DE202018105871U1 - Articulated hinge with locking device for zero position - Google Patents

Articulated hinge with locking device for zero position Download PDF

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Publication number
DE202018105871U1
DE202018105871U1 DE202018105871.1U DE202018105871U DE202018105871U1 DE 202018105871 U1 DE202018105871 U1 DE 202018105871U1 DE 202018105871 U DE202018105871 U DE 202018105871U DE 202018105871 U1 DE202018105871 U1 DE 202018105871U1
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Prior art keywords
locking
latching
recess
guide
roller
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DE202018105871.1U
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German (de)
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Pauli and Sohn Metallwaren GmbH
Pauli Sohn Metallwaren GmbH
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Pauli and Sohn Metallwaren GmbH
Pauli Sohn Metallwaren GmbH
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Priority to DE202018105871.1U priority Critical patent/DE202018105871U1/en
Publication of DE202018105871U1 publication Critical patent/DE202018105871U1/en
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    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05YINDEXING SCHEME RELATING TO HINGES OR OTHER SUSPENSION DEVICES FOR DOORS, WINDOWS OR WINGS AND DEVICES FOR MOVING WINGS INTO OPEN OR CLOSED POSITION, CHECKS FOR WINGS AND WING FITTINGS NOT OTHERWISE PROVIDED FOR, CONCERNED WITH THE FUNCTIONING OF THE WING
    • E05Y2900/00Application of doors, windows, wings or fittings thereof
    • E05Y2900/10Application of doors, windows, wings or fittings thereof for buildings or parts thereof
    • E05Y2900/13Application of doors, windows, wings or fittings thereof for buildings or parts thereof characterised by the type of wing
    • E05Y2900/132Doors
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05DHINGES OR OTHER SUSPENSION DEVICES FOR DOORS, WINDOWS OR WINGS
    • E05D11/00Additional features or accessories of hinges
    • E05D11/10Devices for preventing movement between relatively-movable hinge parts
    • E05D11/1014Devices for preventing movement between relatively-movable hinge parts for maintaining the hinge in only one position, e.g. closed
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05DHINGES OR OTHER SUSPENSION DEVICES FOR DOORS, WINDOWS OR WINGS
    • E05D5/00Construction of single parts, e.g. the parts for attachment
    • E05D5/02Parts for attachment, e.g. flaps
    • E05D5/0246Parts for attachment, e.g. flaps for attachment to glass panels
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05YINDEXING SCHEME RELATING TO HINGES OR OTHER SUSPENSION DEVICES FOR DOORS, WINDOWS OR WINGS AND DEVICES FOR MOVING WINGS INTO OPEN OR CLOSED POSITION, CHECKS FOR WINGS AND WING FITTINGS NOT OTHERWISE PROVIDED FOR, CONCERNED WITH THE FUNCTIONING OF THE WING
    • E05Y2201/00Constructional elements; Accessories therefore
    • E05Y2201/60Suspension or transmission members; Accessories therefore
    • E05Y2201/622Suspension or transmission members elements
    • E05Y2201/638Cams; Ramps

Abstract

Articulated hinge, in particular for glass doors, with two hinge parts (10, 20; 10, 40) hinged together about a swivel axis (S) and with an adjustable latching device (30; 130; 230), which is assigned to the first hinge part (10) against the Effect of at least one spring element (36) linearly movable in a guide recess (12A) detent body (37A, 37B) and a detent roller (31; 131; 231) assigned to the second band part (20) with a detent recess cooperating with the detent body in a detent position ( 32; 132; 232), the locking roller (31) being arranged coaxially to the swivel axis (S) between two belt webs (21; 41) formed on the second belt part (20; 40) and being lockable in different angular positions of its locking recess (32), characterized in that the first band part (10) has a first guide recess (12A) for a first latching body (37A) and a second guide recess (12B) for a relative to the first latching body (37A) has movable second locking body (37B) and both locking bodies (37A, 37B) cooperate with a locking roller (31), the guide recesses being aligned at an angle to one another and / or the locking recess (32A) in the locking roller (31) for the the first locking body (37A) is arranged at an angle to the locking recess (32B) for the second locking body (37B).

Description

  • The invention relates to an articulated hinge, in particular for glass doors, with two hinge parts hingedly connected to one another about a swivel axis and with an adjustable latching device which has a latching body assigned to the first hinge part, linearly movably guided in a guide recess against the action of at least one spring element, and a latching roller assigned to the second hinge part with a locking recess cooperating with the locking body in a locking position, the locking roller being arranged coaxially to the pivot axis between two webs formed on the second belt part and can be locked in different angular positions of its locking recess
  • Such a hinge, which can be used for example for furniture doors or a glass door of a shower partition, is from the EP 0 822 309 B1 known. With the help of the adjustable locking device, the closed position of the door hinged on the hinge can be adjusted by locking the locking roller arranged coaxially to the pivot axis between the two webs of the second hinge part with its locking recess so that the door has the desired closing or opening position relative to the wall or other wall elements, for example a shower, when the locking body is pressed by the spring element into the locking recess. To lock the locking roller in the desired angular position, the hinge of the generic type is provided with a two-part axle bolt consisting of two bolt parts which can be screwed together, the locking roller being plugged onto one bolt part and the other bolt part being supported on the locking roller and countering it when the axle bolt parts are screwed together presses a band web on the second part of the band and thereby clamps it.
  • To lock the angular position of the locking roller, other solutions are also known, in which, for example, either the locking roller is clamped by means of a locking screw which is guided in the belt part transversely to the pivot axis and acts on the circumference of the locking roller or on the hinge bolt which is non-rotatably connected to the locking roller ( DE 20 2009 004 853 U1 ), or the locking roller itself is made of several parts and can be clamped between the webs by unscrewing the parts of the locking roller ( DE 10 2008 018 646 B3 ).
  • From the EP 867586 B1 A hinge with a locking device is known, in which a supporting axis for the existing locking body is held by means of two separate holding elements which are guided in separate bores. The two holding elements can move towards each other and each center a single spring and at the same time one of the ends of the supporting axis, which is to prevent any contact between the metallic band parts and the supporting axis or the springs in order to minimize noise.
  • In all previously known solutions, the problem of a movement play of the door leaf in the latching position or an inexact taking of the closed position due to tolerances in the building and manufacturing-related tolerances due to the respective play between the interacting functional elements of the latching device remains. In the case of shower doors, magnetic seals between the door leaf and shower wall element are used to achieve improved tightness against escaping water, but these only indirectly eliminate the aforementioned problems.
  • The object of the invention is to provide a hinge which avoids the aforementioned disadvantages, improves tolerance compensation and better positions a door leaf in the desired position.
  • To achieve this object, the invention proposes that the first band part has a first guide recess for a first latching body and a second guide recess for a second latching body movable relative to the first latching body, and both latching bodies cooperate with a latching roller, wherein according to claim 1 or Claim 2 specified solution variants about an offset in the angle of inclination of the guide recesses, an offset of the guide recesses relative to one another relative to the pivot axis and / or an angular offset or axial offset of the respective detent recesses relative to one another in the closed position, an additional bracing between the at least two existing detent bodies and the associated detent recesses in the detent position is achieved.
  • In the embodiment variant with guide recesses and / or latching recesses arranged axially offset relative to the pivot axis, it is particularly advantageous if both guide recesses are arranged offset by an offset relative to one another and to the pivot axis, or if both latching recesses are offset relative to one another and offset to the pivot axis, whereby preferably the offset dimension is the same for both guide recesses or latching recesses.
  • In all of the configurations, it is particularly advantageous if the first latching body is arranged on a first slide which is guided in a linearly movable manner in the first guide recess and the second latching body is arranged on a second slide which is guided in a linearly movable manner in the second guide recess.
  • Each slider is expediently guided against rotation in the associated guide recess due to its shape and / or has spring receptacles for at least two spring elements on its rear side in order to achieve a sufficient clamping force in the detent position. Each slide preferably has spring receptacles on its rear side for separate accommodation of the spring ends of 2 spring elements, 3 spring elements or 4 spring elements.
  • In principle, it would be possible to work with a locking body that has only one point of contact with the locking roller. However, it is more advantageous if each latching body consists of a latching roller, which is rotatably mounted on a front of the associated slide. This creates a line pressure between the locking roller and locking roller and the rolling behavior of these two functional elements of the locking device is improved. It is particularly expedient if the latching roller is rotatably mounted on the front of the slider by means of a supporting axis.
  • According to a particularly preferred embodiment, the guide recess has a guide section with an oval cross section and each slide has a slide section with an oval outer circumference, which is guided in the guide section with a clearance fit.
  • The locking roller can in particular be formed in one piece and have a locking groove as a locking recess; In the solution variant with two latching recesses offset from one another, the latching groove can have a first groove section and a second groove section which is arranged at an angle to the first groove section. According to a particularly preferred embodiment, both groove sections can then each have an arc-shaped groove base, the center of the circle of the first groove section and the center of the circle of the second groove section each being at an angle to the groove center line of the latching groove.
  • In the embodiment variant with mutually offset guide recesses, according to one embodiment variant, the openings of the two guide recesses facing the locking roller can be in alignment with one another and the two guide recesses are formed with different inclination angles in the first band part. It is more advantageous if the two guide recesses are formed with different angles of inclination and at the same time the openings of both guide recesses are axially offset or laterally offset from the pivot axis, in particular in such a way that the slides continue to be guided radially to the pivot axis in the associated guide recess.
  • In all design variants, the angular offset between the guide recesses and / or the angular offset between the latching recesses can be less than 5 °, preferably less than 3 °; It is particularly advantageous if the angular offset is in the range from 1 ° to 2.5 °.
  • For locking the locking roller, it is particularly advantageous if the locking roller is non-rotatably connected to a first bolt part of a multi-part hinge bolt and can be locked in a rotationally fixed manner relative to the strap webs of the second strap part by means of a second bolt part which can be screwed together with the first bolt part and a clamping sleeve. The locking can also be done in other ways known to those skilled in the art.
  • Further advantages and refinements of the invention result from the following explanation with reference to exemplary embodiments shown in the drawing. The drawing shows:
    • 1 a horizontal section through an inventive hinge for connecting a glass door with a glass wall element;
    • 2 a sectional view along II-II in 1 ;
    • 3 in an exploded view an inventive hinge for hitting a glass door on a wall;
    • 4 which in the articulated ligament after the 1 to 3 used locking roller in perspective view;
    • 5 a detailed view of the locking roller in view of the end face;
    • 6 a detailed view of the locking groove of the locking roller after 4 and 5 ;
    • 7 the functional diagram between displaceable locking bodies and locking roller for the hinges 1 to 3 ;
    • 8th the functional diagram between movable locking bodies and locking roller in an articulated hinge according to a first alternative embodiment; and
    • 9 the functional diagram between movable locking bodies and locking roller in an articulated hinge according to a first alternative embodiment
  • In the 1 and 2 is overall with reference numerals 1 an inventive ligament shown. The ligament 1 has a first band part 10 and a second band part 20 on that by means of a hinge pin 2 articulated with each other are connected. In the 1 and 2 is the band part 20 for attachment to a wall element, schematically indicated by a thick glass pane 3 trained, whereas the band part 10 on a schematically indicated glass door 4 is attached. It is understood that at least two wristbands each 1 are used for each door, which are installed at different heights. It is installed on glass cutouts in the wall element 3 or the glass door 4 , for which a first pressure plate 5 through the glass cutout with the band part 20 is screwed, and a separate pressure plate 6 with the band part 10 is screwed, as is known per se to the person skilled in the art, which is why this will not be discussed further. The band part 10 points for the pivot connection two from the main body of the band part 10 protruding webs 11 on, and the tape part 20 has two inner band webs projecting from its main body 21 on, each with a bolt eye 16 . 26 for the penetration of the hinge pin 2 are provided.
  • The ligament 1 is additionally with a total of reference numerals 30 designated locking device provided with a certain angular position between the wall element 3 and the glass door 4 can be set, for example an exact aligned alignment of the disc plane of the wall element 3 and glass door 4 , as in 1 indicated, in this position the glass door 4 by means of the locking device 30 is held in place. The essential functional elements of the locking device 30 are a locking roller 31 with a recess 32 on the circumference, as well as a sliding in a guide recess 12A in the first part of the volume 10 linearly movable slide 35A by means of springs 36 towards the locking roller 31 is biased and on its front with a rotatable by means of a support roller 38 stored indexing roller 37A is provided as a locking body. The scope 38 is formed by a short pin. During a pivoting movement of the glass door 4 relative to the wall element 3 rolls the locking roller 37A with line pressure on the surface 33 the locking roller 31 until the locking roller in the preset position 37A in the groove 32 can immerse, causing the glass door 4 is held in this position. A sufficient amount of force must be exerted on the glass door to leave this position 4 be applied for pivoting, which is sufficient, the restoring force of the springs 36 to overcome. The basic principle of operation of such a locking device 30 is known to the person skilled in the art.
  • A special feature according to the invention consists, in particular, of 2 is clearly evident in the fact that in the first part of the volume 10 two separate guide recesses 12A . 12B are formed, in each guide recess 12A . 12B each with a separate slide 35A . 35B each with its own locking roller 37A . 37B is arranged. Any slider 35A . 35B each with three springs 36 biased, and every spring 36 dips into a blind hole with its rear spring end 13 in the band part 10 a, whereas the front spring end into a blind hole 39 on the back of each slide 35A . 35B dips. The individual feathers 36 can therefore virtually not move relative to one another transversely to their spring axis and also cannot touch each other, apart from the necessary clearance to ensure assembly. The slider 35A can be largely independent of the slider 35B move, even if the movement of both sliders 35A . 35B about the relative position between the locking roller 37A . 37B and the locking roller 31 is controlled under positive control.
  • The two separate sliders 35A . 35B with the separate locking rollers 37A . 37B act apart from each other in height on a single locking roller common to both locking bodies 31 , This locking roller 31 in turn has latching rollers for both 37A . 37B , so the locking body of the locking device 30 , each have a locking recess, which in the exemplary embodiment shown extends over the entire height of the locking roller 31 extending locking groove 32 is formed; however, the groove profile is the locking groove 32 in the upper groove section 32A different than in the lower groove section 32B , the groove bottom of the one groove section 32A is therefore slightly different, namely angularly offset, to the groove base of the other groove section 32B ,
  • For explanation, reference is now made to the 4 to 6 in which the locking roller 31 is shown in detail. 4 clarifies that the groove 32 is not uniformly continuous but a groove section 32A has a slightly different design than the groove section 32B , The embodiment according to the 1 and 2 (and also 3 ) are the two groove sections 32A . 32B offset from each other; this is particularly evident from the illustration in 5 clear; the groove section 32A has a radius of curvature R A whose center is on a different radial line L A the locking roller 31 lies as the radius of curvature R B of the groove section 32B who is on the radial line L B are located. The radius dimension of both radii of curvature R A . R B is the same, but the offset of the center points results in an angular offset α of the surfaces or the groove base of the groove sections 32A . 32B , which can be, for example, 2 °. This illustrates once again the enlarged representation of the locking groove 32 on the locking roller 31 in 6 with the two groove sections 32A . 32B with each groove base at an angle to each other 32A ' 32B '. A locking groove with differently angled groove sections 32A . 32B can, for example, with a locking roller manufactured in the casting process 31 can already be specified in the mold.
  • This angular offset by the measure α of the two groove sections 32A . 32B or the respective groove base 32A ' 32B 'each other has an advantageous effect when the locking device 30 clicks into place, hence the glass door 4 occupies its desired location. Due to the angular misalignment of the two groove sections 32A . 32B the two separate latching rollers lay against each other 37A . 37B with a slight angular difference in the locking position to the associated locking recess, that is to say the respective groove section 32A . 32B the locking groove or the bottom of the groove; this causes an additional bracing or jamming, which can be used above all for manufacturing-related tolerances such as the guide play of the slide 35A . 35B in the associated guide recesses 12A . 12B compensate. The one with the locking device 30 Enabled zero position setting is hereby significantly improved compared to known devices with zero position setting, since a door more precisely assumes the desired zero position even after several closing and opening operations and is also held in this position.
  • The 3 shows a joint hinge that is basically identical in principle 1' like the wrist band from the 1 and 2 , The band part 10 is identical to the previous embodiment; also the locking device 30 with the locking roller 31 , the locking groove 32 , and the separate sliders 35A . 35B , each with a separate locking roller 37A . 37B rotatable support is identical to the previous embodiment. From the exploded view in 3 is particularly recognizable that both sliders 35A . 35B are U-shaped in the side view with a wide base web 39A . 39B , in each of the back of the blind holes for the spring ends of the springs 36 are trained. Any slider 35A . 35B has an oval cross-section that extends over a given depth of the slide 35A . 35B extends and forms a guide portion for each slider. The oval cross section of the slide is at the oval cross section of the guide recesses 12A . 12B in the band part 10 adjusted, however, by means of clearance between the outer contour of the slide 35A . 35B and the inner surface of the guide recesses 12A . 12B made sure that the respective slide 35A . 35B is linearly movable and at the same time quiet. The one with the band part 10 cooperating band part 40 is used here for attachment to a wall or any wall element not made of glass, which is why the band part 40 the two inner webs 41 , between which the locking roller 31 is arranged, but otherwise only one fastening web 42 has through openings through which the fastening web 42 can be screwed to a wall. Due to the exploded view is in 3 easily recognizable, like the locking roller 31 and thus the position of the locking device 30 can be locked in a certain position. The position is determined by means of a split axle bolt 2 , the one lower, over the height of all the webs 11 . 41 extending bolt part 7A and a second bolt part that can be screwed to it 7B has, which consists only of a fastening screw, which in turn with a clamping sleeve 8th interacts. The bolt part points at its lower end 7A a bolt head 9 on, above which the bolt shaft of the bolt part 7A is provided with a knurling with which the hinge pin on one of the two webs 41 of the second part of the band 30 , namely in the through hole of this web 41 , is rotatably fixed. The locking roller 31 stays around the bolt part for so long 7A rotatable until the locking roller 31 by means of a clamping sleeve 9 and second bolt part 7B against the lower band bridge 41 is clamped with sufficient clamping force. A ribbed lock washer 49 serves as an additional anti-rotation element in the exemplary embodiment shown. The bolt part 7A is through the through hole 34 in the locking roller 31 and the top two webs 11 . 41 at least partially put through. The security situation is therefore determined, as is this 2 clarified very well by tightening or clamping the locking roller 31 against the lower band bridge 41 (or 21 in 2 ) of the second part of the band 40 , The first part of the belt can rotate freely 10 relative to the second part of the band 40 is by means of sliding sleeves 45 . 46 guaranteed each in the band webs 11 of the first part of the band 10 immerse and twist the belt part with little friction 10 around the hinge pin 2 ensure that together with the locking roller 31 non-rotatable with the second band part 40 connected is.
  • The 7 illustrates the functional principle of the locking device in the embodiment of the 1 to 3 , The two sliders 35A . 35B lie in alignment one behind the other and the displacement movement in the guide recess takes place on the same radial line or displacement line V A, B , Only because of the different groove sections 32A . 32B , ie the angular misalignment, or alternatively an axial misalignment, there is the additional jamming or bracing effected according to the invention.
  • The 8th illustrates the principle of operation in an alternative embodiment of one with the exception of the locking device 130 otherwise not shown hinge ligament. The locking roller 131 has at the locking device 130 a uniform, continuous locking groove 132 , Instead, the guide recesses stand for the two separate slides 135A . 135B offset from each other; the shift line V A for the slider 135A is by half the offset angle Φ slanted in one direction, and the shift line V B for the other pusher 135B is accordingly by half the offset angle Φ twisted in the other direction. Like the representations in 8th clarifies, both shift lines lie V A . V B continue on a radial line, i.e. a line that defines the pivot axis S that with the central axis of the locking roller 131 collapses, cut; based on the band part, in which correspondingly offset by half the angle Φ Guide recesses which are at an angle to the central plane, this means that the respective slide recesses are at an angle to one another and are at an angle to the surface of the respective band part, which is why the respective springs 136A . 136B to be crooked. Because of the inclined arrangement of the guide recesses on radial lines that intersect the swivel axis, those of the locking roller are also located 131 each facing opening of the guide recess slightly laterally offset with respect to a central plane of the associated band part in which the guide recesses are formed. This arrangement also enables the clamping effect desired according to the invention and the improved tolerance compensation.
  • 9 shows yet another embodiment using the locking device 230 , The two guide recesses for the slide are also located here 235A . 235B not aligned one behind the other symmetrically with a central plane of the associated band part, but they are offset by an amount X laterally offset to each other or laterally offset to a center line, which in turn exactly the pivot axis S cuts, which in turn with the central axis of the locking roller 231 coincides. The offset measure X therefore corresponds to the distance between the two shift lines V A . V B to each other and thus also the extent to which the two guide recesses in the associated band part are offset from one another. Half the offset dimension X / 2 gives the lateral offset of each guide recess for the respective slide 235A . 235B and the locking roller guided with this 237A . 237B relative to the pivot axis S. The respective springs also experience the same offset 236A . 236B ,
  • The angularly or laterally offset arrangement of the guide recesses can already be provided in the casting mold in the case of strip parts which are produced as a cast part. At most, the surfaces of the guide recesses would then have to be reworked.
  • Numerous modifications result from the preceding description for the person skilled in the art, which should fall within the scope of protection of the appended claims. Clamping the locking roller with a split hinge pin is only one way in which the locking of the locking roller can be achieved. The number of springs, the shape of the slide and, accordingly, the shape of the guide recess can vary. The skewed arrangement of the guide recesses can be combined with a groove with differently shaped groove sections. A double locking roller could also be assigned to each of the slides. Instead of a locking roller, a locking ball could also be arranged on the respective slide as a locking body; a continuous locking groove does not necessarily have to be present on the locking roller, but the locking roller could also only be partially provided with an adapted locking recess on the circumference. The slides are preferably made of plastic, the springs are preferably spiral springs, as shown. The locking roller can also be composed of two rigidly connected individual rollers.
  • QUOTES INCLUDE IN THE DESCRIPTION
  • This list of documents listed by the applicant has been generated automatically and is only included for the better information of the reader. The list is not part of the German patent or utility model application. The DPMA assumes no liability for any errors or omissions.
  • Patent literature cited
    • EP 0822309 B1 [0002]
    • DE 202009004853 U1 [0003]
    • DE 102008018646 B3 [0003]
    • EP 867586 B1 [0004]

Claims (14)

  1. Articulated hinge, in particular for glass doors, with two hinge parts (10, 20; 10, 40) hinged together about a swivel axis (S) and with an adjustable latching device (30; 130; 230), which is assigned to the first hinge part (10) against the Effect of at least one spring element (36) linearly movable in a guide recess (12A) detent body (37A, 37B) and a detent roller (31; 131; 231) assigned to the second band part (20) with a detent recess cooperating with the detent body in a detent position ( 32; 132; 232), the locking roller (31) being arranged coaxially to the swivel axis (S) between two belt webs (21; 41) formed on the second belt part (20; 40) and being lockable in different angular positions of its locking recess (32), characterized in that the first band part (10) has a first guide recess (12A) for a first latching body (37A) and a second guide recess (12B) for a relative to the first latching body r (37A) has movable second latching body (37B) and both latching bodies (37A, 37B) interact with a latching roller (31), the guide recesses being aligned at an angle to one another and / or the latching recess (32A) in the latching roller (31) for the first locking body (37A) is arranged at an angle to the locking recess (32B) for the second locking body (37B).
  2. Articulated hinge, in particular for glass doors, with two hinge parts (10, 20; 10, 40) hinged together about a swivel axis (S) and with an adjustable latching device (30; 130; 230), which is assigned to the first hinge part (10) against the Effect of at least one spring element (36) linearly movable in a guide recess (12A) detent body (37A, 37B) and a detent roller (31; 131; 231) assigned to the second band part (20) with a detent recess cooperating with the detent body in a detent position ( 32; 132; 232), the locking roller (31) being arranged coaxially to the swivel axis (S) between two belt webs (21; 41) formed on the second belt part (20; 40) and being lockable in different angular positions of its locking recess (32), , characterized in that the first band part moves a first guide recess for a first locking body (137A) and a second guide recess for a relative to the first locking body (137A) ichen second locking body (137B) and both locking bodies (137A, 137B) cooperate with a locking roller (131), wherein at least one of the guide recesses is axially offset relative to the pivot axis (S) to the other guide recess and / or at least one of the locking recesses relative to Pivot axis is aligned offset to the other locking recess.
  3. Joint ligament after Claim 2 , characterized in that the two guide recesses are offset by an offset dimension (X) to the pivot axis (S), or that the two locking recesses are aligned offset by an offset dimension to the pivot axis, the offset dimension preferably being the same for both guide recesses or recesses.
  4. Wrist band according to one of the Claims 1 to 3 , characterized in that the first latching body is arranged on a first slide which is guided in a linearly movable manner in the first guide recess, and the second latching body is arranged on a second slide which is guided in a linearly movable manner in the second guide recess.
  5. Joint ligament after Claim 4 , characterized in that each slide (35A, 35B) is provided on the rear with spring mounts (39) for at least two spring elements, preferably each slide on its rear spring mounts for separate accommodation of the spring ends of 2 spring elements, 3 spring elements or 4 spring elements having.
  6. Joint ligament after Claim 4 or 5 , characterized in that each locking body consists of a locking roller (37A, 37B), which is rotatably mounted on a front of the associated slide (35A, 35B).
  7. Joint ligament after Claim 6 , characterized in that the latching roller 37A, 37B) is rotatably mounted in each case by means of a rigid support shaft (38) on the front of the slide (35A, 35B).
  8. Wrist band according to one of the Claims 4 to 7 , characterized in that the guide recess has a guide section with an oval cross section and each slide has a sliding section with an oval outer circumference, which is guided with a clearance fit in the guide section.
  9. Wrist band according to one of the Claims 1 to 8th , characterized in that the latching roller (31) is formed in one piece and has a latching groove (32) as a latching recess, the latching groove having a first groove section (32A) and a second second groove section (32B) arranged at an angle to the first groove section.
  10. Joint ligament after Claim 9 , characterized in that both groove sections each have an arcuate groove base (32A ', 32B'), the center of the circle of the first Groove section and the center of the circle of the second groove section are each angularly offset from the groove center line of the locking groove.
  11. Wrist band according to one of the Claims 1 to 10 , characterized in that the openings of the two guide recesses facing the locking roller are flush with one another and that the guide recesses are formed with different inclination angles in the first band part.
  12. Wrist band according to one of the Claims 1 to 8th , characterized in that the openings of the two guide recesses facing the locking roller are laterally offset from one another and that the guide recesses are formed with different angles of inclination in the first band part.
  13. Articulated hinge according to one of the preceding claims, characterized in that the angular offset (Φ) between the guide recesses and / or the angular offset (α) between the latching recesses is less than 5 °, preferably less than 3 ° and preferably in the range 1 ° to 2 , 5 °.
  14. Articulated hinge according to one of the preceding claims, characterized in that the locking roller (31) is connected in a rotationally fixed manner to a first bolt part (7A) of a multi-part hinge bolt (2) and by means of a second bolt part (7B) which can be screwed together with the first bolt part and a clamping sleeve (9 ) can be locked in a rotationally fixed manner relative to the band webs of the second band part.
DE202018105871.1U 2018-10-12 2018-10-12 Articulated hinge with locking device for zero position Active DE202018105871U1 (en)

Priority Applications (1)

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DE202018105871.1U DE202018105871U1 (en) 2018-10-12 2018-10-12 Articulated hinge with locking device for zero position

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DE202018105871.1U DE202018105871U1 (en) 2018-10-12 2018-10-12 Articulated hinge with locking device for zero position
EP19201961.0A EP3636865A1 (en) 2018-10-12 2019-10-08 Hinge with a locking device for null centring

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Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
FR2874639A1 (en) * 2004-08-25 2006-03-03 Stremler Soc Par Actions Simpl Hinge with angular adjustment
US20080083088A1 (en) * 2006-10-06 2008-04-10 Lin Kun Ta Industrial Co., Ltd. Door hinge structure

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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE19631028A1 (en) 1996-08-01 1998-02-12 Karl Loggen Locking point adjustment for hinges
FR2761398B1 (en) 1997-03-27 1999-06-04 Stremler Hinge for swing gate or pivoting panel, especially for glass panel
DE202007002494U1 (en) * 2006-10-10 2007-05-16 KL-Beschläge Karl Loggen GmbH Joint hinge for doors and windows comprises locking recesses formed on the hinge axle
DE102008018646B3 (en) 2008-04-11 2009-11-19 Pauli + Sohn Gmbh Metallwaren wrist strap
DE202009004853U1 (en) 2009-05-25 2010-10-21 Pauli + Sohn Gmbh Metallwaren Action hinge
TWM432694U (en) * 2012-01-03 2012-07-01 Dinmex Mfg Inc M1010701_3919

Patent Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
FR2874639A1 (en) * 2004-08-25 2006-03-03 Stremler Soc Par Actions Simpl Hinge with angular adjustment
US20080083088A1 (en) * 2006-10-06 2008-04-10 Lin Kun Ta Industrial Co., Ltd. Door hinge structure

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