EP3484324A1 - Dispositif d'entraînement d'élément de meuble mobile, et procédé d'ouverture et de fermeture d'un élément de meuble mobile - Google Patents

Dispositif d'entraînement d'élément de meuble mobile, et procédé d'ouverture et de fermeture d'un élément de meuble mobile

Info

Publication number
EP3484324A1
EP3484324A1 EP17739275.0A EP17739275A EP3484324A1 EP 3484324 A1 EP3484324 A1 EP 3484324A1 EP 17739275 A EP17739275 A EP 17739275A EP 3484324 A1 EP3484324 A1 EP 3484324A1
Authority
EP
European Patent Office
Prior art keywords
furniture part
control element
movable furniture
ejection device
drive device
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.)
Granted
Application number
EP17739275.0A
Other languages
German (de)
English (en)
Other versions
EP3484324B1 (fr
Inventor
Stefan Klaus
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.)
Paul Hettich GmbH and Co KG
Original Assignee
Paul Hettich GmbH and Co KG
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 Paul Hettich GmbH and Co KG filed Critical Paul Hettich GmbH and Co KG
Publication of EP3484324A1 publication Critical patent/EP3484324A1/fr
Application granted granted Critical
Publication of EP3484324B1 publication Critical patent/EP3484324B1/fr
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Classifications

    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47BTABLES; DESKS; OFFICE FURNITURE; CABINETS; DRAWERS; GENERAL DETAILS OF FURNITURE
    • A47B88/00Drawers for tables, cabinets or like furniture; Guides for drawers
    • A47B88/40Sliding drawers; Slides or guides therefor
    • A47B88/453Actuated drawers
    • A47B88/46Actuated drawers operated by mechanically-stored energy, e.g. by springs
    • A47B88/463Actuated drawers operated by mechanically-stored energy, e.g. by springs self-opening

Definitions

  • the present invention relates to a drive device for a movable furniture part, with a latchable ejection device, by means of which the movable furniture part from a closed position by an energy storage in the opening direction is ejected, the ejection device can be unlocked by overriding the movable furniture part from the latched closed position in the closing direction, and an overpressure protection is provided, which prevents unlocking of the ejection device during a closing operation and during a movement of the movable furniture part beyond the closing position into the overpressing position, wherein the ejection device can be unlocked via a control element that engages with the movable furniture part of a closing position in the overpressure position is movable, and a method for opening and closing a movable furniture part.
  • WO 2014/1 65877 discloses a drive device for a movable furniture part, in which for ejecting the movable furniture part a
  • pivotable ejection lever which can be latched in a closed position.
  • To unlock the movable furniture part can be moved into an overpressure position, then eject the furniture part on the ejection lever and a power storage in the opening direction. If the movable furniture part is moved beyond the closed position into the overpressure position during a closing operation, a blocking element is provided which prevents unlocking of the ejection device when the overpress position is reached. This avoids that at a high closing speed, the movable furniture part is accidentally ejected again.
  • Blocking element is about a return device of a
  • Blocking position in a release position delayed movable An immediate opening of the movable furniture part after a closing operation is thus prevented.
  • the time delay takes place via a switching of the blocking element after the closing operation.
  • an undesirably long delay can occur before the next opening process can be carried out.
  • the blocking element is mechanically stressed during an opening attempt. It is therefore an object of the present invention to provide a driving device for a movable furniture part and a method for opening and closing a movable furniture part, with which a secure overpress protection can be obtained by simple mechanical means.
  • a drive device with the features of claim 1 and a method for opening and closing a movable furniture part with the features of claim 1 1.
  • an overpressure protection is ensured with a locking element which blocks in a first position movement of the control in the actuation position and in a second position the access for the control to an actuation position releases, from which the control can unlock the ejector.
  • the blocking element for overpressure protection can block the control element and release access to the actuating position only if a renewed unlocking is to take place.
  • the blocking element thus blocks the control element on the way to the actuation position, so that the time period can be set as required until a next unlocking operation. It is not necessary to use a blocking element, which blocks an unlocking only after reaching the closed position, but the blocking element is already effective when the movable Mö- part is in an overpressure position or on the way from the overpressure position in the closed position. In this case, no forces act on the blocking element by the movable furniture part, but only forces the control element, which is biased directly or indirectly via a spring into the actuation position.
  • the movable furniture part is movable together with the control in the closing direction for unlocking the ejection device, in which case a slider is then moved, which is connected to a part of the locking receptacle.
  • the latching receptacle can be moved into a release position.
  • the ejection device preferably comprises a housing on which a guide track for the control element is formed. On the control then a pin may be formed, which engages in the guideway, wherein the Locking element can block the pin and thus the control of a movement in the operating position.
  • the control element can be arranged in the actuation position adjacent to a slide which is displaceable against the force of a spring when it is unlocked by the control element.
  • the slider may be formed adjacent to the control stepped and form a receptacle for a pin of the control, in particular an angular recording.
  • the locking element is movably mounted on the slider.
  • the blocking element can be arranged displaceably or pivotably on the slide or the housing.
  • the release member comprises a damper, which brakes the movement of the blocking element from the first to the second position.
  • the damper can be designed as a linear damper, which is biased by a spring in the starting position.
  • the damper is designed as a rotary damper, which is coupled via a mechanism with the blocking element.
  • another mechanical timer can be provided for the delayed movement of the blocking element. Simple mechanical timers are e.g. Suction cups with a small hole, which solve the contact with a surface due to the incoming air or an elastomer with a slowed return movement.
  • the clamping operation for the force accumulator of the ejection device takes place during a closing movement of the movable furniture part preferably spaced from the Diseinyaksposition, for example at least 25 mm apart from the Diseinzugsposition in a range between 1 00 mm to 40 mm before the closed position. It is also possible for the self-closing device to clamp a part of the spring energy of the ejection device, so that the ejection device only locks into the effective range of the self-closing mechanism.
  • a first pin can be provided on the control element, which in a guide path on a housing is guided, and a second pin which engages with the driver, which is engageable with the activator.
  • the driver can be moved relative to the control, wherein the control is arranged in an ejection movement in a different position relative to the driver, as in a closing movement.
  • a movable furniture part is ejected after unlocking an ejection device. Subsequently, the movable furniture part is moved in the closing direction in order to tension a force accumulator, wherein a control coupled to the driver is moved along a guideway.
  • the control element is deposited on a latching receptacle on the guideway and / or a blocking element, wherein the blocking element is then moved into a release position, in order to move the control further along the latching receptacle or the blocking element into an actuation position, in which the control element is the ejection device can unlock.
  • the movement of the blocking element can be braked by a damper in order to set the time period from when the movable furniture part is released again for unlocking.
  • FIG. 1 shows an exploded perspective view of a furniture with a drive device according to the invention
  • Figure 2 is a perspective view of a drawer with two drive devices
  • Figure 3 is a perspective view of an inventive
  • FIGS. 4A and 4B are two exploded views of the drive device of Figure 3;
  • FIGS. 5A and 5B show two views of the drive device of FIG. 3 in a closed position;
  • FIGS. 6A and 6B show two views of the drive device of FIG. 3 in an overpressing position
  • Figures 7A and 7B are two views of the drive device of Figure 3
  • Figures 8A and 8B are two views of the drive device of Figure 3 when unlocking the slider;
  • Figures 9A and 9B are two views of the drive device of Figure 3 during the clamping operation of the ejector
  • FIGS 10A and 10B show two views of the drive device of Figure 3 in an overpressure position
  • Figure 1 1 A and 1 1 B two views of the drive device of Figure 3 when moving the locking element in a release position;
  • FIGS. 12A and 12B are two exploded views of a second embodiment of an ejector device according to the invention for a drive device;
  • FIGS. 13A and 13B show two views of the drive device of FIG. 12 in the closed position
  • Figs. 14A and 14B are two views of the drive device of Fig. 12 in overboost position
  • FIGS. 15A and 15B are two views of the drive device of FIG. 12
  • Figures 1 6A and 16B show two views of the drive device of Figure 12 upon unlocking the slider;
  • Figures 1 7A and 17B show two views of the drive device of Figure 1 2 during the clamping operation of the ejector;
  • Figures 1 8A and 18B show two views of the drive device of Figure 1 2 in an overpressure position
  • Figures 1 9A and 19B are two views of the drive device of Figure 1 2 when moving the locking element into a release position.
  • Figure 20 is a path-time diagram of a normal closing movement
  • Figure 21 is a path-time diagram of a closing movement with
  • a piece of furniture 1 comprises a body 2 shown schematically in FIG. 1, on which one or more drawers can be movably mounted as movable furniture parts 3.
  • Each drawer is guided on opposite sides via a pullout guide 5, wherein the pullout guide 5 is fixed via a bracket 9 on a side wall of the body 2 and the drawer 3 is fixed to a movable running rail of the pullout guide 5.
  • a front panel 4 of the drawer is at a small distance from the body 2, for example, between 1 mm and 6 mm, to be pressed from this closed position slightly further into the body 2 in an overpressure position to unlock an ejector 6.
  • each ejection device 6 located at a bottom of the drawer at the bottom of two ejection devices 6, which can be coupled at least in a closed area with an activator 7, which is fixedly connected directly or indirectly with the body 2.
  • Each ejection device 6 can thus be supported on the activator 7 to eject the drawer as the movable furniture part 3.
  • the pullout guides 5 are each in one
  • Each pullout guide 5 may be coupled to a self-closing pull, which pulls a movable running rail of the pullout guide 5 in a catchment area in the closing direction and optionally brakes by a damper.
  • a pull-out guide 5 with a self-closing mechanism is disclosed, for example, in the documents DE 1 0 201 1 053 840 A1 or DE 1 0 201 1 054 441 A1, to which reference is made.
  • the ejection device 6 is shown, which is arranged in a housing 1 0.
  • a guide 1 1 is provided in the form of a web on which a driver 12 is movably mounted.
  • a lid 14 is arranged
  • the driver 1 2 is connected to a coupling element 13, which forms a contact surface for the activator 7. Since the coupling element 1 3 has a magnet 24, both tensile and compressive forces can be transmitted between the driver 1 2 and the activator 7.
  • an adjusting mechanism 1 5 is provided, by means of which the position of the coupling element 1 3 relative to the driver 1 2 is adjustable.
  • the coupling element 13 may alternatively be designed as a guided in a guide gripper or other mechanically releasable coupling.
  • a carriage 30 which is slidably mounted in the longitudinal direction of the housing 1 0 in a receptacle 20.
  • a holder 21 is located on one end face in order to fix one end of an energy accumulator in the form of at least one spring 22, in particular a tension spring.
  • two springs 22 are provided, which are each arranged in a spring retainer 31 on the carriage 30.
  • An opposite end of the spring 22 is fixed to a spring holder 32 on the carriage 30, so that the carriage 30 is biased in the opening direction on the housing 10.
  • the Number of springs 22 can be selected depending on the purpose of the drive device.
  • a receptacle 33 for guiding a control element 40 is further provided on the carriage 30, a receptacle 33 for guiding a control element 40 is further provided.
  • side walls 38 are arranged, which cause a guide of the control element 40 substantially perpendicular to the opening direction.
  • the control element 40 is plate-shaped and has protruding sliding elements 44 which bear against the side walls 38 of the receptacle 33.
  • the control element 40 comprises a first pin 41, which is guided in a guide track 1 7 on the housing 1 0.
  • a second pin 42 is further provided, which is guided on the driver 1 2.
  • a groove-shaped track 1 6 for guiding the pin 42 is formed on the driver 1 2.
  • a cam guide 34 is further provided, by means of which a gear 36 is guided.
  • the gear 36 engages with a locking projection 35 in the cam guide 34 and is part of a backstop.
  • a rack 19 is formed on the housing 1 .
  • the gear 36 is guided with a pin in a loop-shaped guide rail 1 8 of the housing 10, wherein a portion of the guide rail 1 8 in the clamping direction on the rack 1 9 passes over while a portion for opening movement, the gear 36 spaced from the rack 19 leads , If a clamping operation of the knock-out device 6 is stopped, the gear 36 engages the rack 1 9 and thus prevents ejection of the movable furniture part.
  • a backstop is described for example in DE 10 201 6 1 07 918.
  • such a backstop is advantageous, but may optionally be omitted.
  • a slider 50 is further provided, which is held in a slide holder 26 on the housing 1 0 slidably.
  • a box-shaped portion 55 engages in the slide holder 26, while a web 56 is received at an end portion 27 of the housing 1 0.
  • the slider 50 is biased by a spring 68 to an initial position.
  • the spring 68 is placed in a spring receptacle 69 on the slider 50 ( Figure 4B), wherein the spring 68 rests on an end face on the slider 50 and on the opposite side to a wall of the housing 1 0.
  • the Spring 68 is designed as a compression spring and thus biases the slider 50 in the opening direction.
  • a guide track 1 7 is formed for the first pin 41 of the control element 40.
  • the guideway 1 7 is formed loop-shaped.
  • a blocking element 64 is shown, which is mounted on the guide track 1 7 adjacent to the locking receptacle pivotally mounted on the housing 1 0.
  • the locking member 64 is coupled to a damper 60 having a cylinder 61 and a piston rod 62 which is insertable into the cylinder 61 to generate damping forces.
  • the damper 60 is biased in an initial position with the piston rod 62 pulled out, for which purpose a spring 63 is wound around the piston rod 62, which is supported on one side on the cylinder 61 and on the opposite side to the blocking element 64.
  • the spring may alternatively be integrated in the cylinder 61 or act as a separate spring element on the blocking element 64.
  • a locking projection 25 is further formed in the region of the guide track 1 7, which cooperates with the locking lug 54 on the slider 50 to lock the slider 50 in an unlocking or release position for the control 40 can.
  • the operation of the ejection device 6 will be explained in more detail with reference to Figures 5 to 1 1, these figures each show two sectional views through the ejection device 6, which are partially arranged in different planes to the position of the pins 41 and 42 in the region of Mit loveds 12 and the guideway 17 to track better.
  • the ejection device 6 is in a closed position.
  • the pin 41 of the control element 40 is in the locking receptacle, which is formed by the blocking element 64 and the receptacle 52 on the pressure piece 51 of the carriage 50.
  • the two-piece locking receptacle is in the closed position, and the ejection device 6 is latched via the pin 41 and the locking receptacle against the force of the springs 22.
  • the second pin 42 of the control is located at an angled end of the web 1 6 on the driver 1 second If the ejection device 6 is to be unlocked, the movable furniture part 3 or the drawer is moved from the closed position into an overpressure position, as shown in FIGS. 6A and 6B.
  • the control element 40 is pressed against the force of the springs 22, which are held on the carriage 30, wherein the movable furniture part on the driver 12 and the pin 42 acts on the control 40.
  • the movable furniture part of the first pin 41 presses against the pressure piece 51 of the slider 50 which is moved relative to the force of the spring 68 relative to the housing 1 0.
  • part of the latching receptacle moves relative to the blocking element 64.
  • the pin 41 can now pass through the gap between the locking element 64 and the pressure piece 51, as shown in Figures 7A and 7B.
  • the driver 1 2 is coupled via the second pin 42 with the control element 40 in the extension direction, so that the movable furniture part is ejected by the driver 1 2.
  • the slider 50 is pressed by the spring 68 again in the opening direction until the latching lug 54 rests against the latching projection 25 of the housing 10.
  • the pressure piece 51 and thus the locking receptacle remains in a release position.
  • the distance between the two parts of the locking receptacle is so large that the pin 41 can pass in between.
  • the carriage 30 with the control element 40, and thereby also the driver 1 2 with the movable furniture part further moves in the opening direction, until the position shown in Figure 8A and 8B is reached.
  • the first pin 41 on the control element 40 runs against a stop bevel 57 on the web 53 and thus releases the detent lug 54 from the detent projection 25.
  • the slide 50 can be moved further in the opening direction by the force of the spring 68, in order to engage the detent receptacle close.
  • the movable furniture part 3 is now moved further in the opening direction until the first pin 41 impinges on a run-on slope 45 of the guide track 1 7 in order to move the control element 40 on the carriage 30.
  • the second pin 42 moves out of the angled end portion of the web 1 6 and thus can be moved along the central portion of the web 1 6, which is slightly inclined to the closing and opening direction to the driver 1 2 further along the guide 1 1 to move to the housing.
  • the second pin 42 is attached to the angled end portion of the web 1 6. drive, and the first pin 41 is located at a tip end of the guide track 17th
  • the activator 7 In order to bring the movable furniture part back into a closed position, the activator 7 is moved against the driver 12, which is coupled via the second pin 42 with the control element 40.
  • the control element 40 thus moves together with the carriage 30 in the closing direction, thereby biasing the springs 22.
  • the backstop When the spring 22 is tensioned, the backstop is also activated by the toothed wheel 36, which moves along the toothed rack 19 on the housing. If the clamping operation is canceled, the gear 36 of the backstop secures the hitherto cocked position of the carriage 30th
  • the control element 40 moves in FIG. 9 on the left side of the guide track 17, up to an angled end on which the blocking element 64 is arranged.
  • the pin 41 moves to the right on the locking element 64
  • the second pin 42 moves from the angled end portion of the web 16 on the driver 12.
  • the driver 12 is decoupled from the control element 40 and can now be further moved in the closing direction by a self-closing. be moved.
  • the web 1 6 has a tendency to the opening and
  • Plunger 52 is positioned, as shown in Figures 5A and 5B. Upon reaching the closed position, on the one hand, the driver 12 reaches the end position and, at the same time, also the pin 41 in an actuating position, in which the ejection device 6 can be unlocked when the movable furniture part 3 is pressed in again.
  • FIG. 10 shows a position in which the movable furniture part 3 was manually moved into the overpressure position via the closed position during the closing movement or the movable furniture part 3 was moved at a high closing speed and thus likewise reached the overpressing position.
  • the pin 41 on the control element 40 is therefore located at a distance from the blocking element 64 within an end section on the guide track 17.
  • FIGS. 1 to 19 show a second exemplary embodiment of an ejection device 6, wherein the same components are provided with the same reference numerals.
  • the second embodiment differs essentially by a modified blocking element 80 and its coupling with a damper 88, so that essentially only the differences from the previous embodiment will be described.
  • a blocking element 80 comprises a web 81, on which a projection 82 is formed for engagement with a control lever 86. On the blocking element 80 is also a toothing 83 for engagement with a gear 89 which is rotatably coupled to a damper 88 in the form of a rotary damper.
  • the blocking element 80 is biased by a holder 84 and a spring 85 in the closing direction.
  • the pin 41 is located on a locking receptacle having a fixed portion 23 which is fixedly disposed on the housing 1 0, preferably integrally formed with the housing 1 0 is formed.
  • a second part of the latching receptacle is formed on a slide 50, which has a receptacle 52 on a pressure piece 51.
  • the pin 41 on the control element 40 is biased in the opening direction via the carriage 30 and the energy accumulator.
  • the movable furniture part is moved with the driver 1 2 and the control element 40 in an overpressure position, wherein the pin 41 moves the slider 50 in the closing direction, as shown in Figure 14.
  • a gap between the first part 23 of the locking receptacle and the pressure piece 51 is made, which is sufficient that the pin 41 along the guide track 1 7 can be moved in the opening direction.
  • the pressure member 51 is shown on the slider 50 in a locking position, wherein the driver 1 2 is moved with the control element 40 in the opening direction.
  • the slider 50 is unlocked from a release position by the pin 41 moves along the run-on slope 57 on the web 53. Characterized the slider 50 is moved by the force of the spring 68 in the closing direction, so that the pressure member 51 is closed together with the first part 23 of the locking receptacle again.
  • the blocking element 80 is arranged with the web 81, which prevents the pin 41 from reaching the receptacle 52 on the pressure piece 51.
  • the blocking element 80 is substantially linearly movable, wherein the movement of the blocking element 80 can be controlled via a control lever 86 which is mounted pivotably about an axis 87.
  • the control lever 86 cooperates with a cam guide 75 on the driver 1 2, which has a recess.
  • the control lever 86 pivots before reaching the closed position and thus moves the locking element 80 with the web 81 to the first part 23 of the locking receptacle, so that the pin 41 is prevented from entering the receptacle 52 on the to reach the other side of the bridge 81.
  • the driver 1 2 is now moved further in the closing direction until the recording of the cam guide 75 arrives in the region of the control lever 86 and releases the control lever 86, which is now due to the force of a spring 85 pulled by the control 80 upwards.
  • the spring 85 is fixed at one end to a holder 84 of the blocking element 80 and at the opposite end to the housing 1 0.
  • control element 80 is coupled via a toothing 83 with a gear 89 of the damper 88, so that braking forces are generated when the blocking element 80 is moved in the housing 10.
  • the spring 85 may also be mounted at any other position to perform the function.
  • the ejection device 6 is shown in an over-press position, in which the pin 41 is located in an end section of the guide track 17. Now, if the movable furniture part is released, the energy accumulator pulls the carriage 30 and thus also the control element 40 in the opening direction and the pin 41 comes against the obliquely arranged first part 23 of the locking receptacle.
  • the driver 1 2 is also moved in the opening direction, so that the control lever 86 is released through the recess on the cam guide 75 and the locking member 80 can be moved by the force of the spring 85 of the first part 23 of the locking receptacle away.
  • the pin 41 can get into the receptacle 52 on the pressure piece 51 and the pin 42 passes into the angled end portion of the web 1 6 and is therefore locked to the driver 1 2. This process is shown in FIG. Subsequently, the closed position is reached, which is already shown in Figure 1 3.
  • FIG. 20 shows a path-time diagram of the ejection device, which is brought into the closed position via a self-closing mechanism.
  • the movable furniture part is retracted by means of a self-closing mechanism, which is designed to be damped, so that the closing speed slows down before reaching the closed position, as shown by the curved path.
  • a movement of the locking element 64 or 80 starts, so that the pin 41 of the control element 40 can get into an operating position, which is done when the closed position is reached. The user can thus unlock or wait for the ejection device again immediately after reaching the closed position, and then move the movable furniture part in an override position, as shown in Figure 20.
  • FIG. 21 shows a path-time diagram in which the closing movement does not take place via the self-closing mechanism, but is controlled manually in an overrun position.
  • the furniture part After tensioning the force accumulator and moving the furniture part over the catchment area, the furniture part is moved beyond the closed position into an overpressure position and held there. Since the closing movement is continuous, the overpressure protection becomes effective and prevents unlocking of the ejection device. After releasing the movable furniture part, this moves into the closed position, wherein at the same time a movement of the blocking element 64 or 80 takes place.
  • the pin 41 of the control element 40 has reached an actuating position and can immediately trigger the ejection device 6 if necessary.
  • the duration of movement of the blocking element can be adjusted if the movement from the overpressure position to the closed position is to be slowed down. This can increase the operation safety of the ejection device 6.

Landscapes

  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Closing And Opening Devices For Wings, And Checks For Wings (AREA)
  • Drawers Of Furniture (AREA)

Abstract

Dispositif d'entraînement pour un élément de meuble mobile (3), comprenant un dispositif d'éjection (6) verrouillable qui permet d'éjecter l'élément de meuble mobile (3) dans une direction d'ouverture à partir d'une position de fermeture, au moyen d'un accumulateur d'énergie (22) , le dispositif d'éjection (6) étant déverrouillé par une pression de déclenchement de l'élément de meuble mobile (3) dans sa direction de fermeture, au-delà de sa position de fermeture verrouillée, le dispositif comprenant une protection contre le déclenchement qui empêche le déverrouillage du dispositif d'éjection (6) lors d'un processus de fermeture et d'un mouvement de l'élément de meuble mobile (3) dans la position de déclenchement au-delà de la position de fermeture. Le dispositif d'éjection (6) est déverrouillable par le biais d'un élément de commande (40) qui peut être déplacé conjointement avec l'élément de meuble mobile (3) d'une position de fermeture à la position de déclenchement. Un élément de blocage (64, 81) est en outre prévu et peut adopter une première position dans laquelle il bloque le déplacement de l'élément de commande (40) vers la position d'activation et une seconde position dans laquelle il permet le déplacement de l'élément de commande (40) dans la position d'activation, et lors d'un mouvement continu de l'élément de meuble mobile (3) dans la direction de fermeture dans la position de fermeture et, au-delà de la position de fermeture, dans la position de déclenchement, l'élément de blocage est amené dans la première position afin d'assurer une protection contre le déclenchement, puis peut être amené dans la seconde position par l'intermédiaire d'un organe de déblocage. L'invention concerne en outre un procédé d'ouverture et de fermeture d'un élément de meuble mobile (3).
EP17739275.0A 2016-07-15 2017-07-13 Dispositif d'entraînement d'élément de meuble mobile, et procédé d'ouverture et de fermeture d'un élément de meuble mobile Active EP3484324B1 (fr)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
DE102016113116.4A DE102016113116A1 (de) 2016-07-15 2016-07-15 Antriebsvorrichtung für ein bewegbares Möbelteil und Verfahren zum Öffnen und Schließen eines bewegbaren Möbelteils
PCT/EP2017/067729 WO2018011355A1 (fr) 2016-07-15 2017-07-13 Dispositif d'entraînement d'élément de meuble mobile, et procédé d'ouverture et de fermeture d'un élément de meuble mobile

Publications (2)

Publication Number Publication Date
EP3484324A1 true EP3484324A1 (fr) 2019-05-22
EP3484324B1 EP3484324B1 (fr) 2020-09-16

Family

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EP17739275.0A Active EP3484324B1 (fr) 2016-07-15 2017-07-13 Dispositif d'entraînement d'élément de meuble mobile, et procédé d'ouverture et de fermeture d'un élément de meuble mobile

Country Status (5)

Country Link
EP (1) EP3484324B1 (fr)
CN (1) CN109475229B (fr)
DE (1) DE102016113116A1 (fr)
ES (1) ES2832658T3 (fr)
WO (1) WO2018011355A1 (fr)

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CN108402735B (zh) * 2018-02-10 2019-11-19 广东库博精密科技有限公司 一种新式按压式反弹缓冲锁件
AT523789B1 (de) * 2020-05-07 2024-04-15 Blum Gmbh Julius Ausziehführung für ein bewegbares Möbelteil

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DE202009001516U1 (de) * 2009-01-19 2010-06-24 Paul Hettich Gmbh & Co. Kg Rastbeschlag und Auszugsführung
DE102011053840B4 (de) 2011-09-21 2021-03-25 Paul Hettich Gmbh & Co. Kg Einzugsvorrichtung zum Einbau in eine Auszugsführung
DE102011054441A1 (de) 2011-10-12 2013-04-18 Paul Hettich Gmbh & Co. Kg Öffnungs- und Schließvorrichtung für ein Schubelement
AT512402B1 (de) * 2012-07-10 2013-08-15 Blum Gmbh Julius Antriebsvorrichtung für ein bewegbares Möbelteil
AT514059B1 (de) * 2013-04-12 2014-10-15 Blum Gmbh Julius Antriebsvorrichtung für ein bewegbares Möbelteil
AT514064B1 (de) * 2013-04-12 2014-10-15 Blum Gmbh Julius Antriebsvorrichtung für ein bewegbares Möbelteil
AT514058B1 (de) * 2013-04-12 2014-10-15 Blum Gmbh Julius Antriebsvorrichtung für ein bewegbares Möbelteil
US9386721B2 (en) * 2014-06-05 2016-07-05 Jochu Technology Co., Ltd. Fixing device for sliding mechanism
DE102016107918A1 (de) 2016-04-28 2017-11-02 Paul Hettich Gmbh & Co. Kg Ausstoßvorrichtung für ein bewegbares Möbelteil und Möbel

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CN109475229A (zh) 2019-03-15
EP3484324B1 (fr) 2020-09-16
DE102016113116A1 (de) 2018-01-18
ES2832658T3 (es) 2021-06-10
WO2018011355A1 (fr) 2018-01-18
CN109475229B (zh) 2022-02-22

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