EP4001555B1 - Poignée de commande avec entraineur de longueur variable - Google Patents

Poignée de commande avec entraineur de longueur variable Download PDF

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Publication number
EP4001555B1
EP4001555B1 EP20207310.2A EP20207310A EP4001555B1 EP 4001555 B1 EP4001555 B1 EP 4001555B1 EP 20207310 A EP20207310 A EP 20207310A EP 4001555 B1 EP4001555 B1 EP 4001555B1
Authority
EP
European Patent Office
Prior art keywords
driver
stop element
depression
actuating handle
handle
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
EP20207310.2A
Other languages
German (de)
English (en)
Other versions
EP4001555C0 (fr
EP4001555A1 (fr
Inventor
Michael Harbeke
Michael Pfeil
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
Original Assignee
Hoppe AG
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Hoppe AG filed Critical Hoppe AG
Priority to PL20207310.2T priority Critical patent/PL4001555T3/pl
Priority to EP20207310.2A priority patent/EP4001555B1/fr
Priority to ES20207310T priority patent/ES2980441T3/es
Priority to MX2021013799A priority patent/MX2021013799A/es
Priority to CN202111339693.3A priority patent/CN114541874A/zh
Publication of EP4001555A1 publication Critical patent/EP4001555A1/fr
Application granted granted Critical
Publication of EP4001555C0 publication Critical patent/EP4001555C0/fr
Publication of EP4001555B1 publication Critical patent/EP4001555B1/fr
Active 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
    • 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
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05BLOCKS; ACCESSORIES THEREFOR; HANDCUFFS
    • E05B63/00Locks or fastenings with special structural characteristics
    • E05B63/0056Locks with adjustable or exchangeable lock parts
    • E05B63/006Locks with adjustable or exchangeable lock parts for different door thicknesses

Definitions

  • the invention relates to an actuating handle according to the preamble of claim 1.
  • Operating handles for windows or doors usually have a handle that can be rotated around a predetermined axis and drives an operating device in the window or door via a driver.
  • the handle is rotatable and axially fixed on a stop body that can be screwed to the window frame or door leaf.
  • a driver it may be necessary to select a driver from a range of drivers of different lengths in order to achieve a coupling with the operating device.
  • EP 2 107 187 B1 Variable-length drivers are known that are spring-mounted and guided by two bushings that are coupled to one another, with one of the bushings being connected to the handle in a rotationally fixed manner.
  • the solution proposed there is quite complex due to the number of components and is therefore difficult to manufacture.
  • the object of the invention is therefore to propose an actuating handle with a length-variable driver, which is simple and inexpensive to manufacture and yet easy to assemble and handle.
  • An actuating handle for a window or a door comprising a handle which is mounted with a handle neck so as to be rotatable about a rotation axis of a stop body and which has an elongated driver for entering into an operative connection with an actuating element of the window or door, which can be coupled to the handle in a rotationally fixed manner, wherein the handle neck can be connected to a bushing for securing the handle to the stop body.
  • the actuating handle has a recess; that the driver can be introduced into the recess in a longitudinally displaceable manner; that a compression spring is arranged in the recess and exerts a pressure force directed from the recess on the driver; and that the driver has at least one first stop element which corresponds to at least one second stop element in or on the recess, so that a movement of the driver directed out of the recess is limited by the stop elements, wherein the recess is arranged at least partially in the handle neck and the at least one second stop element is arranged on the bushing and projects into the recess.
  • the structure of the operating handle is therefore similar to that of conventional operating handles.
  • a handle that is gripped by a user to open or close a door or window is designed to rotate around a rotation axis.
  • a driver is provided that can be coupled to the handle in a rotationally fixed manner.
  • the driver is preferably an elongated element that is usually designed as a square. This later projects into the operating element of the window or door and can also be coupled to it in a rotationally fixed manner.
  • the stop body is a component or a group of components that supports the handle and is connected directly to the window frame or door leaf.
  • the position of the driver is determined by this.
  • To attach the stop body it may be advisable to provide two or more holes in the stop body, which can be covered with a cover and enable the stop body to be screwed tight.
  • the holes preferably each have a hole axis that runs parallel to the axis of rotation of the handle.
  • the special feature of the design of the actuating handle according to the invention is that the driver is arranged so that it can be moved longitudinally in a recess in which a compression spring is also positioned.
  • the compression spring which is supported in a base of the recess or a shoulder arranged therein, is designed to exert an outward pressure force on the driver. If this pressure force is not counteracted by an at least identical counterforce, the driver is consequently forced out of the recess until the compression spring assumes a rest position.
  • the driver therefore does not necessarily have to be selected and used to suit a particular application, but the actuating handle allows for variability in length.
  • the actuating handle can therefore be installed more quickly and allows for a smaller variety of parts.
  • the driver automatically adapts to the installation situation.
  • the first and second stop elements are provided to limit an outward movement of the driver. It is conceivable that the driver has a projection or similar on a circumferential surface, for example, which corresponds to a complementary projection in or on the recess.
  • the stop elements are arranged in such a way that the driver can only be pushed out of the recess up to a certain position, where the two stop elements come into contact, so that further outward movement is blocked. However, if a force directed into the recess is exerted on the driver that exceeds the pressure force of the compression spring, the driver can be pushed back into the recess. Its outward effective length is thus shortened.
  • the spring constant of the compression spring and its length in the relaxed state as well as the design of the recess can be coordinated so that the desired length variability is achieved with a minimum length and a maximum length.
  • the spring constant should not be too large so that the installation of the stop body is not made more difficult when the driver is slightly depressed. It is conceivable that a length variability in an example range of 5-20 mm can be ensured in this way.
  • the stop body has a recess through which the handle neck extends, wherein the bushing for enclosing the recess is connected to the end of the handle neck protruding from the recess.
  • the stop body is consequently enclosed by the handle and the bushing.
  • the bushing is connected to the handle neck when the latter is inserted through the recess of the stop body.
  • the bushing can be inserted axially into, on or onto the handle neck and with It is preferably provided that the bushing rotates with the handle neck and is therefore connected to it in a rotationally fixed manner.
  • the recess of the stop body can be designed as a through hole.
  • the recess is arranged at least partially in the handle neck and at least one second stop element is arranged on the bushing which projects into the recess.
  • the driver is then inserted into the handle neck and forms a rotationally fixed, movable connection with it.
  • it is sensible to equip the driver and the recess with cross-sections that are complementary to one another, whereby these should not be exclusively circular in order to ensure torque transmission.
  • the torque is therefore introduced directly through the handle neck into the driver and not through the bushing.
  • the latter therefore serves to axially secure the handle to the stop body and to limit the axial movement of the driver by the at least one second stop element.
  • the manufacture of the handle can be simplified in this way, but also the assembly of the actuating handle.
  • the handle neck has an edge-side cutout extending in the axial direction for the passage of the at least one second stop element.
  • the bushing could surround or enclose the handle neck on the circumference so that at least one second stop element protrudes radially from the outside through a peripheral surface of the handle neck into the recess. For this purpose, it is sensible to interrupt the handle neck locally. For mounting the bushing, it is also sensible for the cutout to extend to a front end of the handle neck so that when mounting the operating handle, the second stop element can be moved from the front end in the axial direction along the handle neck to the mounting position of the bushing.
  • the at least one first stop element is designed as a surface notch on a peripheral surface of the driver.
  • the surface notch, or also surface notch could comprise not only a local depression but also a projection that is created when the surface of the driver is notched by protrusion of material.
  • the driver is preferably made of a metallic material that can be notched on a surface.
  • the surface notch could be designed in such a way that a projection protruding from the surface is formed overall, which is shaped like a barb.
  • This barb should be aligned in such a way that the driver can be easily inserted into the aforementioned depression and there, when inserted, which pushes at least one second stop element radially outwards. After insertion There should then be an edge on a side facing the second stop element, which comes into contact with the second stop element in question and thereby prevents the driver from being pulled out.
  • the design of the stop elements could preferably be such that a force of at least, but preferably more than, 100 N is required to release the driver again.
  • the at least one second stop element is designed as at least one elastic locking lug that projects into the recess.
  • the bushing with the elastic locking lug arranged thereon can be manufactured as a single piece as an injection-molded component.
  • the driver can be easily mounted by inserting it into the aforementioned recess and locking it in place after passing through the locking lug. This also prevents the driver from accidentally coming loose from the mounted actuating handle.
  • the at least one second stop element is designed to be pushed radially outwards by the first stop element when the driver is inserted into the recess and to spring back radially inwards behind the first stop element. Due to the elastic and in particular spring-elastic properties, the locking lug can therefore protrude significantly into the recess before the driver is inserted. This allows continuous surface or line contact with the driver after the driver has been inserted. This ensures contact with the at least one first stop element when it is located on the respective locking lug.
  • the at least one second stop element has at least two locking lugs that protrude into the recess at positions spaced apart from one another on the circumference.
  • the driver could also have two first stop elements, each of which interacts with a second stop element.
  • using two second or more stop elements could simplify the assembly of the driver, since it does not have to be rotated into a suitable position before being inserted, but rather the circumferential orientation of a first stop element corresponds to that of a second stop element in at least two and preferably in all rotation positions.
  • the driver has a first stop element on two adjacent surfaces and/or on surfaces that are opposite one another.
  • the socket has a neck portion and a first shoulder surrounding the neck portion, wherein the neck portion projects into the recess and the first shoulder is located on a side facing away from the handle at the edge of the recess on rests on the stop body.
  • the neck section can be connected to the handle neck. Resting on the first step leads to axial fixation of the bushing. If the handle neck has a second step that limits the handle neck, the stop body can be enclosed between the first step and the second step.
  • the handle neck is inserted into an opening in the socket.
  • the socket thus surrounds the handle neck at least partially on the circumference.
  • the recess can therefore be located completely in the handle neck.
  • the socket and the handle neck can be connected to one another in this position.
  • the bushing could be screwed, glued, crimped, soldered, locked or welded to the handle neck. This creates a rotationally fixed connection between the bushing and the handle neck.
  • the bushing could have a non-circular hole so that a complementarily shaped handle neck achieves a rotationally fixed connection simply by inserting it and locking it if necessary.
  • Fig.1 shows an operating handle 2 for a window or a door in a sectional view.
  • the operating handle 2 has a handle 4, which is mounted with a handle neck 6 so as to be rotatable about a rotation axis 8 of a stop body 10.
  • the handle 4 has a recess 12 which extends along the rotation axis 8 and has a base surface 14 as an inner boundary.
  • a driver 16 designed as a square is arranged so as to be longitudinally displaceable in the recess 12.
  • a compression spring 20 is arranged between an inner, front end 18 of the driver 16 and the base surface 14.
  • the driver 16 therefore projects a variable distance from the stop body 10 and its free length can be reduced by a force acting in the direction of the base surface 14. It is intended to establish an operative connection with an actuating mechanism (not shown here) in a window or door and to automatically adjust the necessary free length of the driver 16 during assembly.
  • the handle neck 6 is connected to a bushing 22.
  • the bushing 22 has an opening 24 into which the handle neck 6 is inserted.
  • a collar 28 is arranged on an outer, front end 26 of the handle neck 6, which extends radially outwards and rests on a support surface 30 of the bushing 22.
  • the stop body 10 has a recess 32 through which the handle neck 6 and the bushing 22 extend.
  • the bushing 22 also has a neck section 34 and a first shoulder 36 surrounding the neck section 34, wherein the first shoulder 36 rests on the stop body 10 on a side facing away from the handle 4 at the edge of the recess 24.
  • the stop body 10 or the recess 32 of the stop body 10 is consequently enclosed by the handle 4 and the bushing 22.
  • the handle 4 On a side facing away from the bushing 22, the handle 4 has a second shoulder 36. This is followed in the axial direction by an intermediate ring 40, which presses a largely flat cover 42 onto the stop body 10.
  • the intermediate ring 40 is spring-elastic and is preferably made of a plastic or a metallic material and can spring in the axial direction, i.e. along the rotation axis 8. This allows the cover 42 to be moved axially and is always pressed onto the stop body 10 by the intermediate ring 40.
  • the intermediate ring 40 therefore allows the cover 42 to be easily lifted and rotated around the rotation axis 8 in order to expose screw holes 44 provided in the stop body 10.
  • a user can insert screws into the screw holes 44 and, after tightening the screws in a window frame or a door leaf, rotate the cover 42 back again to cover the stop body 10.
  • the longitudinally displaceable mounting of the driver 16 allows different installation situations to be taken into account without having to replace the driver 16.
  • the driver 16 can be moved between an extended position (left) with a maximum length and a retracted position (right) with a minimum length. Both positions differ by a distance d, which, depending on the design of the actuating handle 2, could be, for example, between 5 and 20 mm and preferably approximately 10 mm.
  • the driver 16 has a first stop element 46 in the form of a surface notch. This results in a projection extending in the radial direction.
  • the bushing 22 has a spring-loaded locking lug 48 as a second stop element. This protrudes into the recess 12 and is designed to come into contact with the first stop element 46.
  • the first stop element 46 and the second stop element 48 are designed such that the driver 16 can be inserted into the recess 12 from the outside, so that the first stop element 46 pushes the second stop element 48 radially outwards and after passing the second stop element 48, the latter springs back radially inwards and prevents the driver 16 from being removed.
  • the first stop element 46 is shown in contact with the second stop element 48. This corresponds to the outermost position, as shown in the drawing plane on the left in Fig. 2 shown.
  • the driver 16 is in its retracted position, in which the compression spring 20 is maximally compressed and the driver 16 cannot extend further into the recess 12.
  • the first stop element 46 is shown in a schematic detailed view in Fig.4 illustrated in more detail.
  • FIG. 5 and 6 an exploded view of the actuating handle 2 is shown. While in Fig.5 a side view is shown, shows Fig.6 a somewhat perspective and partially sectioned view. Here, among other things, the recess 12 in the handle 4 can be seen.
  • the handle neck 6 has a corresponding, edge-side cutout 50 that extends to the front end 26 of the handle neck 6.
  • the second stop element 48 can be inserted in the axial direction into the handle neck 6 and then protrudes radially through a peripheral surface of the handle neck 6 into the recess 12.
  • the assembly of the actuating handle 2 could include preparing the handle 4, putting the intermediate ring 40 on the handle neck 6, threading the cover 42 onto the handle neck 6 by means of a hole 52 arranged in the cover 42, inserting the handle neck 6 into the recess 32 of the stop body 10, inserting the compression spring 20 into the recess 12 and inserting the driver 16 until it passes the second stop element 48 with the first stop element 46 so that it engages.
  • the bushing 22 can be inserted into the recess 32 before or after inserting the driver 16 so that it is arranged between the handle neck 6 and the recess 32.
  • the cover 42 is lifted slightly from the stop body 10 and rotated. Screws are then screwed through the screw openings 44 into the window frame or door leaf. After turning back the cover 42, the actuating handle 2 is attached. Due to the variable length design of the driver 16, different installation situations can be taken into account without having to keep and insert different drivers 16. Its length then adjusts automatically.

Landscapes

  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Structural Engineering (AREA)
  • Lock And Its Accessories (AREA)
  • Window Of Vehicle (AREA)

Claims (10)

  1. Poignée de commande (2) pour une fenêtre ou une porte, présentant une poignée (4) qui est montée tournante avec un col de poignée (6) autour d'un axe de rotation (8) d'un corps de butée (10) et qui présente un organe d'entraînement allongé (16) pour établir une liaison fonctionnelle avec un élément d'actionnement de la fenêtre ou de la porte, qui est apte à être relié de manière solidaire en rotation à la poignée (4), le col de poignée (6) étant apte à être relié à une douille (22) pour fixer la poignée (4) sur le corps de butée (10),
    la poignée de commande (2) présentant une cavité (12) ;
    l'organe d'entraînement (16) étant apte à être introduit dans la cavité (12) de manière déplaçable longitudinalement ;
    un ressort de pression (20) étant agencé dans la cavité (12) et exerçant sur l'organe d'entraînement (16) une force de pression dirigée hors de la cavité (12) ;
    l'organe d'entraînement (16) présentant au moins un premier élément de butée (46) qui correspond à au moins un deuxième élément de butée (48) dans ou sur la cavité (12), de sorte qu'un mouvement de l'organe d'entraînement (16) dirigé hors de la cavité (12) est limité par les éléments de butée (46, 48),
    caractérisée en ce que
    la cavité (12) est agencée au moins partiellement dans le col de la poignée (6) et l'au moins un deuxième élément de butée (48) est agencé sur la douille (22) et fait saillie dans la cavité (12).
  2. Poignée de commande (2) selon la revendication 1, caractérisée en ce que le corps de butée (10) présente un évidement (32) qui est traversé par le col de poignée (6), la douille (22) étant reliée à l'extrémité (26) du col de poignée (6) qui fait saillie hors de l'évidement (32) de façon à fermer l'évidement (32).
  3. Poignée de commande (2) selon la revendication 1, caractérisée en ce que le col de poignée (6) présente une découpe de bord (50) s'étendant dans la direction axiale pour le passage d'au moins un deuxième élément de butée (48) .
  4. Poignée de commande (2) selon l'une des revendications précédentes, caractérisée en ce que l'au moins un premier élément de butée (46) est réalisé sous la forme d'une encoche de surface sur une surface périphérique de l'organe d'entraînement (16).
  5. Poignée de commande (2) selon l'une des revendications précédentes, caractérisée en ce que l'au moins un deuxième élément de butée (48) est réalisé sous la forme d'au moins un ergot d'encliquetage élastique qui pénètre dans la cavité (12).
  6. Poignée de commande (2) selon la revendication 5, caractérisée en ce que l'au moins un deuxième élément de butée (48) est conçu de façon à être repoussé radialement vers l'extérieur par le premier élément de butée (46) lors de l'insertion de l'organe d'entraînement (16) dans la cavité et de façon à revenir radialement vers l'intérieur derrière le premier élément de butée (46).
  7. Poignée de commande (2) selon la revendication 5 ou 6, caractérisée en ce que l'au moins un deuxième élément de butée (48) présente au moins deux ergots d'encliquetage (48) qui font saillie dans la cavité (12) en des positions espacées les unes des autres sur la circonférence.
  8. Poignée de commande (2) selon la revendication 2, caractérisée en ce que la douille (22) présente une partie de col (34) et un premier épaulement (36) entourant la partie de col (34), la partie de col (34) pénétrant dans l'évidement (12) et le premier épaulement (36) reposant sur le corps de butée (10) sur côté le bord de l'évidement (32), sur un côté opposé à la poignée (4).
  9. Poignée de commande (2) selon l'une des revendications précédentes, caractérisée en ce que le col de la poignée (6) est inséré dans une ouverture (24) de la douille (22).
  10. Poignée de commande (2) selon l'une des revendications précédentes, caractérisée en ce que la douille (22) est vissée, collée, sertie, brasée, encliquetée ou soudée au col de la poignée (6).
EP20207310.2A 2020-11-12 2020-11-12 Poignée de commande avec entraineur de longueur variable Active EP4001555B1 (fr)

Priority Applications (5)

Application Number Priority Date Filing Date Title
PL20207310.2T PL4001555T3 (pl) 2020-11-12 2020-11-12 Uchwyt uruchamiający z zabierakiem o zmiennej długości
EP20207310.2A EP4001555B1 (fr) 2020-11-12 2020-11-12 Poignée de commande avec entraineur de longueur variable
ES20207310T ES2980441T3 (es) 2020-11-12 2020-11-12 Manija de accionamiento con elemento de arrastre de longitud variable
MX2021013799A MX2021013799A (es) 2020-11-12 2021-11-10 Sistema de accionamiento con perno de arrastre de longitud variable.
CN202111339693.3A CN114541874A (zh) 2020-11-12 2021-11-12 具有长度可变的带动件的操纵手柄

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
EP20207310.2A EP4001555B1 (fr) 2020-11-12 2020-11-12 Poignée de commande avec entraineur de longueur variable

Publications (3)

Publication Number Publication Date
EP4001555A1 EP4001555A1 (fr) 2022-05-25
EP4001555C0 EP4001555C0 (fr) 2024-04-24
EP4001555B1 true EP4001555B1 (fr) 2024-04-24

Family

ID=73401459

Family Applications (1)

Application Number Title Priority Date Filing Date
EP20207310.2A Active EP4001555B1 (fr) 2020-11-12 2020-11-12 Poignée de commande avec entraineur de longueur variable

Country Status (5)

Country Link
EP (1) EP4001555B1 (fr)
CN (1) CN114541874A (fr)
ES (1) ES2980441T3 (fr)
MX (1) MX2021013799A (fr)
PL (1) PL4001555T3 (fr)

Families Citing this family (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
PL446235A1 (pl) * 2023-09-25 2025-03-31 Fks Okucia Okienne I Drzwiowe Spółka Z Ograniczoną Odpowiedzialnością Zespół klamki okiennej

Family Cites Families (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE4024614C2 (de) * 1990-08-02 1999-06-24 Roto Frank Ag Fenster- oder Türbeschlag
US5947484A (en) * 1997-09-03 1999-09-07 Power Tool Holders Incorporated Quick-change chuck device
DE10233866B4 (de) * 2002-07-25 2018-01-25 Wera Werk Hermann Werner Gmbh & Co. Kg Schraubwerkzeug mit austauschbarem Schaft
ITMI20030612U1 (it) * 2003-12-23 2005-06-24 Hoppe Ag Collegamento a trascinamento
US7077437B2 (en) * 2004-03-26 2006-07-18 Sargent Manufacturing Company Mortise lock integrated trim assembly with a retracting spindle
DE202008004508U1 (de) * 2008-04-01 2009-08-13 Hoppe Ag Secustic-Vierkant (Beschlag für Fenster oder Türen)
DE102011008758A1 (de) * 2011-01-17 2012-07-19 Hoppe Ag Betätigungshandhabe
CN207974658U (zh) * 2017-04-14 2018-10-16 霍帕控股股份公司 用于操作集成在窗或门中的机构的配件
CN207974630U (zh) * 2017-04-14 2018-10-16 霍帕控股股份公司 操作手柄

Also Published As

Publication number Publication date
CN114541874A (zh) 2022-05-27
ES2980441T3 (es) 2024-10-01
MX2021013799A (es) 2022-05-13
EP4001555C0 (fr) 2024-04-24
EP4001555A1 (fr) 2022-05-25
PL4001555T3 (pl) 2024-09-09

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