Hinge

The hinge design simplifies installation by allowing simultaneous attachment of hinge parts and provides adjustable alignment mechanisms, addressing the complexity of existing hinge systems, especially for tall doors, with improved stability and aesthetics.

WO2026002756A1PCT designated stage Publication Date: 2026-01-02HETTICH ONI
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Patent Information

Application Number
PCT/EP2025/067105
Authority / Receiving Office
WO · WO
Patent Type
Applications
Current Assignee / Owner
Priority Date
2024-06-24
Filing Date
2025-06-18
Publication Date
2026-01-02

AI Technical Summary

Technical Problem

Existing hinges for furniture are complex to install and require sequential fastening of the hinge to the side panel and door, necessitating extended alignment, especially for tall doors.

Method used

A hinge design featuring a stationary side part fixed in a pocket of a side panel and a hinge part fixed to a door via a clip holder, allowing simultaneous attachment of multiple hinge parts to a hinge cup, with adjustable pivot axes and adjustable mechanisms for alignment, including a clip holder for secure attachment and adjustable elements for precise positioning.

Benefits of technology

Facilitates easy and efficient installation of hinges, particularly for tall doors, with stable and adjustable alignment, enhancing installation efficiency and aesthetic appeal by hiding adjustment elements when closed.

✦ Generated by Eureka AI based on patent content.

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Abstract

A hinge (1) for furniture (100) comprises a stationary lateral part (2), which can be secured in a pocket of a lateral wall (101) and is provided in a housing (4), and a hinge part (3), which is provided in a hinge cup (5), can be secured to a door (102), and is pivotally held on the lateral part (2) on at least one extension arm (20) protruding from the housing (4), the hinge part (3) being releasably latched in the hinge cup (5) via a clip holder (55). As a result, the installation of a door is simplified if the hinge cup (5) can be latched to the hinge part (3) via the clip holder (55).
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Description

[0001] hinge

[0002] The present invention relates to a hinge for furniture comprising a stationary side part which can be fixed in a pocket of a side wall and arranged in a housing, and a hinge part which is arranged in a hinge cup and can be fixed to a door, and which is pivotably held on the side part by at least one extension protruding from the housing.

[0003] EP 4 010 553 A1 discloses a hinge in which a side panel can be fixed in a housing within a pocket of a furniture side panel. A hinge component is rotatably mounted on a section projecting from the side panel about a pivot axis. The hinge component is multi-part and fixed to a door. Three eccentrics are provided for adjusting the door relative to the side panel: one on the hinge component and two on the side panel, accessible via a recess in the side panel. Manufacturing the viewing window for accessing the eccentrics is comparatively complex. Furthermore, the design has the disadvantage that the fasteners for fixing the hinge to the side panel and the door must be mounted sequentially, requiring the door to be held in a fixed position relative to the side panel for an extended period.

[0004] It is therefore an object of the present invention to create a hinge that is easy to install and allows for effective alignment of a door relative to a side wall.

[0005] This problem is solved with a hinge having the features of claim 1.

[0006] The hinge according to the invention for furniture comprises a stationary side part, which can be fixed in a pocket of a side panel and is arranged in a housing, and a hinge part arranged in a hinge cup and which can be fixed to a door. The hinge part is pivotably held on the side part by at least one extension projecting from the housing, and is detachably fixed to the hinge cup by means of a clip holder. This allows the housing with the side part to be fixed in the pocket of the side panel and a hinge cup to be attached to a door during installation. Then, to mount the door, the hinge cup can be snapped onto the hinge part, for example, by a push-fit motion, so that several hinge parts can be simultaneously secured to a single hinge cup. This simplifies installation, especially for tall doors.

[0007] The hinge is advantageously designed as a stable single-joint hinge, in which the hinge component is rotatably mounted on the side panel around a single pivot axis. In the installed position, at least one pivot axis of the hinge is preferably vertically oriented, but it can also be inclined or horizontally oriented. Alternatively, the hinge can also be designed as a four-joint hinge, in which the hinge component is pivotally mounted on the side panel via two levers and four pivot axes. The number of pivot axes can be varied depending on the installation position.

[0008] In a preferred embodiment, the hinge part can be inserted into the hinge cup in a releasable manner in a direction radial to the stationary pivot axis or to a pivot axis that moves with the hinge part when it is moved. During assembly, the hinge part can be inserted from an end edge of the door into a receptacle on the hinge cup fixed in the door pocket, so that the assembly direction is essentially parallel to a plane formed by the door.

[0009] Alternatively, the hinge component can be inserted into the hinge cup for a removable rustproof connection and then pivoted around a mounting axis relative to the hinge cup. For reliable locking, the clip holder can engage with a locking pin through an opening in the wall of the cup insert and at least partially through an opening in a wall of the hinge cup.

[0010] Preferably, the clip holder is rusted onto the hinge cup in such a way that it engages a stop on the hinge cup. The clip holder can then be moved past the stop in an insertion direction, and by engaging the stop, the hinge part is prevented from being pulled out of the hinge cup. The clip holder can be moved relative to the stop for adjustment, particularly along a rotational axis of the clip holder, so that adjustment between the hinge part and the hinge cup is possible even in the rusted position. The clip holder can be rotatably mounted on the hinge part or on a cup insert held to the hinge part and is preferably spring-loaded into the locked position. This prevents accidental release of the clip holder.

[0011] The clip holder is preferably movable between a locked and an unlocked position and can be fixed in the unlocked position. For example, the clip holder can be moved into the unlocked position against the force of a spring and then shifted, or locked using a solvent, so that in the unlocked position the hinge part can be easily pulled out of the hinge cup.

[0012] In a further embodiment, the hinge part is adjustable in at least one spatial direction relative to the hinge cup. Preferably, the hinge part is adjustable on the hinge cup in two spatial directions arranged perpendicular to each other. These spatial directions can both extend perpendicular to the hinge axis and are also perpendicular to each other, so that the hinge part can be adjusted in height, depth, and laterally relative to the side wall in its installed position.

[0013] For stable fixing of the hinge component, a cup insert with a receptacle for the hinge component is provided, which surrounds the hinge component in the mounted position. The cup insert can, for example, be U-shaped, so that the hinge component is supported on opposite sides of the cup insert. Optionally, the hinge component is held by an intermediate plate that is slidably arranged within the cup insert. The intermediate plate can, for example, be guided in a groove in the cup insert on opposite sides, allowing the hinge component to be adjusted perpendicular to the plane of the intermediate plate, for example, by turning a threaded adjustment element that is rotatable but axially fixed to the intermediate plate. Additionally, an eccentric or other adjustment element in the form of a worm gear or thread can be provided on the hinge component.

[0014] Preferably, two protruding pins are formed on the hinge cup insert for stable mounting, each engaging in a bearing receptacle on the hinge cup. To improve the fixation of the hinge cup insert, at least one recess can be formed on the insert into which a projection provided on the hinge cup engages. The projection can then fit snugly in the recess. A recess for receiving a projection can be provided on opposite sides of the hinge cup insert. Alternatively, at least one projection can be formed on the hinge cup insert that engages in a receptacle on the hinge cup.

[0015] The hinge preferably has an adjustment element on the side panel which, in the mounted position of the hinge, can adjust the height of the side panel relative to the housing.

[0016] Preferably, at least one adjustment element, and in particular two adjustment elements, are provided on the hinge part. These elements are accessible to a tool for adjustment when the hinge part is open, while the adjustment elements are covered by the side panel when the hinge part is closed. This means the adjustment elements are not visible when the hinge part is closed, which is aesthetically pleasing.

[0017] The hinge is preferably fixable in a milled pocket of a side wall, whereby for assembly the respective hinge cups are first fixed to a door, in order to then, after assembly of the hinge cups and the side parts, place the door onto the protruding hinge parts and secure them each to a hinge cup.

[0018] The invention is explained in more detail below with reference to an exemplary embodiment and the accompanying drawings. These show:

[0019] Figure 1 shows a perspective partial view of a piece of furniture with a hinge according to the invention;

[0020] Figures 2A and 2B show two views of the piece of furniture with the hinge of Figure 1 in different positions;

[0021] Figures 3A and 3B show two views of the hinge in different positions without furniture;

[0022] Figure 4 is an exploded view of the invention.

[0023] hinge;

[0024] Figure 5 shows a view of the hinge without the housing shell in an open position; Figure 6 shows a view of the hinge of Figure 5 when the driver is engaged at the beginning of the tightening area;

[0025] Figure 7 shows a view of the hinge of Figure 5 in a

[0026] Closed position;

[0027] Figure 8 shows a perspective view of the hinge part in the mounted position;

[0028] Figure 9 shows a top view of the hinge cup with a cup insert without a hinge part;

[0029] Figures 10A and 10B show two sectional views of the smear pot with the pot insert of Figure 9;

[0030] Figure 11 shows an exploded view of a modified hinge cup with a cup insert;

[0031] Figures 12A and 12B show two views during the assembly of the pot insert on the hinge pot, and

[0032] Figure 13 shows a sectional view through the hinge cup of the figure

[0033] 11 in the assembled position.

[0034] A piece of furniture 100 comprises a furniture body with a side wall 101, to which at least one hinge 1 according to the invention is fixed and to which a door 102 is pivotably held. Preferably, several hinges 1 are mounted on the side wall 101.

[0035] In Figure 2A, the door 102 is arranged in a closed position on the side wall 101. The hinge 1 is arranged essentially flush with an end face of a frame or a panel-shaped door 102.

[0036] In Figure 2B, the door 102 is pivoted by the hinge 1 into a maximum opening position, for example, by an opening angle between 90° and 120°. The hinge part 3 is held in a hinge cup 5, and the hinge cup 5 is also arranged essentially flush with the surface of the door 102 on an inner side. A side part 2 of the hinge 1 is fixed in the side wall 101, projecting from an end face of the side wall 101 with two arms 20. A pivot axis for the rotatable mounting of the hinge part 3 is formed on the arms 20. A drive lever 13 is also pivotally mounted on the hinge part 3, which is pivotally connected to a drive element 6 on the side part 2 and by means of which a closing movement of the door 102 can be at least partially controlled.

[0037] Figure 3A shows the hinge 1 in a closed position. The side part 2 comprises a housing 4 with two housing shells, which is essentially box-shaped, with a mounting tab 43 projecting from both a top and a bottom surface, each with an opening into which fastening means can be inserted. The housing 4 with the side part 2 can be fixed to an end face of the side wall 101 by means of the fastening means, the housing 4 being arranged in a pocket within the side wall 101.

[0038] The hinge part 3 is adjustable within a hinge cup 5, which has a mounting tab 51 with an opening on each of its opposite sides, so that the hinge cup 5 can also be substantially fixed to a receptacle or pocket on the door 102. In a closed position, a substantially flat side of the hinge cup 5, in which the hinge part 3 is arranged, faces a flat side of the housing 4, on which the mounting tabs 43 are formed. The hinge cup 5 is wider than the housing 4.

[0039] In the open position shown in Figure 3B, the hinge part 3 was pivoted relative to the side part 2 in the housing 4, causing the drive lever 13 to move the drive element 6 relative to the housing 4.

[0040] Figure 4 shows an exploded view of the hinge 1 according to the invention. The housing 4 comprises a first housing shell 40 and a second housing shell 41, which, in the assembled position, have a substantially vertical dividing plane. Several guide pins 42 are formed on the housing shell 40, which engage in elongated holes 23 on the side part 2. The elongated holes 23 are aligned parallel to a pivot axis of the hinge 1 and allow height adjustment of the side part 2 relative to the housing 4. A worm gear 16 is provided for height adjustment. The worm gear 16 is rotatably mounted on the side part 2 via an axis that engages in an opening 29. The worm gear 16 is driven by a rotating part 15, which engages in a profile on the circumference of the worm gear 16, for example, with teeth, so that turning the rotating part 15 rotates the worm gear 16. The rotating part 15 is rotatably mounted on a bracket 28 of the side part 2.The worm 16 rests with a rib on a guide contour on the housing shell 41, so that by rotating the worm 16 the side part 2 can be moved relative to the housing 4 along the elongated holes 23.

[0041] The drive lever 13 is pivotally connected to the hinge part 3 and has a bearing opening 17 for a pivot axis for this purpose. On the opposite side, there is a bearing opening 14 into which an axis can be inserted, which extends through a bearing element 63 on the drive element 6 to pivotally mount the drive lever 13 to the drive element 6. The drive element 6 is slidably guided on the side part 2, for which a groove 26 is provided in the side part 2 in which the drive element 6 is inserted. A slot 27 is provided in the bottom of the groove 26, into which a pin of an adjusting element 62 engages. The adjusting element 62 is arranged in a receptacle 61 on the drive element 6. The adjusting element 62 can adjust the maximum opening position and has an eccentric for this purpose, a pin of which is rotatably mounted in an opening of a lever 64. The lever 64 is guided in the elongated hole 27 via a guide element.

[0042] The drive element 6 further comprises a hook 60 which can be coupled to a pin 81 of a driver 8. The driver 8 has guide pins 80 on opposite sides and is guided on a guide housing 7.

[0043] The guide housing 7 is fixed to the side part 2 by means of several webs 74 formed on the guide housing 7, each of which has cuboid projections 75. The cuboid projections 75 engage in recesses 24 and slots 25 on the side part 2. The side part 2 has two spaced-apart webs 22 that extend longitudinally in the direction of movement of the drive element 6, and the guide housing 7 is arranged between the webs 22. Other fastening mechanisms may also be provided for fixing the guide housing 7 to the side part 2. The guide housing 7 includes a first receptacle 71 into which a power storage device 10 is inserted. Furthermore, a second receptacle 70 is formed on the guide housing 7 into which a damping element 9, in particular a linear damper, is inserted. A holder 72 is provided on the first receptacle 71, to which one end 11 of the power storage device 10 can be fixed.An end 12 of the energy storage device 10, opposite end 11, is fixed to the driver 8. The driver 8 has two guide pins 80 on opposite sides, each of which engages in a guide track 76 on the guide housing 7. The guide track 76 is designed as a slot or groove and comprises a linear section and an angled end section 77.

[0044] The hinge part 3 has a shaped body 30 with a receptacle 31 for an eccentric 32, a cylindrical channel 33 for a rivet 34, and a receptacle 35 for a screw 36 for depth adjustment. The hinge part 3 is arranged adjacent to an intermediate plate 37 and can be inserted into a cup insert 53, which can be inserted into a receptacle 50 on the hinge cup 5 via a clip connection. The cup insert 53 surrounds the hinge part 3 in a U-shape and includes a receptacle 54 on one leg, in which a clip holder 55 is rotatably mounted via an axis 56. The clip holder 55 is pre-tensioned by a leaf spring 57 and can be adjusted within the hinge cup 5.

[0045] Bearing receptacles 21 are formed on the two arms 20 of the side part 2, into which a pin can be inserted to form a pivot axis. The pin then extends through the two arms 20, between which a bearing section of the hinge part 3 is arranged.

[0046] In Figure 5, the hinge 1 is in an open position. The drive lever 13 has partially pulled the drive element 6 out of the housing 4, and the hook 60 of the drive element 6 is disengaged from the driver 8. The driver 8 is located with two guide pins 80 on the angled end section 77 of the guide track 76, and the energy storage device 10 is in a tensioned position. If the hinge part 3 is now pivoted from the open position in the closing direction, the drive lever 13 pushes the drive element 6 towards the guide housing 7. In Figure 6, the open position of the hinge part 3 is reached, in which the drive element 6 is coupled to the driver 8.The hook 60 of the drive element 6 presses against a contact surface of the driver 8, causing it to move out of its pivoted position. The two guide pins 80 facing the drive element then engage not at the angled end section 77, but in the linear section of the guide track 76. This unlocks the driver 8 from its locked park position, and the energy storage device 10 can now move the driver 8 along the guide housing 7. The energy storage device 10 is designed as a tension spring and thus pulls the driver 8, and consequently the drive element 6, into the housing 4.

[0047] In Figure 7, the drive element 6 was moved into the closed position by the driver 8 and the energy storage device 10. The hinge part 3 was pivoted into the closed position, also shown in Figure 3A, via the drive element 6 and the drive lever 13. By moving the drive element 6 and the driver 8, the damping element 9 was moved into the compressed position and could thus decelerate the closing movement after coupling with the driver 8. When the hinge part 3 is pivoted in the opening direction, the driver 8 is moved again via the drive element 6 to the angled end section and parked there, so that the drive element 6 is again decoupled from the driver 8.

[0048] Figure 8 shows the hinge part 3 in the hinge cup 5 in a position mounted on the door 102, the fastening means in the openings 52 on the mounting tabs 51 not shown. The hinge part 3 is supported on opposite sides against a side wall of the cup insert 53, the cup insert 53 being wider than the side panel 3. The receptacle 50 on the hinge cup 5 thus allows the hinge part 3 to be moved within the cup insert 53. For this purpose, the eccentric 32 is arranged in the receptacle 31 of the hinge part 3 and is rotatably but immovably held on the cup insert 53 by a pivot pin, so that by rotating the eccentric 32 the hinge part 3 can be moved within the cup insert 53 perpendicular to the pivot axis between the hinge part 3 and the side panel 2.

[0049] A further adjustment option is provided by the screw 36, which is screwed into an internal thread on the hinge part 3 and is rotatably but axially immovably held on the intermediate plate 37 shown in Figure 4. This allows the distance between the hinge part 3 and the intermediate plate 37 to be changed by turning the screw 36. The hinge part 3 is additionally guided by the rivet 34, which is held on the intermediate plate 37 by a thickened head section and engages in the channel 33 on the hinge part 3.

[0050] Figure 8 shows an L-shaped recess 59 on the hinge part 3, into which a pin 58 of the clip holder 55 engages. In the position shown, the clip holder 55 is locked. To remove the cup insert 53 from the hinge cup 5, the clip holder 55 is pivoted into an unlocked position via the pin 58 and then moved along the L-shaped recess 59, thus preventing the pin 58 from pivoting back. This holds the clip holder 55 in the unlocked position, and the cup insert 53 with the hinge part 3 can therefore be removed from the hinge cup 5.

[0051] Figure 9 shows the hinge cup 5 without the hinge part 3. It can be seen that a recess 48 for one end of the screw 36 is formed in the base of the U-shaped cup insert 53. The recess 48 is larger than the face of the screw 36 so that the screw 36 can be displaced relative to the cup insert 53. A bearing opening 47 is also formed in the base, into which a bearing pin of the eccentric 32 engages. The eccentric is rotatably mounted there, so that by rotating the eccentric 32, the hinge part 3 can be displaced relative to the cup insert 53.

[0052] A recess 46 is formed on the bottom of the pot insert 53, into which a thickened head section of the rivet 34 can engage, whereby the rivet 34 can be moved within the recess 46.

[0053] As shown in the sectional view of Figure 10A, the clip holder 55 is biased into a locked position by a leaf spring 57 and is rotatably mounted about an axis 56. In the locked position shown, the clip holder 55 engages a stop 65 formed on the hinge cup 5. On the side opposite the clip holder 55, a projecting rib 49 is formed on the hinge cup 5, which engages in a groove of the cup insert 53, so that the cup insert 53 is also secured against being pulled out of the hinge cup 5 on this side. Figure 10B shows a further section through the hinge cup 5 and the cup insert 53 in the area of ​​the pin 58 within the L-shaped recess 59. The pin 58 rests on a section of the pot insert 53 and can be pivoted against the force of the leaf spring 57 into an unlocked position so that the clip holder 55 no longer engages the stop 65.In this position, the clip holder 55 can be moved within the L-shaped recess 59, so that the clip holder 55 is fixed in the unlocked position. This allows the cup insert 53 in Figure 10B to be moved to the right, so that the groove disengages from the web 49 and the cup insert 53 can be removed from the hinge cup 5.

[0054] The pot insert 53 has a groove 45 on each of its two opposite sides in a base area, into which an edge of the intermediate plate 37 can be inserted. This allows the intermediate plate 37 to slide within the two grooves 45, but it remains fixed perpendicular to the plane of the intermediate plate 37. The distance between the intermediate plate 37 and the hinge part 3 can be adjusted by fixing the intermediate plate 37 in place with the screw 36.

[0055] With the adjustment mechanism shown, it is possible to adjust the hinge part 3 relative to the housing 4 on the side part 2 in all three spatial directions.

[0056] Figure 11 shows a modified hinge cup 5' with a receptacle 50' for a cup insert 53'. The hinge cup 5' includes laterally projecting mounting tabs 5T, each with at least one opening 52' for attachment to a door. The receptacle 50' is essentially cuboid in shape and has a bearing receptacle 91 on each of its opposing walls 90, in the form of a recess that is open towards one mounting side. In addition, each wall 90 has a wedge-shaped projection 93.

[0057] A cup insert 53' is essentially C-shaped and comprises a pin 92 on opposite sides, each of which can be inserted into a bearing receptacle 91 on the hinge cup 5' to rotatably mount the cup insert 53' on the hinge cup 5'. In addition, a wedge-shaped recess 97 is provided on each side, into which the projection 93 can be inserted by a rotational movement. A receptacle 94 for a movable clip holder 55' is provided on the cup insert 53'. The clip holder 55' is held in the receptacle 94 by a spring 57' and has a locking pin 96 that can engage an opening 98 in a wall on the receptacle 94.

[0058] Figures 12A and 12B show the assembly of the cup insert 53' on the hinge cup 5', with the other components of the hinge 1 omitted. The cup insert 53' is inserted into the receptacle 50', with the pins 92 being inserted into the bearing receptacles 91 on the hinge cup 5', as shown in Figure 12B. From this position, the cup insert can now be rotated relative to the hinge cup 5' about the axis formed by the pins 92 until the cup insert 53' is locked onto the hinge cup 5' via the clip holder 55'.

[0059] Figure 13 shows a cross-sectional view of the mounted position of the cup insert 53'. The clip holder 55' extends with its locking pin 96 through the opening 98 in the wall of the cup insert 53' and at least partially through the opening 95 in the wall 90 of the hinge cup 5'. The cup insert 53' is positively locked in the hinge cup 5' by the pins 92 and the engagement of the projections 93 in the receptacles 97. To release the locked position, a tool can be inserted into the receptacle 54' to move or pivot the clip holder 55', thereby moving the locking pin 96 out of the opening 95 so that the cup insert 53' can again be rotated relative to the hinge cup 5'.

[0060] As in the previous embodiment, the clip holder 55' can also be fixed in the unlocked position to prevent unintentional locking. For this purpose, the clip holder 55' is rotatably and slidably held in an axle receptacle 99 by means of a rivet (not shown) in the receptacle 94. In the unlocked position, the clip holder 55' can be moved parallel to the rivet, i.e., the longitudinal extent of the axle receptacle 99. This causes the pin 96 to rest against a wall of the receptacle 94 and prevent it from engaging in the openings 98 and 95.

[0061] The hinge part 3 can be fixed to the cup insert 53' as in the previous embodiment, in particular also with one or more adjustment mechanisms in order to be able to adjust the hinge part 3 relative to the cup insert 53' in one or more spatial directions. Reference numeral list

[0062] 1 hinge

[0063] 2 side panel

[0064] 3 hinge part

[0065] 4 cases

[0066] 5.5' hinge pot

[0067] 6 Drive element

[0068] 7 Guide housings

[0069] 8 drivers

[0070] 9 damping element

[0071] 10 energy storage units

[0072] 11 End

[0073] 12 End

[0074] 13 drive levers

[0075] 14 Warehouse opening

[0076] 15 Turned part

[0077] 16 snail

[0078] 17 Warehouse opening

[0079] 20 outriggers

[0080] 21 Bearing intake

[0081] 22 Bridge

[0082] 23 Slotted Hole

[0083] 24 recesses

[0084] 25 slots

[0085] 26 Nut

[0086] 27 elongated holes

[0087] 28 bracket

[0088] 29 Opening

[0089] 30 molded bodies

[0090] 31 recording

[0091] 32 eccentrics

[0092] Channel 33

[0093] 34 rivets

[0094] 35 recording

[0095] 36 screw

[0096] 37 Intermediate plate

[0097] 40 Housing shell

[0098] 41 Housing shell 42 Guide pin

[0099] 43 Mounting tab

[0100] 45 Nut

[0101] 46 Exclusion

[0102] 47 Warehouse opening

[0103] 48 Exclusion

[0104] 49 Bridge

[0105] 50, 50' recording

[0106] 51, 51 ' fastening tab

[0107] 52, 52' opening

[0108] 53, 53' Pot insert

[0109] 54th entry

[0110] 55 clip holder

[0111] 56 axle

[0112] 57 leaf spring

[0113] 57' spring

[0114] 58 pens

[0115] 59 recess

[0116] 60 hooks

[0117] 61 recording

[0118] 62 Adjustment element

[0119] 63 Bearing element

[0120] 64 levers

[0121] 65 stop

[0122] 70 holders

[0123] 71 recording

[0124] 72 holders

[0125] 74 Bridge

[0126] 75 lead

[0127] 76 Guide track

[0128] 77 Final section

[0129] 80 guide pins

[0130] 81 pen

[0131] 90 wall

[0132] 91 Storage

[0133] 92 cones

[0134] 93 lead

[0135] 94 recording

[0136] 95 Opening 96 Locking pin

[0137] 97 recess

[0138] 98 Opening

[0139] 99 axle mount 100 furniture

[0140] 101 Side wall

[0141] 102, 102‘ Tür

Claims

Claims 1. Hinge (1) for furniture (100) with a stationary side part (2) which can be fixed in a pocket of a side wall (101) and is arranged in a housing (4) and a hinge part (3) which is arranged in a hinge cup (5, 5') and can be fixed to a door (102) and which is pivotably held on the side part (2) by at least one extension (20) projecting from the housing (4), characterized in that the hinge part (3) is detachably fixed in the hinge cup (5, 5') by means of a clip holder (55, 55').

2. Hinge according to claim 1, characterized in that the hinge part (3) can be inserted into the hinge cup (5) in a direction radial to a joint axis or pivot axis for releasable rusting.

3. Hinge according to claim 1, characterized in that the hinge part (3) can be inserted into the hinge cup (5') for releasable rusting and can then be pivoted about a mounting axis relative to the hinge cup (5').

4. Hinge according to one of the preceding claims, characterized in that the clip holder (55, 55') engages a stop (65) on the hinge cup (5).

5. Hinge according to claim 4, characterized in that the clip holder (55, 55') is displaceable relative to the stop (65) by means of at least one adjusting element.

6. Hinge according to one of the preceding claims, characterized in that the clip holder (55, 55') is rotatably mounted on the hinge part (3) or on a cup insert (53, 53') held on the hinge part (3).

7. Hinge according to one of the preceding claims, characterized in that the clip holder (55, 55') is movable between a locked position and an unlocked position and can be fixed in the unlocked position.

8. Hinge according to one of the preceding claims, characterized in that the hinge part (3) is adjustable in at least one spatial direction relative to the hinge cup (5, 5').

9. Hinge according to one of the preceding claims, characterized in that the hinge part (3) is adjustable on the hinge cup (5, 5') in two spatial directions arranged perpendicular to each other, both of which are aligned perpendicular to the joint axis.

10. Hinge according to one of the preceding claims, characterized in that a cup insert (53, 53') with a receptacle (50, 50') for the hinge part (3) is arranged around the hinge part (3).

11. Hinge according to claim 10, characterized in that the hinge part (3) is held on an intermediate plate (37) which is slidably arranged in the pot insert (5).

12. Hinge according to one of the preceding claims, characterized in that the side part (2) is height-adjustable relative to the housing (4) in the installation position via an adjusting element.

13. Hinge according to one of the preceding claims, characterized in that at least one adjusting element is provided on the hinge part (3) which is accessible for an adjustment operation in an open position of the hinge part (3) and is covered by the side part (2) in a closed position.

14. Hinge according to claim 6 or 10, characterized in that two protruding pins (92) are formed on the cup insert (53'), each of which engages in a bearing receptacle (91) on the hinge cup (5').

15. Hinge according to claim 6, 10 or 14, characterized in that at least one recess (97) is formed on the cup insert (53') which engages a projection (93) provided on the hinge cup (5').

16. Hinge according to claim 6 or 7, characterized in that the clip holder (55, 55') comprises a pin (96) which extends through an opening (98) in the cup insert (53') and at least partially through an opening (95) in a wall of the hinge cup (5').

17. Side wall of a piece of furniture (100) with a pocket open towards an end face of the side wall (101) in which a hinge (1) is arranged according to one of the preceding claims.

18. Furniture with a furniture body having a side wall (101) to which at least one hinge (1) is fixed according to one of the preceding claims.

Citation Information

Patent Citations

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