Publication of EP3957817A1 publication Critical patent/EP3957817A1/de
Application granted granted Critical
Publication of EP3957817B1 publication Critical patent/EP3957817B1/de
Active legal-status Critical Current
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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
    • E06B9/00Screening or protective devices for wall or similar openings, with or without operating or securing mechanisms; Closures of similar construction
    • E06B9/02Shutters, movable grilles, or other safety closing devices, e.g. against burglary
    • E06B9/08Roll-type closures
    • E06B9/11Roller shutters
    • E06B9/17Parts or details of roller shutters, e.g. suspension devices, shutter boxes, wicket doors, ventilation openings
    • E06B9/17007Shutter boxes; Details or component parts thereof

Definitions

  • the present invention relates to a roller shutter structure adapted to be installed in the opening of a building.
  • Known roller shutter structures include a longitudinal box inside which is installed a winding shaft of an apron and a gear motor mounted between the winding shaft and the box.
  • the gear motor is usually installed inside the winding shaft.
  • roller shutter structure can be installed in the opening of a building, for example a window, without additional work for the passage of electrical ducts.
  • the roller shutter structure comprises an autonomous power supply attached to the front wall of the longitudinal box.
  • the power supply unit comprises a photovoltaic panel affixed to the front wall of the block, and an accumulator battery installed at the rear of the photovoltaic panel, inside the power supply unit.
  • the accumulator battery and the photovoltaic panel are connected together via an electronic card housed inside the power supply unit or integrated inside the gear motor.
  • the electronic card is then electrically connected to the geared motor so as to be able to supply it using the storage battery when the order is made.
  • the electronic card manages the recharging of the storage battery thanks to the photovoltaic panel when it is lit.
  • the electronic card is for example equipped with a radio receiver to be able to remotely control the power supply to the gear motor of the winding shaft by means of a corresponding radio transmitter and so as to be able to drive the deck.
  • the autonomous power supply unit attached to the front wall of the longitudinal trunk increases its volume and comes to compromise its aesthetic characteristics.
  • a problem which arises and which the present invention aims to solve is to provide a roller shutter structure whose autonomous power supply is less bulky and does not affect the general aesthetics of the structure.
  • a roller shutter structure comprising: a longitudinal box comprising on the one hand a front wall and a winding shaft extending longitudinally inside said box, and on the other hand a gear motor mounted between said winding shaft and said box; an autonomous power supply comprising a photovoltaic panel having an active front face opposite an inactive rear face and an accumulator battery located behind said photovoltaic panel and adapted to be electrically coupled to said photovoltaic panel, said autonomous power supply being installed on said front wall of said trunk, while said accumulator battery is capable of being electrically coupled to said geared motor in order to be able to drive said winding shaft in rotation.
  • Said accumulator battery is located in a remote position outside the space extending opposite said inactive rear face of said photovoltaic panel.
  • said front wall of said box has a transverse opening, so as to be able to install said autonomous power supply by crossing said transverse opening so that said accumulator battery is housed inside said box in a position spaced from said shaft. winding, while said photovoltaic panel extends across said transverse opening.
  • a characteristic of the invention lies in the relative position of the storage battery and the photovoltaic panel then in the implementation of the autonomous power supply unit inside the longitudinal trunk, making it possible to move the battery away from winding shaft accumulators.
  • This is done by firstly orienting the autonomous power supply substantially perpendicular to the front wall in order to be able to engage it through the transverse opening. Then, the power supply unit is straightened to carry the storage battery in a position away from the winding shaft, while the photovoltaic panel is carried across the transverse opening. to be kept there.
  • the photovoltaic panel, and more precisely its active front face comes flush with the front wall, and the accumulator battery is housed inside the trunk, in a part that is usually free as shown. will explain below. Therefore, the longitudinal box and the autonomous power supply has a usual standard box size, and the aesthetic character of the roller shutter structure is not compromised.
  • said autonomous power supply unit comprises a mounting plate having a front part adapted to receive said photovoltaic panel and a rear part opposite said front part, adapted to receive said battery of accumulators.
  • the fixing plate supports on its front part, the photovoltaic panel and on its rear part the accumulator battery. Therefore, and as will be explained below, by maintaining the fixing plate in a fixed position relative to the longitudinal trunk, the photovoltaic panel and the accumulator battery are themselves maintained in a fixed position relative to the trunk. In this way, the assembly of the autonomous power supply is all the more easy.
  • said fixing plate comprises slides on said front part to receive said sliding photovoltaic panel.
  • the photovoltaic panel which extends longitudinally may be slidably engaged in the longitudinal direction of the fixing plate in order to be able to be secured thereto. The assembly and disassembly of the photovoltaic panel is thus easy.
  • said rear part of said fixing plate advantageously has a rear upper edge
  • said fixing plate comprises a plurality of support members projecting from said rear upper edge to support said accumulator battery.
  • the accumulator battery is thus supported, in a zone located above the space extending facing the rear face of the photovoltaic panel.
  • the longitudinal box which has an upper wall joining the front wall by forming an upper front longitudinal housing in a corner, makes it possible to house the accumulator battery which is supported by the support members of the fixing plate.
  • the upper front longitudinal housing in the corner is a free zone, because the deck is wrapped around the winding shaft without ever reaching this area.
  • the fixing plate and the support members make it possible to form an independent power supply unit in one piece including the photovoltaic panel and the accumulator battery, and that the independent power supply unit can easily be installed in the longitudinal trunk.
  • said fixing plate has an upper edge opposite a lower edge, and in a particularly advantageous manner, said upper edge has at least one fixing groove, while said lower edge comprises at least one flexible stop tab.
  • the power supply unit is tilted in order to engage it through the transverse opening so as to first introduce the storage battery while maintaining the fixing plate tilted in order to be able to bring the upper edge against the upper edge of the transverse opening, the upper edge engaging in said at least one fixing groove.
  • the fixing plate is driven in pivoting towards the front wall, until the lower edge comes to cooperate with the lower edge of the transverse opening.
  • the flexible stop tab flexes then returns to its rest position to lock the fixing plate in the transverse opening. There is thus no need to have recourse to an additional fixing device such as a screwable assembly for example.
  • the fixing plate which supports the accumulator battery and the photovoltaic panel is integral with the front wall and for this is engaged in the edges of the transverse opening.
  • said front part of said fixing plate preferably has a peripheral edge extending projecting from said edges forming a shoulder.
  • the peripheral edge extends in a loop around the periphery of the fixing plate. In this way, the shoulder of the fixing plate is applied, on the outside of the trunk, against the edge of the transverse opening.
  • said upper edge has at least one rib extending opposite said shoulder to form said at least one groove.
  • said at least one flexible stop tab extends between a pivoting end located towards said rear part and a stop lip extending opposite said shoulder.
  • the fixing plate comprises modular sections. These sections can be snap-fitted longitudinally so as to be able to produce a fixing plate of a desired and predetermined length with respect to the length of the photovoltaic panel and consequently of the transverse opening of the trunk.
  • the method of linking the snap-in sections will be explained in the remainder of the description in more detail.
  • the accumulator battery is cylindrical in shape and it extends parallel to the photovoltaic panel. In this way, when the fixing plate is carried across the transverse opening, and it pivots, the cylindrical accumulator battery then also pivots and is housed in the upper front longitudinal housing in the corner.
  • a longitudinal box comprising on the one hand a front wall and a winding shaft extending longitudinally inside said box, and on the other hand a gear motor mounted between said winding shaft and said trunk;
  • a stand-alone power supply is provided comprising a photovoltaic panel and an accumulator battery located behind said photovoltaic panel and adapted to be electrically coupled to said photovoltaic panel, said stand-alone power supply being installed on said front wall of said box; we couple electrically said accumulator battery to said geared motor to be able to drive said winding shaft in rotation.
  • a transverse opening is provided in said front wall of said trunk; and, said autonomous power supply unit is installed by crossing said transverse opening so that said accumulator battery is housed inside said box in a position spaced from said winding shaft, while said photovoltaic panel is extend across said transverse opening.
  • the accumulator battery can be directly electrically coupled to the photovoltaic panel or else that it can be coupled thereto via an electronic card integrated into the geared motor.
  • the figure [ Fig. 1 ] shows a longitudinal trunk 10 of a roller shutter structure 12.
  • the trunk 10 has a front wall 14, in which is formed a transverse opening 16, and an upper wall 18 shown transparent in the figure to facilitate the description.
  • the upper wall 18 is substantially perpendicular to the front wall 14.
  • the trunk 10 has a rear wall 20.
  • the trunk 10 has two opposite cheeks 22, 24 substantially square and whose corner lower front is truncated.
  • the shape of the cheeks determines the geometry of the cylindrical box. Thus, they can be square, rectangular, generally trapezoidal or even rounded.
  • the winding shaft 28 has one end, not shown, guided in rotation in a bearing supported by one of the cheeks 22, 24, and an opposite end connected to the other of the cheeks 24,22 by means of a gearmotor, not shown, which extends inside the winding shaft 28
  • the longitudinal box 10 has inside, and at the angle of the upper wall 18 and the front wall 14, a corner free space 30 that the rolled apron 26 cannot reach whatever its diameter. . It will be observed that the longitudinal trunk also has at the corner of the upper wall 18 and the rear wall 20, another free space in the corner that the rolled-up apron cannot reach. It would then be put to good use if the rear wall 20 became the front wall.
  • FIG. 2 shows the front wall 14 of the trunk 10 extending by an oblique lower wall 32, then by a lower wall horizontal 34.
  • the front wall 14 and the lower walls, oblique 32 and horizontal 34, are formed together in one piece.
  • This opening has an upper edge 36 opposite a lower edge 38.
  • it has two opposite side edges 40, 42.
  • the oblique wall is rounded.
  • the front and horizontal walls can meet to form a right angle. In this case then, they could be independent of each other.
  • the independent power supply unit comprises two fixing plate elements 46, 48, or modular sections, which will be able to receive a photovoltaic panel 50 longitudinal and a cylindrical storage battery 52.
  • the two fixing plate elements 46, 48 have two opposite connection ends 54, 56 which can be seen in detail in figure [ Fig. 4 ]. Also, the two fixing plate elements 46, 48 have a front part 58 opposite a rear part 60. The rear part 60 has a rear upper edge 62 provided with vertical slides 64.
  • connection ends 54 has an upper flexible hook 66 and a lower hooking lug 68
  • connection end 56 has a lower flexible hook 70 which extends opposite the lower hooking lug 68
  • upper hooking lug 72 extending opposite the upper flexible hook 66.
  • the upper 66 and lower 70 flexible hooks just like the upper 72 and lower 68 hooking lugs are respectively antisymmetrical to each other with respect to a median plane extending between the two opposite connection ends 54, 56.
  • the two fixing plate elements 46, 48, or modular sections, are thus adapted to be secured to each other by driving them in translation towards each other so that the upper flexible hook 66 engages in the upper attachment lug 72, while the lower flexible hook 70 engages in the lower attachment lug 68. In this way, a single fixing plate is formed.
  • This fixing plate then has an upper edge 74 and an opposite lower edge 76 .
  • the front part 58 of the two fixing plates 46, 48 combined in a single plate has a peripheral edge 78 which projects from the upper 74 and lower 76 edges, forming a shoulder 80.
  • the upper edge 74 has a plurality of ribs 75 extending opposite the shoulder 80 to form grooves.
  • the peripheral edge 78, in the upper and lower parts of the fixing plate extend towards each other, forming an upper wing 82 extending towards a lower wing 84.
  • These two facing wings 82, 84 then form a longitudinal slide 86.
  • the photovoltaic panel 50 has an active front face appearing in the figure, and an opposite inactive rear face.
  • the active front face is capable of receiving light radiation making it possible to produce electrical energy.
  • the photovoltaic panel 50 also has a first electrical connector 85, and the storage battery 52 has a second electrical connector 87.
  • the power supply unit 44 includes an electronic card 89 and a receiving sleeve 90.
  • the two fixing plate elements 46, 48 are assembled to form a single fixing plate.
  • This method of assembly makes it possible, by means of complementary fixing plate elements, or complementary modular sections, to produce a single fixing plate of a predefined length and adapted to the dimensions of the longitudinal box and the length of the opening. transverse.
  • first connector 85 and the second connector 87 have been connected to the electronic card 89, which are then all housed inside the receiving sleeve 90.
  • the end of the cylindrical accumulator battery 52 is fitted in the receiving sleeve 90.
  • the autonomous power supply unit 44 assembled will be able to be engaged inside the longitudinal trunk 10, through the transverse opening 16 in accordance with the assembly method according to the invention.
  • the lower edge 76 of the fixing plate comprises a flexible stop tab 92 which extends from a pivot end 94 located on the side of the rear part 60 and on the opposite side, up to a stopper 96 extending opposite the shoulder 80.
  • the autonomous power supply unit 44 is driven in translation according to an upward vertical component and simultaneously in rotation so as to drive it even further towards the inside of the trunk 10 through the transverse opening 16 of so that the upper edge 36 of the transverse opening 16 bears against the upper edge 74 and engages between the ribs 75 and the shoulder 80.
  • the autonomous power supply unit 44 is then driven in pivoting according to the arrow P. It then pivots around the upper edge 36 of the transverse opening 16, and the flexible stop tab 92 then flexes when it bears sliding against the lower edge 38 of the transverse opening 16. And when the shoulder 80 bears against the outer edge of the transverse opening 16 the flexible stop tab 92 escapes the reach from the lower edge 38 and returns to its rest position, while the stopper 96 comes to extend behind the outer edge of the transverse opening 16 of the front wall 14.
  • the autonomous power supply unit 44 is then totally prisoner of the front wall 14 as shown in Figure [ Fig. 8 ].
  • the accumulator battery 52 is in a position separated from the winding shaft 28 shown in broken lines. Thus, when the apron is wound around the winding shaft 28 it does not interfere with the storage battery inside the box 10.

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  • Engineering & Computer Science (AREA)
  • Structural Engineering (AREA)
  • Architecture (AREA)
  • Civil Engineering (AREA)
  • Operating, Guiding And Securing Of Roll- Type Closing Members (AREA)

Claims (11)

  1. Rollladenstruktur, umfassend:
    - einen länglichen Kasten (10), der zum einen eine vordere Wand (14) und eine Wickelwelle (28) aufweist, die sich längs im Inneren des Kastens (10) erstreckt, und zum anderen einen Getriebemotor, der zwischen der Wickelwelle (28) und dem Kasten (10) angebracht ist;
    - einen Block für die autonome Versorgung (44), der ein Photovoltaikpanel (50) aufweist, das eine aktive vordere Fläche gegenüber einer inaktiven hinteren Fläche aufweist und eine Speicherbatterie (52), die sich hinter dem Photovoltaikpanel (50) befindet und zur elektrischen Verbindung mit dem Photovoltaikpanel geeignet ist, wobei der Block für die autonome Versorgung (44) auf der vorderen Wand (14) des Kastens installiert ist, wohingegen die Speicherbatterie (52) zur elektrischen Verbindung mit dem Getriebemotor geeignet ist, um die Wickelwelle (28) rotatorisch antreiben zu können;
    wobei sich die Speicherbatterie (52) in einer versetzten Position außerhalb des Raums befindet, der sich der inaktiven hinteren Fläche (60) des Photovoltaikpanels (50) zugewandt erstreckt,
    dadurch gekennzeichnet, dass die vordere Wand (14) des Kastens eine transversale Öffnung (16) aufweist, so dass der Block für die autonome Versorgung (44) installierbar ist, indem er die transversale Öffnung (16) durchquert, damit die Speicherbatterie (52) im Inneren des Kastens (10) in einer von der Wickelwelle (28) beabstandeten Position untergebracht ist, wohingegen sich das Photovoltaikpanel (50) quer über der transversalen Öffnung (16) erstreckt.
  2. Rollladenstruktur nach Anspruch 1, dadurch gekennzeichnet, dass der Block für die autonome Versorgung (44) eine Befestigungsplatte (46, 48) umfasst, die einen vorderen Teil (58) aufweist, der imstande ist, das Photovoltaikpanel (50) aufzunehmen, und einen hinteren Teil (60) gegenüber dem vorderen Teil, der zur Aufnahme der Speicherbatterie (52) geeignet ist.
  3. Rollladenstruktur nach Anspruch 2, dadurch gekennzeichnet, dass die Befestigungsplatte (46, 48) Gleitscheinen (86) auf dem vorderen Teil (58) zur gleitenden Aufnahme des Photovoltaikpanels (50) aufweist.
  4. Rollladenstruktur nach den Ansprüchen 2 oder 3, dadurch gekennzeichnet, dass der hintere Teil (60) der Befestigungsplatte (46, 48) einen posterioren oberen Rand (62) aufweist und dass die Befestigungsplatte eine Vielzahl von Halteorganen (88) aufweist, die sich von dem posterioren oberen Rand hervorstehend erstrecken, um die Speicherbatterie (52) zu halten.
  5. Rollladenstruktur nach einem der Ansprüche 2 bis 4, dadurch gekennzeichnet, dass die Befestigungsplatte (46, 48) eine obere Kante (74) gegenüber einer unteren Kante (76) aufweist und dass die obere Kante (74) mindestens eine Befestigungsrille (75, 80) aufweist, wohingegen die untere Kante (76) mindestens eine flexible Arretierzunge (92) aufweist.
  6. Rollladenstruktur nach Anspruch 5, dadurch gekennzeichnet, dass der vordere Teil (58) der Befestigungsplatte einen Umfangsrand (78) aufweist, der sich von den Kanten (74, 76) hervorstehend erstreckt, indem er einen Absatz bildet.
  7. Rollladenstruktur nach Anspruch 6, dadurch gekennzeichnet, dass die obere Kante (74) mindestens eine Rippe (75) aufweist, die sich dem Absatz (80) zugewandt erstreckt, um die mindestens eine Rille zu bilden.
  8. Rollladenstruktur nach Anspruch 6 oder 7, dadurch gekennzeichnet, dass sich die mindestens eine flexible Arretierzunge (92) zwischen einem Schwenkende, das sich in Richtung des hinteren Teils (60) befindet, und einem Arretierschnabel (96) erstreckt, der sich dem Absatz zugewandt erstreckt.
  9. Rollladenstruktur nach einem der Ansprüche 2 bis 8, dadurch gekennzeichnet, dass die Befestigungsplatte (46, 48) modulare Sektoren aufweist.
  10. Rollladenstruktur nach einem der Ansprüche 1 bis 9, dadurch gekennzeichnet, dass die Speicherbatterie (52) zylindrisch geformt ist und dass sie sich parallel zum Photovoltaikpanel (50) erstreckt.
  11. Verfahren für die Montage einer Rollladenstruktur nach einem der Ansprüche 1 bis 10, das die folgenden Schritte umfasst:
    - Bereitstellen eines länglichen Kastens (10), der zum einen eine vordere Wand (14) und eine Wickelwelle (28) aufweist, die sich längs im Inneren des Kastens (10) erstreckt, und zum anderen einen Getriebemotor, der zwischen der Wickelwelle und dem Kasten angebracht ist;
    - Bereitstellen eines Blocks für die autonome Versorgung (44), der ein Photovoltaikpanel (50) und eine Speicherbatterie (52) aufweist, die sich hinter dem Photovoltaikpanel befindet und zur elektrischen Verbindung mit dem Photovoltaikpanel geeignet ist, wobei der Block für die autonome Versorgung (44) auf der vorderen Wand (14) des Kastens installiert wird,
    - elektrisches Verbinden der Speicherbatterie (52) mit dem Getriebemotor, um die Wickelwelle (28) rotatorisch antreiben zu können;
    dadurch gekennzeichnet, dass es ferner die folgenden Schritte umfasst:
    - Einrichten einer transversalen Öffnung (16) in der vorderen Wand des Kastens; und
    - Installieren des Blocks für die autonome Versorgung (44) durch Durchqueren der transversalen Öffnung (16), so dass die Speicherbatterie (52) im Inneren des Kastens in einer von der Wickelwelle (28) beabstandeten Position untergebracht wird, wohingegen sich das Photovoltaikpanel (50) quer über der transversalen Öffnung (16) erstreckt.
EP21186697.5A 2020-07-30 2021-07-20 Rollladenstruktur und montageverfahren Active EP3957817B1 (de)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
FR2008059A FR3113088B1 (fr) 2020-07-30 2020-07-30 Structure de volet roulant et méthode de montage

Publications (2)

Publication Number Publication Date
EP3957817A1 EP3957817A1 (de) 2022-02-23
EP3957817B1 true EP3957817B1 (de) 2023-02-08

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BE1030400B1 (nl) * 2022-03-29 2023-10-30 Renson Sunprotection Screens Scherminrichting

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JPS61266792A (ja) * 1985-05-21 1986-11-26 東工シヤツタ−株式会社 電動シヤツタ−装置
JP2544837B2 (ja) * 1990-11-26 1996-10-16 ミサワホーム株式会社 住宅ユニット
FR2842860B1 (fr) 2002-07-26 2007-02-16 Unaferm Sa Soc Bloc d'alimentation pour volets roulants et similaires a commande motorisee
JP2020033808A (ja) * 2018-08-31 2020-03-05 Ykk Ap株式会社 電動シャッター

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FR3113088A1 (fr) 2022-02-04
EP3957817A1 (de) 2022-02-23

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