EP2902577A1 - Dispositif pour la commande de la chaîne de fermeture de portes pivotantes à deux battants - Google Patents

Dispositif pour la commande de la chaîne de fermeture de portes pivotantes à deux battants Download PDF

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Publication number
EP2902577A1
EP2902577A1 EP15000267.3A EP15000267A EP2902577A1 EP 2902577 A1 EP2902577 A1 EP 2902577A1 EP 15000267 A EP15000267 A EP 15000267A EP 2902577 A1 EP2902577 A1 EP 2902577A1
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EP
European Patent Office
Prior art keywords
sliding
movement
sliding block
slide rail
leaf
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Granted
Application number
EP15000267.3A
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German (de)
English (en)
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EP2902577B1 (fr
Inventor
Walter Degelsegger
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Individual
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Individual
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Publication of EP2902577A1 publication Critical patent/EP2902577A1/fr
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    • 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
    • E05F5/12Braking devices, e.g. checks; Stops; Buffers specially for preventing the closing of a wing before another wing has been closed
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05YINDEXING SCHEME RELATING TO HINGES OR OTHER SUSPENSION DEVICES FOR DOORS, WINDOWS OR WINGS AND DEVICES FOR MOVING WINGS INTO OPEN OR CLOSED POSITION, CHECKS FOR WINGS AND WING FITTINGS NOT OTHERWISE PROVIDED FOR, CONCERNED WITH THE FUNCTIONING OF THE WING
    • E05Y2201/00Constructional elements; Accessories therefore
    • E05Y2201/60Suspension or transmission members; Accessories therefore
    • E05Y2201/622Suspension or transmission members elements
    • E05Y2201/638Cams; Ramps
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05YINDEXING SCHEME RELATING TO HINGES OR OTHER SUSPENSION DEVICES FOR DOORS, WINDOWS OR WINGS AND DEVICES FOR MOVING WINGS INTO OPEN OR CLOSED POSITION, CHECKS FOR WINGS AND WING FITTINGS NOT OTHERWISE PROVIDED FOR, CONCERNED WITH THE FUNCTIONING OF THE WING
    • E05Y2900/00Application of doors, windows, wings or fittings thereof
    • E05Y2900/10Application of doors, windows, wings or fittings thereof for buildings or parts thereof
    • E05Y2900/13Application of doors, windows, wings or fittings thereof for buildings or parts thereof characterised by the type of wing
    • E05Y2900/132Doors

Definitions

  • the invention relates to a device for controlling the closing sequence of two-leaf swing doors, which are equipped with Gleitschienenschpracticern, wherein one door is a under towardsder, so-called passive leaf and the second wing is a sweeping, so-called scroll.
  • the device according to the invention is particularly advantageous for such doors, which have to meet a security claim, in particular for fire doors with so-called panic and escape function, advantageously applicable.
  • the wings Due to folds which constitute a projection of one door leaf in front of another door leaf, it is necessary for the proper closing of a double-leaf door to close the wings in the correct order. This is the case when, from the open state, the passive leaf is first brought into the closed position and only then is the active leaf. In order for the fire doors to take place safely even in case of fire, the wings are not only provided with a drive which automatically moves the door in the closed position, but also with a device for controlling the closing sequence, which is intended to cause the two doors automatically in closed in the right order.
  • the active leaf when the inactive leaf is open, the active leaf also open, for example driven by a spring or hydraulics, executes a closing movement leading the inactive leaf, then this closing movement is stopped by the action of the device for controlling the closing sequence at a certain opening angle until the inactive leaf in its closing movement, the power wing is sufficiently far ahead that it ensures the correct closing sequence.
  • a pivot arm of a door leaf to a sliding block which in one of the upper frame part the door frame arranged slide rail is mounted longitudinally movable. With the door closed, that end of the swivel arm which is fastened to the door leaf lies closer to the pivot axis of the door leaf than that end of the swivel arm which is connected to the sliding block.
  • the sliding block slides in the slide rail away from the axis of rotation of the door leaf.
  • the sliding block for the inactive leaf and the sliding block for the active leaf are guided in a common slide rail.
  • the movement of the sliding blocks associated with the two door leaves is mutually forcibly associated with their movement.
  • any closing movement of the active leaf is stopped at a certain opening angle by blocking the sliding block connected to the inactive leaf via a pivoting arm against movement in the sliding rail away from the rotary axis of the inactive leaf by a holding mechanism.
  • the blocking action of the holding mechanism is only released by closing the inactive leaf, by a projecting from the sliding block of the passive leaf in the direction of the holding mechanism of the active leaf part by the movement of the sliding block of the passive leaf with said holding mechanism comes into contact and thereby solves the blocking effect.
  • the construction which is often used per se works satisfactorily only when the sliding blocks of the door leaves move exclusively during the closing movement of the associated door leaves from the axis of rotation of the respective door leaf.
  • the AT 507 862 A1 shows embodiments of Schistenllieri für af, equipped with Gleitschienenfschmüern swing doors and several suggestions on how the reversely aligned sliding movement (ie, the rotational axis of the respective door directed towards sliding movement) of a sliding block, which can occur during the last part of the closing movement of the door in question compensated can be.
  • displaced by the rotational movement of the pivot arm of the slide rail door closer a displaceable together with the sliding block in the slide rail relative to the sliding block of the axis of rotation of the door.
  • This shifted relative to the sliding block along the slide part then takes over the switching function for the Schiquemethyl faced in the construction according to DE 33 36 739 A1 directly held the sliding block.
  • the desired compensation effect can be achieved, since the function is nevertheless dependent on the movement of the sliding block in the slide rail, the adjustment can be very difficult for some door geometries.
  • the object underlying the invention is a device for controlling the closing sequence of two-leaf swing doors, - which are equipped with Gleitschienenschpracticern, wherein the one door is a under regardder, so-called passive leaf and the second wing is a sweeping, so-called scroll to provide, wherein locking and releasing the closing movement of the active leaf substantially independently of position and longitudinal movement of the sliding blocks of solid leaf and / or moving leaf is achievable and wherein the rotatable rod according to the AT 510971 A4 associated problems are avoided.
  • the combination of the features c) and d) ensures that the required transmission of movements between the gangway-side part of the mechanics of the closing sequence control and the passive side part of the mechanics of the closing sequence control over a part - namely the longitudinal transmission part - can be made, which in the slide rail in Guided guided longitudinally of the slide is movable and yet that the function of the closing sequence control is no longer necessarily dependent on the position of a sliding block in the longitudinal direction of the slide, but only on the rotation angle of the swing arm of the door closer to the respective sliding stone is necessarily dependent.
  • parts in geared connection By the phrase “parts in geared connection” used repeatedly in this document, it is meant that two parts which are movably guided on any other parts interact directly or indirectly over other parts such that a guided movement of the one part causes a causes guided movement of the other part or that blockage of movement of one part blocks an otherwise possible guided movement of the other part.
  • the sliding stone side transmission part 4 which in this case has the shape of a bolt, held vertically displaceable. If the top part 5 is not pivoted under the sliding block-side transmission part 4 - which is the case when the inactive leaf is open - is the sliding stone side transmission part 4 with respect to the sliding block 3 in its lower, by a stop (not shown) defined end position, in which he is held by its own weight and possibly by an elastic spring (not shown).
  • the transverse transfer part 6 is held rotatably mounted on the slide rail 1 via the pivot axis 6.3, which is aligned horizontally, normal to the longitudinal direction of the slide rail 1. If the transverse transfer member 6 is not raised by the bolt 4, its lower surface 6.1, with which the bolt 4 may come into contact, aligned horizontally in the manner that the cutting lines of this surface 6.1 with planes parallel to the longitudinal direction of the slide rail. 1 are aligned, straight, horizontal and parallel to the longitudinal direction of the slide rail 1 are aligned.
  • the remote from the pivot axis 6.3 end face of the transverse transfer part 6 is an inclined plane 6.2, whose lower surface area is further away from the low-lying end of the slide rail 1, as the upper surface area.
  • a longitudinal transfer member 7, which is in this case a push rod, which is held longitudinally movably guided in the slide rail 1, is provided with an end piece 7.1, the free end face is formed as an inclined plane 7.2, which is the same inclined as the inclined plane 6.2 of the pivot lever 6.
  • the two inclined planes 6.2 and 7.2 are adjacent to each other.
  • the longitudinal transfer part 7 is formed along the slide rail 1 by the transverse transfer part via the gear connection, which is formed by the inclined planes 6.2, 7.2 between the transverse transfer part 6 and the longitudinal transfer part 7 6 away and thus shifted to the active leaf side of the slide 1 to.
  • the longitudinal transfer member 7 is thus exactly shifted to the active leaf side of the slide out when the inactive leaf is closed.
  • the longitudinal transfer part 7 must cause blocking of the closing movement of the active leaf in a waiting position when the longitudinal transfer part is displaced towards the passive leaf and it must release this blockage when it is shifted towards the active leaf.
  • the transmission connection between the transverse transmission part 6 and the sliding-side transmission part 4 has a contact surface (lower surface 6.1) on which the transverse transmission part 6 and the sliding-side transmission part 4 are pressed against each other, and by moving one part (sliding-side transmission part 4) the other part (transverse transmission part 6) moves is forced.
  • the said contact surface (lower surface 6.1) forms (imaginary) planes which are aligned parallel to the slide rail longitudinal direction, cutting lines which are straight and parallel to the slide rail longitudinal direction.
  • the direction which the movement of the other part (transverse transfer part 6) forced to said contact surface by movement of one part (slide-side transfer part 4) has a directional component which is normal (vertical) to the longitudinal direction of the slide rail 1.
  • the sliding-block-side transmission part 4 is in gearbox connection with the pivoting arm 2.
  • this transmission connection still cooperating transmission part of the attachment part 5; this is carried along with the sliding movement of the sliding block in the slide rail.
  • the sliding stone side transmission part 4 is when it presses against the lower surface 6.1, it does not matter if the sliding block 3 of the passive leaf during the relevant last part of the Closing movement of the inactive leaf moves slightly towards the active leaf side of the slide 1 towards or away from it. It only needs to be ensured that it remains below the lower surface 6.1.
  • Fig. 2 shows a pivot arm 12, which alternative to the in Fig. 1 shown swing arm 2 is usable.
  • the pivot arm 12 is pivotally mounted about the axis 12.1 on the sliding block. Close to the sliding-side end of the pivot arm 12 of the attachment part 15 is mounted on the pivot arm 12 '.
  • the attachment 15 corresponds in its function to the attachment part 5 of Fig. 1 , In the in Fig. 2 illustrated case, the attachment part 15 is mounted in a transverse to the longitudinal direction of the pivot arm 12 extending guide recess 12.2 and guided in this linearly displaceable.
  • a parallel to the guide recess 12.2 extending threaded bolt 16 extends in the direction of displacement through the attachment part 15 and is rotatably supported on the pivot arm 12.
  • the attachment part 15 of the threaded bolt 16 is displaced along the guide recess 12.2.
  • the attachment part 15 projects above the plane of the pivoting arm 12.
  • Fig. 3 shows the sliding-stone-side end of a pivot arm 36, which is also alternative to the in Fig. 1 shown swing arm 2 is usable.
  • an approximately circular disk-shaped attachment part 35 is connected to the pivot arm 36.
  • From the attachment part 35 protrude two elevations 35.1, which are arranged symmetrically with respect to the axis of the attachment part 35, parallel to the direction of said pivot axis away from the sliding block.
  • these elevations protrude in the installed situation to the underside of a sliding-block-side transmission part and come there during the pivoting of the pivot arm 36 with the flanks of a downwardly projecting structure in contact, so that they raise the sliding stone-side transmission part on further pivoting of the pivot arm 36.
  • the attachment part 35 with respect to angular orientation about the sliding-stone-side axis of the pivot arm 36 is adjustable fixed.
  • the swivel arm according to Fig. 3 works more robust than those according to Fig. 1 and Fig. 2 and he looks more beautiful too.
  • the attachment part 15 is attached to the pivot arm 12.
  • the attachment 15 corresponds in its function to the attachment part 5 of Fig. 1 ,
  • the attachment part 15 is mounted in a transverse to the longitudinal direction of the pivot arm 12 extending guide recess 12.2 and guided in this linearly displaceable.
  • a parallel to the guide recess 12.2 extending threaded bolt 16 extends in the direction of displacement through the attachment part 15 and is on Swivel arm 12 rotatably supported.
  • At the attachment part 15 of the threaded bolt 16 in a nut thread in the threaded engagement.
  • the attachment part 15 By turning the threaded bolt 16 (for example by means of a screwdriver), the attachment part 15 is displaced along the guide recess 12.2. The attachment part 15 projects above the plane of the pivoting arm 12. By the position of the attachment part by means of the threaded bolt 16 is finely adjusted, is also finely adjusted, at which pivot angle of the swing arm 12, a switching operation is triggered in the closing sequence control.
  • Fig. 4 illustrates how the in Fig. 1 designed as a push rod longitudinal transfer member 7 - which is pushed by the closing of the inactive leaf toward the active leaf side of the slide - can be replaced by a longitudinal transfer member 17, which is a rope which is moved by the closing of the inactive leaf in the slide rail to its inactive side.
  • Fig. 5 and Fig. 6 both belong to the same device designed according to the invention, it being assumed below that the features according to the invention are realized by the gangway-side parts.
  • a housing 8 is used immovably.
  • a transverse transfer member 9 which could also be referred to as a carriage, guided along curved guide slots 8.1 which are formed in the base surface of the housing as grooves, guided held.
  • the end of the rope formed as a longitudinal transfer member 17 is attached to a receiving opening 9.3, which leads in the slide along this to the passive side part of the device for the Schellerellotulung. If the inactive leaf is closed, this will cause the longitudinal transfer member 17 to move slightly towards the inactive side of the sliding rail (in FIG Fig. 5 to the right) and thus the transverse transfer part 9 in the in Fig. 5 sketched position draws.
  • the transverse transfer part 9 would be at the in Fig. 5 bottom surface of the housing 8 (for example, according to its own weight or due to a prestressed elastic spring (not shown) acting on it.)
  • the lower position of the transverse transfer part 9 is shown in FIG Fig. 5 indicated by dotted lines.
  • the transverse transfer member 9 Due to the train of the longitudinal transfer member 17 according to the opening of the inactive leaf, the transverse transfer member 9 is not only pulled closer to the other side position closer to the inactive side of the slide, but also slightly moved transversely to the longitudinal direction of the slide.
  • the transverse transfer part 9 has a surface 9.1 which, like the lower surface 6.1 of the transverse transfer part 6 of FIG Fig. 1 with planes which are parallel to the longitudinal direction of the slide, forming cut lines which are straight and are aligned parallel to the slide rail longitudinal direction.
  • the transverse transfer part 9 When the inactive leaf is open, the transverse transfer part 9 is in the in Fig. 5 in full line position. Now, if the active leaf is closed, the sliding block 13 of the active leaf and with this moves the rod 10 with the sliding stone side transmission part 11 to the housing 8, and laterally along this, so that the sliding stone side transmission part 11 with the pivoting ramp 9.2, which with the transverse transfer member 9 is connected, comes into contact. By further closing the moving leaf, the sliding-block-side transmission part slides upwards along the pivotable ramp 9.2, whereby the rod 10 is rotated about its longitudinal axis. After this the sliding-block-side transmission part 11 has passed the pivotable ramp 9.2, it touches the surface 9.1 and slides along this without further pivoting, since the surface 9 is aligned parallel to the slide rail.
  • a mechanism By rotating the rod 10 about its longitudinal axis to a certain position, a mechanism is provided which stops the closing movement of the active leaf in a waiting position until the rod 10 is turned back again.
  • An exemplary embodiment of this mechanism is described below.
  • the transverse transfer part 9 When the inactive leaf is closed, the transverse transfer part 9 is in the in Fig. 5 indicated by dotted lines position. If in this case the active leaf is completely or almost completely closed, the sliding-stone-side transmission part 11 is located on the surface 9.1 of the transverse transmission part 9. If now the passive leaf is opened, so that the transverse transmission part 9 in the in Fig. 5 raised position shown in whole lines.
  • the active leaf is forcibly something co-opened; at least because it has a fold overlapping the inactive leaf; by this opening of the active leaf of the sliding block of the active leaf is moved approximately along the slide rail, this movement at the beginning of the opening movement of the active leaf also something on the solid side of the slide can be aligned, at larger opening angle of the active leaf in any case towards the active leaf side of the slide out is aligned.
  • the sliding-block-side transmission part 11 slides along the surface 9.1 along the transverse transmission part 9 and regardless of which longitudinal region of the slide it is located about an axis parallel to the slide rail (rod 10) rotated because the surface 9.1 due to the movement of the transverse transmission part 9 normal is moved to the longitudinal direction of the slide rail.
  • this mechanism is made effective, which optionally the closing movement of the active leaf in a Waiting position stops until the inactive leaf is at least almost completely closed.
  • the sliding block 13 is a kind of housing, in which several parts are kept movably guided:
  • the parallel to the slide rail 10 is rotatable about its own longitudinal axis.
  • a roller cage 20 and a bearing member 27 are pivotable.
  • clamping rollers 25 are rotatably supported, wherein the axes of rotation of the clamping rollers are parallel to the axis of the pivot shaft 14.
  • the rod 10 is in gear engagement with the roller cage 20, for example via two intermeshing bevel gear teeth, so that rotation of the rod 10 about its longitudinal axis causes pivotal movement of the roller cage 20 about the axis of the pivot shaft 14.
  • the pinch rollers 25 are in each case a recess 27.1 of the bearing part 27, which is open to the pivot shaft 14, rolled in the circumferential direction of the lateral surface of the pivot shaft 14 along.
  • the radial distance of the bottom of the recesses 27.1 to the lateral surface of the pivot shaft increases along a circumferential direction (in Fig.
  • the advantage here is that the blocking of the pivotal movement of the pivot shaft 14 and thus the pivoting of the swing arm of the door closer takes place only in one direction and that the blocking does not depend on movements of the sliding block 13 along the slide, as long as the sliding stone side transmission part 11 parallel to the slide rail Area 9.1 is present. If the active leaf is opened so far that the sliding stone side transmission part 11 is no longer abutting the surface 9.1, because the sliding block of the active leaf away too far from the housing 8 in the slide, no blockage effect on mobility of the active leaf is necessary or desirable because so in any case, the active leaf is opened beyond the waiting position of the closing sequence control.
  • the oblique surface 8.2 on the housing 8 serves to rotate the rod 10 in any case so that it completely removes the blockage of the pivoting of the pivot shaft 14 when the active leaf is opened so far that the sliding stone-side transmission part 11 is moved away from the housing 8.
  • Fig. 7 relates to an advantageous anchoring of the slide rail 1 on a wall (frame), and the displaceable anchoring of the sliding block 13 in the slide rail first
  • the slide rail 1 is a kind of U-profile, which is normally arranged with a horizontal profile direction, downwardly open profile side, with a side surface facing a frame, on which the slide rail is mounted.
  • the slide rail 1 is connected via mounting bracket 29 with the stationary frame.
  • a vertical leg of a mounting bracket 29 abuts against the frame and the second, horizontal leg of the mounting bracket 29 extends above the slide rail 1 at its overhead base.
  • the slide rail 1 is connected by screws 31 which extend through the base of the slide rail 1 in the upper leg of the mounting bracket.
  • the slide rail 1 With the frame-side leg of the mounting bracket, the slide rail 1 is connected by at least two vertically superimposed entanglements, which are each formed by one of the slide rail 1 frame side upwardly projecting wall 1.1 is engaged behind by a wall 29.1, which on the slide rail side facing of the frame side leg of the Mounting angle 29 protrudes downwards. This entanglements cause the slide 1 can not move away from the frame-side leg of the mounting bracket 29.
  • the mounting bracket 29 is connected to the frame by a screw 32 which extends through the frame-side leg of the mounting bracket into the frame, without having to pass through a wall of the slide rail 1.
  • the sliding block 13 is held in the profile cavity of the slide 1 not only against movement normal to the profile direction of the slide 1, he is also so hooked with the frame-side side wall of the guide rail 1, that it is displaced laterally from the frame 'forces away could, is held by the entanglement on the frame-side side wall of the slide rail 1.
  • the said Verhakung is formed by the sliding block 13 on the frame side, a wall 13.1 protrudes downwards, which is engaged behind by one of the frame-side wall 1.2 of the slide rail 1 on the side facing away from the frame side. If there were no such entanglement, would push at large forces through which the sliding block of the frame away from the side wall facing away from the frame of the slide, this side wall bent away from the frame and thus bulging the slide rail.
  • Fig. 8 shows a further passer-side device according to the invention.
  • transverse transfer member 19 In the slide 1 is described as about plate-shaped rocker transverse transfer member 19 is guided guided movably.
  • the transverse transfer member 19 is connected via two pairs of parallel aligned, equal length pivoting levers 19.2 with the slide rail 1, wherein the pivot lever 19.2 are held pivotally mounted both on the slide rail 1 and the transverse transfer member 19.
  • the rope executed Longitudinal transfer member 17 is connected at one end to a receiving opening 19.3 with the transverse transfer member 19 and leads in the slide rail 1 to the lower side part of the mechanics of Schesselhneung.
  • the transverse transfer member 19 is the longitudinal transmission member in gearbox, compared to the slide 1 also guided normal to the longitudinal direction of the slide rail 1 and has a surface 19.1, the lines of intersection with the slide rail 1 parallel planes straight, parallel to the slide rail sections, the surface 19.1 contact surface to which on sliding block 23 movably guided sliding stone side transmission part 24 which in this case (again) is a sliding block 23 vertically displaceable bolt.
  • a sliding sleeve 21 is attached to the pivot arm 22 of the gangway-side door closer drive 28, which extends almost over the entire length of the pivot arm 22 and with respect to this longitudinally displaceable.
  • the transverse transfer member 19 is lowered somewhat vertically relative to its other position.
  • the active leaf is pivoted in an opening angle range in which the sliding block 23 on the sliding sliding side transmission member 24 passes under the surface 19.1 of the transverse transmission member 19, the upper end surface of the sliding stone side transmission member 24 comes into contact with the surface 19.1 whereby the sliding stone side transmission member 24 against its other position is lowered approximately (against the action of a biased spring, not shown).
  • a hydraulic valve can be closed by the switching knob, whereby movement of the pivot shaft 28.2 is stopped at least in one direction.
  • a unidirectional brake such as a band brake, which acts between the housing of the door closer drive 28 and the pivot shaft 28.2, are attracted to it or it can be a locking lug a locking member pressed on a possibly rotated with the pivot shaft 28.2 gear and thus movement block the gear and thus the pivot shaft at least in one direction or it can be a mechanism of the kind as in Fig. 6 sketched to be applied with pinch rollers.
  • Fig. 9 shows a further passer-side device according to the invention.
  • the device of Fig. 9 identical with that of Fig. 8 , With the construction of Fig. 8 is also common that the closing movement of the active leaf is blockable by pivotal movement of the passer-side Swing arm 33 of the door closer is optionally blocked by pivotal movement of the drive-side pivot shaft 38.2 is blocked on the door closer drive 38.
  • the transmission from the movement of one end of the pivot arm 33 to the other end of the pivot arm 33 is not via a longitudinally displaceable sliding sleeve 21, but via a two-sided pivot lever 34.
  • the pivot lever 34 is pivotally mounted on the pivot arm 33 by means of a pivot pin 34.3, which approximately in the Longitudinal center of the pivot lever 34 and the pivot arm 33 is arranged and is aligned horizontally, normal to the longitudinal direction of the pivot arm 33.
  • a spring and a stop surface of the pivot lever 34 is held in the absence of other effects in a position parallel to the pivot arm 33.
  • a projection 34.1 upwards.
  • a projection 34.2 down to a (not shown) switching part on a arranged on the door closer drive 38 switchable locking part 38.1.
  • the transmission connection according to the invention between the movement of a swivel arm of the door closer and the longitudinal transmission part (which forms the connection between gang selfishl Littleer and stand-wing-side mechanism) is realized both side of the wing and pitch side.

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  • Power-Operated Mechanisms For Wings (AREA)
  • Support Devices For Sliding Doors (AREA)
EP15000267.3A 2014-01-29 2015-01-29 Dispositif pour la commande de la chaîne de fermeture de portes pivotantes à deux battants Active EP2902577B1 (fr)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
ATA60/2014A AT515398A1 (de) 2014-01-29 2014-01-29 Vorrichtung für das Steuern der Schließfolge von zweiflügeligen Schwenktüren

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EP2902577A1 true EP2902577A1 (fr) 2015-08-05
EP2902577B1 EP2902577B1 (fr) 2017-04-19

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EP15000267.3A Active EP2902577B1 (fr) 2014-01-29 2015-01-29 Dispositif pour la commande de la chaîne de fermeture de portes pivotantes à deux battants

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AT (1) AT515398A1 (fr)

Families Citing this family (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
AT516993A1 (de) 2015-03-17 2016-10-15 Walter Ing Degelsegger Haltevorrichtung für das Halten eines schwenkbaren Türflügels

Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE3336739A1 (de) 1983-10-08 1985-04-25 Dorma-Baubeschlag Gmbh & Co Kg, 5828 Ennepetal Schliessfolgevorrichtung fuer eine zweifluegelige tuer
EP0458034A1 (fr) * 1990-05-21 1991-11-27 DORMA GmbH + Co. KG Dispositif de commande de séquence de fermeture
DE19855425A1 (de) * 1998-12-02 2000-06-15 Schulte Ernst Schließfolgeregelvorrichtung für eine zweiflügelige Tür
EP1544398A2 (fr) * 2003-12-18 2005-06-22 GEZE GmbH Dispositif coordonnateur de fermeture pour portes à deux vantaux
EP2208846A2 (fr) * 2009-01-16 2010-07-21 Walter Degelsegger Dispositif pour la commande de la chaîne de fermeture de portes pivotantes à deux battants
AT510971A4 (de) 2011-01-20 2012-08-15 Walter Ing Degelsegger Vorrichtung für das steuern der schliessfolge von zweiflügeligen schwenktüren

Family Cites Families (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
FI111407B (fi) * 2002-02-01 2003-07-15 Abloy Oy Ovensuljinjärjestely kääntyvien pariovien sulkeutumisen tahdistusta varten
DE10360039B4 (de) * 2003-12-18 2009-06-18 Geze Gmbh Vorrichtung zur Schließfolgeregelung für zweiflügelige Drehtüren
EP1801336A1 (fr) * 2005-12-22 2007-06-27 GEZE GmbH Dispositif coordinateur de fermeture
AT510907B1 (de) * 2011-01-03 2013-01-15 Walter Ing Degelsegger Vorrichtung für das steuern der schliessfolge von zweiflügeligen schwenktüren

Patent Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE3336739A1 (de) 1983-10-08 1985-04-25 Dorma-Baubeschlag Gmbh & Co Kg, 5828 Ennepetal Schliessfolgevorrichtung fuer eine zweifluegelige tuer
EP0458034A1 (fr) * 1990-05-21 1991-11-27 DORMA GmbH + Co. KG Dispositif de commande de séquence de fermeture
DE19855425A1 (de) * 1998-12-02 2000-06-15 Schulte Ernst Schließfolgeregelvorrichtung für eine zweiflügelige Tür
EP1544398A2 (fr) * 2003-12-18 2005-06-22 GEZE GmbH Dispositif coordonnateur de fermeture pour portes à deux vantaux
EP2208846A2 (fr) * 2009-01-16 2010-07-21 Walter Degelsegger Dispositif pour la commande de la chaîne de fermeture de portes pivotantes à deux battants
AT507862A1 (de) 2009-01-16 2010-08-15 Walter Ing Degelsegger Vorrichtung für das steuern der schliessfolge von zweiflügeligen schwenktüren
AT510971A4 (de) 2011-01-20 2012-08-15 Walter Ing Degelsegger Vorrichtung für das steuern der schliessfolge von zweiflügeligen schwenktüren

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AT515398A1 (de) 2015-08-15
EP2902577B1 (fr) 2017-04-19

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