EP1690473B1 - Système touch-latch pour des meubles avec des pièces de meuble qui bougent relativement les unes par rapport aux autres, en particulier des tiroirs de meubles, des portes de meubles ou des clapets de meubles - Google Patents

Système touch-latch pour des meubles avec des pièces de meuble qui bougent relativement les unes par rapport aux autres, en particulier des tiroirs de meubles, des portes de meubles ou des clapets de meubles Download PDF

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Publication number
EP1690473B1
EP1690473B1 EP06002841.2A EP06002841A EP1690473B1 EP 1690473 B1 EP1690473 B1 EP 1690473B1 EP 06002841 A EP06002841 A EP 06002841A EP 1690473 B1 EP1690473 B1 EP 1690473B1
Authority
EP
European Patent Office
Prior art keywords
touch
furniture
drawer
touch latch
latch system
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
EP06002841.2A
Other languages
German (de)
English (en)
Other versions
EP1690473A2 (fr
EP1690473A3 (fr
Inventor
Peter Kropf
Klaus Schneider
Johannes Hämmerle
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.)
Grass GmbH
Original Assignee
Grass GmbH
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Priority claimed from DE200520002433 external-priority patent/DE202005002433U1/de
Application filed by Grass GmbH filed Critical Grass GmbH
Publication of EP1690473A2 publication Critical patent/EP1690473A2/fr
Publication of EP1690473A3 publication Critical patent/EP1690473A3/fr
Application granted granted Critical
Publication of EP1690473B1 publication Critical patent/EP1690473B1/fr
Active legal-status Critical Current
Anticipated expiration legal-status Critical

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Classifications

    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47BTABLES; DESKS; OFFICE FURNITURE; CABINETS; DRAWERS; GENERAL DETAILS OF FURNITURE
    • A47B88/00Drawers for tables, cabinets or like furniture; Guides for drawers
    • A47B88/90Constructional details of drawers
    • A47B88/944Drawers characterised by the front panel
    • A47B88/95Drawers characterised by the front panel characterised by connection means for the front panel
    • A47B88/956Drawers characterised by the front panel characterised by connection means for the front panel for enabling adjustment of the front panel
    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47BTABLES; DESKS; OFFICE FURNITURE; CABINETS; DRAWERS; GENERAL DETAILS OF FURNITURE
    • A47B88/00Drawers for tables, cabinets or like furniture; Guides for drawers
    • A47B88/40Sliding drawers; Slides or guides therefor
    • A47B88/453Actuated drawers
    • A47B88/46Actuated drawers operated by mechanically-stored energy, e.g. by springs
    • A47B88/467Actuated drawers operated by mechanically-stored energy, e.g. by springs self-closing
    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47BTABLES; DESKS; OFFICE FURNITURE; CABINETS; DRAWERS; GENERAL DETAILS OF FURNITURE
    • A47B88/00Drawers for tables, cabinets or like furniture; Guides for drawers
    • A47B88/40Sliding drawers; Slides or guides therefor
    • A47B88/473Braking devices, e.g. linear or rotational dampers or friction brakes; Buffers; End stops
    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47BTABLES; DESKS; OFFICE FURNITURE; CABINETS; DRAWERS; GENERAL DETAILS OF FURNITURE
    • A47B2210/00General construction of drawers, guides and guide devices
    • A47B2210/0091Drawer movement damping
    • A47B2210/0094Drawer damping device with 2 relatively movable parts to convert kinetic energy
    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47BTABLES; DESKS; OFFICE FURNITURE; CABINETS; DRAWERS; GENERAL DETAILS OF FURNITURE
    • A47B88/00Drawers for tables, cabinets or like furniture; Guides for drawers
    • A47B88/40Sliding drawers; Slides or guides therefor
    • A47B88/453Actuated drawers
    • A47B88/46Actuated drawers operated by mechanically-stored energy, e.g. by springs
    • A47B88/463Actuated drawers operated by mechanically-stored energy, e.g. by springs self-opening

Definitions

  • the invention relates to a touch-latch system for furniture with mutually relatively movable furniture parts, in particular furniture drawer, furniture door, or furniture flap, according to the preamble of claim 1.
  • Such touch-latch systems are u.a. used on drawers or doors without handle on the front panel.
  • Such touch-latch systems are known per se from the prior art, e.g. a Touch-Latch-System with the Kuli-Principle (rotary motion), or a Touch-Latch-System with a backdrop (2D-Herzkurve, 3D-Kurve).
  • Such devices are used to allow the opening and closing of drawers, doors, flaps and any other movable furniture parts that, for example, have no handle for aesthetic reasons. Opening and closing such movable furniture parts, for example, by lateral actuation of the front panel or other accessible part, is impractical or not possible, since it can not be operated and does not allow safe operation.
  • the DE 198 21014 A1 discloses a device for opening a closure element, in particular a drawer, door, or flap of a piece of furniture, wherein a drive unit for opening the drawer, door, or flap is provided and a trigger element with in particular an el. Condenser, in particular in the front panel of the drawer, door , or flap is provided for actuating the drive unit.
  • the DE 100 08 350 A1 discloses a device for opening a furniture cover, in particular a drawer, door, or flap of a Piece of furniture, wherein a combination of a touch-latch fitting is provided with a damper and the touch-latch fitting is attached to a separate lower shell of the furniture cover.
  • the EP 1 183 963 A1 discloses an adapter and a drawer with this adapter, which has at least two functional elements by which the opening and / or closing operation of the drawer can be influenced.
  • As functional elements damping, locking and unlocking, motors and springs for opening and closing the drawer and touch-latch fittings with labyrinth and drive spring are disclosed.
  • the touch-latch fittings are connected to the drawer frame at the rear of the drawer below the bottom of the drawer, which destroys storage space in the drawer.
  • the DE 295 07 917 U1 and EP-743032 B1 disclose an underfloor rail system for drawers with a touch-latch system with a drawer in the closed position locking spring-loaded locking element, which is arranged below the guide rail system on the underside of the fixed carcass rail.
  • the spring-loaded locking element is a latch which can be moved by means of a arranged on the extendable drawer rail driver.
  • the latch is slidable in a flat guide body with a guideway with turning loop in the extension direction of the drawer. Disadvantage is that lost by the arrangement of the touch-latch system below the guide rail system on the underside of the fixed cabinet rail storage space for the underlying drawer.
  • the EP 1 314 842 A1 discloses a device for opening and closing a movable furniture part, in particular a drawer, door or flap, which corresponds to a touch-latch system.
  • the device comprises two triggering and drive units which each have a triggerable by external force trigger element and a trigger element coupled to the drive element for moving the furniture part, and at least one locking element for locking the furniture part in the closed position and release of the furniture part in dependence of an outer Force on at least one trigger element, wherein the two tripping / drive units synchronously and substantially free of play by way and force-transmitting means are coupled together.
  • the entire device is located in the front of the drawer and is mounted on corpus firm stops on the drawer bottom.
  • the advantage is that you can press anywhere on the front panel to open the drawer, as a large trigger area is present. Disadvantage is the complex and cost-intensive construction, and also the large trigger area due to an unintentional triggering. If two independent per se known touch-latch fittings are provided, sometimes only one fitting is triggered, the other not. Another disadvantage is that the device takes a relatively large amount of space below and next to the drawer to complete and therefore storage space for the drawer is lost in itself.
  • the DE 101 18 394 A1 discloses a touch-latch system with rotary motion and locking pin for doors, flaps and pull-outs of furniture. The exact arrangement of the touch-latch system on the furniture is not disclosed.
  • the DE 100 60 655 A1 discloses a touch-latch system with rotary motion for doors, flaps and pull-outs of furniture. The exact arrangement of the touch-latch system on the furniture is not disclosed.
  • the EP 0 131 909 A2 discloses a touch-latch system for ashtrays in the car with the coolie principle (rotary motion and 8-slot system).
  • the touch-latch system is located in the rear of the car ashtray between the rear wall of the hinged part and the underside of the ashes for the ashtray.
  • the GB 2 117 472 A discloses a cylindrical touch-latch system with 3D curve as a doorknob for a building door, but not for a piece of furniture.
  • the DE 17 84 817 A1 discloses a generic touch-latch system for furniture with relatively movable furniture parts, in particular furniture drawers with at least one drawer slide, furniture doors or furniture flaps, including at least one length adjustable by means of screw touch-latch fitting.
  • Object of the present invention is to provide an initially described generic touch-latch system, which allows a simple and inexpensive adjustment of the front panel.
  • the present invention is characterized by the features of claim 1.
  • the touch-latch fitting is designed to be adjustable in length and the length adjustability of the touch-latch fitting is effected by an adjustment between defined individual parts of the touch-latch fitting, wherein the length adjustability of the touch-latch fitting takes place via an eccentric adjustment ,
  • the advantage is that a simple and cost-effective adjustment of the front panel is made possible by the length adjustability of the touch-latch fitting.
  • the entire touch-latch system or at least the touch-latch fitting of the touch-latch system is fully or almost completely integrated into existing components of the furniture, namely within the rail system (in particular in the drawer rail in particular their free end in the front area), or inside the drawer (decor) in particular above the rail system, in particular in the rear wall area, or within a specially created recess in the material of the furniture body in particular in the rear wall area.
  • the touch-latch fitting is integrated in the door.
  • the advantage is that no additional space for the touch-latch fitting is required by integrating the touch-latch fitting into existing components of the furniture, so that the storage space for items to be stored in the furniture body, especially the drawer, in the desired manner can be maintained, or compared to furniture with touch-latch systems of the prior art is considerably increased.
  • the drawer guide according to the invention comprises at least one touch-latch system according to the invention
  • the touch-latch fitting comprises at least one preferably cylindrical housing and a sliding and / or rotating part, wherein the touch-latch fitting via a first part (housing or sliding and / or rotating part) directly or indirectly with one of the rails (cabinet rail, middle rail, drawer rail) is connected and on her other Part (sliding or rotating part or housing) temporarily during the opening and closing directly or indirectly with another rail (carcass rail, center rail, drawer rail) is in contact or can be coupled.
  • a first part housing or sliding and / or rotating part
  • one of the rails cabinet rail, middle rail, drawer rail
  • her other Part sliding or rotating part or housing
  • the touch-latch fitting is integrated in the existing components of the drawer and is therefore invisible or almost invisible in the retracted and / or extended state of the drawer / door / flap arranged in the furniture. No part of the touch-latch system comes out of the body during the movement of the drawer or stands out during the retracted or extended drawer / door / flap, so that there is no danger of injury to the user and no optical interference, but a harmonious design ,
  • the invention is expressly not limited to a drawer, but the attachment on the guide may be arbitrary, such. a drawer, a wire basket, a plate, etc. Also, the touch-latch system according to the invention, of course, in connection with furniture doors and furniture flaps used, so that no restriction on rail systems should be made.
  • the housing of the touch-latch fitting is indirectly or directly connected to the drawer rail, preferably in the front region of the drawer rail, and the sliding and / or rotary member directly or indirectly on the cabinet rail, preferably on a on the cabinet rail attached stop strikes.
  • An alternative embodiment of the invention provides that the housing of the touch-latch fitting is indirectly or directly connected to the carcass rail, and the sliding and / or rotating part of the touch-latch fitting directly or indirectly on the drawer rail, preferably strikes a mounted on the drawer rail stop.
  • the touch-latch system is equipped with a built-in damper in the guide (eg damper as in the DE-10256133 or EP-03012770.8 ) interchangeable. This is especially true for the arrangement of the touch-latch system at the free end of a rail, such as the drawer rail.
  • the advantage is that the customer or the fitter can decide "at the last minute” whether he wants to use the damper or the touch-latch system. It may be provided that a touch-latch system be mounted on one side and a damper on the other side.
  • a single touch-latch system per drawer is present, but it can be arranged in different versions on each side of the drawer a particular identical touch-latch system or even several different touch-latch systems at different positions in the drawer or be present to the furniture body.
  • a touch-latch system is mounted in a single guide. With two uncoupled touch-latch systems, it malfunctions when opening outside the trip range.
  • the trip range is predefined with the position of the touch-latch system and does not necessarily correspond to the entire front panel (depending on the front panel width). For narrow drawers it is the whole front panel, for wide drawers the release on the side with touch-latch is easy too the further you press the touch-latch system, the harder it becomes impossible to trigger (eg with 1200cm wide drawers).
  • one-sided equipped touch-latch system must be mounted on the opposite side of an additional element as a sprung front gap stop.
  • a uniform gap between the front and body over the entire front width guaranteed (important in the closed state, since the touch-latch system requires a larger front gap: about 5 mm instead of only about 2 mm, to push the front to open can). This would be a possibly existing standard automatic retraction pull the opposite side of the front too far.
  • the attachment to a single touch-latch system is preferably a buffer, e.g. is arranged on the inside of the front panel or generally on the body.
  • the additional element may be a resilient pressure piece which is mounted in the opposite position of the touch-latch system.
  • the two sliding parts and / or rotating parts of the touch-latch hardware are coupled via transmission means (e.g., cables, pulleys, tie bars), preferably under the drawer bottom or behind the drawer back panel.
  • transmission means e.g., cables, pulleys, tie bars
  • the two touch-latch systems are independently mounted in the guide.
  • the two touch-latch systems are locked in the closed state, which ensures a uniform front gap and eliminates the automatic catch.
  • the drawer can not open unintentionally because it is locked. Normally, it is locked by the automatic retraction.
  • the locking of the touch-latch system is carried out in a preferred embodiment of the invention via a resilient hook between the housing of the touch-latch fitting, and the opposite rail.
  • the locking of the touch-latch system takes place via a coupling device at the end of the sliding part of the touch-latch fitting and an additional locking within the touch-latch system.
  • a touch-latch system can be used, preferably on the cabinet rail.
  • this touch-latch system has the same external dimensions as the automatic retraction.
  • the touch-latch function is preferably realized via a heart curve.
  • the lock is the same as the automatic retractor, where a hook is tilted and snaps onto one edge of the auto-retractable housing.
  • the opening path of the drawer is limited, regardless of the weight of the drawer. To open the drawer completely, you must pull it once more. This can be as additional Security feature may be desirable to prevent unintentional too wide opening of the drawer.
  • the automatic feed mechanism does not hold the drawer closed, but pushes the drawer through the automatic retraction path.
  • the touch-latch hardware of the principle known touch-latch system may have a particular curve, e.g. Heart curve, 3D curve or any other touch-latch principle have.
  • the touch-latch system can be mounted on the left or right or in the middle of the drawer, e.g. drilled, e.g. in the drawer bottom or in the frame, or with adapter screwed somewhere, or drilled in the cabinet side.
  • the associated to the touch-latch system stop member is preferably mounted in the body.
  • touch-latch systems there may be two such touch-latch systems in the drawer connected via transmission means or two touch-latch systems which are independent of each other.
  • the length adjustability of the touch-latch fitting is effected by an adjustment between defined individual parts of the touch-latch fitting via an eccentric adjustment
  • the longitudinal adjustment has the advantage that the position of the front of the drawer can be adjusted.
  • the eccentric adjustment of the touch-latch fitting has either an eccentric screw with at least one cam or a worm screw with spiral screw winding.
  • the angle of rotation of the eccentric screw is between 90 ° and 180 °, but up to a maximum of 360 °, the angle of rotation of the screw between 360 ° and 540 °, but can also be 720 ° or more, depending on the desired adjustment.
  • the eccentric adjustment of the touch latch fitting preferably acts between the sliding part of the touch latch fitting and a stop arranged on the front free end of the sliding part.
  • the spring force of the spring of the touch-latch fitting is designed to be adjustable.
  • a spring with a larger spring force is advantageous, for a drawer that has only low capacity, a touch-latch fitting spring with a relatively low spring force is sufficient.
  • the spring force can be adjusted either in stages, or stepless. If the touch-latch-fitting spring is adjustable in predefined stages, the end of the spring, for example, hangs at different latching steps in the housing of the touch-latch fitting. With infinitely variable adjustability of the touch-latch fitting spring this is adjustable, for example via an adjusting screw, which is attached to the bottom of the housing of the touch-latch fitting.
  • a Vorbe stainedung is also conceivable, i. for a heavy duty drawer or door, a touch-latch fitting is used with a spring with a large spring force, and for a normal or light drawer or door, a touch-latch fitting is used with a spring with a lower spring force.
  • Fig. 1 to 4 is a drawer slide 1 touch-latch system with integrated touch-latch fitting 5 shown.
  • the housing 6 of the touch-latch fitting 5 is connected to the drawer rail 2 and is temporarily in contact with the carcass rail 4 via the stop 9.
  • the connection between the housing 6 of the touch-latch fitting 5 and the drawer rail 2 can known methods are: snap connection, rotary connection, plug-in technique, screw connection, bayonet connection, Renktagen, etc ....
  • Fig. 1 and 2 the drawer slide 1 is closed or has just been opened.
  • the touch latch fitting 5 is still (or ready) in the open state.
  • the sliding part 7 of the touch-latch fitting 5 is pulled out and not in contact with the stop 9 of the carcass rail 4th
  • Fig. 3 the drawer slide 1 is in the closed state, as well as the touch-latch fitting 5.
  • the sliding part 7 is in contact with the stop 9.
  • the distance between the housing 6 of the touch-latch fitting 5 and the stop 9 is comparable to the front gap 24 in the Fig. 11 ,
  • Fig. 4 is the depressed position of the touch-latch fitting 5 to see. Among other things, it corresponds to the process of opening the drawer when the front panel of the drawer is pressed.
  • the distance between the housing 6 of the touch-latch fitting 5 and the stop 9 is equal to zero (the sliding part 7 of the touch-latch fitting 5 is retracted), so that the unlocking of the system can take place.
  • Fig. 5 a first principle of a touch-latch system is shown.
  • the housing 6 has on its inside eight longitudinally extending grooves 10, which are arranged at a distance of approximately 45 ° around, and wherein each second groove 10 is formed deeper.
  • the grooves 10 do not extend over the entire length of the housing. 6
  • the rotary member 8 has four projections 13 offset by 90 °, each having an oblique edge 14 at its end.
  • the inclination of these edges 14 corresponds to the inclination of the edges 12.
  • the projections 13 can be guided displaceably only in the deep grooves 10 of the housing 6.
  • the rotary member 8 is located in the housing 6 between the lid 17 and the grooves 10th
  • the sliding part 7 has eight projections 11 which engage in all the grooves 10 of the housing 6, since these projections 11 are only as high as the four grooves 10, which are not very deep.
  • the sliding part 7 is guided displaceably in the housing 6.
  • eight edges 12 are provided at the end of the disk part 7.
  • the other end of the disk part 7 forms the stop, which comes temporarily in contact with the stopper 9.
  • the spring 15 is preferably in the rotary part. 8
  • the number of grooves, edges, and protrusions (45 ° / 90 °) is not the only possibility, there may be other divisions (e.g., 30 ° / 60 °).
  • the mounting device 16 on the housing 6 of the touch-latch fitting 5 is used for mounting on the drawer rail second
  • a second principle of a touch-latch system is shown. It is a backdrop principle with a heart curve.
  • the link pawl 20 list rotatably mounted in the housing 6 and runs in the gate 18.
  • the Verrieglungsmechanismus is given by the shape of the heart curve of the gate 18.
  • the link pawl 20 runs on one side of the curve of the link 18 when the user presses the touch-latch system or the front panel or when the drawer is closed.
  • the link pawl 20 is locked by the force of the spring 15 in the locking position 19 of the link 18. After unlocking, the link pawl 20 continues in the curve until it reaches the straight part of the gate 18 again.
  • the mounting device 16 on the housing 6 of the touch-latch fitting 5 is not shown.
  • the end of the sliding sleeve 7 can strike the stop 9.
  • Fig. 8 to 10 is shown a third principle of a touch-latch system. It is a backdrop principle with a 3D curve.
  • the link pawl 20 is mounted on the housing 6 via a first arm and its other arm runs in the gate 18.
  • the Verrieglungsmechanismus is given by the shape of the 3D curve of the gate 18.
  • the mounting device 16 on the housing 6 of the touch-latch fitting 5 is not shown.
  • the end of the sliding sleeve 7 can strike the stop 9.
  • FIGS. 11 and 12 a drawer 21 is shown with a "complete" built-in touch-latch system.
  • the drawer 21 is located in the body 22nd
  • a touch-latch fitting 5 and a stop 9 in the drawer slide 1 (not shown here) integrated.
  • the installation of a touch-latch system requires a larger front gap 24 between the front panel 23 and the body 22, as with conventional drawers with handle, so that the front panel can be pressed for the opening process.
  • the front gap 24 may be about 1.5 to 6 mm, preferably 5 mm.
  • a buffer 25 is installed between the front panel 23 and the body 22 (either on the front panel 23 or on the body 22).
  • the size of the buffer 25 corresponds to the size of the front gap 24.
  • a resilient pressure piece on the opposite side of the touch-latch system (at the same position).
  • a cylinder is integrated into the guide only with spring and sliding sleeve.
  • Another possibility would be the installation of a resilient pressure piece in the automatic retraction so that it is not completely retracted or the displacement of the bolt, which engages in the driver of the automatic retraction.
  • FIGS. 13 and 14 show a locking mechanism with a clip system.
  • a resilient hook 30 is mounted, which locks when retracting the drawer in the recess 29 of the carcass rail 4. Now, when the drawer is pulled in to trigger the touch-latch system, the spring force of the touch-latch system is sufficient to push the resilient hook 30 from its lock.
  • the length of the recess 29 corresponds approximately to the length of the front gap (path that you can press).
  • Fig. 14 is the reverse solution of Fig. 13 shown.
  • the resilient hook 31 is mounted on the carcass rail 4 and can for example be mounted in the recess 29 and locks in the recess 32 of the housing 6 of the touch-latch fitting 5 when retracting the drawer. Now, when the drawer is pulled in to trigger the touch-latch system, the spring force of the touch-latch system is sufficient to push the resilient hook 31 from its lock.
  • a coupling device 33 At the end of the sliding part 7 is a coupling device 33, preferably a hook, and preferably a pad 34 is provided, which is not absolutely necessary if the sliding part 7 has a different geometry.
  • the block 34 acts as a stop for the sliding part 7 against the stop 9 and the hooks of the coupling device 33 engage behind the stop 9, as with the damper of DE-10256133 ).
  • the rails Drawer rail 2 and cabinet rail 4
  • Fig. 16 When retracting the touch-latch fitting 5 and the sliding part 7 with the knob 35 in the recess 36 of the housing 6 is additionally locked (push-pull and release are otherwise always locked). When the touch-latch system is triggered, the spring force of the touch-latch fitting 5 is sufficient to press the knob 35 out of the recess 36.
  • the Fig. 17 shows a variant for the additional locking.
  • the sliding part 7 is always connected to the rotary part 8 via a plug connection (locking pin 37).
  • the triggering works as in Fig. 16 ,
  • the Fig. 18 shows another variant of the integrated touch-latch system.
  • the touch-latch system is integrated or mounted in the drawer frame 26 and abuts the stopper 27 on the body 22.
  • One way is that there is only one touch-latch system on one side of the drawer 21, and preferably on the other side a buffer 25 between the body 22 and front panel 23 or a resilient pressure piece in the shop side without touch-latch system.
  • FIG. 18 Another way Fig. 18 is that two touch-latch systems are present in the drawer, one per drawer 26, both of which are interconnected with transmission means 28 so that there is a synchronization and no false triggering. In Fig. 18 only part of the drawer is shown with this variant.
  • FIGS. 19 and 20 show another embodiment of the present invention with a touch-latch fitting 5, which is integrated in the body side wall 22 and rests with its front free end on the inside of the front panel 23, while the drawer 21 is closed.
  • a separate stop 9 or 27 as in the previous embodiments can therefore be omitted.
  • one touch latch fitting 5 may be present on one side of the drawer 21, or two, one in the left and one in the right side wall 22 of the body, which in turn may be mechanically coupled to each other via transmission means for synchronization purposes but independently, can work.
  • a lock on this touch-latch fitting 5 may be provided so that a automatic feed can then be omitted.
  • FIG. 21 a length adjustability of the touch-latch fitting 5 is shown.
  • the length adjustment is necessary in order to adjust the front position so that all fronts in the body 22 are in the same plane when the drawers 21 are closed.
  • an adjustable stop 38 is mounted at the front free end of the sliding part 7, which is adjustable via an eccentric 39, for example in the form of a slotted screw in the length 40 in the longitudinal extension of the touch-latch fitting 5.
  • the typical adjustment path 40 is approximately ⁇ 2 mm.
  • a touch-latch fitting 41 is shown according to a second embodiment, which in turn includes the housing 6, in which the sliding part 7 is received longitudinally displaceable, at the front free end of which a stop 42 is located.
  • a worm screw 43 within the stop 42, this is moved relative to the sliding part 7 in the longitudinal adjustment directions 40.
  • the sliding part 7 engages longitudinally displaceable in the U-shaped profiled stop 42, which has at the free ends of the U-legs inwardly directed hook-shaped projections 44, so that the sliding part 7 to the stop 42 is exclusively axially displaceable, but not transversely or in other directions.
  • a further recess 45 is introduced, for receiving the worm screw 43, the tool lug 46 is freely rotatably mounted in a bore 47 approximately centrally in the recess 45 of the stopper 42.
  • knobs 48 are arranged axially one behind the other, in the interstices 49, the spiral screw winding 50 of the worm screw 43 engages.
  • fastener 16 for the direct or indirect attachment of the touch-latch fitting 41 on the piece of furniture, for example on the drawer rail 2, and optionally locking means for locking the touch-latch fitting 41 on the piece of furniture, eg on the drawer rail 2.
  • Advantage of the length adjustment of the touch -Latch-fittings 41 with the worm screw 43 with spiral worm winding 50 after the Figures 22-25 relative to the length adjustment of the touch-latch fitting 5 with eccentric screw 39 (not shown with the cam) after FIG. 21 is the longer adjustment of the worm screw 43, since in the example about a rotation of 540 ° the worm screw 43 lead to an extension or shortening, in the eccentric screw 39, however, only a rotation of 180 °, for example.

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Drawers Of Furniture (AREA)

Claims (13)

  1. Système de verrouillage automatique par pression (touch-latch) (5, 41, 51, 53 ; 9, 27) pour meubles avec des parties de meuble mobiles les unes par rapport aux autres, en particulier des tiroirs de meuble (21) avec au moins un guide de tiroir (1) avec un panneau avant (23), des portes de meuble, ou des volets de meuble qui sont mobiles par rapport à un corps de meuble (22), étant précisé que le système de verrouillage automatique par pression (5, 41, 51, 53 ; 9, 27) contient au moins une ferrure de verrouillage automatique par pression (5, 41, 51, 53) et une butée (9, 27) qui coopère avec celle-ci, étant précisé que la ferrure de verrouillage (5, 41, 51, 53) est conçue pour être réglable en longueur dans les sens de réglage en longueur (40) grâce à un réglage entre des pièces individuelles définies de ladite ferrure de verrouillage (5, 41, 51, 53),
    caractérisé en ce que ce réglage se fait par l'intermédiaire d'un réglage à excentrique (39, 43), de sorte que grâce à ce réglage à excentrique (39, 43), les positions (24) des panneaux avant (23) des parties de meuble mobiles (21) dans le corps de meuble (22) sont réglables pour que tous les panneaux avant (22) se trouvent dans le corps de meuble (22) dans le même plan quand lesdites parties de meuble mobiles (21) sont en position fermée.
  2. Système de verrouillage automatique par pression selon la revendication 1, caractérisé en ce que le réglage à excentrique (39, 43) comporte une vis excentrique (39) avec au moins une came, ou une vis sans fin (43) avec une spire en spirale (50).
  3. Système de verrouillage automatique par pression selon la revendication 2, caractérisé en ce que la came de la vis excentrique (39) présente un angle de réglage d'environ 90°-180°, ou en ce que la spire (50) de la vis sans fin (43) présente un angle de réglage d'environ 360° à 540°.
  4. Système de verrouillage automatique par pression selon la revendication 2 ou 3, caractérisé en ce que la vis excentrique (39) ou la vis sans fin (43) agit entre une butée (38, 42) réglable en longueur qui est disposée à l'extrémité libre d'un élément coulissant et/ou rotatif (7) de ladite ferrure de verrouillage (5, 41), et l'élément coulissant (7).
  5. Système de verrouillage automatique par pression selon l'une des revendications précédentes, caractérisé en ce que tout le système de verrouillage automatique par pression ou au moins la ou les ferrures de verrouillage (5, 41, 51, 53) sont intégrés entièrement ou presque entièrement dans des composants mobiles (1-4, 21, 26) ou non mobiles (22) du meuble qui sont déjà prévus, de préférence à l'intérieur du système de coulisse (1) sur la glissière de tiroir (2) et/ou sur la glissière de corps (4).
  6. Système de verrouillage automatique par pression selon l'une des revendications précédentes, caractérisé en ce que la ou les ferrures de verrouillage (5) sont installées sur l'une des extrémités libres de la glissière de tiroir (2) en particulier dans la zone avant.
  7. Système de verrouillage automatique par pression selon la revendication 5 ou 6, caractérisé en ce que la ou les ferrures de verrouillage (5) contiennent au moins un boîtier (6) de préférence cylindrique et sont reliées par l'intermédiaire de celui-ci ou de l'élément coulissant et/ou rotatif (7), directement ou indirectement, à l'une des glissières (2 ou 3 ou 4) et sont en contact ou aptes à être accouplées par l'intermédiaire de l'autre élément (7 ou 6), directement ou indirectement, à une autre glissière (2-4) temporairement pendant l'ouverture et la fermeture.
  8. Système de verrouillage automatique par pression selon la revendication 7, caractérisé en ce que le boîtier (6) de la ferrure de verrouillage (5) est relié directement ou indirectement à la glissière de tiroir (2), de préférence dans la zone avant de ladite glissière de tiroir (2), et l'élément coulissant et/ou rotatif (7) bute directement ou indirectement contre la glissière de corps (4), de préférence sur une butée (9, 27) installée sur la glissière de corps (4), ou bien il est prévu l'inversion mécanique analogue.
  9. Système de verrouillage automatique par pression selon l'une des revendications précédentes, caractérisé en ce que la ferrure de verrouillage (5) est apte à être remplacée par un amortisseur et/ou un mécanisme de fermeture automatique qui est intégré dans le guide de tiroir (1).
  10. Système de verrouillage automatique par pression selon l'une des revendications 5 à 9, caractérisé en ce que deux éléments coulissants et/ou rotatifs (7) des ferrures de verrouillage (5) sont reliés ou accouplés en étant synchronisés entre eux par l'intermédiaire de moyens de transmission (28), par exemple des câbles, des galets de renvoi, des tiges de liaison, de préférence sous le fond du tiroir ou derrière la paroi arrière du tiroir.
  11. Système de verrouillage automatique par pression selon l'une des revendications 5 à 10, caractérisé en ce que la ou les ferrures de verrouillage (5) sont aptes à être verrouillées en position fermée, étant précisé de préférence que le verrouillage de la ferrure (5) se fait par l'intermédiaire d'un crochet à ressort (30, 31) entre le boîtier (6) et une glissière (2-4) ou par l'intermédiaire d'un dispositif d'accouplement (33) à l'extrémité de l'élément coulissant et/ou rotatif (7) avec un verrouillage supplémentaire à l'intérieur du système de verrouillage automatique par pression.
  12. Système de verrouillage automatique par pression selon l'une des revendications précédentes, caractérisé en ce que la force de ressort de la ferrure de verrouillage (5, 41, 51, 53) est réglable par degrés ou de manière continue, de préférence avec une vis de réglage.
  13. Guide de tiroir (1), caractérisé en ce qu'il est prévu un système de verrouillage automatique par pression selon l'une des revendications précédentes.
EP06002841.2A 2005-02-14 2006-02-13 Système touch-latch pour des meubles avec des pièces de meuble qui bougent relativement les unes par rapport aux autres, en particulier des tiroirs de meubles, des portes de meubles ou des clapets de meubles Active EP1690473B1 (fr)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
DE200520002433 DE202005002433U1 (de) 2005-02-14 2005-02-14 Touch-Latch System für Möbel mit zueinander relativ bewegbaren Möbelteilen, insbesondere Möbelschubladen, Möbeltüren oder Möbelklappe
DE200520006724 DE202005006724U1 (de) 2005-02-14 2005-04-27 Schubladenführung

Publications (3)

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EP1690473A2 EP1690473A2 (fr) 2006-08-16
EP1690473A3 EP1690473A3 (fr) 2009-01-07
EP1690473B1 true EP1690473B1 (fr) 2016-05-18

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EP06002841.2A Active EP1690473B1 (fr) 2005-02-14 2006-02-13 Système touch-latch pour des meubles avec des pièces de meuble qui bougent relativement les unes par rapport aux autres, en particulier des tiroirs de meubles, des portes de meubles ou des clapets de meubles
EP06002807.3A Active EP1690472B1 (fr) 2005-02-14 2006-02-13 Guide de tiroir

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EP06002807.3A Active EP1690472B1 (fr) 2005-02-14 2006-02-13 Guide de tiroir

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DE (2) DE202005006724U1 (fr)
ES (1) ES2587330T3 (fr)

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Also Published As

Publication number Publication date
DE102006006760B4 (de) 2016-02-04
ES2587330T3 (es) 2016-10-24
EP1690472A3 (fr) 2009-02-11
EP1690473A2 (fr) 2006-08-16
DE202005006724U1 (de) 2005-07-28
EP1690472A2 (fr) 2006-08-16
DE102006006760A1 (de) 2006-08-17
EP1690473A3 (fr) 2009-01-07
EP1690472B1 (fr) 2016-06-29

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