EP3124729B1 - Élement de retenue pour le reglage d'un couvercle de meuble - Google Patents

Élement de retenue pour le reglage d'un couvercle de meuble Download PDF

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Publication number
EP3124729B1
EP3124729B1 EP15178920.3A EP15178920A EP3124729B1 EP 3124729 B1 EP3124729 B1 EP 3124729B1 EP 15178920 A EP15178920 A EP 15178920A EP 3124729 B1 EP3124729 B1 EP 3124729B1
Authority
EP
European Patent Office
Prior art keywords
fitting part
damper
holding element
linear
linear drive
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
EP15178920.3A
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German (de)
English (en)
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EP3124729A1 (fr
Inventor
Attila Mollnar
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.)
Flap Competence Center Kft
Original Assignee
Flap Competence Center Kft
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 Flap Competence Center Kft filed Critical Flap Competence Center Kft
Priority to ES15178920T priority Critical patent/ES2922850T3/es
Priority to PL15178920.3T priority patent/PL3124729T3/pl
Priority to EP15178920.3A priority patent/EP3124729B1/fr
Publication of EP3124729A1 publication Critical patent/EP3124729A1/fr
Application granted granted Critical
Publication of EP3124729B1 publication Critical patent/EP3124729B1/fr
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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
    • E05D15/46Suspension arrangements for wings supported on arms movable in vertical planes with two pairs of pivoted arms
    • E05D15/463Suspension arrangements for wings supported on arms movable in vertical planes with two pairs of pivoted arms specially adapted for overhead wings
    • 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
    • E05F1/1066Closers 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 traction spring
    • E05F1/1075Closers 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 traction spring for counterbalancing
    • 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
    • E05F5/00Braking devices, e.g. checks; Stops; Buffers
    • E05F5/02Braking devices, e.g. checks; Stops; Buffers specially for preventing the slamming of swinging wings during final closing movement, e.g. jamb stops
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05YINDEXING SCHEME ASSOCIATED WITH SUBCLASSES E05D AND E05F, RELATING TO CONSTRUCTION ELEMENTS, ELECTRIC CONTROL, POWER SUPPLY, POWER SIGNAL OR TRANSMISSION, USER INTERFACES, MOUNTING OR COUPLING, DETAILS, ACCESSORIES, AUXILIARY OPERATIONS NOT OTHERWISE PROVIDED FOR, APPLICATION THEREOF
    • E05Y2900/00Application of doors, windows, wings or fittings thereof
    • E05Y2900/20Application of doors, windows, wings or fittings thereof for furniture, e.g. cabinets

Definitions

  • the invention relates to a holding element for adjusting a cover of a piece of furniture, according to the preamble of claim 1.
  • Such a holding element is from WO 2005/075778 A1 known.
  • Another holding element is from the CN 104 583 518 A known, wherein the linear damper in the embodiment shown there, in contrast to the embodiment according to WO 2005/075778 A1 , Is not supported against a component of the linear drive, but directly against the first fitting part.
  • the articulated arm mechanism has, in addition to the first bracket, a second bracket, the brackets being arranged in a trapezoidal manner relative to one another and forming a four-bar linkage.
  • the support arms are subjected to force by the linear drive via the actuating arm in the direction of taking the open position.
  • the articulated arm mechanism also includes a lever which is attached to the first fitting part so that it can pivot about a pivot axis, the actuating arm being pivotably connected to the lever at a distance from the pivot axis. It has been shown that the positioning of the lever, which is acted upon by the linear drive, causes the actuating arm to exert a torque on the flap which keeps the flap in any desired position over a large pivoting range.
  • the support arms are arranged in relation to one another in such a way that they cross when the lid is in the open position. This results in a particularly good support for the cover, in order to keep it in any desired position over as large an angular range as possible. This means that the support arms are not arranged parallel to one another.
  • the holding element comprises two levers, each of which is pivotally attached on one side to a fitting part on the carcass side and on the other hand is pivotably fastened to a fitting part on the flap side, the fitting part on the carcass side being attached to a body of the piece of furniture and the fitting part on the flap side being attached to the flap.
  • the levers are arranged in a trapezoidal shape and form a four-bar linkage.
  • the lid can be opened upwards, with a tension spring being provided which acts on the body-side fitting part on the one hand and on the flap-side fitting part on the other hand, with the tension spring exerting a force on the flap-side fitting part which holds the lid in the open position or holds it independently transferred to the open position.
  • the tension spring is arranged in such a way that when a dead center is passed, the flap is also held in the closed position and a tightening torque results.
  • the object of the present invention is to further develop a holding element as mentioned at the outset in such a way that it is of compact and simple construction.
  • the object is achieved by a holding element according to claim 1.
  • Configurations of the holding element according to the invention result from the dependent claims by way of example.
  • the linear damper is coupled to the first bracket over at least part of the pivoting path and is supported against the first bracket.
  • the parallel arrangement of the linear damper and the linear drive results in an extremely compact design.
  • the retaining element is designed such that in the installed state of the linear drive and the linear damper each have a Have adjustment direction in vertical orientation.
  • the retaining element is then very short in relation to the depth of the furniture and can also be installed in furniture with a small overall depth.
  • linear drive and the linear damper are not arranged such that they can pivot in relation to one another, so that there are fewer moving components, which ensure a simple construction.
  • a damper housing of the linear damper has a first guide element which is coupled to a second guide element of the first support arm over at least part of the pivoting path of the articulated arm mechanism.
  • the linear damper has a damper housing and a damper slide, which can be adjusted axially relative to one another in the adjustment direction of the linear damper.
  • the damper housing is guided in an axially adjustable manner in the setting direction of the linear damper on the first fitting part.
  • the damper slide is supported axially against the first fitting part.
  • the damper housing can have a groove as the first guide element, in which an actuating cam engages as the second guide element at least over part of the pivoting path of the articulated arm mechanism.
  • the linear drive is preferably designed in the form of a spring accumulator, which in one embodiment can have a tension spring.
  • the articulated arm mechanism further includes a second support arm.
  • the first support arm is pivotable about a first body axis on the first fitting part and pivotable about a first cover axis on the second fitting part.
  • the second support arm is pivotable about a second body axis on the first fitting part and pivotable about a second cover axis on the second.
  • the articulated arm mechanism can also have a one have levers.
  • the lever is fastened to the first fitting part so that it can pivot about a pivot axis.
  • the actuating arm is pivotally connected to the lever via a joint at a distance from the pivot axis and is attached to the second fitting part so that it can pivot about a third cover axis.
  • the first support arm and the second support arm are arranged in a trapezoidal manner relative to one another and form a four-part coupling joint.
  • the kinematics of movement of the lid relative to the body is determined by the arrangement of the two support arms. It has been shown here that the arrangement of the lever, which is subjected to force by the linear drive, causes the actuating arm to exert a torque on the cover, which holds the cover in any desired position over a large pivoting range.
  • first support arm and the second support arm is provided in relation to one another in such a way that they cross one another when the lid is in the open position.
  • the support arms are not arranged parallel to one another.
  • a first plane, which contains the first body axis and the first cover axis, and a second plane, which contains the second body axis and the second cover axis, intersect in a common axis of rotation.
  • the cover or the second fitting element rotates around this axis of rotation, with the axis of rotation moving in space.
  • the axis of rotation is arranged between the first body axis and the first cover axis or between the second body axis and the second cover axis, so that the support arms intersect.
  • the body axis, the lid axis and the pivot axis are arranged parallel to one another.
  • the linear drive preferably acts on the joint between the actuating arm and the lever.
  • the lever can have a pivot pin on which the actuating arm is pivotally mounted.
  • the linear drive is supported here on the pivot pin.
  • the linear drive has an adjusting slide which is guided in an axially displaceable manner on the first fitting part in the actuating direction of the linear drive.
  • the linear drive includes a tension spring, which is supported on the one hand on the first fitting part and on the other hand is attached to the adjusting slide.
  • the linear drive preferably also has a guide slide which is guided on the setting slide so that it can be displaced transversely to the setting direction of the linear drive and which is pivotably mounted on the pivot pin. Since the lever pivots about its pivot axis and the pivot pin is thus moved on a circular path, it is provided that the guide slide is guided in a guide groove of the first fitting part, the guide groove running along a movement path of the joint.
  • FIGS. 6 and 7 show a holding element according to the invention in different views and different positions and are described together below.
  • no linear damper is shown for reasons of clarity.
  • the designs shown there have a linear damper that can be designed as in the figures 6 and 7 shown.
  • FIGS. 6 and 7 do not show a linear drive.
  • the embodiment shown there has a linear drive that can be designed as in the Figures 1 to 5 shown.
  • the holding element has a first fitting part 1, which, as in figure 1 shown, can be attached to an inside of a body 2 of a piece of furniture. Furthermore, the holding element comprises a second fitting part 3, which, as also in figure 1 shown, can be attached to a cover 4 of the furniture.
  • the cover 4 is only connected to the body 2 via the holding element and has no hinges. As will be explained later, the lid pivots about an axis of rotation which moves in space and depends on the structure of the holding element.
  • the retaining element has an articulated arm mechanism 20 which has a first support arm 5 and a second support arm 6 .
  • the first support arm 5 is pivotably mounted on the first fitting part 1 on the body side via a first body axis 7 and on the second fitting part 3 on the cover side so that it is pivotable about a first cover axis 8 .
  • the second support arm 6 is pivotably attached via a second body axis 9 to the body-side first fitting part 2 and about a second cover axis 10 to the cover-side second fitting part 4 .
  • the support arms 5, 6 are not arranged parallel to one another. This means that a first plane 21, which contains the first body axis 7 and the first cover axis 8, and a second plane 22, which contains the second body axis 9 and the second cover axis 10, intersect in an axis of rotation 11.
  • the cover 4 rotates about this axis of rotation 11, with the axis of rotation 11 moving in space.
  • the articulated arm mechanism 20 also includes a lever 13 which is attached to the first fitting part 1 so that it can pivot about a pivot axis 14 .
  • the lever 13 is also connected to an actuating arm 15 so that it can be pivoted about a third body axis 16 .
  • the actuating arm 15 is rotatably connected to the second fitting part 3 via a third cover axis 17 . All axes, ie the first body axis 7, the second body axis 9, the third body axis 16, the first cover axis 8, the second cover axis 10, the third cover axis 17 and the pivot axis 14 are arranged parallel and spaced apart from one another.
  • a linear drive 12 is provided on the first fitting part 1 .
  • the linear drive 12 includes a tension spring 18, the linear drive 12 having an adjustment direction L, which is arranged vertically.
  • the tension spring 18 is fastened on the one hand, at a vertically upper end, to the first fitting part 1 and is supported in relation to it. With a second end, a vertically lower end, the tension spring 18 is supported on the other hand in relation to the actuating arm 15 .
  • the tension spring 18 acts on a joint 19 between the actuating arm 15 and the lever 13 .
  • the tension spring 18 is always under tension and therefore pulls the joint 19 vertically upwards.
  • the actuating direction L of the linear drive 12, which is the line of action of the force Tension spring 18 corresponds is oriented such that a clockwise torque as shown in FIG figure 1 is generated on the lever 13.
  • the actuating arm 15 is subjected to force in an upward direction. It is ensured over the largest possible pivoting range of the cover 4 that the torques exerted by the linear drive 12 and the cover 4 cancel each other out, i.e. are in balance, so that the cover 4 is held in the respective pivoted position.
  • the pivoting range in which the cover 4 is held in each pivoting position preferably extends from the open position in accordance with FIG figure 1 up to a dead center position (intermediate position) according to figure 2 , in which the line of action 23 of the actuating arm 15, along which the force is introduced from the actuating arm 15 to the second fitting part 3, intersects with the axis of rotation 11 (this corresponds approximately to the pivoting position according to figure 2 ).
  • the line of action 23 of the actuating arm 15 crosses the axis of rotation 11 about which the cover 4 rotates at a distance such that a clockwise torque as shown in FIG figure 1 is generated on the cover 4.
  • the torque generated thus acts on the cover 4 in the direction of the open position with torque.
  • the line of action 23 of the actuating arm 15 intersects the cover axis 11, so that the actuating arm 15 does not exert any torque on the cover 4.
  • the line of action 23 of the actuating arm 15 crosses the axis of rotation 11 at a distance such that a torque counterclockwise as shown in FIG figure 1 is generated on the cover 4.
  • the torque generated thus acts on the cover 4 in the direction of the closed position.
  • a tightening torque thus acts on the cover 4 in a pivoting angle range shortly before the closed position is reached, so that the cover 4 is securely transferred into the closed position and held in it.
  • the tension spring 18 is arranged on the first fitting part 1 in an exclusively linearly adjustable manner. Since the joint 19, against which the tension spring 18 is supported, does not perform a linear movement, but a movement along a circular segment path around the pivot axis 14, a relative movement must be transverse to the direction L of the linear drive between the Tension spring 18 and the joint 19 are compensated.
  • a pivot pin 24 extending in the direction of the third body axis 16 is provided on the lever 13 .
  • a hook section 25 of the tension spring 18 is supported axially against this.
  • the hook section 25 is arcuate and has a diameter that is larger than the outer diameter of the pivot pin 24.
  • the pivot pin 24 can thus move within the hook section 25 transversely to the adjustment direction L of the linear drive.
  • the pivot pin 24 is supported approximately on the left against a section of the hook section 25 in the representation shown there. in the in figure 2 In the representation shown, the pivot pin 24 rests on a right-hand side of the hook portion 25 on the latter.
  • the linear drive 12 includes an adjusting slide 26 which is guided in an axially adjustable manner within a guide receptacle 31 of the first fitting part 1 along the adjusting direction L of the linear drive.
  • the adjusting slide 26 has a holding projection 29 to which the tension spring 18 is attached and is supported against the adjusting slide 26 .
  • the adjusting slide 26 has a guide section 30 by means of which the adjusting slide 26 is guided within the guide receptacle 31 .
  • the guide portion 30 in longitudinal section according to Figures 3 and 4 U-shaped and vertically upwards, towards the tension spring 18, open.
  • a guide slide 27 is arranged in the guide section 30 . This is supported vertically downwards against the guide slide 27 within the guide section 30 and is guided so as to be displaceable transversely to the setting direction L of the linear drive.
  • the guide slide 27 is guided in a guide groove 28 of the first fitting part 1 .
  • the guide groove 28 runs along a segment of a circle around the pivot axis 14.
  • the pivot pin 24 penetrates the guide groove 28, as does the guide slide 27, the guide slide 27 being arranged on the pivot pin 24 so as to be rotatable. The force exerted by the tension spring 18 is thus transmitted via the adjusting slide 26 and via the guide slide 27 to the pivot pin 24 and thus to the adjusting arm 15 .
  • the design of the guide groove 28 around the pivot axis 14 ensures a movement compensation between the linear adjustment movement of the adjusting slide 26 and the movement of the pivot pin 24 on a circular path around the pivot axis 14 .
  • the holding element also includes a linear damper 32 in the figures 6 and 7 is shown.
  • a linear damper 32 in the figures 6 and 7 is shown.
  • the Figures 1 to 5 is not shown for reasons of clarity of the linear damper.
  • a linear damper according to figures 6 and 7 intended.
  • the figures 6 and 7 is not shown for reasons of clarity of the linear drive according to one of the embodiments Figures 1 to 5 can be designed.
  • the linear damper 32 is arranged parallel to the linear drive 12 and has an adjustment direction D which is arranged parallel to the adjustment direction L of the linear drive 12 .
  • the linear damper 32 comprises a damper housing 33 and a damper slide 34 which can be adjusted axially relative to one another along the adjustment direction D of the linear damper 32 .
  • the damper housing 33 is linearly adjustable in the direction of adjustment D of the linear damper 32 relative to the first fitting part 1 .
  • the damper slide 34 is vertically upward as shown in FIG figure 6 axially supported against the first fitting part 1.
  • the damper slide 34 is part of a gas pressure damper, with the damper slide 34 comprising a piston rod and a piston which is guided in a cylinder of the gas pressure damper.
  • the cylinder of the gas pressure damper which cannot be seen in the figures, is part of the damper housing 33, the damper housing 33 including a plastic guide part in which the cylinder is accommodated.
  • a groove 35 is provided in the damper housing 33 as the first guide element.
  • the groove 35 extends in an arc and is open towards the opening of the body or in the direction towards the articulated arm mechanism 20 .
  • a protruding actuating cam 36 is provided on the first support arm 5 as a second guide element, which interacts with the groove 35 over part of the pivoting path of the holding element.
  • the actuating cam 36 In the open position shown, the actuating cam 36 is outside of the groove 35, but is aligned with the groove 25 when viewed in the pivoting direction.
  • the holding element is acted upon by the linear drive 12 in the direction of the closed position.
  • the groove 35 is arranged in such a way that the actuating cam 36 moves the damper housing 33 vertically upwards, with the damper slide 34 being supported against the first fitting part 1 . This results in a relative movement between the damper housing 33 and the damper slide 34, which dampens the movement of the holding element in the direction of the closed position.
  • the size of the holding element according to the invention is very small, particularly in a direction transverse to the positioning directions L , D.
  • the linear drive 12 and the linear damper 32 can only be displaced axially in the direction of their adjustment directions L, D and are not additionally pivoted, as is customary in the prior art. This results in a simple mechanical construction of the holding element.
  • the pivot point of the tension spring 18 vertically at the top, at which the tension spring 18 is supported against the first fitting part 1 and attached to it, in the vertical direction, i.e. in the actuating direction L of the linear drive 12, is adjustable in its position.
  • the prestressing of the tension spring 18 can thus be adjusted and the force with which the linear drive 12 acts on the actuating arm 15 can be varied in order to adapt the holding element to different lid weights.

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Closing And Opening Devices For Wings, And Checks For Wings (AREA)
  • Legs For Furniture In General (AREA)

Claims (12)

  1. Elément de retenue pour le réglage d'un couvercle d'un meuble, sachant que l'élément de retenue comportant les éléments suivants :
    une première ferrure (1), qui peut être reliée au corps (2) d'un meuble,
    une deuxième ferrure (3), qui peut être reliée au couvercle (4),
    un mécanisme de bras articulé (20) avec au moins un bras de réglage (15) et un premier bras porteur (5), sachant que la première ferrure (1) et la deuxième ferrure (3) sont reliées l'une à l'autre par le mécanisme de bras articulé (20) pouvant pivoter l'une par rapport à l'autre entre une position de fermeture et une position d'ouverture,
    un entraînement linéaire (12), qui est appuyé au moins indirectement d'une part contre la première ferrure (1) et d'autre part contre le bras de réglage (15) et applique une force au bras de réglage (15), et
    un amortisseur linéaire (32) pour amortir le mouvement du mécanisme de bras articulé (20), qui comporte un boîtier d'amortisseur (33) et un coulisseau d'amortisseur (34), qui peuvent être axialement réglés l'un par rapport à l'autre en direction de réglage (D) de l'amortisseur linéaire (32), sachant que le boîtier d'amortisseur (33) est guidé axialement réglable sur la première ferrure (1) en direction de réglage (D) de l'amortisseur linéaire (32), le coulisseau d'amortisseur (34) est axialement appuyé contre la première ferrure (1) et le boîtier d'amortisseur (33) est appuyé contre le mécanisme de bras articulé (20) sur au moins une partie de la course de pivotement, sachant qu'une direction de réglage (L) de l'entraînement linéaire (12) est disposée parallèlement à une direction de réglage (D) de l'amortisseur linéaire (32),
    caractérisé en ce que
    le boîtier d'amortisseur (33) de l'amortisseur linéaire (32) pour l'appui contre le mécanisme de bras articulé (20) est couplé à celui-ci sur au moins une partie de la course de pivotement, et
    le boîtier d'amortisseur (33) de l'amortisseur linéaire (32) comporte un premier élément de guidage (35), qui est couplé à un deuxième élément de guidage (36) du mécanisme articulé (20) sur au moins une partie de la course de pivotement du mécanisme de bras articulé (20) pour produire un mouvement relatif entre le boîtier d'amortisseur (33) et le coulisseau d'amortisseur (34).
  2. Elément de retenue selon la revendication 1, caractérisé en ce que
    le boîtier d'amortisseur (33) est couplé au premier bras porteur (5) du mécanisme de bras articulé (20) sur au moins une partie de la course de pivotement pour le couplage du boîtier d'amortisseur (32) au mécanisme de bras articulé (20) et est appuyé contre le premier bras porteur (5).
  3. Elément de retenue selon l'une quelconque des revendications précédentes,
    caractérisé en ce que
    l'entraînement linéaire (12) est configuré sous la forme d'un accumulateur à ressort.
  4. Elément de retenue selon la revendication 3, caractérisé en ce que
    l'accumulateur à ressort comporte un ressort de traction (18).
  5. Elément de retenue selon l'une quelconque des revendications précédentes,
    caractérisé en ce que
    le mécanisme de bras articulé (29) comporte en plus un deuxième bras porteur (6),
    le premier bras porteur (5) est fixé pouvant pivoter sur la première ferrure (1) autour d'un premier axe de corps (7) et pouvant pivoter sur la deuxième ferrure (3) autour d'un premier axe de couvercle (8), et
    le deuxième bras porteur (6) est fixé pouvant pivoter sur la première ferrure (1) autour d'un deuxième axe de corps (8) et pouvant pivoter sur la deuxième ferrure (3) autour d'un deuxième axe de couvercle (10).
  6. Elément de retenue selon la revendication 5,
    caractérisé en ce que
    le mécanisme de bras articulé (29) comporte en plus un levier (13),
    le levier (13) est fixé sur la première ferrure (1) pouvant pivoter autour d'un axe de pivotement (14), et
    le bras de réglage (15) est relié pouvant pivoter au levier (13) par une articulation (19) à distance de l'axe de pivotement (14) et est fixé sur la deuxième ferrure (3) pouvant pivoter autour d'un troisième axe de couvercle (17).
  7. Elément de retenue selon la revendication 6, caractérisé en ce que
    l'entraînement linéaire (12) vient en prise sur l'articulation (19).
  8. Elément de retenue selon la revendication 7,
    caractérisé en ce que
    le levier (13) comporte un tourillon d'articulation (24) sur lequel est logé pouvant pivoter le bras de réglage (15) et
    l'entraînement linéaire (12) est appuyé sur le tourillon d'articulation (24).
  9. Elément de retenue selon la revendication 8,
    caractérisé en ce que
    l'entraînement linéaire (12) comporte un coulisseau de réglage (26), qui est guidé pouvant être axialement déplacé sur la première ferrure (1) en direction de réglage (L) de l'entraînement linéaire (12), et
    l'entraînement linéaire (12) comporte un ressort de traction (18), qui est appuyé d'une part sur la première ferrure (1) et est fixé d'autre part sur le coulisseau de réglage (26).
  10. Elément de retenue selon la revendication 9, caractérisé en ce que
    l'entraînement linéaire (12) comporte un coulisseau de guidage (27), qui est guidé pouvant se déplacer sur le coulisseau de réglage (26) transversalement à la direction de réglage (L) de l'entraînement linéaire (12) et qui est logé pouvant pivoter sur le tourillon d'articulation (24).
  11. Elément de retenue selon la revendication 10, caractérisé en ce que
    le coulisseau de guidage (27) est guidé dans une rainure de guidage (28) de la première ferrure (1), sachant que la rainure de guidage (28) passe le long d'une trajectoire de mouvement de l'articulation (19) entre le bras de réglage (15) et le levier (13).
  12. Elément de retenue selon l'une quelconque des revendications précédentes,
    caractérisé en ce que
    le boîtier d'amortisseur (33) comporte une rainure (35), dans laquelle vient en prise une came de commande (36) du premier bras porteur (5) sur au moins une partie de la course de pivotement du mécanisme de bras articulé (20) .
EP15178920.3A 2015-07-29 2015-07-29 Élement de retenue pour le reglage d'un couvercle de meuble Active EP3124729B1 (fr)

Priority Applications (3)

Application Number Priority Date Filing Date Title
ES15178920T ES2922850T3 (es) 2015-07-29 2015-07-29 Elemento de retención para ajustar una tapa de un mueble
PL15178920.3T PL3124729T3 (pl) 2015-07-29 2015-07-29 Element mocujący do regulacji pokrywy mebla
EP15178920.3A EP3124729B1 (fr) 2015-07-29 2015-07-29 Élement de retenue pour le reglage d'un couvercle de meuble

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
EP15178920.3A EP3124729B1 (fr) 2015-07-29 2015-07-29 Élement de retenue pour le reglage d'un couvercle de meuble

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AT519935B1 (de) * 2017-05-12 2025-02-15 Blum Gmbh Julius Möbelantriebssystem
CN112196389A (zh) * 2020-10-31 2021-01-08 广东顺德珂玥精密五金制造有限公司 辅助铰链上翻随意停住的举升装置
CN113882774B (zh) * 2021-11-08 2024-06-04 江苏玖星精密科技集团有限公司 一种阻尼单轨嵌入式铰链

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DE29605551U1 (de) 1996-03-26 1996-05-30 Hetal-Werke Franz Hettich Gmbh & Co, 72275 Alpirsbach Klappenbeschlag
AT7500U1 (de) * 2004-02-09 2005-04-25 Blum Gmbh Julius Stellarmantrieb für klappen von schränken
DE102008005463A1 (de) 2008-01-21 2009-07-23 Huwil-Werke Gmbh Möbelschloss- Und Beschlagfabriken Halteelement zum Verstellen eines Deckels eines Möbels
AT508698B1 (de) * 2009-08-20 2017-07-15 Blum Gmbh Julius Möbel mit stellarmanordnung
EP2924215A4 (fr) * 2012-09-25 2016-08-24 Sugatsune Kogyo Dispositif d'ouverture/fermeture de porte

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PL3124729T3 (pl) 2022-10-31
EP3124729A1 (fr) 2017-02-01

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