EP3095938B1 - Armature et procede de fabrication d'une armature - Google Patents

Armature et procede de fabrication d'une armature Download PDF

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Publication number
EP3095938B1
EP3095938B1 EP16169495.5A EP16169495A EP3095938B1 EP 3095938 B1 EP3095938 B1 EP 3095938B1 EP 16169495 A EP16169495 A EP 16169495A EP 3095938 B1 EP3095938 B1 EP 3095938B1
Authority
EP
European Patent Office
Prior art keywords
bearing
corner
fitting
stay
stay bearing
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
EP16169495.5A
Other languages
German (de)
English (en)
Other versions
EP3095938A1 (fr
Inventor
Dirk Hanel
Barbara REICH
Jürgen Mattausch
Eike Diem
Markus Röder
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.)
Roto Frank AG
Original Assignee
Roto Frank 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 Roto Frank AG filed Critical Roto Frank AG
Priority to PL16169495T priority Critical patent/PL3095938T3/pl
Publication of EP3095938A1 publication Critical patent/EP3095938A1/fr
Application granted granted Critical
Publication of EP3095938B1 publication Critical patent/EP3095938B1/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
    • E05DHINGES OR SUSPENSION DEVICES FOR DOORS, WINDOWS OR WINGS
    • E05D15/00Suspension arrangements for wings
    • E05D15/48Suspension arrangements for wings allowing alternative movements
    • E05D15/52Suspension arrangements for wings allowing alternative movements for opening about a vertical as well as a horizontal axis
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05DHINGES OR SUSPENSION DEVICES FOR DOORS, WINDOWS OR WINGS
    • E05D15/00Suspension arrangements for wings
    • E05D15/48Suspension arrangements for wings allowing alternative movements
    • E05D15/52Suspension arrangements for wings allowing alternative movements for opening about a vertical as well as a horizontal axis
    • E05D15/5211Concealed suspension fittings
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05DHINGES OR SUSPENSION DEVICES FOR DOORS, WINDOWS OR WINGS
    • E05D15/00Suspension arrangements for wings
    • E05D15/48Suspension arrangements for wings allowing alternative movements
    • E05D15/52Suspension arrangements for wings allowing alternative movements for opening about a vertical as well as a horizontal axis
    • E05D15/5214Corner supports
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05YINDEXING SCHEME ASSOCIATED WITH SUBCLASSES E05D AND E05F, RELATING TO CONSTRUCTION ELEMENTS, ELECTRIC CONTROL, POWER SUPPLY, POWER SIGNAL OR TRANSMISSION, USER INTERFACES, MOUNTING OR COUPLING, DETAILS, ACCESSORIES, AUXILIARY OPERATIONS NOT OTHERWISE PROVIDED FOR, APPLICATION THEREOF
    • E05Y2800/00Details, accessories and auxiliary operations not otherwise provided for
    • E05Y2800/15Applicability
    • E05Y2800/17Universally applicable
    • E05Y2800/172Universally applicable on different wing or frame locations
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05YINDEXING SCHEME ASSOCIATED WITH SUBCLASSES E05D AND E05F, RELATING TO CONSTRUCTION ELEMENTS, ELECTRIC CONTROL, POWER SUPPLY, POWER SIGNAL OR TRANSMISSION, USER INTERFACES, MOUNTING OR COUPLING, DETAILS, ACCESSORIES, AUXILIARY OPERATIONS NOT OTHERWISE PROVIDED FOR, APPLICATION THEREOF
    • E05Y2800/00Details, accessories and auxiliary operations not otherwise provided for
    • E05Y2800/72Sets of mutually exchangeable elements, e.g. modular

Definitions

  • the invention relates to a fitting, in particular tilting fitting or Drehkippbeschlag, for a building closure, with a Ecklager responded and Axerlager issued, which are provided for movably supporting a sash of the building closure on a window frame of the building closure, wherein the Ecklager responded a Ecklagertappedbauteil and a Ecklagerelement and the Axerlager responded a Axerlagergrundbauteil and an Axerlager forest for rotatably supporting a Axerarms, wherein the Ecklagerelement is mounted or fixed by means of a Ecklagerbolzens on a Ecklagerbolzen attached to the Ecklagerbauteil.
  • the invention further relates to a method for producing a fitting.
  • the building closure element is preferably provided for arrangement in a recess of a building, in particular a residential building or residential building, and designed accordingly. It is used for closing, in particular the only temporary closing, the recess or a flow and / or visual connection from an external environment of the building to an interior of the building.
  • the building closure element occupy at least two states. In a first state, the recess of the building is closed, while it is at least partially, in particular completely, released in a second state.
  • the building closure element can be present, for example, as a window, door or the like.
  • a glazing in particular a multiple glazing, for example a double or triple glazing.
  • the door can be equipped with a glazing.
  • the building closure preferably has at least one frame and at least one wing or sash.
  • the casement is arranged to be movable relative to the frame, in particular tiltable and / or rotatable. Under a tilting of the casement is meant pivoting about a first pivot axis, while the twisting describes a pivoting of the casement about a second pivot axis.
  • the first pivot axis and the second pivot axis are angled against each other, so are not parallel to each other.
  • a skewed arrangement of the first pivot axis and the second pivot axis may also be provided.
  • the two pivot axes ie the first pivot axis and the second pivot axis, are perpendicular to one another or extend in mutually perpendicular directions.
  • the first pivot axis is arranged horizontally in the installed position of the building closure and the second pivot axis is arranged vertically.
  • this can be relocated preferably from a closed position into a night ventilation position, in which the building closure is only partially open.
  • the sash can be moved from the closed position to an open position in which the building closure is further open than in the night ventilation position, preferably fully open.
  • the pivotable displacement of the sash with respect to the frame of the fitting is provided. This is struck or fastened on the one hand to the frame and on the other hand on the sash, so makes a connection between the frame and the sash.
  • the fitting can be configured, for example, as a tilting fitting or as a turn-tilt fitting. If it is in the form of the tilting fitting, it is designed in such a way that the sash frame can only be tilted. If, on the other hand, it is configured as a turn-and-tilt fitting, it enables both the tilting and the turning of the sash frame relative to the window frame.
  • the fitting has the corner bearing device and the Axerlager issued. These are provided for the movable mounting of the sash with respect to the frame.
  • the corner bearing serves the tiltable or moskippbaren mounting of the sash frame with respect to the frame. For this purpose, it attacks, for example, directly on the frame and directly on the sash. It has the basic corner bearing component as well as the corner bearing element.
  • the Ecklagerbauteil example is rigidly attached to the frame, in particular it is screwed to this. At the Ecklagergrundbauteil the Ecklagerelement is attached, which forms a bearing of the Ecklager Anlagen with.
  • the Ecklagerelement cooperates with a Ecklageresqueelement, wherein the Ecklagerussielement is rigidly fixed, for example, to the casement, for example, is screwed to it.
  • the Ecklagerelement cooperates with the attachable to the casement Ecklagerussielement the fitting for rotatably supporting the casement.
  • the Ecklagerussielement is rigidly attached to the sash.
  • the Ecklagerelement cooperates with the Ecklagerussielement to form a bearing, which allows, for example, a rotation of the sash with respect to the frame.
  • the corner bearing element is designed as a corner bearing pin and the corner bearing counter element as Ecklagerability, wherein the corner bearing pin engages in the Ecklagerability and rotatably arranged or stored in this.
  • the corner bearing counter element can be present as a corner bearing pin and the corner bearing element as Ecklagerelasticity.
  • the Ecklagerbolzen is provided.
  • the Axerlager experienced has the Axerlagergrundbauteil and the Axerlagerstatt.
  • the basic Axerlagerbauteil is analogous to the Ecklagergrundbauteil preferably rigidly attached to the frame, for example screwed to this.
  • the Axerlager forest now serves the pivotal connection of the Axerarms with the Axerlagergrundbauteil and thus the frame.
  • the Axerarm attacks so far on the one hand on the Axerlagerstatt and is mounted by means of this pivotally with respect to the window frame.
  • the Axerarm is connected to the sash, for example, pivotally mounted on this.
  • the Axerarm serves to tilt the sash around the first pivot axis, in particular a limitation of an opening angle by which the casement can be pivoted with respect to the frame around the first pivot axis.
  • the Axerlager forest is mounted or fixed by means of at least one Axerlagerbocks on the Axerlagerbauteil, wherein the Ecklagerbock and the Axerlagerbock are designed as common parts, which are arranged in different orientations on Ecklagerbauteil and Axerlagerbauteil.
  • the Ecklagerelement or the Ecklagerbolzen and Ecklageryakbauteil on the one hand and between the Axerlagertappedbauteil and the Axerlageraux on the other hand therefore, the same elements, namely the Ecklagerbock and designed as a common part to the Ecklagerbock Axerlagerbock arranged.
  • the Ecklagerbolzen is mounted on the Ecklagerbauteil, in particular rotatably mounted, or rigidly secured.
  • the Axerlager forest is stored using the Axerlagerbocks on the Axerlagerbauteil, in particular rotatably mounted, or rigidly secured.
  • the corner bracket and the Axerlagerbock are identical.
  • the design of the Ecklagerbocks and the Axerlagerbocks as equal parts has the advantage that on the one hand interpreted and manufactured a smaller number of different parts, and that on the other hand, a production of the common parts is more cost-effective due to the larger number.
  • the Ecklagerbock is arranged in a first orientation on the Ecklagertappedbauteil and the Axerlagerbock in a different orientation from the first alignment on the Axerlagerbauteil.
  • the Ecklagertappedbauteil and the Axerlagerbauteil each have a longitudinal central axis.
  • the corner bearing block and the Axerlagerbock each have a bearing axis, the bearing axes for the Ecklagerbock and the Axerlagerbock also match due to the design as equal parts.
  • the bearing axis corresponds to a longitudinal central axis of bearing eyes of the Ecklagerbocks or the Axerlagerbocks.
  • the corner bearing block is arranged in the first orientation on the Ecklagerbauteil, wherein between the longitudinal center axis of the Ecklagerbauteils and the bearing axis of the Ecklagerbocks there is a certain first orientation.
  • a second orientation should be provided between the longitudinal central axis of the Axerlagerbauteils and the bearing axis of the Axerlagerbocks, which is different from the first orientation.
  • the first orientation corresponds to a first angle between the corresponding longitudinal center axis and the corresponding bearing axis
  • the second orientation corresponds to a second angle between the corresponding axes. The second angle should now be different from the first angle.
  • the bearing axis of the Ecklagerbocks - seen in plan view - arranged perpendicular to the longitudinal central axis of Ecklagerbauteils.
  • the bearing axis of the Axerlagerbocks may be arranged parallel to the longitudinal central axis of the Axerlagerbauteils.
  • the Ecklagerbock and the Axerlagerbock each have two spaced-apart bearing flanges and a bearing flanges interconnecting the fastening web, wherein the bearing flanges and the fastening web are arranged in a U-shape.
  • the two bearing flanges are used for direct or indirect attachment or storage of Ecklagerelements or the Axerlager windss.
  • the bearing flanges are connected together via the fastening web, so that the corner bearing block and the Axerlagerbock are substantially U-shaped.
  • the two bearing flanges each form legs which are fastened to the fastening web or emanating therefrom and which each have a free end on their side facing away from the fastening web.
  • the bearing flanges and the fastening web are designed in one piece and / or of the same material.
  • the Ecklagerbock and the Axerlagerbock by forming, for example by bending forming, formed.
  • the bearing flanges are connected via the fastening web to the basic corner bearing component and, in the case of the axial bearing block, to the axial bearing basic component.
  • the attachment web is so far attached to the Ecklagertappedbauteil or the Axerlagertappedbauteil, for example, form-fitting and / or material fit.
  • the fastening web is riveted to the Ecklagertappedbauteil or the Axerlagerbauteil.
  • a rivet element may be formed on the fastening web, which is introduced into a corresponding recess of the Ecklagerbauteils or Axerlagertappedbauteils and transformed there such that it engages behind the Ecklagerbauteil or the Axerlagertappedbauteil, so that the fastening web and thus the Ecklagerbock or the Axerlagerbock form-fitting the Ecklagertappedbauteil or the Axerlagertappedbauteil is held.
  • the Ecklagertappedbauteil and the Axerlagertappedbauteil are also designed as equal parts.
  • the manufacturing cost and the production cost per fitting can be further reduced.
  • the Ecklagertappedbauteil and the Axerlagertappedbauteil are available as a plate or plate-shaped element.
  • at least one screw receptacle is provided in the Ecklagertappedbauteil and the Axerlagertappedbauteil, which serves to receive a screw for fixing the Ecklagertappedbauteils or the Axerlagertappedbauteils to the frame. Particularly preferred several screw receptacles are realized.
  • the Ecklagertappedbauteil and the Axerlagertappedbauteil each have at least one mounting receptacle, which serves to attach the Ecklagerbocks or the Axerlagerbocks.
  • a plurality of fastening receptacles for example in each case two fastening receptacles, are realized on the corner bearing basic component and the basic Axerlager component.
  • each bearing flange of the corner bearing block and the Axerlagerbocks each having a bearing eye.
  • the bearing lugs of the bearing flanges are used for storage or attachment of the Ecklagerelements or the Axerlager forestss.
  • the bearing eye is preferably an edge-closed recess, which has, for example, a round cross-section.
  • the corner bearing bolt passes through the bearing eyes of the bearing flanges of the Ecklagerbocks and is rigidly mounted or rotatably mounted in these.
  • the Axerlagerux passes through the bearing eyes of at least one Axerlagerbocks and is rigidly mounted in these or rotatably mounted.
  • the Ecklagerbolzen is rotatably mounted in the bearing eyes of the Ecklagerbocks about a pivot axis and held in the axial direction with respect to the pivot axis.
  • the corner bearing bolt is used for attachment or storage of the Ecklagerelements on the Ecklagerbauteil.
  • the Ecklagerbolzen engages at least partially in the bearing eyes of the corner bearing block. Particularly preferably, he passes completely through both bearing eyes. In this case, it is fixed in the bearing eyes in such a way that, although it is rotatably mounted, it is securely held in the axial direction with respect to its pivot axis.
  • the corner bearing bolt serves, for example, as an adjusting device for the corner bearing element, thus allowing a displacement of the corner bearing element in the axial direction with respect to the pivot axis.
  • the corner bearing element can be rigidly secured to the corner bearing block by means of the corner bearing pin.
  • the corner bearing pin is a threaded bolt and has an external thread which engages in an internal thread of the Ecklagerelements.
  • the corner bearing bolt serves as an adjusting device for the corner bearing element. Due to the interaction of the internal thread with the external thread, an axial displacement of the corner bearing element relative to the axis of rotation of the corner bearing pin can be achieved by turning the corner bearing pin. In this way, the fitting can be adapted to the local conditions during assembly of the building closure.
  • the Ecklagerelement is rotatably mounted or mounted on the Ecklagerbolzen.
  • an adjusting torque to be applied for rotating the corner bearing bolt is greater than a torque acting on the corner bearing bolt, which occurs when pivoting the corner bearing element with respect to the corner bearing pin. This ensures that no unintentional adjustment of the corner bearing pin can occur.
  • a further advantageous embodiment of the invention provides that the threaded bolt is present as a threaded stud, which has a first storage area, a second storage area and a lying between the first storage area and the second storage area, having the external thread threaded portion, wherein the first storage area has a larger diameter has as the second storage area.
  • the embodiment of the threaded bolt as a threaded-bolt is to be understood that the threaded bolt along its longitudinal central axis has different diameters, at least two different diameters.
  • the threaded bolt has the first storage area, the second storage area and the threaded area. These areas adjoin one another directly, so that the threaded area extends on the one hand directly to the first storage area and on the other hand directly to the second storage area.
  • the first storage area is arranged in a first of the bearing eyes and the second storage area in a second of the bearing eyes of the corner bearing block.
  • the first bearing region preferably has an axial extension, which corresponds at least to the axial extension of the first of the bearing eyes, while the second bearing region has an axial extension which at least the axial extension of the second of the bearing eyes equivalent.
  • the threaded portion is in such a configuration according to between the bearing flanges of the Ecklagerbocks before and preferably extends directly from one of the bearing flanges to immediately opposite to the first of the bearing flanges opposite second of the bearing flanges.
  • the first storage area of the threaded bolt has a larger diameter than the second storage area.
  • the external thread provided in the threaded area can be formed in a simple manner, in particular cut from the direction of the second storage area.
  • the threaded bolt on a head which adjoins directly to the first storage area or forms this with.
  • the head has, for example, once again larger dimensions or a larger diameter than the first storage area.
  • an engagement opening for an adjustment tool is provided on the head, in particular an internal polygonal opening.
  • a particularly preferred embodiment of the invention provides that the second bearing region has a diameter which corresponds to a core diameter of the outer thread highest.
  • the diameter of the second storage area is particularly preferably smaller than the core diameter. This facilitates the formation of the external thread from the direction of the second storage area.
  • a development of the invention provides that the first of the bearing eyes a larger first diameter and the second of the Bearing eyes has a smaller second diameter.
  • the bearing eyes have different diameters analogous to the bearing areas of the threaded bolt.
  • the first diameter corresponds to the diameter of the first storage area and / or the second diameter corresponds to the diameter of the second storage area.
  • the first diameter is slightly larger than the diameter of the first storage area and / or the second diameter is slightly larger than the diameter of the second storage area.
  • a further preferred embodiment of the invention provides that the Axerlagerung has a bearing pin extending from a head, wherein the head in the radial direction has dimensions which are larger than the first diameter and / or the second diameter, and the bearing pin has a maximum diameter, which corresponds at most to the second diameter.
  • the bearing pin extends directly from the head of the Axerlagertorss.
  • the Axerlagerrob consists solely of the head and the bearing pin, wherein the bearing pin in the direction of a longitudinal center axis of the Axerlagerilss larger dimensions than the head.
  • the dimensions of the bearing pin are at least ten times, at least fifteen times or at least twenty times as large as the dimensions of the head in the same direction.
  • the Axerlager york is arranged in the bearing eyes of the Axerlagerbocks.
  • the head in radial Direction relative to a longitudinal center axis of the Axerlagerhrs have dimensions that are greater than the first diameter and / or the second diameter, the former is preferred.
  • the head can basically have any cross-section, for example, it is round or square.
  • the bearing pin has the maximum diameter which corresponds at most to the second diameter.
  • the maximum diameter is to be understood as the largest diameter of the bearing pin along its entire longitudinal extent. While the head can therefore preferably not be displaced through a larger of the bearing eyes, the bearing pin should be able to be displaced through the smaller of the bearing eyes. Particularly preferably, the maximum diameter of the bearing pin corresponds exactly to the second diameter in order to securely hold the bearing pin in the radial direction.
  • a further Axerlagerbock is arranged on the Axiallagertappedbauteil, which is designed identically to the Axerlagerbock, the Axerlager defence both the Axerlagerbock and the other Axerlagerbock each at least partially, in particular completely.
  • the other Axerlagerbocks reference is made in full to the comments on the Axerlagerbock because the other Axerlagerbock is configured identical to the Axerlagerbock.
  • the other Axerlagerbock is arranged or fixed to the Axerlagertappedbauteil analogous to the Axerlagerbock.
  • the further Axerlagerbock spaced from the Axerlagerbock arranged.
  • the Axerlagerbock and the other Axerlagerbock are arranged on the Axerlagertappedbauteil such that the smaller bearing eyes are facing each other.
  • a further preferred embodiment of the invention provides that the Ecklagerbock on the Ecklagerbauteil and / or the Axerlagerbock and / or the other Axerlagerbock on the Axerlagerbauteil are positively and / or cohesively fastened / is.
  • the corner bearing block is thus attached to the Ecklagerbauteil.
  • the Axerlagerbock and / or the other Axerlagerbock are attached to the Axerlagerbauteil. This attachment can now be positive and / or cohesive. Under the positive fastening, for example, a fastening means of a rear handle or the like to understand.
  • the positive fastening is realized by riveting.
  • a rivet element can be provided on the corner bearing block, the Axerlagerbock and / or the other Axerlagerbock, which is introduced into a mounting receptacle of Ecklagertappedbauteils or Axergrundbauteils and formed there for positive retention.
  • the positive attachment can also be achieved in alternative ways, for example by pressing, Vertaumeln or the like.
  • the cohesive fastening is provided, for example by welding or gluing.
  • the Axerlagerstatt is positively held at least in the axial direction with respect to its longitudinal central axis.
  • at least one fastening element is preferably provided. This can cooperate with a mounting recess or a mounting projection of the Axerlager forestss to fix this.
  • the fastening projection or the fastening recess is preferably arranged between the bearing flanges of the Axerlagerbocks and / or the bearing flanges of the other Axerlagerbocks. Accordingly, the fastener is also provided between the bearing flanges.
  • the invention further relates to a method for producing a fitting, in particular a fitting according to the above Embodiments, wherein the fitting has a corner bearing device and an Axerlager observed which are provided for movably supporting a sash of the building closure on a window frame of the building closure, wherein the Ecklager responded a Ecklagertappedbauteil and Ecklagerelement and the Axerlager responded Axerlagergrundbauteil and Axerlager forest for rotatably supporting a Axerarms having.
  • the invention of course also relates to a building closure with a fitting, in particular a fitting according to the above, as well as with a frame and a sash, wherein the fitting has a corner bearing device and an Axerlager observed, which are provided for the movable mounting of the sash to the frame, wherein the corner bearing device has a Ecklagertappedbauteil and a Ecklagerelement and the Axerlager responded a Axerlagergrundbauteil and an Axerlagerux for rotatably supporting a Axerarms.
  • corner bearing element is mounted or fixed by means of a corner bearing bolt to a corner bearing block fixed to the corner bearing base member and the Axerlagerux is mounted or secured by means of at least one Axerlagerbocks on the Axerlagergrundbauteil, wherein the Ecklagerbock and the Axerlagerbock are designed as equal parts.
  • FIG. 1 shows an exploded view of a fitting 1 for a building closure, which is not shown here.
  • the building closure can be designed, for example, as a window, as a door or the like.
  • the fitting 1 is in the embodiment shown here as Drehkippbeschlag ago, thus allowing both a rotation and tilting of a sash of the building closure with respect to a frame of the Building closure.
  • the fitting 1 has a corner bearing device 2 and an Axerlager issued 3.
  • the corner bearing device 2 has a corner bearing base component 4 which can be fastened to the frame and a corner bearing element 5.
  • the corner bearing element 5 interacts with a corner bearing counter element 6 which can be fastened to the casement for storage.
  • the corner bearing element 5 is in the form of a corner bearing pin, wherein the corner bearing pin engages in the designed as a Ecklagerability Ecklagerussielement 6 and is mounted rotatably there.
  • the Ecklagerelement 5 is rotatably mounted with respect to the Ecklagerbauteils 4, namely an indicated pivot axis 7.
  • the Ecklagerelement 5 by means of a Ecklagerbolzens 8 and a Ecklagerbock 9 attached to the Ecklagerbauteil 4 or stored.
  • the corner bearing element 5 is pivotable about the pivot axis 7 with respect to the Ecklagerbauteils 4
  • the Ecklagerussielement 6 is pivotable about a pivot axis 10 with respect to the Ecklagerelements 5.
  • the pivot axes 7 and 10 are perpendicular to each other. It is also an arrangement feasible, in which one of the pivot axes 7 and 10 is perpendicular to a respective other of the pivot axes 10 and 7 receiving imaginary plane.
  • the Axerlager listening 3 has an Axerlagergrundbauteil 11, which is fastened or fixed to the frame. Furthermore, the Axerlager listening 3 has an Axerlager forest 12 which is fixed or mounted by means of at least one Axerlagerbocks 13 to the Axerlagerbauteil 11. In the embodiment shown here, a further Axerlagerbock 14 is provided in addition to the Axerlagerbock 13.
  • the Axerlagerstatt 12 passes through both the Axerlagerbock 13 and the Axerlagerbock 14 each at least partially, in particular completely.
  • a Axerarm 15 is rotatably mounted, in particular with respect to the Axerlagergrundbauteils 11 and therefore with respect to the frame.
  • both the Ecklagertappedbauteil 4 and the Axerlagertappedbauteil 11 each have at least one screw receptacle 16, preferably a plurality of screw receivers 16. Of these, only one is exemplified here.
  • the Ecklagertappedbauteil 4 and the Axerlagertappedbauteil 11 can be fastened to the window frame, in particular with this screwed.
  • the fitting may have one or more of the following elements: a transmission element 17, one or more Eckumlenk Institute 18, 19 and 20, one or more center locks 21 and 22, an Axerstulp 23, a second scissors 24, a Schnapperzapfen 25 and a whoschaltsperrenelement 26 before.
  • the said elements can be fastened or fastened to the casement.
  • one or more of the following elements can be fastened or fastened a tilting bearing 27, one or more strikers 28, a catch 29, a predominantlyschaltsperrenurgielement 30 and attachment means 31 for the second scissors 24th
  • a handle 32 is arranged, by means of which an actuation of the fitting 1 can be carried out by a user. Via the gear element 17, a rotary movement of the handle 32 is converted into a linear movement of locking pin 33.
  • locking pins 33 are provided on the Eckumlenk Institute 18 and 19 and the center locks 21 and 23.
  • each locking piece 28 is assigned a locking pin 33 or vice versa. If the locking pins 33 are engaged in the closing pieces 28, they prevent the building closure from being opened, that is to say a displacement of the sash frame from a closed position. If, on the other hand, the locking pins 33 are arranged out of engagement with the closing pieces 28, then the building closure can be opened.
  • the corner bearing device 2 is arranged with its Ecklagergrundbauteil 4 directly to the window frame and with its Ecklagerussielement 6 directly to the sash.
  • the Axerlager acquired 3 has also arranged directly on the frame Axerlagertappedbauteil 11. However, there is no direct connection between the Axerlager issued 3 and the sash 4 is provided. Rather, such a connection is made only indirectly via the Axerarm 15.
  • the Axerarm 15 is pivotally mounted on the sash or the Axerstulp 23.
  • the Axerarm 15 thus forms with the Axerstulp 23 a first Ausstellschere.
  • the second scissors 24 is additionally provided, which is purely optional.
  • the second scissors 24 is pivotally mounted on the one hand by means of the fastening means 31 on the frame and on the other hand on the sash and / or the Axerstulp 23.
  • the Ecklagerbauteil 4 and the Axerlagertappedbauteil 11 on the one hand and the Ecklagerbock 9, the Axerlagerbock 13 and the other Axerlagerbock 14 on the other hand each configured as identical parts and therefore identical.
  • the Ecklagertappedbauteil 4 is therefore identical to the Axerlagertappedbauteil 11, while the Ecklagerbock 9 and the Axerlagerböcke 13 and 14 are also identical. In this way, the number of different items of the fitting 1 is reduced and also allows a more cost-effective production due to the larger quantities.
  • FIG. 2 shows a detailed representation of the corner bearing device 2. Visible are in the screw receptacles 16 arranged screws 36, which serve to attach the Ecklagerbauteils 4 to the frame. Furthermore, the Ecklagerbauteil 4 has two mounting receptacles 37, of which only one is recognizable here. A longitudinal central axis 38 of the Ecklagerbauteils 4 is indicated. On the Ecklagerbauteil 4 is the Ecklagerbock 9 attached, for example by rivets or the like. For this purpose, a rivet element is preferably provided which can be introduced into the fastening receptacle 37 and can be deformed there to form a rear grip connection.
  • the corner bearing block 9 has two spaced-apart bearing flanges 39 and 40, which are interconnected by a fastening web 41. About the fastening web 41, the bearing flanges 39 and 40 are connected to the Ecklagerbauteil 4 or attached thereto. In the bearing flanges 39 and 40 are each a bearing eye 42 and 43, of which only the latter is recognizable here. In the bearing eyes 42 and 43 of the corner bearing pin 8 is rotatable, but fixed in the axial direction, arranged. With the help of the corner bearing bolt 8, the corner bearing element 5 is now mounted on the bearing flanges 39 and 40 and therefore on the corner bearing base component 4. Not recognizable in the illustration shown is a head 44 of the corner bearing pin 8.
  • pivot axes 7 and 10 wherein the pivot axis 7 coincides with a bearing axis of the corner bearing block 9 or defines such. It can be seen that the corner bearing block 9 is present in a first orientation on the Ecklagergrundbauteil 4 or the pivot axis 7 or a longitudinal central axis 38 intersecting parallel straight line of the pivot axis 7, with the longitudinal central axis 38 includes a certain first angle. This angle is in the embodiment shown here, for example, 90 °.
  • FIG. 3 shows a detailed view of the Axerlager worn 3. It is immediately apparent that the Axerlagergrundbauteil 11 is identical to the Ecklagerbauteil 4 described above. In that regard, here is the longitudinal central axis 38 before. Because the Axerlagerböcke 13 and 14 are designed as identical parts to the Ecklagerbock 9, hereinafter partially the same reference numerals are used, in particular for the bearing flanges 39 and 40, the mounting bar 41 and the bearing eyes 42 and 43. In addition, reference is made to the above statements. The Axerlagerböcke 13 and 14 are penetrated by the Axerlagerstatt 12. The Axerlagerstatt 12 has a head 45 and an outgoing from the head 45 bearing pin 46. The head 45 is configured such that it can not pass through the bearing eyes 42 and 43.
  • At least one fastening element 47 (here two fastening elements 47) is provided.
  • the fastening element 47 is preferably arranged between the bearing flanges 39 and 40 and engages with a projection 48 in a corresponding recess 49 (not visible here) of the Axerlagerstatts 12 a. It will be appreciated that the axler pedestals 13 and 14 are in a second orientation relative to the axler pedestal base 11, this second orientation being different from the first orientation.
  • FIG. 4 shows a sectional view of the corner bearing device 2. It can be seen that from the fastening web 41, a rivet element 50 goes out, which engages in the mounting receptacle 37. There, the rivet element 50 is subsequently deformed, so that the fastening web 41 and therefore the corner bearing block 9 is reliably held on the corner bearing base component 4. It also becomes clear that the corner bearing bolt 8 passes through both bearing eyes 42 and 43. In this case, a first storage area 51 is arranged in the bearing eye 42 and a second storage area 52 in the bearing eye 43. Between the bearing portions 51 and 52 is a threaded portion 53, in which the Ecklagerbolzen 8 has an external thread 54.
  • the external thread 54 cooperates with an internal thread, not shown, of the corner bearing element 5.
  • a displacement of the corner bearing element 5 in the axial direction with respect to the pivot axis 7 takes place accordingly.
  • the second bearing portion 52 has a diameter which is at most one core diameter (indicated by the double arrow 55). of the external thread 54 corresponds.
  • the diameter of the second bearing portion 52 is smaller than the core diameter of the external thread 54.
  • the Ecklagerbolzen 8 and the Axerlagerböcke 13 and 14 should be designed as equal parts. This will be discussed below.
  • FIG. 5 shows a sectional view of the Axerlager issued 3. It is again recognizable that the Axerlagerböcke 13 and 14 spaced from each other are arranged and fixed to the Axerlagergrundbauteil 11, in particular analogous to the above embodiments by means of rivet elements 50.
  • the Axerlagerböcke 13 and 14 are arranged to each other that the bearing flanges 40 face each other.
  • the bearing eyes 43 which have the smaller diameter, are arranged inside with respect to the pivot axis 35. In this way, an excellent support of the Axerlager operates 12 and the bearing pin 46 despite the larger diameter bearing eyes 43 is achieved.
  • the head 45 is now designed such that it can not pass through the larger diameter bearing lugs 43. Accordingly, it has in the radial direction with respect to the pivot axis 35 dimensions which are greater than those of the Lageraufen 43.
  • the bearing pin 46 has a maximum diameter over its entire longitudinal extent, which corresponds to the diameter of the bearing eye 43 highest. Preferably, the maximum diameter corresponds exactly to the diameter of the bearing eye 43, so that the bearing pin 46 is held reliably in the radial direction of both Axiallagerböcken 13 and 14.
  • the bearing flanges 39 and 40 respectively arranged recess 49, in which the projection 48 of the respective fastening element 47 engages to fix the Axerlagerstatt 12 in the axial direction.

Landscapes

  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Hinges (AREA)
  • Mutual Connection Of Rods And Tubes (AREA)

Claims (15)

  1. Ferrure (1) en particulier ferrure basculante ou oscillo-battante, pour une fermeture de bâtiment, comprenant un dispositif de palier d'angle (2) et un dispositif de palier d'axe (3) qui sont prévus pour le logement mobile d'un châssis de battant de la fermeture de bâtiment sur un châssis dormant de la fermeture de bâtiment, dans lequel le dispositif de palier d'angle (2) présente une pièce de base de palier d'angle (4) ainsi qu'un élément de palier d'angle (5) et le dispositif de palier d'axe (3) présente une pièce de base de palier d'axe (11) ainsi qu'une tige de palier d'axe (12) pour le déplacement en rotation d'un bras d'axe (15), dans lequel l'élément de palier d'angle (5) est disposé ou fixé au moyen d'un boulon de palier d'angle (8) sur un support de palier d'angle (9) fixé sur la pièce de base de palier d'angle (4), caractérisée en ce que la tige de palier d'axe (12) est disposée ou fixée sur la pièce de base de palier d'axe (11) au moyen d'au moins un support de palier d'axe (13), dans lequel le support de palier d'angle (9) et le support de palier d'axe (13) sont conçus en tant que pièces égales qui sont disposées dans différentes orientations sur la pièce de base de palier d'angle (4) et la pièce de base de palier d'axe (11).
  2. Ferrure selon la revendication 1, caractérisée en ce que le support de palier d'angle (9) et le support de palier d'axe (13) présentent respectivement deux brides de palier (39, 40) à distance l'une de l'autre et une branche de fixation (41) reliant les brides de palier (39, 40) entre elles, dans laquelle les brides de palier (39, 40) et la branche de fixation (41) sont disposées en formant un U.
  3. Ferrure selon l'une des revendications précédentes, caractérisée en ce que la pièce de base de palier d'angle (4) et la pièce de base de palier d'axe (11) sont également conçues en tant que pièces égales.
  4. Ferrure selon l'une des revendications précédentes, caractérisée en ce que chaque bride de palier (39, 40) du support de palier d'angle (9) et du support de palier d'axe (13) présente respectivement un oeil de palier (42, 43).
  5. Ferrure selon l'une des revendications précédentes, caractérisée en ce que le boulon de palier d'angle (8) est disposé rotatif sur un pivot (7) dans les yeux de palier (42, 43) du support de palier d'angle (9) et est maintenu en direction axiale par rapport au pivot (7).
  6. Ferrure selon l'une des revendications précédentes, caractérisée en ce que le boulon de palier d'angle (8) est un boulon fileté (8) et présente un filetage mâle (54) qui s'engage dans un filetage femelle de l'élément de palier d'angle (5).
  7. Ferrure selon l'une des revendications précédentes, caractérisée en ce que le boulon fileté est présent en tant que boulon fileté étagé qui dispose d'une première partie de palier (51), d'une seconde partie de palier (52) ainsi que d'une partie de filetage (53) présentant le filetage mâle (54) disposée entre la première partie de palier (51) et la seconde partie de palier (52), dans lequel la première partie de palier (51) présente un plus grand diamètre que la seconde partie de palier (52).
  8. Ferrure selon l'une des revendications précédentes, caractérisée en ce que la seconde partie de palier (52) présente un diamètre qui correspond au plus à un diamètre du coeur du filetage mâle (54).
  9. Ferrure selon l'une des revendications précédentes, caractérisée en ce que le premier des yeux de palier (42, 43) présente un premier diamètre plus grand et le second des yeux de palier (42, 43) présente un second diamètre plus petit.
  10. Ferrure selon l'une des revendications précédentes, caractérisée en ce que la tige de palier d'axe (12) présente une tige de palier (46) partant d'une tête (45), dans lequel la tête (45) présente des dimensions radiales qui sont supérieures au premier diamètre et/ou au second diamètre, et la tige de palier (46) présente un diamètre maximal qui correspond au plus au second diamètre.
  11. Ferrure selon l'une des revendications précédentes, caractérisée en ce qu'un support de palier d'axe supplémentaire (14) est disposé sur la pièce de base de palier d'axe (11) qui est de même conception que le support de palier d'axe (13), dans lequel la tige de palier d'axe (12) traverse respectivement tant le support de palier d'axe (13) que le support de palier d'axe supplémentaire (14) au moins partiellement, en particulier complètement.
  12. Ferrure selon l'une des revendications précédentes, caractérisée en ce que le support de palier d'axe (13) et le support de palier d'axe supplémentaire (14) sont ainsi disposés sur la pièce de base de palier d'axe (11) que les yeux de palier (43) plus petits sont tournés l'un vers l'autre.
  13. Ferrure selon l'une des revendications précédentes, caractérisée en ce que le support de palier d'angle (9) est fixé sur la pièce de base de palier d'angle (4) et/ou le support de palier d'axe (13) et/ou le support de palier d'axe supplémentaire (14) est/sont fixé(s) sur la pièce de base de palier d'axe (11), par complémentarité des formes et/ou adhérence des matériaux.
  14. Ferrure selon l'une des revendications précédentes, caractérisée en ce que la tige de palier d'axe (12) est maintenue par complémentarité des formes au moins dans le sens axial par rapport à son axe médian longitudinal.
  15. Procédé de fabrication d'une ferrure (1) selon l'une ou plusieurs des revendications précédentes, dans lequel la ferrure (1) dispose d'un dispositif de palier d'angle (2) et d'un dispositif de palier d'axe (3) qui sont prévus pour le logement mobile d'un châssis de battant de la fermeture de bâtiment sur un châssis dormant de la fermeture de bâtiment, dans lequel le dispositif de palier d'angle (2) présente une pièce de base de palier d'angle (4) ainsi qu'un élément de palier d'angle (5) et le dispositif de palier d'axe (3) présente une pièce de base de palier d'axe (11) ainsi qu'une tige de palier d'axe (12) pour le déplacement en rotation d'un bras d'axe (15), dans lequel l'élément de palier d'angle (5) est disposé ou fixé au moyen d'un boulon de palier d'angle (8) sur un support de palier d'angle (9) fixé sur la pièce de base de palier d'angle (4), caractérisé en ce que la tige de palier d'axe (12) est disposée ou fixée sur la pièce de de palier d'axe (11) au moyen d'au moins un support de palier d'axe (13), dans lequel le support de palier d'angle (9) et le support de palier d'axe (13) sont conçus en tant que pièces égales qui sont disposées dans différentes orientations sur la pièce de base de palier d'angle (4) et la pièce de base de palier d'axe (11).
EP16169495.5A 2015-05-19 2016-05-13 Armature et procede de fabrication d'une armature Not-in-force EP3095938B1 (fr)

Priority Applications (1)

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PL16169495T PL3095938T3 (pl) 2015-05-19 2016-05-13 Okucie i sposób wytwarzania okucia

Applications Claiming Priority (1)

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DE102015209145.7A DE102015209145B3 (de) 2015-05-19 2015-05-19 Beschlag sowie Verfahren zum Herstellen eines Beschlags

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EP3095938B1 true EP3095938B1 (fr) 2018-05-09

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DE (1) DE102015209145B3 (fr)
PL (1) PL3095938T3 (fr)
RU (1) RU2016119091A (fr)

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CN107558908A (zh) * 2017-07-20 2018-01-09 亚萨合莱国强(山东)五金科技有限公司 一种防撬功能的窗用平开下悬五金系统

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Publication number Priority date Publication date Assignee Title
DE2238489B2 (de) * 1972-08-04 1975-08-07 Werner 8580 Bayreuth Frach Dreh-Kipp-Beschlag für eine Tür, ein Fenster oder dgl
DE3324465A1 (de) * 1983-07-07 1985-01-17 Hans Dieter 5014 Kerpen Niemann Dreh- bzw. dreh-kipp-beschlag fuer ein fenster oder eine tuer
DE8700849U1 (de) * 1987-01-20 1987-03-05 Gretsch-Unitas GmbH Baubeschläge, 7257 Ditzingen Beschlag für einen wenigstens kippbaren Flügel
DE9308673U1 (de) * 1993-06-10 1994-10-27 Gretsch-Unitas GmbH Baubeschläge, 71254 Ditzingen Ecklagerbock für einen Dreh-Kipp-Flügel eines Fensters, einer Tür o.dgl.
DE102008004355B4 (de) * 2008-01-15 2015-03-12 Roto Frank Ag Einstellbares Ecklager für einen Flügel eines Fensters, einer Tür oder dergleichen
DE102009004262A1 (de) * 2009-01-07 2010-07-08 Siegenia-Aubi Kg Ecklager für Dreh-Kipp-Fenster, -Türen od. dgl.
DE202011106767U1 (de) * 2011-10-14 2011-11-22 Siegenia-Aubi Kg Ecklager

Non-Patent Citations (1)

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Title
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PL3095938T3 (pl) 2018-10-31
DE102015209145B3 (de) 2016-09-29
EP3095938A1 (fr) 2016-11-23
RU2016119091A (ru) 2017-11-23

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