EP2677106B1 - Plaque d'appui pour l'arbre d'enroulement d'un volet roulant - Google Patents

Plaque d'appui pour l'arbre d'enroulement d'un volet roulant Download PDF

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Publication number
EP2677106B1
EP2677106B1 EP12004720.4A EP12004720A EP2677106B1 EP 2677106 B1 EP2677106 B1 EP 2677106B1 EP 12004720 A EP12004720 A EP 12004720A EP 2677106 B1 EP2677106 B1 EP 2677106B1
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EP
European Patent Office
Prior art keywords
bearing plate
bearing
component
spring
latching
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
EP12004720.4A
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German (de)
English (en)
Other versions
EP2677106A1 (fr
Inventor
Demel Frank
Thurik Herbert
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.)
Alukon KG
Original Assignee
Alukon KG
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Publication date
Application filed by Alukon KG filed Critical Alukon KG
Priority to EP12004720.4A priority Critical patent/EP2677106B1/fr
Publication of EP2677106A1 publication Critical patent/EP2677106A1/fr
Application granted granted Critical
Publication of EP2677106B1 publication Critical patent/EP2677106B1/fr
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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
    • E06B9/174Bearings specially adapted therefor
    • 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
    • E06B9/24Screens or other constructions affording protection against light, especially against sunshine; Similar screens for privacy or appearance; Slat blinds
    • E06B9/40Roller blinds
    • E06B9/42Parts or details of roller blinds, e.g. suspension devices, blind boxes
    • E06B9/50Bearings specially adapted therefor
    • 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
    • E06B9/56Operating, guiding or securing devices or arrangements for roll-type closures; Spring drums; Tape drums; Counterweighting arrangements therefor
    • E06B9/68Operating devices or mechanisms, e.g. with electric drive
    • E06B9/72Operating devices or mechanisms, e.g. with electric drive comprising an electric motor positioned inside the roller

Definitions

  • the invention relates to a bearing plate for the winding shaft of a window shade, in particular a roller shutter shell according to the preamble of claim 1.
  • a winding shaft drive motor is designed as a tubular motor and is used frontally in the winding shaft.
  • An outstanding from the winding shaft engine mount must be rotatably supported in a bearing plate of the Aufhahmekastens so that the engine can transmit a torque to the winding shaft and rotate them for winding or unwinding a Novabehangs.
  • a motor bearing for a winding shaft of a roller shutter which consists of a bearing plate and a bearing component.
  • the bearing plate is rotatably inserted in an end cap of the roller shutter box and has a receptacle for the bearing component of the drive motor, which is inserted axially into the receptacle.
  • a plurality of radial cams of the receptacle engage in the circumference of the bearing component, whereby a rotationally fixed connection is created.
  • the engagement position of the bearing component in the receptacle of the bearing plate is axially fixed by a securing spring.
  • the EP 1 589183 A1 describes a similar known engine mount.
  • a bearing component engages in a receptacle of a rotationally fixed bearing plate, wherein circumferentially arranged radial cams produce a rotationally fixed connection between the bearing component and the bearing plate.
  • the axial position of the interlocking elements is secured by a detent spring.
  • the object underlying the invention is to form such a bearing plate for a winding shaft such that rotation of the winding shaft for repair work to be carried out one consuming disassembly is easily possible.
  • the motor mounting of the drive motor of the winding shaft comprises a bearing component, which is designed as a separate component from the bearing plate.
  • the bearing component is rotatably held in a component receptacle of the bearing plate and is rotatably locked via a locking cam in the component receiving the bearing plate.
  • a locking cam in the component receiving the bearing plate.
  • the locking cam is mounted radially displaceable, so that it can be solved in a simple manner by manually moving out of the catch.
  • the locking cam is guided guided in a guide of the bearing component and engages in a provided in the edge of the component receiving radial detent opening.
  • the locking cam is expediently subjected to force by a spring in its detent position, so it is urged by the spring into the detent position.
  • the locking cam and the spring form a common component, wherein the spring is suitably a U-shaped leg spring and the locking cam is integrally formed on the web between the legs.
  • the leg spring is received in a geometrically adapted spring chamber of the bearing component, wherein the construction is designed so that the leg ends rest on inclined surfaces of the spring chamber, which lie at an angle to the longitudinal center axis of the locking cam. It may be appropriate that the inclined surfaces as common Rounding are formed, wherein the highest point of the rounding is approximately on the longitudinal center axis of the locking cam.
  • the spring chamber of the bearing component is closed by the end face of the winding shaft, in particular closed by an end plate of the engine mounting of the drive motor, on which the bearing component is fixed.
  • the bearing component has on one end face on a projecting collar and on the other front side latching hooks which engage behind the bearing plate. In this way, the bearing member used in the component receiving the bearing plate is held axially captive in the bearing plate.
  • radially aligned detent openings can be provided over the circumference of the component receptacle, so that the rotationally locked mounting position of the bearing component and thus of the drive motor can be selected; This is advantageous to z. B. to keep an end button of the control of the drive motor accessible.
  • the end positions of the window shade are input to the control via the end button.
  • Fig. 1 1 is a receiving box for a window hanging, z. B. a roller shutter or the like .
  • the receiving box 1 is closed at its ends with caps, in Fig. 1 an aperture cap 2 is shown on the side of an engine mount 5; the provided at the other end of the receiving box 1 Blandkappe 7 ( Fig. 11 ) is mirror-inverted identical.
  • a winding shaft 3 is added, which is preferably designed as a cylindrical hollow body and on a - not shown - window hanging, a roller shutter or the like. Wrapped.
  • the winding shaft 3 is of a driven electric drive motor 4, which is a so-called tubular motor in the illustrated embodiment, ie, the drive motor 4 is inserted into the open end 6 of the cylindrical winding shaft 3.
  • the drive motor 4 is provided with an engine mount 5, which must be fixed in a rotationally fixed for supporting the torque of the drive motor 4.
  • end of the winding shaft is the winding shaft 3 with a pivot bearing 6a in a bearing plate 10 of a visor cap 7 (FIG. Fig. 11 ).
  • a bearing member 20 is provided, which is part of the engine mount 5 and is fixed on the front side 9 of the winding shaft 3, z. B. by means of fastening screws, which protrude through the mounting holes 21 in the bearing member 20.
  • the bearing member 20 of the engine mount is shown in detail. It essentially has a disc-shaped basic body 22, in whose one end face 23 a spring space 24 is formed ( Figure 3 . 5 ).
  • the spring chamber 24 is open towards the end face 23 and formed as an axial recess in the base body 22 of the bearing component 20.
  • a bearing opening 25 is provided which extends substantially over the height H (FIG. Fig. 4 ) of the base body 22 and against which the spring chamber 24 is separated by a part-cylindrical annular wall 26.
  • the spring chamber 24 is located between the two mounting holes 21 and has approximately rectangular shape in plan view.
  • the spring chamber 24 has in its edge region on a radial slot which is formed as a guide 27.
  • a longitudinal central axis 28 of the guide 27 passes through the center 29 of the bearing opening 25.
  • On the guide 27 opposite side of the spring chamber 24 are inclined surfaces 30, 32 are formed, which - like Fig. 5 shows - lie at an angle 31 to the longitudinal central axis 28.
  • the inclined surfaces 30 and 32 merge into one another and are formed as a dome-shaped curve 33, wherein the highest point of the rounding of the guide 27 is opposite, preferably on the longitudinal central axis 28 of the guide 27 temporarily undergraduate.
  • the spring chamber 24 serves to receive a locking spring 40, as shown in the FIGS. 8 and 9 is shown.
  • the locking spring 40 is formed as a substantially U-shaped leg spring 41, the web 42 connecting the legs 43 and 45 carries a locking cam 44.
  • the locking spring 40 is formed substantially symmetrically to a longitudinal central axis 16, wherein free end portions 43a and 45a are inclined towards each other.
  • a free end section 43a or 45a is angled relative to a leg 43 or 45 at an angle of approximately 10 °, so that an angle 19 of approximately 170 ° results between an end section 43a or 45a and a leg 43 or 45.
  • the free ends 43b and 45b of the legs 43 and 45 are preferably slightly chamfered or rounded, with the free end portions 43a and 45a tapering towards the free ends 43b and 45b.
  • the locking cam 44 lies on the legs 53 and 45 opposite side of the web 42 and has a substantially cuboid shape.
  • the locking cam 44 is the groove-shaped, rectangular in cross-section to square-shaped guide 27 in the bearing member 20 is formed accordingly.
  • Fig. 5 the position of the locking spring 40 with the locking cam 44 in the spring chamber 24 indicated dotted.
  • the width B of the spring space 24 corresponds to the width V ( Fig. 8 ) of the locking spring 40 in the region of the web 42.
  • the ends 43b and 45b of the legs 43 and 45 are in the illustrated embodiment according to Fig. 5 on the inclined surfaces 30 and 32 of the dome-shaped curve 33, wherein the end portions 43a and 45a are slightly displaced inwardly according to the arrows. Due to the inclined surfaces 30 and 32 of the rounding 33 and the elastically slightly inwardly angled end portions 43a and 45a of the leg spring 41, the locking spring 40 exerts a force on the locking cam 44, which is opposite to the arrow 35 direction.
  • the locking cam 44 is thus subjected to a force in a detent position and has the tendency to occupy the illustrated dotted position in which the locking cam 44 projects beyond the circumference 34. Is displaced by a force in the direction of arrow 35 of the locking cam 44 in the spring chamber 24, slide the free ends 43b and 45b on the inclined surfaces of the dome-shaped curve 33 inwardly and upwardly and are thereby displaced in the direction of the arrows in the direction of the longitudinal central axis 28. As a result, an increasing spring force is built up, so that the locking cam 44 is thus displaced in the direction of arrow 35 against the spring force in the spring chamber 24. If the forces acting on the locking cam 44 in the direction of arrow 35 force taken away, the locking cam 44 slides under the action of the spring force of the resilient legs 43 and 45 of the locking spring 40 back into the in Fig. 5 dotted illustrated detent position.
  • a detent 46 is formed, which is associated with a detent 36 on the annular wall 26 ( Fig. 5 . 9 ). If the locking cam 44 is displaced by the stroke R in the spring chamber 24, the locking lugs 36 and 46 lock together and keep the locking cam 44 locked in a release position. The locking cam 44 is completely retracted in the spring chamber 24 and the guide 27 of the spring chamber 24 within the circumference 34 of the bearing member 20th
  • the bearing member 20 is inserted axially into the bearing plate 10, as in Fig. 10 shown.
  • the bearing plate has a component receptacle 11, which is formed as an opening, bore or the like.
  • the bearing plate 10 In the illustrated embodiment, two component receptacles 11 are formed in the bearing plate, whose openings overlap each other. As a result, the bearing component 20 of the installation situation can be inserted axially into one or the other of the component receptacles 11.
  • the bearing member 20 is held axially captive in the bearing plate 10.
  • the bearing component on its spring chamber 24 having end face 23 a collar 37 which is formed partially annular.
  • the collar 37 projects beyond the circumference 34 of the bearing component 20, whereby the insertion depth of the bearing component in the bearing plate 10 is limited.
  • the covenant 37 is - as in Fig. 4 shown - on the edge of the component holder 11 on the flat side 13 of the bearing plate 10.
  • locking tongues 38 are further formed, which extend in the axial direction and the free ends carry snap hook 39.
  • a plurality of locking tongues 38 are provided; in the illustrated embodiment, four locking tongues are formed, which - like Fig. 6 shows - in pairs opposite each other.
  • the latching hooks 39 of the latching tongues 38 engage behind the edge 17 of the component receptacle 11 on the other flat side 12 of the bearing plate 10, whereby the bearing component 20 is held axially captive in the component receptacle 11 of the bearing plate 10.
  • the bearing component 20 is rotatably held in the component receptacle 11 until the locking cam 44 engages in a formed in the edge of the component holder 11, preferably radially aligned with the guide 27 detent opening 14.
  • the locking cam 44 which rotatable in the component holder 11 bearing member 20 is rotatably locked.
  • the locking spring 40 is inserted axially into the spring chamber 24 of the bearing member 20 and the bearing member 20 with the engine mount 5 firmly screwed.
  • the overall arrangement is inserted into the bearing plate 10, which - see. Fig. 10 - Is rotatably supported on a jagged edge at the edges of the visor cap 2.
  • the bearing pin 8 of the visor cap 2 engages in the bearing opening 25 of the bearing member 20, so that by simply nesting the engine mount 5 on the bearing member 20 rotatably in the bearing plate 10 and this rotatably supported in the visor 2.
  • the drive torque of the electric drive motor 4 is supported via the bearing plate 10 on the visor cap 2, so that the drive motor 4 can drive the winding shaft 3 in one or the other direction of rotation.
  • the winding shaft 3 is at its in Fig. 1 not shown other end in the pivot bearing 6a ( Fig. 11 ) held the other visor 7.
  • the embodiment is made such that the pivot bearing 6a corresponds in size to those of the bearing component 20, so that at both ends of the receiving box 1 in the caps 2 and 7, a same bearing plate 10 can be used. It may be advantageous to connect the bearing plate 10 by fastening means in addition to the visor cap 2, 7.
  • the locking cam 44 shows on parallel flat sides an engagement slot 48; the engagement slot 48 is arranged such that it lies in the latching position of the latching cam 44 in a latching opening 14 in a window 49 of the guide 27, so that the engagement slot 48 is accessible via the window 49.
  • a screwdriver or the like. Tool can be introduced to engage the blade in the engagement slot 48 of the locking cam 44.
  • the locking cam 44 in the direction of arrow 35 ( Fig. 5 ) are displaced into the spring chamber 24, wherein in the disengaged position of the latching cam 44, the locking spring 40 is latched in the spring chamber 24, wherein the locking cam 44 is fully extended from the latching opening 14.
  • the bearing component 20 is rotatable in this position of the latching cam 44 in the component holder 11. An access to the locking cam 44 is thus possible via the window 49, even if the bearing component 20 is fixed at the end 6 of the winding shaft, the spring chamber is thus closed by the end face 9 of the winding shaft 3.
  • the locking of the latching lugs 36 and 46 can be canceled - again by engagement of a screwdriver through the window 49 on the locking cam 44 be so that the locking cam 44 moves under the force of the leg spring 41 opposite to the arrow 35 to the outside and engages in one of the locking openings 14 in the bearing plate 10.
  • Which of the detent openings 14 is used by the service is dependent on the desired location of a button 50 in the engine mount 5.
  • About the button 50 z. B. determines the end points of the rotational movement of the winding shaft 3, so that the engine stops in the raised end position of the window hanging as well as in the lowered end position of the window shade.

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  • Engineering & Computer Science (AREA)
  • Structural Engineering (AREA)
  • Architecture (AREA)
  • Civil Engineering (AREA)
  • Connection Of Motors, Electrical Generators, Mechanical Devices, And The Like (AREA)
  • Pivots And Pivotal Connections (AREA)

Claims (12)

  1. Plaque d'appui pour l'arbre d'enroulement (3) d'un rideau de fenêtre, en particulier d'un tablier de volet roulant,
    • étant précisé que l'arbre d'enroulement (3) est disposé dans un coffre de reception (1)
    • et que l'arbre d'enroulement (3) comporte un moteur d'entraînement (4) pour entraîner ledit arbre d'entraînement (3),
    • étant précisé qu'une première extrémité de l'arbre d'entraînement (3) est montée en rotation dans un palier de rotation (6a), et
    • qu'une seconde extrémité (6) de l'arbre d'enroulement est montée, avec un palier de moteur (5) qui supporte le couple d'entraînement, dans la plaque d'appui (10),
    • que le palier de moteur (5) comprend un composant d'appui (20),
    • que le composant d'appui (20) est un composant séparé de la plaque d'appui (10), caractérisée
    en ce que le composant d'appui (20) est monté en rotation dans un logement de composant (11) de la plaque d'appui (10),
    • et en ce que le composant d'appui (20) est apte à être verrouillé, fixe en rotation, dans le logement de composant (11) de la plaque d'appui (10) par l'intermédiaire d'une saillie d'enclenchement (44) apte à coulisser radialement,
    • et en ce que la saillie d'enclenchement (44) est contrainte par une force dans sa position d'enclenchement grâce à un ressort.
  2. Plaque d'appui selon la revendication 1,
    caractérisée en ce que la saillie d'enclenchement (44) est montée dans un guidage (27) du composant d'appui (20) et pénètre dans une ouverture d'enclenchement (14) prévue dans le bord (17) du logement de composant (11).
  3. Plaque d'appui selon la revendication 1,
    caractérisée en ce que la saillie d'enclenchement (44) et le ressort forment un composant commun.
  4. Plaque d'appui selon la revendication 3,
    caractérisée en ce que le ressort est un ressort à branches en U (41) et la saillie (44) est rapportée sur un dos (42) entre les branches (43, 45).
  5. Plaque d'appui selon l'une des revendications 1 à 4,
    caractérisée en ce que le ressort à branches (41) se trouve dans un espace adapté pour ressort (24) du composant d'appui (20), et les extrémités de branches (43b, 45b) sont appliquées contre des surfaces inclinées (30, 32) qui définissent un angle (31) avec l'axe longitudinal médian (28) de la saillie d'enclenchement (44).
  6. Plaque d'appui selon la revendication 5,
    caractérisée en ce que les surfaces inclinées (30, 32) sont conçues comme une partie arrondie commune (33).
  7. Plaque d'appui selon l'une des revendications 1 à 6,
    caractérisée en ce que la saillie d'enclenchement (44) est verrouillée dans une position désaccouplée rétractée.
  8. Plaque d'appui selon l'une des revendications 1 à 7,
    caractérisée en ce qu'un dispositif d'enclenchement est formé entre au moins une branche (43, 45) du ressort à branches (41) et une paroi de l'espace pour ressort (24).
  9. Plaque d'appui selon l'une des revendications 1 à 8,
    caractérisée en ce que l'espace pour ressort (24) du composant d'appui (20) est fermé par le côté frontal de l'arbre d'enroulement (3).
  10. Plaque d'appui selon l'une des revendications 1 à 9,
    caractérisée en ce que le composant d'appui (20) est monté de manière imperdable axialement dans la plaque d'appui (10).
  11. Plaque d'appui selon la revendication 10,
    caractérisée en ce qu'un côté frontal (23) du composant d'appui (20) comporte une collerette saillante (37), et de l'autre côté frontal du composant d'appui (20), des crochets d'enclenchement (39) viennent s'accrocher derrière la plaque d'appui (10).
  12. Plaque d'appui selon l'une des revendications 1 à 11,
    caractérisée en ce que plusieurs ouvertures d'enclenchement (14) sont prévues sur la circonférence du logement de composant (11).
EP12004720.4A 2012-06-23 2012-06-23 Plaque d'appui pour l'arbre d'enroulement d'un volet roulant Active EP2677106B1 (fr)

Priority Applications (1)

Application Number Priority Date Filing Date Title
EP12004720.4A EP2677106B1 (fr) 2012-06-23 2012-06-23 Plaque d'appui pour l'arbre d'enroulement d'un volet roulant

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
EP12004720.4A EP2677106B1 (fr) 2012-06-23 2012-06-23 Plaque d'appui pour l'arbre d'enroulement d'un volet roulant

Publications (2)

Publication Number Publication Date
EP2677106A1 EP2677106A1 (fr) 2013-12-25
EP2677106B1 true EP2677106B1 (fr) 2015-07-29

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Application Number Title Priority Date Filing Date
EP12004720.4A Active EP2677106B1 (fr) 2012-06-23 2012-06-23 Plaque d'appui pour l'arbre d'enroulement d'un volet roulant

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EP (1) EP2677106B1 (fr)

Families Citing this family (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP3216973B1 (fr) 2016-03-10 2019-05-29 Roma Kg Dispositif d'ombrage de batiment et systeme de support associe
BE1028383B1 (nl) * 2020-06-09 2022-01-17 Inside Blinds Nv Blokkage-element voor buismotor

Family Cites Families (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE20104119U1 (de) * 2001-03-08 2001-04-26 Schmitz, Dirk, 48703 Stadtlohn Antriebslager
FR2869347B1 (fr) * 2004-04-22 2006-06-16 Bubendorff Volet Roulant Sa Joue support pour tube d'enroulement de tablier de volet roulant

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Publication number Publication date
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