The present invention relates to a furniture fitting for movably supporting at least one furniture part on a furniture carcass. The furniture fitting comprises:
Moreover, the invention relates to an item of furniture comprising a furniture carcass, a furniture part movably-supported relative to the furniture carcass, the furniture part preferably being a furniture flap configured to be elevated relative to the furniture carcass, and a furniture fitting of the type to be described for moving the movably-supported furniture part.
Such furniture fittings are used, for example, for moving furniture flaps, and the force storage member of the furniture fitting is provided for compensating for a weight force of the furniture flap. In this case, an opening force is applied to the lever mechanism by the force storage member so as to assist the opening movement of the furniture flap by the force storage member. Therefore, the operator needs to exert less force, in particular when moving heavy furniture flaps. On the other hand, the force storage member is also used to apply a closing force to the lever mechanism upon a closing movement of the furniture flap, after a dead-center position has been exceeded. As a result, the furniture flap connected to the lever mechanism can be retracted into the closed position and can be pressed onto the furniture carcass with a retaining force.
In the region of the dead-center position, there is thus a change of direction of the force of the force storage member applied to the lever mechanism. Therefore, the hinge axis jerkily jumps within the opening from a first bearing location to a second bearing location. This also leads to an undefined, jerky movement behavior of the furniture flap in the region of the dead-center position, and to undesired noise emissions.
A first approach for resolving this problem is disclosed in WO 2017/143379 A1. Here, an actuating drive for moving a furniture flap is disclosed. The actuating drive includes at least two levers hingedly connected to each other via a hinge axis. By a resilient third lever, the hinge axis is stationarily pressed against a bearing contour of the opening with a respective large operating force, thereby preventing that the hinge axis jerkily jumps within the opening. A drawback is the fact that the friction of the hinge axis is massively increased thereby, and thus large manual forces for moving the furniture fitting are required. Moreover, a higher material usage is connected with this construction.
It is an object of the present invention to provide a furniture fitting of the type mentioned in the introductory part, thereby avoiding the above-discussed drawbacks.
According to the invention, at least one spring element is provided, the at least one spring element pressurizing the hinge axis with a force at least in a direction extending transversely to a notional connecting line of the two bearing locations of the at least one hinge axis within the at least one opening of the at least one lever.
In other words, the hinge axis is not stationarily held within the opening of the lever by a force of the spring element on a single bearing location. Instead, according to the invention, the hinge axis is movable within the opening from a first bearing location to a second bearing location. However, the hinge axis can be guided in a gliding contact along a bearing contour connecting the first bearing location and the second bearing location to each other due to a transverse force applied by the spring element.
Due to the gliding contact of the hinge axis along the aforementioned bearing contour, it can be ensured that the hinge axis, in a region of the dead-center position, does not jerkily hit against a bearing location of the opening under the emission of undesired noises. For pressing the hinge axis against the bearing contour, a relatively weak force accumulator can be sufficient so as to significantly reduce the frictional forces compared with the prior art according to WO 2017/143379 A1.
The invention can advantageously be applied, in particular, to furniture fittings with a lever mechanism having a dead-center position, in which the lever mechanism is neither pressurized in a closing direction nor in an opening direction by the at least one force storage member, and in which the at least one hinge axis is movable from the first bearing location to the second bearing location when the dead-center position is exceeded.
Further details and advantages of the present invention will be explained with the aid of the embodiments shown in the figures, in which:
In the shown embodiment, a housing 9 (
Of course, it is also possible to integrate the furniture fitting 4 into a horizontally extending furniture panel, thus within the top panel 7, within the bottom panel 8 and/or within a shelf board arranged between the top panel 7 and the bottom panel 8 for example. In such a case, the movable furniture part 3 is pivotally supported relative to the furniture carcass 2 about a vertically extending axis in the mounted position.
In the shown embodiment, the furniture fitting 4 includes a lever mechanism 5 for moving the movable furniture part 3, and at least one force storage member 10 (
According to an embodiment, it can be provided that the housing 9 of the furniture fitting 4, in a mounted condition, is at least partially, preferably substantially entirely, received within a recess 11 of the furniture panels 6 configured as sidewalls. In a mounted condition, the housing 9 can be arranged substantially flush with a front face 6a of the furniture panel 6.
The recess 11 can be configured as a blind hole for example. The housing 9 of the furniture fitting 4 can be inserted from the front during the mounting procedure (that is to say from the narrow front face 6a of the furniture panel 6) into the, preferably pocket-shaped, recess 11 of the furniture panel 6. In a mounted condition, the housing 9 of the furniture fitting 4 is substantially entirely received within a predetermined wall thickness of the furniture panel 6.
Within or on the housing 9, at least one force storage member 10, in particular including a spring device, is arranged for applying a force to the lever mechanism 5. A cover 12 is provided on the front-end region of the housing 9, and at least one movably-supported lever 5a, 5b, 5c (
The housing 9 of the furniture fitting 4 can be configured substantially cuboidal. In the shown embodiment, the housing 9 includes two flat-shaped housing walls 9a, 9b mutually spaced apart from each other in a parallel relationship, and the lever mechanism 5 for moving the movable furniture part 3 and the force storage member 10 for applying a force to the lever mechanism 5 can be received between the housing walls 9a, 9b.
The threaded spindle 20, in the shown embodiment, is arranged on an intermediate lever 18 pivotable about a pivoting axis 19. By an actuation of an, preferably rotatably supported, operating element 17a of the adjustment device 17, the engagement location 16 can be moved along the threaded spindle 20, and the distance between the engagement location 16 and the pivoting axis 19 of the intermediate lever 18 and thus the torque of the force storage member 10 applied to the lever mechanism 5 can be adjusted.
The operating element 17a of the adjustment device 17, in a mounted condition of the furniture fitting 4, faces towards the movable furniture part 3 and is arranged in a front region of the housing 9 of the furniture fitting 4.
The lever mechanism 5, as is known per se, can be releasably locked to a fitting element 22 configured to be fixed to the movable furniture part 3.
The lever mechanism 5 includes at least one lever 5a pivotally supported about a hinge axis 21a. The at least one lever 5a includes at least one, in particular cylindrical, opening 23 (
When a dead-center position of the lever mechanism 5 is exceeded, a change of direction of the force of the force storage member 10 applied to the lever mechanism 5 occurs. That means that within a closing range between the fully closed position and the dead-center position of the lever mechanism 5, the force storage member 10 applies a closing force to the lever mechanism 5. In contrast, within an opening range between the dead-center position and the fully open position of the lever mechanism 5, the force storage member 10 applies an opening force to the lever mechanism 5.
This change of direction of the spring force leads to the fact that the hinge axis 21a, as shown in
Hence, the hinge axis 21a can be moved, in fact, within the opening 23 of the lever 5a between the two bearing locations 5a, 5b. However, this movement takes place in a gliding contact with the bearing contour 24c. Therefore, jerky jumps of the hinge axis 21a within the opening 23 and thus noise emissions associated therewith can be effectively prevented. The force of the spring element 25 can be dimensioned relatively small so as to hold the friction between the hinge axis 21a and the bearing contour 24c within a tolerable limit.
By a limiting device 28 comprising a rotatably-supported adjustment wheel 28a, the maximum open position of the lever mechanism 5 can be limited. In this way, collisions between the movable furniture part 3 and a room ceiling can be prevented.
The lever mechanism 5 includes at least one lever 5a pivotally supported about a hinge axis 21a. In the shown embodiment, a plurality of levers 5a, 5b, 5c, 5d is provided, the levers 5a, 5b, 5c, 5d being hingedly connected to each other via hinge axes 21a, 21b, 21c. By a spring element 25, for example by a form spring made of steel, the hinge axis 21a can be pressurized with a transverse force. The spring element 25 can be supported on at least one abutment 27a, 27b so as to apply a sufficiently large force to the hinge axis 21a.
The lever mechanism 5 can include at least five, preferably at least seven, hinge axes 21a, 21b, 21c.
The at least one lever 5a is connected to a second lever 5b of the lever mechanism 5 via the hinge axis 21a, and a relative position of the two levers 5a, 5b can be varied upon a pivoting movement.
In the shown figure, the at least one second lever 5b is pivotally connected to at least one third lever 5c of the lever mechanism 5 via a further hinge axis 21b. Preferably, the at least one spring element 25 applies a force to the hinge axis 21a connecting the at least one lever 5a with the at least one second lever 5b, and also applies a force to the further hinge axis 21b.
The lever mechanism 5 can have a lever configuration arranged in a parallelogram shape, and the at least one lever 5a forms part of the lever configuration. The spring element 25 can be operative between two hinge axes 21a, 21b of the lever configuration. This has the advantage that at least two hinge axes 21a, 21b can be pressurized with a transverse force by a single spring element 25.
The at least one second lever 5b is pivotally connected to at least one third lever 5c of the lever mechanism 5 via a further hinge axis 21b.
Preferably, it can be provided that the spring element 25 applies a force to the hinge axis 21a connecting the at least one lever 5a with at least one second lever 5b, and also applies a force to the further hinge axis 21b.
According to a preferred embodiment, it can be provided that the at least one spring element 25 partially embraces at least one hinge axis 21a, 21b and/or presses against a peripheral rim of the hinge axis 21a, 21b.
The spring element 25 can be supported on at least one abutment 27a, 27b. The abutment 27a, 27b can be pin-shaped, or can be configured as a limb of a lever 5a, 5b, 5c, 5d of the lever mechanism 5.
According to an embodiment of the invention, it can be provided that the at least one spring element 25
However, it is also possible to pressurize two or more hinge axes 21a, 21b, 21c, 21d, 21e, 21f with a force by one single spring element 25. This can be provided, for example, by a spring element 25 in the form of a spring clip pressing simultaneously against a plurality of hinge axes 21a, 21b, 21c, 21d, 21e, 21f.
In the shown embodiment, the spring element 25 is pivotally supported about a first hinge axis 21a, is supported with a central portion on an abutment 27c formed as a limb of the lever 5b, and presses with a free end against a peripheral rim of the second hinge axis 21b.
Number | Date | Country | Kind |
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A 50981/2020 | Nov 2020 | AT | national |
Number | Date | Country | |
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Parent | PCT/AT2021/060408 | Nov 2021 | US |
Child | 18141575 | US |