WO2014177655A1 - Ferrure fonctionnelle pour porte coulissante - Google Patents

Ferrure fonctionnelle pour porte coulissante Download PDF

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Publication number
WO2014177655A1
WO2014177655A1 PCT/EP2014/058910 EP2014058910W WO2014177655A1 WO 2014177655 A1 WO2014177655 A1 WO 2014177655A1 EP 2014058910 W EP2014058910 W EP 2014058910W WO 2014177655 A1 WO2014177655 A1 WO 2014177655A1
Authority
WO
WIPO (PCT)
Prior art keywords
fitting
carriage
guide
sliding door
movement
Prior art date
Application number
PCT/EP2014/058910
Other languages
German (de)
English (en)
Inventor
Marion Böwe
Sascha Elsner
Andre Kaiser
Dirk Jostes
André Treiber
Steffen Feld
Oliver Walhorn
Klaus Weber
Original Assignee
Hettich-Heinze Gmbh & 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-Heinze Gmbh & Co. Kg filed Critical Hettich-Heinze Gmbh & Co. Kg
Priority to JP2016511074A priority Critical patent/JP2016520742A/ja
Priority to EP14722631.0A priority patent/EP2992157A1/fr
Priority to KR1020157024951A priority patent/KR20160003633A/ko
Priority to CN201480024602.9A priority patent/CN105392951B/zh
Publication of WO2014177655A1 publication Critical patent/WO2014177655A1/fr

Links

Classifications

    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05DHINGES OR SUSPENSION DEVICES FOR DOORS, WINDOWS OR WINGS
    • E05D15/00Suspension arrangements for wings
    • E05D15/06Suspension arrangements for wings for wings sliding horizontally more or less in their own plane
    • E05D15/10Suspension arrangements for wings for wings sliding horizontally more or less in their own plane movable out of one plane into a second parallel plane
    • E05D15/1065Suspension arrangements for wings for wings sliding horizontally more or less in their own plane movable out of one plane into a second parallel plane with transversely moving track
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05DHINGES OR SUSPENSION DEVICES FOR DOORS, WINDOWS OR WINGS
    • E05D15/00Suspension arrangements for wings
    • E05D15/06Suspension arrangements for wings for wings sliding horizontally more or less in their own plane
    • E05D15/10Suspension arrangements for wings for wings sliding horizontally more or less in their own plane movable out of one plane into a second parallel plane
    • E05D15/1065Suspension arrangements for wings for wings sliding horizontally more or less in their own plane movable out of one plane into a second parallel plane with transversely moving track
    • E05D2015/1071Suspension arrangements for wings for wings sliding horizontally more or less in their own plane movable out of one plane into a second parallel plane with transversely moving track the track being directly linked to the fixed frame, e.g. slidingly
    • E05D2015/1078Suspension arrangements for wings for wings sliding horizontally more or less in their own plane movable out of one plane into a second parallel plane with transversely moving track the track being directly linked to the fixed frame, e.g. slidingly swinging or rotating in a horizontal plane
    • 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
    • E05Y2201/606Accessories therefor
    • E05Y2201/62Synchronisation of suspension or transmission members
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05YINDEXING SCHEME ASSOCIATED WITH SUBCLASSES E05D AND E05F, RELATING TO CONSTRUCTION ELEMENTS, ELECTRIC CONTROL, POWER SUPPLY, POWER SIGNAL OR TRANSMISSION, USER INTERFACES, MOUNTING OR COUPLING, DETAILS, ACCESSORIES, AUXILIARY OPERATIONS NOT OTHERWISE PROVIDED FOR, APPLICATION THEREOF
    • E05Y2900/00Application of doors, windows, wings or fittings thereof
    • E05Y2900/20Application of doors, windows, wings or fittings thereof for furniture, e.g. cabinets

Definitions

  • the invention relates to a functional fitting for a sliding door for a furniture according to the preamble of claim 1 and a piece of furniture with such a fitting.
  • the furniture may also have one or more further closure elements.
  • Under shutter elements are all elements that can be used to cover an opening to understand, for example, sliding doors, revolving doors, drawer fronts, flaps, shutters, etc.
  • one of the two sliding guides is often designed such that it supports the larger - essential - part of the door weight (hereinafter called load-bearing fitting) in the guide and the other of the sliding guides substantially less load-bearing than, in the main, only a guiding function takes over.
  • load-bearing fitting the larger - essential - part of the door weight
  • the synchronization of these two sliding guides is usually no problem if the two sliding doors are guided in straight linear guides. In sliding door fittings in the manner of the above-mentioned prior art, but this is more difficult to implement.
  • the load-bearing fitting Since the load-bearing fitting is usually constructed relatively expensive, in addition to supporting the necessary movement of the sliding door and their weight essentially, it does not make sense to use on the other sliding guide fittings on the type of load-bearing fittings as guide fittings, especially since also does not necessarily lead to a particularly advantageous sliding behavior of the sliding door. It is therefore also known to use simpler than the load-bearing fittings constructed mechanics as guide fittings. In this case, the synchronization of the movement of the load-removing fitting to the movement of the guide fitting, in particular in the first range of motion, a constructive previously unsatisfactory solved problem.
  • the invention solves this problem with respect to the functional fitting by the subject matter of claim 1 and with respect to the furniture by the subject of claim 20. It also provides the use of claim 22.
  • guide rail is to be understood broadly. It includes according to this application protruding rails but also grooves or other tracks.
  • the at least one guide element of the guide fitting can be designed as a slider, roller or the like.
  • a functional fitting for synchronizing and guiding the movement of a sliding door with a first and a deviating second range of motion is provided with at least one on one side of a sliding door of a furniture attacking load-bearing fitting and with at least one attacking on the other side of the sliding door fitting fitting, characterized by a synchronization of the movement of the guide fitting with the movement of the load-removing fitting in a first range of motion and no synchronization of the movement of the guide fitting with the movement of the load-removing fitting in a second movement range, wherein the sliding door is guided by the guide fitting in the first and in the second movement range.
  • This solution is structurally simple and ensures a smooth running of the sliding door on the guide fitting without a disturbing caused by the synchronization noise, since the synchronization is active only in the first range of motion and thus in the second range of motion quiet guidance without disturbing influences of the synchronization fitting is guaranteed.
  • different movement profiles of the door can be carried out in particular perpendicular to the body height axis. Movement profile is the ratio between the path of the door in the direction of body depth to body width, as well as the possibly existing rotation of the door to understand the body height axis. You can synchronize flat as well as steep motion profiles.
  • the functional fitting has, according to a particularly advantageous variant, at least one - relative to the furniture body - movable guide rail portion which is not arranged on the sliding door.
  • the at least one movable guide rail section is in turn preferably movable perpendicular to the sliding direction in the cabinet depth plane.
  • only a single additional door connection is provided in combination with the load-bearing fitting.
  • the sliding door position in the direction of the body depth is continuously recorded at the load-bearing fitting or in its vicinity. This information is transferred to the functional fitting, at least in a first range of motion.
  • the movable guide rail section is movable from a first position, in which it is not aligned with a stationary guide rail section fixed to the furniture carcass, to a second position in which it is aligned with the guide rail section secured to the furniture carcass, at least in the area of the transfer interface.
  • This functional fitting offers the advantage of a fixed synchronization, preferably in the area of the outer side walls, without additional elements having to be connected to the door.
  • the synchronization is preferably active for the critical range of open or close pivoting. This area represents a possible first movement area. For the exclusively parallel movement of the door in the direction of the body width, second movement area, a cost-effective and stable guide rail can then be used.
  • a movable guide rail portion which is movable from a first position to a second position and is designed according to the type of claim 7.
  • a fitting is developed with regard to the running behavior and the noise development, as is known from DE 20201094 U1.
  • the displaceable guide rail on the linear guide according to a further preferred embodiment can extend over half the body width and preferably allow the complete or essential travel for the door opening.
  • This alternative solution makes a transfer between the sliding and the fixed guideway on the body superfluous. From the prior art synchronization devices are already known, which always move when opening and closing and / or are activated in any other way.
  • a coupling device is provided between the actual synchronization device and the load-bearing fitting on the other - opposite - side of the furniture body.
  • This can be realized simply and advantageously by a coupling rod (rotating rod) and one or more levers.
  • the coupling between load-bearing fitting and guide fitting but also be realized in other ways, with other rods, actuation rods, push rods, pneumatic or hydraulic adjusting cylinders, as well as combinations of known technical principles.
  • Electromechanical transmissions are also conceivable. The arrangement of these types of transmission in the furniture body are individually visible or invisible possible, for example in the interior of the furniture, behind the rear wall or embedded in the side wall.
  • the synchronization device can also be used for different installation widths.
  • the body height variability is preferably taken into account in the coupling device. It can e.g. be realized by cutting a rotary rod as a coupling rod, which is mounted in fixed pivot bearings on the furniture. Alternatively, a telescopic coupling rod can be used.
  • the width independence of the functional fitting can be realized in a simple manner in that the guide rail is formed from a profile that is cut to the actual width of the door.
  • each per Sliding door has a load-bearing fitting, a guide fitting and one of the synchronization devices.
  • a fitting is characterized by a low space requirement, a simple structural design and low noise.
  • the sliding door fitting according to the invention makes it possible to move the sliding doors forward and forwards, allowing full access to the storage space in the furniture and height is also possible and it is also a use of extracts well feasible.
  • a locking device may be provided which locks the movable rail section against a process without boom.
  • the locking mechanism may be formed such that it is when closing the Sc Hinged door from the boom, a component of the boom, or a guide element is unlocked.
  • the locking mechanism has a locking piece, which can be guided without contact during opening or closing of the sliding door into a position which locks or unlocks the carriage in the position in which the two guide rail sections are aligned with one another.
  • the synchronization unit can be provided with a height adjustment. This ensures that the two rail sections at the transfer interface even with dimensional deviations do not form a bumping edge and thus ensure a faultless rolling over of the transfer interface.
  • the door can initially be swung open when opening to move to plane E2. However, it is also conceivable to move the door when opening initially perpendicular to the opening direction (sliding direction) in the plane E2. Again, a synchronization is advantageous.
  • Fig. 1 is a perspective view of a sliding door cabinet without
  • Fig. 2 in a) and b) are schematic representations of fitting arrangements on a sliding door cabinet in the manner of Fig. 1 and in c) is a representation for illustrating force effects and acting moments on a fitting arrangement of the type of Fig. 2a).
  • FIG. 5 is a perspective view of a coupling device and a
  • Fig. 1 shows a piece of furniture with a (furniture) body 1, in a preferred embodiment to a front side open and on the other sides (top wall 2, bottom wall 3 (Fig. 5), right side wall 4, left side wall 5, rear wall 6) is formed closed. Outside in front of the open front side of the furniture body 1 are two sliding doors 7, 8 relative to the body 1 and relative to each other with a load-removing fitting 9 and each with a guide fitting 20 movably arranged (Fig. 2, 3, 4).
  • the sliding doors 7, 8 serve two carriage assemblies 10, 1 1 of the load-removing fittings 9.
  • the sliding doors 7 (right), 8 (left) are doing so with the help of the respective carriage assemblies 10 (right), 1 1 (left) slidably guided on the body 1 that they can be pushed past each other over a part of their sliding path or their opening and closing path parallel to each other. It is one of the number of sliding doors 7, 8 corresponding number of carriage assemblies 10, 1 1 used.
  • the fitting is suitable for at least two sliding doors 7, 8, which lie in the closed position on the furniture body in a single common plane E1 (see Fig.1, 3d).
  • this sliding door 8 To move from such a position one of the sliding doors - e.g. the sliding door 8 - to be able to open, this sliding door 8 must first be moved in a plane E1 spaced to the plane E2, in which it can then be moved past the other sliding door 7 over (and vice versa). This allows the respective load-removing fitting 9 (see Fig. 3a) to 3d)).
  • the distance between E2 and E1 is also referred to below as the installation width B.
  • Each of the carriage assemblies 10, 1 1 has on its side facing the furniture (in Fig. 1 the top wall 2) facing side a first outer carriage 12a and a second outer carriage 12b spaced on the top wall 2 of the furniture (or alternatively below the Bottom wall 3 of the body 1, see Fig. 3 a) to 3e) in each case by means of rollers or wheels on a rail device 13 (Fig. 1, Fig. 4, Fig. 5) parallel to the open front side or parallel to the main direction of movement of the sliding door 8 is displaceable.
  • the rail device 13 may be formed as a continuous casting profile (eg made of aluminum), which makes their production cost. But it can also be made in other ways.
  • the carriage assemblies are guided displaceably on the rail device in the direction of displacement X parallel to the planes E1 and E2, here with rollers.
  • first and second inner (and upper) guide carriages 18a, b are arranged on the first and second outer (and lower) guide carriages 12a, b, which can be moved relative to the first carriages 12a, b, in particular perpendicular to the planes E1, E2.
  • guiding devices serve between the first and second outer and inner guide carriages 12a, 18a or 12b, 18b (FIG. 3), which may be designed as roller guides.
  • the first and second inner guide carriages 18a, 18b also each have at least one extension (web) 14, 15, to which the respective sliding door 8 can be fastened or fastened to fastening means, which can have suitable fitting parts 16 for this purpose (FIG. 3).
  • a (single) control roller (not visible here) is arranged, which is formed parallel to the top wall or bottom wall or whose axis of rotation is aligned perpendicular to the top wall or bottom wall.
  • This control roller is guided in a corresponding control contour S k of the rail device (not shown here.)
  • the associated first inner guide carriage 18 a is thereby next moved from the first plane E1 to the second plane E2 and then parallel to the plane E2.
  • a synchronous (harmonic simultaneous) movement of the second inner guide carriage 18b (on the second outer guide carriage 1b) with the first inner guide carriage 18a is achieved by a particularly advantageous multi-joint lever kinematics arrangement 19 (FIG. 3a) - d) ).
  • the multi-joint lever kinematics 19 is chosen and designed such that the sliding door 8 always moves away from the furniture body 1 during the opening process and synchronously follows the first guide carriage 12a, 18a (FIG. 3). During the closing process, this movement is reversed accordingly.
  • the manual force causes the sliding door to swing open, so that it is guided from its flush starting position into a parallel position at a defined distance from the body.
  • the sliding door 7, 8 is already moved laterally parallel to the carcass.
  • a function of the respective fitting 9 is given even with a 180 ° rotation of the overall fitting. Due to the multi-joint lever kinematics used, the overall result is a harmonious sequence of movements. All components and subassemblies in the runner profile can be produced without mechanical post-processing and can be mounted in such a way that body dimensions of various kinds can be realized.
  • the load-bearing fitting can be realized as an example. But it can also be designed in other constructive ways.
  • the load-bearing fitting 9 can be arranged on the upper side or the lower side of the furniture body or struck on the sliding doors 7, 8 (see FIG. 2).
  • a guide fitting 20 on the furniture body 1 form which does not support the essential weight of the door, but holds the sliding door 7 and 8, stabilizes and leads (Fig. 2 - c; Fig. 8).
  • Fig. 2 - c a guide fitting 20 on the furniture body 1 form, which does not support the essential weight of the door, but holds the sliding door 7 and 8, stabilizes and leads (Fig. 2 - c; Fig. 8).
  • Fig. 2 - a coupled movement of a rotation (about the axis of the body height) and two translational motion components in the directions of the body depth and body width, see Figs. 1 and 2).
  • a guide fitting 20 are, for example, a rail 21 a, b on the furniture body to which a boom 22 on which the sliding door 7 or 8 is fixed directly or indirectly, is guided, for example by means of one or more, here two, rollers 23rd
  • the axes of the rollers 23 are aligned vertically and perpendicular to the sliding direction X and the rollers 23 run on both sides of the rail 21 a, b (FIG.
  • a synchronization of the movement of each load-removing fitting 9 with the movement of the guide fitting 20 in the first range of motion is made possible in this embodiment by a synchronization device in combination with a coupling device.
  • the synchronization and coupling device initially has a guide device S1 on the side of the load-removing fitting 9 (FIGS. 4, 5).
  • This guide device S1 has a guide 24 which is arranged stationarily on the cabinet and has a slide 25 displaceably guided on it.
  • a slot or a gap arrangement 26 is formed, which is designed so that in it during insertion and removal of the carriage 1 0, 1 1 arranged on the carriage element such as a projection or pin 27 engages (Fig. 4).
  • This pin 27 engages in the gap arrangement 26 at least during the part of the displacement path of the sliding door, in which the sliding door moves out of the plane E1 into the plane E2 and vice versa.
  • the pin 27 moves the carriage 25 when opening and closing by the installation width B on the guide 24.
  • the pin preferably engages in the arcuate portion of the control contour Sk in this.
  • the gap assembly 27 is formed purely by way of example of twice two guide elements 28a, b and 29 a, b.
  • the lever 25 is pivotally coupled to a lever 30 of a lever joint arrangement, as shown by way of example in FIG.
  • This lever joint arrangement converts the linear movement of the carriage 25 into a rotation of a coupling and rotating rod 31 which passes vertically through the furniture body (the latter not shown here).
  • the lever joint arrangement has the lever 30 articulated on the carriage 25 and at least one or more further levers 32.
  • the end of one of the levers 32 can be secured against rotation on a torque transmission contour of the coupling rod 31 and be articulated in a bearing body 33 fixed to the furniture body.
  • the coupling rod 31 connects vertically each of the load-bearing fitting 9 with the respective guide fitting 20th
  • the lever joint arrangement arranged on the side of the guide fitting 20 analogously converts the movement of the coupling rod 31 into a linear movement. It is shown in Fig. 5 and has at least two hingedly interconnected levers 34, 35.
  • the lever 34 is coupled to the coupling rod 31 and rotatably mounted in a bearing body 36 which is fixed on the body side.
  • the lever 35 is pivotally coupled to the lever 34, the end of which in turn is hinged to a carriage 37 which is guided perpendicular to the planes E1 and E2 - preferably displaceable by the amount of paving width B.
  • the carriage 37 is to a stationary on the side of the load-bearing fitting opposite side wall (ie, the bottom wall 3 or the top wall 2) arranged rail 38 out.
  • Slide 37 and rail 38 may be formed as a type (rolling element) pullout guide, wherein preferably rolling elements (not shown here) between the carriage 37 and the rail 38 are formed (Fig. 5, 1 1).
  • the carriage 37 further includes a movable rail 39 which is coupled to a plate 40.
  • the displaceable carriage 37 with the movable guide rail section 21 b is an embodiment of elements of a synchronization device which form a synchronization and coupling device with the described coupling device.
  • the guide rail 21 has a fixed to the furniture body rail or rail section 21 a and a movable rail or rail section 21 b.
  • this movable guide rail portion 21 b on the carriage 37, preferably the plate 40 is formed.
  • the rollers 23 surround the movable guide rail portion 21 b.
  • the length of the movable guide rail portion 21 b should correspond to the length of the opening path in the sliding direction X, in which the inner guide carriage 18 a, b of the load-removing fitting 9 between the planes E1 and E2 move (first range of movement).
  • the sliding door 7,8 is moved when opening on the side of the guide fitting 20 by the installation width B from the plane E1 in the plane E2.
  • the movable guide rail portion 21b is aligned either with the fixed to the furniture body guide rail portion 21 a (Fig.
  • the plate 40 connects in this case the pullout guides 41 a, b with each other.
  • a damper for example an air damper or another fluid damper
  • a linear damper 43 to one of the pull-out guides 41 a, b in such a way that a portion of the path of the slide 37 is traversed by the damper, for example, at the end of the movement between the planes E1 and E2 (or vice versa) to reduce the effect of noise (see in particular Fig. 5).
  • the carriages 25, 37 are arranged on one or more telescopically extendable or multi-telescoping pull-out guides 41 a, b, the functional fitting can be adapted particularly easily to different cabinet depths.
  • the pivoting or driving perpendicular to the sliding direction and the parallel method are coupled to one another in a particularly simple manner. This avoids the problem of the jerky transition from panning to a linear process. A vibration excitation of the sliding door is also avoided.
  • the same advantages arise conversely when closing the sliding door.
  • the information is transferred from the load-bearing Bechlag 9 on the guide fitting. But it is also possible with the illustrated construction - depending on whether the user operates the door close to the load-bearing fitting 9 or close to the guide fitting 20 - that the movement information with the synchronization device or the functional fitting is tapped substantially on the guide fitting and thus the movement of the load-removing fitting is synchronized by the guide fitting.
  • Claim 1 preferably includes both types of synchronization and is not to be understood as limiting.
  • the boom 22 may be configured so that with a boom 22, one or more parts, several installation widths can be realized. A middle wall is not needed for the hardware construction.
  • a locking mechanism 44 is provided, with which the carriage 37 in the position in which the two guide rail portions 21 a, b are aligned with each other, locked to this position during the extraction and closing of the sliding door (here 7) to fix.
  • a locking mechanism 44 can be realized relatively easily.
  • Fig. 12a, b provided to provide a spring-loaded locking piece 45, which in the position of the carriage 40, in which the guide rail portions 21 a, b aligned with each other, preferably from the cabinet side of the cabinet ago, in a recess 46 of the carriage, in particular the plate 40, engages. If this locking piece 45 has on its side facing the fixed guide rail portion 21 a side slope, to which when closing the sliding door 7 when passing into the region of the movable guide rail portion 21 b one of the rollers 23 runs up, the locking piece 45 when closing of the Rol le 23 is pressed in the direction of the body (FIG.
  • This mechanism can simultaneously serve for the depth adjustment of the transfer interface of the movable guide rail section on the linear guide to the fixed guide rail section on the carcass.
  • a locking mechanism 52 as shown in Figures 15a, 15b, 16a and 16b, a permanent magnet locking piece 53rd which is held positively and slidably in a carriage 37, in particular on the plate 40 and fixed non-magnetic receiving pocket 54 and which in the position of the carriage 37, wherein the guide rail portions 21 a, 21 b are aligned, preferably from the body side the furniture ago, in a recess 56 or mating contour of a carriage housing 55 engages on which the carriage 37, in particular on the plate 40 is displaceably guided.
  • the boom 22, a component or portion of the cantilever 22 or a guide element 23 of the cantilever 22 is at least partially made of a magnetic, in particular permanent magnetic material.
  • the permanent-magnetic locking piece 53 no longer engages in the recess 56 or counter-contour in the carriage housing 55 in this position, so that the locking of the carriage is canceled and thus the guide rail section 21 a can move perpendicular to the sliding direction X, while the guide elements 23 walk along it.
  • Such a height adjustment can be realized for example with one or more screws 48.
  • the height adjustment / adjustment 48, 49, 50 at the transfer interface of the movable guideway / rail 21 b to the fixed guideway / rail 21 a on the carcass is realized.
  • An adjustable by the screw 48 element 49 engages during the crossing of the transfer interface in a stationary centering element 50 on a base plate 51st the synchronization unit and can hereby influence the angular position or height of the movable guide track 21 b.
  • This functional fitting can also be used for furniture in which several carcasses are arranged side by side, which are closed only by a door.
  • the door can also be moved over several carcasses.
  • at least one body of the furniture preferably one of the outer on an outer side, at least one functional fitting according to the invention.

Landscapes

  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Support Devices For Sliding Doors (AREA)
  • Civil Engineering (AREA)
  • Structural Engineering (AREA)
  • Cabinets, Racks, Or The Like Of Rigid Construction (AREA)

Abstract

L'invention concerne une ferrure fonctionnelle pour synchroniser et guider le mouvement d'une porte coulissante (7, 8), présentant une première zone de déplacement et une deuxième zone de déplacement différente de la première, comprenant au moins une ferrure (9) portant la charge et se trouvant en prise avec un côté d'une porte coulissante (7, 8) d'un meuble et au moins une ferrure de guidage (20) se trouvant en prise avec l'autre côté de la porte coulissante (7, 8). L'invention est caractérisée par une synchronisation du mouvement de la ferrure de guidage avec le mouvement de la ferrure (9) portant la charge dans une première zone de déplacement et l'absence de synchronisation du mouvement de la ferrure de guidage avec le mouvement de la ferrure (20) portant la charge dans une deuxième zone de déplacement, la porte coulissante (7, 8) étant guidée par la ferrure de guidage (20) dans la première et dans la deuxième zone de déplacement. L'invention concerne en outre un meuble comprenant au moins une porte coulissante (7, 8) agencée dans un plan vis-à-vis d'un autre élément de fermeture, ainsi qu'une utilisation d'une section de rail de guidage (21b), agencée de manière mobile sur un corps (1) d'un meuble, en tant que partie d'une ferrure fonctionnelle d'un meuble.
PCT/EP2014/058910 2013-04-30 2014-04-30 Ferrure fonctionnelle pour porte coulissante WO2014177655A1 (fr)

Priority Applications (4)

Application Number Priority Date Filing Date Title
JP2016511074A JP2016520742A (ja) 2013-04-30 2014-04-30 スライドドアのための機能的フィティング
EP14722631.0A EP2992157A1 (fr) 2013-04-30 2014-04-30 Ferrure fonctionnelle pour porte coulissante
KR1020157024951A KR20160003633A (ko) 2013-04-30 2014-04-30 슬라이딩 도어를 위한 기능적 피팅
CN201480024602.9A CN105392951B (zh) 2013-04-30 2014-04-30 功能配件、家具和导向轨道部的用途

Applications Claiming Priority (4)

Application Number Priority Date Filing Date Title
DE102013104438.7 2013-04-30
DE102013104438 2013-04-30
DE102013110013.9A DE102013110013A1 (de) 2013-04-30 2013-09-12 Funktionsbeschlag für eine Schiebetür
DE102013110013.9 2013-09-12

Publications (1)

Publication Number Publication Date
WO2014177655A1 true WO2014177655A1 (fr) 2014-11-06

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Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/EP2014/058910 WO2014177655A1 (fr) 2013-04-30 2014-04-30 Ferrure fonctionnelle pour porte coulissante

Country Status (6)

Country Link
EP (1) EP2992157A1 (fr)
JP (1) JP2016520742A (fr)
KR (1) KR20160003633A (fr)
CN (1) CN105392951B (fr)
DE (1) DE102013110013A1 (fr)
WO (1) WO2014177655A1 (fr)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110439434A (zh) * 2019-08-23 2019-11-12 广东东泰五金精密制造有限公司 一种家具用稳定开闭结构
CN110454045A (zh) * 2019-08-23 2019-11-15 广东东泰五金精密制造有限公司 一种用于家具的稳定开闭结构

Families Citing this family (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE102013108848A1 (de) 2013-08-15 2015-02-19 Hettich-Heinze Gmbh & Co. Kg Schiebetürbeschlag und Möbel
CN110714696A (zh) * 2019-10-18 2020-01-21 广东东泰五金精密制造有限公司 一种家具用可调节平移开闭结构

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CN105392951B (zh) 2017-09-08
DE102013110013A1 (de) 2014-10-30
EP2992157A1 (fr) 2016-03-09
JP2016520742A (ja) 2016-07-14
KR20160003633A (ko) 2016-01-11

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