Mounting for a pivoting element in relation to a stationary support
Patent Information
- Application Number
- EP2025170611
- Authority / Receiving Office
- EP · EP
- Patent Type
- Applications
- Current Assignee / Owner
- Priority Date
- 2021-11-26
- Filing Date
- 2022-10-13
- Publication Date
- 2025-08-06
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
Existing furniture fittings for movable mounting of pivoting elements, such as doors and windows, often result in unintentional unlocking and ejection, which can be triggered by accidental movements or forces, leading to unwanted disassembly.
The introduction of a release device with a movably mounted release element that allows deliberate actuation to release the locking between the mounting part and the coupling part, preventing unintentional unlocking and facilitating controlled disassembly.
This solution ensures secure and controlled assembly and disassembly of pivoting elements, reducing the risk of jamming and allowing for easier separation of the coupling part from the mounting part, especially when multiple fittings are used.
Smart Images

Figure IMGAF001_ABST
Abstract
Description
[0001] The present invention relates to a fitting for the movable mounting of a pivoting element, in particular a furniture part, a door or a window, relative to a stationary support, comprising: a first fitting part, which is designed to be fastened to a, preferably substantially horizontally oriented, plate of the carrier, a second fitting part for fastening to the pivoting element, wherein the second fitting part is pivotally connected to the first fitting part, wherein the first fitting part has a mounting part with at least one fastening device by means of which the mounting part can be fastened to the plate of the carrier, and that the first fitting part has at least one coupling part which is hingedly connected to the second fitting part and which is detachably connectable to the mounting part, wherein the mounting part of the first fitting part has a, preferably pocket-shaped, housing, wherein the coupling part, in the connected state with the mounting part, is at least partially, preferably predominantly, received within the housing of the mounting part, at least one locking device,by means of which the coupling part can be releasably locked to the mounting part, wherein the at least one locking device comprises an ejection device by means of which the coupling part can be ejected at least partially from the housing of the mounting part during unlocking.
[0002] Furthermore, the invention relates to a method for the movable mounting of a pivoting element, in particular a furniture part, a door or a window, on a stationary support by means of at least one fitting of the type to be described. Art.
[0003] WO 2020 / 006588 A1 and WO 2020 / 006589 A1 each disclose furniture fittings for the movable mounting of a pivoting element in the form of a furniture door, wherein the body-side fitting part has a mounting part that can be integrated into a furniture panel for attachment to the stationary support. In a first step, the mounting part is pre-assembled on or in the furniture panel. In a second step, the furniture door can be detachably connected to the pre-assembled mounting part via a coupling part. For assembly, the coupling part is inserted diagonally into the pocket-shaped mounting part, wherein a locking part of the coupling part can be guided along an inclined surface of a locking element and a force accumulator can be charged in the process. The locking part can then enter a recess in the locking part, discharging the force accumulator and locking the coupling part to the mounting part.The coupling part and the mounting part are unlocked by a release element that can be pressed in using a tool. By pressing in the release element, the locking part is moved in a direction parallel to the end face of the mounting part, counter to the force of the energy storage device, until the locking part of the coupling element is released and the coupling part can be separated from the mounting part.
[0004] EP 1 895 082 A2 shows a furniture hinge with a skeleton-like connecting element which can be releasably locked with a door-side connecting element.
[0005] US 2015 / 061481 A1 shows a cabinet with a pivoting door that can be ejected from a closed position to an open position using a touch-latch mechanism. To unlock the touch-latch mechanism, the door is pushed over from a closed position, whereby a component to be connected to the door can be ejected from a holder attached to the cabinet by the force of a compression spring. The ejection process is triggered each time the door is pushed over, which is undesirable for some applications. For example, it is possible for the door to be triggered unintentionally, for example by a person simply leaning against the door or by children playing.
[0006] The object of the present invention is to provide a fitting of the type mentioned at the outset with an improved unlocking possibility.
[0007] This is achieved according to the invention by the features of patent claim 1. Further advantageous embodiments of the present invention are defined in the dependent patent claims.
[0008] According to the invention, a release device with a movably mounted release element is provided for releasing the locking between the mounting part and the coupling part.
[0009] In this way, the locking between the mounting part and the coupling part can be released by deliberately actuating the movably mounted release element, whereby unintentional release of the locking is avoided.
[0010] The coupling part can be inserted into the assembly part in a joining direction, wherein the coupling part, starting from a state coupled to the assembly part, can be actively ejected from the assembly part by the ejection device, ie at least partially in a direction opposite to the joining direction.
[0011] This facilitates the disassembly of the pivoting element from the stationary support, especially when two or more fittings are provided for the movable mounting of the pivoting element. This reduces the risk of jamming between the mounting part and the coupling part, making it easier to separate the coupling part from the mounting part.
[0012] According to one embodiment, it can be provided that the housing of the mounting part has an end face, wherein the coupling part can be inserted into the housing of the mounting part substantially perpendicular to the end face during assembly.
[0013] In other words, the coupling part can be inserted into the assembly part by means of a linear joining movement and locked in a defined end position. In the prior art mentioned above according to WO 2020 / 006588 A1, however, the coupling part with the attached furniture part must be inserted diagonally into the housing of the assembly part. This has the disadvantage that it limits the maximum wall thickness of the pivoting element because the pivoting element strikes the furniture body during assembly of the coupling part or the coupling part cannot be inserted into the housing of the assembly part at all. The linear insertion of the coupling part into the housing of the assembly part enables assembly that is largely independent of the material thickness of the pivoting element.
[0014] According to one embodiment, the housing of the mounting part can be provided with an end face, with the locking between the mounting part and the coupling part taking place in an area adjacent to the end face. This has the advantage that the forces generated during movement of the pivoting element are directly transmitted to the support, allowing the coupling part to be securely connected to the mounting part.
[0015] Further details and advantages of the present invention will become apparent from the following description of the figures. Fig. 1 shows a piece of furniture with a support and with a pivoting element that can be moved relative to the support in a perspective view, Fig. 2 shows the support and the fitting in a separated state, Fig. 3 shows the mounting part and the coupling part of the first fitting part in a separated state from each other, Fig. 4 shows the coupling part partially inserted into the mounting part, Fig. 5 shows a continued insertion movement of the coupling part into the mounting part, Fig. 6 shows a continued insertion movement of the coupling part into the mounting part, Fig. 7 shows the locked state between the coupling part and the mounting part, Fig. 8 shows the ejection process of the coupling part from the mounting part, Fig. 9 shows the mounting part in an exploded view.
[0016] Fig. 1 shows a perspective view of a piece of furniture 1 with a stationary support 2 (for example in the form of a furniture body 2a), wherein a pivoting element 3 (for example a movable furniture part 3a, a flap, a door, a window or the like) is pivotally mounted by at least one fitting 4 relative to the support 2 about an axis which preferably runs vertically in the assembled position.
[0017] The carrier 2 has a plurality of plates 5a-5e, wherein the first fitting part 6 of the fitting 4 is designed to be integrated into one of the plates 5a-5e of the carrier 2 (i.e., for example, in the cover plate, in the base plate and / or in a shelf arranged between the cover plate and the base plate).
[0018] Of course, it is also possible to arrange the fitting 4 in or on one of the vertically extending plates 5d, 5e, so that the pivoting element 3 is pivotably mounted relative to the support 2 about a horizontally extending axis in an assembled state.
[0019] In the embodiment shown, it is provided that the first fitting part 6 of the fitting 4 is substantially completely accommodated within a recess of the plates 5a, 5c, while the second fitting part 7 of the fitting 4 is substantially completely accommodated within a further recess of the pivot element 3.
[0020] The pivoting element 3 can be formed from a plate-shaped material (for example wood, plastic, fiberboard, glass plate or the like).
[0021] Fig. 2 shows the support 2 and the fitting 4 separated from each other. The first fitting part 6 is to be fastened in or to a plate 5a-5e of the support 2. For this purpose, the first fitting part 6 has a mounting part 9, which can be inserted into a recess in the plate 5a and fixed to the plate 5a via at least one fastening device 10.
[0022] The fastening device 10 can be realized according to various designs and can, for example, have at least one hole for the passage of a screw, at least one eccentric, or at least one clamping screw. In the illustrated embodiment, the fastening device 10 has at least one movable fastening element 10a, wherein actuation of the fastening element 10a by means of a tool causes at least one clamping part 31 ( Fig. 9 ) of the fastening device 10 can be frictionally connected to the plate 5a.
[0023] In a first step, the mounting part 9 is to be pre-assembled to the plate 5a via the fastening device 10. The mounting part 9 has a preferably pocket-shaped housing 11 into which a coupling part 12 of the first fitting part 6 can be inserted and releasably locked within the housing 11 via at least one locking device 13.
[0024] The coupling part 12 of the first fitting part 6 is pivotally connected to the second fitting part 7 via at least one articulated lever 8a. The second fitting part 7 can be designed to be at least partially, preferably substantially completely, recessed into a recess of the pivot element 3. Alternatively, the second fitting part 7 can be arranged entirely outside a wall thickness of the pivot element 3 in an assembled state.
[0025] The housing 11 of the mounting part 9 has a slot-shaped recess for receiving the coupling part 12. The housing 11 has a height extension (H) and a length extension (L), wherein the length extension (L) of the housing 11 can be at least three times, preferably at least six times, greater than the height extension (H).
[0026] The coupling part 12, which is preferably essentially cuboid-shaped, has dimensions corresponding to the height extension (H) and the length extension (L), wherein the coupling part 12 can be received in an approximately form-fitting manner within the housing 11 of the mounting part 9.
[0027] Fig. 3 shows the mounting part 9 and the coupling part 12 of the first fitting part 6 in a separated state from each other.
[0028] The coupling part 12 can be releasably locked to the mounting part 9 by at least one locking device 13. The at least one locking device 13 has an ejection device 14, by means of which the coupling part 12 can be ejected, at least in sections, from the housing 11 of the mounting part 9 during unlocking.
[0029] During assembly, the coupling part 12 can be inserted into the housing 11 of the assembly part 9 in a joining direction (FR), wherein the coupling part 12 can be ejected by the ejection device 14 during unlocking, at least in sections, against the joining direction (FR).
[0030] The housing 11 of the mounting part 9 can have an end face 18, wherein the coupling part 12 can be inserted into the housing 11 of the mounting part 9 during assembly essentially perpendicular to the end face 18. In an assembled state, the end face 18 of the housing 11 runs essentially parallel to a front narrow side of the plate 5a of the carrier 2.
[0031] The coupling part 12 can have a rear side 15, wherein the ejection device 14 acts on the rear side 15 of the coupling part 12 during the unlocking process, preferably being able to be placed against the rear side 15. Preferably, it can be provided that the ejection device 14 can be placed against a recess of the coupling part 12 arranged on the rear side 15.
[0032] In the illustrated embodiment, at least one armature 20 is provided that can rotate about a rotational axis 19. The armature 20 has a shaft and two arms projecting from the shaft. The spring element 16 engages a first arm of the armature 20, the ejection lever 14a is arranged on a second arm of the armature 20, and the locking lever 13a is arranged on the shaft of the armature 20.
[0033] The locking device 13 can have at least one pivotable locking lever 13a for releasably locking the coupling part 12, preferably wherein the at least one locking lever 13a a locking position and an unlocking position, wherein the at least one locking lever 13a is arranged for mounting the coupling part 12 in the unlocking position, and / or is pretensioned by at least one spring element 16, preferably a helical spring, preferably wherein the at least one locking lever 13a is movable against a force of the spring element 16 when the coupling part 12 is pushed into the housing 11 of the mounting part 9 and is releasably lockable with the coupling part 12 during a continued insertion movement of the housing 11, and / or is releasably lockable via a control cam 21 and a control element 22, preferably a cylindrical bolt, movable along the control cam 21, and / or is releasably lockable with at least one recess 17a, 17b of the coupling part 12, and / or in or on the mounting part 9 of the first fitting part 6 is arranged.
[0034] According to preferred embodiments, it can be provided that the coupling part 12 in a state inserted into the housing 11 of the mounting part 9 and with a locking device 13 in an unlocked position, is received with lateral play within the housing 11 of the mounting part 9, and / or has at least one side wall 27a and the housing 11 of the mounting part 9 has a lateral wall 28 for guiding the at least one side wall 27a of the coupling part 12 during assembly, preferably wherein the at least one side wall 27a of the coupling part 12 and the lateral wall 28 of the housing 11 are spaced apart from one another in a locked position of the coupling part 12, preferably transversely to a joining direction (FR) of the coupling part 12, and / or has two opposite side walls 27a, 27b, on each of which at least one recess 17a, 17b for releasably locking the coupling part 12 to the housing 11 of the mounting part 9, and / or at least one recess 17a,17b for locking the coupling part 12 with the mounting part 9, preferably wherein the at least one recess 17a, 17b is arranged adjacent to an end face 18 of the coupling part 12, and / or is pivotally connected to the second fitting part 7 via at least one articulated lever 8a, preferably at least two articulated levers 8a, 8b, and / or at least one adjusting device 30a, 30b (, Fig. 2 ), by means of which a position of the coupling part 12 relative to the mounting part 9 can be adjusted, and / or has a height extension (H) and a length extension (L), wherein the length extension (L) is at least three times, preferably at least six times, greater than the height extension (H).
[0035] According to preferred embodiments, it can be provided that the housing 11 of the mounting part 9 is designed such that the housing 11 can be integrated substantially completely within the plate 5a-5e of the carrier 2, and / or has a height extension (H) and a length extension (L), wherein the length extension (L) of the housing 11 of the mounting part 9 is at least three times, preferably at least six times, greater than the height extension (H), and / or has the locking device 13 and the ejection device 14.
[0036] Fig. 4 shows the coupling part 12, which is partially inserted into the mounting part 9 of the first fitting part 6. The locking device 13 has at least one pivotable locking lever 13a for releasably locking the coupling part 12. The ejection device 14 comprises at least one ejection lever 14a for ejecting the coupling part 12 from the housing 11 of the mounting part 9, preferably wherein the at least one locking lever 13a and the at least one ejection lever 14a are integrally connected to one another, and / or the at least one locking lever 13a and the at least one ejection lever 14a are prestressed by a same spring element 16, and / or at least one rotatably mounted armature 20 is provided with a shaft and two arms projecting from the shaft, wherein a spring element 16 engages a first arm of the armature 20, the ejection lever 14a is arranged on a second arm of the armature 20 and the locking lever 13a is arranged on the shaft of the armature 20, and / or the at least one locking lever 13a and the at least one ejection lever 14a are arranged on the mounting part 9 of the first fitting part 6.
[0037] Fig. 5 shows a continued insertion movement of the coupling part 12 into the mounting part 9 pre-assembled on the carrier 2. The coupling part 12 can have at least one lateral recess 17b, which can be brought into engagement with an engagement element 23 arranged on the mounting part 9. The engagement element 23 can be designed, for example, as a projection, as a cylindrical bolt, or as a rotatably mounted roller, wherein the rotational axis of the roller runs substantially parallel to the vertical extent (H) of the mounting part 9. In Fig. 5 It can also be seen that the rear side 15 of the coupling part 12 contacts the ejection lever 14a.
[0038] Fig. 6 shows that the recess 17b of the coupling part 12 can be brought into engagement with the engagement element 23 of the mounting part 9 by a slight movement of the coupling part 12 in the direction of the longitudinal extension (L).
[0039] Fig. 7 shows the locked position between the coupling part 12 and the mounting part 9. Starting from Fig. 6 the coupling part 12 was pressed further into the housing 11 of the mounting part 9, whereby the control element 22 (for example, a cylindrical pin) was moved out of a locking recess 24 of the control cam 21. In this way, the locking lever 13a is moved about the rotation axis 19 by the force of the relaxing spring element 16 and is engaged in the lateral recess 17a of the coupling part 12.
[0040] It can be seen that the locking lever 13a of the locking device 13 and the ejection lever 14a of the ejection device 14 are formed together in one piece and are preferably prestressed by the same, single spring element 16.
[0041] Fig. 8 shows the release of the lock between the coupling part 12 and the mounting part 9 and the ejection of the coupling part 12 from the housing 11 of the mounting part 9 in an ejection direction (AR).
[0042] The locked position between the coupling part 12 and the mounting part 9 can be released again by a release device 25 with a movable release element 25a. Preferably, the release element 25a is mounted so as to be linearly displaceable, and / or is operable by means of a tool, and / or is movable against a force of a spring element 16 into a release position releasing the coupling part 12, and / or is movable along at least one guide 26, and / or is movable perpendicular to an end face 18 of the mounting part 9 and / or is operable starting from an end face 18 of the mounting part 9.
[0043] To release the lock, the release element 25a is pressed into the housing 11 of the mounting part 9 by means of a tool, whereby the control element 22 is moved along the control curve 21 against the force of the spring element 16 and the spring element 16 is tensioned.
[0044] By moving the control element 22 along the control cam 21, the locking lever 13a of the locking device 13 is also moved out of the recess 17a of the coupling part 12, and the ejection lever 14a of the ejection device 14 is tilted about the rotation axis 19. Finally, the control element 22 springs back into the detent recess 24 of the control cam 21, whereby the coupling part 12 can be ejected from the housing 11 of the mounting part 9 in the ejection direction (AR) by the ejection lever 14a and the force of the relaxing spring element 16.
[0045] In the shown Fig. 8 at least one guide 26 is provided for the linear guidance of the release element 25a, through which the release element 25a can be guided in a direction perpendicular to the end face 18.
[0046] The method for the movable mounting of a pivoting element 3, in particular a movably mounted furniture part 3a, a door or a window, on a stationary support 2 by means of at least one fitting 4 of the type described comprises the following method steps: the mounting part 9 of the first fitting part 6 is fastened to or in a, preferably substantially horizontally aligned, plate 5a-5e of the carrier 2, the second fitting part 7 is fastened to the pivot element 3, the coupling part 12 which is articulated to the second fitting part 7 is inserted into the, preferably pocket-shaped, housing 11 of the mounting part 9 of the first fitting part 6, the coupling part 12 is releasably locked to the housing 11 of the mounting part 9 by means of the locking device 13, and the coupling part 12 is ejected at least in sections from the housing 11 of the mounting part 9 by means of the ejection device 14 during unlocking.
[0047] According to a preferred embodiment of the method, the coupling part 12 is inserted substantially perpendicular to an end face 18 of the housing 11 of the mounting part 9, preferably wherein the coupling part 12 is moved substantially parallel to the end face 18 of the housing 11 of the mounting part 9 shortly before reaching an end position in the housing 11.
[0048] Fig. 9 shows the mounting part 9 of the first fitting part 6 in an exploded view. The mounting part 9 has two interconnectable housing parts 9a, 9b, between which the locking device 13 with the locking lever 13a and the ejection device 14 are arranged. The armature 20 can be seen, on which the spring element 16 engages and on which the locking lever 13a and the ejection lever 14a are jointly formed.
[0049] The control cam 21 for guiding the control element 22 is arranged or formed on the armature 20. The control cam 21 comprises a locking recess 24, by means of which the locking lever 13a can be releasably locked in the unlocked position.
[0050] The mounting part 9 is to be fastened to a plate 5a-5e of the carrier 2 via at least one fastening device 10. The fastening device 10 can have a fastening element 10a and a clamping part 31 drivable by the fastening element 10a, by means of which the mounting part 9 can be fixed within a plate 5a-5e of the carrier 2.
Claims
1. Fitting (4) for the movable mounting of a pivoting element (3), in particular a furniture part (3a), a door or a window, relative to a stationary support (2), comprising: - a first fitting part (6) which is designed to be fastened to a preferably substantially horizontally oriented plate (5a-5e) of the support (2), - a second fitting part (7) for fastening to the pivoting element (3), wherein the second fitting part (7) is pivotally connected to the first fitting part (6), - wherein the first fitting part (6) has a mounting part (9) with at least one fastening device (10) by means of which the mounting part (9) can be fastened to the plate (5a-5e) of the support (2), and that the first fitting part (6) has at least one coupling part (12) which is articulated to the second fitting part (7) and which is detachably connectable to the mounting part (9), - wherein the mounting part (9) of the first fitting part (6),preferably pocket-shaped housing (11), wherein the coupling part (12) in the connected state with the mounting part (9) is at least partially, preferably predominantly, received within the housing (11) of the mounting part (9), - at least one locking device (13) by means of which the coupling part (12) can be releasably locked to the mounting part (9), - wherein the at least one locking device (13) comprises an ejection device (14) by means of which the coupling part (12) can be ejected at least partially from the housing (11) of the mounting part (9) during unlocking, , characterized in that a release device (25) with a movably mounted release element (25a) is provided for releasing the locking between the mounting part (9) and the coupling part (12).
2. Fitting (4) according to claim 1, characterized in thatthe coupling part (12) can be pushed into the housing (11) of the mounting part (9) in a joining direction (FR) during assembly, wherein the coupling part (12) can be ejected by the ejection device (14) in the course of unlocking against the joining direction (FR).
3. Fitting (4) according to claim 1 or 2, characterized in that the housing (11) of the mounting part (9) has an end face (18), wherein the coupling part (12) can be inserted into the housing (11) of the mounting part (9) during assembly substantially perpendicular to the end face (18).
4. Fitting (4) according to one of claims 1 to 3, characterized in that the housing (11) of the mounting part (9) has an end face (18), wherein the locking between the mounting part (9) and the coupling part (12) takes place in an area adjacent to the end face (18).
5. Fitting (4) according to one of claims 1 to 4, characterized in thatthe coupling part (12) has a rear side (15), wherein the ejection device (14) acts on the rear side (15) of the coupling part (12) during the unlocking process, preferably being able to be placed on the rear side (15) of the coupling part (12).
6. Fitting (4) according to one of claims 1 to 5, characterized in thatthe locking device (13) has at least one pivotable locking lever (13a) for releasably locking the coupling part (12), preferably wherein the at least one locking lever (13a) has a locking position and an unlocking position, wherein the at least one locking lever (13a) is arranged in the unlocking position for mounting the coupling part (12), and / or is pretensioned by at least one spring element (16), preferably a helical spring, preferably wherein the at least one locking lever (13a) is movable against a force of the spring element (16) when the coupling part (12) is pushed into the housing (11) of the mounting part (9) and is releasably lockable to the coupling part (12) during a continued insertion movement of the housing (11), and / or via a control cam (21) and a control element movable along the control cam (21) (22), preferably a bolt, is releasably lockable,and / or - is releasably lockable with at least one recess (17a, 17b) of the coupling part (12), and / or - is arranged in or on the mounting part (9) of the first fitting part (6).
7. Fitting (4) according to one of claims 1 to 6, characterized in that the ejection device (14) has at least one pivotable ejection lever (14a) for ejecting the coupling part (12), preferably wherein the at least one ejection lever (14a) - acts on a rear side (15) of the coupling part (12) during unlocking, and / or - is pretensioned by at least one spring element (16), and / or - is integrally connected to a locking lever (13a) of the locking device (13), and / or - is arranged in or on the mounting part (9) of the first fitting part (6).
8. Fitting (4) according to one of claims 1 to 7, characterized in thatthe locking device (13) has at least one pivotable locking lever (13a) for releasably locking the coupling part (12), and the ejection device (14) has at least one ejection lever (14a) for ejecting the coupling part (12) from the housing (11) of the mounting part (9), preferably wherein - the at least one locking lever (13a) and the at least one ejection lever (14a) are integrally connected to one another, and / or - the at least one locking lever (13a) and the at least one ejection lever (14a) are prestressed by a same spring element (16), and / or - at least one rotatably mounted armature (20) is provided with a shaft and two arms projecting from the shaft, wherein a spring element (16) engages a first arm of the armature (20), the ejection lever (14a) is arranged on a second arm of the armature (20), and the Locking lever (13a) is arranged on the shaft of the armature (20),and / or - the at least one locking lever (13a) and the at least one ejection lever (14a) are arranged on the mounting part (9) of the first fitting part (6).
9. Fitting (4) according to one of claims 1 to 8, characterized in that the release element (25a) - is mounted so as to be linearly displaceable, and / or - can be actuated by means of a tool, and / or - can be moved against a force of a spring element (16) into a release position releasing the coupling part (12), and / or - can be moved along at least one guide (26), and / or - can be moved perpendicular to an end face (18) of the mounting part (9) and / or can be actuated starting from an end face (18) of the mounting part (9).
10. Fitting (4) according to one of claims 1 to 9, characterized in thatthe coupling part (12) - in a state inserted into the housing (11) of the mounting part (9) and with a locking device (13) in an unlocked position, is received with lateral play within the housing (11) of the mounting part (9), and / or - has at least one side wall (27a) and the housing (11) of the mounting part (9) has a lateral wall (28) for guiding the at least one side wall (27a) of the coupling part (12) during assembly, preferably wherein the at least one side wall (27a) of the coupling part (12) and the lateral wall (28) of the housing (11) are spaced apart from one another in a locked position of the coupling part (12), preferably transversely to a joining direction (FR) of the coupling part (12), and / or - has two opposite side walls (27a, 27b), on each of which at least one recess (17a, 17b) is arranged for releasably locking the coupling part (12) to the housing (11) of the mounting part (9),and / or - has at least one recess (17a, 17b) for locking the coupling part (12) to the mounting part (9), preferably wherein the at least one recess (17a, 17b) is arranged adjacent to an end face (18) of the coupling part (12), and / or - is pivotally connected to the second fitting part (7) via at least one articulated lever (8a, 8b), preferably at least two articulated levers (8a, 8b), and / or - has at least one adjusting device (30a, 30b) by means of which a position of the coupling part (12) relative to the mounting part (9) can be adjusted, and / or - has a vertical extension (H) and a longitudinal extension (L), wherein the longitudinal extension (L) is at least three times, preferably at least six times, greater than the vertical extension (H).
11. Fitting (4) according to one of claims 1 to 10, characterized in thatthe housing (11) of the mounting part (9) - is designed such that the housing (11) can be integrated substantially completely within the plate (5a-5e) of the carrier (2), and / or - has a vertical extension (H) and a longitudinal extension (L), wherein the longitudinal extension (L) of the housing (11) of the mounting part (9) is at least three times, preferably at least six times, greater than the vertical extension (H), and / or - has the locking device (13) and the ejection device (14).
12. A method for the movable mounting of a pivoting element (3), in particular a furniture part (3a), a door, or a window, on a stationary support (2) by means of at least one fitting (4) according to one of claims 1 to 11, comprising the following method steps: - the mounting part (9) of the first fitting part (6) is fastened to or in a preferably substantially horizontally oriented plate (5a-5e) of the support (2), - the second fitting part (7) is fastened to the pivoting element (3), - the coupling part (12) hingedly connected to the second fitting part (7) is inserted into the preferably pocket-shaped housing (11) of the mounting part (9) of the first fitting part (6), - the coupling part (12) is releasably locked to the housing (11) of the mounting part (9) by means of the locking device (13),and - the coupling part (12) is ejected at least partially from the housing (11) of the mounting part (9) by means of the ejection device (14) during unlocking.
13. The method according to claim 12, wherein the coupling part (12) is inserted substantially perpendicular to an end face (18) of the housing (11) of the mounting part (9).
14. The method according to claim 13, wherein the coupling part (12) is moved substantially parallel to the end face (18) of the housing (11) of the mounting part (9) shortly before reaching an end position in the housing (11).
Citation Information
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