EP2265785B1 - Hinge for a window or a door - Google Patents

Hinge for a window or a door Download PDF

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Publication number
EP2265785B1
EP2265785B1 EP09721599A EP09721599A EP2265785B1 EP 2265785 B1 EP2265785 B1 EP 2265785B1 EP 09721599 A EP09721599 A EP 09721599A EP 09721599 A EP09721599 A EP 09721599A EP 2265785 B1 EP2265785 B1 EP 2265785B1
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EP
European Patent Office
Prior art keywords
bearing
bearing pin
cross
hinge
sleeve
Prior art date
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Application number
EP09721599A
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German (de)
French (fr)
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EP2265785A1 (en
Inventor
Bertram KÖLSCH
Achim Türk
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Siegenia Aubi KG
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Siegenia Aubi KG
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Application filed by Siegenia Aubi KG filed Critical Siegenia Aubi KG
Priority to PL09721599T priority Critical patent/PL2265785T3/en
Publication of EP2265785A1 publication Critical patent/EP2265785A1/en
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Classifications

    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05DHINGES OR SUSPENSION DEVICES FOR DOORS, WINDOWS OR WINGS
    • E05D11/00Additional features or accessories of hinges
    • E05D11/08Friction devices between relatively-movable hinge parts
    • E05D11/082Friction devices between relatively-movable hinge parts with substantially radial friction, e.g. cylindrical friction surfaces
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05DHINGES OR SUSPENSION DEVICES FOR DOORS, WINDOWS OR WINGS
    • E05D11/00Additional features or accessories of hinges
    • E05D11/0018Anti-tamper devices
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05DHINGES OR SUSPENSION DEVICES FOR DOORS, WINDOWS OR WINGS
    • E05D5/00Construction of single parts, e.g. the parts for attachment
    • E05D5/10Pins, sockets or sleeves; Removable pins
    • E05D5/12Securing pins in sockets, movably or not
    • E05D5/128Securing pins in sockets, movably or not the pin having a recess or through-hole engaged by a securing member
    • 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
    • E05Y2900/00Application of doors, windows, wings or fittings thereof
    • E05Y2900/10Application of doors, windows, wings or fittings thereof for buildings or parts thereof
    • E05Y2900/13Type of wing
    • E05Y2900/132Doors
    • 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
    • E05Y2900/00Application of doors, windows, wings or fittings thereof
    • E05Y2900/10Application of doors, windows, wings or fittings thereof for buildings or parts thereof
    • E05Y2900/13Type of wing
    • E05Y2900/148Windows

Definitions

  • the invention relates to a hinge for a window or a door according to the preamble of claim 1.
  • the hinge pin has a cylindrical cross-section with a flattening and passes through two bearing eyes of a frame-side bearing block.
  • the bearing eyes of the bearing block have a matched to the flattening in the cross section of the bearing pin opening so that the bearing pin is rotatably received in the bearing eyes.
  • Between the bearing eyes of the bearing pin passes through a formed from sheet metal substantially cylindrical hinge sleeve, which is provided on the inside with a respect to the hinge sleeve defined plastic sleeve.
  • the plastic sleeve is adapted in cross section to the flattening of the hinge pin.
  • a disadvantage of the known prior art is that the production of the bearing pin is relatively expensive.
  • the cylindrical bearing bolts must be provided with the flattening by means of a metal-cutting process, which is a great disadvantage given the high number of pieces required. It can also be provided that a correspondingly shaped wire is provided with the grooves by means of a cutting process.
  • the introduction the hinge pin in the bearing block in such a shape complicated, in particular due to the limited space in the area of the bands of doors and windows.
  • a hinge is known in which the bearing pin has a square cross-section.
  • the hinge sleeve has no sleeve, with which a mutual bearing is achieved to the bearing pin.
  • the object of the invention consists in the remedy of the mentioned disadvantages of the prior art.
  • the bearing pin has at least in the region of the hinge sleeve and the bearing block associated lengths a polygonal trained as a uniform cross-section.
  • the bearing pin can be made of a polygonal wire by cutting to length and, if necessary, attaching twists and / or compressions. A machining of the shank is not necessary.
  • Due to the cross-sectional shape of the bearing pin can be produced by a rolling process by a wire is rolled with continuous DC cross-section between two plates of constant distance.
  • An equal thickness is a curve of constant width whose closed line always touches all four sides in every position within a suitable square.
  • the longitudinal edges are rounded and the side edges of the cross section - in contrast, for example, to an equilateral triangle - bulbous.
  • this form compared to a cylindrical cross section, an enormous material savings and thus cost reduction.
  • the same thickness is designed as a three-sided equal thickness.
  • the sleeve has a matched to the cross section of the bearing pin inner cross-section, so that the rotationally fixed in the hinge sleeve einitzende sleeve causes a rotation inhibition.
  • This embodiment causes a particularly simple production, in which the bearing pin has a braking position within an opening angle of the hinge of 90 °.
  • the bearing pin can be inserted in three positions in the bearing block, which facilitates handling.
  • the bearing pin is provided at the end with a conical portion and the portion has a cross-sectional shape corresponding to the cross-sectional shape of the shaft with a smaller scale on the other hand.
  • the shank is the area of the bearing pin that is associated with the hinge sleeve and the bearing block.
  • the bearing pin has a thickened head whose cross-sectional shape corresponds to that of the shank and whose cross-sectional alignment coincides with the cross-sectional orientation of the shank, alignment of the head of the bearing pin protruding beyond the bearing eyes of the bearing block can also achieve alignment of the longitudinal section in the hinge sheath, then that a correspondingly shaped receptacle of an alignment and insertion tool can be relatively aligned with the frame or wing.
  • the cross-sectional orientation of the bearing pin is symmetrical with respect to a perpendicular to the frame extending normal. This ensures that the bearing pin assumes a defined and easily recognizable alignment position when mounting takes place.
  • the bearing pin end has the bearing eyes of the bearing block associated recesses or grooves with a cylindrical cross-section, engage in the locking springs of the bearing eyes for axial positional fixation, this is useful for securing the hinge connection.
  • the grooves can be made by a turning process. Simplified, however, is manufacture by rolling, in which the bearing bolt rolls between two parallel plates, so that, while maintaining the polygonal cross-section in this region, the recesses are produced over the entire circumference with little manufacturing effort can.
  • the bearing pin 1 of a hinge for a window or a door is shown in the Fig. 1 formed as an elongated pin with a head 3 thickened relative to a shaft 2.
  • the shaft 2 has grooves 4, 5 and an end-side taper 6, wherein the groove 5 is in the region of the taper 6.
  • the groove 4 is widened with respect to the groove 5 and that the spaced apart from the head 3 groove wall has a right angle to the shaft 2, while the groove wall 9 located in the direction of the end 8 occupies a shallower angle.
  • the groove 5 is formed by two extending at shallow angles groove walls 10, 11 almost as a trough.
  • the distance of the groove 5 from the head 3 is denoted by 12, while the taper 6 begins at a distance 13.
  • the shaft 2 has over its entire length a polygonal polygonal cross-section, in which the longitudinal edges 16 are rounded.
  • the bearing pin 1 can be produced by a rolling operation by rolling a wire having the cross section of the same thickness between two parallel plates.
  • An equal thickness is a curve of constant width, whose closed line always touches all four sides in every position within a suitable square, so that an equal thickness between the plates rolls like a cylindrical body.
  • the longitudinal edges of the cross section are rounded and the side edges of the cross section - in contrast to an equilateral triangle - bulbous.
  • this form over a cylindrical cross-section an enormous material savings and thus cost reduction.
  • a preferred design of the same thickness provides a ratio of the dimensions 17, 18 of 1.0566.
  • the dimensions 17, 18 describe the diameter of the smaller, accommodated in the same circular arc 18 'and the largest extension of the dagger.
  • the ratio of the radii 19, 20 is preferably 2.5.
  • the head 3 may have the cross-sectional shape of a DC dyn whose cross-sectional alignment with the cross-sectional orientation of the shaft 3 coincides.
  • a flattened shape is provided with which it is achieved that the head is rotatably fixed in the bearing block 22.
  • the proportions of the head 3, the shaft 2 and the grooves 4, 5 are based on the radii 19, 20 are equal, so that the bearing pin 1 according to the aforementioned production with the grooves 4, 5 can be provided by rollers.
  • the bearing block 22 can be seen, which in the exemplary embodiment has two bearing eyes 23, 24, which are connected by a web 25.
  • the bearing block 22 is formed symmetrically to a central axis 26 so that it can be used both for right and left openable wings.
  • openings 27 are provided for receiving fastening screws.
  • the bearing lugs 23, 24 have bores 28, 29 which are adapted in shape to the cross section of the bearing pin 1, so that it is non-rotatably received in the bearing eyes 23, 24.
  • the bearing lugs 23, 24 are each provided at the end with collar 30, which arise by a reduction in material of the areas located between the sections. The reduction of the wall thickness does not lead to a reduction of the load capacity, since the bearing pin 1 deforms under load and is supported on the end portions of the bearing lugs 23, 24, so that they are loaded more than the lying between them section.
  • the bores 28, 29 are executed twice discontinued and accordingly have two stages 31, 32.
  • the outer stage 31 is matched to the dimensions and shape of the head 3 of the bearing pin 1, so that it can be rotatably received in the bearing eye 23.
  • the step is provided with a lateral flattening 31 'on which the head 3 rests.
  • the step 32 is on the edge 33 (FIG. Fig. 2 ) of the bearing pin 1 is adjusted such that this edge 33 is at the level of the step 32 of the bearing eye 23 when the head 3 of the bearing pin 1 rests against the step 31 of the bearing eye 24.
  • the position of the taper 6 is adjusted to the distance between the bearing eyes so that it dips in the above-described mounting position in the bearing eye 23, but not the other hand, enlarged shaft 2.
  • the cross-sectional orientation of the bearing pin 1 relative to a perpendicular to the bearing block 22 and the frame, not shown, extending normal 34 is symmetrical. This will achieve that the bearing pin 1 assumes a defined and easily recognizable alignment position with respect to the bearing block 22 when the assembly takes place.
  • an insertion tool can also be provided, which essentially assumes the orientation of the bearing pin 1 relative to a reference edge 34, which preferably coincides with the frame viewing surface.
  • the head 3 of the bearing pin 1 engages, for example, in a corresponding to the shape of the head 3 shaped and sized opening of the insertion tool.
  • the insertion tool By applying a boundary edge of the insertion tool to the reference edge 34, the insertion tool is oriented so that the bearing pin 1 relative to the bore 28, 29 is aligned relative to the bearing block 22 and - due to the mounted on the end 8 of the bearing pin 1 bevel - is insertable ,
  • the chamfer on the bearing pin 1 is formed by a conical portion and the conical portion has a cross-sectional shape corresponding to the cross-sectional shape of the shank 2 with a smaller dimension.
  • the above-described embodiment of the bearing block 1 as a three-sided equal thickness causes in addition to the particularly simple production, that the hinge has a braking position within an opening angle of 90 °.
  • a sleeve 37 made of elastic material is non-rotatably inserted in the hinge sleeve 36. This is relative to the hinge sleeve 36 by a longitudinal extension 38 rotatably received in the hinge sleeve and has a bore which is tuned in shape and dimension on the bearing pin 1.
  • the sleeve 37 In a pivoting movement of the hinge sleeve 36, the sleeve 37 is pivoted relative to the rotatably received in the bearing block 22 bearing pin 1, so that the projecting portions of the same dicribes of the bearing pin 1 in a narrower sized section of the sleeve 37 reach.
  • the rotational movement is inhibited under elastic deformation of the sleeve 37. Assuming that the radii 19 are larger than the radii 20 and that the radii 19 are closer to the central axis 39 (FIG. Fig.
  • Gleichdicks are as the radii 20, it follows that with a pivoting movement of 180 °, the smaller sized radii of Gleichdicks of sleeve 37 and bearing pin 1 would mesh again and a maximum braking effect occurs in a 60 ° pivoting movement. This results in a maximum braking torque through the hinge at about 60 °.
  • bearing pin 1 can be inserted into three positions in the bearing block, which facilitates handling.
  • the design also causes a simplified production of a non-cylindrical and relative to the bearing block rotatably attachable bearing pin.

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Hinges (AREA)
  • Pivots And Pivotal Connections (AREA)

Abstract

The invention relates to a hinge for a window or a door in which a bearing block (22) is attached to the frame and a hinge sleeve (36) is attached to the wing, wherein the bearing block (22) and the hinge sleeve (36) are swivelably connected together by way of a bearing pin (1), wherein the bearing pin (1) is held rotationally fixed in at least one bearing boss (23, 24) of the bearing block (22), wherein the bearing pin (1) has a cross sectional shape that deviates from a circular shape and wherein a sleeve (37) made of elastic material can be placed in the hinge sleeve (36) in rotationally fixed fashion. In order to simplify the manufacture of a non-cylindrical bearing pin that can be attached rotationally-fixed relative to the bearing block, it is provided that the bearing pin (1) has a polygonal multi-edged cross section at least in the area of the length section associated with the hinge sleeve (36) and the bearing block (22).

Description

Die Erfindung betrifft ein Scharnier für ein Fenster oder eine Tür nach dem Oberbegriff des Anspruchs 1.The invention relates to a hinge for a window or a door according to the preamble of claim 1.

Gattungsgemäße Scharniere dieser Art gehen aus der DE 29605809 U1 und der DE 202006008400 U1 hervor. Bei dem aus der DE 29605809 U1 bekannten Scharnier hat der Scharnierbolzen einen zylindrischen Querschnitt mit einer Abflachung und durchgreift zwei Lageraugen eines rahmenseitigen Lagerbocks. Die Lageraugen des Lagerbocks haben eine auf die Abflachung in dem Querschnitt des Lagerbolzens abgestimmte Öffnung, so dass der Lagerbolzen drehfest in den Lageraugen aufgenommen ist. Zwischen den Lageraugen durchgreift der Lagerbolzen eine aus Blech geformte im wesentlichen zylindrische Scharnierhülse, welche innenseitig mit einer gegenüber der Scharnierhülse festgelegten Kunststoffhülse versehen ist. Auch die Kunststoffhülse ist im Querschnitt an die Abflachung des Scharnierbolzens angepasst. Bei einer Schwenkbewegung der Scharnierhülse und damit der Kunststoffhülse wird der abgeflachte Innendurchmesser der Kunststoffhülse relativ zum Lagerbolzen verschwenkt, wobei der abgeflachte Bereich der Kunststoffhülse in den zylindrischen Teil des Lagerbolzens gelangt, was zu einer Bremsbewegung desselben führt.Generic hinges of this kind go out of the DE 29605809 U1 and the DE 202006008400 U1 out. In the from the DE 29605809 U1 known hinge, the hinge pin has a cylindrical cross-section with a flattening and passes through two bearing eyes of a frame-side bearing block. The bearing eyes of the bearing block have a matched to the flattening in the cross section of the bearing pin opening so that the bearing pin is rotatably received in the bearing eyes. Between the bearing eyes of the bearing pin passes through a formed from sheet metal substantially cylindrical hinge sleeve, which is provided on the inside with a respect to the hinge sleeve defined plastic sleeve. The plastic sleeve is adapted in cross section to the flattening of the hinge pin. In a pivoting movement of the hinge sleeve and thus the plastic sleeve of the flattened inner diameter of the plastic sleeve is pivoted relative to the bearing pin, wherein the flattened portion of the plastic sleeve enters the cylindrical part of the bearing pin, which leads to a braking movement of the same.

Auch bei dem aus der DE 202006008400 U1 bekannten Scharnier besitzt der Scharnierbolzen eine Abflachung, durch die der Scharnierbolzen in dem Lagerbock drehfest aufgenommen wird.Also in the case of the DE 202006008400 U1 known hinge has the hinge pin a flattening, by which the hinge pin is rotatably received in the bearing block.

Nachteilig bei dem bekannten Stand der Technik ist es, dass die Herstellung der Lagerbolzen vergleichsweise aufwendig ist. Die zylindrischen Lagerbolzen müssen mittels eines spanabhebenden Verfahrens mit der Abflachung versehen werden, was bei der hohen Stückzahl, die benötigt wird, von großem Nachteil ist. Es kann auch vorgesehen werden, dass ein entsprechend geformter Draht mittels eines spanabhebenden Verfahrens mit den Rillen versehen wird. Zudem ist das Einführen der Scharnierbolzen in den Lagerbock bei einer derartigen Formgebung kompliziert, insbesondere aufgrund der beengten Platzverhältnisse im Bereich der Bänder von Türen und Fenstern.A disadvantage of the known prior art is that the production of the bearing pin is relatively expensive. The cylindrical bearing bolts must be provided with the flattening by means of a metal-cutting process, which is a great disadvantage given the high number of pieces required. It can also be provided that a correspondingly shaped wire is provided with the grooves by means of a cutting process. In addition, the introduction the hinge pin in the bearing block in such a shape complicated, in particular due to the limited space in the area of the bands of doors and windows.

Aus der DE 19514867 C2 ist ein Scharnier bekannt, bei dem der Lagerbolzen einen Vierkantquerschnitt hat. Die Scharnierhülse weist dabei keine Hülse auf, mit der eine gegenseitige Lagerung zum Lagerbolzen erreicht wird.From the DE 19514867 C2 a hinge is known in which the bearing pin has a square cross-section. The hinge sleeve has no sleeve, with which a mutual bearing is achieved to the bearing pin.

Die Aufgabe der Erfindung besteht in der Abhilfe der genannten Nachteile des Standes der Technik.The object of the invention consists in the remedy of the mentioned disadvantages of the prior art.

Zur Lösung bei einem gattungsgemäßen Scharnier ist vorgesehen, dass der Lagerbolzen zumindest im Bereich der Scharnierhülse und dem Lagerbock zugeordneten Längenabschnitten einen polygonförmigen als Gleichdick ausgebildeten Querschnitt hat. Dadurch kann der Lagerbolzen aus einem polygonförmigen Draht durch Ablängen und ggf. Anbringen von Abdrehungen und/oder Stauchungen hergestellt werden. Eine spanabhebende Bearbeitung des Schaftes ist nicht notwendig. Bedingt durch die Querschnittsform kann der Lagerbolzen durch einen Rollvorgang hergestellt werden, indem ein Draht mit durchgängigem Gleichdick-Querschnitt zwischen zwei Platten konstanten Abstandes gerollt wird. Ein Gleichdick ist eine Kurve konstanter Breite, deren geschlossene Linie in jeder Lage innerhalb eines geeigneten Quadrates stets alle vier Seiten berührt. Dabei sind die Längskanten abgerundet und die Seitenkanten des Querschnitts - im Gegensatz beispielsweise zu einem gleichseitigen Dreieck - bauchig. Zudem stellt diese Form gegenüber einem zylindrischen Querschnitt eine enorme Materialeinsparung und damit Kostenreduzierung dar. Das Gleichdick ist als dreiseitiges Gleichdick ausgebildet.To solve a generic hinge is provided that the bearing pin has at least in the region of the hinge sleeve and the bearing block associated lengths a polygonal trained as a uniform cross-section. Thereby, the bearing pin can be made of a polygonal wire by cutting to length and, if necessary, attaching twists and / or compressions. A machining of the shank is not necessary. Due to the cross-sectional shape of the bearing pin can be produced by a rolling process by a wire is rolled with continuous DC cross-section between two plates of constant distance. An equal thickness is a curve of constant width whose closed line always touches all four sides in every position within a suitable square. The longitudinal edges are rounded and the side edges of the cross section - in contrast, for example, to an equilateral triangle - bulbous. In addition, this form compared to a cylindrical cross section, an enormous material savings and thus cost reduction. The same thickness is designed as a three-sided equal thickness.

Es ist dabei auch vorgesehen, dass die Hülse einen auf den Querschnitt des Lagerbolzens abgestimmten Innenquerschnitt besitzt, so dass die drehfest in der Scharnierhülse einsitzende Hülse eine Drehhemmung bewirkt.It is also provided that the sleeve has a matched to the cross section of the bearing pin inner cross-section, so that the rotationally fixed in the hinge sleeve einitzende sleeve causes a rotation inhibition.

Diese Ausgestaltung bewirkt eine besonders einfache Herstellung, bei der der Lagerbolzen innerhalb eines Öffnungswinkels des Scharniers von 90° eine Bremsstellung aufweist. Zudem kann der Lagerbolzen in drei Stellungen in den Lagerbock eingeführt werden, was die Handhabung erleichtert.This embodiment causes a particularly simple production, in which the bearing pin has a braking position within an opening angle of the hinge of 90 °. In addition, the bearing pin can be inserted in three positions in the bearing block, which facilitates handling.

Es ist ferner vorgesehen, dass der Lagerbolzen endseitig mit einem konischen Abschnitt versehen ist und der Abschnitt eine Querschnittsform entsprechend der Querschnittsform des Schaftes mit einer dagegen geringeren Abmessung hat. Der Schaft ist der Bereich des Lagerbolzens, der der Scharnierhülse und dem Lagerbock zugeordnet ist. Dadurch wird bei der Montage des Lagerbolzens neben einer Zentrierung des Lagerbolzens an sich auch eine Ausrichtung der Längsseitenkanten bezogen auf den Innenquerschnitt der Hülse erreicht.It is further provided that the bearing pin is provided at the end with a conical portion and the portion has a cross-sectional shape corresponding to the cross-sectional shape of the shaft with a smaller scale on the other hand. The shank is the area of the bearing pin that is associated with the hinge sleeve and the bearing block. As a result, an orientation of the longitudinal side edges relative to the inner cross section of the sleeve is achieved in the assembly of the bearing pin in addition to a centering of the bearing pin itself.

Wenn der Lagerbolzen einen verdickten Kopf aufweist, dessen Querschnittsform dem des Schaftes entspricht und dessen Querschnittsausrichtung mit der Querschnittsausrichtung des Schaftes übereinstimmt, kann durch Ausrichten des über die Lageraugen des Lagerbocks vorstehenden Kopfs des Lagerbolzens auch eine Ausrichtung des in der Scharnierhülse einsitzenden Längenabschnitts erreicht werden, so dass eine entsprechend geformte Aufnahme eines Ausricht- und Einführwerkzeugs an dem Rahmen oder Flügel relativ ausgerichtet werden kann.If the bearing pin has a thickened head whose cross-sectional shape corresponds to that of the shank and whose cross-sectional alignment coincides with the cross-sectional orientation of the shank, alignment of the head of the bearing pin protruding beyond the bearing eyes of the bearing block can also achieve alignment of the longitudinal section in the hinge sheath, then that a correspondingly shaped receptacle of an alignment and insertion tool can be relatively aligned with the frame or wing.

Schließlich ist noch vorgesehen, dass die Querschnittsausrichtung des Lagerbolzens bezogen auf eine senkrecht zum Rahmen verlaufende Normale symmetrisch ist. Dadurch wird erreicht, dass der Lagerbolzen eine definierte und leicht erkennbare Ausrichtlage einnimmt, wenn die Montage erfolgt.Finally, it is provided that the cross-sectional orientation of the bearing pin is symmetrical with respect to a perpendicular to the frame extending normal. This ensures that the bearing pin assumes a defined and easily recognizable alignment position when mounting takes place.

Wenn der Lagerbolzen endseitig den Lageraugen des Lagerbocks zugeordnete Eindrehungen bzw. Nuten mit zylindrischem Querschnitt aufweist, in die Rastfedern der Lageraugen zur axialen Lagefixierung eingreifen, so ist dies zur Sicherung der Scharnierverbindung zweckmäßig. Die Eindrehungen lassen sich durch einen Drehvorgang herstellen. Vereinfacht ist aber eine Herstellung durch ein Walzen, bei dem der Lagerbolzen zwischen zwei parallelen Platten abrollt, so dass unter Beibehaltung des polygonen Querschnitts in diesem Bereich die Eindrehungen über den gesamten Umfang mit einem geringen Fertigungsaufwand erzeugt werden können.If the bearing pin end has the bearing eyes of the bearing block associated recesses or grooves with a cylindrical cross-section, engage in the locking springs of the bearing eyes for axial positional fixation, this is useful for securing the hinge connection. The grooves can be made by a turning process. Simplified, however, is manufacture by rolling, in which the bearing bolt rolls between two parallel plates, so that, while maintaining the polygonal cross-section in this region, the recesses are produced over the entire circumference with little manufacturing effort can.

Weitere vorteilhafte Ausgestaltungen ergeben sich aus den Zeichnungen. Es zeigt:

Fig. 1
einen Lagerbolzen in einer räumlichen Darstellung,
Fig. 2
den Lagerbolzen aus Fig. 1 in einer zweidimensionalen Darstellung,
Fig. 3
einen Schnitt entlang der Linie C-C in Fig. 2,
Fig. 4
einen Schnitt entlang der Linie B-B in Fig. 2,
Fig. 5
einen Schnitt entlang der Linie A-A in Fig. 2,
Fig. 6
einen Lagerbock in einer räumlichen Darstellung,
Fig. 7
einen Lagerbock in einem Längsschnitt,
Fig. 8
einen Querschnitt des Lagerbocks entlang der Linie D-D in der Fig. 7 und
Fig. 9
einen Schnitt durch ein zusammengesetztes Scharnier.
Further advantageous embodiments will be apparent from the drawings. It shows:
Fig. 1
a bearing pin in a spatial representation,
Fig. 2
off the bearing pin Fig. 1 in a two-dimensional representation,
Fig. 3
a section along the line CC in Fig. 2 .
Fig. 4
a section along the line BB in Fig. 2 .
Fig. 5
a section along the line AA in Fig. 2 .
Fig. 6
a bearing block in a spatial representation,
Fig. 7
a bearing block in a longitudinal section,
Fig. 8
a cross section of the bearing block along the line DD in the Fig. 7 and
Fig. 9
a section through a composite hinge.

Der Lagerbolzen 1 eines Scharniers für ein Fenster oder eine Tür ist ausweislich der Fig. 1 als länglicher Stift mit einem gegenüber einem Schaft 2 verdickten Kopf 3 ausgebildet. Der Schaft 2 weist Nuten 4, 5 sowie eine endseitige Verjüngung 6 auf, wobei die Nut 5 im Bereich der Verjüngung 6 liegt.The bearing pin 1 of a hinge for a window or a door is shown in the Fig. 1 formed as an elongated pin with a head 3 thickened relative to a shaft 2. The shaft 2 has grooves 4, 5 and an end-side taper 6, wherein the groove 5 is in the region of the taper 6.

In Verbindung mit der Fig. 2 ist erkennbar, dass die Nut 4 gegenüber der Nut 5 verbreitert ausgeführt ist und dass die im Abstand 7 von dem Kopf 3 beabstandete Nutwand einen rechtwinkligen Verlauf zum Schaft 2 hat, während die in Richtung des Endes 8 gelegene Nutwand 9 einen flacheren Winkel einnimmt. Die Nut 5 ist durch zwei in flachen Winkeln verlaufende Nutwände 10, 11 nahezu als Mulde ausgebildet. Der Abstand der Nut 5 von dem Kopf 3 ist mit 12 bezeichnet, während die Verjüngung 6 in einem Abstand 13 beginnt.In conjunction with the Fig. 2 It can be seen that the groove 4 is widened with respect to the groove 5 and that the spaced apart from the head 3 groove wall has a right angle to the shaft 2, while the groove wall 9 located in the direction of the end 8 occupies a shallower angle. The groove 5 is formed by two extending at shallow angles groove walls 10, 11 almost as a trough. The distance of the groove 5 from the head 3 is denoted by 12, while the taper 6 begins at a distance 13.

Anhand der Fig. 3, 4 und 5 ist in Verbindung mit der Fig. 2 erkennbar, dass der Lagerbolzen eine von einer in der Fig. 3 strichpunktiert angedeutete Kreisform 14 abweichende Querschnittsform 15 aufweist.Based on Fig. 3, 4 and 5 is in connection with the Fig. 2 recognizable that the bearing pin one of a in the Fig. 3 dash-dotted line circular shape 14 deviating cross-sectional shape 15 has.

Der Schaft 2 hat auf seiner gesamten Länge einen polygonförmigen Mehrkantquerschnitt, bei dem die Längskanten 16 abgerundet sind.The shaft 2 has over its entire length a polygonal polygonal cross-section, in which the longitudinal edges 16 are rounded.

Erfingsgsmäß hat - 1 entsprechend der Darstellung nach Fig. 3 bis 5 - der Lagerbolzen 1 einen als dreiseitiges Gleichdick ausgebildeten Querschnitt 15. Dadurch kann der Lagerbolzen 1 durch einen Rollvorgang hergestellt werden, indem ein den Querschnitt des Gleichdicks aufweisender Draht zwischen zwei parallele Platten gerollt wird. Ein Gleichdick ist eine Kurve konstanter Breite, deren geschlossene Linie in jeder Lage innerhalb eines geeigneten Quadrates stets alle vier Seiten berührt, so dass ein Gleichdick zwischen den Platten wie ein zylindrischer Körper rollt.Erfingsgsmäß has - 1 according to the presentation Fig. 3 to 5 Thus, the bearing pin 1 can be produced by a rolling operation by rolling a wire having the cross section of the same thickness between two parallel plates. An equal thickness is a curve of constant width, whose closed line always touches all four sides in every position within a suitable square, so that an equal thickness between the plates rolls like a cylindrical body.

Die Längskanten des Querschnitts sind abgerundet und die Seitenkanten des Querschnitts - im Gegensatz zu einem gleichseitigen Dreieck - bauchig. Zudem stellt diese Form gegenüber einem zylindrischen Querschnitt eine enorme Materialeinsparung und damit Kostenreduzierung dar.The longitudinal edges of the cross section are rounded and the side edges of the cross section - in contrast to an equilateral triangle - bulbous. In addition, this form over a cylindrical cross-section an enormous material savings and thus cost reduction.

Eine bevorzugte Auslegung des Gleichdicks sieht dabei ein Verhältnis der Maße 17, 18 von 1,0566 vor. Die Maße 17, 18 beschreiben den Durchmesser des kleineren, im Gleichdick aufgenommenen Kreisbogens 18' und die größte Erstreckung des Gleichdicks. Das Verhältnis der Radien 19, 20 liegt vorzugsweise bei 2,5.A preferred design of the same thickness provides a ratio of the dimensions 17, 18 of 1.0566. The dimensions 17, 18 describe the diameter of the smaller, accommodated in the same circular arc 18 'and the largest extension of the dagger. The ratio of the radii 19, 20 is preferably 2.5.

In Verbindung mit den Fig. 4 und 5 wird deutlich, dass die Querschnittsform über den gesamten Schaft 2 gleich ist und auch in der Nut 5 (Fig. 5) ein Gleichdick bildet. Auch der Kopf 3 kann die Querschnittsform eines Gleichdicks haben, wobei dessen Querschnittsausrichtung mit der Querschnittsausrichtung des Schaftes 3 übereinstimmt. Hier ist jedoch eine abgeflachte Form vorgesehen, mit der erreicht wird, dass der Kopf in dem Lagerbock 22 drehfest fixiert ist. Dadurch kann durch Ausrichten des über die Lageraugen des Lagerbocks 1 vorstehenden Kopfs 3 auch eine Ausrichtung des in der Scharnierhülse einsitzenden Längenabschnitts bzw. Schaftes 2 erreicht werden, so dass eine entsprechend geformte Aufnahme eines Ausricht- und Einführwerkzeugs für den Lagerbolzen 1 an dem Rahmen oder Flügel relativ ausgerichtet werden kann, wie nachstehend noch beschrieben wird.In conjunction with the 4 and 5 It is clear that the cross-sectional shape over the entire shaft 2 is the same and also in the groove 5 (FIG. Fig. 5 ) forms an equal thickness. Also, the head 3 may have the cross-sectional shape of a DC dyn whose cross-sectional alignment with the cross-sectional orientation of the shaft 3 coincides. Here, however, a flattened shape is provided with which it is achieved that the head is rotatably fixed in the bearing block 22. This can be achieved by aligning the on the bearing eyes of the bearing block 1 projecting head 3 and an alignment of the seated in the hinge sleeve length portion or shank 2, so that a correspondingly shaped receiving an alignment and insertion tool for the bearing pin 1 on the frame or wing can be relatively aligned, as will be described below.

Die Proportionen des Kopfes 3, des Schaftes 2 und der Nuten 4, 5 sind bezogen auf die Radien 19, 20 jeweils gleich, so dass der Lagerbolzen 1 entsprechend der vorgenannten Herstellungsweise mit den Nuten 4, 5 durch Rollen versehen werden kann.The proportions of the head 3, the shaft 2 and the grooves 4, 5 are based on the radii 19, 20 are equal, so that the bearing pin 1 according to the aforementioned production with the grooves 4, 5 can be provided by rollers.

In der Fig. 6, 7 und 8 ist der Lagerbock 22 erkennbar, der im Ausführungsbeispiel zwei Lageraugen 23, 24 aufweist, die durch einen Steg 25 verbunden sind. Der Lagerbock 22 ist zu einer Mittelachse 26 symmetrisch ausgebildet, so dass dieser sowohl für nach rechts als auch links öffnenbare Flügel verwendbar ist. In dem Steg 25 sind Durchbrüche 27 zur Aufnahme von Befestigungsschrauben vorgesehen.In the FIGS. 6, 7 and 8 the bearing block 22 can be seen, which in the exemplary embodiment has two bearing eyes 23, 24, which are connected by a web 25. The bearing block 22 is formed symmetrically to a central axis 26 so that it can be used both for right and left openable wings. In the web 25 openings 27 are provided for receiving fastening screws.

Die Lageraugen 23, 24 weisen Bohrungen 28, 29 auf, die in ihrer Form an den Querschnitt des Lagerbolzens 1 angepasst sind, so dass dieser unverdrehbar in den Lageraugen 23, 24 aufgenommen ist. Die Lageraugen 23, 24 sind jeweils endseitig mit Kragen 30 versehen, die durch eine Materialreduzierung der zwischen den Abschnitten gelegenen Bereiche entstehen. Die Reduzierung der Wandstärken führt dabei nicht zu einer Reduzierung der Tragfähigkeit, da sich der Lagerbolzen 1 unter Belastung verformt und sich an den Endbereichen der Lageraugen 23, 24 abstützt, so dass diese mehr belastet werden als der zwischen diesen liegende Abschnitt.The bearing lugs 23, 24 have bores 28, 29 which are adapted in shape to the cross section of the bearing pin 1, so that it is non-rotatably received in the bearing eyes 23, 24. The bearing lugs 23, 24 are each provided at the end with collar 30, which arise by a reduction in material of the areas located between the sections. The reduction of the wall thickness does not lead to a reduction of the load capacity, since the bearing pin 1 deforms under load and is supported on the end portions of the bearing lugs 23, 24, so that they are loaded more than the lying between them section.

Die Bohrungen 28, 29 sind zweifach abgesetzt ausgeführt und weisen dementsprechend zwei Stufen 31, 32 auf. Die äußere Stufe 31 ist auf die Abmessungen und Form des Kopfes 3 des Lagerbolzens 1 abgestimmt, so dass dieser in dem Lagerauge 23 drehfest aufgenommen werden kann. Dazu ist die Stufe mit einer seitlichen Abflachung 31' versehen, an der sich der Kopf 3 anlegt. Die Stufe 32 ist auf die Kante 33 (Fig. 2) des Lagerbolzens 1 derart abgestimmt, dass diese Kante 33 auf Höhe der Stufe 32 des Lagerauges 23 liegt, wenn der Kopf 3 des Lagerbolzens 1 an der Stufe 31 des Lagerauges 24 anliegt. Zudem ist die Lage der Verjüngung 6 auf den Abstand der Lageraugen so abgestimmt, dass diese in der vorstehend beschriebenen Montagelage in das Lagerauge 23 eintaucht, nicht aber der dagegen vergrößerte Schaft 2. Durch die Verjüngung 6 ist der Lagerbolzen 1 gegenüber der Bohrung 28 oder 29 mit einem geringen Spiel versehen. Bei einer Belastung, die zu einem Verformen des Lagerbolzens 1 führt, gelangt daher die Kante 33 des Lagerbolzens 1 an die Stufe 32 und hintergreift diese, wodurch eine zusätzliche axiale Fixierung des Lagerbolzens 1 in dem Lagerbock 22 erreicht wird.The bores 28, 29 are executed twice discontinued and accordingly have two stages 31, 32. The outer stage 31 is matched to the dimensions and shape of the head 3 of the bearing pin 1, so that it can be rotatably received in the bearing eye 23. For this purpose, the step is provided with a lateral flattening 31 'on which the head 3 rests. The step 32 is on the edge 33 (FIG. Fig. 2 ) of the bearing pin 1 is adjusted such that this edge 33 is at the level of the step 32 of the bearing eye 23 when the head 3 of the bearing pin 1 rests against the step 31 of the bearing eye 24. In addition, the position of the taper 6 is adjusted to the distance between the bearing eyes so that it dips in the above-described mounting position in the bearing eye 23, but not the other hand, enlarged shaft 2. By the taper 6 of the bearing pin 1 relative to the bore 28 or 29th provided with a small game. At a load that leads to a deformation of the bearing pin 1, therefore, the edge 33 of the bearing pin 1 reaches the step 32 and engages behind this, whereby an additional axial fixation of the bearing pin 1 in the bearing block 22 is achieved.

Es ist insbesondere aus der Fig. 8 erkennbar, dass die Querschnittsausrichtung des Lagerbolzens 1 bezogen auf eine senkrecht zum Lagerbock 22 bzw. dem hier nicht dargestellten Rahmen verlaufende Normale 34 symmetrisch ist. Dadurch wird erreicht, dass der Lagerbolzen 1 eine definierte und leicht erkennbare Ausrichtlage bezüglich des Lagerbocks 22 einnimmt, wenn die Montage erfolgt. Zur Montage des Lagerbolzens 1 kann zudem ein Einführwerkzeug vorgesehen sein, welches im Wesentlichen die Ausrichtung des Lagerbolzens 1 relativ zu einer Bezugkante 34, die vorzugsweise mit der Rahmensichtfläche übereinstimmt, übernimmt. Dazu greift der Kopf 3 des Lagerbolzens 1 beispielsweise in eine entsprechend der Form des Kopfes 3 ausgeformte und bemessene Öffnung des Einführwerkzeugs. Durch Anlage einer Begrenzungskante des Einführwerkzeuges an der Bezugskante 34 wird das Einführwerkzeug so ausgerichtet, dass der Lagerbolzen 1 bezogen auf die Bohrung 28, 29 relativ zum Lagerbock 22 ausgerichtet ist und - bedingt durch die an dem Ende 8 des Lagerbolzens 1 angebrachte Fase - einführbar ist. Die Fase an dem Lagerbolzen 1 wird durch einen konischen Abschnitt gebildet und der konische Abschnitt hat eine Querschnittsform entsprechend der Querschnittsform des Schaftes 2 mit einer dagegen geringeren Abmessung.It is in particular from the Fig. 8 recognizable that the cross-sectional orientation of the bearing pin 1 relative to a perpendicular to the bearing block 22 and the frame, not shown, extending normal 34 is symmetrical. This will achieve that the bearing pin 1 assumes a defined and easily recognizable alignment position with respect to the bearing block 22 when the assembly takes place. For mounting the bearing pin 1, an insertion tool can also be provided, which essentially assumes the orientation of the bearing pin 1 relative to a reference edge 34, which preferably coincides with the frame viewing surface. For this purpose, the head 3 of the bearing pin 1 engages, for example, in a corresponding to the shape of the head 3 shaped and sized opening of the insertion tool. By applying a boundary edge of the insertion tool to the reference edge 34, the insertion tool is oriented so that the bearing pin 1 relative to the bore 28, 29 is aligned relative to the bearing block 22 and - due to the mounted on the end 8 of the bearing pin 1 bevel - is insertable , The chamfer on the bearing pin 1 is formed by a conical portion and the conical portion has a cross-sectional shape corresponding to the cross-sectional shape of the shank 2 with a smaller dimension.

Die vorbeschriebene Ausgestaltung des Lagerbocks 1 als dreiseitiges Gleichdick bewirkt neben der besonders einfachen Herstellung, dass das Scharnier innerhalb eines Öffnungswinkels von 90° eine Bremsstellung aufweist. Anhand der Fig. 9 ist erkennbar, dass in der Scharnierhülse 36 drehfest eine Hülse 37 aus elastischem Material eingesetzt ist. Diese ist relativ zu der Scharnierhülse 36 durch einen längsverlaufenden Ansatz 38 drehfest in der Scharnierhülse aufgenommen und weist eine Bohrung auf, die in Form und Abmessung auf den Lagerbolzen 1 abgestimmt ist. Bei einer Schwenkbewegung der Scharnierhülse 36 wird die Hülse 37 relativ zu dem drehfest in dem Lagerbock 22 aufgenommenen Lagerbolzen 1 verschwenkt, so dass die vorspringenden Abschnitte des Gleichdicks des Lagerbolzens 1 in einen enger bemessenen Abschnitt der Hülse 37 gelangen. Dabei wird die Drehbewegung unter elastischer Verformung der Hülse 37 gehemmt. Ausgehend davon, dass die Radien 19 größer sind als die Radien 20 und dass die Radien 19 näher an der Mittelachse 39 (Fig. 3) des Gleichdicks liegen als die Radien 20, ergibt sich, dass bei einer Schwenkbewegung von 180° die kleiner bemessenen Radien des Gleichdicks von Hülse 37 und Lagerbolzen 1 wieder ineinandergreifen würden und bei einer 60°-Schwenkbewegung eine maximale Bremswirkung eintritt. Somit ergibt sich ein maximales Bremsmoment durch das Scharnier bei ca. 60°.The above-described embodiment of the bearing block 1 as a three-sided equal thickness causes in addition to the particularly simple production, that the hinge has a braking position within an opening angle of 90 °. Based on Fig. 9 It can be seen that a sleeve 37 made of elastic material is non-rotatably inserted in the hinge sleeve 36. This is relative to the hinge sleeve 36 by a longitudinal extension 38 rotatably received in the hinge sleeve and has a bore which is tuned in shape and dimension on the bearing pin 1. In a pivoting movement of the hinge sleeve 36, the sleeve 37 is pivoted relative to the rotatably received in the bearing block 22 bearing pin 1, so that the projecting portions of the same dicribes of the bearing pin 1 in a narrower sized section of the sleeve 37 reach. The rotational movement is inhibited under elastic deformation of the sleeve 37. Assuming that the radii 19 are larger than the radii 20 and that the radii 19 are closer to the central axis 39 (FIG. Fig. 3 ) of Gleichdicks are as the radii 20, it follows that with a pivoting movement of 180 °, the smaller sized radii of Gleichdicks of sleeve 37 and bearing pin 1 would mesh again and a maximum braking effect occurs in a 60 ° pivoting movement. This results in a maximum braking torque through the hinge at about 60 °.

Ein weiterer Vorteil der geschilderten Ausgestaltung besteht darin, dass der Lagerbolzen 1 in drei Stellungen in den Lagerbock eingeführt werden kann, was die Handhabung erleichtert. Die Ausgestaltung bewirkt daneben eine vereinfachte Herstellung eines nichtzylindrischen und relativ zu dem Lagerbock drehfest anbringbaren Lagerbolzens.Another advantage of the described embodiment is that the bearing pin 1 can be inserted into three positions in the bearing block, which facilitates handling. The design also causes a simplified production of a non-cylindrical and relative to the bearing block rotatably attachable bearing pin.

Abschließend soll noch ergänzt werden, dass die endseitig am Lagerbolzen 1 angebrachten und den Lageraugen 23, 24 des Lagerbocks 22 zugeordnete Nuten 4,5 - mit hier nicht dargestellten - Rastfedern zur axialen Lagefixierung zusammenwirken. Die Rastfedern sitzen dazu in Ausnehmungen an der Rückseite der Lageraugen 23,24.Finally, it should be added that the ends mounted on the bearing pin 1 and the bearing lugs 23, 24 of the bearing block 22 associated grooves 4.5 - cooperate with not shown here - locking springs for axial positional fixation. The detent springs sit in recesses on the back of the bearing eyes 23,24.

Bezugszeichenliste:LIST OF REFERENCE NUMBERS

11
Lagerbolzenbearing bolt
22
Schaftshaft
33
Kopfhead
44
Nutgroove
55
Nutgroove
66
Verjüngungrejuvenation
77
Abstanddistance
88th
EndeThe End
99
Nutwandgroove wall
1010
Nutwandgroove wall
1111
Nutwandgroove wall
1212
Abstanddistance
1313
Abstanddistance
1414
Kreisformcircularity
1515
QuerschnittsformCross-sectional shape
1616
Längskantenlongitudinal edges
1717
Maßmeasure
1818
Maßmeasure
1919
Radiusradius
2020
Radiusradius
2121
Lagerbockbearing block
2222
Lagerbockbearing block
2323
Lageraugebearing eye
2424
Lageraugebearing eye
2525
Stegweb
2626
Mittelachsecentral axis
2727
Durchbruchbreakthrough
2828
Bohrungdrilling
2929
Bohrungdrilling
3030
Kragencollar
3131
Stufestep
3232
Stufestep
3333
Kanteedge
3434
Normalenormal
3535
Bezugskantereference edge
3636
Scharnierhülsehinge sleeve
3737
Hülseshell
3838
Ansatzapproach
3939
Mittelachsecentral axis

Claims (7)

  1. A hinge having a bearing block (22), a hinge sleeve (36) and a bearing pin (1) for a window or a door in which the bearing block (22) is attached to the frame and the hinge sleeve (36) is attached to the wing, with the bearing (22) and the hinge sleeve (36) being swivelably connected together by the bearing pin (1), the bearing pin (1) being held rotationally in at least one bearing boss (23, 24) of the bearing block (22), the shank (2) of the bearing pin (1) exhibiting a cross-sectional shape that differs from a circular shape and a sleeve (37) made of elastic material being inserted in a rotationally fixed manner in the hinge sleeve (36), wherein the shank (2) of the bearing pin (1) - at least in the region of the length section associated with the hinge sleeve (36) and the bearing block (22) - has a polygonal cross-section configured as an orbiform curve having three side edges.
  2. A hinge according to claim 1 wherein the sleeve (37) has an inside cross-section matched to the cross-section of the bearing pin (1).
  3. A hinge according to claim 1 or 2 wherein the bearing pin (1) is provided at its end (8) with a tapered section and the section has a cross-sectional form corresponding to the cross-sectional form of the shank (2) in the region of the hinge sleeve (36) and bearing block (22) but with a lesser dimension.
  4. A hinge according to claim 1 wherein the bearing pin (1) exhibits a thickened head (3) whose cross-sectional form corresponds to that of the shank (2) in the region of the hinge sleeve (36) and of the bearing block (22) and whose cross-sectional direction coincides with the cross-sectional direction of the shank (2).
  5. A hinge according to claim 1 or 4, wherein the cross-sectional direction of the shank (2) of the bearing pin (1) is symmetrical relative to a normal (34) running perpendicular to the frame.
  6. A hinge according to claim 1 wherein the bearing pin (1) exhibits at its ends grooves (4, 5) which are associated with the bearing bosses (23, 24) of the bearing block (1) and into which engage detent springs of the bearing bosses (23, 24) for axial position fixing, the bearing pin (1) having in the region of the grooves (4, 5) a cross-sectional form the same as the shank (2).
  7. A hinge according to claim 4 wherein an outer step (31) of holes (28, 29) provided in the bearing bosses (23, 24) for the rotationally fixed holding of the bearing pin (7) is matched to the dimensions and shape of the head (3) of the bearing pin (1) so that the latter is held rotationally fixed in the bearing boss (23).
EP09721599A 2008-03-19 2009-01-29 Hinge for a window or a door Active EP2265785B1 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
PL09721599T PL2265785T3 (en) 2008-03-19 2009-01-29 Hinge for a window or a door

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
DE202008003912U DE202008003912U1 (en) 2008-03-19 2008-03-19 Hinge for a window or door
PCT/EP2009/050984 WO2009115363A1 (en) 2008-03-19 2009-01-29 Hinge for a window or a door

Publications (2)

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EP2265785A1 EP2265785A1 (en) 2010-12-29
EP2265785B1 true EP2265785B1 (en) 2012-07-18

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EP09721599A Active EP2265785B1 (en) 2008-03-19 2009-01-29 Hinge for a window or a door

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EP (1) EP2265785B1 (en)
CN (1) CN102016211B (en)
DE (1) DE202008003912U1 (en)
PL (1) PL2265785T3 (en)
RU (1) RU2437995C1 (en)
WO (1) WO2009115363A1 (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE102015007855B3 (en) * 2015-06-18 2016-03-24 Siegenia-Aubi Kg Swivel bearing for one wing, in particular scissors bearing

Families Citing this family (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103252603A (en) * 2013-05-13 2013-08-21 成都海凌达机械有限公司 Positioning block capable of positioning upper hinging seat
SE540887C2 (en) 2017-04-25 2018-12-11 Scania Cv Ab A pin for removable connection of a first part and a second part and a mechanical joint or suspension device comprising such pin
EP3425147B1 (en) * 2017-07-03 2023-07-26 Ningbo Geely Automobile Research & Development Co., Ltd. A hinge device

Family Cites Families (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2724144A (en) * 1953-03-04 1955-11-22 Standard Railway Equipment Mfg Adjustable hinge construction
DE19514867C2 (en) 1995-04-22 1997-04-03 Weidtmann Wilhelm Kg Hinge for windows, doors or the like, in particular for turn-tilt fittings with an opening device
DE19521539B4 (en) * 1995-06-13 2004-07-08 Aug. Winkhaus Gmbh & Co. Kg Pivot bearing, in particular scissor bearing of a rotating fitting or turn-tilt fitting for windows, doors or the like
DE29605809U1 (en) 1996-03-28 1997-07-24 Mayer & Co., Salzburg Scissor stay for wings
CN2677528Y (en) * 2004-03-05 2005-02-09 何邓荣 Spring hinge of sliding sash with high airtight and watertight slideway
KR200352046Y1 (en) * 2004-03-12 2004-06-04 임효빈 Hinge Device
DE202006008400U1 (en) 2006-05-26 2007-09-27 Dr. Hahn Gmbh & Co. Kg Band with improved hinge pin fixation

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE102015007855B3 (en) * 2015-06-18 2016-03-24 Siegenia-Aubi Kg Swivel bearing for one wing, in particular scissors bearing
EP3106597A1 (en) 2015-06-18 2016-12-21 Siegenia-Aubi Kg Pivot bearing for a wing, in particular check bearing

Also Published As

Publication number Publication date
CN102016211B (en) 2013-08-21
EP2265785A1 (en) 2010-12-29
RU2437995C1 (en) 2011-12-27
DE202008003912U1 (en) 2009-08-13
WO2009115363A1 (en) 2009-09-24
PL2265785T3 (en) 2012-12-31
CN102016211A (en) 2011-04-13

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