Device for moving at least one cover element
The device converts translational movement into pivoting motion using a deflection mechanism with a reduction gear and damping system, addressing the issues of manual force and noise in existing door mechanisms, providing enhanced user comfort and durability.
Patent Information
- Application Number
- JP2025522774
- Authority / Receiving Office
- JP · JP
- Patent Type
- Applications
- Current Assignee / Owner
- Priority Date
- 2022-10-19
- Filing Date
- 2023-09-18
- Publication Date
- 2025-11-05
AI Technical Summary
Existing door mechanisms for furniture require manual force to deflect and often produce noise and friction, limiting user comfort and functionality, especially for single-leaf doors.
A device that converts translational movement into pivoting motion using a deflection mechanism with a reduction gear, incorporating a damping and spring system to automatically initiate door closure without manual force, reducing friction and noise.
Enhances user convenience by allowing smooth, noiseless, and automatic door deflection, ensuring trouble-free operation with reduced wear and tear.
Smart Images

Figure 2025536353000001_ABST
Abstract
Description
[Technical Field]
[0001] The invention relates to a device for moving at least one cover element, preferably a door or folding door, according to the features of the preamble of claim 1 .
[0002] The invention further relates to a piece of furniture equipped with such a device.
[0003] Devices of the above-mentioned type are used to position or insert furniture parts or furniture doors or pivot doors, such as kitchen cabinets or living room cabinets, into partial areas or hollow spaces of the furniture part in a space-saving manner, so that the door does not obstruct the operator in the open position and the interior of the furniture part is accessible without hindrance.
[0004] Moving the door out of the cavity and into the open position requires a combination of translational and rotational motion about a pivot axis, and the door motion is typically initiated and controlled by an operator.
[0005] Moving the door from the inserted position to the open position, or vice versa, typically requires a 90° deflection of the door.
[0006] From the prior art, as disclosed for example in EP 2740870, devices are known which have a type of guide rail and guide frame for guiding and redirecting a folding door from an insertion position to an open position.
[0007] A disadvantage of such a solution is that the deflection function is provided exclusively for folding doors with at least two door or cover elements.
[0008] A further disadvantage is that the operator must exert a force on the door during the deflection phase to overcome the frictional resistance of the guide element, which means that the operator must take active action to swing the door.
[0009] Furthermore, due to the guide elements rubbing against one another, unpleasant scraping noises or sticking can occur, especially over the course of the device's use or service life.
[0010] The object of the present invention is therefore to provide an improved device compared to the prior art, which increases the operating comfort for the operator, allows smooth, noiseless and gentle deflection movements for the components, and which functions both for doors with one leaf and for doors with several leafs.
[0011] It would further be desirable to provide a piece of furniture with such an improved arrangement.
[0012] This problem is solved by the features of claims 1 and 11.
[0013] A device for moving at least one cover element, preferably a door or folding door, relative to a fixed furniture part, the furniture part having at least one cavity, preferably shaft-shaped, for accommodating the cover element and at least one interior space that can be shielded by the cover element at least in a predetermined area, comprising: at least one guide device for translating the cover element in the hollow chamber; at least one support movable along a guide device; - with at least one swivel The cover element can be supported on the support by a pivoting device so as to be pivotable about a pivot axis parallel to the support, the pivoting device having at least one deflection device which is configured to be able to convert a translational movement of the cover element along the guide device into a pivoting movement about the pivot axis, the at least one deflection device having at least one reduction device.
[0014] A first major advantage of the device according to the invention is that the deflection or pivoting of at least one cover element or door by the deflection device in the direction of the closed position of the door, in which the door covers the interior of the furniture part at least in a certain area, is automatically initiated.
[0015] Thus, the door is advantageously deflected without the application of force by the operator, which increases user convenience.
[0016] In this case, the deflection movement is introduced by an impact in the direction of the closed position, which impact is activated by a deflection device.
[0017] In other words, the deflecting device is a rotary impulse generator or moment generator or a rotary impulse initiator or moment initiator.
[0018] A second major advantage of the present invention is that the deflecting device converts the translational movement of the door into a pivoting movement by impact, so that no guide elements or the like are required for deflecting the door.
[0019] Since no guide elements are provided, advantageously no scraping noises and / or jamming or the like can occur during the deflection phase.
[0020] Furthermore, at least one retarder allows for a smooth and controlled closing movement of the door.
[0021] On the one hand, any crashing noise that may occur, for example, when the door is completely closed, is thus prevented.
[0022] On the other hand, this results in a gentle operation on the components, which in turn allows for a persistently trouble-free movement of the door.
[0023] Automatically controlled and smooth door movement further enhances operating comfort.
[0024] The furniture part may be, for example, an individual shelf in a living wall with a plurality of shelves, and between two shelves, for example, a hollow space may be arranged into which the front door of the shelf can be inserted.
[0025] The deflection device is preferably oriented relative to the furniture part so that it extends in the depth direction of the cavity and / or so that the movable and / or slidable components of the deflection device are movable at least in the depth direction.
[0026] The interior of the furniture part is essentially storage space available for use by the operator.
[0027] In order to guide the door, in particular in a translation direction parallel to at least one side wall of the furniture part, a combination of a guide rail and at least one support, in particular a vertical support or vertical beam, movable along the guide rail is preferably provided.
[0028] A wide variety of combinations of bearings, rollers, running rails, stiffeners, etc. may be used to stabilize at least one support and / or door and / or for low-friction and / or controlled movement of the support and / or door.
[0029] At least one pivoting device, such as an armoured hinge, is used, for example, for stable and / or controlled pivoting of the door about a pivot axis.
[0030] The pivot axis is preferably a substantially vertical axis which may extend parallel to the support.
[0031] The pivot axis is generally translationally slidable, i.e. it can move, for example together with the at least one pivot device and / or the at least one support, during the movement of the door.
[0032] The movement of the pivot axis may depend on the structure of the individual elements, for example the pivot device and / or the support, and / or the relative arrangement of the individual elements with respect to one another.
[0033] Further advantageous embodiments of the invention are defined in the dependent claims.
[0034] It is particularly preferred that the reduction gear has at least one stop which is preferably movable over a limited distance.
[0035] The limited distance over which the at least one stop can move preferably extends at least parallel to the direction of translational movement of the door and / or the guide device.
[0036] The at least one stop may be understood as, for example, a protruding step or projection.
[0037] It is particularly preferred that the reduction device comprises at least one damping device, preferably including at least one damper.
[0038] It is particularly preferred that the reduction gear device has at least one spring element, by means of which at least one force can be applied to the cover element in a direction towards the fully inserted position of the cover element in the hollow chamber.
[0039] In the fully inserted position, at least one cover element, e.g. a door or folding door, is located substantially completely within the hollow chamber and / or in the innermost possible position defined, e.g., by the back wall or eject element and / or other defining components of the furniture part.
[0040] The at least one spring element has at least one return function which pulls or pushes the cover element towards the fully inserted position at least briefly.
[0041] The return function of the spring element can assist the pivoting process and / or move the at least one cover element in the direction of the closed position.
[0042] In a preferred embodiment, the at least one spring element may be configured such that a fully inserted position of the door is reached, whereby the spring element has a closing function.
[0043] The spring element can thus have, in addition to the restoring function, an additional closing function.
[0044] For example, the closing function can be achieved by a relatively strong or stiff spring of the spring element.
[0045] However, the closing function can also be achieved by another mechanism, for example by extending the spring element and / or increasing the distance of the connection points of the spring element.
[0046] It may be specified that the deceleration device comprises at least one stop and / or damping device and / or spring element.
[0047] It is preferably specified that the deceleration device has at least one stop and / or at least one damping device and / or at least one receiving element for at least one spring element.
[0048] Preferably, the reduction gear comprises a reduction gear plate that can be attached to a furniture part, by means of which the reduction gear plate is specified such that the reduction gear can be attached at least indirectly to the furniture part.
[0049] The attachment of the reducer and / or reducer plate to the furniture part may be form-locking and / or material-locking and / or may take place by means of screws or the like.
[0050] The receiving element and / or the retarder plate may have, for example, at least one receiving cylinder for the spring element and / or the damping device.
[0051] Particularly preferably, the deflection device has at least one hook element which can be arranged on the cover element, preferably offset relative to the pivot axis, and it is specified that the hook element can be engaged with the reduction device, preferably by means of at least one engaging projection.
[0052] Preferably, the deflection device has at least one entrainment device to which at least one hook element is or can be connected so as to be pivotable about a pivot axis, preferably by means of a shaft element.
[0053] The hook element can be considered as a rotatably supported lever arm which engages in the deceleration device at least temporarily, in particular at the moment of impact by the deflection device on the cover element in the direction of the closed position.
[0054] Particularly preferably, the interengagement of the entraining device and the deceleration device is effected by an entraining projection of a hook element of the entraining device and a stop of the deceleration device.
[0055] It is particularly preferred that the entraining device is attached or can be attached at least to the cover element, for example in a form-locking and / or material-locking manner.
[0056] It is preferably specified that the entraining device has an entraining plate that is attached or can be attached to the cover element for attaching the entraining device to the cover element.
[0057] The attachment of the deceleration device and / or the entrainment device to the furniture part and / or to the at least one covering element may be effected by means of screws, nails, pins or the like.
[0058] Patent protection is also sought for a furniture part which has at least one hollow space, preferably shaft-shaped, for accommodating a covering element, preferably a door or folding door, at least one interior space which can be shielded by the covering element at least in certain areas, and a device for moving the covering element relative to the furniture part.
[0059] It is particularly preferred that the at least one reduction device is attached to a side wall of the furniture part that defines the cavity.
[0060] It is particularly preferred that at least one entraining device is attached to the cover element.
[0061] It is particularly preferred that the furniture part has at least one ejection device for ejecting the cover element from the cavity, in particular from a fully inserted or partially inserted position to the open position.
[0062] Particularly preferably, the at least one ejection device is arranged in the region of the cavity opposite the deflection device, ie preferably in the rear region of the cavity.
[0063] Preferably, the at least one ejection device is mounted on a side wall of the furniture part which defines the cavity.
[0064] The at least one ejection device is preferably actuatable by application of force, in particular pressure, by an operator, i.e. the ejection process is preferably triggerable by application of pressure to the ejection device.
[0065] The ejector may also have a damping function.
[0066] Further advantages and details of advantageous aspects of the invention are apparent from the drawings and the corresponding description of the drawings. [Brief explanation of the drawings]
[0067] [Figure 1] 1 shows an embodiment of a furniture piece equipped with a device; [Figure 2] 1 shows an embodiment of a redirection device for the device; [Figure 3] 1 shows an embodiment of a redirection device for the device; [Figure 4] FIG. 1 is a plan view showing an embodiment of a direction changing device. [Figure 5] FIG. 2 is a plan view showing a view corresponding to a direction-changing mechanism of the direction-changing device. [Figure 6] 1 shows an embodiment of a furniture piece equipped with a device; [Figure 7] 10A to 10C are diagrams illustrating the movement sequence of the cover element from the fully inserted position to the closed position. [Figure 8] 10A to 10C are diagrams illustrating the movement sequence of the cover element from the fully inserted position to the closed position. [Figure 9] 10A to 10C are diagrams illustrating the movement sequence of the cover element from the fully inserted position to the closed position. [Figure 10] 10A to 10C are diagrams illustrating the movement sequence of the cover element from the fully inserted position to the closed position. [Figure 11] 10A to 10C are diagrams illustrating the movement sequence of the cover element from the fully inserted position to the closed position. [Figure 12] 10A to 10C are diagrams illustrating the movement sequence of the cover element from the fully inserted position to the closed position. [Figure 13] 10A to 10C are diagrams illustrating the movement sequence of the cover element from the fully inserted position to the closed position. [Figure 14] 10A to 10C are plan views showing the movement sequence of the cover element from the fully inserted position to the closed position. [Figure 15] 10A to 10C are plan views showing the movement sequence of the cover element from the fully inserted position to the closed position. [Figure 16] 10A to 10C are plan views showing the movement sequence of the cover element from the fully inserted position to the closed position. [Figure 17] 10A to 10C are plan views showing the movement sequence of the cover element from the fully inserted position to the closed position. [Figure 18] 10A to 10C are plan views showing the movement sequence of the cover element from the fully inserted position to the closed position. [Figure 19] 10A to 10C are plan views showing the movement sequence of the cover element from the fully inserted position to the closed position. [Figure 20] 10A to 10C are plan views showing the movement sequence of the cover element from the fully inserted position to the closed position.
[0068] FIG. 1 shows an embodiment of a furniture part 3 with a device 1 for moving at least one cover element 2 or door relative to a fixed furniture part 3, which has at least one hollow space 4, preferably shaft-shaped, for accommodating the cover element 2 and at least one interior space 5 that can be screened by the cover element 2 at least in certain areas, in which the device 1 comprises: at least one guide device 6 for translating the cover element 2 in the cavity 4; at least one support 7 movable along the guide device 6; - at least one swivel 8 The cover element 2 can be supported on the support 7 by a pivoting device 8 so as to be pivotable about an imaginary pivot axis 9 parallel to the support 7, and the device 1 has at least one deflection device 10 which is configured so as to be able to convert the translational movement of the cover element 2 along the guide device 6 into a pivoting movement about the pivot axis 9, and the at least one deflection device 10 has at least one reduction gear 11.
[0069] In such an embodiment of the furniture part 3 with the device 1, the cover element 2 is in the open position 32.
[0070] In this embodiment of the furniture part 3, which may be part of a larger piece of furniture such as a residential wall storage unit or a built-in kitchen, at least one reduction gear 11 is attached to a side wall 22 of the furniture part 3 that defines the hollow chamber 4.
[0071] The cavity 4 does not necessarily have to be completely surrounded by side walls 22 but may be open on several sides.
[0072] In this embodiment, the furniture part 3 has an ejection device 23 for ejecting the cover element 2 from the cavity 4, which is preferably and / or advantageously arranged in an area of the cavity 4 opposite the deflection device 10, in which case the ejection device 23 is attached to a side wall 22 of the furniture part 3 that defines the cavity 4.
[0073] The following figures and the corresponding detailed description will now deal with the embodiment of the furniture piece 3 and / or device 1 shown in Figure 1. To avoid repetition, differences with respect to the embodiments already described will be described first. Otherwise, the above description of the first embodiment of the furniture piece 3 and / or device 1 is also applicable to the figures further described below.
[0074] 2 and 3 show an embodiment of a deflection device 10, with FIG. 3 showing an exploded view of the device 1 shown in FIG.
[0075] In this embodiment of the deflection device 10, the reduction device 11 comprises at least one damping device 13 and at least one spring element 14.
[0076] The spring element 14 can exert at least one force on the cover element 2 in a direction towards the fully inserted position 30 of the cover element 2 in the cavity 4 .
[0077] In such an embodiment of the deflection device 10, the reduction gear 11 has two stops 12 which are preferably movable over a limited distance, and these stops are movable substantially together with the damping device 13 and / or the spring element 14.
[0078] In the exploded view of this embodiment in FIG. 3 it is easy to see that at least one stop 12 is arranged on the damping device 13 and / or on the spring element 14 .
[0079] In this embodiment of the deflection device 10, the reduction gear 11 has at least one stop 12 and / or at least one damping device 13 and / or at least one receiving element 15 for at least one spring element 14.
[0080] In this embodiment of the deflection device 10 , the reducer 11 comprises a reducer plate 16 which can be attached to the furniture part 3 , by means of which the reducer plate the reducer 11 can be attached to at least the furniture part 3 .
[0081] In this embodiment of the deflection device 10, the deflection device 10 has at least one hook element 17 arranged on the cover element 2, preferably offset with respect to the imaginary pivot axis 9, which hook element can engage with the reduction gear 11, preferably by means of at least one engaging projection 18.
[0082] In this embodiment of the deflection device 10, the deflection device 10 has at least one entrainment device 19, to which at least one hook element 17 is connected or connectable so as to be pivotable about the pivot axis 9, preferably by means of an axle element 20.
[0083] In this embodiment of the deflection device 10, the entrainment device 19 can be attached to at least the cover element 2.
[0084] In this embodiment of the deflection device 10 , the entrainment device 19 has an entrainment plate 21 that can be attached to the cover element 2 for attaching the entrainment device 19 to the cover element 2 .
[0085] FIG. 4 shows a plan view of an embodiment of the deflection device 10, and FIG. 5 shows a plan view of a deflection mechanism corresponding to the deflection device 10 shown in FIG.
[0086] In the mechanism shown in Figure 5, the anchor of the boat lands on the seabed and fixes, causing an impact on the boat, which causes the boat to pivot around the anchoring point. This mechanism should be reflected in the mechanism of pivoting movement of the cover element 2 relative to the furniture part 3 or the side wall 22 shown in Figure 4. In this case, this mechanism is activated by the impact by the steering device 10.
[0087] That is, the systems shown in Figures 4 and 5 are similar to each other in terms of their rotation mechanism, and the landing of the anchor on the seabed corresponds to the moment when the entraining lug 18 of the entraining device 19 abuts against at least one stopper 12 of the deceleration device 11, at which point an impact occurs, which causes the boat to rotate around the anchor fixing point, or the cover element 2 to rotate around the rotation axis 9 in the direction of the closed position 33 due to its mass inertia.
[0088] Generally speaking, the suddenly introduced deceleration converts the mass inertia of the boat or cover element 2 into a rotational motion.
[0089] The majority of FIG. 6 shows in perspective an embodiment of a piece of furniture 3 with the device 1 already shown in FIG. 1, with the deflection device 10 contained therein shown in an enlarged view.
[0090] In this view, the cover element 2, on which the entraining device 19 is logically preferably attached, has been removed so that the deflection device 10 can be clearly seen.
[0091] 7 to 13 show, in perspective views, the sequence in which the cover element 2 moves from the fully inserted position 30 to the closed position 33. FIG.
[0092] In the embodiment of the device 1 shown in these figures, the ejection device 23 can be actuated by applying pressure, by which the cover element 2 can be moved from the fully inserted position 30 to the partially inserted position 31 and then to the open position 32. This progression corresponds to the transition from Figure 7 to Figure 8 and then to Figure 9.
[0093] In this embodiment, the translational movement of the cover element 2 is effected in particular by means of a support 7 which is directly pushed out by an ejection device 23 and which is movable along at least one guide device 6 .
[0094] When the cover element 2 is positioned substantially outside the cavity 4, as shown in Figure 10, a rotational impact is applied by the deflection device 10, causing the cover element 2 to pivot about the pivot axis 9 towards the closed position 33. The pivoting process corresponds to the transition from Figure 10 to Figure 12 and further to Figure 13, where in the final Figure 13 of the sequence the closed position 33 is reached.
[0095] 14 to 20 show in plan view the sequence in which the device 1 or cover element 2 shown in FIGS. 7 to 13 moves from the fully inserted position 30 to the closed position 33. As shown in FIG.
[0096] In this case, the state of FIG. 14 corresponds to the state of FIG. 7, the state of FIG. 15 corresponds to the state of FIG. 8, the state of FIG. 16 corresponds to the state of FIG. 9, and so on.
[0097] In these figures, in particular, detailed states and / or relative positions of the ejection device 23 and / or the deflection device 10 are shown.
[0098] In Figure 14 (corresponding to Figure 7), the cover element 2 is in the fully inserted position 30 and the support 7 is in the innermost possible position in the cavity 4, which in this case is defined by the eject element 24 being retracted to the maximum extent.
[0099] In a preferred embodiment of the ejection device 23, in the fully inserted position 30, a spring or the like provided for ejection is locked in a preloaded state, and this lock can be released, for example, by applying pressure, so that the ejection element 24 performs a collision movement against the cover element 2 and / or the support 7 after being released from the lock.
[0100] In the fully inserted position 30 shown in FIG. 14, all the partial elements, ie the cover element 2, the ejection device 23 and also the deflection device 10, are stationary.
[0101] That is to say, the reduction device 11 of the deflection device 10, in particular the at least one damping device 13 and / or the at least one spring element 14, is preferably in a relaxed state.
[0102] In Figure 15 (corresponding to Figure 8), the cover element 2 is in the partial insertion position 31 after being ejected by the ejection device 23, and the cover element 2 has already been partially slid translationally out of the cavity 4.
[0103] In this position, the ejection device 23 and / or the deflection device 10 are preferably in an unloaded and / or relaxed state.
[0104] In FIG. 16 (corresponding to FIG. 9), the cover element 2 is now in the open position 32 and is essentially at the point where a rotational impact is applied by the deflection device 10 .
[0105] In this embodiment of the device 1, the rotational impact is initiated by the entraining projection 18 of the hook element of the entraining device 19 abutting against and / or engaging with at least one stop 12 of the reduction gear 11.
[0106] The rotational impact causes the cover element 2 to pivot about the pivot axis 9 towards the closed position 33, which essentially corresponds to the transition from FIG. 16 to FIG.
[0107] During the pivoting movement or the transition from Figure 16 to Figure 17, the damping device 13 and / or the spring element 14 are loaded and / or tensioned, which is evident from the different lengths of the damping device 13 and / or the spring element 14.
[0108] That is, the mutual abutment and / or engagement of the hook element 17 and the entraining projection 18 can be damped by the damping device 13 and / or the spring element 14 .
[0109] In this way, a smoother pivoting movement of the cover element 2 can be achieved.
[0110] A restoring effect can also be provided by the damping device 13 and / or the spring element 14, so that the cover element 2 can be moved relatively easily towards and / or into the closed position 33.
[0111] FIG. 18 shows another open position 32, subsequent to the position of FIG. 17, closer to the closed position 33, in which the reduction gear 11 has in particular a damping function.
[0112] The state of Fig. 18 is followed by the state of Fig. 19, in which the reduction gear 11 of Fig. 19 has at least one return function, i.e., the reduction gear 11 returns the entraining device 19 by a predetermined distance in the direction of the fully inserted position VS due to the engagement between the stopper 12 and the entraining projection 18.
[0113] The situation in FIG. 19 is followed by the situation in FIG. 20, in which the cover element 2 is now in the closed position 33 and covers off the interior 5 of the furniture part 3.
[0114] In this case, the reduction gear 11, in particular the damping device 13 and / or the spring element 14, is in an unloaded and / or relaxed state.
[0115] In the course of the pivoting of the device 1, which corresponds to the sequence of FIGS. 14 to 20 (corresponding to the sequence of FIGS. 7 to 13), the cover element 2 is pivoted and translated through a total angle of 90°.
[0116] The at least one cover element 2 may consist of multiple parts and / or multiple doors, in which case, for example in the case of double doors or folding doors, at least one opening unit may also be provided.
[0117] It is also conceivable that the device 1 comprises a separate drive unit for moving the cover element 2 .
Claims
1. A device (1) for moving at least one cover element (2), preferably a door or folding door, relative to a fixed furniture part (3), said furniture part having at least one cavity (4), preferably shaft-shaped, for receiving said cover element (2) and at least one interior space (5) that can be shielded by said cover element (2) at least in a predetermined area, said device (1) comprising: - at least one guide device (6) for translating the cover element (2) within the cavity (4); - at least one support (7) movable along said guide device (6); - at least one swivel device (8); The cover element (2) can be supported on the support (7) by the pivoting device (8) so as to be pivotable about a pivot axis (9) parallel to the support (7), The device (1) has at least one deflection device (10) that is configured to be able to convert the translational movement of the cover element (2) along the guide device (6) into a pivotal movement about the pivot axis (9), and the at least one deflection device (10) has at least one reduction gear (11).
2. 2. The device (1) according to claim 1, wherein the deceleration device (11) has at least one stop (12) which is preferably movable over a limited distance.
3. 3. The device (1) according to claim 1 or 2, wherein the reduction device (11) comprises at least one damping device (13).
4. 4. The device (1) according to claim 1, wherein the reduction gear (11) has at least one spring element (14) by means of which at least one force can be applied to the cover element (2) in a direction toward the fully inserted position (30) of the cover element (2) in the hollow space (4).
5. 5. The device (1) according to claim 1, wherein the reduction gear (11) has at least one stop (12) and / or at least one damping device (13) and / or at least one receiving element (15) for at least one spring element (14).
6. 6. The device (1) according to any one of claims 1 to 5, wherein the reduction gear (11) has a reduction gear plate (16) that can be attached to the furniture part (3), and by means of the reduction gear plate the reduction gear (11) can be attached to at least the furniture part (3).
7. 7. The device (1) according to claim 1, wherein the deflection device (10) has at least one hook element (17) which can be arranged on the cover element (2), preferably offset with respect to the pivot axis (9), and the hook element can be engaged with the reduction device (11), preferably by means of at least one engaging projection (18).
8. 8. The device (1) according to claim 7, wherein the deflection device (10) has at least one entrainment device (19), to which the at least one hook element (17) is connected or connectable so as to be pivotable about the pivot axis (9), preferably by means of a shaft element (20).
9. 9. The device (1) according to claim 8, wherein the entraining device (19) is attached or can be attached to at least the cover element (2).
10. 10. The device (1) according to claim 8 or 9, wherein the entraining device (19) has an entraining plate (21) attachable to the cover element (2) for attaching the entraining device (19) to the cover element (2).
11. 11. A furniture part (3) having at least one hollow space (4), preferably shaft-shaped, for accommodating a cover element (2), preferably a door or folding door, at least one interior space (5) that can be shielded by the cover element (2) at least in a predetermined area, and a device (1) according to any one of claims 1 to 10 for moving the cover element (2) relative to the furniture part (3).
12. 12. Furniture part (3) according to claim 11, characterized in that at least one reduction gear (11) is attached to a side wall (22) of the furniture part (3) that defines the cavity (4).
13. 13. Furniture part (3) according to claim 11 or 12, characterized in that at least one entraining device (19) is attached to at least one cover element (2).
14. 14. The furniture part (3) according to any one of claims 11 to 13, wherein the furniture part (3) has at least one ejection device (23) for ejecting the cover element (2) from the cavity (4), the ejection device (23) being arranged in an area of the cavity (4) opposite the deflection device (10), preferably in this case the ejection device (23) being attached to a side wall (22) of the furniture part (3) that defines the cavity (4).
Citation Information
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