EP2918757B1 - Poignée conçu comme une barre dotée de bras de levier présentant une structure à coque - Google Patents

Poignée conçu comme une barre dotée de bras de levier présentant une structure à coque Download PDF

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Publication number
EP2918757B1
EP2918757B1 EP15156897.9A EP15156897A EP2918757B1 EP 2918757 B1 EP2918757 B1 EP 2918757B1 EP 15156897 A EP15156897 A EP 15156897A EP 2918757 B1 EP2918757 B1 EP 2918757B1
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EP
European Patent Office
Prior art keywords
lever arm
shell part
bearing
actuation handle
handle according
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Active
Application number
EP15156897.9A
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German (de)
English (en)
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EP2918757A1 (fr
Inventor
Markus Bade
Rudolf Schnekenburger
Johannes Klaszka
Oliver Hirschoff
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Assa Abloy Sicherheitstechnik GmbH
Original Assignee
Assa Abloy Sicherheitstechnik GmbH
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
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Publication of EP2918757A1 publication Critical patent/EP2918757A1/fr
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Publication of EP2918757B1 publication Critical patent/EP2918757B1/fr
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Classifications

    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05BLOCKS; ACCESSORIES THEREFOR; HANDCUFFS
    • E05B65/00Locks or fastenings for special use
    • E05B65/10Locks or fastenings for special use for panic or emergency doors
    • E05B65/1046Panic bars
    • E05B65/106Panic bars pivoting
    • E05B65/1066Panic bars pivoting the pivot axis being substantially parallel to the longitudinal axis of the bar
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05BLOCKS; ACCESSORIES THEREFOR; HANDCUFFS
    • E05B65/00Locks or fastenings for special use
    • E05B65/10Locks or fastenings for special use for panic or emergency doors
    • E05B65/1046Panic bars
    • E05B65/1053Panic bars sliding towards and away form the door

Definitions

  • the invention relates to an actuating handle for a lock of a door.
  • the door has a stationary door frame with a door leaf movably mounted therein, preferably designed as a stop wing.
  • the door is preferably a door in an escape and rescue route and the actuation handle accordingly a panic actuation handle.
  • the actuating handle has an actuating rod, which is designed as a so-called handle bar and is pivotally mounted in a bearing device consisting of two storage facilities.
  • the actuating rod has at its first end a first lever arm and at its second end a second lever arm.
  • the first bearing device is assigned to the first lever arm and the second bearing device is assigned to the second lever arm by the first lever arm is pivotally mounted with its free end in the first bearing means and in the second bearing means of the second lever arm is pivotally mounted with its free end.
  • the storage facilities are in their mounted position on the door arranged so that their bearing axes are aligned with each other forming a common horizontal bearing axis and the actuating rod is horizontally arranged pivotable about this horizontal axis.
  • the DIN 11 25 describes panic door locks with horizontal operating rod for doors in escape and rescue routes. It distinguishes the type A rod operation with so-called handlebars, which are pivotally mounted about a horizontal axis on the door leaf, and the type B rod operation with a push rod, which is also mounted horizontally on the door leaf, but is mounted displaceable in the direction perpendicular to the door leaf level.
  • handlebars which are pivotally mounted about a horizontal axis on the door leaf
  • a push rod which is also mounted horizontally on the door leaf, but is mounted displaceable in the direction perpendicular to the door leaf level.
  • actuating handle with a so-called handle bar, which is mounted pivotably about its horizontal axis on the door, so to a type A rod operation.
  • the invention has the object of further developing such an actuating handle with a pivotable on the door leaf about a horizontal axis actuating rod so that it is easy to manufacture and easy to assemble, has a high stability and strength in use and is visually advantageous.
  • the first shell part has at its one end a partial receptacle for the bearing shaft and at its other end an enclosing support receptacle for the actuating rod.
  • the second shell part also has at its one end a partial receptacle for the bearing shaft.
  • the bearing receptacle of the bearing shaft by two sub-receptacles, which are formed in the first shell part and in the second shell part respectively formed.
  • the two shell parts When the two shell parts are assembled in the assembled body, they each form a composite bearing receptacle for the bearing shaft, which completely surrounds the connection region of the bearing shaft circumferentially.
  • the holder receptacle of the lever arm associated end of the actuating rod is formed only by the first shell part.
  • the lever arms of the operating rod formed as a handlebar are thus formed in the shell structure.
  • the trained in the lever arms bearing receptacle for the bearing shaft of the bearing device is formed in each case by a portion of the first shell part and by a portion of the second shell part so by partial absorption, resulting in a composite recording.
  • An actuator rod retainer is formed by only a shell member by forming the bracket retainer in this shell member as an enclosing receptacle which receives and encloses the terminal end of the actuator rod.
  • Each lever arm consists of at least two shell parts, namely a first shell part and a second shell part. In preferred embodiments, only these two shell parts are provided for forming the lever arm.
  • the lever arms are composed of a plurality of shell parts, in particular also embodiments in which one or more intermediate bodies are arranged in the interior of the lever arm and the shell parts are respectively arranged outside, specifically the surrounding body or bodies.
  • the lever arms are each formed as a composite body, using the at least two shell parts.
  • the term shell part means that the parts designated as shell part each form on one side a portion of the outside of the lever arm, that is, they have on at least one side on a surface which forms at least a portion of the outer surface of the shell part.
  • the shell parts are usually flat parts.
  • the shell parts may be convex on its outer side in the broadest sense and concave on its inside in the broadest sense. This is not necessarily so. What is essential in the so-called shell parts is merely that they have on one side an outer surface which forms a portion of the outer surface of the composite body.
  • first shell part and the second shell part are releasably connected to one another to form the composite body.
  • a screw connection device and / or a latch connection device can be provided.
  • first shell part and the second shell part are arranged directly resting on one another in the assembled body.
  • the composite body which forms the lever arm, consists exclusively of the first shell part and the second shell part.
  • a further shell part or a plurality of further shell parts or else one or more intermediate bodies are provided between the shell parts.
  • the intermediate body can be designed in each case as a one-piece body or as a multi-part body.
  • Embodiments in which the first shell part and the second shell part with sections of their outside form the entire outside, that is to say the entire outside surface of the assembled body, are particularly advantageous.
  • first shell part and the second shell part adjoin one another at least in sections, forming a joint, wherein the joint is formed as a longitudinal joint which extends in the direction of the longitudinal extent of the lever arm.
  • the first lever arm and the second lever arm each have the longitudinal joint on mutually facing sides.
  • one of the shell parts can simultaneously cover several sides in the manner of a panel. It may be provided in this case that the cross section of the first leg and / or the second leg is formed angled transversely to the longitudinal extent of the shell part, wherein one of the legs is formed so that it covers one side of the lever arm on the side facing away from the other lever arm side or at least largely covered.
  • the bend can be formed in cross section as a right angle. But it can also have more than two angled legs, for example, be formed in cross-section U-shaped.
  • the bearing device has a bearing body, preferably designed as a bearing housing.
  • the bearing shaft can be rotatably mounted.
  • the lever arm forming composite body by the bearing shaft rotatably axially rotatably in the bearing recess.
  • the bearing recess may be formed by the one shell part or by a plurality of shell parts composed.
  • the actuating handle is therefore a handle with a horizontal grip rod, in which the connection of the lever arm ends to the respectively assigned bearing device on the bearing shaft rotatably mounted there can be formed axially on the bearing shaft. That is, the handle bar may preferably be connected according to the so-called axial concept. But there are also versions of the handle bar possible, which connect radially to the bearing shaft, that are connected according to the so-called radial concept.
  • the lock can be designed as a mortise lock or as a resting lock.
  • the bearing device is designed so that it can be coupled with an internal mortise lock in the wing.
  • the bearing device can actuate the nut of the lock via a driver coupled to the bearing shaft in a rotationally fixed manner, optionally via an interposed connection element, for example a connection pin rotationally fixedly inserted into the locknut.
  • the bearing device can be coupled with an overlying lock.
  • the embodiments shown in the figures are each an actuating rod fitting for a door, preferably for a door in escape and rescue routes.
  • the embodiments shown in the figures are very similar in construction.
  • the same or functionally identical components are denoted by the same reference numerals in the figures.
  • the actuating rod fitting is also referred to in the following description as Betuschistsstangenhandhabe or actuating rod means.
  • the actuating rod handle of the embodiments of the figures is designed according to the nomenclature of DIN EN 1125 as a "handlebar". According to the standard, it is a type A bar operation.
  • the type A operating rod - the so-called handle bar - has a horizontal pivot axis about which the actuating rod is pivotally when actuated by hand.
  • the operating rod 1 is mounted on the door leaf TF via a left-side bearing device 2 and a right-side bearing device 2.
  • the actuating rod 1 has at its ends in each case a lever arm 1h, so that it has the shape of a U-shaped bracket.
  • the free ends of the lever arms 1h are pivotally mounted in the bearing devices 2, 2 about a pivot axis XA.
  • the fitting, ie the actuating rod device is mounted on the door so that the actuating rod 1 and, accordingly, the pivot axis XA are aligned parallel to the door leaf plane and that horizontally.
  • the lock mechanism arranged in the door leaf, to which the actuating rod device is connected is actuated in the up direction.
  • the lock mechanism is arranged in the door leaf immediately below one of the bearing devices 2 and connected via a connection device 3 arranged in the bearing device 2. The action of the actuating rod device including the connecting device 3 on the lock mechanism will be described in detail.
  • the free end of each lever arm 1h is rotatably connected to a driven-side bearing shaft 2a.
  • the bearing shafts 2a are each aligned parallel to the actuating rod 1. They are from the respective free lever arm end on the side facing away from the actuating rod 1 side to the outside.
  • the bearing shaft 2a is supported respectively in its associated bearing device 2, namely the left bearing shaft 2a in the left bearing device 2 and the right bearing shaft 2a in the right bearing device 2.
  • connection of the actuating rod 1 to the bearing devices 2, 2 is a so-called Axial gleichan gleich in the illustrated embodiments. That is, for connecting the Hebelarmenden to the bearing shaft 2a of the associated bearing device 2 engages an axial connection piece of the bearing shaft 2a in a recess at the free end of the lever arm 1h.
  • Modified embodiments, in which the connection of the lever arms 1h respectively takes place radially on the bearing shaft 2a, are possible with otherwise the same configuration.
  • the bearing device 2 is formed in each case of a bearing body 2k.
  • the bearing body 2k is U-shaped in cross section. It has a bearing plate 2p, projecting from the vertically upwards U-legs 2u.
  • the U-legs 2u have cursing bearing receivers.
  • the bearing mounts are penetrated by the respective associated bearing shaft 2a such that the bearing shaft in each case with their ends in the associated bearing mounts in the U-legs 2u are rotatably mounted about the axis XA.
  • one end of the bearing shaft 2a is inserted directly in the bearing recess and rotatably supported, the other end of the bearing shaft carries a rotatably mounted on the bearing shaft 2a bearing bush 2b, which is rotatably inserted in the associated bearing receptacle.
  • a leg spring 2s is mounted in each case, which, as FIG. 2b shows, with its one end to a stop pin in the U-leg 2u and supported with its other end a fixed to the bearing shaft 2a Hebelmit facilitator 2m.
  • the hexagon engages twice in the bearing receptacle of the lever arm 1h.
  • a coupling pin 3k provided with a rotatably connected driver 3m.
  • the coupling pin 3k engages in a locknut, not shown in the figures, which is part of the lock mechanism mounted in the door leaf.
  • the lock nut represents a rotary receptacle of the lock mechanism. It is arranged so that the coupling pin 3k can be inserted in axial alignment.
  • the coupling pin has a square. The lock nut drives the lock mechanism by the coupling pin 3k is rotated by actuation of the actuating rod 1.
  • a gear is arranged, which causes a rotation of the coupling pin 3k upon rotation of the bearing shafts 2a.
  • the transmission is formed by that on the bearing shaft 2a rotatable lever cam 2m and 3k on the coupling pin rotatable driver 3m cooperate, ie the lever cam 2m actuates the driver 3m, while the operating rod 1 is pivoted by pressing down manually.
  • the leg spring 2s is stretched. It serves after the actuation of the push rod to reset it again under the action of the spring 2s.
  • the lock is preferably designed as a plug lock concealed in the door mounted.
  • the lock bolt cooperates with a locking plate formed in the stationary door frame or in an adjacent inactive leaf.
  • the lock can also be designed as a lock mounted on the door leaf.
  • the controlled by the actuating rod latch can interact with a resting on the stationary door frame mounted strike plate.
  • the lock may preferably be located in the actuating bar means, e.g. be integrated in a bearing housing.
  • FIG. 5 shows a door leaf 17 on the inside of an actuating rod handle 1 and on the outside of a doorknob or door handle 10 is mounted.
  • the operating rod handle 1 is a handlebar, ie type A actuating rod, namely an embodiment according to the embodiments of FIGS. 1 to 4 , It is a handle bar, in which the left and right lever arm 1h, 1h of the actuating rod is connected axially to the horizontal bearing shaft of the associated bearing device 2, ie, an embodiment of the so-called axial concept.
  • the pivot axis XA which is thus a so-called handlebar forming actuating rod 1, in the illustration in FIG. 5 located. It runs perpendicular to the plane of the drawing.
  • the knob or door handle 10 which is mounted on the outside of the door leaf TF, is also shown only schematically. It is essential that the axis X of the doorknob or pusher 10 is disposed at the same height above the ground, in which the pivot axis XA of the handle bar extends and also the axis XN of the nut of the built-in mortise mortise lock is arranged.
  • the attachment of the handle bar 1 in the hole pattern of the rosette of the mounted on the outside of the door handle or door knob 10 takes place.
  • the bearing device 2 of the actuating rod device via an adapter plate 5, which does not form part of the invention, mounted on the door leaf.
  • the adapter plate 5 is arranged between the bearing plate 3p of the bearing body 3k and the top of the door leaf TF, as shown in FIGS FIGS. 2b and 3b best seen.
  • the adapter plate 5 is shown as a single part.
  • the adapter plate 5 has a central passage opening for the coupling pin 3k.
  • the passage opening is referred to above as the connection opening.
  • this through-opening of the adapter plate 5 is arranged in alignment with the through-opening of the bearing plate 2p in such a way that the central center axes of the through-openings are aligned with each other.
  • the adapter plate has 5 mounting holes 5f, which are provided for attachment to the door TF.
  • the fastening holes 5f are designed as countersunk holes, so that the fastening screws can engage flatly with their screw head. In the illustration in FIG. 2a and FIG. 3a are shown in the mounting holes 5f no fastening screws inserted.
  • the mounting holes 5f in the adapter plate 5 are formed in a first hole pattern, which is identical to the hole pattern of the mounting holes in the door leaf TF.
  • the hole pattern of the mounting holes in the door leaf TF is standardized for standard doors.
  • the adapter plate 5 is placed with the hole pattern of their mounting holes 5f on the relevant hole pattern of the door leaf.
  • the bearing plate 2p has mounting holes 2f, which are arranged in a second hole pattern. These mounting holes are aligned in the mounting position with threaded pin 5g, which protrude from the adapter plate 5 upwards.
  • the second hole pattern which thus form the fastening holes 2f in the bearing plate 2p, is the drilling pattern of so-called long rosettes in the illustrated exemplary embodiments.
  • the first hole pattern which is formed in the door leaf TF, in the illustrated embodiments, the Bohrstory of so-called round rosettes.
  • the mounting holes of this first hole pattern are arranged side by side in a horizontal line.
  • the holes of the second hole pattern are arranged in a vertical line with each other.
  • the hole spacing of the holes of the second hole pattern is greater than the hole spacing of the holes of the first hole pattern.
  • the vertical line connecting the holes of the second hole pattern intersects the horizontal Connecting line of the holes of the first hole pattern in the arrangement of a cross, wherein the crossing point in the center of the superimposed adapter plate 5 and bearing plate 2p is located in the center of the coupling pin 2k receiving receiving openings.
  • the mounting holes 5f are arranged in opposite lateral edge regions of the adapter plate 5 and indeed in areas that are not covered by the resting in the mounting position bearing plate 2p of the bearing device 2.
  • the mounting holes 5f and fastening screws inserted therein are thus accessible from outside in the mounting position.
  • the FIGS. 2a and 3b show the mounting holes 5f without fixing screws used.
  • the mounting holes 2f in the bearing plate 2p of the bearing device 2 are also accessible in the mounting position. They are arranged in the region of the two ends of the bearing plate 2p between the two U-legs 2u of the bearing body 2k.
  • the FIGS. 2a and 3b show how in the mounting position the threaded pin 5g of the adapter plate 5 engage through the mounting holes 2f of the bearing plate and in each case via a nut screwed onto the free end of the threaded pin 5g screw connection is made.
  • a cover 6 is placed on the bearing device 2.
  • the cover 6 covers the entire storage device 2 and the underlying adapter plate 5 from.
  • the cover 6 has for this purpose a special shape design in such a way that it hat-shaped or cap-shaped with an upper head portion, the bearing device. 2 covered and a lower extension portion which covers the adapter plate 5, including the bearing plate 2p projecting side portions of the adapter plate. 6
  • the operating rod handle on a special structural design which is characterized by a shell structure of the lever arms 1h.
  • the lever arms 1h are composed in the illustrated embodiments of two shell parts 1h1, 1h2.
  • a bearing recess ha is formed for the rotationally fixed receiving the bearing shaft 2a.
  • the Lagerausströmung ha is formed as a closed recess which rotatably receives as a plug-in receptacle, the terminal end of the bearing shaft 2a. Closed recess means that the edge of the recess ha surrounds the circumference of the connection end of the bearing shaft 2a, that encloses.
  • this bearing receptacle ha is as complementary in cross section with the cross section of the connecting end of the bearing shaft 2a, in the illustrated specific case in each case as a cross section with hexagonal contour.
  • the other shell part has 1h2 in the mounting position on the shell part 1h1 in the manner of a cover to form the lever arm 1h forming composite body.
  • the superimposed shell parts 1h1, 1h2 form a retaining recess hb for receiving the actuating rod 1.
  • a half hb1, hb2 of the retaining recess hb is formed in the two shell parts 1h1, 1h2 formed in the respective end portion.
  • the Halterungsaus Principleung hb as shown in the Figures 1b and 1c is recognizable, an elongated cross section.
  • the actuating rod 1 has a complementary cross section, so that it is rotatably supported in its mounted position in the receptacle HB.
  • the assembly is preferably carried out so that the actuating rod 1 is inserted with its end in the holder half of the shell part 1h1 and then the shell part 1h2 is placed on the shell part 1h1 and the two shell parts 1h1 and 1h2 are clamped together via the screw.
  • a screw In the exploded views of the Figures 1b and 1c 1h is provided for each lever arm for this purpose a screw. To produce the screw, the screw is inserted with its screw shank into a through hole in the shell part 1h1 to stop and screwed the end of the screw in a formed in the shell part 1h2 threaded hole.
  • the shell part 1h2 is formed in the case shown in the figures each in the manner of a cover.
  • the shell part has transversely to its longitudinal extent a cross-section which is angular, consisting of two legs arranged at right angles to each other.
  • the upper leg rests on the upper side of the shell part 1h1.
  • the lateral leg covers the side of the lever arm 1h, namely the outside, which faces away from the actuating rod.
  • This leg also covers the outer end side of the support receptacle, in which the end of the actuating rod 1 is inserted. This gives the lever arm 1h on its outer side, which faces away from the actuating rod 1, a closed cover, which is formed by the shell part 1h2.
  • the shell part 1h2 thus covering the outer side surface of the respective lever arm 1h extends on the upper side of the lever arm 1h from the lower end to over part of the upper end of the shell part 1h1 forming the bearing recess having.
  • the lever arm 1h in plan view from above largely or almost completely covered by the shell part 1h2.
  • the two lever arms 1h each have a longitudinal joint on the inner sides facing each other, which is formed by the longitudinal edges of the shell parts 1h1 and 1h2 adjoining one another in this area.
  • FIG. 1sm The shell structure of the in the FIGS. 1a to 1d illustrated embodiment, which does not form part of the invention, but facilitates the understanding of the invention, is in FIG. 1sm again shown very schematically.
  • the first shell part 1h1 has the Lageraus Principleung ha, which is designed as enclosing bearing receptacle for the terminal end of the bearing shaft 2a and the first shell part 1h1 and the second shell part 1h2 each have a first portion and a second portion respectively as a partial receptacle for the Connecting end of the actuating rod 1 have.
  • These two partial receptacles form a common composite mounting receptacle hb which encloses the connection end of the actuating rod 1.
  • the Figure 1er shows a modification according to the present invention over the embodiment in FIG. 1sm ,
  • the modification consists in that the first shell part 1h1 has an enclosing retaining receptacle hb for the connection end of the actuating rod 1.
  • the first shell part 1h1 and the second shell part 1h2 each have a partial receptacle for the connection end of the bearing shaft 2a.
  • the two sub-images form a composite AufEnglishung ha, which encloses the terminal end of the bearing shaft 2a.
  • the exemplary embodiments of the operating rod handle with handle bar shown in the figures can be mounted on the door leaf TF using the adapter plate 5, which does not form part of the invention.
  • the hole pattern of the adapter plate 5 makes it possible to mount the bearing device 2 of the operating rod handle in the hole pattern of the door leaf TF.
  • the hole pattern of the door leaf is formed in the illustrated case as a hole pattern of a round rosette, i. two holes in a horizontal row of holes.
  • the hole pattern of the adapter plate 5 corresponds to this hole pattern.
  • the bearing plate 2p integrated in the bearing device 2 of the actuating rod handle has its own hole pattern, which in the case illustrated is the hole pattern of a vertical rosette, i. two holes in a vertical row of holes.
  • the actuating rod handle with the bearing device 2 with integrated bearing plate 2p with hole pattern of the vertical rosette can be formed as a standard version of the actuating rod handle.
  • the fitter then sets each on site for mounting the bearing device 2 on the door TF the adapter plate 5, which has a hole pattern of the door corresponding hole pattern. It is advantageous if a number of different adapter plates, each with a different hole pattern available. It must then be selected in each case the adapter plate, which has the matching to the hole pattern of the door leaf hole pattern.
  • the selection of the adapter plate 5 and its attachment to the bearing device 2 already takes place in the context of manufacturing to produce different versions of the actuating rod handle with a bearing device 2, each with a specific hole pattern.
  • a manufacturing kit may be provided, in which the bearing device 2 and the adapter plate 5 each represent separate components.
  • the component bearing device 2 can be designed as a standard component, which is present only in one embodiment, while the component adapter plate 5in different versions may be included in the manufacturing kit.
  • the different versions of the adapter plate 5 then differ in each case in the hole pattern.
  • the component bearing device 2 and the matching version of the adapter plate component is combined by the relevant adapter plate is mounted in or on the bearing device 2 in the context of manufacturing so that the hole pattern of the adapter plate is accessible to the Mount the bearing device 2 on the door leaf using the fastening screws.
  • the component bearing device 2 has no bearing plate 2p with its own hole pattern, but instead of the bearing plate 2p with a hole pattern, the bearing device 2 only has a bottom-side abutment region on which the adapter plate 5 can be attached during production ,
  • the adapter plate 5 is formed in this case as a component in different designs, the different versions differ in that they have different hole pattern.
  • 5 different versions of the bearing device 2 can be formed in the context of manufacturing depending on the design of the adapter plate.
  • the adapter plate 5 could be mounted in or on the abutment region of the bearing device 2, for example by welding or other joining connection.
  • the bottom-side abutment region of the storage device 2 can already be prepared for such a compound, for example as a bottom side Frame or bottom plate with corresponding recess in the area in which the adapter plate 5 has the holes of the mounting hole pattern.
  • actuating rods that is to say so-called grip rods, which are pivotable for actuation about a horizontal axis of rotation.
  • actuating rods are designed as a type B actuating rods (see DIN EN 1125), that is called pressure rods which are movable for actuation perpendicular to the wing plane in the manner of a linear sliding movement.
  • DIN EN 1125 a type B actuating rods
  • the installation of these modified embodiments with type B actuating rod can be made with respect to the assembly in holes certain hole pattern, if necessary, with adapter plate, comparable as shown in the figures.
  • the bearing means of the type B actuating rod handle may have a corresponding borehole image as the bearing means 2 of the type A actuating rod handle, which are shown in the figures.
  • the bearing plates can also be integrated as a continuous bottom plate in the bearing device 2 with a left and a right end portion of the bottom plate, in which the mounting holes are formed in the respective hole pattern.
  • one or more adapter plates in the end portion or a continuous common adapter plate can be mounted on this bearing plate or the bearing plate or bearing plates can be replaced by appropriate adapter plates or supplemented by applying the adapter plates to the adapter plates via the hole pattern or to obtain the hole patterns over which the bearing device 2 can be fastened on the wing by means of the fastening screws.

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  • Business, Economics & Management (AREA)
  • Emergency Management (AREA)
  • Lock And Its Accessories (AREA)
  • Hinges (AREA)

Claims (14)

  1. Poignée d'actionnement pour une serrure d'une porte avec un cadre de porte stationnaire et un battant de porte qui y est logé de manière mobile,
    dans laquelle la poignée d'actionnement comprend une barre d'actionnement (1), un premier dispositif de palier (2) et un deuxième dispositif de palier (2) et
    les dispositifs de paliers (2 ; 2) étant conçus de façon à ce qu'ils comprennent chacun un arbre de palier (2a), qui est couplé de manière fixe en rotation avec un taquet, par l'intermédiaire duquel un fouillot de la serrure peut être actionné,
    dans laquelle il est prévu
    a) la barre d'actionnement (1) comprend, au niveau de sa première extrémité, un premier bras de levier (1h) et, au niveau de sa deuxième extrémité, un deuxième bras de levier (1h),
    b) le premier dispositif de palier (2) correspond au premier bras de levier (1h) et le deuxième dispositif de palier (2) correspond au deuxième bras de levier (1h), grâce au fait que, dans le premier dispositif de palier (2), le premier bras de levier (1h) est logé de manière pivotante avec son extrémité libre et, dans le deuxième dispositif de palier (2), le deuxième bras de levier (1h) est logé de manière pivotante avec son extrémité libre et les dispositifs de paliers (2, 2) peuvent être montés sur la porte de façon à ce que ses arbres de paliers (2a) s'alignent entre eux en formant un axe horizontal commun (XA) et la barre d'actionnement peut pivoter autour de cet axe horizontal (XA),
    c) le premier bras de levier (1h) et le deuxième bras de levier (1h) sont conçus chacun comme un corps constitué d'au moins deux parties de coque, à savoir d'au moins un corps assemblé (1h) constitué d'une première partie de coque (1h1) et d'une deuxième partie de coque (1h2),
    d) la première partie de coque (1h1) comprend, au niveau d'une de ses extrémités, une première portion d'un logement de palier (ha) de l'arbre de palier (2a) du dispositif de palier (2) correspondant au bras de levier (1h) et comprend, au niveau de son autre extrémité, un logement de maintien englobant (hb) de l'extrémité, correspond au bras de levier (1h), de la barre d'actionnement (1),
    e) la deuxième partie de coque (1h2) comprend, au niveau d'une de ses extrémités, une deuxième portion du logement de palier (ha) mentionné de l'arbre de palier (2a) du dispositif de palier (2) correspond au bras de levier (1h).
  2. Poignée d'actionnement selon la revendication 1,
    caractérisée en ce que
    la première partie de coque (1h1) et la deuxième partie de coque (1h2) sont reliées de manière amovible entre elles en formant le corps assemblé (1h).
  3. Poignée d'actionnement selon la revendication 2,
    caractérisée en ce que
    pour la liaison amovible un dispositif de liaison vissée ou un dispositif de liaison par encliquetage est prévu.
  4. Poignée d'actionnement selon l'une des revendications précédentes,
    caractérisée en ce que
    la première partie de coque (1h1) et la deuxième partie de coque (1h2) sont disposées dans le corps assemblé (1h) en s'appuyant directement l'une sur l'autre.
  5. Poignée d'actionnement selon l'une des revendications précédentes,
    caractérisée en ce que
    le corps assemblé (1h) formant le premier bras de levier (1h) et le corps assemblé (1h) formant le deuxième bras de levier (1h) est constitué de la première partie de coque (1h1), d'un corps intermédiaire en une ou plusieurs parties et de la deuxième partie de coque (1h2).
  6. Poignée d'actionnement selon l'une des revendications précédentes,
    caractérisée en ce que
    le corps assemblé (1h) formant le premier bras de levier (1h) ou le corps assemblé (1h) formant le deuxième bras de levier (1h) est constitué de la première partie de coque (1h1), d'un corps intermédiaire en une ou plusieurs parties et de la deuxième partie de coque (1h2).
  7. Poignée d'actionnement selon l'une des revendications précédentes,
    caractérisée en ce que
    la première partie de coque (1h1) et la deuxième partie de coque (1h2) constituent toute la surface externe du corps assemblé (1h).
  8. Poignée d'actionnement selon l'une des revendications précédentes,
    caractérisée en ce que
    sur le corps assemblé (1h) formant le premier bras de levier (1h) et sur le corps assemblé (1h) formant le deuxième bras de levier (1h), la première partie de coque (1h1) et la deuxième partie de coque (1h2) sont adjacentes au niveau de leurs bords au moins à certains endroits en formant une jonction,
    dans laquelle la jonction est conçue comme une jonction longitudinale qui s'étend dans la direction de l'extension longitudinale du bras de levier.
  9. Poignée d'actionnement selon la revendication 8,
    caractérisée en ce que
    le premier bras de levier (1h) et le deuxième bras de levier (1h) comprennent chacun la jonction longitudinale au niveau de côtés orientés l'un vers l'autre.
  10. Poignée d'actionnement selon l'une des revendications précédentes,
    caractérisée en ce que
    la section transversale de la première partie de coque (1h1) ou de la deuxième partie de coque (1h2) est conçue de façon à être pliée transversalement par rapport à l'extension longitudinale de la partie de coque,
    dans laquelle une des branches est conçue de façon à ce qu'elle recouvre entièrement ou au moins globalement entièrement un côté du bras de levier (1h) opposé à l'autre bras de levier (1h).
  11. Poignée d'actionnement selon l'une des revendications précédentes,
    caractérisée en ce que
    la section transversale de la première partie de coque (1h1) et de la deuxième partie de coque (1h2) est conçue de façon à être pliée transversalement par rapport à l'extension longitudinale de la partie de coque,
    dans laquelle une des branches est conçue de façon à ce qu'elle recouvre entièrement ou au moins globalement entièrement un côté du bras de levier (1h) opposé à l'autre bras de levier (1h).
  12. Poignée d'actionnement selon l'une des revendications précédentes,
    caractérisée en ce que
    le dispositif de palier (2) comprend un corps de palier (2k) dans lequel l'arbre de palier (2a) est logé de manière rotative,
    dans laquelle, à une extrémité de l'arbre de palier (2a), est raccordé le corps assemblé (1h) formant le bras de levier (1h), grâce au fait que l'arbre de palier (2a) s'emboîte axialement de manière immobilisée en rotation dans l'évidement de palier (ha) dans la partie de coque (1h1).
  13. Poignée d'actionnement selon l'une des revendications précédentes,
    caractérisée en ce que
    le dispositif de palier (2) est conçu de façon à ce qu'il puisse être couplé avec la serrure qui est conçue comme une serrure se trouvant dans le battant, plus particulièrement une serrure encastrée.
  14. Poignée d'actionnement selon l'une des revendications précédentes,
    caractérisée en ce que
    le dispositif de palier (2) est conçu de façon à ce qu'il puisse être couplé avec la serrure qui est conçue comme une serrure en applique.
EP15156897.9A 2014-03-12 2015-02-27 Poignée conçu comme une barre dotée de bras de levier présentant une structure à coque Active EP2918757B1 (fr)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
DE102014103339.6A DE102014103339A1 (de) 2014-03-12 2014-03-12 Betätigungshandhabe als Griffstange ausgebildet mit Hebelarmen, die einen Schalenaufbau aufweisen

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EP2918757B1 true EP2918757B1 (fr) 2019-01-02

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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2719048A (en) * 1952-04-24 1955-09-27 American Hardware Corp Door latch assembly
DE102012025514A1 (de) * 2012-09-13 2014-03-13 Assa Abloy Sicherheitstechnik Gmbh Beschlag mit Betätigungshandhabe für eine Tür, Fenster oder dergleich mit Adapterlagerplatte

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* Cited by examiner, † Cited by third party
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DE102014103339A1 (de) 2015-10-01

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