Guide arrangement for guiding movable furniture part
By using a rope traction device and steering wheel in the guide assembly, combined with height and lateral adjustments, the problem of complex and inaccurate tilt adjustment of furniture components is solved, achieving an easy, accurate, and economical adjustment effect.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-14
- Publication Date
- 2026-04-03
AI Technical Summary
In existing technologies, the tilt adjustment of furniture components is costly and inaccurate, requiring adjustment on multiple hinges, which leads to complex and inconvenient operation.
The system employs a guiding assembly, including a carrier, guiding device, compensation device, and tilt adjustment device. Easy and accurate tilt adjustment is achieved through a rope traction device and steering wheel. Combined with height and lateral adjustment devices, it reduces design complexity and cost.
It enables easy, accurate, and economical tilt adjustment of furniture components, reducing operating steps and material costs while improving adjustment precision.
Smart Images

Figure CN121794441A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to a guide assembly for guiding at least one movable furniture component, particularly a sliding or folding sliding door, relative to a fixed furniture component, particularly a furniture wall, the guide assembly comprising:
[0002] - At least one guiding system having a guide to be arranged on a fixed furniture component and a guiding device slidably supported on the guide;
[0003] - A carrier, on which movable furniture components are to be fixed, and the carrier is kinetically coupled to a guiding device; and
[0004] - A compensation device for compensating a carrier or at least one movable furniture component disposed on the carrier about a flipping axis by means of a restoring torque, wherein the compensation device includes at least one rope traction device having at least one rope;
[0005] - A steering wheel kinetically coupled to the guide device, the steering wheel being used to steer the at least one rope; and
[0006] - An angle adjustment device for adjusting the tilt angle of movable furniture parts.
[0007] The present invention also relates to a piece of furniture having such a guiding component. Background Technology
[0008] Such guiding devices are well known in the prior art. In order to ensure the full functionality of the furniture and its overall aesthetic appeal, it is necessary that movable furniture parts, typically furniture doors, can be adjusted in terms of tilt relative to fixed furniture parts, the main body of the furniture, or a portion thereof.
[0009] Typically, this tilt adjustment is achieved by adjusting at least two hinges in the depth direction of the furniture.
[0010] However, tilt adjustment via the at least two hinges is costly and inaccurate because adjustment must be performed on each of the at least two hinges. Summary of the Invention
[0011] The object of this invention is to provide an improved guide assembly compared to the prior art, particularly one that allows for easy and accurate adjustment of the tilt angle. Furthermore, it also aims to provide furniture incorporating such a guide assembly.
[0012] The objective is achieved by the features of claims 1 and 22.
[0013] Therefore, in the case of the guide assembly according to the invention, the carrier is configured such that, via the tilt adjustment device, the carrier is movable relative to the at least one steering wheel, preferably in a direction parallel to the longitudinal extension of the guide; and / or the tilt adjustment device includes at least one fixing device for fixing the at least one rope, wherein the at least one fixing device is slidable relative to the carrier, preferably in a direction parallel to the longitudinal extension of the carrier.
[0014] Here, both embodiments of the tilt adjustment device according to the present invention utilize a compensation device. This reduces the design complexity and cost of the tilt adjustment device.
[0015] Furthermore, tilt adjustment can be performed at a single point, greatly simplifying the adjustment process. Last but not least, this tilt adjustment device allows for more precise tilt adjustment.
[0016] The furniture according to the invention is configured such that it includes at least one fixed furniture component, particularly a furniture wall, and at least one movable furniture component, particularly a sliding or folding sliding door, and a guide assembly according to the invention for guiding the at least one movable furniture component on the fixed furniture component. Preferably, the at least one fixed furniture component at least partially defines a well-shaped cavity in which the at least one movable furniture component can be arranged.
[0017] Other preferred embodiments are defined in the dependent claims.
[0018] It can be configured such that the carrier is at least partially surrounded by the guiding device.
[0019] Particularly preferably, it can be configured such that at least two guide systems are provided, preferably, the at least two guide systems are arranged on the fixed furniture component in parallel to each other and / or spaced apart from each other in a direction parallel to the longitudinal extension of the carrier.
[0020] This allows for more stable guidance of the carrier on fixed furniture components.
[0021] Alternatively, the guide assembly may include a third actuating element, wherein the carrier can be adjusted relative to the at least one steering wheel by manipulating (preferably rotating) the third actuating element.
[0022] Tilt adjustment can be easily performed via a third control element.
[0023] It can also be advantageously configured such that the third operating element remains accessible even when the movable furniture parts are fixed to the carrier. This allows for adjustment of the tilt angle on the assembled furniture.
[0024] Preferably, at least two hinges are provided, which are used to pivotally support movable furniture parts on a carrier.
[0025] Furthermore, the guide assembly may be configured to include: at least one height adjustment device for adjusting the at least two hinges relative to the at least one guide system in a direction parallel to the longitudinal extension of the carrier; and / or at least one lateral adjustment device for adjusting the at least two hinges relative to the at least one guide system in a direction orthogonal to the longitudinal extension of the carrier.
[0026] In addition to tilt adjustment, the height and lateral adjustment of movable furniture parts can be adjusted relative to fixed furniture parts via height and lateral adjustment devices.
[0027] Particularly preferably, the carrier can be adjusted relative to the at least one guide system in a direction parallel to the longitudinal extension of the carrier in order to adjust the at least two hinges relative to the at least one guide system in a direction parallel to the longitudinal extension of the carrier; and / or, in order to adjust the at least two hinges in a direction orthogonal to the longitudinal extension of the carrier, the carrier can be adjusted relative to the at least one guide system in a direction orthogonal to the longitudinal extension of the carrier via the at least one lateral adjustment device.
[0028] If the carrier can be adjusted relative to the at least one guiding system, then space can be saved to the maximum extent in the design and arrangement of the height adjustment device and / or the lateral adjustment device. Attached Figure Description
[0029] Other details of the invention, and especially various embodiments and advantages, will be explained in more detail below with reference to the accompanying drawings. The drawings are as follows:
[0030] Figure 1a , 1b These are schematic perspective views illustrating two embodiments of the furniture according to the present invention.
[0031] Figures 2a-2h For the press Figure 1a A diagram illustrating different adjustments to the furniture.
[0032] Figure 3a To be according to Figure 1b Part of the furniture
[0033] Figure 3b As an embodiment of the bootloader,
[0034] Figures 4a-4c Different views of an embodiment of the height adjustment device,
[0035] Figure 5 To be according to Figures 4a-4c During the height adjustment process, the height adjustment device...
[0036] Figures 6a-6c Different views of an embodiment of the lateral adjustment device,
[0037] Figure 7 To be according to Figures 6a-6c During the adjustment process, the lateral adjustment device
[0038] Figure 8a , 8b A different view of another embodiment of the lateral adjustment device.
[0039] Figure 9a , 9b Different views of an embodiment of the tilt adjustment device.
[0040] Figure 10 A perspective view of another embodiment of the guiding component.
[0041] Figures 11a-11d Different views of embodiments of the compensation device,
[0042] Figures 12a-12c To be according to Figure 10 A perspective view of the guide device of the guide component.
[0043] Figure 13a , 13b As another embodiment of the height adjustment device,
[0044] Figure 14a , 14b A different view of another embodiment of the lateral adjustment device.
[0045] Figure 15 This is another embodiment of the tilt adjustment device.
[0046] Figures 16a-16c This is a different view of another embodiment of the tilt adjustment device.
[0047] Figure 17a , 17b Different views of embodiments of the depth adjustment device,
[0048] Figure 18 A perspective view as part of another embodiment of the guiding component.
[0049] Figures 19a-19d Different views of an embodiment of the combined height and lateral adjustment device, and
[0050] Figures 20a-20dThis is a different view of another embodiment of the lateral adjustment device. Detailed Implementation
[0051] Figure 1a A perspective view of furniture 100 is shown. Furniture 100 consists of a furniture body 104 having an internal space 104a. Fixed furniture components 102 are designed here as furniture walls and are part of the furniture body 104. In addition, the fixed furniture components 102 also define a well-shaped cavity 103 of furniture 100, in which movable furniture components 101 can be arranged.
[0052] In this embodiment, the movable furniture component 101 is designed as a folding sliding door. The folding sliding door includes two door panels 101a, which are hinged together. One door panel 101a is pivotally fixed to the carrier 5 of the guide assembly 1, while the other door panel 101a is connected to a carriage 105. The carriage 105 is movably supported on a track 106 and guides the movable furniture component 101 along the track 106.
[0053] In the closed position, the interior space 104a can be concealed by folding sliding doors. In this position, the door panels 101a are substantially on the same plane.
[0054] During the transfer of furniture 100 to the open position, the two door panels 101a pivot relative to each other until they are positioned substantially parallel to each other. The free door panel 101a—which is not fixed to the carrier 5—is guided by a carriage 105 along a track 106. Finally, the folded sliding door can be introduced into the well-shaped cavity 103. The carriage 105 can also move into the well-shaped cavity.
[0055] Figure 1b Another embodiment of furniture 100 is shown. The complete furniture body 104 is not shown. The furniture fixing component 102 is designed as a furniture wall and defines a well-shaped cavity 103.
[0056] In this embodiment, the movable furniture component 101 is designed as a rotating swing door. That is, the furniture 100 can be opened or closed by simply rotating the rotating swing door. In the open position, the rotating swing door can be introduced into the well-shaped cavity 103.
[0057] Figures 2a to 2h The different adjustments to furniture 100 are schematically illustrated. These views should illustrate how the movable furniture component 101 can be adjusted relative to the main body 104 via height adjustment, lateral adjustment, tilt adjustment, and depth adjustment devices. The views also demonstrate the different adjustments made to the furniture body 100. Figure 1a The furniture is 100, but for those priced according to... Figure 1bThe same adjustment possibilities exist for furniture 100.
[0058] exist Figure 2a The image shows furniture 100 with adjustable folding sliding doors. Figure 2b In this case, the gap between the movable furniture component 101 and the furniture body 104 is too large. This gap can be adjusted via the depth adjustment device 33.
[0059] exist Figure 2c In this design, the folding sliding door is tilted relative to the main body of the furniture 104; specifically, the distance of the folding sliding door in the upper area is greater than the distance in the lower area. Figure 2d In the middle, the folding sliding door also tilts towards the main body of the furniture 104, which is actually exactly in line with... Figure 2c The situation is the opposite. This tilt of the movable furniture component 101 relative to the furniture body 104 can be adjusted via the tilt adjustment device 20.
[0060] exist Figure 2e In the middle, the movable furniture component 101 was adjusted too high, while... Figure 2f The middle is too low. This height adjustment can be achieved via the height adjustment device 7.
[0061] exist Figure 2g In this configuration, the folding sliding door rotates relative to the furniture body 104. This is because the lower part of the folding sliding door is not flush with the furniture body 104. This can be resolved by adjusting the lower lateral adjustment device 8. Figure 2h The lateral adjustment device 8 at the top is not adjusted correctly.
[0062] Figure 3a Showing by Figure 1b Part of the furniture 100, wherein the rotating swing door is open but not yet introduced into the well-shaped cavity 103. A guide assembly 1 is arranged on the fixed furniture component 102. Figure 3b An embodiment of this type of boot component 1 is shown in the figure.
[0063] The guiding assembly 1 includes two guiding systems 2. Each of these guiding systems 2 has a guide element 3 and a guiding device 4. Each guiding device 4 is slidably supported on its respective guide element 3.
[0064] Each guide 3 is arranged on the fixed furniture component 102. In this embodiment, each guide 3 is oriented parallel to each other and spaced apart from each other in the direction of the longitudinal extension L of the carrier 5.
[0065] The carrier 5 is kinetically coupled to each guide device 4. Hinges 6 are arranged on the carrier 5, through which the folding sliding door is pivotally supported on the carrier 5. The hinges 6 can be directly arranged on the carrier 5. Alternatively, the hinges 6 can be arranged on the retaining element 12 (see...). Figure 18 ).
[0066] The carrier 5 has two end regions 5a and 5b. In this embodiment, a height adjustment device 7 and a lateral adjustment device 8 are provided in the upper end region 5a. Only the lateral adjustment device 8 is arranged in the lower end region 5b.
[0067] Figures 4a to 4c Different views of an embodiment of the height adjustment device 7 are shown. Figure 4a The upper guide device 4 can be seen in the installed state. The guide device 4 at least partially surrounds the carrier 5.
[0068] Both the height adjustment device 7 and the lateral adjustment device 8 are integrated into the guide device 4. In principle, the height adjustment device 7 and the lateral adjustment device 8 can also be arranged outside the guide device 4. A first operating element 10 is provided for operating the height adjustment device 7, and a second operating element 23 is provided for operating the lateral adjustment device 8.
[0069] Furthermore, a depth adjustment device 33 can be seen on the guide 3. The depth adjustment device 33 can be designed according to existing technology. Through the depth adjustment device 33, the depth can be adjusted according to... Figure 2b Adjust the depth.
[0070] exist Figure 4b As can be seen in the exploded view, the guide device 4 includes a carriage 4a with multiple rotatably supported rollers 4b. The rollers 4b are supported on the guide member 3, thereby allowing the guide device 4 to be slidably supported on the guide member 3.
[0071] The guiding device 4 further includes a connecting element 4c for connecting the carrier 5 to the guiding device 4.
[0072] Therefore, the connecting element 4c is connected to the carrier 5 and partially surrounds the carrier. On the other hand, the connecting element 4c is slidably supported on the support pin 4d.
[0073] The support pin 4d passes through the opening 4e in the carriage 4a. The opening 4e is sized such that the support pin 4d has a gap at least in the vertical direction.
[0074] In this embodiment, the lateral adjustment device 8 is substantially arranged inside the connecting element.
[0075] The height adjustment device 7 includes a base 7a. A height adjustment element 11 is slidably supported in the base 7a. For this purpose, a groove 7b is provided in the base 7a, in which a protrusion 11c is guided. The height adjustment element 11 has an inclined surface 9 and a mating thread 11a.
[0076] The thread 10a of the first actuating element 10 engages with the mating thread 11a. In this embodiment, the first actuating element 10 is a bolt. Other designs are also possible.
[0077] In addition, a support element 7c is provided, which is slidably supported in the base 7a. The support element 7c has another inclined surface 13, which abuts against the inclined surface 9.
[0078] The other inclined surface 13 is made of a friction-reducing material, such as a special plastic. However, it can also be configured such that the other inclined surface 13 is only coated with a friction-reducing material. The support element 7c is also kinetically coupled to the support pin 4d.
[0079] Figure 4c shows a cross-sectional view of the height adjustment device 7. The direction of the longitudinal extension L of the carrier 5 is also shown as a reference.
[0080] As can be seen, the height adjustment element 11 is supported so that it can slide in a direction orthogonal to the longitudinal extension L of the carrier. The first operating element 10 engages with the mating thread 11a of the height adjustment element 11 via the thread 10a.
[0081] Manipulating (in this case, rotating) the first manipulating element 10 causes the height adjusting element 11 to move in another direction orthogonal to the longitudinal extension L of the carrier 5.
[0082] The other inclined surface 13 abuts against the inclined surface 9, and the sliding of the height adjusting element 11 also causes the inclined surfaces 9 and 13 to slide relative to each other. As a result, the support element 7c moves in a direction parallel to the longitudinal extension L.
[0083] Because the supporting element is connected to the carrier 5 via the supporting pin 4d and the connecting element 4c, the carrier 5, and therefore also the hinge 6 and the movable furniture part 101, can thus move in the same direction parallel to the longitudinal extension L. This corresponds to... Figure 2e and 2f Height adjustment.
[0084] Figure 5 The height adjustment device 7 in its installed state is shown. The first operating element 10 is operated via a screwdriver. It can be seen that the first operating element 10 remains accessible even when the furniture 100 is fully assembled. Therefore, it is not necessary to remove the movable furniture part 101 before the height adjustment device 7 can be operated.
[0085] Figures 6a to 6c Different views of an embodiment of the lateral adjustment device 8 are shown. The lateral adjustment element 22 is in the installed state ( Figure 6b It at least partially surrounds the support element 4d.
[0086] The lateral adjustment element 22 also has a guide groove 22a. The guide groove 22a is an elongated design and forms an angle of approximately 45° with the direction orthogonal to the longitudinal extension L of the carrier.
[0087] Furthermore, a mating thread 22b is provided in the lateral adjustment element 22, wherein the second operating element 23 engages with the mating thread 22b. For this purpose, a thread 23b is provided on the second operating element 23. A guide pin 24 is arranged on the support pin 4d, which is guided in one of the guide grooves 22a.
[0088] By manipulating (in this case, rotating) the second actuating element 23, the lateral adjustment element 22 can be moved in another direction orthogonal to the longitudinal extension L.
[0089] Because the lateral adjustment element 22 is guided in the connecting element 4c and the guide pin 24 is guided in the guide groove 22a, the movement of the lateral adjustment element 22 along another direction orthogonal to the longitudinal extension L of the carrier 5 will cause the connecting element 4c and the carrier 5, hinge 6 and movable furniture part 101 to move in the direction orthogonal to the longitudinal extension L of the carrier.
[0090] In this embodiment, the directions orthogonal to the longitudinal extension L of the carrier 5 and another direction orthogonal to the longitudinal extension L of the carrier 5 are arranged perpendicular to each other.
[0091] Figure 6c It also shows how the guide device 4 is supported on the guide member 3.
[0092] Figure 7 The lateral adjustment device 8 in its installed state is shown. Here, a second operating element 23, which can be operated with a screwdriver in the installed state, can also be seen.
[0093] Figure 8a and 8b A different view of another embodiment of the lateral adjustment device 8 is shown. This embodiment relates to a lower lateral adjustment device 8, or if two lateral adjustment devices 8 are provided.
[0094] Among them, the basic functional principle and operation of the lateral adjustment device 8 are as follows: Figures 6a to 6cThe lateral adjustment device 8 operates on the same principle. Specifically, a lateral adjustment element 22 is provided, which includes a guide groove 22a in which a guide pin 24 is guided. The lateral adjustment element 22 can be moved by manipulating a second operating element 23, thereby moving the carrier 5.
[0095] The difference in this embodiment is that the guide pin 24 is now directly arranged on the carriage 4a of the guide device 4.
[0096] In addition, a support element 4f is provided, which is used to fully guide and support the lateral adjustment element 22.
[0097] Figure 9a and 9b Different views of an embodiment of the tilt adjustment device 20 are shown. In this embodiment, the tilt adjustment device 20 is arranged in the end region 5b of the lower part of the carrier 5.
[0098] The tilt adjustment device 20 includes a pivot element 28, which is pivotally mounted on the guide device 4. A steering wheel 19 with a compensation device 17 is arranged on the pivot element 28.
[0099] The steering wheel 19 is wound with a rope 18 (not shown). Therefore, the steering wheel 19 and thus the pivot element 28 are fixed relative to the compensation device 17 and therefore also relative to the guide system 2.
[0100] Furthermore, an angled member 28b is rotatably supported on the pivot element 28. The angled member 28b has a mating thread 28a.
[0101] A third actuating element 27 is pivotally supported on the guide device 4. The third actuating element 27 has a thread 27a that engages with a mating thread 28a on the pivot rod 28. In this case, the actuating element 27 is designed as a bolt.
[0102] Because the steering wheel 19 and thus the pivot rod 28 are fixed relative to the guide system 2 via the rope 18, the operation of the third control element 27 causes the carrier 5 to move relative to the steering wheel 19 and thus relative to the guide system 2.
[0103] The tilt angle can be adjusted according to diagrams 2c and 2d via the tilt adjustment device 20.
[0104] Figure 10 A perspective view showing another embodiment of guide component 1 is displayed. (The image shows the button...) Figure 1a This guide component 1 is used in furniture 100.
[0105] The guiding assembly 1 further includes two guiding systems 2. Each guiding system 2 has a guide element 3 and a guiding device 4. The guiding device 4 is slidably supported on its respective guide element 3.
[0106] Each guide 3 is arranged on the fixed furniture component 102. In this embodiment, each guide 3 is oriented parallel to each other and spaced apart from each other in the direction of the longitudinal extension L of the carrier 5.
[0107] The carrier 5 is kinetically coupled to each guide device 4. Hinges 6 are arranged on the carrier 5, via which the folding sliding door is pivotally supported on the carrier 5. The hinges 6 are arranged directly on the carrier 5. Alternatively, the hinges 6 may be arranged on the retaining element 12 (see...). Figure 18 ).
[0108] The carrier 5 has two end regions 5a and 5b. In this embodiment, only the height adjustment device 7 is provided in the upper end region 5a. The lower end region 5b is provided with the height adjustment device 7, the lateral adjustment device 8, and the tilt adjustment device 20.
[0109] In addition, a track 106 can be seen, on which the carriage 105 is supported in a movable manner. A compensation device 17 can also be partially seen. The compensation device 17 is designed as a rope traction device.
[0110] Figures 11a to 11d Different views of an embodiment of the compensation device 17 are shown. In this figure, the direction of the rope 18 or the rope of the rope traction device is also shown separately again.
[0111] The rope 18 is arranged at a first end 18a on one of the two guides 3 and at a second end 18b on the other of the two guides 3. The effective length of the rope 18 is therefore constant.
[0112] Rope 18 is guided from the first end 18a to the upper steering wheel 34. The upper steering wheel 34 is kinematically coupled to the upper guide device 4 and / or the carrier 5.
[0113] Rope 18 is guided from the upper steering wheel 34 to the steering wheel 19, which turns rope 18 toward hinge 6. Then, rope 18 turns again via the lower steering device 35 and is guided upward along the carrier 5 parallel to the longitudinal extension L.
[0114] After the rope 18 is turned again to the upper steering wheel 34 by the upper steering device 36, the rope 18 is redirected from the upper steering wheel 34 to the steering wheel 19. From there, the rope 18 extends along the lower guide 3, turns around the guide 3 by means of the rear steering device 37, and is then fixed to the guide in the front region of the guide 3.
[0115] The overturning moment on the carrier 5, for example in the case of opening a folding sliding door, can be absorbed by the rope 18 and thus compensated.
[0116] Figures 12a to 12c Showing according to Figure 10 A perspective view of the guide device 4 of the guide component 1. Wherein, in Figure 12a The image shows the guide device 4 of the upper guide system 2. Figure 12b The image shows the guide device 4 of the lower guide system 2, and in Figure 12c The image shows an exploded view of the guide device 4 of the lower guide system 2.
[0117] The guiding device 4 includes a plurality of rollers 4b, which are movable on their respective guide members 3. The rollers 4b are rotatably supported on their respective carriages 4a. The carriages 4a are connected to a connecting element 4c, which in turn is connected to the carrier 5.
[0118] It can also be seen that the carrier 5 is at least partially surrounded by the guiding device 4, and especially by the connecting element 4c.
[0119] exist Figure 12a The guide device 4 includes a lateral adjustment device 8, while... Figure 12b The guiding device includes a lateral adjustment device 8, a height adjustment device 7, and a tilt adjustment device 20.
[0120] Accordingly, a first operating element 10, a second operating element 23, and a third operating element 27 can also be seen. The operating elements 10, 23, and 27 are inclined in a direction orthogonal to the longitudinal extension L of the carrier 5. Thus, the operating elements 10, 23, and 27 remain accessible even after the furniture 100 has been assembled.
[0121] exist Figure 12c Additionally, the height adjustment element 11 and the abutment element 14 of the height adjustment device 7 can also be seen. The height adjustment element 11 is supported by a connecting pin 11b and is slidable into the first elongated hole 38a of the transition element 38.
[0122] The support element 26, the lateral adjustment element 22, and the second operating element 23 of the lateral adjustment device 8 are also shown.
[0123] Figure 13a and13b Another embodiment of the height adjustment device 7 is shown. The height adjustment element 11 has an inclined surface 9 that abuts against the abutment element 14. The abutment element 14 is connected to the guide device 4 and passes through the transition element 38 via a second elongated hole 38b.
[0124] As previously described, the height adjustment element 11 is movably supported in the transition element 38. Therefore, the carrier 5 is supported on the abutment element 14 via the transition element 38 and the height adjustment element 11.
[0125] The first operating element 10 is rotatably supported in the transition element 38, and the first operating element engages with the mating thread 11a on the height adjustment element 11 with its thread 10a.
[0126] By manipulating (in this case, rotating) the first actuating element 10, the height adjusting element 11 is moved in another direction orthogonal to the longitudinal extension L of the carrier 5. The carrier 5 is raised or lowered via the inclined surface 9.
[0127] Figure 14a and 14b A different view of another embodiment of the lateral adjustment device 8 is shown. In this view... Figure 14a The image shows the lateral adjustment device 8 in the guide device 4 of the upper guide system 2, and in Figure 14b The image shows the lateral adjustment device in the guide device 4 of the lower guide system 2.
[0128] The transition element 38 is slidably supported on the connecting element 4c along the abutment element 14 in a direction orthogonal to the longitudinal extension L of the carrier 5.
[0129] In this embodiment, the lateral adjustment element 22 is arranged on the transition element 38 and has teeth 25. The teeth 25 are composed of a row of generally crescent-shaped protrusions.
[0130] The second actuating element 23 is rotatably supported on the support element 26 and has a spiral protrusion 23a on one side. In the assembled state, the spiral protrusion 23a engages with the teeth 25.
[0131] By manipulating (in this case, rotating) the manipulator 23, the transition element 38 and thus the carrier 5 move in a direction parallel to the longitudinal extension L of the carrier 5.
[0132] To prevent the tilted arrangement of the teeth 25 and the second operating element 23 from causing the carrier 5 to move in the other direction orthogonal to the longitudinal extension L of the carrier 5, the support element 26 is slidably arranged on the guide device 4 in the other direction orthogonal to the longitudinal extension L.
[0133] In this embodiment, the spiral protrusion 23a can also be designed as a circular shape. Even so, rotating the second actuating element 23 will cause the carrier 5 to move in a direction orthogonal to the longitudinal extension L of the carrier 5. However, in this case, there is no need for the toothed portion 25, and only a single protrusion needs to be provided on the lateral adjustment element 22.
[0134] Alternatively, a similar approach could be taken, with the spiral protrusion 23a designed as a circle and the second actuating element 23 eccentrically supported.
[0135] Figure 15 Another embodiment of the tilt adjustment device 20 is shown.
[0136] The carrier 5 is slidably arranged on the guide device 4 in another direction orthogonal to the longitudinal extension L of the guide member 3. For this purpose, elongated holes 4g are provided on the slide 4a of the guide device 4, and the carrier 5 is supported in these elongated holes.
[0137] Furthermore, the steering wheel 19 of the compensation device 17 is also arranged on the carriage 4a. The steering wheel 19 is fixed relative to the fixed furniture component 102 by a rope 18.
[0138] Furthermore, the third operating element 27 is rotatably supported on the carriage 4. The third operating element 27 has a thread 27a, which engages with a mating thread 5c provided on the carrier 5.
[0139] By manipulating (in this case, rotating) the third control element 27, the carrier 5 can be moved relative to the steering wheel 19 in another direction orthogonal to the longitudinal extension of the carrier 5.
[0140] With only one tilt adjustment device 20 installed, tilt adjustment can be performed according to diagrams 2c and 2d.
[0141] Figures 16a to 16c A different view of another embodiment of the tilt adjustment device 20 is shown.
[0142] In this embodiment, the tilt adjustment device 20 includes a fixing device 21 for fixing the rope 18 to the fixed furniture component 102.
[0143] The fixing device 21 includes a clamping device 29 with two jaws 29a. The rope 18 can be clamped between the jaws 29a.
[0144] A clamping device 29 is arranged on a mounting body 30, which is slidably arranged on the fixed furniture component 102 in a direction parallel to the longitudinal extension L of the carrier 5. For this purpose, two elongated holes 30a are provided on the mounting body 30.
[0145] As previously stated, the effective length of the rope 18 of the rope traction device 17 is constant. That is, the sliding of the fixing device 21 along the longitudinal extension L will change the proportion of the rope 18 before or after a specific reference point along the longitudinal extension L.
[0146] In other words, for example, during the upward sliding of the fixing device 21, there are fewer ropes 18 below the reference point and therefore more ropes 18 above the reference point.
[0147] The lower end region 5b of the carrier 5 then moves backward along another direction orthogonal to the longitudinal extension L, and the upper end region 5a moves forward, thereby adjusting the tilt angle of the carrier 5 and thus the tilt angle of the movable furniture component 101.
[0148] exist Figures 16a to 16c Also visible is a steering element 31, which causes the rope 18 to turn. The steering element 31 is part of the rope traction device 32.
[0149] The rope traction device 32 includes a base 32a and a retaining element 32b slidably supported on the base 32a. A steering element 31 is arranged on the retaining element 32b.
[0150] Furthermore, the rope traction device 32 includes an actuating element 32c, which is actuated via a torque limiter 32d. The actuating element 32c engages with a mating thread on the retaining element 32b. Actuating (in this case, rotating) the actuating element 32c causes the retaining element to move and thus the steering element 31 to move. As a result, the rope 18 can be tensioned or relaxed.
[0151] The torque limiter 32d prevents further manipulation of the actuating element 32c when a predetermined torque is reached. The predetermined torque can be selected such that the expected rope tension is also achieved when the predetermined torque is reached. Therefore, it is also possible to ensure that the rope 18 has the correct rope tension in a simple way.
[0152] Figure 17a and 17b A different view of another embodiment of the depth adjustment device 33 is shown. In this embodiment, the depth adjustment device 33 includes a depth adjustment element 39. The depth adjustment element 39 is supported such that it can slide in a direction orthogonal to the longitudinal extension L of the carrier 5.
[0153] The fourth operating element 40 for manipulating the depth adjustment device 33 is essentially designed in the form of a bolt. The fourth operating element 40 is rotatably supported on the retainer 41. The retainer 41 is connected to the guide 3.
[0154] Furthermore, the fourth operating element 40 engages with the mating thread on the depth adjusting element 39 via a thread. By operating (in this case, rotating) the fourth operating element 40, the depth adjusting element 39 can be moved in another direction orthogonal to the longitudinal extension L of the carrier 5.
[0155] The depth adjustment element 39 serves as an end stop for the upper guide body 4 and the carrier 5. Therefore, adjusting the depth adjustment element 40 relative to the fixed furniture component 102 is equivalent to adjusting the carrier 5 relative to the fixed furniture component 102 when the furniture 100 is in the closed position. Thus, depth adjustment can be performed according to Figure 2b.
[0156] Figure 18 A perspective view showing a portion of another embodiment of the guide component 1 is provided. In this view, the guide component 1 is connected to the button... Figure 3b The structure of the guide component 1 is very similar. However, the difference of the guide component 1 according to the current embodiment is that the hinge 6 is not directly arranged on the carrier 5.
[0157] A retaining element 12 is also provided, on which a hinge 6 is arranged. The retaining element 12 is arranged on the carrier 5 in a slidable manner.
[0158] exist Figure 18 The height adjustment device 7 and the lateral adjustment device 8 can be seen, wherein the height adjustment device 7 and the lateral adjustment device 8 are designed as a structural unit.
[0159] Figures 19a to 19d Different views of an embodiment of the combined height adjustment device 7 and lateral adjustment device 8 are shown.
[0160] The embodiment includes a base 15, which is connected to the retaining element 12 via bolts 12a. Inside the base 15, an intermediate element 16 is slidably supported on a guide pin 15a.
[0161] The intermediate element 16 is connected to the carrier 5 via a connector 42, which is also slidably supported on the guide pin 15a.
[0162] The second operating element 23 for operating the lateral adjustment device 8 has a thread 8a that engages with a mating thread on the connecting body 42. The second operating element 23 also has steps 8b through which the operating element 23 is rotatably, but axially fixedly, supported on the intermediate element 16.
[0163] By manipulating (in this case, rotating) the second manipulating element 23, the intermediate element 16, and thus the base 15 and the retaining element 12, can move relative to the connecting body 42 and thus relative to the carrier 5 in a direction orthogonal to the longitudinal extension L of the carrier 5.
[0164] The height adjustment device 7 includes a height adjustment element 11 having an inclined surface 9. The height adjustment element 11 is slidably supported on the base 15 via a first operating element 10. The first operating element 10 engages with the mating thread 11a of the height adjustment element 11 via a thread 10a.
[0165] The intermediate element 16 has another inclined surface 13, and the inclined surface 9 abuts against the other inclined surface.
[0166] By manipulating (in this case, rotating) the first operating element 10, the height adjustment element 11 slides along the first operating element 10. Simultaneously, the height adjustment element 11 also moves relative to the intermediate element 16 via the inclined surfaces 9 and 13 in a direction parallel to the longitudinal extension L of the carrier 5. Therefore, the base 15 and thus the holding element 12 also move relative to the connecting body 42 and thus relative to the carrier 5 in a direction parallel to the longitudinal extension L of the carrier 5.
[0167] That is, the retaining element 12 can be adjusted relative to the fixed furniture part 102 in the direction parallel to the longitudinal extension L of the carrier 5 via the height adjustment device 7, and the hinge 6 and the movable furniture part 101 can be adjusted in turn.
[0168] Figures 20a to 20d A different view of another embodiment of the lateral adjustment device 8 is shown. It is based on... Figure 18 Lateral adjustment device 8 at the lower part of the guide component 1.
[0169] The lateral adjustment device 8 according to this embodiment includes a base 15 which is kinetically coupled to a retaining element 12.
[0170] The connector 42 is slidably supported in the base 15 on the guide pin 15a. Furthermore, the connector 15 is kinematically coupled to the carrier 5.
[0171] The lateral adjustment element 22 is slidably supported in the connecting body 42. The lateral adjustment element 22 has a mating thread 22b that engages with the thread of the second operating element 23.
[0172] The second operating element 23 is rotatably, but axially non-slip, supported on the base 15 via the support device 26.
[0173] By manipulating (in this case, rotating) the second manipulating element 23, the base 15 and thus the retaining element 12 slide relative to the connecting body 42 and thus relative to the carrier 5 in a direction orthogonal to the longitudinal extension L of the carrier 5.
[0174] The retaining element 12, and therefore the hinge 6 and the movable furniture part 101, can thus be adjusted relative to the fixed furniture part 102 in a direction orthogonal to the longitudinal extension L of the carrier 5. This allows for adjustment according to... Figure 2g and 2h To achieve lateral adjustment.
[0175] List of reference numerals
[0176] 1. Bootstrap Component
[0177] 2. Boot System
[0178] 3 guides
[0179] 4. Guiding device
[0180] 4a carriage
[0181] 4b roller
[0182] 4C connecting elements
[0183] 4D support pin
[0184] 4e opening
[0185] 4f support element
[0186] 4g long hole
[0187] 5 carriers
[0188] 5a end region
[0189] 5b end region
[0190] 5c mating thread
[0191] 6 hinges
[0192] 7 Height Adjustment Device
[0193] 7a matrix
[0194] 7b groove
[0195] 7c support element
[0196] 8 Lateral adjustment devices
[0197] 9 inclined surfaces
[0198] 10 First Control Element
[0199] 10a thread
[0200] 11 height adjustment elements
[0201] 11a mating thread
[0202] 11b connecting pin
[0203] 11c protrusion
[0204] 12 holding elements
[0205] 12a bolt
[0206] 13 Another inclined surface
[0207] 14 Attached Components
[0208] 15 matrix
[0209] 15a pilot pin
[0210] 16 intermediate components
[0211] 17 Compensation Device
[0212] 18 ropes
[0213] 18a First end
[0214] 18b Second end
[0215] 19 steering wheels
[0216] 20 tilt adjustment device
[0217] 21 Fixing device
[0218] 22 Lateral adjustment elements
[0219] 22a guide chute
[0220] 22b mating thread
[0221] 23 Second control element
[0222] 23a Spiral protrusion
[0223] 23b thread
[0224] 24 guide pins
[0225] 25 teeth
[0226] 26 Support elements
[0227] 27 Third Control Element
[0228] 27a thread
[0229] 28 pivot elements
[0230] 28a mating thread
[0231] 28b angle piece
[0232] 29 Clamping device
[0233] 29a gripper
[0234] 30 installation body
[0235] 30a long hole
[0236] 31 Steering Components
[0237] 32 Rope Tensioning Device
[0238] 32a matrix
[0239] 32b holding element
[0240] 32C control element
[0241] 32d torque limiter
[0242] 33 Depth Adjustment Device
[0243] 34 Upper steering wheel
[0244] Steering mechanism at the bottom of 35
[0245] 36 Upper steering device
[0246] 37 rear steering mechanism
[0247] 38 Transition Elements
[0248] 38a First Long Hole
[0249] 38b Second Long Hole
[0250] 39 depth adjustment elements
[0251] 40 Fourth Control Element
[0252] 41. Maintain body
[0253] 42 connectors
[0254] 100 Furniture
[0255] 101 movable furniture parts
[0256] 101a door leaf
[0257] 102 Fixed Furniture Components
[0258] 103 well-shaped space
[0259] 104 furniture body
[0260] 104a interior space
[0261] 105 carriage
[0262] 106 orbits
Claims
1. A guide assembly (1) for guiding at least one movable furniture part (101), particularly a sliding door or folding sliding door, relative to a fixed furniture part (102), particularly a furniture wall, said guide assembly comprising: - At least one guiding system (2), the at least one guiding system having a guide (3) to be arranged on the fixed furniture component (102) and a guiding device (4) slidably supported on the guide (3). - A carrier (5), on which movable furniture parts (101) are to be fixed, and which are kinematically coupled to the guide device (4); as well as - A compensation device (17) for compensating the overturning moment of the carrier (5) or the at least one movable furniture component (101) arranged on the carrier about the overturning axis via a reset torque, the compensation device (17) including at least one rope traction device having at least one rope (18). - A steering wheel (19) kinetically coupled to the guide device (4), the steering wheel being used to steer the at least one rope (18); and - An angle adjustment device (20) for adjusting the angle of the movable furniture component (101); The feature is that, via the tilt adjustment device (20), the carrier (5) is movable relative to the at least one steering wheel (19), preferably in a direction parallel to the longitudinal extension of the guide (3); and / or the tilt adjustment device (20) includes at least one fixing device (21) for fixing the at least one rope (18), the at least one fixing device (21) being slidable relative to the carrier (5), preferably in a direction parallel to the longitudinal extension (L) of the carrier (5).
2. The boot component (1) as claimed in claim 1, wherein, The carrier (5) is at least partially surrounded by the guiding device (4).
3. The guide component (1) as described in claim 1 or 2, wherein, At least two guide systems (2) are provided, preferably, the at least two guide systems (2) are arranged on the fixed furniture component (102) in a parallel manner and / or spaced apart from each other in the direction parallel to the longitudinal extension (L) of the carrier (5).
4. The boot component (1) as claimed in any one of claims 1 to 3, wherein, The guide assembly (1) includes a third actuation element (27), which the carrier (5) can be adjusted relative to the at least one steering wheel (19) by manipulating, preferably rotating, the third actuation element (27).
5. The boot component (1) as claimed in claim 4, wherein, The third actuating element (27) is rotatably supported on or in the guide device (4) and has at least partially threaded (27a).
6. The boot component as claimed in any one of claims 1 to 5, wherein, The carrier (5) is slidably supported on the guide device (4) in the direction parallel to the longitudinal extension of the guide (3).
7. The boot component (1) as claimed in claim 5, wherein, A mating thread (5c) is provided on the carrier (5), wherein the thread (27a) of the third operating element (27) engages with the mating thread (5c) of the carrier (5).
8. The boot component (1) as claimed in any one of claims 1 to 5, wherein, A pivot element (28) is provided, which is pivotally arranged on the guide device (4), and the at least one steering wheel (19) is arranged on the pivot element (28).
9. The guide component (1) as described in claims 5 and 8, wherein, The pivot element (28) includes a mating thread (28a), and the thread (27a) of the third operating element (27) engages with the mating thread (28a) of the pivot element (28).
10. The guide component (1) as claimed in claim 9, wherein, The mating thread (28a) is rotatably arranged on the pivot element (28).
11. The boot component (1) as claimed in any one of claims 1 to 10, wherein, The at least one fixing device (21) includes a clamping device (29) for clamping the at least one rope (18).
12. The boot component (1) as claimed in claim 11, wherein, The fixing device (21) includes a mounting body (30), on which the clamping device (29) is arranged, and the mounting body (30)—preferably in a direction parallel to the longitudinal extension (L) of the carrier—is slidably supported on the carrier (5).
13. The boot component (1) as claimed in any one of claims 1 to 12, wherein, At least one steering element (31) is provided, through which the at least one rope (18) can be turned—preferably at a position before the at least one rope (18) enters the fixing device (21)—so that the at least one rope (18) is oriented substantially parallel to the longitudinal extension (L) of the carrier (5).
14. The boot component (1) as claimed in claim 13, wherein, The at least one steering element (31) is arranged on the carrier (5), preferably substantially aligned with the fixing device (21).
15. The guide component (1) as claimed in claim 13 or 14, wherein, At least one rope tensioning device (32) is provided for tensioning the at least one rope (18), and the steering element (31) is part of the rope tensioning device (32).
16. The boot component (1) as claimed in claim 15, wherein, The steering element (31) can move in the direction of the longitudinal extension parallel to the guide (3) by manipulating the rope tensioning device (32).
17. The boot component (1) as claimed in any one of claims 1 to 16, wherein, At least two hinges (6) are provided for pivotally supporting the movable furniture component (101) on the carrier (5).
18. The boot component (1) as claimed in claim 17, wherein, The guide assembly (1) includes: at least one height adjustment device (7) for adjusting the at least two hinges (6) relative to the at least one guide system (2) in a direction parallel to the longitudinal extension (L) of the carrier (5); and / or at least one lateral adjustment device (8) for adjusting the at least two hinges (6) relative to the at least one guide system (2) in a direction orthogonal to the longitudinal extension (L) of the carrier (5).
19. The boot component (1) as claimed in claim 18, wherein, In order to adjust the at least two hinges (6) relative to the at least one guide system (2) in a direction parallel to the longitudinal extension (L) of the carrier (5), the carrier (5) can be adjusted relative to the at least one guide system (2) in a direction parallel to the longitudinal extension (L) of the carrier (5) via the at least one height adjustment device (7); and / or in order to adjust the at least two hinges (6) in a direction orthogonal to the longitudinal extension (L) of the carrier (5), the carrier (5) can be adjusted relative to the at least one guide system (2) in a direction orthogonal to the longitudinal extension (L) of the carrier (5) via the at least one lateral adjustment device (8).
20. The guide component (1) as claimed in claim 18 or 19, wherein, The carrier (5) has two end regions (5a, 5b), and a lateral adjustment device (8) is arranged in each of the two end regions (5a, 5b), and at least one height adjustment device (7) is arranged in at least one of the at least two end regions (5a, 5b), preferably exactly one end region.
21. The boot component (1) as claimed in any one of claims 18 to 20, wherein, The height adjustment device (7) and the lateral adjustment device (8) constitute a common structural unit, and the height adjustment device (7) has at least one inclined surface (9), preferably at least one wedge-shaped surface, for adjusting the at least two hinges (6) relative to the at least one guide system (2) in a direction parallel to the longitudinal extension (L) of the carrier (5).
22. A piece of furniture (100) comprising at least one fixed furniture component (102), particularly a furniture wall, and at least one movable furniture component (101), particularly a sliding or folding sliding door, and a guide assembly (1) as described in any of the preceding claims, the guide assembly being used to guide the at least one movable furniture component (101) on the fixed furniture component (102), preferably, the at least one fixed furniture component (102) at least partially defining a well-shaped cavity (103) of the furniture (100), in which the at least one movable furniture component (101) can be arranged.