EP3336284B1 - Corps de butée pour poignée d'actionnement, poignée d'actionnement et porte - Google Patents

Corps de butée pour poignée d'actionnement, poignée d'actionnement et porte Download PDF

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Publication number
EP3336284B1
EP3336284B1 EP17207487.4A EP17207487A EP3336284B1 EP 3336284 B1 EP3336284 B1 EP 3336284B1 EP 17207487 A EP17207487 A EP 17207487A EP 3336284 B1 EP3336284 B1 EP 3336284B1
Authority
EP
European Patent Office
Prior art keywords
handle
spring
bearing
bushing
rotation
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.)
Not-in-force
Application number
EP17207487.4A
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German (de)
English (en)
Other versions
EP3336284A1 (fr
Inventor
Markus Tröger
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.)
Hoppe AG
Hoppe AG St Martin
Original Assignee
Hoppe AG
Hoppe AG St Martin
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Publication date
Application filed by Hoppe AG, Hoppe AG St Martin filed Critical Hoppe AG
Publication of EP3336284A1 publication Critical patent/EP3336284A1/fr
Application granted granted Critical
Publication of EP3336284B1 publication Critical patent/EP3336284B1/fr
Not-in-force legal-status Critical Current
Anticipated expiration legal-status Critical

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Classifications

    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05BLOCKS; ACCESSORIES THEREFOR; HANDCUFFS
    • E05B15/00Other details of locks; Parts for engagement by bolts of fastening devices
    • E05B15/0053Other details of locks; Parts for engagement by bolts of fastening devices means providing a stable, i.e. indexed, position of lock parts
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05BLOCKS; ACCESSORIES THEREFOR; HANDCUFFS
    • E05B3/00Fastening knobs or handles to lock or latch parts
    • E05B3/06Fastening knobs or handles to lock or latch parts by means arranged in or on the rose or escutcheon
    • E05B3/065Fastening knobs or handles to lock or latch parts by means arranged in or on the rose or escutcheon with spring biasing means for moving the handle over a substantial distance, e.g. to its horizontal position
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05BLOCKS; ACCESSORIES THEREFOR; HANDCUFFS
    • E05B63/00Locks or fastenings with special structural characteristics
    • E05B63/04Locks or fastenings with special structural characteristics for alternative use on the right-hand or left-hand side of wings
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05BLOCKS; ACCESSORIES THEREFOR; HANDCUFFS
    • E05B1/00Knobs or handles for wings; Knobs, handles, or press buttons for locks or latches on wings
    • E05B2001/0076The handle having at least two operating positions, e.g. the bolt can be retracted by moving the handle either upwards or downwards

Definitions

  • doors with an actuating handle for opening and closing the door are known.
  • an additional locking function is provided for the door, which can only be operated from one side of the door, for example in doors in the sanitary area.
  • An operating concept is to provide, in addition to a handle, an additional operating element, for example a rotary element or a key, on the door with which the locking mechanism is actuated.
  • locking mechanisms In addition to these operating concepts locking mechanisms are known in which the operation of the locking mechanism takes place exclusively on the handle.
  • the handle can to open the door, so to retract a spring-loaded from the locking mechanism projecting latch can be pivoted in an operating direction.
  • the handle is arranged in a basic position substantially horizontally and is pressed in the direction of actuation down.
  • the handle is pivoted upwardly against the actuating direction, whereby the latch is locked in the closed position in which the latch protrudes from the locking mechanism, and / or an additional locking latch is moved out of the locking mechanism.
  • To release the lock the handle is pivoted in the direction of actuation in the basic position. The unlocking and opening of the door can thus be done with one hand, especially in a flowing hand movement.
  • the EP 0 239 855 B1 discloses a lock with a pawl which is rotatably mounted between two with respect to a rotational axis arranged latching positions.
  • stop body In order to hold the handle in the locking position or the basic position, stop body are known, which have a locking for the locking position, so that the handle can not inadvertently get into the normal position and the lock can be canceled. Furthermore, the stopper body to act on the handle, for example, after opening the door, from the open position back to the basic position.
  • the operating direction changes depending on the mounting of the operating handle or the handle on the left or the right side of a door.
  • the previously known stopper bodies have the disadvantage that they are only suitable for one side of the door.
  • the spring forces and the latching positions are each designed only for a stop of the actuating handle or the handle on the left or the right side of a door, so only for one direction of actuation. So it must always be kept in stock, two different types of stop bodies, which increases the storage and also the production cost.
  • there is a risk of incorrect assembly whereby the assembly costs due to the then necessary replacement of the stopper body may increase additionally.
  • the DE 20 2007 000 380 U1 discloses a universally usable return spring device that can be used for both right and left hand grips.
  • a stop body for an actuating handle for a door or a window is provided with a housing, a spring counter-bearing, which is rotatably mounted in the housing about a rotational axis between two offset relative to the axis of rotation about a locking angle arranged latching positions, a socket which rotatably mounted about the axis of rotation in the housing, and having a centrally disposed receptacle for a handle, and a spring element which is coupled to the spring counter-bearing and the sleeve and upon rotation of the sleeve relative to the spring counter-bearing about the axis of rotation by a rotational angle from a rest position is biased out and pushes the bush back to the rest position.
  • the handle is rotatably mounted in the housing via the socket.
  • the spring pad which is coupled to the sleeve via the spring element.
  • two locking positions for the handle are provided. These latching positions are arranged so that the handle is held in each case in a latching position in the basic position and in the respective other latching position in the locking position.
  • the front in the respective actuating direction latching position respectively forms the latching position for the basic position, each in the direction of actuation rear latching position forms the latching position for the locking position.
  • the stopper body can thus be mounted both on the left and on the right side of the door, It is only necessary to pay attention to it during assembly, that the spring counter-bearing during assembly of the handle in the home position in each case in the direction of actuation latching position located.
  • the angle of rotation corresponds in each case essentially to the angle of the handle between the basic position and the open position.
  • the locking angle corresponds in each case substantially to the angle of the handle between the basic position and the locking position
  • the sleeve is not or only slightly moved from the rest position relative to the spring counter bearing in a pivoting of the spring counter between the locking positions, ie moving the handle between the basic position and the locking position.
  • the spring element is preferably pretensioned, so that a defined rotational force is required for rotating the bushing relative to the spring abutment from the rest position. This torque is greater than the release force to release the spring pad from one of the detent position.
  • the detent positions define the detent angle of the spring counter bearing. That is, the spring counter bearing can not be pivoted beyond the locking angle.
  • stops for the spring counter bearing are provided on the housing, which the locking angle limit.
  • the plane of symmetry is arranged perpendicular to a door in the assembled state of the stopper body.
  • the assembly of the stopper body is facilitated.
  • the stop body must only be mounted so that the plane of symmetry is vertical. Subsequently, the spring counter bearing can be moved in the direction of actuation in the front latching position and coupled in this locking position of the handle in the normal position with the socket.
  • the receptacle has, for example, two torque transmission profiles for receiving the handle, wherein the torque transmission profiles are arranged offset with respect to the axis of rotation by the amount of the locking angle.
  • the torque transmission profiles are chosen so that a handle in each selected for the direction of actuation front detent position in a desired position, for example, with a horizontal course, can be mounted.
  • the stopper body must therefore be mounted vertically only with respect to its plane of symmetry and the spring counter bearing are moved to the front relative to the selected actuating direction locking position. Subsequently, the handle can be used in the specific for the respective direction of actuation of the two torque transmission profiles.
  • the housing is, for example, pot-shaped and surrounds the spring counter bearing and the sleeve with respect to the axis of rotation in the circumferential direction.
  • the housing may be mounted to a door leaf so that the spring seat, sleeve, and spring element are protected between the door leaf and the cup-like housing.
  • locking elements are provided which define the locking positions.
  • the locking elements are formed, for example, in each case by at least one with respect to the axis of rotation radially projecting locking attachment and at least one with respect to the axis of rotation in the radial direction open latching receptacle.
  • the bushing may have a cylindrical, concentric with the axis of rotation arranged extension which projects into a relative to the axis of rotation concentric bushing receptacle in the housing.
  • the receptacle for the handle is formed in this extension, whereby on the one hand the handle can be securely held in the socket and on the other hand, a good transfer of the forces acting on the handle during operation can be done on the housing.
  • the spring counter bearing preferably has a bearing receptacle arranged concentrically to the axis of rotation, through which extends the cylindrical extension of the bush, so that the spring counter bearing is rotatably mounted on the bushing.
  • the spring element preferably extends in the circumferential direction about the axis of rotation and has at the ends in each case a radially projecting leg, wherein the spring counter-bearing and on the bush each spring stops are provided, against which the legs in each case, in particular biased.
  • the locking angle is preferably from 40 ° to 80 °, in particular from 50 to 70 °.
  • the handle is pivotable about the axis of rotation between a basic position, an open position and a locking position, wherein the handle is pivoted from the basic position in an operating direction in the open position and is pivoted from the basic position opposite to the actuating direction in the locking position.
  • In the basic position of the handle are the spring counter bearing in the front in the direction of actuation locking position and the socket in the rest position relative to the spring counter bearing.
  • the spring counter-bearing In the open position of the handle, the spring counter-bearing is in the direction of actuation in the front latching position and the sleeve is pivoted from the rest position relative to the spring abutment and is urged back by the spring element in the rest position.
  • the spring counter bearing In the locking position of the handle, the spring counter bearing are in the direction of actuation rear locking position and the sleeve in the rest position relative to the spring counter bearing.
  • a door is provided with such an actuating handle and with a locking mechanism.
  • the locking mechanism is coupled to the actuating handle such that when the handle is pivoted from the basic position into the open position, a latch spring-loaded in the normal position of the handle in a closing position is moved into an opening position into the closing mechanism. Upon pivoting the handle into the locking position, the latch is fixed in the closed position and / or a locking latch is moved out of the locking mechanism.
  • FIGS. 1a and 1b For example, a door 10 having a door panel 12, a latch mechanism 14, and an actuating handle 16 is shown.
  • the door 10 is hinged about an axis A, the axis A being disposed at an edge of the door 10 opposite to the edge where the locking mechanism 14 and the actuating handle 16 are provided.
  • the locking mechanism 14 has a base body 18, in which a latch 20 and a locking bolt 22 are provided.
  • the latch 20 is urged spring loaded from the base body 18 and know an inclined guide surface 24, which can come into contact with a frame when closing the door 10, whereby the case 20 is urged into the base body 18. After fully closing the door 10, the latch 20 can deflect into a recess on the frame and hold the door 10 in a closed position. To open the door 10, the latch 20 can be withdrawn into the main body 18, so that the door 10 is released again.
  • the locking bolt 22 may consist of the in FIG. 1a shown position in the base body 18 in an in FIG. 1b shown locking position are moved, in which the locking bolt 22 protrudes from the body and preferably into a recess on the frame of the door 10.
  • the actuation of the locking mechanism 14 via the actuating handle 16 has a subsequently explained in detail stop body 26 and a handle 28, which via a bolt 30 (see FIG. 2 ) is coupled to the stopper body 26 and the lock mechanism 14.
  • the bolt 30 may also be part of the handle 28 or rotatably connected in advance with this.
  • the remaining components of the actuating handle are well known and are therefore not explained in detail.
  • the handle 28 is about the longitudinal axis L of the bolt 30 between the in FIG. 1a shown basic position in an actuating direction B in one in the FIGS. 5a and 5b shown opening position and counter to the direction of actuation B in an in FIG. 1b as well as in the FIGS. 6a to 6c shown locking position pivoted.
  • the latch 20 In the open position, the latch 20 is pulled into the base body 18 of the locking mechanism via the bolt 30 and the closing mechanism 14. If no force acts on the handle 28, it springs back from the open position into the basic position, with the result that the latch 20 springs out of the main body 18.
  • the locking bolt 22 is moved out of the main body 18 of the locking mechanism 14. If the handle 28 is pivoted back into the basic position, the locking bolt 22 is moved back into the base body 18. In the locking position, the handle 28, as will be explained below, is locked by the stopper body 26, so that the handle 28 can not inadvertently get out of the locking position into the basic position.
  • a second handle 32 is preferably provided, which is only coupled to the case 20 and is movable only between a basic position and an open position.
  • a door 10 is used in the sanitary sector, for example in toilet facilities. From an inner side, on which the handle 28 and the stopper body 26 are arranged, the door 10 can be opened, closed, via the handle 28 and be locked. From the outside, the door 10 can only be opened and closed via the second handle 32 when it is not locked by the handle 28.
  • the stopper body 26 defines the positions of the handle 28, that is a basic position, an opening position lying in the actuating direction in front of the basic position and a locking position lying in the actuating direction behind the basic position. That is, the handle 28 must be locked in the locked position so that the handle 28 can not inadvertently get out of the locked position into the basic position. Furthermore, the handle 28 is to spring from the open position into the basic position, so that the door 10 can be closed.
  • the actuation direction B Depending on the edge of the door 10, on which the door 10 is struck or on which the locking mechanism 14 and the actuating handle 16 are provided, varies the actuation direction B. Is the door 10, as in the FIGS. 1a and 1b viewed in a plan view of the door leaf from the interior, hinged on the right edge or are the closing mechanism 14 and the actuating handle 16 at the left edge, the operating direction B is clockwise. In a stop of the door 10 on the left edge, the operating direction B would run counterclockwise.
  • the stopper body 26 has a housing 34, a spring abutment 36, a socket 38 and a spring element 40.
  • the housing 34 is substantially pot-shaped, with a flat, substantially circular plate 42 and a cylindrical peripheral wall 44, which together define a receiving space 46.
  • the plate 42 is broken by a concentrically arranged bush receptacle 48.
  • two stops 50, 52 are provided for the spring abutment 36 and the socket 38 respectively. Furthermore, in the peripheral wall 44, two radially resilient Sections 54 are provided, on whose inner circumference in each case a radially inwardly projecting latching projection 56 is provided.
  • the latching projections 56 are offset relative to a rotation axis D by a locking angle R.
  • the locking angle is in a range of 40 ° to 80 °, in particular from 50 ° to 70 °, in particular at about 60 °.
  • the housing 34 further includes holes 55 for attachment means 57 (see FIG. 2 ) for attaching the stopper body 26 on the door leaf 12.
  • the bush 38 has a cylindrical extension 58, via which the bushing 38 is mounted rotatably about the axis of rotation D in the bush receptacle 48 of the housing 34, and in which a concentrically arranged receptacle 60 for the handle 28 or for the handle 28th coupled bolt 30 is provided.
  • the receptacle 60 has two, with respect to the rotation axis D offset by the locking angle R torque shots, which are each formed in the embodiment shown here by a square profile for receiving the bolt 30.
  • a radially projecting collar 62 is furthermore provided, with a spring stop 64 extending radially away and bent in the direction of the axis of rotation D and in the direction of the plate 42 of the housing 34.
  • the spring abutment 36 has a cylindrical bearing seat 66 through which the extension 58 of the bushing 38 extends.
  • the spring counter bearing 36 is rotatably mounted about the rotation axis D in the housing 34.
  • On the outer circumference of the bearing seat 66 two, in the circumferential direction opposite webs 68, 70 are provided.
  • a latching receptacle 72 is provided, into which the latching projections 56 provided on the housing 34 can engage.
  • On the opposite web 70 in the direction of the axis of rotation D, facing away from the plate 42 of the housing spring stop 74 is provided.
  • a radially encircling receiving gap 76 is formed for the spring element 40.
  • the spring element 40 extends with a spring portion 78 in the circumferential direction about the axis of rotation D, wherein the inner diameter of the spring portion 78 is greater than the outer diameter of the bearing seat 66 of the spring bearing 36.
  • the spring portion 78 surrounds the bearing seat 66 in the circumferential direction.
  • At the ends of the spring portion 78 is a respective radially projecting legs 80, 82 are provided. With the legs 80, 82, the spring element 40 is located on both sides of the spring stops 64, 74 at.
  • the legs 80, 82 are preferably biased on the spring stops 64, 74 and thus urge the spring counter bearing 36 and the bushing 38 in a rest position relative to each other, in which cover the spring stops 64, 74 in the direction of the axis of rotation D. If the spring counter bearing 36 and the bushing 38 are rotated relative to each other about the axis of rotation D, one leg 80, 82 is taken from the spring stop 74 of the spring bearing 36, while the other leg 82, 80 abuts the spring stop 64 of the sleeve 38 and is held back , By pivoting the legs 80, 82, the spring element 40 is additionally biased and urges so on the spring stops 64, 74, the spring counter-bearing 36 and the bushing 38 back to the rest position in which cover the spring stops 64, 74.
  • the spring counter bearing 36 is in the housing 34 between two locking positions, in each of which one of the latching projections 56 engages in the latching receptacle 72 to the locking angle R rotatable.
  • the range of rotation of the spring counter bearing 36 is additionally limited by the stops 50 for the spring counter bearing 36, in which the web 68 in each case abuts when one of the locking projections 56 engages in the locking receptacle 72.
  • the pivoting range of the bushing 38 is limited by the stopper 52, on each of which the spring stop 64 or a spring stop 64 entrained limbs 80, 82 comes into abutment.
  • the pivoting angle S of the bushing 38 which is limited by the stops 52, is greater than the locking angle R of the spring counterstay 36.
  • the locking projections 56 and thus the detent positions, the stops 50 for the spring abutment 36 and the stops 52 for the bushing 38 are each arranged with a play image with respect to a plane passing through the axis of rotation D, here perpendicular plane of symmetry.
  • the pivoting range of the sleeve 38 thus projects in the circumferential direction on both sides the same amount, a rotation angle W, beyond the rotational range of the spring thrust 36 addition.
  • stops 50, 52 are formed symmetrically, and, as already explained, a relative rotation of the spring thrust bearing 36 and the sleeve 38 in both directions is possible regardless of the direction of rotation in a rotation of the bushing 38 is initially a movement of the spring counter 36 in in each case in the direction of rotation front detent position and subsequently a rotation of the spring bearing 36 and the sleeve 38 while increasing the bias of the spring element 40th
  • the spring counter bearing 36 is moved in the direction of actuation B of the handle 28 front detent position.
  • the actuating direction B is in the clockwise direction. In a stop of the door 10 on the left edge, the operating direction B would run counterclockwise.
  • the pivot angle of the handle 28 is limited by the stops 52 for the socket 38.
  • the bushing 38 can be rotated so far relative to the spring abutment 36 from the rest position until the spring stop 64 and the respective end of the spring stop 64 entrained legs 80, 82nd of the spring element 40 comes to one of the stops 52 to the plant.
  • the swivel angle is in a range between 150 ° and 190 °, in particular of 160 ° and 180 °.
  • the rear locking position is selected so that the locking bolt 22 is moved out of the main body 18 by the bolt 30 and the closing mechanism 14. Since the spring abutment 36 locked in the rear in the direction of actuation B detent position, coupled via the spring member 40 and the sleeve 38 with the spring abutment 36 handle 28 can not accidentally, for example, by the action of gravity, get into the normal position in which the locking of the door 10 is canceled.
  • the bush 38 can be moved in this position of the spring counter bearing 36 counter to the actuating direction B from the rest position relative to the spring counter bearing 36. If a force acting too high against the direction of actuation B acts on the handle 28, the handle 28 can be moved counter to the direction of actuation B beyond the locking position, whereby the handle 28 springs into the locking position as soon as no or only a small force is exerted on the handle Handle 28 acts. Damage to the stopper body, for example, a displacement of the stops 50, 52 or the locking positions, can be prevented.

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Structural Engineering (AREA)
  • Closing And Opening Devices For Wings, And Checks For Wings (AREA)

Claims (14)

  1. Corps de butée (26) pour une poignée d'actionnement (16) pour une porte (10) ou une fenêtre, avec un boîtier (34), un contre-palier à ressort (36) qui est monté de façon à pouvoir tourner dans le boîtier (34) autour d'un axe de rotation (D) entre deux positions d'accrochage agencées de façon décalée par rapport à l'axe de rotation (D) autour d'un angle d'accrochage (R), et une douille (38) qui est montée de façon à pouvoir tourner autour de l'axe de rotation (D) dans le boîtier (34) et présente un réceptacle (60) agencé au niveau central pour une poignée (28), et un élément à ressort (40) qui est couplé au contre-palier à ressort (36) et à la douille (38) et qui, lors d'une rotation de la douille (38) par rapport au contre-palier à ressort (36) autour de l'axe de rotation (D) autour d'un angle de rotation (W), est précontraint à partir d'une position de repos et pousse la douille (38) à revenir dans la positions de repos.
  2. Corps de butée selon la revendication 1, caractérisé en ce que l'élément à ressort (40) est précontraint dans la position de repos de la douille (38) par rapport au contre-palier à ressort (36), dans lequel la force de rotation pour faire tourner la douille (38) par rapport au contre-palier à ressort (36) à partir de la position de repos est plus grande que la force de relâchement pour relâcher le contre-palier à ressort (36) de l'une des position d'accrochage.
  3. Corps de butée selon l'une quelconque des revendications 1 et 2, caractérisé en ce qu'au niveau du boîtier (34) sont prévues des butées (50) pour le contre-palier à ressort (36), qui limitent l'angle d'accrochage (R), et en ce qu'au niveau du boîtier (34) sont prévues des butées (52) pour la douille (38) qui limitent un angle de pivotement autour duquel la douille (38) peut tourner dans le boîtier (34) autour de l'axe de rotation (D), dans lequel l'angle de pivotement est plus grand que l'angle d'accrochage (R).
  4. Corps de butée selon la revendication 3, caractérisé en ce que les positions d'accrochage, les butées (50) pour le contre-palier à ressort (36) ainsi que les butées (52) pour la douille (38) sont agencées en images miroir par rapport à un plan de symétrie passant par l'axe de rotation (D).
  5. Corps de butée selon l'une quelconque des revendications 3 et 4, caractérisé en ce que l'angle de pivotement est de 150° à 190°, de préférence de 160° à 180°.
  6. Corps de butée selon l'une quelconque des revendications précédentes, caractérisé en ce que le réceptacle (60) présente deux profils de transmission du moment de rotation pour la réception d'une poignée (28), dans lequel les profils de transmission du moment de rotation sont agencés de façon décalée par rapport à l'axe de rotation (D) autour de l'ampleur de l'angle d'accrochage (R).
  7. Corps de butée selon l'une quelconque des revendications précédentes, caractérisé en ce que le boîtier (34) a une forme de pot et entoure le contre-palier à ressort (36) et la douille (38) par rapport à l'axe de rotation (D) dans la direction périphérique.
  8. Corps de butée selon l'une quelconque des revendications précédentes, caractérisé en ce qu'au niveau du contre-palier à ressort (36) et au niveau du boîtier (34) sont prévus des éléments d'accrochage coopérant qui définissent les positions d'accrochage, dans lequel les éléments d'accrochage sont formés respectivement par au moins une proéminence d'accrochage (56) dépassant radialement par rapport à l'axe de rotation (D) et au moins un réceptacle d'accrochage (72) ouvert en direction radiale par rapport à l'axe de rotation (D).
  9. Corps de butée selon l'une quelconque des revendications précédentes, caractérisé en ce que la douille (38) présente un prolongement (58) cylindrique agencé de façon concentrique par rapport à l'axe de rotation (D) qui dépasse dans le boîtier (34) dans un réceptacle de douille (48) concentrique par rapport à l'axe de rotation (D).
  10. Corps de butée selon la revendication 8, caractérisé en ce que le contre-palier à ressort (36) présente un réceptacle de palier (66) agencé de façon concentrique par rapport à l'axe de rotation (D) au travers duquel s'étend le prolongement (58) cylindrique de la douille (38).
  11. Corps de butée selon l'une quelconque des revendications précédentes, caractérisé en ce que l'élément à ressort (40) s'étend en direction périphérique autour de l'axe de rotation (D) et présente au niveau des extrémités respectivement une branche (80, 82) faisant saillie radialement, dans lequel sont prévus au niveau du contre-palier à ressort (36) et de la douille (38) respectivement des butées à ressort (64, 74) au niveau desquelles les branches (80, 82) se trouvent respectivement, en particulier précontraintes.
  12. Corps de butée selon l'une quelconque des revendications précédentes, caractérisé en ce que l'angle d'accrochage (R) est de 40° à 80°, de préférence de 60° à 70°.
  13. Poignée d'actionnement (16) pour une porte (10) ou une fenêtre, avec un corps de butée (26) selon l'une quelconque des revendications précédentes et une poignée (28) qui est couplée de façon fixe à la douille (38), en particulier qui est maintenue de façon fixe dans le réceptacle (60) de la douille (38), dans laquelle la poignée (28) peut être basculée autour de l'axe de rotation (D) entre une position de base, une position d'ouverture et une position de verrouillage, dans laquelle la poignée (28) est basculée de la position de base dans une direction d'actionnement (B) dans la position d'ouverture et est basculée de la position de base opposée à la direction d'actionnement (B) dans la position de verrouillage, dans laquelle, dans la position de base de la poignée (28), le contre-palier à ressort (36) se trouve dans la position d'accrochage avant dans la direction d'actionnement (B) et la douille (38) se trouve dans la position de repos par rapport au contre-palier à ressort (36), dans laquelle dans la position d'ouverture de la poignée (28), le contre-palier à ressort (36) se trouve dans la position d'accrochage avant dans la direction d'actionnement (B) et la douille (38) bascule de la position de repos par rapport au contre-palier à ressort (36) et est repoussée par l'élément à ressort (40) dans la position de repos, et dans laquelle, dans la position de verrouillage de la poignée (28), le contre-palier à ressort (36) se trouve dans la position d'accrochage arrière dans la direction d'actionnement (B) et la douille (38) se trouve dans la position de repos par rapport au contre-palier à ressort (36).
  14. Porte (10) dotée d'une poignée d'actionnement selon la revendication 13 et avec un mécanisme de fermeture (14), dans laquelle le mécanisme de fermeture (14) est couplé à la poignée (28) de telle sorte que lors d'un basculement de la poignée (28) de la position de base dans la position d'ouverture, un piège proéminent (20) dans la position de base de la poignée (28) dans une position de fermeture soumise à l'action d'un ressort du mécanisme de fermeture (14) est déplacé dans une position d'ouverture dans le mécanisme de fermeture (14) et lors d'un pivotement de la poignée (28) dans la position de verrouillage, le piège (20) est fixé dans la position de fermeture et/ou un pêne de verrouillage (22) à partir duquel le mécanisme de fermeture (14) est déplacé.
EP17207487.4A 2016-12-15 2017-12-14 Corps de butée pour poignée d'actionnement, poignée d'actionnement et porte Not-in-force EP3336284B1 (fr)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
DE102016124557.7A DE102016124557A1 (de) 2016-12-15 2016-12-15 Anschlagkörper für Betätigungshandhabe, Betätigungshandhabe und Tür

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EP3336284A1 EP3336284A1 (fr) 2018-06-20
EP3336284B1 true EP3336284B1 (fr) 2019-10-30

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Publication number Priority date Publication date Assignee Title
TWM547016U (zh) * 2017-04-18 2017-08-11 Taiwan Fu Hsing Industrial Co Ltd 鎖具結構之回彈裝置
DE102018122886A1 (de) * 2018-09-18 2020-03-19 Dom Sicherheitstechnik Gmbh & Co Kg Rückstellvorrichtung für eine Handhabe eines Beschlags, und Verfahren zum Überführen einer Rückstellvorrichtung zwischen einer ersten Handhabenanschlagposition und einer zweiten Handhabenanschlagposition
US12024919B2 (en) 2020-07-01 2024-07-02 Cmech (Guangzhou) Ltd. Latch bolt installation structure and door lock using such structure
CA3120605C (fr) * 2020-07-20 2023-07-25 Buss Innovations Ltd. Poignee de porte verrouillable pour une utilisation mains libres d'une porte et d'un loquet connexes
EP4124707A1 (fr) * 2021-07-28 2023-02-01 Dormakaba Danmark Ensemble de fixation de porte et système de verrouillage de porte rabattable

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CH671603A5 (fr) * 1986-03-27 1989-09-15 Josef Meier
SE505049C2 (sv) * 1996-05-23 1997-06-16 Assa Ab Anordning vid dörrtrycke
US7293807B2 (en) * 2003-02-28 2007-11-13 Emco Enterprises, Inc. Door handle assembly
DE202007000380U1 (de) * 2007-01-04 2008-05-15 Hoppe Ag Rückholfedereinrichtung für Tür- oder Fensterbeschläge sowie Tür- und/oder Fensterbeschlag
DE102014109614A1 (de) * 2014-07-09 2016-01-14 Hoppe Ag Betätigungshandhabe

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DE102016124557A1 (de) 2018-06-21

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