EP2526828B1 - Butée d'articulation en particulier pour meuble - Google Patents

Butée d'articulation en particulier pour meuble Download PDF

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Publication number
EP2526828B1
EP2526828B1 EP12169193.5A EP12169193A EP2526828B1 EP 2526828 B1 EP2526828 B1 EP 2526828B1 EP 12169193 A EP12169193 A EP 12169193A EP 2526828 B1 EP2526828 B1 EP 2526828B1
Authority
EP
European Patent Office
Prior art keywords
bracket
circumference
recess
fitting according
bore
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
EP12169193.5A
Other languages
German (de)
English (en)
Other versions
EP2526828A1 (fr
Inventor
Edgar Kemmann
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.)
Kemmann & Koch Co KG GmbH
Original Assignee
Kemmann & Koch Co KG GmbH
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 Kemmann & Koch Co KG GmbH filed Critical Kemmann & Koch Co KG GmbH
Priority to PL12169193T priority Critical patent/PL2526828T3/pl
Publication of EP2526828A1 publication Critical patent/EP2526828A1/fr
Application granted granted Critical
Publication of EP2526828B1 publication Critical patent/EP2526828B1/fr
Not-in-force legal-status Critical Current
Anticipated expiration legal-status Critical

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Classifications

    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47CCHAIRS; SOFAS; BEDS
    • A47C1/00Chairs adapted for special purposes
    • A47C1/02Reclining or easy chairs
    • A47C1/022Reclining or easy chairs having independently-adjustable supporting parts
    • A47C1/03Reclining or easy chairs having independently-adjustable supporting parts the parts being arm-rests
    • A47C1/0308Reclining or easy chairs having independently-adjustable supporting parts the parts being arm-rests adjustable by rotation
    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47CCHAIRS; SOFAS; BEDS
    • A47C1/00Chairs adapted for special purposes
    • A47C1/02Reclining or easy chairs
    • A47C1/022Reclining or easy chairs having independently-adjustable supporting parts
    • A47C1/024Reclining or easy chairs having independently-adjustable supporting parts the parts, being the back-rest, or the back-rest and seat unit, having adjustable and lockable inclination
    • A47C1/027Reclining or easy chairs having independently-adjustable supporting parts the parts, being the back-rest, or the back-rest and seat unit, having adjustable and lockable inclination by means of clamps or friction locking members
    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47CCHAIRS; SOFAS; BEDS
    • A47C7/00Parts, details, or accessories of chairs or stools
    • A47C7/36Support for the head or the back
    • A47C7/38Support for the head or the back for the head
    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47CCHAIRS; SOFAS; BEDS
    • A47C7/00Parts, details, or accessories of chairs or stools
    • A47C7/50Supports for the feet or the legs coupled to fixed parts of the chair
    • A47C7/506Supports for the feet or the legs coupled to fixed parts of the chair of adjustable type
    • A47C7/5066Supports for the feet or the legs coupled to fixed parts of the chair of adjustable type by rotation
    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47CCHAIRS; SOFAS; BEDS
    • A47C7/00Parts, details, or accessories of chairs or stools
    • A47C7/54Supports for the arms
    • A47C7/541Supports for the arms of adjustable type

Definitions

  • the invention relates to a continuously lockable hinge fitting, in particular for backrests, armrests or headboards of sitting and / or lying furniture.
  • Such a hinge fitting is from the US 3 216 766 A1 known.
  • Fig. 1 shows a plan view of an embodiment of the fitting whose items in Fig. 2 are reproduced.
  • the fitting has an elongate hinge tongue 1, for example, an elongated retaining tab 2 in this exemplary embodiment and two driver discs 3 and 3 'between the two tabs (FIG. Fig. 2 and 3 ) on. 4 with a fixed to the retaining tab 2 pivot pin is referred to in Fig. 2 is shown in a side view, and with a 5 attached to the driver disks 3 driving pin, the Fig. 2 in a side view shows.
  • the hinge flap 1 forms a first tab and the retaining tab 2, a second tab, wherein the elongate tabs can be shaped differently in adaptation to the relatively pivotable components
  • the one tab may have a different shape than the other tab
  • the hinge flap 1 has at one end a bearing portion 1a and this opposite a mounting portion 1c with holes 1b for attachment to an armrest, a headboard or other movable furniture part, while the retaining tab 2 via holes 2b on a mounting portion 2c with a stationary part of Furniture is connected for example by means of screws.
  • the bearing portion of the retaining tab 2 is denoted by 2a.
  • the joint flap 1 is furthermore provided on the bearing section 1a with a bore 1.1 ( Fig. 2 ), distributed on the circumference in the embodiment of the Fig. 1 to 5 three elongate recesses 1 2 are formed, which are aligned approximately tangentially to the circumference of the bore 1.1 and in which in each case acted upon by a compression spring 13 a cylindrical pin 13 (FIG. Fig. 2 ) is so arranged, cylinder pin 13 clamps with its circumference on the circumference of the pivot pin 4 when the hinge flap 1 in a clockwise direction in Fig.
  • a projection 13b for holding the compression spring 13a is provided at the end of the elongated recess 1.2, on which the spring is supported 1.3a, wherein the compression spring 13a allows a release movement of the clamping pin 13 from the circumference of the pivot pin 4 away.
  • the axial length of the driving pin 5 corresponds to the thickness of the joint lug 1 and the thickness of the two driver disks 3 and 3 ', while the two end portions 5.2 with reduced diameter of the depth of the arcuate groove 2.2 at the two bearing portions 2a and 2a' of the retaining tab 2 and approximately correspond to the depth of a corresponding recess 2.2.
  • the diameter of the section 5.1 of the driving pin 5 corresponds to the diameter of the bore 3.3 in the drive plate.
  • the retaining tab 2 has on the bearing portions 2a and 2a 'on a bore 21 for receiving an end 4.1 of the pivot pin 4.
  • a bore 21 for receiving an end 4.1 of the pivot pin 4.
  • To the central bore 2.1 extends in the illustrated embodiment, about 90 ° at a radial distance from the bore 2 1, an arcuate groove or opening 22 into which the end portion 5.2 of the driving pin 5 engages, said end portion 5.2 has a smaller diameter than that central section 5.1.
  • the side view of the fitting in Fig. 3 from the left in Fig. 1 shows the formed as a straight surface piece joint flap 1, the bearing portion 1a between two spaced bearing portions 2a and 2a 'of the retaining tab 2 engages, which is composed in the illustrated embodiment of two plate-shaped elements 2 and 2', the bearing portions 2a and 2a 'formed opposite cranked are, so that between the two bearing sections 2a and 2a 'a receiving space for two driver disks 3 and 3' remains, which are arranged on either side of the bearing portion 1a of the joint flap 1.
  • the pivot pin 4 ( Fig. 2 ) has on the two sides of a central portion 4.2 with a larger diameter in each case a section 4.3 with a smaller diameter, to which in each case the end section 4.1 followed by a smaller diameter, in the holes 2.1 of the two cranked bearing sections 2a and 2a 'of the retaining tab 2 is used.
  • the sections 4.3 of the pivot pin 4 engage in a bore 3.1 of the driver disks 3 and 3 'rotatably and the central portion 4.2 is located in the bore 1.1 of the joint flap 1, wherein on the circumference of the central portion 4 2, the clamping elements 13 of the hinge flap 1 act.
  • the diameter of the bore 1.1 corresponds to the diameter of the central portion 4.2 of the pivot pin 4th
  • the bore 1.1 can have a relatively large diameter with the advantage that also the corresponding engagement portion 4.2 of the pivot pin 4 for the clamping elements 13 has a relatively large diameter may have, whereby the wear of the hinge fitting is kept low
  • the pivot pin 4 is rotatably disposed with its end sections 4.1 in the bearing sections 2a and the holes 2.1 of the retaining tab 2 so that it forms a unit with the retaining tab 2.
  • the axial length of the pivot pin 4 corresponds to in Fig. 3 reproduced thickness dimension between the outer sides of the bearing portions 2 a and 2 a 'of the retaining tab. 2
  • the driver disks 3 and 3 ' have on a radially projecting extension 32 a bore 3.3, in which engages the central, provided with a larger diameter portion 5.1 of the driving pin 5.
  • On the circumference of the driver disks 3 and 3 'camshaft elevations 3.4 are formed according to the arrangement of the clamping elements 13 of the joint flap 1, which cooperate with serving as clamping elements cylinder pins 13, as shown in the Fig. 5 is explained
  • the profile on the circumference of the driver disks 3 and 3 'in the form of the flat elevations 3.4 is formed so that by a relative rotation of the driver disks 3 and 3' relative to the clamping device formed on the circumference of the bore 1.1 of the joint clip 1 a clamping between driving disks , 3 'and joint flap 1 is formed such that the clamping elements 13 are moved out of the clamping position with the engagement portion 42 of the pivot pin 4 by this clamping between driving plates and joint flap.
  • the clamping device is designed such that it allows on the one hand a clamping between joint bracket 1 and pivot pin 4 in a pivoting direction of the joint flap and on the other a clamping between the drive plates 3 and 3 'and the joint flap 1, while not in clamping connection with the pivot pin 4 is.
  • a first end or initial position in Fig. 4 who are in the position Fig. 1 corresponds, in which the two tabs 1 and 2 are in a line
  • the driving pin 5 is with its portion 5 2 at the left end of the arcuate recess 2.2 of the retaining tab 2, so that the drive plates 3 and 3 ', where the driving pin 5 in Pivoting direction is fixed, not further counterclockwise to the left in Fig. 4 can be pivoted.
  • the larger diameter portion 5.1 abuts close to the left end of the slot-shaped control recess 1.3 of the hinge lug 1 or at the left end thereof, while the in Fig.
  • Fig. 5 shows the position of the cam-shaped elevations 3.4 of the driver disks 3 and 3 'relative to the opening on the circumference of the bore 1.1 recesses 1.2, in which the cylinder pins or clamping elements 13 are arranged.
  • clamping elements 13 are not acted upon by the elevations 3.4, so that the joint flap 1 from the position in Fig. 5 who are in the position Fig. 4 corresponds, can not be pivoted clockwise, because the clamping elements 13 wedge on the circumference of the section 4.2 of the pivot pin 4.
  • joint bracket 1 and pivot pin 4 is present, but only a clamping engagement between joint bracket 1 and drive plates 3 and 3 '.
  • This pivotal movement of the joint flap 1 in the counterclockwise direction is made possible by the slot-like control recess 1.3 relative to the driver disks 3 and 3 ', wherein the control recess 1.3 is formed correspondingly shorter in the circumferential direction than the arcuate groove 2.2 in the retaining tab. 2
  • the joint flap 1 in the second end position in Fig. 4c can be pivoted by 90 ° corresponding to the length of the groove 2.2 in the retaining tab 2, because the clamping elements 13 can no longer engage with the engaging portion 4.2 of the pivot pin 4 through the clamping connection between the driver discs 3, 3 'and joint clip 1 They are in the clamping position held between drive plates 3, 3 'and joint flap 1, so that in the pivoting movement in the clockwise direction, the driver disks 3, 3' rotate with the hinge lug 1 to the stationary pivot pin 4, such as Fig. 4c shows.
  • the joint flap 1 can be pivoted with the attached furniture part continuously in a desired intermediate position in which the joint flap 1, for example, occupies an angle of about 120 ° to the retaining tab 2, like this 4b shows.
  • the cylindrical pins 13 extend over the thickness of the hinge lug 1 and substantially over the thickness dimension of the two driver disks 3 and 3 ', with the circumferential curve at 3.4 they engage by the fact that the cylinder pins 13 on opposite sides of the hinge lug 1 with the two drive plates 3 and 3 'engage, they have a stable position, in particular in the engagement phase, so that they can not tilt in the recesses 1.2, as may be possible in a one-sided embodiment, in which the cylinder pins 13 only on one side of the joint flap Protrude 1 and engage with only one drive plate 3 in engagement.
  • the pivoting range of the hinge fitting or the pivoting range of the hinge flap 1 relative to the retaining tab 2 can be specified by the length of the arcuate recess 2.2 on the bearing portion 2a of the retaining tab 2.
  • the angular distance between the ends of the arcuate recess 2 2 is selected so that a pivoting range of the joint flap 1 of about 90 ° between the positions in Fig. 4 and Fig. 4c results.
  • the pivoting range of the joint flap 1 can be made larger or smaller.
  • the Klemmeimichtung be formed with the spring-loaded wedge or clamping elements in the form of the cylindrical pins 13 in another way to a blocking effect of To prevent pivotal movement of the joint flap 1 in the one direction of rotation relative to the pivot pin 4 and to allow a rotational movement in the opposite direction
  • the design of the driver disks 3, 3 'as controls for the clamping elements 13 may on the circumference also have a different shape than the wedge-shaped elevations 3.4, at which the clamping elements 13 between joint bracket 1 and drive plates 3, 3' are wedged vezkeilt.
  • control recess 1.3 is smaller on the circumference of the bore 1.1 of the joint flap 1, so that the smaller diameter section 5.2 of the driving pin 5 in the control recess for limiting the short pivoting movement of Fig. 4 to Fig. 4a intervenes.
  • the slot-shaped control recess 1.3 opens on a longitudinal side in the bore 1.1 of the joint flap 1 It is arranged with its center between adjacent recesses 1.2 of the hinge flap 1 so that its center has approximately the same distance from the adjacent recesses 1.2.
  • the offset of the control recess 1.3 to the longitudinal axis L corresponds to the angular range of the pivoting movement between the positions of the 4 and 4a respectively.
  • Fig. 6 shows a modified embodiment of a retaining tab 2, in which around the bore 2 1 at the bearing portion 2a instead of an arcuate groove 2 2 in the embodiment of the Fig. 1 to 5 an arcuate cut 2.20 is formed on the circumference of the bearing portion 2a.
  • the arcuate groove is 2.2 in Fig. 2 designed radially open to the outside, so that only the ends remain on the groove as stops for the section 5.2 of the driving pin 5.
  • Fig. 6a shows a length of the arcuate recess 2 20, which is shorter than the length of the groove 2.2 in Fig. 2 , which runs over about 90 °
  • Fig. 6b shows an offset arrangement of the recess 2 20 in the circumferential direction relative to Fig. 6a , Which results in a different pivoting range of the joint flap 1 and the hinge fitting
  • Fig. 6c shows a length of the recess 2.20 corresponding to the length of the groove 2.2 in Fig. 2 over about 90 °.
  • Fig. 7 shows a modified embodiment of a retaining tab 2 corresponding to the retaining tab in Fig. 6a , wherein the bore 2.1 is formed as a square opening 2.10 Accordingly, in this embodiment, the retaining tab 2 of the end portion 4.1 ( Fig. 2 ) of the pivot pin 4 is not cylindrical, but formed as a square, so that by the engagement of the square section 4.1 in the square opening 2 10 a rotationally fixed connection between the pivot pin 4 and retaining tab 2 is formed. Such a configuration is also in the first embodiment according to the Fig. 1 to 5 possible.
  • the holding force of the hinge fitting is determined by the clamping engagement of the clamping elements or cylindrical pins 13 on the circumference of the clamping portion 4.2 of the pivot pin 4, which is firmly connected to the retaining tab 2
  • Fig. 8 shows a further embodiment, which is designed for higher loads.
  • the joint flap 1 is provided on the circumference of the bore 1.1 on the bearing portion 1a with five oblique recesses 12, in each of which a clamping element or cylindrical pin 13 is arranged.
  • the engagement of five cylindrical pins on the circumference of the engaging portion 4.2 of the pivot pin 4 results in a higher holding force of the hinge fitting in a set pivot position, in which the joint flap 1 is held in its relative position to the retaining tab 2 by the clamping engagement.
  • the recesses While in the embodiment of the joint flap 1 in Fig. 2 the three recesses 1.2 are arranged at equal angular intervals around the bore 1.1, the recesses have 1.2 in the embodiment according to Fig. 8 with each other the same angle, wherein the control recess 1.3 adjacent recesses 1.2 have a greater distance from each other, so that there is sufficient space for the slot-shaped control recess 1.3.
  • FIG. 9 shows a modified embodiment of a drive plate 30.
  • the bore 3.1 in the middle of the drive plate 30 and arranged at a radial distance thereof bore 3 3 corresponds to the holes 3.1 and 3 3 in Fig. 2 .
  • At a radial distance from the circumference of the central bore 3.1 are in the drive plate 30 in Fig. 9 five Chambers 31 formed, the positioning of the position of the recesses 1.2 on the bearing portion 1 a of the hinge flap 1 corresponds According to the diameter of the drive plate 30 in Fig. 9 is greater than the drive plate 3 in Fig. 2 ,
  • the chambers 31 serve to ensure that the clamping device is not hindered at the joint flap 1 by the drive plate 30 and the drive plate 30 provides sufficient space for the movement of the cylindrical pins 13 and the springs 13 a acting on them
  • a cam-shaped radial elevation 3.4 is formed on the réelleumfnature, as with the drive plate 3 in Fig. 2 the case is.
  • the larger diameter of the drive plate 30 ensures greater stability over the embodiment in FIG Fig. 2 ,
  • Fig. 10 shows a hinge fitting of the second embodiment according to Fig. 6 to 8 in two positions, the driver disks 30 are not reproduced. There are only shown the joint flap 1 and the retaining tab 2 in two relative positions to each other, wherein the pivot pin 4, not shown, in a bore 2.1 or in a square opening 2.10 can be attached to the retaining tab 2.
  • FIG. 10 While Fig. 4 and 5 a stationary retaining tab 2 and a pivoted relative thereto hinge flap 1 is in FIG. 10 the joint flap 1 as a stationary tab and the retaining tab 2 as relative to this pivoted tab reproduced.
  • the movement of the fitting in FIG. 10 reverse to the movement of the fitting in the first embodiment Fig. 1 to 5 , or the joint flap 1 can for example be attached to a stationary furniture part and the retaining tab 2 on the movable furniture part.
  • Fig. 10a and Fig. 10b correspond to the end positions of the pivoting range of the hinge fitting, which by the length of the recess 2 20 in Fig. 6c is determined.
  • the driving pin 5 is located at the left end of the control recess 1.3, while the end portion 5.2 with a smaller diameter at the in Fig. 10a right end of the recess 2.20 is applied.
  • Fig. 10b is the end 5 2 of the driving pin 5 at the left end of the recess 2 20, while the driving pin 5 in the recess 1.3, the same position as in Fig. 10a occupies.
  • the hinge fitting described which is infinitely lockable in a pivoting position, can be used not only for furniture parts, but also for other relatively pivotable components or elements.
  • the driver element or the driver disk 3, 30, which releases the engagement of the clamping element 13 with the circumference of the pivot pin 4 and clamps the clamping element 1.3 to the driver element, as long as the engagement of the clamping element 13 is solved with the circumference of the pivot pin 4, only needed a small swivel range, such as between Fig. 4 and Fig. 4a
  • the clamping element or, the cylindrical pin 13 is raised by the circumference of the hinge pin 4 and the engagement section 4.2 in the radial direction by the cam-like elevation 3.4 to the drive plate to release the clamping engagement with the pivot pin 4 ,

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  • Health & Medical Sciences (AREA)
  • Dentistry (AREA)
  • General Health & Medical Sciences (AREA)
  • Hinges (AREA)
  • Pivots And Pivotal Connections (AREA)

Claims (14)

  1. Ferrure d'articulation particulièrement pour des parties de meuble mobiles comme des accoudoirs, des appuie-têtes et d'autres choses semblables, comprenant
    - une première languette (1) ayant un alésage (1.1) dans lequel un pivot d'articulation (4) vient en prise de manière à pouvoir pivoter,
    - une deuxième languette (2), à laquelle est fixé le pivot d'articulation (4),
    - au moins un élément de serrage chargé par un ressort (13) étant agencé sur la périphérie de l'alésage (1.1) de la première languette (1) et permettant dans l'une direction rotative et bloquant dans la direction opposée un mouvement rotatif de la première languette (1) relativement au pivot d'articulation (4), et
    - un élément d'entraînement (3, 30) est fourni, qui débloque l'engrènement de l'élément de serrage (13) avec la périphérie du pivot d'articulation (4) et coince l'élément du serrage (13) à l'élément d'entraînement.
  2. Ferrure d'articulation selon la revendication 1, une rainure arquée (2.2) ou un évidement (2.20) dans la deuxième languette (2) étant formée ou formé autour du pivot d'articulation (4) pour déterminer le domaine de pivotement, et l'élément d'entraînement (3, 30) étant engrené avec cette rainure (2.2) ou l'évidement (2.20).
  3. Ferrure d'articulation selon la revendication 2, l'élément d'entraînement étant conçu comme un disque d'entraînement (3, 30) qui est agencé sur le pivot d'articulation (4) de manière à pouvoir pivoter et qui est engrené avec la rainure arquée (2.2) ou l'évidement (2.20) dans la deuxième languette (2) par une goupille (5).
  4. Ferrure d'articulation selon la revendication 3, le disque d'entraînement (3, 30) étant engrené avec un évidement de commande (1.3) de la première languette (1) par la goupille (5),
    et l'évidement de commande (1.3) ayant une longueur moins longue que la rainure arquée (2.2) ou l'évidement (2.20) autour du pivot d'articulation (4).
  5. Ferrure d'articulation selon la revendication 3 ou 4, le disque d'entraînement (3) comprenant sur un prolongement radial (3.1) un évidement ou un alésage (3.2), dans lequel est insérée la goupille (5) qui s'engrène avec la rainure arquée (2.2) ou l'évidement (2.20) de la deuxième languette (2) et avec l'évidement de commande (1.3) sur la périphérie de l'alésage (1.1) de la première languette (1).
  6. Ferrure d'articulation selon la revendication 1, le au moins un élément de serrage (13) faisant un engrènement de serrage entre la première languette (1) et le pivot d'articulation (4) et un engrènement de serrage entre le disque d'entraînement (3) et la première languette (1), tandis qu'en chaque cas l'autre position de serrage n'est pas engrenée.
  7. Ferrure d'articulation selon l'une des revendications précédentes, l'évidement de commande (1.3) pour l'engrènement du disque d'entraînement (3) étant formé sur la périphérie de l'alésage (1.1) de la première languette (1).
  8. Ferrure d'articulation selon l'une des revendications précédentes, un profil cunéiforme (3.4) étant formé sur la périphérie du disque d'entraînement (3) pour l'engrènement avec l'élément de serrage (13).
  9. Ferrure d'articulation selon l'une des revendications précédentes, la deuxième languette (2) comprenant des parties de support placées à distance (2a, 2a'), entre lesquelles une partie de support (1a) de la première languette (1) s'engrène, à chaque fois un disque d'entraînement (3, 3') étant agencé sur les deux faces de la partie de support (1a) de la première languette (1).
  10. Ferrure d'articulation selon la revendication 9, le pivot d'articulation (4) comprenant des parties d'extrémité opposées (4.1) qui sont liées aux parties de support (2a, 2a') de la deuxième languette (2), et de part et d'autre d'une partie d'engrènement centrale (4.2) de grand diamètre sont formées des parties de supports (4.3) de plus petit diamètre pour les disques d'entraînement (3, 3').
  11. Ferrure d'articulation selon la revendication 9 ou 10, la goupille (5) sur des faces opposées d'une partie centrale (5.1) comprenant des parties (5.2) qui s'engrènent avec les rainures arquées (2.2) des parties de support opposées (2a, 2a') de la languette de rétention (2).
  12. Ferrure d'articulation selon l'une des revendications précédentes, les éléments de serrage à la première languette (1) étant formés comme des chevilles cylindriques (13), qui saillent latéralement de la première languette en plate-forme ou en forme de disque (1).
  13. Ferrure d'articulation selon la revendication 12, les chevilles cylindriques (13) étant agencées dans des évidements (1.2) sur la périphérie de l'alésage (1.1) de la première languette (1) de manière d'être mobiles avec leur périphérie en direction radiale vers la périphérie de la partie d'engrènement (4.2) du pivot d'articulation (4).
  14. Ferrure d'articulation selon la revendication 13, les chevilles cylindriques (13) étant chargées par des ressorts (13a) de manière approximativement tangentiellement inclinée vers la périphérie de l'alésage (1.1) de la première languette (1).
EP12169193.5A 2011-05-24 2012-05-24 Butée d'articulation en particulier pour meuble Not-in-force EP2526828B1 (fr)

Priority Applications (1)

Application Number Priority Date Filing Date Title
PL12169193T PL2526828T3 (pl) 2011-05-24 2012-05-24 Okucie przegubowe dla mebli

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
DE102011102442A DE102011102442A1 (de) 2011-05-24 2011-05-24 Gelenkbeschlag insbesondere für Möbel

Publications (2)

Publication Number Publication Date
EP2526828A1 EP2526828A1 (fr) 2012-11-28
EP2526828B1 true EP2526828B1 (fr) 2013-09-25

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Family Applications (1)

Application Number Title Priority Date Filing Date
EP12169193.5A Not-in-force EP2526828B1 (fr) 2011-05-24 2012-05-24 Butée d'articulation en particulier pour meuble

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EP (1) EP2526828B1 (fr)
DE (1) DE102011102442A1 (fr)
PL (1) PL2526828T3 (fr)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE202017101471U1 (de) 2017-03-14 2017-04-11 Kemmann & Koch Gmbh & Co. Kg Gelenkbeschlag insbesondere für Möbel

Families Citing this family (8)

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Publication number Priority date Publication date Assignee Title
DE102015100527A1 (de) * 2015-01-14 2016-07-14 Hettich Franke Gmbh & Co. Kg Schwenkbeschlag, Möbel und Kraftfahrzeugsitz
DE102015113749A1 (de) * 2015-08-19 2017-02-23 Hettich Franke Gmbh & Co. Kg Schwenkbeschlag und Polstermöbel
DE202019100046U1 (de) 2019-01-07 2020-04-08 Brühl & Sippold GmbH Vorrichtung zum Verstellen der Position einer Rückenlehne
DE102019100195A1 (de) 2019-01-07 2020-07-09 Brühl & Sippold GmbH Vorrichtung zum Verstellen der Position einer Rückenlehne
DE102019113248A1 (de) * 2019-05-20 2020-11-26 Hettich Franke Gmbh & Co. Kg Schwenkbeschlag und Möbel
DE102019119307A1 (de) * 2019-07-16 2021-01-21 Hettich Franke Gmbh & Co. Kg Möbel und Verfahren zur Montage eines Möbels
DE102020105189A1 (de) * 2020-02-27 2021-09-02 Ferdinand Lusch Gmbh Schwenkgelenk zum Verstellen eines Funktionsteils mit einem Klemmelement
CN113440354B (zh) * 2021-07-01 2022-07-05 季华实验室 折叠扶手、座椅及护理床

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FR1312614A (fr) * 1961-11-10 1962-12-21 Inst Mecanisme Dispositif de blocage pour siège à dossier inclinable
US3216766A (en) * 1962-05-14 1965-11-09 Rockwell Standard Co Infinite positional adjustment and one-way lock mechanism
JPS5940953A (ja) * 1982-08-31 1984-03-06 Ikeda Bussan Co Ltd ロツク機構
DE29900138U1 (de) * 1999-01-07 1999-04-01 Kemmann & Koch GmbH & Co. KG, 42551 Velbert Gelenkbeschlag für Möbel
DE20023456U1 (de) * 1999-04-16 2004-07-01 Faurecia Sieges D'automobile Vorrichtung für eine irreversible Einstellung

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE202017101471U1 (de) 2017-03-14 2017-04-11 Kemmann & Koch Gmbh & Co. Kg Gelenkbeschlag insbesondere für Möbel
WO2018167134A1 (fr) 2017-03-14 2018-09-20 Kemmann & Koch Gmbh & Co. Kg Ferrure articulée

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PL2526828T3 (pl) 2014-03-31
DE102011102442A1 (de) 2012-11-29

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