Hinge
10370884 ยท 2019-08-06
Assignee
Inventors
Cpc classification
E05D11/1021
FIXED CONSTRUCTIONS
E05F1/14
FIXED CONSTRUCTIONS
E05F5/006
FIXED CONSTRUCTIONS
International classification
E05F1/14
FIXED CONSTRUCTIONS
Abstract
A hinge comprises a hinge part, which can be secured on a door of the shutter and is mounted on a side part such that it can be pivoted via a carrying lever and a guide lever, also comprises at least one spring, by means of which the hinge part, in a self-retracting region of the hinge, is prestressed into a closed position, and further comprises a linear damper with a piston rod, which can be moved relative to a damper housing and is intended for damping a closing and/or opening movement of the hinge part, wherein a deflecting element is provided, said deflecting element being mounted on the side part such that it can be rotated about an axis and being arranged between the damper and the guide lever so that, during a closing movement of the hinge part, it moves the damper in order to generate a damping force, wherein, during an opening movement of the hinge part, the deflecting element moves the damper in order to generate a damping force before the fully open position of the hinge part has been reached. This makes it possible to avoid hard impact of a door in the opening direction.
Claims
1. A hinge comprising: a hinge part pivotably mounted to a side part by a guide lever and a support lever; at least one spring configured to pretension the hinge part in a closed position with respect to the side part in a self-retraction range of the hinge; a linear damper having a damper housing and a piston rod movable in relation to the damper housing; a deflection element rotatably mounted about an axis on the side part; and a lever pivotably connected to the guide lever and to the deflection element; wherein the guide lever, the support lever, and the lever cooperate to rotate the deflection element in a first direction in response to rotation of the hinge part in a closing direction, thereby moving the piston in a first direction with respect to the damper housing to generate a damping movement during a closing movement of the hinge part; and wherein the guide lever, the support lever, and the lever cooperate to rotate the deflection element in the first direction in response to rotation of the hinge part in an opening direction, thereby moving the piston in the first direction with respect to the damper housing to generate a damping movement during an opening movement of the hinge part.
2. The hinge according to claim 1, wherein the opening damping is active at least in an angle range of at least 10 before the maximally open position of the hinge part.
3. The hinge according to claim 1, wherein the deflection element executes a pendulum movement during a movement from the completely closed position of the hinge part into the completely open position of the hinge part.
4. The hinge according to claim 3, wherein the movement direction of the pendulum movement of the deflection element during a movement from the completely closed position of the hinge part into the completely open position of the hinge part reverses between the closing damping range and the opening damping range.
5. The hinge according to claim 1, wherein the movement of the piston rod of the damper during the closing damping is greater than the movement of the piston rod of the damper during the opening movement.
6. The hinge according to claim 1, wherein the stroke of the damper during closing damping is greater than the stroke of the damper during opening damping.
7. The hinge according to claim 1, wherein the rotatably mounted deflection element is articulated with the damper or a component coupled to the damper.
8. The hinge according to claim 1, wherein the deflection element is articulated with the guide lever or a component connected to the guide lever.
9. The hinge according to claim 1, wherein the damper is a compression damper, which generates higher damping forces during the relative retraction of the piston rod into the damper housing than during the extension of the piston rod out of the damper housing.
10. The hinge according to claim 1, wherein the damper is a traction damper, which generates higher damping forces during the relative extension of the piston rod-out of the damper housing than during the retraction of the piston rod into the damper housing.
11. The hinge according to claim 1, wherein the at least one spring pre-tensions the hinge part in an opening direction in a self-opening range, wherein the at least one spring pre-tensions the hinge part in a closed position in the self-retraction range of the hinge.
12. The hinge according to claim 1, wherein the opening damping is active at least in an angle range of at least 20 before the maximally open position of the hinge part.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1)
(2)
(3)
(4)
(5)
(6)
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(8)
DETAILED DESCRIPTION OF THE DRAWINGS
(9) An item of furniture 1 comprises a cabinet-shaped furniture body 2, on the side wall of which two hinges 4 are provided for the pivotable mounting of a door 3. Each hinge 4 comprises an installation plate 6 in this case, which is fixed on a side wall of the furniture body 2, wherein a side part 5 of the hinge 4 is held on the installation plate 6. A hinge part 7 is mounted so it is pivotable via a four-joint connection on the side part 5.
(10)
(11) The side part 5 is designed as box-shaped and comprises openings 21, 22, and 23, which are used for mounting axes 20, on opposing side walls.
(12) The hinge part 7 comprises a cup-shaped receptacle 10, wherein openings 11 and 12 for axis elements 13 are formed on side walls of the cup-shaped receptacle 10. The axis elements 13 are designed as U-shaped and have a longer leg, which is used as the axis of rotation for a support lever 8 or a guide lever 9. The support lever 8 is mounted on the hinge part 7 in this case so it is rotatable about the axis inserted into the opening 11 and the guide part 9 is mounted on the hinge part 7 so it is rotatable about the axis inserted into the opening 12.
(13) A spring 14, which has two protruding legs and is designed as a retraction spring, is also arranged between the support lever 8 and the guide lever 9. The hinge part 7 is pre-tensioned in the closed position in a self-retraction range of the hinge 4 via the spring 14.
(14) The support lever 8 is mounted so it is rotatable on the side part 5 via an axis 20, which is inserted into the opening 21, while the guide lever 9 is mounted so it is rotatable on the side part 5 about an axis 20, which is inserted into the opening 22. Spaced apart from the axes at the openings 21 and 22, an axis 16 is inserted into the opening 23 to mount a deflection element 15 so it is rotatable about an axis 16. The deflection element 15 is designed as a two-armed lever, wherein an axis 17 for the articulation with a lever 19 is provided on a first lever arm. This lever is articulated on one side with the deflection element 15 and on the other side with a cantilever on the guide lever 9. The deflection element 15 has a second arm, on which an axis 18 is provided, to articulate the deflection element 15 with a damper 30, which is designed as a linear damper. The damper 30 comprises a piston rod 31 and a damper housing 32, in which a piston is arranged. By retracting and extending the piston rod 31, the piston is moved within the damper housing 32, wherein damping forces are generated during the retraction of the piston rod 31, while the extension of the piston rod 31 occurs comparatively smoothly. The damper is therefore designed as a compression damper, which essentially only generates damping forces during the retraction of the piston rod 31. The piston rod 31 is provided in this case on the outer end with a connecting element 34, which is articulated with the second arm with the axis 18 of the deflection element 15. On the opposite side, the damper housing 32 is equipped with a holder 33, to articulate the damper 30 in the side part 5.
(15) To fix the side part 5 on the installation plate, a pivotable catch device 27 is furthermore also provided.
(16)
(17) If the door 3 is moved further in the opening direction between the positions shown in
(18) If the door 3 is now pivoted into the maximally open position, as shown in
(19) If the door 3 is now moved out of the maximally open position back in the closing direction, the piston rod 31 is firstly extended back out of the damper housing 32, wherein the extension of the piston rod 31 occurs smoothly, so that hardly any forces are perceptible by the user. Subsequently, the positions according to
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(24) If a traction damper is used instead of a compression damper, a piston stroke results as shown in
(25) In the illustrated exemplary embodiment, the deflection element is indirectly connected to the piston rod 31 of the damper 30. Of course, it is also possible to provide one or more components between the deflection element and the damper, without modifying the mechanical action principle of the hinge. The deflection element 15 is furthermore connected via a lever 19 to the guide lever 9. It is also possible to connect the deflection element 15 directly to the support lever 8 or the guide lever 9 or to arrange still further levers or components in between, without changing the mechanism according to the invention of the hinge 4.
(26) Instead of the damper 30 designed as a compression damper, a traction damper can also be used, by means of which opening and closing damping can also be caused.
(27) The damper 30 can additionally be designed as adjustable, to be able to adapt the damping forces to the weight of the respective door 3. Corresponding mechanisms and adjustment mechanisms are known. In addition, the damper can also have more components than the damper housing and a piston rod, for example, a piston rod can be provided on opposing sides of the damper, which is then retracted into the damper housing or extended out of it.
(28) In a further exemplary embodiment, the spring 14 can pre-tension the hinge part 7 in an opening direction in a self-opening range, wherein preferably the same spring 14 pre-tensions the hinge part 7 in a closed position in the self-retraction range of the hinge 4. A door or flap can be held in a predetermined open position by the pre-tensioning in the open direction. The pre-tensioning in the opening direction can take place, for example, from an opening angle of 45, in particular greater than 60 or 70 up to the maximally open position.