EP3612701B1 - Pivoting drive - Google Patents

Pivoting drive Download PDF

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Publication number
EP3612701B1
EP3612701B1 EP18719778.5A EP18719778A EP3612701B1 EP 3612701 B1 EP3612701 B1 EP 3612701B1 EP 18719778 A EP18719778 A EP 18719778A EP 3612701 B1 EP3612701 B1 EP 3612701B1
Authority
EP
European Patent Office
Prior art keywords
spring assembly
pivot drive
actuating arm
control curve
rotation
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
EP18719778.5A
Other languages
German (de)
French (fr)
Other versions
EP3612701A1 (en
Inventor
Uwe Sobolewski
Michael Tasche
Gerhard Götz
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.)
Hettich ONI GmbH and Co KG
Original Assignee
Hettich ONI 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 Hettich ONI GmbH and Co KG filed Critical Hettich ONI GmbH and Co KG
Publication of EP3612701A1 publication Critical patent/EP3612701A1/en
Application granted granted Critical
Publication of EP3612701B1 publication Critical patent/EP3612701B1/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

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Classifications

    • 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
    • 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
    • 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
    • E05F1/12Mechanisms in the shape of hinges or pivots, operated by springs
    • E05F1/1246Mechanisms in the shape of hinges or pivots, operated by springs with a coil spring perpendicular to the pivot axis
    • E05F1/1253Mechanisms in the shape of hinges or pivots, operated by springs with a coil spring perpendicular to the pivot axis with a compression spring
    • E05F1/1261Mechanisms in the shape of hinges or pivots, operated by springs with a coil spring perpendicular to the pivot axis with a compression 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
    • E05F3/00Closers or openers with braking devices, e.g. checks; Construction of pneumatic or liquid braking devices
    • 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
    • E05F5/06Buffers or stops limiting opening of swinging wings, e.g. floor or wall stops
    • E05F5/10Buffers or stops limiting opening of swinging wings, e.g. floor or wall stops with piston brakes
    • 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
    • E05Y2201/00Constructional elements; Accessories therefor
    • E05Y2201/60Suspension or transmission members; Accessories therefor
    • E05Y2201/622Suspension or transmission members elements
    • E05Y2201/638Cams; Ramps
    • 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
    • E05Y2600/00Mounting or coupling arrangements for elements provided for in this subclass
    • E05Y2600/10Adjustable
    • 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 present invention relates to a swivel drive for a movable furniture part according to the preamble of claim 1 and claim 2 and a piece of furniture.
  • the DE 20 2010 015 091 U1 discloses a furniture fitting for driving a flap, in which a power drive with springs acts on a power deflection lever in order to preload a hinge drive in the opening or closing direction.
  • a coupling member can be adjusted on the reversing lever.
  • the disadvantage here is that different spring forces and also a different spring force curve depending on the opening position of the flap are required for flaps of different widths and weights.
  • the adjustment options for this furniture fitting are insufficient.
  • the WO 2016/077851 discloses an actuator for moving a furniture part, in which a spring device acts on a rotatable actuating arm via a transmission mechanism.
  • a pressure piece loaded by a spring device can be moved along an adjusting contour which can be adjusted relative to the adjusting part in order to adjust the spring force.
  • Such an actuator enables a compact design, but the setting options are limited because the adjusting contour is arranged between the pressure piece and the adjusting arm. This leads to unfavorable leverage ratios and problems when the contour of the control contour is required to be changed.
  • the WO 2004/104339 discloses a lid plate with two rotatably mounted arms, a spring element in one of the arms biasing a pressure piece against a curved guide so that a force is applied to the arms during a relative movement.
  • the spring force can be adjusted using a rotatable eccentric.
  • the EP 1 148 200 discloses a similar fitting as a flap holder.
  • WO 2016/131770 discloses a swivel drive according to the preamble of claim 1.
  • Furniture is understood to mean furnishings for a room, and the furnishings can also be household appliances such as a refrigerator.
  • the swivel drive comprises a rotatable actuating arm which is non-rotatably connected to a spring assembly and can be pivoted jointly with it about an axis of rotation, the spring assembly acting on a pressure piece which can be moved along a control curve which is relative to the rotational axis of the actuating arm for setting the
  • the spring force of the spring assembly is adjustable.
  • the actuating arm is connected to the movable furniture part via a multi-joint connection, with the force of the spring assembly on the control cam being adjustable in addition or as an alternative.
  • control cam and the axis of rotation for the actuating arm and the spring assembly can be arranged on opposite sides of the spring assembly, so that the relative adjustment options on the control cam are flexible and the travel of the pressure piece along the control cam is not structurally limited.
  • the control cam can preferably be adjusted continuously via adjusting means. This enables a precise setting of the spring forces acting on the actuating arm.
  • the swivel drive can include a housing on or in which the control cam is adjustably held, for example via guide means, thread adjustments, eccentric adjustment, screw adjustments or other mechanical means.
  • the control cam can be mounted rotatably and / or displaceably relative to the axis of rotation of the actuating arm in order to be able to carry out a flexible adjustment. If the control cam can be adjusted in the direction of action of the spring assembly, the magnitude of the force applied by the spring assembly can be changed. Alternatively, this is also possible by changing the preload of the spring assembly.
  • the force acting in a certain opening position of the actuating arm is set, which is particularly advantageous for flaps of different weights, since the center of gravity is shifted outward when opening a furniture body, and thus depends on the opening position different spring forces are required to compensate for the flap weight.
  • the spring assembly biases the actuating arm in a closing area in the closing direction, and in an opening area which is located adjacent to the closing area, the spring assembly biases the actuating arm in the opening direction.
  • the spring assembly biases the actuating arm in a closing area in the closing direction, and in an opening area which is located adjacent to the closing area, the spring assembly biases the actuating arm in the opening direction.
  • the change in the direction of action of the spring is achieved by the shape of the control cam.
  • a section of the control curve is traversed during which the spring assembly is tensioned and in the further course of the opening movement the spring assembly is relaxed.
  • the actuating arm can be connected to a flap or door via the multi-joint connection.
  • the pivot drive is preferably designed as a flap fitting in order to pivot a flap about a horizontal axis. But other purposes are also possible.
  • the flap can thus perform the movement of a flap, a lid or a bar compartment.
  • the multi-joint connection can be designed as a four-joint connection with two parallel levers or as a seven-joint connection, but other multi-joint connections can also be provided on the pivot drive.
  • control cam preferably has a guide track made of metal.
  • the pressure piece can also have a roller which has at least one surface made of metal and preferably consists entirely of metal, so that high forces can be transmitted between the pressure piece and the guideway.
  • the spring assembly can comprise a plurality of helical springs arranged next to one another, which are linearly guided in the effective direction of the spring assembly.
  • a helical spring cup springs or leaf springs or other compact springs can also be used as an alternative.
  • control cam is immobile relative to the housing during an opening and / or closing movement of the movable furniture part, so that a furniture body, the control cam and the housing are arranged in a stationary manner while the movable furniture part and the spring assembly move.
  • the axis of rotation about which the spring assembly rotates with the actuating arm can be arranged in a stationary manner in the housing, so that the spring assembly with the actuating arm pivots about this axis of rotation.
  • a lever has two axes of rotation for moving the movable furniture part and a further joint or a curved guide for indirect coupling with the actuating arm.
  • a pressure piece can be arranged on the actuating arm, which cooperates with the cam guide of the lever.
  • the total pivoting angle of the spring assembly about the axis of rotation from the closed position to the fully open position of the movable furniture part can be greater than 10 °, for example between 10 ° to 60 °.
  • the swivel drive can also include one or more dampers that brake the actuating arm before it reaches the closed position and / or a maximum open position.
  • dampers can be attached as linear dampers, rotary dampers both within a multi-joint connection or also on the spring assembly.
  • the pivot drive according to the invention is preferably used in a piece of furniture, in particular to pivot a flap.
  • the pivot drive is preferably arranged in a side wall of a furniture body, so that the inner useful volume of the furniture body is not reduced by the pivot drive.
  • the swivel drive can also be fixed on the inside of a furniture body, in which case the usable internal volume is reduced.
  • the pivot drive is provided in a side wall, the side wall can have a recess for receiving a housing of the pivot drive.
  • the housing of the swivel drive then has an opening which is directed towards the front and which, when a flap is opened, enables one or more articulated arms to be moved out of the side wall or the housing of the swivel drive.
  • the side wall preferably has a plate-shaped core which has a first end face and further end faces, a recess being arranged in the core which extends at least along a section of the first end face of the side wall and serves to accommodate a flap fitting that guides a movable furniture part .
  • the plate-shaped core of the side wall is preferably arranged between two laterally applied cover layers.
  • the core can optionally have two core halves which lie on top of one another with their side faces opposite the respective cover layers and which have recesses that complement each other to form the recess. With such a side wall, the swivel drive is arranged on a side wall of the piece of furniture.
  • a piece of furniture 1 comprises a cabinet-shaped furniture body 2, with side walls 10, an upper floor 15 and a floor 14 on which a flap 3 is pivotably mounted.
  • a flap fitting 4 is provided, by means of which the flap 3 can be pivoted upwards, as is shown schematically by the arrow.
  • the flap fitting 4 is pretensioned via a pivot drive (not shown here), the spring force being dependent on the opening position of the flap 3.
  • the flap fitting 4 is designed, for example, as a multi-joint connection, in particular as a seven-joint connection. It is also possible to design the flap fitting as a four-bar connection, as shown in FIG Figures 2 and 3 is shown.
  • a flap 3 is pivotably mounted on the furniture body 2 and can be moved by two parallel levers 5 and 6, which is held on the levers 5 and 6 via a connection 7 or 7 '.
  • the flap 3 is pivoted essentially forwards and upwards, while at Figure 3 Levers 5 'and 6' are provided with a modified connection 7 ', by means of which the flap 3 can be pivoted at least partially over the top panel 15 along another curved path.
  • the flap fittings 4 according to Figures 1 to 3 can optionally be fixed on an inside of the side walls 10 or also in the side walls 10.
  • a side wall 10 comprises an inner core 11, for example made of an MDF or HDF or lightweight board, in which a recess 12 is made, for example by milling.
  • the core 11 is covered on opposite sides by cover layers 13, which also cover the recess 12, so that a pocket-shaped receptacle is formed which is only open on a front end face.
  • a fitting 20 with a housing 21 can be inserted into the recess 12.
  • the housing 21 comprises a width which corresponds to the width of the core 11 and can for example be between 12 mm and 22 mm, in particular 12 mm to 17 mm.
  • the housing 21 can also be narrower than the width of the core if the housing 21 is inserted into the side in a different way.
  • the housing 21 comprises two spaced-apart plates, between which levers of a multi-joint connection are provided, the axes of rotation of which are at least partially fixed on the housing 21.
  • the lower arm 22 is rotatably mounted on an axis of rotation 23 of the housing 21.
  • an upper arm 24 is arranged at a distance from the lower arm 22 and is provided via a hollow chamber of the housing 21 arranged in a receptacle 27.
  • FIG 4D the side walls are shown without cover layers 13, and it can be seen that the fitting 20 with the housing is inserted essentially positively into the recess 12 of the core 11.
  • flap parts 25 and 26 are mounted on the arms 22 and 24, an upper flap part 25 and a lower flap part 26 being held on the arm 24 and a lower flap part 26 being held on the lower arm 22, and the two flap parts 25 and 26 with one another via an articulated connection are connected, the flap formed from the flap parts 25 and 26 folds open when opened.
  • FIG. 5 a modified piece of furniture is shown in which a furniture body has several adjacent interior spaces, and one or more central partitions are provided between the two outer side walls.
  • a fitting 20 is also provided on each central partition wall, so that a flap with flap parts 25 'and 26' is made significantly wider than in the previous exemplary embodiment.
  • the flap parts 25 'and 26' are held by several fittings 20 on the furniture body.
  • the number of partitions can be freely selected depending on the width of the furniture.
  • FIG 6A the fitting is shown schematically with an embodiment of a swivel drive 30 according to the invention, which is arranged in the housing 21.
  • the fitting 20 is designed as a seven-joint hinge and comprises two axes of rotation A1 and A2 which are stationary on the housing 21 and which form an articulated connection via joints with five further axes of rotation A3 to A7, to which the flap 3 is fixed at a connection 38.
  • Such multi-joint connections are known in different variants and are therefore only shown schematically.
  • the swivel drive 30 comprises an actuating arm 32 which is mounted so as to be rotatable about an axis of rotation 31 which is arranged in a stationary manner on the housing 21.
  • the actuating arm 32 is connected via a movable joint 39 to a joint lever 36 which is connected via a further joint 40 to a lever 37 of the multi-joint arrangement.
  • the lever 37 is designed as a double lever, so that the pivot point A3 and the joint 40 are always pivoted about the axis of rotation A1 at the same distance.
  • the actuating arm 32 is non-rotatably connected to a spring assembly 33, which comprises one or more springs that are linearly movable and can be compressed and expanded on a linear guide, for example by rods, sleeves or other linear guide elements.
  • the spring assembly 33 is mounted on one side on an axis of rotation 31. On the other side of the spring assembly 33, the spring assembly 33 acts on a pressure piece 34.
  • the pressure piece 34 is designed as a roller, in particular made of metal, and can be moved along a control curve 35.
  • the control cam 35 is adjustable in the housing 21 and is preferably also made of metal, for example steel.
  • the control cam 35 can be adjusted relative to the axis of rotation 31, as indicated by the two arrows.
  • the control cam 35 can initially be compressed or expanded in the effective direction of the spring assembly 33, that is, in the direction of a line between the axis of rotation 31 and an axis of the pressure piece 34, in that the control cam 35 is adjusted accordingly.
  • corresponding adjustment means in particular thread adjustments, eccentrics or worms, can be provided on the control cam, which are supported on the housing 21 and, in this respect, enable the control cam 35 to be adjusted.
  • control cam 35 can also be pivotable, preferably about a pivot point which, in a closed position of the fitting, is adjacent to the pressure piece 34.
  • the force acting on the actuating arm 32 through the spring assembly 33 can be set for different opening positions of the flap 3 without the control cam 35 having to be replaced. Since, with flaps of different widths, depending on the opening position, different weights act on the actuating arm 32, the spring force for different opening positions can be changed by such a pivot adjustment.
  • the pivot drive 30 preferably comprises both a linear adjustment and a pivot adjustment for the control cam 35, with further adjustment options being optionally also possible, for example individual sections of the control cam 35 can be adjusted relative to one another.
  • FIG 6A the closed position of the flap 3 is shown, in which it essentially vertically covers an opening on the furniture body 2.
  • the multi-joint arrangement moves with the lever 37 about the axis of rotation A1 counterclockwise, and a compressive force is transmitted to the joint lever 36, whereby the actuating arm 32 is rotated clockwise through the axis of rotation 31.
  • the pressure piece 34 also moves clockwise along the control curve, which is curved towards the spring assembly 33, so that when the spring assembly 33 moves clockwise, the pressure piece 34 is pressed against the spring assembly 33, so that when the flap 3 is opened the Forces act in the closing direction and must be overcome by the user when opening the flap 3.
  • the flap 3 is according to Figure 6C moved further in the opening direction, and in a predetermined opening position, for example at an angle of the flap 3 between 20 ° to 30 ° to the closed position, a dead center is passed through.
  • the joint 40 is on a line which runs through the axis of rotation A1 and the joint lever 36.
  • the pressure piece 34 was moved to a maximum position along the control cam 35. If the flap 3 is removed from the in Figure 6C
  • the dead center position shown is moved further in the opening direction, as shown in FIG Figure 6D is shown, by turning the double lever 37 counterclockwise, the articulated lever 36 is pulled over the articulation 40, so that the actuating arm 32 is now rotated counterclockwise about the axis of rotation 31.
  • the pressure piece 34 moves back along the control curve 35, and the spring assembly 33 is relaxed during this movement, so that the movement of the flap 3 is supported by the spring assembly 33.
  • the flap 3 can now according to the illustration of Figures 6E , 6F and 6G be moved further in the opening direction, for example up to a maximum opening position of 100 ° to 120 ° relative to the closed position.
  • the actuating arm 32 is pivoted counterclockwise, and the pressure piece 34 accordingly moves along the control cam 35, which is designed such that the spring assembly 33 relaxes during this rotary movement.
  • the weight applied to the fitting by the flap 3 is at least partially compensated for by the spring assembly 33, whereby it is possible to adjust the spring assembly 33 with the actuating arm 32 so that the weight of the flap 3 is completely compensated and the user essentially only the forces to move the flap 3 must apply.
  • the forces of the spring assembly 33 can also be adjusted so that the flap opens automatically from a certain opening angle.
  • the control cam can also be designed, independently of the spring assembly 33, in such a way that the flap opens automatically from a certain opening angle.
  • the flap 3 is positively guided relative to the pivot drive 30, so that the opposing movements are carried out during a closing movement.
  • Forces shown in the position shown by the user are used to compress the spring assembly 33 again, which is pivoted about the axis of rotation 31 and is compressed via the pressure piece 34 and the control cam 35.
  • the spring assembly 33 acts in the closing direction only when there is a further closing movement.
  • the flap 3 can be pre-tensioned in a closing area of, for example, 0 ° to 20 ° or 0 ° to 30 ° in the closing direction via the pivot drive 30 and is pre-tensioned in an opening area adjacent to this closing area via the pivot drive 30 in the opening direction.
  • the swivel drive 30 can have a damper, for example a linear damper, which ensures that the flap 3 is braked before it reaches the closed position and / or the maximum open position, so that no loud impact noises occur.
  • a damper can for example on the spring assembly 33 or the actuating arm 32 or on the housing 21 in order to dampen the pivoting movement of the spring assembly.
  • the spring assembly 33 in the closed position of the flap 3 is no longer arranged with the effective direction essentially vertically, but rather at an angle.
  • the pressure piece 34 and the control cam 35 can be arranged closer to the flap 3, which facilitates the actuation of an adjustment mechanism from a front side of the furniture body.
  • the actuating arm 32 is coupled via an articulated lever 36 to the multi-articulated connection on which the flap 3 is also held.
  • the mode of operation of the swivel drive with the spring assembly 33, which acts on the pressure piece 34, which can be moved along the control cam 35 is the same as in the previous exemplary embodiments.
  • FIG. 8A to 8D Another exemplary embodiment of a swivel drive is shown, in which the actuating arm 32 is again connected to the flap 3 via an articulated lever 36 with a multi-articulated connection.
  • the spring package 33 is arranged rotated in the housing 21 of the fitting 20 compared to the other exemplary embodiments, the pressure piece 34 and the control cam 35 being arranged facing the rear of the furniture body.
  • the axis of rotation 31 of the actuating arm 32 is located adjacent to the flap 3.
  • FIGS 9A through 9D Another embodiment of a swivel fitting is shown in which a modified control cam 35 'is provided, which is used to guide a modified pressure piece 34'.
  • the control cam 35 ' is designed as a linear guide which is inclined to the direction of action of the spring assembly 33, so that when the pressure piece 34' is moved relative to the control cam 35 ', the spring assembly 33 is relaxed or tensioned.
  • the swivel drive 30 in the in Figures 9A through 9D The embodiment shown is not coupled via a joint 40, but a further pressure piece 45 is provided on the actuating arm 32, for example a roller which can be moved along a curved guide 41.
  • the cam guide 41 is non-rotatably connected to a lever 37 of the multi-joint arrangement, and by rotating the cam guide 41 about the axis of rotation A1, the pressure piece 45 and thus the actuating arm 32 are pivoted.
  • the flap 3 is opened, the cam guide 41 pivots counterclockwise, and the actuating arm 32 also pivots counterclockwise as a result.
  • FIG. 10A to 10C Another exemplary embodiment is shown in which a spring assembly 33 is coupled in a rotationally fixed manner to an actuating arm 32 on which a pressure piece 45 is fixed.
  • the pressure piece 45 can again be moved along a curved guide 41 which is pivoted counterclockwise when the flap is opened.
  • the position of the spring assembly 33 and the dimensions are compared to that in Figure 9 shown embodiment different.
  • the illustrated exemplary embodiments can be combined with one another as desired in order to modify the transmission mechanism from the flap 3 or another movable furniture part to the control cam 35 or 35 '.

Landscapes

  • Closing And Opening Devices For Wings, And Checks For Wings (AREA)
  • Hinges (AREA)

Description

Die vorliegende Erfindung betrifft einen Schwenkantrieb für ein bewegbares Möbelteil nach dem Oberbegriff des Anspruches 1 und des Anspruchs 2 und ein Möbel.The present invention relates to a swivel drive for a movable furniture part according to the preamble of claim 1 and claim 2 and a piece of furniture.

Die DE 20 2010 015 091 U1 offenbart einen Möbelbeschlag zum Antrieb einer Klappe, bei dem ein Kraftantrieb mit Federn auf einen Kraftumlenkhebel wirkt, um einen Gelenkantrieb in Öffnungs- oder Schließrichtung vorzuspannen. Zur Einstellung der Kraft kann an dem Umlenkhebel ein Kopplungsglied verstellt werden. Dabei ist nachteilig, dass für unterschiedlich breite und schwere Klappen unterschiedliche Federkräfte und auch ein unterschiedlicher Federkraftverlauf abhängig von der Öffnungsposition der Klappe erforderlich ist. Die Verstellmöglichkeiten bei diesem Möbelbeschlag sind unzureichend.the DE 20 2010 015 091 U1 discloses a furniture fitting for driving a flap, in which a power drive with springs acts on a power deflection lever in order to preload a hinge drive in the opening or closing direction. To adjust the force, a coupling member can be adjusted on the reversing lever. The disadvantage here is that different spring forces and also a different spring force curve depending on the opening position of the flap are required for flaps of different widths and weights. The adjustment options for this furniture fitting are insufficient.

Die WO 2016/077851 offenbart einen Stellantrieb zum Bewegen eines Möbelteils, bei dem eine Federvorrichtung über einen Übertragungsmechanismus auf einen drehbaren Stellarm wirkt. Ein durch eine Federvorrichtung belastetes Druckstück ist entlang einer Stellkontur verfahrbar, die zur Einstellung der Federkraft relativ zu dem Stellteil einstellbar ist. Ein solcher Stellantrieb ermöglicht zwar eine kompakte Bauweise, allerdings sind die Einstellmöglichkeiten begrenzt, da die Stellkontur zwischen dem Druckstück und dem Stellarm angeordnet ist. Dies führt zu ungünstigen Hebelverhältnissen und zu Problemen bei einer erforderlichen Konturänderung der Stellkontur.the WO 2016/077851 discloses an actuator for moving a furniture part, in which a spring device acts on a rotatable actuating arm via a transmission mechanism. A pressure piece loaded by a spring device can be moved along an adjusting contour which can be adjusted relative to the adjusting part in order to adjust the spring force. Such an actuator enables a compact design, but the setting options are limited because the adjusting contour is arranged between the pressure piece and the adjusting arm. This leads to unfavorable leverage ratios and problems when the contour of the control contour is required to be changed.

Die WO 2004/104339 offenbart einen Deckelsteller mit zwei drehbar gelagerten Armen, wobei in einem der Arme ein Federelement ein Druckstück gegen eine Kurvenführung vorspannt, so dass die Arme bei einer Relativbewegung mit einer Kraft beaufschlagt werden. Die Federkraft kann über einen drehbaren Exzenter eingestellt werden. Die EP 1 148 200 offenbart einen ähnlichen Beschlag als Klappenhalter.the WO 2004/104339 discloses a lid plate with two rotatably mounted arms, a spring element in one of the arms biasing a pressure piece against a curved guide so that a force is applied to the arms during a relative movement. The spring force can be adjusted using a rotatable eccentric. the EP 1 148 200 discloses a similar fitting as a flap holder.

WO 2016/131770 offenbart einen Schwenkantrieb nach dem Oberbegriff des Anspruches 1. WO 2016/131770 discloses a swivel drive according to the preamble of claim 1.

Es ist daher Aufgabe der vorliegenden Erfindung, einen Schwenkantrieb und ein Möbel zu schaffen, mittels dem eine auf einen Stellarm wirkende Kraft flexibel für unterschiedliche Positionen des Stellarmes einstellbar ist.It is therefore the object of the present invention to create a swivel drive and a piece of furniture by means of which a force acting on an actuating arm can be flexibly adjusted for different positions of the actuating arm.

Unter einem Möbel werden Einrichtungsgegenstände für einen Raum verstanden, wobei es sich bei den Einrichtungsgegenständen auch um Haushaltsgeräte wie zum Beispiel einen Kühlschrank handeln kann.Furniture is understood to mean furnishings for a room, and the furnishings can also be household appliances such as a refrigerator.

Diese Aufgabe wird mit einem Schwenkantrieb mit den Merkmalen des Anspruches 1 oder 2 gelöst.This object is achieved with a swivel drive with the features of claim 1 or 2.

Der erfindungsgemäße Schwenkantrieb umfasst einen drehbaren Stellarm, der drehfest mit einem Federpaket verbunden ist und mit diesem um eine Drehachse gemeinsam verschwenkbar ist, wobei das Federpaket auf ein Druckstück wirkt, das entlang einer Steuerkurve verfahrbar ist, die relativ zu der Drehachse des Stellarmes zur Einstellung der Federkraft des Federpakets verstellbar ist. Der Stellarm ist dabei über eine Mehrgelenkverbindung mit dem beweglichen Möbelteil verbunden, wobei zusätzlich oder alternativ die Krafteinwirkung des Federpakets auf die Steuerkurve verstellbar ist. Dadurch können die Steuerkurve und die Drehachse für den Stellarm und das Federpaket auf gegenüberliegenden Seiten des Federpakets angeordnet werden, so dass die relativen Verstellmöglichkeiten an der Steuerkurve flexibel sind und auch der Verfahrweg des Druckstückes entlang der Steuerkurve baulich nicht limitiert ist. Dadurch ergeben sich günstige Hebelverhältnisse und ein einfacher Aufbau, da der Stellarm drehfest mit dem Federpaket verbunden ist und zur Einstellung der Federkraft die Steuerkurve relativ zu der festen Drehachse verstellt wird.The swivel drive according to the invention comprises a rotatable actuating arm which is non-rotatably connected to a spring assembly and can be pivoted jointly with it about an axis of rotation, the spring assembly acting on a pressure piece which can be moved along a control curve which is relative to the rotational axis of the actuating arm for setting the The spring force of the spring assembly is adjustable. The actuating arm is connected to the movable furniture part via a multi-joint connection, with the force of the spring assembly on the control cam being adjustable in addition or as an alternative. As a result, the control cam and the axis of rotation for the actuating arm and the spring assembly can be arranged on opposite sides of the spring assembly, so that the relative adjustment options on the control cam are flexible and the travel of the pressure piece along the control cam is not structurally limited. This results in favorable lever ratios and a simple structure, since the actuating arm is non-rotatably connected to the spring assembly and the control cam is adjusted relative to the fixed axis of rotation in order to adjust the spring force.

Vorzugsweise kann die Steuerkurve über Stellmittel stufenlos verstellt werden. Dies ermöglicht eine präzise Einstellung der auf den Stellarm wirkenden Federkräfte. Der Schwenkantrieb kann dabei ein Gehäuse umfassen, an oder in dem die Steuerkurve verstellbar gehalten ist, beispielsweise über Führungsmittel, Gewindeverstellungen, Exzenterverstellung, Schneckenverstellungen oder andere mechanische Mittel. Die Steuerkurve kann dabei relativ zu der Drehachse des Stellarmes drehbar und/oder verschiebbar gelagert sein, um eine flexible Verstellung vornehmen zu können. Wenn die Steuerkurve in Wirkrichtung des Federpakets verstellbar ist, kann die Größe der durch das Federpaket aufgebrachten Kraft verändert werden. Dies ist alternativ auch durch eine Änderung der Vorspannung des Federpakets möglich. Wird hingegen die Neigung der Steuerkurve verändert, wird die in einer bestimmten Öffnungsposition des Stellarmes wirkende Kraft eingestellt, was insbesondere bei unterschiedlich schweren Klappen vorteilhaft ist, da sich bei diesen der Schwerpunkt beim Öffnen von einem Möbelkorpus nach außen verlagert, und somit abhängig von der Öffnungsposition unterschiedliche Federkräfte zum Kompensieren des Klappengewichtes erforderlich sind.The control cam can preferably be adjusted continuously via adjusting means. This enables a precise setting of the spring forces acting on the actuating arm. The swivel drive can include a housing on or in which the control cam is adjustably held, for example via guide means, thread adjustments, eccentric adjustment, screw adjustments or other mechanical means. The control cam can be mounted rotatably and / or displaceably relative to the axis of rotation of the actuating arm in order to be able to carry out a flexible adjustment. If the control cam can be adjusted in the direction of action of the spring assembly, the magnitude of the force applied by the spring assembly can be changed. Alternatively, this is also possible by changing the preload of the spring assembly. If, on the other hand, the inclination of the control curve is changed, the force acting in a certain opening position of the actuating arm is set, which is particularly advantageous for flaps of different weights, since the center of gravity is shifted outward when opening a furniture body, and thus depends on the opening position different spring forces are required to compensate for the flap weight.

In einer weiteren Ausgestaltung spannt das Federpaket den Stellarm in einem Schließbereich in Schließrichtung vor, und in einem Öffnungsbereich, der sich benachbart zu dem Schließbereich befindet, spannt das Federpaket den Stellarm im Öffnungsrichtung vor. Dadurch wird bei einer Öffnungsbewegung des Stellarmes ein Totpunkt durchlaufen, und es ändert sich die Kraftrichtung auf den Stellarm abhängig von der Position des Stellarmes. Bei dieser Anordnung schwenkt das Federpaket während der Öffnungsbewegung in beide Drehrichtungen.In a further embodiment, the spring assembly biases the actuating arm in a closing area in the closing direction, and in an opening area which is located adjacent to the closing area, the spring assembly biases the actuating arm in the opening direction. As a result, when the actuating arm opens, a dead center is passed through, and the direction of force acting on the actuating arm changes depending on the position of the actuating arm. With this arrangement, the spring assembly swivels in both directions of rotation during the opening movement.

In einer weiteren Ausgestaltung spannt das Federpaket den Stellarm in einem Schließbereich in Schließrichtung vor, und in einem Öffnungsbereich, der sich benachbart zu dem Schließbereich befindet, spannt das Federpaket den Stellarm im Öffnungsrichtung vor. Die Änderung der Wirkrichtung der Feder wird durch die Form der Steuerkurve erreicht. Zu Beginn einer Öffnungsbewegung des Stellarmes wird eine Strecke der Steuerkurve durchlaufen, bei der das Federpaket gespannt wird und im weiteren Verlauf der Öffnungsbewegung wird das Federpaket entspannt. Bei dieser Anordnung schwenkt das Federpaket während der Öffnungsbewegung nur in eine Drehrichtung.In a further embodiment, the spring assembly biases the actuating arm in a closing area in the closing direction, and in an opening area which is located adjacent to the closing area, the spring assembly biases the actuating arm in the opening direction. The change in the direction of action of the spring is achieved by the shape of the control cam. At the beginning of an opening movement of the actuating arm, a section of the control curve is traversed during which the spring assembly is tensioned and in the further course of the opening movement the spring assembly is relaxed. With this arrangement, the spring assembly only swivels in one direction of rotation during the opening movement.

Der Stellarm kann über die Mehrgelenkverbindung mit einer Klappe oder Tür verbunden sein. Vorzugsweise ist der Schwenkantrieb als Klappenbeschlag ausgebildet, um eine Klappe um eine horizontale Achse zu verschwenken. Aber auch andere Einsatzzwecke sind möglich. Die Klappe kann somit die Bewegung einer Klappe, eines Deckels oder eines Barfachs ausführen. Die Mehrgelenkverbindung kann als Viergelenkverbindung mit zwei parallelen Hebeln oder als Siebengelenkverbindung ausgebildet sein, aber auch andere Mehrgelenkverbindungen können an dem Schwenkantrieb vorgesehen werden.The actuating arm can be connected to a flap or door via the multi-joint connection. The pivot drive is preferably designed as a flap fitting in order to pivot a flap about a horizontal axis. But other purposes are also possible. The flap can thus perform the movement of a flap, a lid or a bar compartment. The multi-joint connection can be designed as a four-joint connection with two parallel levers or as a seven-joint connection, but other multi-joint connections can also be provided on the pivot drive.

Um auch hohe Kräfte über das Federpaket auf den Stellarm übertragen zu können, weist die Steuerkurve vorzugsweise eine aus Metall bestehende Führungsbahn auf. Auch das Druckstück kann eine Rolle aufweisen, die zumindest eine Oberfläche aus Metall aufweist, und vorzugsweise vollständig aus Metall besteht, so dass hohe Kräfte zwischen Druckstück und Führungsbahn übertragen werden können.In order to also be able to transmit high forces to the actuating arm via the spring assembly, the control cam preferably has a guide track made of metal. The pressure piece can also have a roller which has at least one surface made of metal and preferably consists entirely of metal, so that high forces can be transmitted between the pressure piece and the guideway.

Für eine flache Bauweise des Federpaketes kann dieses mehrere nebeneinander angeordnete Schraubenfedern umfassen, die in Wirkrichtung des Federpaketes linear geführt sind. Anstelle einer Schraubenfeder können alternativ auch Tellerfedern oder Blattfedern oder andere kompakte Federn eingesetzt werden.For a flat design of the spring assembly, it can comprise a plurality of helical springs arranged next to one another, which are linearly guided in the effective direction of the spring assembly. Instead of a helical spring, cup springs or leaf springs or other compact springs can also be used as an alternative.

Erfindungsgemäß ist die Steuerkurve bei einer Öffnungs- und/oder Schließbewegung des beweglichen Möbelteils relativ zu dem Gehäuse unbeweglich ist, so dass ein Möbelkorpus, die Steuerkurve und das Gehäuse stationär angeordnet sind, während das bewegliche Möbelteil und das Federpaket sich bewegen. Dabei kann die Drehachse, um die das Federpaket mit dem Stellarm dreht, ortsfest in dem Gehäuse angeordnet sein, so dass das Federpaket mit dem Stellarm um diese Drehachse schwenkt.According to the invention, the control cam is immobile relative to the housing during an opening and / or closing movement of the movable furniture part, so that a furniture body, the control cam and the housing are arranged in a stationary manner while the movable furniture part and the spring assembly move. The axis of rotation about which the spring assembly rotates with the actuating arm can be arranged in a stationary manner in the housing, so that the spring assembly with the actuating arm pivots about this axis of rotation.

In einer erfindungsgemäßen Ausgestaltung der Mehrgelenkverbindung weist ein Hebel zwei Drehachsen zur Bewegung des beweglichen Möbelteils und ein weiteres Gelenk oder eine Kurvenführung zur mittelbaren Koppelung mit dem Stellarm auf. Für eine effektive Kraftübertragung kann dabei an dem Stellarm ein Druckstück angeordnet sein, das mit der Kurvenführung des Hebels zusammenwirkt.In an embodiment of the multi-joint connection according to the invention, a lever has two axes of rotation for moving the movable furniture part and a further joint or a curved guide for indirect coupling with the actuating arm. For an effective power transmission, a pressure piece can be arranged on the actuating arm, which cooperates with the cam guide of the lever.

Der Gesamtschwenkwinkel des Federpakets um die Drehachse kann von der geschlossenen Stellung in die vollständig geöffnete Stellung des beweglichen Möbelteils größer als 10° sein, beispielsweise zwischen 10° bis 60° liegen.The total pivoting angle of the spring assembly about the axis of rotation from the closed position to the fully open position of the movable furniture part can be greater than 10 °, for example between 10 ° to 60 °.

Der Schwenkantrieb kann zudem einen oder mehrere Dämpfer umfassen, die den Stellarm vor Erreichen der Schließposition und/oder einer maximalen Öffnungsposition abbremsen. Solche Dämpfer können als Lineardämpfer, Rotationsdämpfer sowohl innerhalb einer Mehrgelenkverbindung oder auch am Federpaket angebracht sein.The swivel drive can also include one or more dampers that brake the actuating arm before it reaches the closed position and / or a maximum open position. Such dampers can be attached as linear dampers, rotary dampers both within a multi-joint connection or also on the spring assembly.

Der erfindungsgemäße Schwenkantrieb wird vorzugsweise bei einem Möbel eingesetzt, insbesondere um eine Klappe zu verschwenken. Vorzugsweise ist der Schwenkantrieb in einer Seitenwand eines Möbelkorpus angeordnet, so dass das innere Nutzvolumen des Möbelkorpus durch den Schwenkantrieb nicht verringert wird. Optional kann der Schwenkantrieb auch an einer Innenseite eines Möbelkorpus fixiert werden, wobei sich dann das nutzbare Innenvolumen reduziert. Wenn der Schwenkantrieb in einer Seitenwand vorgesehen wird, kann die Seitenwand eine Aussparung zur Aufnahme eines Gehäuses des Schwenkantriebes aufweisen. Das Gehäuse des Schwenkantriebes weist dann eine zur Vorderseite hin gerichtete Öffnung auf, die beim Öffnen einer Klappe ein Bewegen von einem oder mehreren Gelenkarmen aus der Seitenwand bzw. dem Gehäuse des Schwenkantriebes hinaus ermöglicht.The pivot drive according to the invention is preferably used in a piece of furniture, in particular to pivot a flap. The pivot drive is preferably arranged in a side wall of a furniture body, so that the inner useful volume of the furniture body is not reduced by the pivot drive. Optionally, the swivel drive can also be fixed on the inside of a furniture body, in which case the usable internal volume is reduced. If the pivot drive is provided in a side wall, the side wall can have a recess for receiving a housing of the pivot drive. The housing of the swivel drive then has an opening which is directed towards the front and which, when a flap is opened, enables one or more articulated arms to be moved out of the side wall or the housing of the swivel drive.

Vorzugsweise weist die Seitenwand einen plattenförmigen Kern auf, der eine erste Stirnseite sowie weitere Stirnseiten aufweist, wobei eine Ausnehmung im Kern angeordnet ist, die sich zumindest entlang eines Abschnitts der ersten Stirnseite der Seitenwand erstreckt und der Aufnahme eines Klappenbeschlags dient, der ein bewegbares Möbelteil führt. Der plattenförmigen Kern der Seitenwand ist bevorzugt zwischen zwei seitlich aufgebrachten Deckschichten angeordnet. Der Kern kann optional zwei Kernhälften aufweisen, die mit ihren der jeweiligen Deckschichten gegenüberliegenden Seitenflächen aufeinanderliegen und sich zur Ausnehmung ergänzende Ausnehmungen aufweisen. Bei einer solchen Seitenwand ist der Schwenkantrieb an einer Seitenwand des Möbels angeordnet.The side wall preferably has a plate-shaped core which has a first end face and further end faces, a recess being arranged in the core which extends at least along a section of the first end face of the side wall and serves to accommodate a flap fitting that guides a movable furniture part . The plate-shaped core of the side wall is preferably arranged between two laterally applied cover layers. The core can optionally have two core halves which lie on top of one another with their side faces opposite the respective cover layers and which have recesses that complement each other to form the recess. With such a side wall, the swivel drive is arranged on a side wall of the piece of furniture.

Die Erfindung wird nachfolgend anhand mehrerer Ausführungsbeispiele mit Bezug auf die beigefügten Zeichnungen näher erläutert. Es zeigen:

Figuren 1 bis 3
mehrere Ansichten von Möbel mit unterschiedlichen Klappenbeschlägen;
Figuren 4A bis 4H
mehrere Ansichten der Montage eines Möbels mit der Anordnung eines Schwenkantriebes in einer Seitenwand des Möbels;
Figur 5
eine perspektivische Ansicht eines modifizierten Möbels mit einem Schwenkantrieb in den Seitenwänden;
Figuren 6A bis 6G
mehrere Ansichten eines Schwenkantriebes in unterschiedlichen Positionen gemäß einem ersten Ausführungsbeispiel;
Figuren 7A bis 7D
mehrere Ansichten eines Schwenkantriebes in unterschiedlichen Positionen gemäß einem zweiten Ausführungsbeispiel;
Figuren 8A bis 8D
mehrere Ansichten eines Schwenkantriebes in unterschiedlichen Positionen gemäß einem dritten Ausführungsbeispiel;
Figuren 9A bis 9D
mehrere Ansichten eines Schwenkantriebes in unterschiedlichen Positionen gemäß einem vierten Ausführungsbeispiel, und
Figuren 10A bis 10C
mehrere Ansichten eines Schwenkantriebes in unterschiedlichen Positionen gemäß einem fünften Ausführungsbeispiel.
The invention is explained in more detail below on the basis of several exemplary embodiments with reference to the accompanying drawings. Show it:
Figures 1 to 3
several views of furniture with different flap fittings;
Figures 4A to 4H
several views of the assembly of a piece of furniture with the arrangement of a swivel drive in a side wall of the piece of furniture;
Figure 5
a perspective view of a modified piece of furniture with a swivel drive in the side walls;
Figures 6A to 6G
several views of a swivel drive in different positions according to a first embodiment;
Figures 7A to 7D
several views of a swivel drive in different positions according to a second embodiment;
Figures 8A to 8D
several views of a swivel drive in different positions according to a third embodiment;
Figures 9A through 9D
several views of a swivel drive in different positions according to a fourth embodiment, and
Figures 10A to 10C
several views of a swivel drive in different positions according to a fifth embodiment.

Ein Möbel 1 umfasst einen schrankförmigen Möbelkorpus 2, mit Seitenwänden 10, einem Oberboden 15 und einem Boden 14, an dem eine Klappe 3 verschwenkbar gelagert ist. Hierfür ist ein Klappenbeschlag 4 vorgesehen, mittels dem die Klappe 3 nach oben verschwenkt werden kann, wie dies durch den Pfeil schematisch dargestellt ist. Der Klappenbeschlag 4 ist über einen hier nicht dargestellten Schwenkantrieb vorgespannt, wobei die Federkraft abhängig von der Öffnungsposition der Klappe 3 ist.A piece of furniture 1 comprises a cabinet-shaped furniture body 2, with side walls 10, an upper floor 15 and a floor 14 on which a flap 3 is pivotably mounted. For this purpose, a flap fitting 4 is provided, by means of which the flap 3 can be pivoted upwards, as is shown schematically by the arrow. The flap fitting 4 is pretensioned via a pivot drive (not shown here), the spring force being dependent on the opening position of the flap 3.

In Figur 1 ist der Klappenbeschlag 4 beispielsweise als Mehrgelenkverbindung, insbesondere als Siebengelenkverbindung, ausgebildet. Es ist auch möglich, den Klappenbeschlag als Viergelenkverbindung auszubilden, wie dies in den Figuren 2 und 3 gezeigt ist. An dem Möbelkorpus 2 ist eine Klappe 3 verschwenkbar gelagert, die durch zwei parallele Hebel 5 und 6 bewegbar ist, die über eine Anbindung 7 oder 7' an den Hebeln 5 und 6 gehalten ist. Bei Figur 2 wird die Klappe 3 im Wesentlichen nach vorne und oben verschwenkt, während bei Figur 3 Hebel 5' und 6' mit einer modifizierten Anbindung 7' vorgesehen sind, mittels denen die Klappe 3 entlang einer anderen Kurvenbahn zumindest teilweise über den Oberboden 15 verschwenkt werden kann.In Figure 1 the flap fitting 4 is designed, for example, as a multi-joint connection, in particular as a seven-joint connection. It is also possible to design the flap fitting as a four-bar connection, as shown in FIG Figures 2 and 3 is shown. A flap 3 is pivotably mounted on the furniture body 2 and can be moved by two parallel levers 5 and 6, which is held on the levers 5 and 6 via a connection 7 or 7 '. at Figure 2 the flap 3 is pivoted essentially forwards and upwards, while at Figure 3 Levers 5 'and 6' are provided with a modified connection 7 ', by means of which the flap 3 can be pivoted at least partially over the top panel 15 along another curved path.

Die Klappenbeschläge 4 gemäß den Figuren 1 bis 3 können dabei wahlweise an einer Innenseite der Seitenwände 10 festgelegt werden oder auch in den Seitenwänden 10.The flap fittings 4 according to Figures 1 to 3 can optionally be fixed on an inside of the side walls 10 or also in the side walls 10.

Um einen Beschlag in einer Seitenwand 10 vorzusehen, wird mit Bezug auf die Figuren 4A bis 4H ein entsprechendes Montageverfahren beschrieben. Eine Seitenwand 10 umfasst einen inneren Kern 11, beispielsweise aus einer MDF- oder HDF- oder Leichtbau-Platte, in dem eine Aussparung 12 eingebracht ist, beispielsweise durch Fräsen. Der Kern 11 ist an gegenüberliegenden Seiten durch Deckschichten 13 überdeckt, die auch die Aussparung 12 überdecken, so dass eine taschenförmige Aufnahme gebildet ist, die nur an einer vorderen Stirnseite hin geöffnet ist.In order to provide a fitting in a side wall 10, reference is made to FIG Figures 4A to 4H a corresponding assembly process is described. A side wall 10 comprises an inner core 11, for example made of an MDF or HDF or lightweight board, in which a recess 12 is made, for example by milling. The core 11 is covered on opposite sides by cover layers 13, which also cover the recess 12, so that a pocket-shaped receptacle is formed which is only open on a front end face.

Wie in Figur 4C gezeigt ist, kann in die Aussparung 12 ein Beschlag 20 mit einem Gehäuse 21 eingesetzt werden. Das Gehäuse 21 umfasst dabei eine Breite, die der Breite des Kerns 11 entspricht und beispielsweise zwischen 12 mm und 22 mm, insbesondere 12 mm bis 17 mm, betragen kann. Das Gehäuse 21 kann auch schmaler sein als die Breite des Kerns, wenn das Gehäuse 21 auf eine andere Art in die Seite eingesetzt wird. Das Gehäuse 21 umfasst zwei voneinander beabstandete Platten, zwischen denen Hebel einer Mehrgelenkverbindung vorgesehen sind, deren Drehachsen zumindest teilweise an dem Gehäuse 21 fixiert sind. In dem dargestellten Ausführungsbeispiel ist an einer Drehachse 23 des Gehäuses 21 der untere Arm 22 drehbar gelagert. Ferner ist ein oberer Arm 24 beabstandet von dem unteren Arm 22 angeordnet, der über eine in einer Aufnahme 27 angeordneten Hohlkammer des Gehäuses 21 vorgesehen ist.As in Figure 4C is shown, a fitting 20 with a housing 21 can be inserted into the recess 12. The housing 21 comprises a width which corresponds to the width of the core 11 and can for example be between 12 mm and 22 mm, in particular 12 mm to 17 mm. The housing 21 can also be narrower than the width of the core if the housing 21 is inserted into the side in a different way. The housing 21 comprises two spaced-apart plates, between which levers of a multi-joint connection are provided, the axes of rotation of which are at least partially fixed on the housing 21. In the illustrated embodiment, the lower arm 22 is rotatably mounted on an axis of rotation 23 of the housing 21. Furthermore, an upper arm 24 is arranged at a distance from the lower arm 22 and is provided via a hollow chamber of the housing 21 arranged in a receptacle 27.

In Figur 4D sind die Seitenwände ohne Deckschichten 13 gezeigt, und es ist erkennbar, dass der Beschlag 20 mit dem Gehäuse im Wesentlichen formschlüssig in die Aussparung 12 des Kerns 11 eingefügt ist. An dem Beschlag 20 sind an den Armen 22 und 24 Klappenteile 25 und 26 gelagert, wobei an dem Arm 24 ein oberes Klappenteil 25 und an dem unteren Arm 22 ein unteres Klappenteil 26 gehalten sind, und die beiden Klappenteile 25 und 26 über eine Gelenkverbindung miteinander verbunden sind, wobei die aus den Klappenteilen 25 und 26 gebildete Klappe beim Öffnen aufklappt.In Figure 4D the side walls are shown without cover layers 13, and it can be seen that the fitting 20 with the housing is inserted essentially positively into the recess 12 of the core 11. On the fitting 20, flap parts 25 and 26 are mounted on the arms 22 and 24, an upper flap part 25 and a lower flap part 26 being held on the arm 24 and a lower flap part 26 being held on the lower arm 22, and the two flap parts 25 and 26 with one another via an articulated connection are connected, the flap formed from the flap parts 25 and 26 folds open when opened.

In den Figuren 4E und 4F sind zwei Positionen des Möbels 1 gezeigt, wobei die Seitenwände 10 durch die Deckschichten 13 verschlossen sind, so dass das Gehäuse 21 des Beschlages 20 nicht mehr sichtbar ist. Wird die aus den Klappenteilen 25 und 26 bestehende Klappe geöffnet, ragen die Arme 22 und 24 aus dem Gehäuse 21 des Beschlages nach vorne hervor.In the Figures 4E and 4F two positions of the furniture 1 are shown, the side walls 10 being closed by the cover layers 13 so that the housing 21 of the fitting 20 is no longer visible. If the flap consisting of the flap parts 25 and 26 is opened, the arms 22 and 24 protrude forward from the housing 21 of the fitting.

In den Figuren 4G und 4H ist das Möbel mit dem Beschlag 20 in einer Öffnungsposition gezeigt, und es ist erkennbar, dass der Beschlag 20 mit dem Gehäuse 21 in der Seitenwand 10 aufgenommen ist.In the Figures 4G and 4H the piece of furniture is shown with the fitting 20 in an open position, and it can be seen that the fitting 20 with the housing 21 is received in the side wall 10.

In Figur 5 ist ein modifiziertes Möbel gezeigt, bei dem ein Möbelkorpus mehrere benachbarte Innenräume besitzt, und zwischen den beiden äußeren Seitenwänden eine oder mehrere mittlere Trennwände vorgesehen sind. An jeder mittleren Trennwand ist ebenfalls ein Beschlag 20 vorgesehen, so dass eine Klappe mit Klappenteilen 25' und 26' deutlich breiter ausgebildet ist als bei dem vorangegangenen Ausführungsbeispiel. Die Klappenteile 25' und 26' werden durch mehrere Beschläge 20 an dem Möbelkorpus gehalten. Die Anzahl der Trennwände kann abhängig von der Breite des Möbels frei gewählt werden.In Figure 5 a modified piece of furniture is shown in which a furniture body has several adjacent interior spaces, and one or more central partitions are provided between the two outer side walls. A fitting 20 is also provided on each central partition wall, so that a flap with flap parts 25 'and 26' is made significantly wider than in the previous exemplary embodiment. The flap parts 25 'and 26' are held by several fittings 20 on the furniture body. The number of partitions can be freely selected depending on the width of the furniture.

In Figur 6A ist der Beschlag mit einer Ausführungsform eines erfindungsgemäßen Schwenkantriebs 30 schematisch dargestellt, der in dem Gehäuse 21 angeordnet ist. Der Beschlag 20 ist als Sieben-Gelenkscharnier ausgebildet und umfasst zwei stationär am Gehäuse 21 angeordnete Drehachsen A1 und A2, die über Gelenke mit fünf weiteren Drehachsen A3 bis A7 eine Gelenkverbindung bilden, an der an einer Anbindung 38 die Klappe 3 fixiert ist. Solche Mehrgelenkverbindungen sind in unterschiedlichen Varianten bekannt und sind daher nur schematisch dargestellt.In Figure 6A the fitting is shown schematically with an embodiment of a swivel drive 30 according to the invention, which is arranged in the housing 21. The fitting 20 is designed as a seven-joint hinge and comprises two axes of rotation A1 and A2 which are stationary on the housing 21 and which form an articulated connection via joints with five further axes of rotation A3 to A7, to which the flap 3 is fixed at a connection 38. Such multi-joint connections are known in different variants and are therefore only shown schematically.

Der Schwenkantrieb 30 umfasst einen Stellarm 32, der um eine Drehachse 31 drehbar gelagert ist, die stationär an dem Gehäuse 21 angeordnet ist. Der Stellarm 32 ist über ein bewegbares Gelenk 39 mit einem Gelenkhebel 36 verbunden, der über ein weiteres Gelenk 40 mit einem Hebel 37 der Mehrgelenkanordnung verbunden ist. Der Hebel 37 ist dabei als Doppelhebel ausgebildet, so dass der Drehpunkt A3 und das Gelenk 40 immer in demselben Abstand um die Drehachse A1 verschwenkt werden.The swivel drive 30 comprises an actuating arm 32 which is mounted so as to be rotatable about an axis of rotation 31 which is arranged in a stationary manner on the housing 21. The actuating arm 32 is connected via a movable joint 39 to a joint lever 36 which is connected via a further joint 40 to a lever 37 of the multi-joint arrangement. The lever 37 is designed as a double lever, so that the pivot point A3 and the joint 40 are always pivoted about the axis of rotation A1 at the same distance.

Der Stellarm 32 ist drehfest mit einem Federpaket 33 verbunden, das eine oder mehrere Federn umfasst, die linear bewegbar sind und an einer Linearführung, beispielswiese durch Stangen, Hülsen oder andere lineare Führungselemente, komprimierbar und expandierbar sind. Das Federpaket 33 ist an einer Seite an einer Drehachse 31 gelagert. Auf der anderen Seite des Federpakets 33 wirkt das Federpaket 33 auf ein Druckstück 34. Das Druckstück 34 ist als Rolle ausgebildet, insbesondere aus Metall, und ist entlang einer Steuerkurve 35 verfahrbar. Die Steuerkurve 35 ist in dem Gehäuse 21 verstellbar gehalten und besteht vorzugsweise ebenfalls aus Metall, beispielsweise aus Stahl.The actuating arm 32 is non-rotatably connected to a spring assembly 33, which comprises one or more springs that are linearly movable and can be compressed and expanded on a linear guide, for example by rods, sleeves or other linear guide elements. The spring assembly 33 is mounted on one side on an axis of rotation 31. On the other side of the spring assembly 33, the spring assembly 33 acts on a pressure piece 34. The pressure piece 34 is designed as a roller, in particular made of metal, and can be moved along a control curve 35. The control cam 35 is adjustable in the housing 21 and is preferably also made of metal, for example steel.

Die Steuerkurve 35 kann relativ zu der Drehachse 31 verstellt werden, wie dies die beiden Pfeile andeuten. Die Steuerkurve 35 kann zunächst in Wirkrichtung des Federpaketes 33, also in Richtung einer Linie zwischen der Drehachse 31 und einer Achse des Druckstückes 34, komprimiert oder expandiert werden, indem die Steuerkurve 35 entsprechend verstellt wird. Hierfür können an der Steuerkurve entsprechende Verstellmittel, insbesondere Gewindeverstellungen, Exzenter oder Schnecken, vorgesehen sein, die an dem Gehäuse 21 abgestützt sind und insofern eine Verstellung der Steuerkurve 35 ermöglichen. Um den gleichen Effekt zu erzeugen ist es auch möglich das Federpaket 33 durch entsprechende Verstellmittel, insbesondere Gewindeverstellungen, Exzenter oder Schnecken zu komprimieren oder zu expandieren.The control cam 35 can be adjusted relative to the axis of rotation 31, as indicated by the two arrows. The control cam 35 can initially be compressed or expanded in the effective direction of the spring assembly 33, that is, in the direction of a line between the axis of rotation 31 and an axis of the pressure piece 34, in that the control cam 35 is adjusted accordingly. For this purpose, corresponding adjustment means, in particular thread adjustments, eccentrics or worms, can be provided on the control cam, which are supported on the housing 21 and, in this respect, enable the control cam 35 to be adjusted. In order to produce the same effect, it is also possible to compress or expand the spring assembly 33 by means of appropriate adjustment means, in particular thread adjustments, eccentrics or screws.

Zusätzlich zu der linearen Verstellung kann die Steuerkurve 35 auch verschwenkbar sein, vorzugsweise um einen Drehpunkt, der in einer geschlossenen Stellung des Beschlages benachbart zu dem Druckstück 34 liegt. Dadurch kann die durch das Federpaket 33 auf den Stellarm 32 wirkende Kraft für unterschiedliche Öffnungspositionen der Klappe 3 eingestellt werden, ohne dass die Steuerkurve 35 ausgewechselt werden muss. Da bei unterschiedlich breiten Klappen abhängig von der Öffnungsposition auch unterschiedliche Gewichte auf den Stellarm 32 wirken, kann durch eine solche Schwenkverstellung die Federkraft für unterschiedliche Öffnungspositionen verändert werden. Vorzugsweise umfasst der erfindungsgemäße Schwenkantrieb 30 sowohl eine lineare Verstellung als auch eine Schwenkverstellung für die Steuerkurve 35, wobei optional auch noch weitere Verstellmöglichkeiten vorgesehen sein können, beispielsweise können einzelne Abschnitte der Steuerkurve 35 relativ zueinander verstellt werden.In addition to the linear adjustment, the control cam 35 can also be pivotable, preferably about a pivot point which, in a closed position of the fitting, is adjacent to the pressure piece 34. As a result, the force acting on the actuating arm 32 through the spring assembly 33 can be set for different opening positions of the flap 3 without the control cam 35 having to be replaced. Since, with flaps of different widths, depending on the opening position, different weights act on the actuating arm 32, the spring force for different opening positions can be changed by such a pivot adjustment. The pivot drive 30 according to the invention preferably comprises both a linear adjustment and a pivot adjustment for the control cam 35, with further adjustment options being optionally also possible, for example individual sections of the control cam 35 can be adjusted relative to one another.

In Figur 6A ist die geschlossene Position der Klappe 3 dargestellt, in der diese im Wesentlichen vertikal eine Öffnung am Möbelkorpus 2 überdeckt. Wird die Klappe 3 in Öffnungsrichtung verschwenkt, wie dies Figur 6B zeigt, bewegt sich die Mehrgelenkanordnung mit dem Hebel 37 um die Drehachse A1 gegen den Uhrzeigersinn, und es wird eine Druckkraft auf den Gelenkhebel 36 übertragen, wodurch der Stellarm 32 im Uhrzeigersinn durch die Drehachse 31 gedreht wird. Dadurch bewegt sich das Druckstück 34 ebenfalls im Uhrzeigersinn entlang der Steuerkurve, die zu dem Federpaket 33 hin gekrümmt verläuft, so dass bei einer Bewegung des Federpaketes 33 im Uhrzeigersinn das Druckstück 34 gegen das Federpaket 33 eingedrückt wird, so dass beim Öffnen der Klappe 3 die Kräfte in Schließrichtung wirken und vom Benutzer beim Öffnen der Klappe 3 überwunden werden müssen. Die Klappe 3 wird gemäß Figur 6C weiter in Öffnungsrichtung bewegt, und in einer vorbestimmten Öffnungsposition, beispielsweise bei einem Winkel der Klappe 3 zwischen 20° bis 30° zur Verschlussposition, wird ein Totpunkt durchlaufen. Im Bereich des Totpunktes befindet sich das Gelenk 40 auf einer Linie, die durch die Drehachse A1 und den Gelenkhebel 36 verläuft. Das Druckstück 34 wurde entlang der Steuerkurve 35 in eine maximale Position verfahren. Wird die Klappe 3 aus der in Figur 6C gezeigten Totpunktstellung weiter in Öffnungsrichtung bewegt, wie dies in Figur 6D gezeigt ist, wird durch Drehen des Doppelhebels 37 gegen den Uhrzeigersinn der Gelenkhebel 36 über das Gelenk 40 gezogen, so dass der Stellarm 32 nun gegen den Uhrzeigersinn um die Drehachse 31 gedreht wird. Dadurch bewegt sich das Druckstück 34 wieder zurück entlang der Steuerkurve 35, und das Federpaket 33 wird bei dieser Bewegung entspannt, so dass die Bewegung der Klappe 3 durch das Federpaket 33 unterstützt wird.In Figure 6A the closed position of the flap 3 is shown, in which it essentially vertically covers an opening on the furniture body 2. If the flap 3 is pivoted in the opening direction, like this Figure 6B shows, the multi-joint arrangement moves with the lever 37 about the axis of rotation A1 counterclockwise, and a compressive force is transmitted to the joint lever 36, whereby the actuating arm 32 is rotated clockwise through the axis of rotation 31. As a result, the pressure piece 34 also moves clockwise along the control curve, which is curved towards the spring assembly 33, so that when the spring assembly 33 moves clockwise, the pressure piece 34 is pressed against the spring assembly 33, so that when the flap 3 is opened the Forces act in the closing direction and must be overcome by the user when opening the flap 3. The flap 3 is according to Figure 6C moved further in the opening direction, and in a predetermined opening position, for example at an angle of the flap 3 between 20 ° to 30 ° to the closed position, a dead center is passed through. In the area of the dead center, the joint 40 is on a line which runs through the axis of rotation A1 and the joint lever 36. The pressure piece 34 was moved to a maximum position along the control cam 35. If the flap 3 is removed from the in Figure 6C The dead center position shown is moved further in the opening direction, as shown in FIG Figure 6D is shown, by turning the double lever 37 counterclockwise, the articulated lever 36 is pulled over the articulation 40, so that the actuating arm 32 is now rotated counterclockwise about the axis of rotation 31. As a result, the pressure piece 34 moves back along the control curve 35, and the spring assembly 33 is relaxed during this movement, so that the movement of the flap 3 is supported by the spring assembly 33.

Die Klappe 3 kann nun entsprechend der Darstellung der Figuren 6E, 6F und 6G weiter in Öffnungsrichtung bewegt werden, beispielsweise bis zu einer maximalen Öffnungsposition von 100° bis 120° relativ zur Verschlussposition. Während dieser Drehbewegung wird der Stellarm 32 gegen den Uhrzeigersinn verschwenkt, und das Druckstück 34 bewegt sich dementsprechend entlang der Steuerkurve 35, die so gestaltet ist, dass sich bei dieser Drehbewegung das Federpaket 33 entspannt. Dadurch wird die durch die Klappe 3 auf den Beschlag aufgebrachte Gewichtskraft durch das Federpaket 33 zumindest teilweise kompensiert, wobei es möglich ist, das Federpaket 33 mit dem Stellarm 32 so einzustellen, dass die Gewichtskraft der Klappe 3 vollständig kompensiert wird und der Benutzer im Wesentlichen nur die Kräfte zum Bewegen der Klappe 3 aufbringen muss. Die Kräfte des Federpakets 33 können auch so eingestellt werden, dass die Klappe ab einem bestimmten Öffnungswinkel selbsttätig öffnet. Auch die Steuerkurve kann, unabhängig vom Federpaket 33 so gestaltet sein, das die Klappe ab einem bestimmten Öffnungswinkel selbsttätig öffnet.The flap 3 can now according to the illustration of Figures 6E , 6F and 6G be moved further in the opening direction, for example up to a maximum opening position of 100 ° to 120 ° relative to the closed position. During this rotary movement, the actuating arm 32 is pivoted counterclockwise, and the pressure piece 34 accordingly moves along the control cam 35, which is designed such that the spring assembly 33 relaxes during this rotary movement. As a result, the weight applied to the fitting by the flap 3 is at least partially compensated for by the spring assembly 33, whereby it is possible to adjust the spring assembly 33 with the actuating arm 32 so that the weight of the flap 3 is completely compensated and the user essentially only the forces to move the flap 3 must apply. The forces of the spring assembly 33 can also be adjusted so that the flap opens automatically from a certain opening angle. The control cam can also be designed, independently of the spring assembly 33, in such a way that the flap opens automatically from a certain opening angle.

Die Klappe 3 ist relativ zu dem Schwenkantrieb 30 zwangsgeführt, so dass bei einer Schließbewegung die gegenläufigen Bewegungen ausgeführt werden. Zunächst müssen beim Schließen aus der in Figur 6G gezeigten Position bis zu der in Figur 6C gezeigten Position Kräfte durch den Benutzer aufgewendet werden, um das Federpaket 33 wieder zu komprimieren, das um die Drehachse 31 verschwenkt wird und dabei über das Druckstück 34 und die Steuerkurve 35 komprimiert wird. Bei Erreichen des Totpunktes wird keine Kraft mehr über das Federpaket 33 auf den Stellarm 32 übertragen, und erst bei einer weiteren Schließbewegung wirkt das Federpaket 33 dann in Schließrichtung. Die Klappe 3 kann in einem Schließbereich von beispielswiese 0° bis 20° oder 0° bis 30° in Schließrichtung über den Schwenkantrieb 30 vorgespannt werden und wird in einem Öffnungsbereich benachbart zu diesem Schließbereich über den Schwenkantrieb 30 in Öffnungsrichtung vorgespannt.The flap 3 is positively guided relative to the pivot drive 30, so that the opposing movements are carried out during a closing movement. First of all, when closing from the in Figure 6G position shown up to the in Figure 6C Forces shown in the position shown by the user are used to compress the spring assembly 33 again, which is pivoted about the axis of rotation 31 and is compressed via the pressure piece 34 and the control cam 35. When the dead center is reached, no more force is transmitted to the actuating arm 32 via the spring assembly 33, and the spring assembly 33 then acts in the closing direction only when there is a further closing movement. The flap 3 can be pre-tensioned in a closing area of, for example, 0 ° to 20 ° or 0 ° to 30 ° in the closing direction via the pivot drive 30 and is pre-tensioned in an opening area adjacent to this closing area via the pivot drive 30 in the opening direction.

Optional kann der Schwenkantrieb 30 einen Dämpfer aufweisen, beispielsweise einen Lineardämpfer, der dafür sorgt, dass die Klappe 3 vor Erreichen der Schließposition und/oder der maximalen Öffnungsposition abgebremst wird, so dass keine lauten Anschlaggeräusche entstehen. Ein solcher Dämpfer kann beispielsweise an dem Federpaket 33 oder dem Stellarm 32 oder am Gehäuse 21, um die Schwenkbewegung des Federpakets zu dämpfen, angebracht sein.Optionally, the swivel drive 30 can have a damper, for example a linear damper, which ensures that the flap 3 is braked before it reaches the closed position and / or the maximum open position, so that no loud impact noises occur. Such a damper can for example on the spring assembly 33 or the actuating arm 32 or on the housing 21 in order to dampen the pivoting movement of the spring assembly.

In den nachfolgenden Ausführungsbeispielen werden weitere Schwenkantriebe gezeigt, wobei gleiche Bauteile mit denselben Bezugszeichen wie bei dem Ausführungsbeispiel der Figur 6 bezeichnet sind. Es wird daher lediglich auf die Unterschiede zu dem in Figur 6 gezeigten Ausführungsbeispiel im Detail eingegangen.In the following exemplary embodiments, further swivel drives are shown, the same components having the same reference numerals as in the exemplary embodiment in FIG Figure 6 are designated. Therefore, only the differences to the one in Figure 6 The embodiment shown has been received in detail.

Bei dem in Figur 7A bis 7D gezeigten Ausführungsbeispiel ist das Federpaket 33 in der Schließposition der Klappe 3 nicht mehr mit der Wirkrichtung im Wesentlichen vertikal angeordnet, sondern schräg. Dadurch können das Druckstück 34 und die Steuerkurve 35 näher an der Klappe 3 angeordnet werden, was die Betätigung eines Verstellmechanismus von einer Vorderseite des Möbelkorpus erleichtert. Der Stellarm 32 ist ansonsten wie bei dem vorangegangenen Ausführungsbeispiel über einen Gelenkhebel 36 mit der Mehrgelenkverbindung gekoppelt, an der auch die Klappe 3 gehalten ist. Im Übrigen ist die Wirkungsweise des Schwenkantriebes mit dem Federpaket 33, das auf das Druckstück 34 wirkt, das entlang der Steuerkurve 35 verfahrbar ist, wie bei den vorangegangenen Ausführungsbeispielen.The in Figures 7A to 7D In the illustrated embodiment, the spring assembly 33 in the closed position of the flap 3 is no longer arranged with the effective direction essentially vertically, but rather at an angle. As a result, the pressure piece 34 and the control cam 35 can be arranged closer to the flap 3, which facilitates the actuation of an adjustment mechanism from a front side of the furniture body. Otherwise, as in the previous exemplary embodiment, the actuating arm 32 is coupled via an articulated lever 36 to the multi-articulated connection on which the flap 3 is also held. Otherwise, the mode of operation of the swivel drive with the spring assembly 33, which acts on the pressure piece 34, which can be moved along the control cam 35, is the same as in the previous exemplary embodiments.

In den Figuren 8A bis 8D ist ein weiteres Ausführungsbeispiel eines Schwenkantriebes gezeigt, bei dem der Stellarm 32 wieder über einen Gelenkhebel 36 mit einer Mehrgelenkverbindung mit der Klappe 3 verbunden ist. Das Federpaket 33 ist in dem Gehäuse 21 des Beschlages 20 verglichen mit den anderen Ausführungsbeispielen gedreht angeordnet, wobei das Druckstück 34 und die Steuerkurve 35 zur Rückseite des Möbelkorpus gewandt angeordnet sind. Die Drehachse 31 des Stellarmes 32 befindet sich hingegen benachbart zu der Klappe 3.In the Figures 8A to 8D Another exemplary embodiment of a swivel drive is shown, in which the actuating arm 32 is again connected to the flap 3 via an articulated lever 36 with a multi-articulated connection. The spring package 33 is arranged rotated in the housing 21 of the fitting 20 compared to the other exemplary embodiments, the pressure piece 34 and the control cam 35 being arranged facing the rear of the furniture body. The axis of rotation 31 of the actuating arm 32, on the other hand, is located adjacent to the flap 3.

In den Figuren 9A bis 9D ist ein weiteres Ausführungsbeispiel eines Schwenkbeschlages gezeigt, bei dem eine modifizierte Steuerkurve 35' vorgesehen ist, die zur Führung eines modifizierten Druckstückes 34' dient. Die Steuerkurve 35' ist als Linearführung ausgebildet, die zur Wirkrichtung des Federpaketes 33 geneigt angeordnet ist, so dass bei einem Verfahren des Druckstückes 34' relativ zur Steuerkurve 35' das Federpaket 33 entspannt oder gespannt wird.In the Figures 9A through 9D Another embodiment of a swivel fitting is shown in which a modified control cam 35 'is provided, which is used to guide a modified pressure piece 34'. The control cam 35 'is designed as a linear guide which is inclined to the direction of action of the spring assembly 33, so that when the pressure piece 34' is moved relative to the control cam 35 ', the spring assembly 33 is relaxed or tensioned.

Beim dem Ausführungsbeispiel der Figuren 9A bis 9D wird beim Öffnen der Klappe 3 kein Totpunkt durchlaufen, sondern das Druckstück 34' bewegt sich linear entlang der Steuerkurve 35' über den gesamten Schwenkbereich, so dass sich das Federpaket 33 während der Öffnungsbewegung nur in eine Richtung bewegt. Durch die Anordnung des Stellarms 32 und der Verbindung zwischen Stellarm 32 und dem Hebel 37 kann hier ein Richtungswechsel der Schließ- und Öffnungskraft erzeugt werden.In the embodiment of Figures 9A through 9D When opening the flap 3, no dead center is passed through, but the pressure piece 34 'moves linearly along the control curve 35 'over the entire pivoting range, so that the spring assembly 33 only moves in one direction during the opening movement. Due to the arrangement of the actuating arm 32 and the connection between the actuating arm 32 and the lever 37, a change in direction of the closing and opening force can be generated here.

Zudem ist der Schwenkantrieb 30 bei dem in Figur 9A bis 9D gezeigten Ausführungsbeispiel nicht über ein Gelenk 40 gekoppelt, sondern an dem Stellarm 32 ist ein weiteres Druckstück 45 vorgesehen, beispielsweise eine Rolle, die entlang einer Kurvenführung 41 verfahrbar ist. Die Kurvenführung 41 ist drehfest mit einem Hebel 37 der Mehrgelenkanordnung verbunden, und durch Drehen der Kurvenführung 41 um die Drehachse A1 wird das Druckstück 45 und damit der Stellarm 32 verschwenkt. Beim Öffnen der Klappe 3 verschwenkt die Kurvenführung 41 gegen den Uhrzeigersinn, und auch der Stellarm 32 verschwenkt dadurch gegen den Uhrzeigersinn.In addition, the swivel drive 30 in the in Figures 9A through 9D The embodiment shown is not coupled via a joint 40, but a further pressure piece 45 is provided on the actuating arm 32, for example a roller which can be moved along a curved guide 41. The cam guide 41 is non-rotatably connected to a lever 37 of the multi-joint arrangement, and by rotating the cam guide 41 about the axis of rotation A1, the pressure piece 45 and thus the actuating arm 32 are pivoted. When the flap 3 is opened, the cam guide 41 pivots counterclockwise, and the actuating arm 32 also pivots counterclockwise as a result.

In den Figuren 10A bis 10C ist ein weiteres Ausführungsbeispiel gezeigt, bei dem ein Federpaket 33 drehfest mit einem Stellarm 32 gekoppelt ist, an dem ein Druckstück 45 fixiert ist. Das Druckstück 45 ist wieder entlang einer Kurvenführung 41 verfahrbar, die beim Öffnen der Klappe gegen den Uhrzeigersinn verschwenkt wird. Die Lage des Federpaketes 33 und die Dimensionierung sind gegenüber dem in Figur 9 gezeigten Ausführungsbeispiel unterschiedlich.In the Figures 10A to 10C Another exemplary embodiment is shown in which a spring assembly 33 is coupled in a rotationally fixed manner to an actuating arm 32 on which a pressure piece 45 is fixed. The pressure piece 45 can again be moved along a curved guide 41 which is pivoted counterclockwise when the flap is opened. The position of the spring assembly 33 and the dimensions are compared to that in Figure 9 shown embodiment different.

Die dargestellten Ausführungsbeispiele können beliebig miteinander kombiniert werden, um die Übertragungsmechanik von der Klappe 3 oder einem anderen bewegbaren Möbelteil zu der Steuerkurve 35 oder 35' hin zu modifizieren.The illustrated exemplary embodiments can be combined with one another as desired in order to modify the transmission mechanism from the flap 3 or another movable furniture part to the control cam 35 or 35 '.

BezugszeichenlisteList of reference symbols

11
MöbelFurniture
22
MöbelkorpusFurniture body
33
Klappeflap
44th
KlappenbeschlagFlap fitting
5, 5'5, 5 '
Hebellever
6, 6'6, 6 '
Hebellever
7, 7'7, 7 '
AnbindungConnection
1010
SeitenwandSide wall
1111th
Kerncore
1212th
AussparungRecess
1313th
DeckschichtTop layer
1414th
Bodenfloor
1515th
OberbodenTopsoil
2020th
Beschlagfitting
2121
Gehäusecasing
2222nd
Armpoor
2323
DrehachseAxis of rotation
2424
Armpoor
25,25'25.25 '
KlappenteilFlap part
26, 26'26, 26 '
KlappenteilFlap part
2727
Aufnahmeadmission
3030th
SchwenkantriebSlewing drive
3131
DrehachseAxis of rotation
3232
StellarmControl arm
3333
FederpaketSpring package
34,34'34.34 '
DruckstückPressure piece
35,35'35.35 '
SteuerkurveControl curve
3636
GelenkhebelArticulated lever
3737
Hebel/DoppelhebelLever / double lever
3838
AnbindungConnection
3939
Gelenkjoint
4040
Gelenkjoint
4141
KurvenführungCornering
4545
DruckstückPressure piece
A1A1
DrehachseAxis of rotation
A2A2
DrehachseAxis of rotation
A3A3
DrehachseAxis of rotation
A4A4
DrehachseAxis of rotation
A5A5
DrehachseAxis of rotation
A6A6
DrehachseAxis of rotation
A7A7
DrehachseAxis of rotation

Claims (22)

  1. Pivot drive (30) for a movable furniture part (3, 25, 25'), having:
    - an actuating arm (32) mounted so as to be pivotable about an axis of rotation (31);
    - a spring assembly (33) having at least one spring guided linearly in one operating direction,
    - a pressure-exerting component (34, 34') connected to the spring assembly (33) and movable along a control curve (35, 35') of the pivot drive (30),
    - a housing (21) on or in which the pivot drive is mounted, wherein the actuating arm (32) is connected in a rotationally fixed manner to the spring assembly (33) and is pivotable therewith about the axis of rotation (31), wherein the actuating arm (32) is connected to the movable furniture part via a multi-joint connection of the pivot drive (30) and the control curve (35, 35') is adjustable relative to the axis of rotation (31) for adjusting the spring force of the spring assembly (33) and/or the force action of the spring assembly (33) on the control curve is adjustable, wherein a lever (37) of the multi-joint connection has two axes of rotation (A1, A3) for moving the movable furniture part and the actuating arm (32) is connected to the lever (37) of the multi-joint connection by a joint lever (36) and a joint (40), characterized in that the control curve (35) is immovable relative to the housing (21) during an opening and/or closing movement of the movable furniture part (3, 25, 25') so that a furniture body, the control curve and the housing (21) are stationary while the movable furniture part (3, 25, 25') and the spring assembly (33) are moving.
  2. Pivot drive (30) for a movable furniture part (3, 25, 25'), having:
    - an actuating arm (32) mounted so as to be pivotable about an axis of rotation (31);
    - a spring assembly (33) having at least one spring guided linearly in one operating direction,
    - a pressure-exerting component (34, 34') connected to the spring assembly (33) and movable along a control curve (35, 35') of the pivot drive (30),
    a housing (21) on or in which the pivot drive is mounted, wherein the actuating arm (32) is connected in a rotationally fixed manner to the spring assembly (33) and is pivotable therewith about the axis of rotation (31), wherein the actuating arm (32) is connectable to the movable furniture part via a four-joint with two parallel levers or as seven joint connection as multi-joint connection of the pivot drive (30) and the control curve (35') is adjustable relative to the axis of rotation (31) for adjusting the spring force of the spring assembly (33) and/or the force action of the spring assembly (33) on the control curve is adjustable, wherein a lever (37) of the multi-joint connection has a curve guide (41) for indirect coupling to the actuating arm (32), characterized in that the control curve (35) is immovable relative to the housing (21) during an opening and/or closing movement of the movable furniture part (3, 25, 25') so that the control curve (35') and the housing (21) are stationary while the movable furniture part (3, 25, 25') and the spring assembly (33) are moving.
  3. Pivot drive according to claim 1 or 2, characterized in that the control curve (35, 35') is infinitely variable via actuating means.
  4. Pivot drive according to claim 1 or 2, characterized in that the control curve (35) is held adjustably on or in the housing (21).
  5. Pivot drive according to one of the preceding claims, characterized in that the control curve (35, 35') is mounted rotatably and/or displaceably relative to the axis of rotation (31) of the actuating arm (32).
  6. Pivot drive according to one of the preceding claims, characterized in that the control curve (35, 35') is adjustable in the direction of action of the spring assembly (33) and/or the spring assembly (33) is compressed or expanded by corresponding adjusting means in relation to the force action on the control curve (35, 35').
  7. Pivot drive according to one of the preceding claims, characterized in that the spring assembly (33) pretensions the actuating arm (32) in a closing region in a closing direction and in an opening region next to the closing region the spring assembly (33) pretensions the actuating arm (32) in the opening direction.
  8. Pivot drive according to one of the preceding claims, characterized in that the actuating arm (32) is connected to a flap (3) or a door via a multi-joint connection.
  9. Pivot drive according to one of the preceding claims, characterized in that the control curve (35, 35') has a guide track consisting of metal.
  10. Pivot drive according to one of the preceding claims, characterized in that the movable furniture part is kept in balance at least over part of the opening region by the spring assembly (33) and the control curve (35, 41).
  11. Pivot drive according to one of the preceding claims, characterized in that the pressure-exerting component (34, 34') is designed as a roller, in particular made of metal.
  12. Pivot drive according to one of the preceding claims, characterized in that the spring assembly (30) comprises a plurality of springs which are arranged next to one another and which are guided linearly in the direction of action of the spring assembly.
  13. Pivot drive according to one of the preceding claims, characterized in that the pivot drive is designed as a flap fitting.
  14. Pivot drive according to one of the preceding claims, characterized in that the pivot drive has a damper for braking the actuating arm (32) before the closed position and/or the maximum opening position.
  15. Pivot drive according to one of the preceding claims, characterized in that the axis of rotation (31) about which the spring assembly (33) rotates with the actuating arm (32) is arranged in a fixed manner in the housing (21), so that the spring assembly (33) with the actuating arm (32) pivots about the axis of rotation (31).
  16. Pivot drive according to claim 2, characterized in that a pressure-exerting component (45) is arranged on the actuating arm (32) and cooperates with the curve guide of the lever (37).
  17. Pivot drive according to one of the preceding claims, characterized in that the total pivot angle of the spring assembly (33) about the axis of rotation (31) from the closed position into the fully open position of the movable furniture part is greater than 10°.
  18. Piece of furniture (1) having a pivot drive (30) according to one of the preceding claims.
  19. Piece of furniture according to claim 18, characterized in that the pivot drive (30) is arranged in a side wall (10) of the piece of furniture (1).
  20. Piece of furniture according to claim 19, characterized in that the side wall (10) has a plate-shaped core (11) which has a first end face and further end faces, and wherein a recess (12) is arranged in the core (11), which recess extends at least along a section of the first end face of the side wall and serves to receive a flap fitting (4) which guides a movable furniture part.
  21. Piece of furniture according to claim 20, characterized in that the plate-shaped core (11) of the side wall (10) is arranged between two laterally applied cover layers (13).
  22. Piece of furniture according to claim 21, characterized in that the core (11) has two core halves which lie one on top of the other with their side faces opposite the respective cover layers (13) and have recesses which complement one another to form the recess (12).
EP18719778.5A 2017-04-18 2018-04-12 Pivoting drive Active EP3612701B1 (en)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
DE102017108197.6A DE102017108197A1 (en) 2017-04-18 2017-04-18 Quarter turn actuator and furniture
PCT/EP2018/059408 WO2018192835A1 (en) 2017-04-18 2018-04-12 Pivot drive and piece of furniture

Publications (2)

Publication Number Publication Date
EP3612701A1 EP3612701A1 (en) 2020-02-26
EP3612701B1 true EP3612701B1 (en) 2021-12-22

Family

ID=62046871

Family Applications (1)

Application Number Title Priority Date Filing Date
EP18719778.5A Active EP3612701B1 (en) 2017-04-18 2018-04-12 Pivoting drive

Country Status (9)

Country Link
US (1) US11060337B2 (en)
EP (1) EP3612701B1 (en)
CN (1) CN110520588B (en)
AU (1) AU2018255813B2 (en)
BR (1) BR112019019881A2 (en)
CA (1) CA3057953A1 (en)
DE (1) DE102017108197A1 (en)
RU (1) RU2760649C2 (en)
WO (1) WO2018192835A1 (en)

Families Citing this family (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP3521542B1 (en) 2018-01-31 2020-01-22 FLAP Competence Center kft Cover positioner for furniture
DE102019102057A1 (en) * 2019-01-28 2020-07-30 ambigence GmbH & Co. KG Furniture component with a drivable furniture fitting
AT522109A1 (en) * 2019-01-31 2020-08-15 Blum Gmbh Julius Actuator for moving a furniture flap

Citations (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2016131770A1 (en) * 2015-02-17 2016-08-25 Arturo Salice S.P.A. Lifting system for leaves of furniture

Family Cites Families (33)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE524463C (en) * 1929-04-17 1931-05-07 Hermann Bender Spring door closer
TW334493B (en) * 1996-05-14 1998-06-21 Sugatsune Kogyo Damper for opening or closing a door
DE10019337C2 (en) * 2000-04-19 2003-07-31 Hettich Hetal Werke Klappenhalter
EP1154109B1 (en) * 2000-05-12 2009-01-07 Antonio Giovannetti A spring operated device for door movement, having an adjustable lever arm of the spring
DE10203269B4 (en) * 2002-01-29 2006-07-06 Hetal-Werke Franz Hettich Gmbh & Co Fitting device for a furniture flap
DE10323698B3 (en) 2003-05-22 2005-02-10 Huwil-Werke Gmbh Möbelschloss- Und Beschlagfabriken cover plate
AT502941B1 (en) * 2004-12-28 2011-05-15 Blum Gmbh Julius ACTUATOR FOR DRIVING A FLAP OF A FURNITURE
AT507279A1 (en) * 2008-08-29 2010-03-15 Blum Gmbh Julius DRIVE DEVICE FOR A FURNITURE FLAP
DK2251514T3 (en) * 2009-05-12 2011-12-19 Huwil Butoripari Es Uezletberendezesi Lid
AT508229B1 (en) * 2009-05-13 2015-12-15 Blum Gmbh Julius FURNITURE FLAP DRIVE FOR VARIOUS FLAP TYPES
DE202010015091U1 (en) 2010-11-04 2012-02-06 Grass Gmbh Furniture fitting and furniture
US20120326585A1 (en) * 2011-06-22 2012-12-27 Prince Castle LLC. Drawer Closer
SI24023A (en) * 2012-03-06 2013-09-30 Turna D.O.O. A device and a method for controlled door closing
AT513387B1 (en) * 2013-02-08 2014-04-15 Blum Gmbh Julius Actuator for moving a movable furniture part
AT514944B1 (en) * 2013-11-14 2015-05-15 Blum Gmbh Julius furniture drive
AT515492B1 (en) * 2014-03-14 2020-01-15 Blum Gmbh Julius Actuator for furniture flaps
AT515661B1 (en) 2014-11-21 2015-11-15 Blum Gmbh Julius Actuator for movable furniture parts
AT517591B1 (en) * 2015-09-15 2017-03-15 Blum Gmbh Julius Actuator for furniture parts
DE102016125436A1 (en) * 2016-12-22 2018-06-28 Form Orange Produktentwicklung closet
DE102017104169A1 (en) * 2017-02-28 2018-08-30 ambigence GmbH & Co. KG Wall of a furniture body, method for making such a wall and furniture body or furniture with such a wall
DE102017104170A1 (en) * 2017-02-28 2018-08-30 ambigence GmbH & Co. KG Wall of a furniture body, method for making such a wall and furniture body or furniture with such a wall
DE102017104184A1 (en) * 2017-02-28 2018-08-30 ambigence GmbH & Co. KG Wall of a furniture carcass and furniture carcass or furniture with such a wall
DE102017104171A1 (en) * 2017-02-28 2018-08-30 ambigence GmbH & Co. KG Wall for a furniture body, method of making such a wall and furniture body or furniture with such a wall
WO2018192819A1 (en) * 2017-04-18 2018-10-25 Hettich-Oni Gmbh & Co. Kg Furniture board having a flap fitting and carcass and furniture item having such a furniture board
IT201700044196A1 (en) * 2017-04-21 2018-10-21 Effegi Brevetti Srl MOVEMENT MECHANISM OF A FURNITURE DOOR
AT519935A1 (en) * 2017-05-12 2018-11-15 Blum Gmbh Julius Furniture drive system
IT201700112315A1 (en) * 2017-10-06 2019-04-06 Effegi Brevetti Srl AUTOMATIC OPENING MECHANISM FOR HINGED DOORS
DE102017126369A1 (en) * 2017-11-10 2019-05-16 Hettich-Oni Gmbh & Co. Kg Flap fitting for a furniture, side wall of a furniture body and furniture with a side wall
DE102018100206A1 (en) * 2018-01-05 2019-07-11 ambigence GmbH & Co. KG Furniture panel with integrated mounting element for a motion fitting and furniture body and furniture with such a furniture plate
DE102018100204A1 (en) * 2018-01-05 2019-07-11 ambigence GmbH & Co. KG Method for integrating a mounting element for a motion fitting in a furniture panel and furniture panel with integrated mounting element
DE202018102089U1 (en) * 2018-04-17 2019-07-18 Grass Gmbh Device for moving a furniture part received on a furniture carcass of a piece of furniture
DE202018102084U1 (en) * 2018-04-17 2019-07-29 Grass Gmbh Device for moving a furniture part received on a furniture carcass of a piece of furniture
DE102018120661A1 (en) * 2018-08-23 2020-02-27 ambigence GmbH & Co. KG Furniture component and manufacturing method

Patent Citations (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2016131770A1 (en) * 2015-02-17 2016-08-25 Arturo Salice S.P.A. Lifting system for leaves of furniture

Also Published As

Publication number Publication date
CN110520588A (en) 2019-11-29
US11060337B2 (en) 2021-07-13
RU2019133591A3 (en) 2021-07-06
EP3612701A1 (en) 2020-02-26
RU2760649C2 (en) 2021-11-29
AU2018255813A1 (en) 2019-10-10
CN110520588B (en) 2021-07-30
CA3057953A1 (en) 2018-10-25
AU2018255813B2 (en) 2023-12-14
DE102017108197A1 (en) 2018-10-18
WO2018192835A1 (en) 2018-10-25
US20200123827A1 (en) 2020-04-23
BR112019019881A2 (en) 2020-04-22
RU2019133591A (en) 2021-05-18

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