EP2873787B1 - Poignée d'actionnement - Google Patents

Poignée d'actionnement Download PDF

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Publication number
EP2873787B1
EP2873787B1 EP14180618.2A EP14180618A EP2873787B1 EP 2873787 B1 EP2873787 B1 EP 2873787B1 EP 14180618 A EP14180618 A EP 14180618A EP 2873787 B1 EP2873787 B1 EP 2873787B1
Authority
EP
European Patent Office
Prior art keywords
handle
locking
actuating
fitting
window
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
EP14180618.2A
Other languages
German (de)
English (en)
Other versions
EP2873787A2 (fr
EP2873787A3 (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
Original Assignee
Hoppe AG
Hoppe AG St Martin
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, Hoppe AG St Martin filed Critical Hoppe AG
Publication of EP2873787A2 publication Critical patent/EP2873787A2/fr
Publication of EP2873787A3 publication Critical patent/EP2873787A3/fr
Application granted granted Critical
Publication of EP2873787B1 publication Critical patent/EP2873787B1/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
    • E05B1/00Knobs or handles for wings; Knobs, handles, or press buttons for locks or latches on wings
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05BLOCKS; ACCESSORIES THEREFOR; HANDCUFFS
    • E05B13/00Devices preventing the key or the handle or both from being used
    • E05B13/002Devices preventing the key or the handle or both from being used locking the handle
    • E05B13/004Devices preventing the key or the handle or both from being used locking the handle by locking the spindle, follower, or the like
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05BLOCKS; ACCESSORIES THEREFOR; HANDCUFFS
    • E05B65/00Locks or fastenings for special use
    • E05B65/0014Locks or fastenings for special use to prevent opening by children
    • 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
    • E05B15/006Spring-biased ball or roller entering a notch

Definitions

  • the invention relates to an operating handle for a window or a door according to the preamble of claim 1.
  • DE 299 22 496 U1 discloses an actuating handle with a stop body and a handle. To fix it, a bushing is provided which is supported on the inside of the stop body and which is connected axially and non-rotatably to an extension of the handle neck which projects through the stop body. When installed, the stop body rests on the stop surface of a window or door.
  • Such a fitting is for example in EP 1 528 194 A1 described.
  • This has a driver which is connected to the handle neck of the handle in a rotationally fixed manner and which penetrates a stop body and a bracket right into a gear nut.
  • At least one spring-loaded slide is slidably guided in the flat console and engages with a nose on a disk which is connected to the handle neck in a rotationally fixed manner.
  • An actuating element connected to the slide is preferably mounted on a narrow side of the console, during its movement the slide is displaced against a spring force. As a result, the (locking) nose emerges from a groove in the disc and the handle can be actuated.
  • the disadvantage here is that the child lock is arranged as a separate assembly sandwiched between the stop body and the stop surface of the window. This creates a technically complex structure that can hardly meet the aforementioned aesthetic requirements due to the relatively large overall height.
  • DE 200 11 806 U1 discloses a twist grip consisting of a mounting plate equipped with a bearing bore with a lower part and an upper part, a handle, the handle neck of which has a guide projection at its free end and is rotatably supported in a bearing bush, and a cover plate which engages around the handle neck and on the mounting plate is pushed on.
  • the bearing bush is designed as a separate component and is fixed on the guide shoulder in the axial direction.
  • the bearing bush is also provided with radially projecting clamping cams for fixing relative to the mounting plate.
  • EP 2 034 109 A2 describes a securing device for securing a handle rotatably received with a handle neck attachment for fitting in an axial direction and in a circumferential direction, wherein retaining means are integrated in the locking device in order to hold the handle in a holding position in the installed state and around the handle after it Reset actuation to the hold position.
  • DE 32 03 311 A1 shows a handle fitting with a child lock for window or door sash.
  • the handle fitting has a fixing part which is connected in a rotationally fixed manner to the square handle and which can be fixed in the locking position by means of a locking part with mutual engagement in predetermined rotational operating positions of the handle.
  • DE 297 03 607 U1 discloses an actuating handle for windows or doors, with a stop body, a handle, a locking member rotatably mounted in the stop body about the axis of rotation of the handle, which is fixedly coupled to the handle, and with a lock cylinder integrated in the stop body, which in the locked position with a radially to the axis of rotation of the handle locking element engages in the locking member, the stop body has two in a plane perpendicular to the axis of rotation of the handle relative to each other part body, a lower part body can be fixed with fastening screws on a window or door frame and an upper part body the locking cylinder records.
  • the invention is therefore based on the object of overcoming these and other disadvantages of the prior art and of providing an actuating handle for a window or a door which is inexpensive to build with simple means and meets even high aesthetic requirements through a minimalist design .
  • the aim is also to provide a fitting lock (child lock) that only insignificantly affects the appearance of the operating handle.
  • the actuating handle should also be designed in such a way that it can be installed easily and with little expenditure of time and is distinguished by a permanently high load capacity.
  • the actuating handle according to the invention is thus extremely simple, easy to manufacture and quick to assemble. Due to the compact structure of the stop body, it can be completely sunk at least with the lower part in the window or door frame. This significantly reduces the overall optical height of the fitting / operating handle, i.e. H. the height of the operating handle above the window is reduced to a minimum.
  • the fitting can even meet high aesthetic requirements. It is particularly advantageous if the upper part lies at least partially flat on the stop surface of the window or door and thereby provides support, while the lower part is sunk in the window or door leaf. At the same time, the recess provided in the stop surface is thereby reliably covered. For example, screws can be used to fix the stop body to or in the window or door.
  • the technical functionality of the fitting can also be expanded if necessary.
  • An additional component or assembly such as a fitting lock in the form of a child lock, can be quickly and easily inserted between the lower and upper part.
  • Such hardware protection can be easily and reliably secured between the upper and lower part because the lower part and the upper part are force, shape and / or are frictionally and releasably connectable. Additional fastening or assembly means are not necessary.
  • a fitting security device is arranged between the lower part and the upper part. This serves to secure the handle of the actuating handle against unauthorized or unintentional use.
  • the fitting lock is designed as a child lock, i.e. as a device that holds the handle in a certain position, e.g. the closed position, must be blocked and operated before the handle can be turned to another position.
  • the hardware lock has at least one locking element which fixes the handle in at least one excellent rotational position and which can be released from its locking against a restoring force via at least one actuating element, each locking element being formed on a slide which can be moved parallel to the stop surface of the window or door and engages with a locking disc that is axially and non-rotatably connected to the handle neck of the handle, the slide being slidably mounted in a console and actuable against the restoring force via the actuating element, the locking disk of the actuating handle and the locking disk of the fitting securing device being arranged concentrically with the axis of rotation of the handle neck are.
  • the hardware lock can be in this or another design as a prefabricated unit, which further simplifies handling and installation. This means that the hardware lock can be arranged between the upper and lower part either later or at short notice before the operating handle is installed. In any case, the hardware lock itself can either be designed as a compact pre-assembled component or the components can be assembled on site. Furthermore, it is possible with little time and effort to retrofit the fitting security to an existing window or door fitting.
  • the locking disk preferably has locking recesses formed on the circumference, in particular two, preferably four locking recesses being provided.
  • the latching depressions are particularly preferably arranged diametrically opposite in pairs.
  • the locking recesses of the locking disc are very particularly preferably axially parallel grooves. However, the locking recesses can also be provided in the axial direction.
  • the handle neck is secured in the axial direction L by means of the locking disc in or on the stop body, for example by fixing the locking disc as a fixing element on the polygon.
  • the locking disc can be pressed onto the polygon or secured using a clamping or locking element.
  • a separate fixing element can also be provided, which is inserted in the locking disk, integrated in it or integral with it.
  • the locking disk and / or the fixing element is non-positively, positively, frictionally and / or cohesively connected to the polygon. It is particularly favorable if the locking disk and / or the fixing element are designed such that the locking disk and / or the fixing element can be pushed onto the polygon in a first direction R1 and the locking disk and / or the fixing element can be pulled off the polygon in an opposite second direction R2 is blocked.
  • the fixing element is ring-shaped, with an inner opening which has spring elements formed on its inner circumference, which are designed and aligned such that when the fixing element is pulled off from the polygon in the direction R2 with the polygon, especially with its side surfaces or edges. This results in a permanently stable securing of the handle neck in or on the stop body.
  • a particularly compact structure can be achieved in that the fixing element is formed on or in the locking disk, the fixing element being particularly preferably a serrated ring.
  • a further embodiment of the invention provides that the upper part of the stop body has a base body which is provided with an opening which rotatably receives the handle neck of the handle.
  • the base body is preferably designed as an elongated flat part or as a plate.
  • a further development of the invention provides that a neck section is formed on the base body of the upper part in the region of the opening, which neck portion rotatably receives the handle neck of the handle.
  • the neck section simplifies the storage and positioning of a cover plate on the upper part.
  • the neck section is preferably designed in such a way that it offers reliable guidance for the handle neck and can be arranged in a complementary recess in the handle neck.
  • the neck section can thus also act as a kind of guide aid when assembling the handle. This contributes to a simple and quick assembly of the operating handle.
  • the lower part of the stop body has a base body which is provided with an opening which rotatably receives the polygon.
  • the base body is preferably designed as an elongated flat part, the longitudinal and transverse dimensions of the base body of the lower part roughly corresponding to that of the base body of the upper part.
  • the base body of the lower part forms a support or support surface for the locking disk.
  • the support or support surface is particularly preferably similar in shape or identical in shape to the locking disk.
  • the base body of the lower part has a free space in the area of the support or support surface for receiving the locking disk. It is particularly favorable if the free space has at least one lateral boundary that prevents the locking disk from slipping.
  • At least one locking element is formed, which can be brought into engagement with at least one locking recess of the locking disc in the excellent rotational positions of the handle.
  • at least one locking element is provided on or in the base body of the lower part, which engages with a locking recess of the locking disc in excellent rotational positions of the handle.
  • the latching element is preferably loaded by a force radially to the axis of rotation of the handle.
  • the force is a spring force.
  • the locking element can, for example, as a locking lug, as a locking hook or the like. be trained.
  • a spring leg is preferably used, which carries on its side facing the locking disk a locking projection directed radially to the axis of rotation of the handle.
  • the locking element can also be designed as a separate element, for example as a locking ball, which is slidably mounted in a longitudinal slot in the base body of the lower part in the radial direction to the axis of rotation of the handle and is pressed permanently against the locking disc, for example by a compression spring.
  • a still further development of the invention provides that a shaft is formed on the base body of the lower part in the region of the central opening, which shaft rotatably receives the polygon. This is particularly advantageous if a particularly long polygon is used.
  • an important exemplary embodiment provides that the lower part has a first connecting element and that the upper part has a second connecting element, the connecting elements of the lower part and the upper part being able to be brought into engagement with one another in a non-positive, positive and / or frictional manner. It is particularly advantageous if the first connecting element and the second connecting element form a plug-socket pair.
  • first connecting element and the second connecting element can be locked together.
  • locking or clamping elements are preferably provided in the upper part, which engage in corresponding locking recesses in the lower part.
  • the lower part can have locking or clamping elements which engage in corresponding locking recesses in the upper part.
  • the first connecting element is formed on the base body of the lower part.
  • the connecting element is preferably designed such that at least the underside of the base surface of the connecting element and the underside of the support or support surface of the lower part lie in one plane.
  • the second connecting element is formed on the base body of the upper part. It is particularly expedient if at least one latching hook is provided on the underside of the base body of the upper part, which is arranged on an expansion section and can be positively and / or positively engaged with a complementary connecting element of the lower part. As an alternative or in addition, a collar can be arranged on the underside of the base body of the upper part, so that the upper and lower part can alternatively or additionally be frictionally engaged with one another.
  • the base body of the lower part and the upper part each have a through opening for receiving a fastening screw. It is particularly advantageous if the connecting elements form the through openings.
  • the connecting elements are preferably essentially cylindrical.
  • the fitting security has through openings for receiving and implementing the connecting elements of the upper part and lower part of the stop body. This makes it possible for the upper part and lower part to continue to be easily locked together with the fitting securing device in between. It is also important that the locking disk of the actuating handle and the locking disk of the fitting lock are arranged concentrically to the axis of rotation of the handle neck. This is the only way to ensure that the operating handle and the fitting lock can be merged easily and the functionality of the system expanded to include the fitting lock is guaranteed.
  • a further embodiment of the actuating handle with fitting lock provides that the fitting lock has a cover plate with an opening in the area of the locking disk and locking disk.
  • a particularly compact and inexpensive design is obtained if the cover plate forms the upper part. It is particularly advantageous that the number of components is further reduced, which is accompanied by a cost saving. Furthermore, the overall height of the actuating handle with fitting protection is further reduced, which has a further positive effect on the overall visual impression.
  • the invention provides a window with a window frame and with an actuating handle according to one of the aforementioned embodiments, wherein a first recess is formed in the window frame, which completely accommodates at least the lower part of the actuating handle. This reduces the height of the operating handle above the window frame to a minimum, which meets even the highest aesthetic requirements, because the overall height of the operating handle above the stop surface of the window or door is reduced to a minimum with the same functionality.
  • the window provides that the lower part is flush with the surface of the (window) frame. It is particularly favorable if the upper part is at least partially, e.g. with the circumferential edge of its base body, lies flat on the stop surface of the frame and thereby provides support. For example, screws can be used to fix the stop body to the window.
  • the contour of the recess in the window frame corresponds to the contour of the lower part. This results in an even more stable installation situation because the lower part sunk into the window frame has little play.
  • the anti-fogging device is inserted between the upper and lower part of the stop body, it is advantageous if the anti-fogging device is supported on the stop surface of the window.
  • Actuating handle 10 is provided for actuating a window 20 (not shown completely), which has a frame or sash 22 and a transmission mechanism (not shown) which is known per se.
  • the frame 22 has a first recess 23 in the area of a stop surface 21 for the actuating handle 10, which at least partially accommodates the actuating handle 10, and a second recess 24 for the gear mechanism.
  • the first recess 23 and the second recess 24 are connected to one another via a bore 25 running perpendicular to the stop surface 21.
  • the actuating handle 10 has a handle 30 with a main handle part 31 and a handle neck 32 which has a flat end face 35 on the front side and a recess 34 made therein.
  • a polygon 40 is fastened in the recess 34, preferably a square pin, which projects through the bore 25 in the frame 22 for actuating the gear mechanism integrated in the window 20.
  • a stop body 50 which is at least partially inserted into the first recess 23 of the frame 22 and is fastened by means of screws 12 to the window 20 or to the frame 22, has an opening 64 in the center, which rotatably receives the handle neck 32 of the handle 30.
  • a cylindrical neck section 65 is formed above the opening 64 and, together with the opening 64, forms a pivot bearing for the handle neck 32.
  • a locking disk 80 is seated in a rotationally fixed manner, which rests with a side surface 81 on the end surface 35 of the handle neck 32.
  • the grip 30 is axially fixed on the stop body 50 by a fixing element 90, which at the same time also secures the locking disk 80 axially on the polygon 40.
  • the handle 30 is permanently stable and precisely rotatably mounted in the stop body 50 and fixed in the axial direction L.
  • the locking disk 80 has in the middle a recess 82 of the same shape as the polygon 40 in cross section. It also has locking recesses 84 formed on the circumference, which cooperate with locking elements 74 in the stop body 50 and the handle 30 in excellent rotational positions, in particular in functional positions of the gear mechanism of the window 20, lock relative to the stop body 50.
  • two latching elements 74 are provided, which are arranged opposite one another in the stop body 50.
  • four locking recesses 84 are formed at intervals of 90 °.
  • the fixing element 90 is preferably a serrated ring which has inwardly (not shown) central recess (not shown) serrations. These are designed and aligned in such a way that the insertion of the polygon 40 into the toothed ring 90 can be effected in a first direction R1 and is blocked in the opposite direction R2, ie the teeth slide on the side surfaces of the polygon 40 when the handle 30 is installed in the direction R1 along.
  • the teeth of the toothed ring 90 engage in the side faces of the polygon 40 in a non-positive, positive and / or frictional manner, so that an extraction of the Polygon 40 from the serrated ring 90 and thus pulling off the handle 30 from the stop body 50 in the direction R2 is effectively prevented.
  • the fixing element 90 is non-positively and / or positively connected to the locking disk 80.
  • Fig. 1c shows - in the locking disk 80 concentric to the square recess 82 a (not specified) recess is provided, in which the fixing element 90 is inserted.
  • a locking device (not shown) is formed between the locking disk 80 and the fixing element 90. The latter is important so that the fixing element 90 and the locking disk 80 do not rotate relative to one another when the handle 30 is actuated.
  • the locking disk 80 and the fixing element 90 also preferably form a preassembled structural unit which can be handled and assembled quickly and conveniently.
  • the fixing element 90 is integrally connected to the locking disk.
  • the fixing element 90 and the locking disk 80 can also be formed in one piece.
  • the handle neck 32 is secured by means of the locking disk 80 in or on the stop body 50 by the locking disk 80 itself being connected to the polygon 40 in a non-positive, positive, and / or frictional manner via an integrated fixing element 90.
  • the locking disk 80 and / or the fixing element 90 can be integrally connected to the polygon 40.
  • a pivotable cover plate 58 is arranged above the stop body 50. For this purpose, this is provided with a (not designated) central recess. As a result, the stop body 50 and the screws 12 can be completely covered after installation of the actuating handle 10 on the window 20, which leads to an overall pleasing visual appearance.
  • the stop body 50 of the actuating handle 10 is, in particular, like that Fig. 1b shows - divided into two. It has a lower part 51 and an upper part 61 which - depending on the embodiment - can be connected to one another in a force-locking, form-locking and / or friction-locking manner. If required, the lower part 51 and upper part 61 can also be releasably connected to one another.
  • the lower part 51 has a base body 52 which is formed by three sections 511, 512, 513.
  • Each section 511, 512, 513 is essentially circular in plan view, the sections 511, 512, 513 overlapping like circles in the edge regions, so that the overall shape of the lower part 51 in plan view corresponds approximately to an elongated oval, that is is constricted in two places on the side.
  • the two outer sections 511, 513 are formed higher than the central section 512, which essentially forms a flat disk with a support or support surface 72 for the locking disk 80.
  • the outer diameter of the central section 512 and the outer diameter of the locking disk 80 are approximately the same size.
  • the total height of locking disk 80 and middle section 512 corresponds - as in Fig.
  • the side surface 81 of the locking disk 80 which bears against the end face 35 of the handle neck 32 and the upper sides (not designated in more detail) of the outer sections 511, 513 together form an essentially flat surface. Furthermore, the locking disk 80 projects laterally into the sections 511, 513.
  • each spring bar 73 extends transversely to the longitudinal axis of the base body 52 and transversely to the axial direction L.
  • Each spring web 73 carries on its side facing the central section 512 and the locking disk 80 one of the locking elements 74 which cooperate with the peripheral locking recesses 84 of the locking disk 80. It can be seen that the spring bars 73 and the locking elements 74, which are designed as projecting locking lugs, lie diametrically opposite one another and are preferably formed in one piece with the base body 51.
  • the central section 512 of the base body 52 is provided centrally with an opening 54, which is concentric with the bore 25 in the frame 22 and rotatably receives the polygon 40.
  • a shaft 55 is formed concentrically with the opening 54, which shanks into the bore 25 in the frame 22 between the first recess 23 and the second recess 24 with little movement play extends into it. How Fig.
  • the entire base body 52 and thus the lower part 51 of the stop body 50 is inserted into the first recess 23 of the frame 22, the side surface 81 of the locking disk 80 and the upper sides of the outer sections 511, 513 being substantially flush as an approximately flat surface complete with the stop surface 21 of the frame 22.
  • the base body 51 can also rest on the (not designated in more detail) bottom of the first recess 23.
  • the outer contour of the lower part 51 is adapted to the inner contour of the recess 23, which is preferably composed of three and partially overlapping bores 26 is formed. Like the bore 25, these can be introduced into the frame 22 simply and efficiently, which has a favorable effect on the production costs of the window 20. In any case, no special tools or complex milling processes are necessary to produce the recess 23.
  • the lower part 51 formed by the three sections 511, 512, 513 can be manufactured simply and efficiently as a one-piece plastic part, together with the spring bars 73 and the shaft 55. It is completely sunk in the frame 22, which has an extremely favorable effect on the visual appearance of the actuating handle 10 affects.
  • the upper part 61 of the stop body 50 has a base body 62 in the form of a flat plate, which is slightly larger in length and width than the base body 52 of the lower part 51.
  • the recess 64 which forms the handle neck 32 of the handle 30, is formed centrally in the base body 62 rotatably.
  • the cylindrical neck section 65 which is preferably in one piece with the base body 62 and together with the recess 64 forms the pivot bearing for the handle neck 32, lies above the recess 64.
  • the upper part 61 of the stop body 50 lies flat on the lower part 51 of the stop body 50, in particular the base body 62 lies flat on the flat surface formed by the side surface 81 of the locking disk 80 and the upper sides of the outer sections 511, 513.
  • the upper part 61 lies after the installation of the stop body 50 in the frame 22 with a peripheral edge on the stop surface 21 of the frame 22, so that the stop body 50 is optimally supported on the window 20 and the optical height of the actuating handle 10 to a minimum is reduced.
  • the lower part 51 has at least one first connecting element 53, while the upper part 61 is provided with at least one second connecting element 63. Both connecting elements 53, 63 can be brought into engagement with one another in pairs in a force, form and / or frictional manner.
  • the lower part 51 is provided with two first connecting elements 53, which are designed as cylindrical bushes. This is particularly advantageous because it enables simple and inexpensive manufacture of the lower part 51.
  • the first connecting elements or bushes 53 are formed in the outer sections 511, 513 of the base body 52. They are symmetrical about the central section 512 and the opening 54.
  • Every second connecting element 63 on the upper part 61 is complementary to the respective first connecting element 53 of the lower part 51.
  • the second connecting element 63 is e.g. around a cylindrical collar, the outer diameter of which is slightly larger than the inner diameter of a cylindrical bushing of the first connecting element 53, as a result of which the lower part 51 and the upper part 61 can be brought into engagement with one another in a form-fitting and frictional manner.
  • Each collar 63 lies below a through opening 67 in the base body 62 of the upper part 61, the two through openings 67 being arranged symmetrically to the opening 64 and the neck section 65 of the upper part 61.
  • first and second connecting elements 53, 63 advantageously form two plug-socket pairs, which firmly but releasably connect the lower part 51 and the upper part 61 to one another. It is also advantageous that the connecting elements 53, 63 of the lower part 51 and upper part 61 together with the through openings 57, 67 receive the screws 12, which are provided for fixing the stop body 50 on the frame 22 of the window 20. In the assembled position of the stop body 50, the screws 12 therefore additionally secure the connection between the lower part 51 and the upper part 61.
  • the lower part 51 and the upper part 61 of the stop body 50 are designed such that they Take up the locking disk 80 between them, especially if it rests between the outer sections 511, 513 of the main body 52 on the support surface 72 of the central section 512 and is covered by the plate-shaped main body 62 of the upper part 61.
  • the locking disk 80 which is axially secured by the fixing element 90 on the polygon 40 and supported by the central section 512, is supported with its side surface 81 on the underside of the upper part 61 and on the end surface 35 of the handle neck 32.
  • the locking disk 80 with the toothed ring 90 integrated therein is first inserted into the lower part 51 and positioned between the spring bars 73. Then the upper part 61 is placed on the lower part 51, the connecting elements 53, 63 interlocking. If the upper part 61 lies flat on the outer sections 511, 513 of the lower part 51 and the side surface 81 of the detent disk 80, the latter is stably and securely mounted on the support surface.
  • the stop body 50 is inserted into the first recess 23 of the frame 22 and fixed therein with the screws 12.
  • the latter pass through the connecting elements 53, 63 and at the same time also fix the upper part 61 on the support surface 21 of the frame 22.
  • the cover plate 58 is then placed with its central recess on the neck portion 65 of the upper part 61, in order to subsequently grip the handle 30 with the one in the handle neck 32 to assemble pre-assembled polygon 40.
  • a fitting lock 100 is arranged between the lower part 51 and the upper part 61 of the stop body 50.
  • a fitting lock is used, for example, as a child lock, because the actuation of the handle 30 is dependent on the correct and complete actuation of the fitting lock 100, ie, only when the fitting lock 100 is properly operated can the handle 30 be rotated into a different functional position.
  • the handle 30 and the stop body 50 with the lower part 51 and upper part 61 are designed as described above. In this respect, the same reference symbols always designate the same components.
  • the fitting lock 100 has a relatively flat console 105, which has the same outer contour as the cover plate 58 and in which two locking elements 101 are mounted so as to be longitudinally displaceable. In order to fix the handle 30 in an excellent rotational position, these are in engagement with a locking disk 104 seated on the polygon 40 in a rotationally fixed manner. To release the lock, the locking elements 101 can be released from engagement with the locking disk 104 against spring force via actuating elements 102 accessible from the outside, so that the handle 30 can be actuated to open or close the window 20 (see Fig. 2a and 2 B ).
  • the essentially rectangular bracket 105 has a flat bottom with a (not visible) central hole and two elongated side walls 115.
  • the bracket 105 is open on its two narrow sides.
  • the ring bushes 119 preferably have the same height as the side walls 115.
  • two flat sliders 103 are mounted laterally next to each other and can be slid in opposite directions, which are essentially L-shaped, each with an elongated side part and a transverse arch piece.
  • a locking element 101 is formed in the center of the longitudinal axis, specifically as a nose or a bevel from the surface of the slide.
  • the locking elements 101 are in engagement with the locking disk 104, which is fixed in a rotationally fixed manner on the polygon 40 and has two recesses lying opposite one another. Their shape is opposite to the locking elements 101 of the slide.
  • the locking disk 104 has a square hole 114 for the form-fitting reception of the polygon 40, which is also preferably designed as a square pin.
  • two springs 120 are provided (see also Fig. 3 ), which are each supported on a side part and an arc piece of the slide.
  • both have flat support surfaces which are perpendicular to the longitudinal axis of the console 105.
  • the slide is permanently pushed outwards by the restoring force of the springs 120, while the locking elements 101 are pressed into the recesses of the locking disk 104.
  • the actuating elements 102 are thus always in a stable position, the locking elements 101 of each slide 103 being latched into a recess in the locking disk 104, so that the handle 30 cannot be rotated and the window 20 cannot be opened.
  • the locking elements 101 secure the slider 103 within the console 105.
  • the actuating elements 102 are provided, which are approximately U-shaped and which are inserted into the open narrow sides of the console 105 with legs formed parallel to the longitudinal axis of the console 105. Two curved pieces 112 connecting the legs project out of the bracket 105 as handles. These overlap the cross pieces of the slider 103 in a form-fitting manner, while the U-legs rest flat on the slider 103.
  • One leg of the actuating elements 102 is provided with an elongated recess 121. The springs 120 are inserted into these recesses 121, so that they get precise guidance. At the same time, the actuating elements 102 are secured in the longitudinal direction against falling out.
  • the outer shape of the curved pieces 112 of the actuating elements 102 is preferably adapted to the outer contour of the console 105, so that the fitting lock 100 and thus the actuating handle 10 'are given an overall uniform and aesthetically pleasing appearance.
  • the actuating elements 102 are pressed into the console 105 on both sides, the outwardly protruding arch pieces 112 push the slider 103 inwards essentially synchronously via the cross pieces.
  • the springs 120 are compressed between the support surfaces and the locking elements 101 are lifted out of the locking disk 104.
  • the handle 30 can now be freely rotated so that its polygon 40 can rotate the locking disk 80 and the gear mechanism in the window 20. If the actuating elements 102 or the curved pieces 112 are released, the locking elements 101 can slide along the circumference of the locking disk 104 until the opposite recesses approach and the locking elements 101 fall into it at the same time, as a result of which the handle rotation is blocked again.
  • a cover plate 106 is provided, which can be latched into the side walls 115 of the bracket 105 with lateral locking edges.
  • the latter is provided with corresponding locking grooves on the edge side.
  • a central opening 107 in the cover plate 106 is concentric with the center hole in the bracket 105 and also concentric with the opening 64 in the upper part 61. With two further side openings, the cover plate 106 is plugged onto the ring bushes 119, which increases the stability of the bracket 105 and thus Hardware lock 100 further enlarged.
  • An advantage of the described fitting security device 100 is that it is designed to be point-symmetrical with respect to the axis of rotation of the handle 30. All components are also designed identically so that they can be interchanged. This results in a significant reduction in manufacturing and storage costs.
  • a locking or locking is provided every 180 °.
  • the locking disk 104 can be provided with three or four circumferential recesses, so that the handle 30 on the window 20 locks with the fitting lock 100 every 90 °. This consists of a few components, all of which are very flat and thus the appearance of those sunk in the window frame 22 Barely influence the actuating handle 10 '.
  • the arc pieces 112 of the actuating elements 102 also protrude only insignificantly from the console 105, which has a favorable effect on the appearance. In addition, no sweeping movements are necessary for operation.
  • the hardware lock 100 also forms a preassembled unit that can not only be prefabricated quickly and inexpensively. Rather, it can be installed quickly and easily between the lower part 51 and the upper part 61 of the stop body 50.
  • the lower part 51 and the upper part 61 are connected to one another in a non-positive, positive and / or frictional manner via the connecting elements 53, 63, the connecting elements 63 of the upper part 61 being designed such that they protrude through the ring bushes 119 of the console 105 and into the connecting elements 53 engage in the lower part 51.
  • latching elements 66 in the form of spreading legs are formed on the underside of the connecting elements 63, which come into engagement with the connecting elements 53 of the lower part 51.
  • the connecting elements 53 have counter latches 56 corresponding thereto.
  • two hollow cylindrical cams 129 are formed on the underside of the console 105 in the region of the two through openings 109, which engage in the base 52 of the lower part 51 in the region of the counter catches 56. In this way, the fitting lock 100 and the lower part 51 are also brought into engagement with one another in a form-fitting and frictional manner, so that an always exact and stable positioning of the fitting lock 100 is ensured.
  • the cams 129 secure the counter-latches 56, so that the upper part 61 is also permanently connected to the lower part 51.
  • the console 105 can also be designed to be essentially smooth on the underside, because of the sandwich-like arrangement, ie the arrangement of the anti-fogging device 100 between the lower part 51 and the upper part 61, and the lower part 51 and the upper part 61 due to the latching elements 66 and the counter detents 56 are brought into engagement with one another through the ring bushes 119 of the console 105, a sufficiently high stability is already achieved.
  • Fig. 2c shows the installation situation of the actuating handle 10 'according to Fig. 2 in cross section.
  • actuating handle 10 'according to the invention and the associated fitting lock 100 Another advantage of the actuating handle 10 'according to the invention and the associated fitting lock 100 is that existing actuating handles 10 can be retrofitted without changes to the fitting.
  • the entire construction forms with simple means a reliable child safety device that prevents unauthorized handling of the handle 30 by children effectively avoided even without a key, because children are usually unable to perform two opposite movements with both hands.
  • actuating handle 10 Another significant advantage of the actuating handle 10 'according to the invention is that the fitting lock 100 in the sandwich arrangement is an integrated part of the stop body 50 and that the bracket 105 of the fitting lock 100 rests in the assembled state on the stop surface 21 of the frame 22, while the entire lower part 51 of the stop body 50 disappears in the frame 22.
  • an extremely flat structure is achieved in spite of the additional function, which meets even high aesthetic demands.
  • the locking disk 80 with the toothed ring 90 integrated therein is first inserted into the lower part 51 and positioned between the spring bars 73. Thereafter, the fitting lock 100 is placed on the lower part 51, the underside of the console 105 lying flat on the outer sections 511, 513 of the lower part 51 and the side surface 81 of the locking disk 80. Then the upper part 61 is plugged onto the fitting lock 100, the connecting elements 63 of the upper part 61 projecting through the ring bushes 119 and the through openings 109 in the bracket 105 and engaging with the connecting elements 53 of the lower part 51. The upper part 61 now lies flat on the cover plate 106 of the fitting lock 100. The latter is stable and securely mounted on the stop surface 21 of the frame 22.
  • the stop body 50 with the lower part 51 is inserted into the first recess 23 of the frame 22 and fixed therein with the screws 12.
  • the latter pass through the connecting elements 53, 63 and the ring bushes 119 and at the same time also fix the fitting securing device 100 on the stop surface 21 of the frame 22.
  • the cover plate 58 is then placed with its central recess on the neck section 65 of the upper part 61 in order to subsequently grip the handle 30 to assemble the polygon 40 pre-assembled in the handle neck 32.
  • Fig. 3 shows yet another embodiment of the actuating handle 10 "according to the invention.
  • the cover plate 106 of the bracket 105 of the fitting securing device 100 is designed as an upper part 61 for the stop body 50.
  • the neck section 65 here additionally has two diametrically opposite cutouts 107 for the locking elements 101 of the fitting lock 100.
  • Fig. 3 , 3a and 3b also show an alternative embodiment of the locking elements 74, which are designed here as balls. These sit in the lower part 51 of the stop body 50 in longitudinal slots 130, which are formed in the outer or lateral sections 511, 513 of the base body 52. A compression spring 132 lies inside each longitudinal slot 130 and presses the balls 74 radially against the locking disk 80.
  • the invention is not limited to one of the above-described embodiments, but can be modified in many ways. So you can choose as a fixing element 90 instead of a prong ring another fastening solution, for example a snap ring or a spring ring. It is also conceivable to use a snap-in connection or a locking mechanism.
  • the radial locking of the locking disk 80 with the lower part 51 can - if the overall height allows this - also take place axially, if necessary, the locking preferably taking place with the central section 512 of the lower part 51.
  • the lower part 51 and the upper part 61 can be screwed to one another directly or with the fitting lock 100 interposed. It is also possible for the upper part 61 to be connected to the fitting lock 100 and this in turn to the lower part 51 in a non-positive, positive and / or frictional manner.
  • the invention provides an actuating handle for a window or a door, with a rotatably mounted handle and an adjoining handle neck which has a recess on the end face in which a polygon for actuating a locking mechanism formed in the window or in the door is set.
  • the stop body of the actuating handle can be fixed on or in the window or door, the Handle neck of the handle is axially fixed-rotatable in or on the stop body.
  • the stop body comprises a lower part and an upper part , wherein a locking disc is arranged between the lower part and the upper part, which has a recess of the same shape in cross-section in the center, and wherein the lower and the upper part can be connected to one another in a non-positive, positive and / or frictional manner.
  • a fitting security device is arranged between the lower part and the upper part, which is preferably sandwiched between the upper part and the lower part as a preassembled structural unit.
  • the cover plate of the fitting lock can form the upper part of the actuating handle ⁇ b> List of reference symbols ⁇ /b> L

Landscapes

  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Lock And Its Accessories (AREA)
  • Mechanical Control Devices (AREA)

Claims (14)

  1. Manette d'actionnement (10) pour une fenêtre (20) ou une porte,
    ▪ avec une poignée (30) montée de manière rotative et un col de poignée (32) raccordé à celle-ci, lequel présente de manière frontale une cavité (34) dans laquelle est défini un polygone (40) destiné à l'actionnement d'un mécanisme de fermeture conçu dans la fenêtre (20) ou dans la porte, et
    ▪ avec un corps de butée (50) qui peut être fixé sur ou dans la fenêtre (20) ou la porte, dans laquelle le col de poignée (32) de la poignée (30) est monté de manière axialement fixe et rotative dans ou sur le corps de butée (50),
    ▪ dans laquelle le corps de butée (50) comprend une partie inférieure (51) et une partie supérieure (61),
    ▪ dans laquelle la partie inférieure (51) et la partie supérieure (61) sont raccordées ensemble par force, par forme et/ou par friction,
    ▪ dans laquelle une protection de ferrure (100) est agencée entre la partie inférieure (51) et la partie supérieure (61), et
    ▪ dans laquelle la protection de ferrure (100) présente au moins un élément de verrouillage (101) qui fixe la poignée (30) dans au moins une position de rotation distincte et qui peut être libéré de son verrouillage via au moins un élément d'actionnement (102) dans le sens opposé à une force de rappel, dans laquelle chaque élément de verrouillage (101) est conçu sur un poussoir mobile (103) parallèle à la face de butée (21) de la fenêtre (20) ou de la porte, et s'engage sur un disque de verrouillage (104) raccordé de manière axialement fixe et rotative sur une poignée (30) pourvue d'un col de poignée (32),
    caractérisée en ce qu'un disque d'arrêt (80) est conçu entre la partie inférieure (51) et la partie supérieure (61), lequel présente en son centre une cavité (82) de forme égale en coupe transversale au polygone (40), et en ce que dans laquelle le poussoir (103) est monté coulissant dans une console (105) et peut être actionné dans le sens opposé à la force de rappel via l'élément d'actionnement (102), dans laquelle le disque d'arrêt (80) de la manette d'actionnement (10) et le disque de verrouillage (104) de la protection de ferrure (100) sont agencés de manière concentrique à l'axe de rotation du col de poignée.
  2. Manette d'actionnement selon la revendication 1, caractérisée en ce que le disque d'arrêt (80) présente des creux d'arrêt (84) conçus sur sa circonférence.
  3. Manette d'actionnement selon la revendication 1 ou 2, caractérisée en ce que le col de poignée (32) est sécurisé en direction axiale (L) au centre du disque d'arrêt (80) dans ou sur le corps de butée (50).
  4. Manette d'actionnement selon l'une quelconque des revendications 1 à 3, caractérisée en ce que le col de poignée (32) est sécurisé en direction axiale (L) au centre de l'élément de fixation (90) dans ou sur le corps de butée (50).
  5. Manette d'actionnement selon la revendication 4, caractérisée en ce que le disque d'arrêt (80) et/ou l'élément de fixation (90) est raccordé avec le polygone (40) par force, par forme, par friction et/ou par combinaison de matières.
  6. Manette d'actionnement selon l'une quelconque des revendications 1 à 5, caractérisée en ce que la partie supérieure (61) présente un corps principal (62) qui est pourvu d'une ouverture (64), laquelle reçoit le col de poignée (32) de la poignée (30) de manière rotative.
  7. Manette d'actionnement selon l'une quelconque des revendications 1 à 6, caractérisée en ce que la partie inférieure (51) présente un corps principal (52) qui est pourvu d'une ouverture (54), laquelle reçoit le polygone (40) de manière rotative.
  8. Manette d'actionnement selon la revendication 7, caractérisée en ce que le corps principal (52) de la partie inférieure (51) forme une surface de contact ou de support (72) pour le disque d'arrêt (80).
  9. Manette d'actionnement selon la revendication 7 ou 8, caractérisée en ce qu'au moins un élément d'arrêt (74) est prévu sur ou dans le corps principal (52) de la partie inférieure (51), lequel est en prise avec un creux d'arrêt (84) du disque d'arrêt (80) dans des positions de rotation de la poignée (30).
  10. Manette d'actionnement selon l'une quelconque des revendications 1 à 9, caractérisée en ce que la partie inférieure (51) présente un premier élément de raccordement (53) et en ce que la partie supérieure (61) présente un second élément de raccordement (63), dans laquelle les éléments de raccordement (53, 63) de la partie inférieure (51) et de la partie supérieure (61) peuvent être mis en prise l'un avec l'autre par force, par forme et/ou par friction.
  11. Manette d'actionnement selon la revendication 1, caractérisée en ce que la protection de ferrure (100) présente une plaque de recouvrement (106) avec une ouverture (107) dans la portée du disque d'arrêt (80) et du disque de verrouillage (104), dans laquelle la plaque de recouvrement (106) forme la partie supérieure.
  12. Fenêtre avec un cadre de fenêtre (22) et avec une manette d'actionnement (10) selon l'une quelconque des revendications 1 à 11, caractérisée en ce qu'une première cavité (23) est conçue dans le cadre de fenêtre (22), laquelle reçoit entièrement la partie inférieure (51) de la manette d'actionnement (10).
  13. Fenêtre selon la revendication 12, caractérisée en ce que la partie inférieure (51) se termine en affleurant la surface du cadre de fenêtre (22).
  14. Fenêtre selon la revendication 12 ou 13, caractérisée en ce que le contour de la cavité (23) correspond au contour de la partie inférieure (51).
EP14180618.2A 2013-11-14 2014-08-12 Poignée d'actionnement Active EP2873787B1 (fr)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
DE102013112580.8A DE102013112580A1 (de) 2013-11-14 2013-11-14 Betätigungshandhabe

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EP2873787A2 EP2873787A2 (fr) 2015-05-20
EP2873787A3 EP2873787A3 (fr) 2015-09-30
EP2873787B1 true EP2873787B1 (fr) 2020-03-18

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Families Citing this family (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20170298652A1 (en) * 2016-04-18 2017-10-19 Wan Lai Liau Fix posistion device for casement latch
EP3480393B1 (fr) * 2017-11-06 2020-12-23 Masterlab S.R.L. Dispositif et procédé de montage d'une poignée sur une porte ou une fenêtre
IT201800004467A1 (it) * 2018-04-13 2019-10-13 Dispositivo di comando manuale della serratura di un serramento
DK3575515T3 (da) * 2018-05-30 2022-06-07 Jasa Company As Håndtag til betjening af et vindue eller en dør
CN117305109B (zh) * 2023-10-28 2024-03-12 苏州环美生物医疗科技有限公司 一种振荡细胞克隆培养装置和组合式培养设备

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Publication number Priority date Publication date Assignee Title
DE3203311A1 (de) * 1982-01-29 1983-08-11 Fa. Aug. Winkhaus, 4404 Telgte Griffbeschlag mit kindersicherung fuer fenster- oder tuerfluegel
DE29703607U1 (de) * 1997-02-28 1997-04-24 Hoppe AG, 35260 Stadtallendorf Betätigungshandhabe
DE29922496U1 (de) 1999-12-22 2000-03-30 Hoppe Ag St Martin Betätigungshandhabe
DE20011806U1 (de) * 2000-07-07 2000-09-14 Fsb Franz Schneider Brakel Gmb Drehgriff
ITMI20030494U1 (it) 2003-10-28 2005-04-29 Hoppe Ag Dispositivo di sicurezza per ferramenta
DE202007000380U1 (de) * 2007-01-04 2008-05-15 Hoppe Ag Rückholfedereinrichtung für Tür- oder Fensterbeschläge sowie Tür- und/oder Fensterbeschlag
ES2609261T3 (es) * 2007-09-07 2017-04-19 Dormakaba Deutschland Gmbh Roseta con un dispositivo de seguridad

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None *

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Publication number Publication date
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DE102013112580A1 (de) 2015-05-21
EP2873787A3 (fr) 2015-09-30

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