EP3420167B1 - Entraînement de bras d'actionnement - Google Patents

Entraînement de bras d'actionnement Download PDF

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Publication number
EP3420167B1
EP3420167B1 EP17711068.1A EP17711068A EP3420167B1 EP 3420167 B1 EP3420167 B1 EP 3420167B1 EP 17711068 A EP17711068 A EP 17711068A EP 3420167 B1 EP3420167 B1 EP 3420167B1
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EP
European Patent Office
Prior art keywords
actuating arm
lever
arm drive
housing
levers
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
EP17711068.1A
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German (de)
English (en)
Other versions
EP3420167A1 (fr
Inventor
Philip SCHLUGE
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.)
Julius Blum GmbH
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Julius Blum 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 Julius Blum GmbH filed Critical Julius Blum GmbH
Priority to EP21204179.2A priority Critical patent/EP3967840B1/fr
Publication of EP3420167A1 publication Critical patent/EP3420167A1/fr
Application granted granted Critical
Publication of EP3420167B1 publication Critical patent/EP3420167B1/fr
Active legal-status Critical Current
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Classifications

    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05DHINGES OR SUSPENSION DEVICES FOR DOORS, WINDOWS OR WINGS
    • E05D15/00Suspension arrangements for wings
    • E05D15/40Suspension arrangements for wings supported on arms movable in vertical planes
    • E05D15/401Suspension arrangements for wings supported on arms movable in vertical planes specially adapted for overhead wings
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05DHINGES OR SUSPENSION DEVICES FOR DOORS, WINDOWS OR WINGS
    • E05D3/00Hinges with pins
    • E05D3/06Hinges with pins with two or more pins
    • E05D3/16Hinges with pins with two or more pins with seven parallel pins and four arms
    • E05D2003/163Horizontal pivot-axis
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05FDEVICES FOR MOVING WINGS INTO OPEN OR CLOSED POSITION; CHECKS FOR WINGS; WING FITTINGS NOT OTHERWISE PROVIDED FOR, CONCERNED WITH THE FUNCTIONING OF THE WING
    • E05F1/00Closers or openers for wings, not otherwise provided for in this subclass
    • E05F1/08Closers or openers for wings, not otherwise provided for in this subclass spring-actuated, e.g. for horizontally sliding wings
    • E05F1/10Closers or openers for wings, not otherwise provided for in this subclass spring-actuated, e.g. for horizontally sliding wings for swinging wings, e.g. counterbalance
    • E05F1/1041Closers or openers for wings, not otherwise provided for in this subclass spring-actuated, e.g. for horizontally sliding wings for swinging wings, e.g. counterbalance with a coil spring perpendicular to the pivot axis
    • E05F1/105Closers or openers for wings, not otherwise provided for in this subclass spring-actuated, e.g. for horizontally sliding wings for swinging wings, e.g. counterbalance with a coil spring perpendicular to the pivot axis with a compression spring
    • E05F1/1058Closers or openers for wings, not otherwise provided for in this subclass spring-actuated, e.g. for horizontally sliding wings for swinging wings, e.g. counterbalance with a coil spring perpendicular to the pivot axis with a compression spring for counterbalancing
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05YINDEXING SCHEME RELATING TO HINGES OR OTHER SUSPENSION DEVICES FOR DOORS, WINDOWS OR WINGS AND DEVICES FOR MOVING WINGS INTO OPEN OR CLOSED POSITION, CHECKS FOR WINGS AND WING FITTINGS NOT OTHERWISE PROVIDED FOR, CONCERNED WITH THE FUNCTIONING OF THE WING
    • E05Y2201/00Constructional elements; Accessories therefore
    • E05Y2201/10Covers; Housings
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05YINDEXING SCHEME RELATING TO HINGES OR OTHER SUSPENSION DEVICES FOR DOORS, WINDOWS OR WINGS AND DEVICES FOR MOVING WINGS INTO OPEN OR CLOSED POSITION, CHECKS FOR WINGS AND WING FITTINGS NOT OTHERWISE PROVIDED FOR, CONCERNED WITH THE FUNCTIONING OF THE WING
    • E05Y2900/00Application of doors, windows, wings or fittings thereof
    • E05Y2900/20Application of doors, windows, wings or fittings thereof for furnitures, e.g. cabinets

Definitions

  • the present invention relates to an actuating arm drive for at least one pivotably mounted actuating arm with the features of the preamble of claim 1 and a piece of furniture with such an actuating arm drive.
  • actuating arm drives for movable furniture parts are known in the prior art.
  • Such actuating arm drives for movable furniture parts usually have at least one swivel arm which is connected to the movable furniture part and which is or are received in a housing of the actuating arm drive.
  • EP 2 924 215 A1 and DE 102 03 269 A1 actuators with a housing and an actuating arm arrangement for moving a furniture flap according to the preamble of claim 1 are shown.
  • actuating arm arrangement for moving a furniture flap according to the preamble of claim 1 are shown.
  • at least one actuating arm of the actuating arm arrangement protrudes downward from the housing.
  • the closed position of the actuating arm corresponds to that pivoting position of the plurality of articulated levers of the actuating arm in which, for example, the flap of a piece of furniture is in the closed position.
  • the front side of the housing is to be understood as that side of the housing which, in the open position of the actuating arm drive, is directed in the direction of the opening of the furniture or, in a closed position of the actuating arm drive, is directed towards the inside of the flap of the furniture.
  • the articulately connected levers which act on or form the actuating arm can have a nested or folded arrangement in one another or in relation to one another in the closed position of the actuating arm drive.
  • the housing can have a significantly smaller overall size than when the levers are fully received in the housing when the actuating arm drive is in a closed position.
  • the at least two articulated levers protrude from the end face of the housing.
  • the longitudinal side of the housing is free of protruding parts or levers. This can have a positive effect on the visual appearance of the actuator drive and, on the other hand, enable unhindered access to a piece of furniture with such an actuator drive. Since the interior of a piece of furniture and the actuator drive itself are usually only visible to a user in the open position of the actuator drive, such an actuator drive has a visually appealing and very space-saving design.
  • the housing has an essentially rectangular shape when viewed from the side. This can result in a particularly compact design of the housing of the actuating arm drive.
  • a rectangular shape of the housing can also enable the end faces and longitudinal sides of the housing to be designed in a straight line, which can facilitate alignment and assembly, for example.
  • the seven-joint kinematics has a main lever pivotably mounted about a first pivot axis on the housing, two intermediate levers pivotably mounted on the main lever, a guide lever pivotably mounted on one of the intermediate levers and a second pivot axis on the housing, and a support lever pivotably mounted on the intermediate levers .
  • a seven-joint kinematics enables a particularly advantageous embodiment of the actuating arm drive to be achieved.
  • At least the main lever and / or one of the intermediate levers are profiled in cross-section, preferably profiled with a cross-sectional shape that essentially corresponds to a U-profile.
  • the design of the main lever which is profiled in cross section, enables the actuating arm drive to be designed to be particularly torsion-resistant and thus stable.
  • the relevant levers can be designed essentially in one piece.
  • the actuator drive can have a compact appearance and an effective protection against jamming of a user's fingers.
  • the guide lever and the intermediate lever pivotably connected to it are nested in one another.
  • the possible pivoting range and the space requirement of the actuating arm or the actuating arm drive can be optimized.
  • the shape of the housing is essentially cuboid.
  • a cuboid housing is characterized by the optimal utilization of the inner area of the housing as well as by straight side or end faces.
  • the vertical extension of the housing is smaller, preferably essentially by half smaller, than the longitudinal extension of the housing.
  • the longitudinal extension of the housing is less than or equal to 28 cm, preferably less than or equal to 25 cm, particularly preferably less than or equal to 19 cm.
  • the energy store is designed in the form of at least one spring, which is installed in the housing in the assembly position of the housing.
  • the energy store is designed in the form of at least one spring, which is installed in the housing in the assembly position of the housing.
  • the furniture carcass has a carcass cover and the actuating arm drive with the housing in the assembly position in the furniture carcass with a longitudinal side of the housing is directly adjacent, preferably at a distance of less than 2 cm, below the carcass cover.
  • Fig. 1a shows a piece of furniture 3 with a furniture body 30, in the interior of which below a body cover 31 two actuating arm drives 1 are mounted.
  • a movable flap 4 is attached to the actuating arms 2 of the actuating arm drives 1 and is therefore pivotably mounted on the furniture body 30 by means of the actuating arm drives 1.
  • the actuating arm drive 1 is fastened to the furniture body 30 via a housing 5 provided with a housing cover 55.
  • FIG. 13 shows a perspective view of a sectional representation of the FIG Fig. 1a furniture 3 shown, the actuating arm drive 1 being shown without the housing cover 55 of the housing 5.
  • a flap 4 is attached to the actuating arm 2 of the actuating arm drive 1.
  • Figures 2a to 2d show the course of an opening movement - or, in reverse order, the course of a closing movement - of a piece of furniture 3 with a pivoted flap 4
  • Fig. 2a the closed position of the actuating arm drive 1 is shown, in which the furniture body 30 is closed off by the flap 4.
  • the actuating arm drive 1 has a pivotably mounted actuating arm 2 with several articulated levers, parts of the main lever 6 pivotably mounted on the housing 5, the pivotably mounted intermediate lever 7 and part of the support lever 10 designed to fasten the flap 4 you can see.
  • the end face 51 of the housing 5 of the actuating arm drive 1 facing the inside of the flap 4 is free of protruding levers of the actuating arm 2 in the closed position of the embodiment shown and is essentially flush with the furniture body 30.
  • the housing 5 of the actuating arm drive 1 has a front side that adjoins the longitudinal side 52 End face 51 and a further rear end face 56 adjoining the longitudinal side 52.
  • the essentially Z-shaped arrangement (dashed or broken lines) of the levers 6, 7, 10, which here partially protrude from the longitudinal side 52 of the housing 5, can be seen (see also FIG Figure 7a ).
  • the flap 4 can be fastened to the actuating arm 2, specifically to the support lever 10 of the actuating arm 2, by means of the mounting plate 41.
  • the assembly of the flap 4 by means of the assembly plate 41 on the support lever 10 can be releasably fastened, for example by means of latching means 42 in the form of a clip mechanism. Further details on the mounting plate 41 are also the Figures 7b and the Figure 11 refer to.
  • Figure 2c shows a piece of furniture 3 with a flap 4 swiveled further in the direction of the open position.
  • the actuating arm 2 carrying the flap 4 is swiveled further in the direction of the open position, so that next to the main lever 6 and the nested intermediate levers 7, 8 and the support lever 10 the guide lever 9 pivotably mounted on the housing 5 can also be seen.
  • the levers form nested seven-joint kinematics.
  • the longitudinal side 52 of the housing 5 is already free of protruding levers, so that reaching into the interior of the furniture 3 can be made significantly easier for a user.
  • the levers forming the actuating arm 2 consequently only protrude from the end face 51 of the housing 5 in this pivoting position of the actuating arm drive 1, which is close to the open position.
  • a piece of furniture 3 is shown with a completely open flap 4.
  • the actuating arm 2 of the actuating arm drive 1 is in the open position, which thereby it is characterized in that the levers forming the actuating arm 2 protrude from the end face 51 of the housing 5.
  • the longitudinal side 52 of the housing 5 directly adjoining the end face 51 is free of protruding levers in the open position of the actuating arm drive 1.
  • Fig. 3 shows a perspective view of an actuator drive 1 with the housing cover 55 removed.
  • the alignment of the actuator drive 1 essentially corresponds to the mounting position in a piece of furniture 3 shown in the preceding figures horizontally extending spring 12, an articulated to this and pivotably mounted on the housing 5 reversing lever 13 and a pivotably connected to this transmission lever 14 is housed.
  • the actuating arm drive 1 also has a damping device 24 for damping the pivoting movement of the actuating arm 2 during a closing movement.
  • the actuating arm 2 is in the in Fig.
  • the illustrated embodiment of the actuator drive 1 consists of a main lever 6 pivotably mounted on the housing 5 about a first pivot axis S1, two intermediate levers 7, 8 pivotably mounted on the main lever 6, a guide lever 9 pivotably mounted on the second intermediate lever 8 and about a second pivot axis S2 on the housing 5 and a support lever 10 pivotably mounted on the intermediate levers 7, 8.
  • the guide lever 9 is formed by a first lever 91 and a second lever 92 connected to it, as well as a third lever 93 (not visible here).
  • the main lever 6 and the first intermediate lever 7 have a profiled cross section that essentially corresponds to a U-profile and are arranged nested in one another.
  • first intermediate lever 7 and the second intermediate lever 8 are nested within one another, as is also the case for the second intermediate lever 8 and the guide lever 9.
  • the main arm 6 is acted upon by a force from the energy store 11 via a force introduction element 16.
  • the force introduction element 16 is pivotably connected to the transmission lever 14 of the energy accumulator 11 and pivotably connected to the adjusting device 15 attached to the main lever 6.
  • the force introduction point x1 of the force introduction element 16 is located on the main lever below the pivot axis S1, whereby a torque is effectively exerted on the main lever 6 by the energy store 11, so that the actuating arm 2 is pivoted in the direction of the open position without any external influence.
  • FIG 4a shows a side view of an actuating arm drive 1 with the housing cover 55 removed.
  • the actuating arm 2 of the actuating arm drive 1 is, as shown, in the closed position, whereby the energy stored by the energy store 11 via the transmission lever 14 acts on the main lever 6 of the actuating arm 2 in such a way that it is active is pushed into the closed position.
  • the line of action of the force coming from the energy store 11 runs along the transmission lever 14 in relation to the pivot axis S1 of the main lever 6 (above the pivot axis S1) that the main lever 6 is actively engaged via the force introduction element 16 connected to the main arm 6 by means of the adjustment device 15 the closed position is pivoted and held in this.
  • the adjustment device 15 is in the form of a threaded spindle 20 rotatably mounted on the main arm 6 (see also FIG Figure 5a ), a sliding block 21 displaceably mounted in the threaded spindle 20 and a guide track 22, which is essentially straight in the main arm 6, and an intermediate piece 23 articulated to the sliding block 21 and the force introduction element 16.
  • the threaded spindle 20, the sliding block 21 and the intermediate piece 23 are arranged at least partially in the inner region of the main lever 6, which is embodied in a profiled manner.
  • a contact contour 17 is formed on end faces 18 of the main lever 6 for the contact of the force introduction element 16, the adjustment device 15 being designed to adjust the force introduction element 16 along the contact contour 17.
  • Figure 4c is an actuator drive 1 with a located in the Actuating arm 2 located in the open position is shown.
  • the levers forming the actuating arm 2 protrude from the end face 51 of the housing 5 of the actuating arm drive 1.
  • the setting device 15 is in a setting in which the force introduction element 16 is positioned on the contact contour 17 at a first force introduction point x1.
  • the distance (radial) between the pivot axis S1 of the main lever 6 and the first force introduction point x1 is maximally large, as a result of which a large force acts on the actuating arm 2 from the energy store 11.
  • the stylistically indicated force introduction element 16 is located at the second force introduction point x2 (see also FIG Figure 9a ).
  • An adjustment of the force introduction point of the force introduction element 16 on the contact contour 17 of the main lever 6 takes place in the open position of the actuating arm drive 1 essentially transversely to the line of action of the force running along the transmission lever 14.
  • FIG. 11 shows a side view of a sectional illustration of an actuator drive 1 in one as in FIG Figure 4c
  • the individual parts of the adjustment device 15 are also shown in this sectional view.
  • screens 29 can be provided which cover openings in the housing 5 or in the actuating arm 2 itself that arise when the actuating arm 2 is pivoted.
  • the third lever 93 can be preloaded by stretching or compressing to the first standard distance d1 so that it retains its preload when installed . This can lead to a stabilization of the guide lever 9 composed of the individual levers.
  • Figures 8 and 8a is a side and detailed view of a piece of furniture 3 with a substantially completely open flap 4 is shown.
  • the setting device 15 of the actuating arm drive 1 is in a first setting in which the force introduction element 16 introducing the force from the energy accumulator 11 onto the main arm 6 is located at a first force introduction point x1 along the contact contour 17 formed on the main lever 6.
  • the sliding block 21 displaceable by the threaded spindle 20 in the guide track 22 is located in this first setting of the setting device 15 as shown at a first end of the guide track 22 remote from the contact contour 17, whereby the connection of the sliding block 21 with the connecting piece 23 by means of the intermediate piece 23 the force introduction element 16, this is positioned on the contact contour 17 at a force introduction point x1 remote from the pivot axis S1.
  • FIGS 9 and 9a show a side and detailed view of a piece of furniture 3 with an essentially completely open flap 4, as shown in detail A from FIG Figure 9a the setting device 15 of the actuator drive 1 is in a second setting.
  • the sliding block 21 mounted on the threaded spindle 20 is in this second setting at a second end of the guide track 22 facing the contact contour 17, whereby the connection of the sliding block 21 with the force introduction element 16 via the intermediate piece 23 approximates it to one of the pivot axis S1 second force introduction point x2 along the contact contour 17 is positioned.
  • the torque exerted on the main lever 6 is minimal, so this setting is suitable for compensating for the weight of flaps 4 with a low dead weight.
  • Figures 10 and 10a show a side and detailed view of a piece of furniture 3 with a flap 4 in the open position, with detail A from FIG Figure 10a the lines of action of the force acting on the main arm 6 from the energy accumulator 11, which run along the transmission lever 14, are shown.
  • the force introduction element 16 is located on a first one Force introduction point x1 along the contact contour 17.
  • the tangent t1 illustrates the inclination of the contact contour 17 at the first force introduction point x1.
  • the force introduction element 16 would be displaced along the tangent t1 when the adjustment device 15 is adjusted.
  • an obtuse (greater than 90 °) angle ⁇ would thus result between the line of action running to the second force introduction point x2 and the tangent to the contact contour.
  • the contact contour 17 is curved, especially concave towards the line of action of the force, it can be achieved that the angle ⁇ enclosed by the line of action of the force in the force introduction point x2 and the inclination of the contact contour 17 illustrated by the tangent t2 is an acute angle ( less than 90 °).
  • FIG Figure 11 a perspective view of a piece of furniture 3 with an actuating arm drive 1 mounted in the furniture body 30 is shown.
  • the position shown of the actuating arm 2 of the actuating arm drive 1 corresponds to a partially open or partially closed position of the actuating arm drive 1.
  • FIG Figure 11 the representation of a flap 4 has been omitted.
  • the mounting plate 41 is shown detached from the support lever 10 and can be preassembled on a flap 4.
  • the mounting plate 41 can be releasably fastened to the support lever 10, for example by means of latching means 41.
  • latching means 41 can be designed, for example, as clip connections known from the applicant.
  • the mounting plate 41 can be mounted essentially flat against the inner surface of the flap 4. As a result, there is no need for complex machining of the flap 4, such as the introduction of millings.

Claims (15)

  1. Entraînement de bras d'actionnement (1) pour au moins un bras d'actionnement (2) disposé de manière pivotante, en particulier afin d'entraîner une porte (4) d'un meuble (3), doté de plusieurs leviers (6, 7, 8, 9, 10) reliés l'un à l'autre de manière articulée, lesquels sont logés au moins partiellement dans un boîtier (5) montable sur le meuble (3), dans lequel les leviers qui agissent sur ou réalisent le bras d'actionnement (2) font saillie hors d'une face frontale (51) du boîtier (5) au moins dans la position d'ouverture du mécanisme de bras d'actionnement (1), dans lequel ― dans la position de fermeture du mécanisme de bras d'actionnement (1) ― au moins deux leviers (6, 7) reliés l'un à l'autre de manière articulée font saillie hors d'une face longitudinale (52) du boîtier (5), de préférence directement jointe à la face frontale (51), caractérisé en ce que, dans la position de fermeture, un levier (10) pouvant être relié à la porte (4), le levier (7) relié à celui-ci de manière articulée et le levier (6) relié à l'autre extrémité de celui-ci de manière articulée sont disposés sensiblement en Z en vue de côté.
  2. Entraînement de bras d'actionnement (1) selon la revendication 1, dans lequel dans la position d'ouverture du mécanisme de bras d'actionnement (1) les au moins deux leviers (6, 7) reliés l'un à l'autre de manière articulée font saillie hors de la face frontale (51) du boîtier (5).
  3. Entraînement de bras d'actionnement (1) selon au moins une des revendications précédentes, dans lequel une cinématique à sept articulations est réalisée par les leviers du mécanisme de bras d'actionnement (1) reliés l'un à l'autre de manière articulée, dans lequel la cinématique à sept articulations comporte de préférence un levier principal (6) disposé de manière pivotante sur le boîtier (5) autour d'un premier axe de pivot (S1), deux leviers intermédiaires (7, 8) disposés de manière pivotante sur le levier principal (6), un levier de guidage (9) disposé de manière pivotante sur un des leviers intermédiaires et sur le boîtier (5) autour d'un deuxième axe de pivot (S2), et un levier porteur (10) disposé de manière pivotante sur les leviers intermédiaires (7, 8).
  4. Entraînement de bras d'actionnement (1) selon la revendication 3, dans lequel au moins le levier principal (6) et/ou un des leviers intermédiaires sont réalisés avec une section profilée, de préférence avec une forme de section correspondant sensiblement à un profil en U.
  5. Entraînement de bras d'actionnement (1) selon la revendication 4, dans lequel les leviers intermédiaires (7, 8) et/ou le levier principal (6) et les leviers intermédiaires (7, 8) sont imbriqués l'un dans l'autre, dans lequel, de préférence, les leviers intermédiaires (7, 8) se chevauchent sans interstice latéralement par rapport à la direction de mouvement.
  6. Entraînement de bras d'actionnement (1) selon l'une des revendications 4 ou 5, dans lequel le levier de guidage (9) et les leviers intermédiaires reliés à celui-ci de manière pivotante sont imbriqués l'un dans l'autre.
  7. Entraînement de bras d'actionnement (1) selon au moins une des revendications précédentes, dans lequel l'étendue en hauteur du boîtier (5) est inférieure, de préférence sensiblement inférieure de moitié, à l'étendue longitudinale du boîtier (5).
  8. Entraînement de bras d'actionnement (1) selon au moins une des revendications précédentes, dans lequel le mécanisme de bras d'actionnement (1) comporte un accumulateur de force (11) et l'accumulateur de force (11) opère sur au moins un des leviers du mécanisme de bras d'actionnement (1) disposés de manière pivotante sur le boîtier, dans lequel l'accumulateur de force (11) est de préférence réalisé sous la forme d'au moins un ressort (12), lequel est monté à plat dans le boîtier (5) dans la position assemblée du boîtier (5).
  9. Entraînement de bras d'actionnement (1) selon au moins une des revendications précédentes, dans lequel le mécanisme de bras d'actionnement (1) est entraîné électriquement, de préférence par un moteur électrique.
  10. Entraînement de bras d'actionnement (1) selon au moins une des revendications précédentes, dans lequel dans la position de fermeture du mécanisme de bras d'actionnement (1), les leviers qui agissent sur ou réalisent le bras d'actionnement (2) sont disposés entre la face frontale (51), laquelle est de préférence une face frontale avant (51) du boîtier (5), et une autre face frontale (56), laquelle est de préférence une face frontale arrière (56) du boîtier (5).
  11. Entraînement de bras d'actionnement (1) selon au moins une des revendications précédentes, dans lequel une plaque de montage (41) pouvant être prémontée sur la porte (4) et des moyens d'encliquetage amovibles (42) sont prévus, par le biais desquels le bras d'actionnement (2) peut être relié de manière amovible à la plaque de montage (41).
  12. Entraînement de bras d'actionnement (1) selon au moins une des revendications précédentes, dans lequel dans la position de fermeture du mécanisme de bras d'actionnement (1), parmi les leviers susnommés qui suivent :
    un levier (10) pouvant être relié à la porte (4),
    un levier (7) relié à celui-ci de manière articulée et
    un autre levier (6) relié à l'autre extrémité du précédent de manière articulée, le levier (10) pouvant être relié à la porte (4) et ledit autre levier (6) sont sensiblement parallèles l'un à l'autre.
  13. Meuble (3) doté d'un caisson de meuble (30), d'un entraînement de bras d'actionnement (1) selon au moins une des revendications précédentes et d'au moins une porte de meuble (4).
  14. Meuble (3) selon la revendication 13, dans lequel le caisson de meuble (30) comporte un couvercle de caisson (31) et le mécanisme de bras d'actionnement (1) est, dans la position assemblée, monté dans le caisson de meuble (30) directement adjacent à une face longitudinale (52) du boîtier (5), de préférence avec un écart inférieur à 2 cm, en-dessous du couvercle de caisson (31).
  15. Meuble (13) selon l'une des revendications 13 ou 14, dans lequel dans la position de fermeture de l'entraînement de bras d'actionnement (1) les leviers qui agissent sur ou réalisent le bras d'actionnement (2) sont disposés entièrement à l'intérieur du caisson de meuble (30) et se terminent de préférence en affleurement avec le caisson de meuble (30).
EP17711068.1A 2016-02-26 2017-02-24 Entraînement de bras d'actionnement Active EP3420167B1 (fr)

Priority Applications (1)

Application Number Priority Date Filing Date Title
EP21204179.2A EP3967840B1 (fr) 2016-02-26 2017-02-24 Entraînement de bras de réglage

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
AT501472016 2016-02-26
PCT/AT2017/060046 WO2017143378A1 (fr) 2016-02-26 2017-02-24 Entraînement de bras d'actionnement

Related Child Applications (1)

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EP21204179.2A Division EP3967840B1 (fr) 2016-02-26 2017-02-24 Entraînement de bras de réglage

Publications (2)

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EP3420167A1 EP3420167A1 (fr) 2019-01-02
EP3420167B1 true EP3420167B1 (fr) 2021-11-03

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EP17711068.1A Active EP3420167B1 (fr) 2016-02-26 2017-02-24 Entraînement de bras d'actionnement
EP21204179.2A Active EP3967840B1 (fr) 2016-02-26 2017-02-24 Entraînement de bras de réglage

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EP21204179.2A Active EP3967840B1 (fr) 2016-02-26 2017-02-24 Entraînement de bras de réglage

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EP (2) EP3420167B1 (fr)
JP (1) JP6793743B2 (fr)
CN (1) CN108699874B (fr)
AT (1) AT16417U1 (fr)
ES (2) ES2905778T3 (fr)
HU (2) HUE062333T2 (fr)
WO (1) WO2017143378A1 (fr)

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CN108699874B (zh) 2021-03-02
AT16417U1 (de) 2019-08-15
EP3967840B1 (fr) 2023-04-05
EP3967840A1 (fr) 2022-03-16
JP2019506552A (ja) 2019-03-07
CN108699874A (zh) 2018-10-23
WO2017143378A1 (fr) 2017-08-31
HUE057277T2 (hu) 2022-05-28
JP6793743B2 (ja) 2020-12-02
HUE062333T2 (hu) 2023-10-28
ES2905778T3 (es) 2022-04-12
EP3420167A1 (fr) 2019-01-02
ES2950019T3 (es) 2023-10-04

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