EP2843169B1 - Porte coulissante avec système de support - Google Patents

Porte coulissante avec système de support Download PDF

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Publication number
EP2843169B1
EP2843169B1 EP14180425.2A EP14180425A EP2843169B1 EP 2843169 B1 EP2843169 B1 EP 2843169B1 EP 14180425 A EP14180425 A EP 14180425A EP 2843169 B1 EP2843169 B1 EP 2843169B1
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EP
European Patent Office
Prior art keywords
latch
locking
sliding door
door leaf
recess
Prior art date
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Active
Application number
EP14180425.2A
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German (de)
English (en)
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EP2843169A1 (fr
Inventor
Jens Willach
Wilfried Stommel
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Gebr Willach GmbH
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Gebr Willach GmbH
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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
    • E05F5/00Braking devices, e.g. checks; Stops; Buffers
    • E05F5/003Braking devices, e.g. checks; Stops; Buffers for sliding wings
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05FDEVICES FOR MOVING WINGS INTO OPEN OR CLOSED POSITION; CHECKS FOR WINGS; WING FITTINGS NOT OTHERWISE PROVIDED FOR, CONCERNED WITH THE FUNCTIONING OF THE WING
    • E05F1/00Closers or openers for wings, not otherwise provided for in this subclass
    • E05F1/08Closers or openers for wings, not otherwise provided for in this subclass spring-actuated, e.g. for horizontally sliding wings
    • E05F1/16Closers or openers for wings, not otherwise provided for in this subclass spring-actuated, e.g. for horizontally sliding wings for sliding wings
    • 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
    • E05Y2201/20Brakes; Disengaging means; Holders; Stops; Valves; Accessories therefor
    • E05Y2201/218Holders
    • E05Y2201/22Locks
    • 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
    • E05Y2201/20Brakes; Disengaging means; Holders; Stops; Valves; Accessories therefor
    • E05Y2201/23Actuation thereof
    • E05Y2201/232Actuation thereof by automatically acting means
    • 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

Definitions

  • the present invention relates to a sliding door with a support system according to the preamble of claim 1.
  • Support systems for sliding doors in particular for sliding glass doors, usually have a running rail, in which a sliding door leaf is guided over a drive. The path of the drive and thus the door leaf is limited by a limiting device.
  • a support system is for example off DE 20 2007 014 567 U1 previously known.
  • Sliding doors are often used to lock rooms. In order to prevent unauthorized access to a locked with a sliding door space, therefore, there is a need to complete a sliding door by means of a lock.
  • Known solutions usually provide a lock, which, similar to a conventional swing door, is arranged on a side edge of the door leaf. Such a solution, however, is difficult to realize, especially in sliding glass doors, or is aesthetically unfavorable because the lock is visible due to the glass door.
  • DE 10 2010 061 160 A1 discloses a sliding door with a support system according to the preamble of claim 1, wherein a locking device is provided which forms a restriction device.
  • US 2002/178668 A1 discloses another support system in which a lock device with a snap-in latch is disclosed. It is therefore an object of the present invention to provide a sliding door with a support system, wherein a closure of a sliding door, in particular a sliding glass door, is made possible in an advantageous manner.
  • the sliding door according to the invention is defined by the features of claim 1.
  • the damper device first decelerates the drive or the door when closing and then drives towards an end position, and with a limitation of the path of the drive or the door limiting device is provided that the support system has a lock device over which the door is locked in the end position via a closing operation.
  • the lock device has a bolt and a bolt contact surface, wherein during the closing operation of the bolt to form a locking against the bolt contact surface is movable.
  • the damper device drives the drive or the door leaf to reach the end position against the limiting device and holds the drive or the door leaf in abutment with the limiting device for maintaining the end position during the closing operation.
  • the drive can form part of the door leaf, so that the drive can also interact with the limiting device.
  • a support system for sliding doors in practice there is the difficulty that a door is not completely closed to the limiting device, but the door comes to a stop, for example, a few millimeters before the limiting device.
  • the invention is based on the finding that this can lead to problems when using a lock device, since a bolt of the lock device can not be moved relative to a bolt contact surface, but is blocked and thus a closing process can not take place.
  • the sliding door according to the invention ensures that a closing process can take place in that the damper device drives the drive or the door leaf against the limiting device to reach the end position and holds it in contact with the limiting device. This ensures that the end position is retained and the locking process can be performed.
  • the damper device drives the drive or the door leaf to reach the end position against the limiting device and holds in engagement therewith, it is provided that the damper device when reaching the end position of the drive or the door is not moved to the end position of the damper device has been and thus no stop takes place in the damper.
  • a spring of the damper device when reaching the end position of the drive or the door can not be completely relaxed, but on the spring, a force is still exerted on the drive or on the door. This ensures that the door is held in contact with the limiting device and during the closing process, the end position is maintained.
  • the support system according to the invention can thus be ensured in an advantageous manner that a closing process is possible, whereby incorrect operation can be avoided.
  • the lock device consists of a bolt having the lock and a locking contact surface having locking part. It is provided that the lock is arranged on the running rail and the closing part is attached to the door leaf or is formed by a part of the drive or fixed thereto.
  • the lock which comprises mechanically moving parts, is fixedly arranged in the running rail and is not carried along with the drive.
  • the lock is to be operated electrically, for example, accessibility of the lock is given in an advantageous manner, so that an electrical connection is possible in a simple manner.
  • the lock is attached to the drive and the closing part is arranged on the running rail or is formed by the running rail.
  • the locking contact surface may be formed by a recess or a projection.
  • the bolt is during the closing process in the recess inserted, so that the bolt with the bolt contact surface can act together.
  • the closing part may for example form the projection, wherein the projection engages behind the bolt in the locking.
  • the closing part may alternatively have the recess, wherein the recess may be formed for example as a bore or incision.
  • the position of the bolt is understood by the locking position of the bolt, in which a locking is caused by a corresponding positioning of the bolt contact surface.
  • the locking position can take the bolt regardless of the positioning of the bolt contact surface, i. also in the open state of the door leaf.
  • the locking position of the lock device is understood to mean a position of the lock device in which the lock is in the locking position and cooperates with the locking contact surface and thus causes a locking.
  • the closing part is elastic
  • the bolt has a sliding bevel, wherein the sliding slope of the bolt in the locking position of the bolt can cooperate with the closing part and the closing part during the movement of the drive or the door leaf is elastically deformable in the end position.
  • a sliding bevel is provided on the closing part, which cooperates with the bolt in the locking position of the bolt and causes the deformation of the closing part.
  • the elastic design of the closing part ensures that, too For example, in case of incorrect operation of the bolt, in which the bolt has been brought before reaching the end position of the drive or the door in the Absch practitioner, closing the door is still possible, wherein during the closing movement of the door of the bolt, the closing part elastically deformed and then the bolt is inserted behind the bolt contact surface. This ensures that even with an early closing of the bolt, the sliding door can be locked in a reliable manner.
  • the elastic closure member and the latch thus act in the manner of a latch.
  • the latch has a sliding bevel and a spring device which presses the latch in the Absch.
  • the sliding bevel of the bolt can cooperate in its closed position with the closing part and the bolt during the movement of the drive or the door leaf in the End position by the closing member against the spring force of the spring device is movable.
  • the slip bevel may also be disposed on the closure member which cooperates with the spring loaded latch and causes the movement of the latch.
  • the closing part is elastic, but the bolt, so that is also ensured in a premature movement of the bolt in its Abschsted ein that the door can be closed and the bolt snaps behind the locking contact surface.
  • the bolt works like a latch, whereby it is of course possible that the bolt can be moved to an open position in which no snapping takes place.
  • the damper device is designed as a spring damper system, wherein the existing spring force of the spring damper system at the time of abutment of the closure member to the arranged in its Abschmony bolt is greater than the force in the direction of the path of the door leaf or of the drive for the elastic deformation of the closing part or the movement of the bolt against the spring force of the spring device is necessary.
  • the spring force of the spring damper system for example, at least 2% greater. To this It is ensured that the drive or the door wing can be pulled into the final position by means of the force of the spring damper system when the latch is moved into the closing position, so that the latch snaps behind the latch contact surface, for example into the recess or behind the projection.
  • a malfunction of the support system according to the invention may be, for example, that an operator only abuts a door leaf to close it, and trusts that the damper device makes a complete closing of the door leaf.
  • an electrically operated lock device which is remote-controlled, for example, it may now happen that the closing process is initiated too early by the operator, the drive or the door is not yet in the end position.
  • the support system according to the invention now makes it possible to ensure that even with such an incorrect operation that a desired closing of the door leaf takes place.
  • the bolt is rotatably mounted and is movable via a rotational movement in the Abschschgovgna.
  • Such a design of the bolt has been found to be particularly advantageous, since such a bolt can be driven in a simple manner by means of a rotary motor.
  • an electrically driven lock in a simple manner and cost feasible.
  • the bolt abutment surface extends in the vertical direction and in the locking position of the lock device, an overlap surface between the bolt and bolt abutment surface is formed, wherein the bolt abutment surface in the vertical direction has an extension which is equal to or greater than the extent D of the overlap surface in the vertical direction ,
  • the overlap area should have a minimum in the vertical direction, for example at least 2 mm, in order to prevent the bolt or edges of the bolt contact surface in operation subject to excessive wear and threaten to strike out.
  • the recess which forms the bolt contact surface extends in the vertical direction, the bolt projects into the recess in the closed position and in the recess between bolt and recess in the vertical direction above and / or below Latch a free space is formed. This ensures that in the locking position of the lock device between the bolt and the recess in the vertical direction, a distance is formed, so that the relative movement between the bolt and recess in the vertical direction is possible without the bolt collides with the end of the recess.
  • the bolt abutment surface extends in the vertical direction and in the locking position of the lock device, an overlap surface between the bolt and bolt abutment surface is formed, wherein the bolt in the vertical direction has an extension which is equal to or greater than the extent of the overlap surface in the vertical direction.
  • the overlap area should have a minimum of, for example, at least 2 mm.
  • the recess which forms the bolt contact surface extends in the horizontal direction, the bolt protrudes into the recess in the vertical direction in the locking position and the bolt has a greater extent in the vertical direction than the recess.
  • the latch may, for example, have a larger dimension in the vertical direction than the dimensions of the overlapping surfaces with the recess which are effective during the latching.
  • the closing part is designed as an elongate arm arranged parallel to the running rail and projects in the direction of travel to the end position at the front end of the drive.
  • the closing part may for example be a flat arm, which runs parallel to the plane of the door leaf. In this way, the space required for the closing part is kept very low within the running rail, whereby the running rail can be made very compact. This is aesthetically advantageous.
  • the latch can be manually or electrically operated.
  • An electrically actuated latch can be remotely controlled, for example.
  • a damper device 20 is arranged with pull-in function, which is designed as a spring-damper system.
  • the damper has a cylinder 21 in which a piston 22 is displaceable.
  • the piston 22 is connected to a piston rod 24, which protrudes from the cylinder 21 and at the end of a slider 26 is attached.
  • On the slider 26 engages a spring, which is not shown in the figures and which is connected to the opposite end of the cylinder 21. The spring is thus anxious to retract the piston rod 24 and the piston 22 in the cylinder 21.
  • the slider 26 is guided in a rail 28.
  • a coupler 30 is arranged, which consists of a flat arm 31 and at the end of a coupling member 32 is arranged.
  • the coupling part 32 cooperates with the slider 26 and engages in a recess in the slider 26 a.
  • the coupler 30 is in the in Fig. 1 shown broken example and together with a limiting device 34 is a structural unit.
  • the limiting device 34 has a stop 36, to which the drive 12 can strike.
  • Fig. 1 the drive 12 is shown in its end position in which the drive 12 bears against the stop 36.
  • the damper device 20 is not in its final position, so that by the spring of the damper device 20, a spring force is exerted on the drive 12, the drive 12 presses against the stop 36 and thus holds the drive 12 in the end position.
  • the damper device 20 is carried by the drive 12.
  • the damper 20 is in its initial position.
  • the coupling part 32 engages in the recess in the slider 26, so that the damper device 20 is triggered.
  • the damper which consists of cylinder 21, piston 22 and piston rod 24, the speed of the door leaf 100 is first decelerated.
  • the damper device is mounted in the running rail, whereas the coupler is arranged on the drive or door leaf.
  • the support system 1 further comprises a lock device 40, which is shown schematically in detail in FIG Fig. 2 is shown.
  • the lock device 40 has a lock 42 with a latch 44 and a closing part 46 with a recess 48 which forms a latch contact surface 49.
  • the lock 42 is fixed in the running rail 10.
  • the closure member 46 is formed as a flat arm, which is attached to the drive 12.
  • the bolt 44 which is pivotable, for example, about a horizontal axis extending in the direction of the running rail 10, engages in the Fig. 2 illustrated locking position in the recess 48 in the closing part 46 and cooperates with the bolt abutment surface 49, so that a lock between the drive 12 and the running rail 10 takes place.
  • the door leaf 100 is thus completed via the lock device 40.
  • a cover surface 50 is formed between the latch 44 and the latch contact surface 49, which causes the locking.
  • the overlay area 50 is exemplified in FIG Fig. 4 shown.
  • the recess 48 in the closure member 46 extends in the vertical direction.
  • the latch 44 protrudes into the recess 48 in the locking position of the lock device 40, wherein a clearance 51 is formed between the recess 48 and the latch 44 in the vertical direction below the latch 44.
  • the latch 44 and the latch contact surface 49 have an extension in the vertical direction, which is greater than the vertical extension of the overlay surface 50.
  • the clearance 51 and the formation of latch 44 and latch contact surface 49 is that allows for any necessary adjustment of the height of the door leaf 100 can be dispensed with an additional adjustment of the lock device 40, since a relative movement between the latch 44 and the closure member 46 is possible without the latch 44 threatens to slip out of the recess 48 or the latch in the vertical direction on the closing part touches.
  • the vertical extent of the recess 48 and the vertical extent D of the overlapping surface 50 determine the extent to which a height adjustment without problems is possible. Usually, however, a height adjustment of several millimeters is sufficient to achieve alignment of the edges of the door leaves 100. Therefore, a clearance 51 of several millimeters, for example 10 mm is sufficient. Furthermore, the vertical extension D of the covering surface 50 must have a minimum dimension of, for example, 2 mm. Therefore, it is advantageous if the vertical extent D of the cover surface 50 before the height adjustment of the door leaf, for example, 12 mm, so that an adjustment of the door leaf in Fig. 2 down is possible without the minimum extent of the extension D to fall below.
  • damper device 20 drives the drive 12 against the stop 36 of the limiting device 34 and holds it in abutment with the limiting device 34, ensures that this end position of the drive 12 is maintained.
  • This causes the closure member 46 in the correct position is arranged to allow a locking operation of the lock device 40, wherein the latch 44 is inserted into the recess 48.
  • Blocking the closing process in that the latch 44 and the recess 48 are not aligned with one another, can thus be avoided in an advantageous manner. How out Fig.
  • the closing part 46 is formed as a flat arm, which runs parallel to the plane of the door leaf 100.
  • the closing part 46 is elastic, so that elastic deformation of the closing part 46 in the direction of the door leaf 100 is possible.
  • the elastic design of the closure member 46 that this is bent elastically by the bolt 44 in the direction of the door leaf 100 and thus the latch 44 can snap into the recess 48 to reach the locking position of the lock device 40.
  • the latch 44 has a sliding bevel 44a.
  • the spring used in the damper device 20 is selected such that at a time when the closure member 46 presses against the latch 44, the existing spring force in the spring is greater than that for the elastic Deformation of the closing part 46 in the direction of the end position to be applied force.
  • the spring force of the damper device 20 is sufficient to drive the drive 12 further towards the end position and at the same time elastically deform the closure member 46, so that the latch 44 snaps into the recess 48. This process thus takes place without any action of the Operator. This ensures a high level of security that a locking state of the door leaf 100 is achieved even in the case of an incorrect operation.
  • a second embodiment of a lock device 40 is shown.
  • the closing part 46 is designed as a flat arm, which is arranged lying horizontally on the drive 12.
  • the recess 48 in the closing part 46 likewise extends in the horizontal direction and forms the locking contact surface 49.
  • an overlapping surface 50 is formed between the locking bar 44 and the locking contact surface 49.
  • the bolt abutment surface 49 and the overlap surface 50 are the same size in this embodiment. It is provided that the vertical extent H of the bolt 44 is greater than the vertical extent h of the recess 48 in the vertical direction and thus greater than the vertical extent D of the overlapping surface 50th Mit In other words, the latch 44 is larger in the vertical direction than the vertical extent of the closing part 46.
  • FIG. 5 a third embodiment of a lock device 40 is shown.
  • the lock device 40 of Fig. 5 essentially corresponds to the lock device 40 of Fig. 4 ,
  • the closure member 46 is also configured as a flat arm, which is arranged horizontally on the drive 12.
  • the bolt abutment surface 49 is in the in Fig. 5 illustrated embodiment by a projection 47 which projects from the flat arm formed. In the illustrated locking position of the lock device 40, the closure member 46 thus hooks behind the latch 44 and forms the lock.
  • the design of the lock device 40 with the possibility of vertical movement of the closure member relative to the latch in the Abschdalewolf is also independent of the design of the support system with damper device with retraction function realized.

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  • Lock And Its Accessories (AREA)

Claims (12)

  1. Porte coulissante comprenant un vantail (100) et un système de support (1) muni d'un rail de roulement (10), au moins un mécanisme de roulement (12) destiné à guider le vantail (100) de la porte coulissante, un dispositif amortisseur (20) à fonction de traction, le dispositif amortisseur (20) freinant tout d'abord le mécanisme de roulement (12) ou le vantail (100) lors de la fermeture, puis l'entraînant en direction d'une position d'extrémité et un dispositif de limitation (34) limitant la course du mécanisme de roulement (12) ou du vantail (100),
    caractérisée en ce que le système de support (1) comporte un dispositif de verrouillage (40) et le dispositif de verrouillage (40) comporte un verrou (44) et une surface d'appui de verrou (49), le verrou (44) étant mobile par rapport à la surface d'appui de verrou (49) pendant un processus de fermeture pour réaliser un verrouillage, et le dispositif de verrouillage (40) comprenant une serrure (42) muni d'un verrou (44) et un élément de fermeture (46) comportant une surface d'appui de verrou (49), et
    - le verrou (42) étant disposé sur le rail de roulement (10) et l'élément de fermeture (46) étant fixé au vantail (100) ou étant formé par un élément du mécanisme de roulement (12) ou étant fixé à celui-ci, ou
    - la serrure (42) étant disposée sur le vantail (100) ou étant fixé au mécanisme de roulement (12) et l'élément de fermeture (46) étant disposé sur le rail de roulement (10) ou étant formé par le rail de roulement (10),
    le mécanisme de roulement (12) ou le vantail (100) pouvant être verrouillé dans la position d'extrémité par le dispositif de verrouillage (40) du processus de fermeture et le dispositif amortisseur (20) entraînant le mécanisme de roulement (12) ou le vantail (100) vers le dispositif de limitation (34) pour atteindre la position d'extrémité et le maintenant en appui contre le dispositif de limitation (34) pour conserver la position d'extrémité pendant le processus de fermeture.
  2. Porte coulissante selon la revendication 1, caractérisée en ce que la surface d'appui de verrou (49) est formée par un évidement (48) ou une saillie.
  3. Porte coulissante selon la revendication 1 ou 2, caractérisée en ce que l'élément de fermeture (46) est conçu pour être élastique et en ce que le verrou (44) ou l'élément de fermeture (46) présentent un biseau de glissement (44a), le verrou (44) pouvant coopérer, dans la position de fermeture du verrou (44), par le biais du biseau de glissement (44a), avec l'élément de fermeture (46) et l'élément de fermeture (46) étant élastiquement déformable pendant le mouvement du mécanisme de roulement (12) ou du vantail (100) dans la position d'extrémité du verrou (44).
  4. Porte coulissante selon la revendication 1 ou la revendication 2, caractérisée en ce que le verrou (44) comporte un dispositif à ressort qui presse le verrou (44) dans la position de fermeture et le verrou (44) ou l'élément de fermeture possède un biseau de glissement (44a),
    le verrou (44) pouvant coopérer, dans la position de fermeture du verrou (44), par le biais du biseau de glissement (44a), avec l'élément de fermeture (46) et le verrou (44) étant mobile pendant le mouvement du mécanisme de roulement (12) ou du vantail (100) dans la position d'extrémité du verrou (44) par le biais de l'élément de fermeture à l'encontre de la force de ressort du dispositif à ressort.
  5. Porte coulissante selon l'une des revendications 3 ou 4, caractérisée en ce que le dispositif amortisseur (20) est conçu comme un système amortisseur à ressort, la force de ressort du système amortisseur à ressort, s'exerçant au moment de la butée de l'élément de fermeture (46) sur le verrou (44) disposé dans la position de fermeture, est supérieure à la force qui est nécessaire pour déformer élastiquement l'élément de fermeture (46) ou pour déplacer le verrou (44) à l'encontre de la force de ressort du dispositif à ressort dans le sens de la course du mécanisme de roulement (12) ou du vantail (10).
  6. Porte coulissante selon l'une des revendications 1 à 5, caractérisée en ce que le verrou (44) est monté de manière rotative et peut être déplacé dans la position de fermeture par un mouvement de rotation.
  7. Porte coulissante selon l'une des revendications 1 à 6, caractérisé en ce que la surface d'appui de verrou (49) s'étend dans la direction verticale et, dans la position de verrouillage du dispositif de verrouillage (40), une surface de recouvrement (50) est formée entre le verrou (44) et la surface d'appui de verrou (49), la surface d'appui de verrou (49) comportant dans la direction verticale une extension qui est égale ou supérieure à l'extension D de la surface de recouvrement (50) dans la direction verticale.
  8. Porte coulissante selon les revendications 2 et 7, caractérisée en ce que l'évidement (48) s'étend dans la direction verticale, le verrou (44) fait saillie dans l'évidement (48) lorsque le dispositif de verrouillage (40) dans la position de verrouillage et un espace libre (51) est formé au-dessus et/ou au-dessous du verrou dans l'évidement (48) entre le verrou (44) et l'évidement (48) dans la direction verticale.
  9. Porte coulissante selon l'une des revendications 1 à 6, caractérisée en ce que la surface d'appui de verrou (49) s'étend dans la direction verticale et, lorsque le dispositif de verrouillage (40) est dans la position de verrouillage, une zone de recouvrement (50) est formée entre le verrou (44) et la surface d'appui de verrou (49),
    le verrou (44) comportant dans la direction verticale une extension qui est égale ou supérieure à l'extension D de la zone de recouvrement (50) dans la direction verticale.
  10. Porte coulissante selon les revendications 2 et 9, caractérisée en ce que l'évidement (48) s'étend dans la direction horizontale, le verrou (44) fait saillie dans la direction verticale dans l'évidement (48) lorsque le dispositif de verrouillage est dans la position de verrouillage et le verrou (44) présente dans la direction verticale une extension qui est plus grande que celle de l'évidement (48).
  11. Porte coulissante selon l'une des revendications 1 à 10, caractérisé en ce que l'élément de fermeture (46) est conçu comme un bras allongé disposé parallèlement au rail de roulement (10) et s'étend, dans le sens de roulement, vers la position d'extrémité à l'extrémité avant du mécanisme de roulement (12).
  12. Porte coulissante selon l'une des revendications 1 à 11, caractérisée en ce que le verrou (44) est actionnable manuellement ou électriquement.
EP14180425.2A 2013-09-03 2014-08-08 Porte coulissante avec système de support Active EP2843169B1 (fr)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
DE102013217541.8A DE102013217541A1 (de) 2013-09-03 2013-09-03 Tragsystem für eine Schiebetür, sowie Schiebetür

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DE102020119066A1 (de) 2020-07-20 2022-01-20 Griffwerk GmbH Schiebetüranlage sowie Tragsystem zur Verwendung in einer Schiebetüranlage

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DE102016217664B3 (de) 2016-09-15 2017-08-17 Gebr. Willach Gmbh Tragsystem für eine Schiebetür
CN109707260B (zh) * 2019-02-22 2024-01-19 广州欧铂尼集成家居有限公司 移门套板装置
DE102019117401A1 (de) 2019-06-27 2020-12-31 Gebr. Willach Gmbh Schiebetürsystem

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EP0678639A1 (fr) 1994-02-26 1995-10-25 Hespe & Woelm GmbH & Co. KG Dispositif de verrouillage pour volets, portes et éléments similaires mobiles sur un rail fixe
US20020178668A1 (en) 2001-04-06 2002-12-05 Hawa Ag Device for locking running gear guided in rails
FR2847611A1 (fr) 2002-11-22 2004-05-28 S M T C Dispositif de verrouillage pour porte coulissante munie d'un mecanisme de rappel automatique
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DE102010061160A1 (de) 2010-12-10 2012-06-14 Hettich-Heinze Gmbh & Co. Kg Schließ- und Dämpfungsvorrichtung für bewegbare Möbelteile
EP2607580A2 (fr) 2011-12-20 2013-06-26 GEZE GmbH Dispositif de verrouillage pour une porte coulissante

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EP0678639A1 (fr) 1994-02-26 1995-10-25 Hespe & Woelm GmbH & Co. KG Dispositif de verrouillage pour volets, portes et éléments similaires mobiles sur un rail fixe
US20020178668A1 (en) 2001-04-06 2002-12-05 Hawa Ag Device for locking running gear guided in rails
FR2847611A1 (fr) 2002-11-22 2004-05-28 S M T C Dispositif de verrouillage pour porte coulissante munie d'un mecanisme de rappel automatique
WO2009076785A1 (fr) 2007-12-14 2009-06-25 Eku Ag Dispositif de traction et d'amortissement d'une porte coulissante logée dans un rail profilé pour le guidage de mécanismes de roulement, vers la position terminale
DE102010061160A1 (de) 2010-12-10 2012-06-14 Hettich-Heinze Gmbh & Co. Kg Schließ- und Dämpfungsvorrichtung für bewegbare Möbelteile
EP2607580A2 (fr) 2011-12-20 2013-06-26 GEZE GmbH Dispositif de verrouillage pour une porte coulissante

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Publication number Priority date Publication date Assignee Title
DE102020119066A1 (de) 2020-07-20 2022-01-20 Griffwerk GmbH Schiebetüranlage sowie Tragsystem zur Verwendung in einer Schiebetüranlage
WO2022017800A1 (fr) 2020-07-20 2022-01-27 Griffwerk GmbH Système de porte coulissante et système de support destiné à être utilisé dans un système de porte coulissante

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DE102013217541A1 (de) 2015-03-05
ES2716605T3 (es) 2019-06-13

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