MULTI-JOINT HINGE
20230383584 · 2023-11-30
Assignee
Inventors
Cpc classification
F25D2323/024
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
E05F5/02
FIXED CONSTRUCTIONS
F25D23/028
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
E05F1/12
FIXED CONSTRUCTIONS
E05F5/02
FIXED CONSTRUCTIONS
Abstract
A multi-joint hinge has a mounting element which can be fixed to an appliance body and a hinge part which can be fixed to a door and which is held pivotably on the mounting element via a joint mechanism with a plurality of joint levers. The hinge part is biased in the closing direction via a spring and at least one linear damper with a damper housing and a piston rod displaceable relative to the damper housing is provided which brakes a closing movement of the hinge part. The linear damper is arranged with the damper housing in a rotationally fixed manner via a holding element within a lever and the holding element is fixed to a lever of the joint mechanism. The piston rod can be pushed into the damper housing via an actuating element which is arranged on a further lever of the joint mechanism.
Claims
1. A multi-joint hinge (1), particularly for a refrigerator, comprising a mounting element (2) is configured to be fixed to an appliance body and a hinge part (3) which is configured to be fixed to a door and is held pivotably on the mounting element (2) between a closed position and a maximum open position via a joint mechanism having a plurality of joint levers (4, 5, 6, 7), wherein the hinge part (3) is biased in the closing direction in a contraction range via a spring (10) and at least one linear damper (30) with a damper housing (31) and a piston rod (32) displaceable relative to the damper housing (31) is provided, which brake a closing movement of the hinge part (3) before the closing position is reached, wherein the at least one linear damper (30) is arranged with the damper housing (31) in a rotationally fixed manner via a holding element (33) within a lever (4) and the holding element (33) is fixed to a lever (4) of the joint mechanism and the piston rod (32) can be pushed into the damper housing (31) via an actuating element (14), the actuating element (14) being arranged on a further lever (7) of the joint mechanism.
2. The multi-joint hinge according to claim 1, wherein the lever (4) is U-shaped in cross-section and the damper housing (31) of the at least one linear damper (30) is arranged between the two legs of the lever (4).
3. The multi-joint hinge according to claim 1, wherein the actuating element (14) has a curved contact surface arranged between two walls of the further lever (7).
4. The multi-joint hinge according to claim 3, wherein the piston rod (32) slides with one end face indirectly or directly on the contact surface of the actuating element (14) at least during a closing movement of the hinge.
5. The multi-joint hinge according to claim 1, wherein the holding element (33) is fixed on a joint axis (A5) between the lever (4) and the further lever (7).
6. The multi-joint hinge according to claim 1, wherein the holding element (33) is supported with a stop on a wall of the lever (4).
7. The multi-joint hinge according to claim 1, wherein the holding element (33) comprises at least one receptacle (35) for the damper housing (31), the receptacle (35) limiting a movement of a damper housing (31) when the piston rod (32) is pushed in.
8. The multi-joint hinge according to claim 7, wherein a stop (34) for the damper housing (31) is formed on the receptacle (35).
9. The multi-joint hinge according to claim 1, wherein the contraction range of the spring (10) between the closed position of the hinge part (3) and an open position of the hinge part (3) is provided between 20° to 40°.
10. The multi-joint hinge according to claim 1, wherein an effective range of the linear dampers (30) in relation to the pivoting range of the hinge part (3) is smaller than the contraction range of the spring (10).
11. The multi-joint hinge according to claim 1, wherein at least one linear damper (30) is effective in an opening position of the hinge part (3) between 10° to 25° and the closing position.
12. The multi-joint hinge according to claim 1, wherein each linear damper (30) comprises a spring element biasing the piston rod (32) into a projecting position.
13. The multi-joint hinge according to claim 1, wherein the multi-joint hinge (1) is designed as a seven-joint hinge with four levers (4, 5, 6, 7) which can be pivoted relative to one another and together form seven joints (A1 to A7).
14. The multi-joint hinge according to claim 1, wherein at least two linear dampers (30) are provided, wherein the actuating element is configured to push the piston rods (32) together into the damper housing (32) at least in a partial region between the closed position of the hinge part (3) and an open position of the hinge part (3).
15. The multi-joint hinge according to claim 1, wherein the actuating element (14) on the further lever (7) acts on the at least one piston rod (32) in a damping range when the hinge part is pivoted and is freely movable in a range outside the damping range, the actuating element (14) being arranged in the range of free movement at a distance from the at least one piston rod (32) and thus the at least one piston rod (32) being arranged without contact with the actuating element (14).
16. The multi-joint hinge according to claim 1, wherein the actuating element (14) comprises a run-in guide (38) for the at least one piston rod (32).
17. The multi-joint hinge according to claim 16, wherein the inlet guide (38) is funnel-shaped.
18. The multi-joint hinge according to claim 16, wherein the inlet guide (38) of the at least one piston rod (32) is arranged with lateral play around the piston rod (32).
19. The multi-joint hinge according to claim 1, wherein the actuating element (14) is adjustable relative to the linear damper (30) so that a contact point between the at least one piston rod (32) and the actuating element (14) is adjustable in dependence on the angular position of the hinge part (3).
20. A refrigerator comprising an appliance body and a door pivotably mounted on the appliance body and held on the appliance body by at least one multi-joint hinge according to claim 1.
Description
[0020] The invention is explained in more detail below by means of an example of an embodiment with reference to the accompanying drawings. It is shown in:
[0021]
[0022]
[0023]
[0024]
[0025]
[0026]
[0027] A multi-joint hinge 1 comprises a mounting element 2 which can be fixed to a body of a piece of furniture or a household appliance, for example a refrigerator. A hinge part 3 is held pivotably on the mounting element 2 via a joint mechanism.
[0028]
[0029] The mounting element 2 comprises a first axis A1, to which a first lever 4 is hinged. In addition to the first axis A1, the first lever 4 has a second axis A2 and a fifth axis A5. A second lever 5 is hinged to the mounting element 2 on a third axis A3, which has a fourth axis A4 at the opposite end, which is hinged to a third lever 6. The third lever 6 has the fourth axis A4 in a central area and is connected to the first lever 4 at one end via the axis A2. On the opposite side, the third lever 6 is connected to the hinge part 3 at the sixth axis A6. The hinge part 3 is hinged with a seventh axis A7 to the fourth lever 7, which is hinged at the opposite end with the fifth axis A5 to the first lever 4. All levers 4, 5, 6 and 7 are made of bent sheet steel as U-shaped parts in cross-section.
[0030] The mounting element 2 has a height adjustment. For this purpose, an axis A8 is formed by a screw 20 which has a threaded section 21. An internally threaded insert 22 is mounted on the threaded section 21, which is arranged on a holder 24 in a rotationally fixed manner. For this purpose, two projections 23 are formed as end stops on the internally threaded insert 22. By turning the screw 20, the screw 20 and thus the mounting element 2 is axially displaced relative to the internally threaded insert 22. The internally threaded insert 22 is thereby fixed in the axial direction to the holder 24, which is fixed to a body via fastening means, such as screws, via the opening 26. By turning the screw 20, the height of the mounting element 2 can thus be adjusted relative to the holder 24.
[0031] The articulation mechanism of the multi-joint hinge 1 comprises a spring 10 held between a first guide element 11 and a second guide element 12. The first guide element 11 is articulated to an axis A11 and the second guide element 12 is articulated to a guide lever 13. The guide lever 13 is articulated to the fourth lever 7 and carries a guide roller 15 which is movable along a curve guide 18 on a guide element 16. The guide element 16 is fixed to the fourth lever 7 via an opening 17 with an axis.
[0032] The fourth lever 7 comprises an insertion element 9 which can be pivoted together with the fourth lever 7 about the fifth axis A5. The insertion element 9 is fixed to the fourth lever 7 via a further axis A13. The fourth lever 7 and the insertion element 9 thus form a unit that can be moved together, whereby the insertion element 9 can optionally also be formed integrally with the fourth lever 7.
[0033] An axis A14 is formed on the insertion element 9, into which an actuating element 14 in the form of a pin is inserted. In the assembled position, the actuating element 14 can act on the front ends of piston rods 32, which can then be pushed into damper housing 31.
[0034] The multi-joint hinge 1 comprises two linear dampers 30, each with a damper housing 31 and a piston rod 32. It is also possible that only one linear damper 30 is provided. The linear damper or dampers 30 are arranged within a U-shaped lever 4. The linear damper(s) 30 are at least partially covered laterally by the legs of the U-shaped lever 4. The linear damper(s) 30 are fixed to a holding element 33, which has two adjacent receptacles 35, into each of which a part of a damper housing 31 is inserted. The insertion depth of the damper housing 31 is limited by a stop 34. The stop 34 is designed as a stop pin and is inserted into an opening 37 of the holding element 33. The stop 34 is held at opposite ends on the first lever 4, openings 36 being formed for this purpose on the first lever 4 for insertion of one end of the stop 34. The stop 34 may also be held to the first lever 4 by other fastening means. In addition, the stop 34 does not have to pass through the opening 37 on the holding element 33, but can also extend adjacent to the holding element 33.
[0035] The holding element 33 is fixed to the fifth axis A5 via an opening and, in the installed position, is supported on and movable together with the first lever 4.
[0036] In the illustrated embodiment, the hinge part 3 is L-shaped in cross-section, wherein a mounting part 103 is fixed to the hinge part 3 so that the sixth axis A6 and the seventh axis A7 can run between a wall of the hinge part 3 and the mounting part 103. The mounting part 103 forms a spacer to allow the cover 8 to pivot. In the assembled position, the levers 6 and 7 are arranged inside the U-shaped door bearing consisting of hinge part 3 and mounting part 103.
[0037] The multi-joint hinge 1 further comprises covers 8 which, in an open position, cover gaps between the third lever 6 and the fourth lever 7, thereby forming a protection against engagement. The covers 8 can be held in an articulated manner on the stop 34 or another axis and have an elongated hole guide that cooperates with a guide pin fixed to the hinge part 3.
[0038]
[0039] When the hinge part 3 is pivoted relative to the mounting element 2, the joint mechanism unfolds and the levers 4, 5, 6 and 7 pivot towards each other, as shown in
[0040]
[0041] On the opposite side, the piston rod 32 rests with an end face against the actuating element 14, which is designed as a pin, in particular as a cylindrical pin. The actuating element 14 can also be made of metal in order to be able to transmit high pressure forces.
[0042] The spring 10 is hinged to the insertion element 9 between the first guide element 11 on an axis A11. The guide element 11 projects into the spring 10 with a pin, and the second guide element 12 also has a pin for guiding the spring 10. The pins provide centring within the lever 7. The insertion element 9 serves to centre the guide element 11 within the lever 7, which is preferably movable without dragging. The second guide element 12 is hingedly connected to the guide lever 13, which is hingedly held centred on the insertion element 9 about the axis A13. The guide lever 13 is used to move a guide roller 15, which rolls along a curve guide 18. The curve guide 18 is formed on the guide element 16, which is held non-rotatably on the hinge part 3.
[0043] As shown in
[0044]
[0045] When the multi-joint hinge is moved in the closing direction, as shown in
[0046]
[0047]
[0048]
[0049] In the embodiment shown, the two linear dampers 30 are mounted between the first lever 4 and the fourth lever 7. It is of course also possible to provide the linear dampers between two other levers 4, 5, 6 and 7 or on the mounting element 2 designed as a lever or the hinge part 3. Also, the spring 10 with the guide lever 13 can be mounted at another position of the multi-joint hinge instead of between the fourth lever 7 and the hinge part 3.
[0050] In the embodiment shown, the linear dampers 30 and the actuating element 14 are not adjustable. However, it is also possible that the linear dampers 30 are arranged on an adjustable carriage on the holding element 33. In this case, an eccentric or a worm wheel can be provided as an adjustment means. The linear dampers 30 can be adjusted from outside the lever 4.
[0051] Alternatively, it is also possible that the actuating element 14 is adjustably mounted. For this purpose, for example, a threaded device can be provided on the actuating element 14 so that the actuating element can be displaced in depth. If the actuating element is designed as a pin 14, the pin can be guided laterally in a guide on the lever 7. It is essential here that the actuating element 14 is adjustable relative to the linear damper 30, so that a contact point between the at least one piston rod 32 and the actuating element 14 is adjustable depending on the angular position of the hinge part 3.
LIST OF REFERENCE SIGNS
[0052] 1 Multi-joint hinge [0053] 2 Mounting element [0054] 3 Hinge part [0055] 4 Levers [0056] 5 Lever [0057] 6 Lever [0058] 7 Lever [0059] 8 Cover [0060] 9 Insertion element [0061] 10 Spring [0062] 11 Guide element [0063] 12 Guide element [0064] 13 Guide lever [0065] 14 Actuating element [0066] 15 Guide roller [0067] 16 Guide element [0068] 17 Opening [0069] 18 Curve guide [0070] 20 Screw [0071] 21 Thread section [0072] 22 Internally threaded insert [0073] 23 Projection [0074] 24 Holder [0075] 25 Receptable [0076] 26 Opening [0077] 30 Linear damper [0078] 31 Damper housing [0079] 32 Piston rod [0080] 33 Holding element [0081] 34 Stop [0082] 35 Receptable [0083] 36 Opening [0084] 37 Opening [0085] 38 Inlet guide [0086] 103 Mounting part [0087] A1 Axis [0088] A2 Axis [0089] A4 Axis [0090] A5 Axis [0091] A6 Axis [0092] A7 Axis [0093] A11 Axis [0094] A13 Axis [0095] A14 Axis