ADJUSTABLE FOOT FOR FLOOR-RESTING FURNITURE
Patent Information
- Application Number
- DE602022015840
- Authority / Receiving Office
- DE · DE
- Patent Type
- Patents
- Current Assignee / Owner
- Priority Date
- 2021-06-16
- Filing Date
- 2022-05-17
- Publication Date
- 2025-06-11
- Estimated Expiration
- 2042-05-17
AI Technical Summary
Existing adjustable feet for furniture lack robustness and load-bearing capacity due to the reduction in thickness of furniture components, leading to gear failure under increased loads.
The adjustable foot features a housing for the pinion that interposes between the pinion and the shell, allowing for increased robustness and load performance by providing a broader window for the pinion's teeth, which extend into the shell's thickness.
This design enhances the load-bearing capacity and durability of the adjustable foot, enabling it to handle significant loads during adjustment without compromising the stability of the furniture.
Description
TECHNICAL FIELD OF THE INVENTION
[0001] The present invention relates to an adjustable foot for furniture resting against the ground and in particular to a foot that is easy to produce and fit on the sides of said furniture. Furthermore, although the foot is provided with a simplified construction, some solutions are studied specifically to increase the performance and duration of the components.BACKGROUND OF THE INVENTION
[0002] Generally, the furniture resting against the ground are provided with levelling devices formed by adjustable feet so as to improve the stability thereof and make the shelves thereof perfectly horizontal despite the unevenness of the surfaces on which they rest. These feet are schematically formed by a hollow portion housed in the furniture and a movable portion which can be adjusted so as to slide inside and with respect to said hollow portion to allow the levelling of the furniture.
[0003] An example of a foot like the one exemplified is described in patent EP 2203089 or in patent EP2962601A1, in which the aforementioned movable portion can be adjusted by means of a screw-and-nut mechanism. The screw of the mechanism comprises a crown head which can be driven in rotation by means of a pinion element. Both the pinion element and the screw and nut screw are housed in a housing element in turn inserted into a seat obtained in the thickness of a shoulder of a furniture to be adjusted. In particular, the screw and the pinion are directly engaged to each other and to the housing element so as to eliminate the clearances of the relative kinematic chain which drives the aforementioned movable portion in motion with respect to the hollow one, that is the housing element.
[0004] This would advantageously allow to avoid the collar of the head of the screw in the seat obtained inside the housing element, according to the prior art. As a matter of fact, with the tendency to reduce the thicknesses of the walls of the furniture, even the feet and the components thereof, as a result, tend to decrease in thickness; therefore, even the aforementioned collar and the relative seat are reduced in thickness. However, this reduction would be to the detriment of the robustness and the kinematic transmission described above.
[0005] Though it seeks to overcome the problem relating to the improvement of the kinematic chain and the relative robustness, the foot described above does not allow to substantially increase the loads that can be borne with respect to the prior art. As a matter of fact, when the loads increase, the gears between the crown gear of the screw and pinion are subjected to significant forces which tend to ruin them, given the small dimensions required by the aforementioned decrease in thicknesses of the walls of the furniture.SUMMARY OF THE INVENTION
[0006] The main task of the subject matter of the present invention is to overcome the drawbacks of the prior art by providing a foot provided with technical solutions capable of overcoming the load of the gears.
[0007] The task and the objects outlined above, as well as others which will be more apparent hereinafter, are achieved by an adjustable foot for furniture as defined in claim 1.
[0008] Therefore, a first object of the invention is an adjustable foot provided with greater load performance than the known feet.
[0009] A second object is a foot that is easy to construct and equally easy to fit and adjust once fitted.BRIEF DESCRIPTION OF THE FIGURES
[0010] Advantages, characteristics and other objects of the invention will be apparent from the following description, provided by way of non-limiting example, with reference to the attached figures, wherein: figure 1 represents an exploded axonometric and partially sectional view of the foot according to the present invention; figures 2A-2B respectively represent an axonometric view of a full shell of the foot of figure 1 from two opposite perspectives; figures 3A-3E represent an axonometric view of a housing for a pinion of the foot of figure 1, respectively: according to a first angle, a second angle, a lateral view from a first angle, a lateral view from a second angle and a cross-sectional view along the line III-III of figure 3C; figures 4A-4C respectively represent a first, a second and a third cross-sectional longitudinal view of the foot of figure 1 in three assembly steps; figure 5 represents an axonometric view of the foot of figure 1 assembled, with a sheet for housing a flange of a shell in a first assembly position; figure 6 represents an axonometric view of the foot of figure 5 with the housing sheet in locking position on the flange of the shell; figure 7 represents a cross-sectional view of the foot of figure 4C along the line VII-VII. DETAILED DESCRIPTION OF THE INVENTION
[0011] With reference to figure 1, the foot of the invention is generally indicated with reference numeral 1. The foot 1 comprises a shell 2 for covering the mechanism for moving the foot formed by a screw 3 adjustably coupled to a nut screw 4 and by a pinion 5 for actuating the screw. The nut screw 4 comprises a widened portion 40 for the direct or indirect support on the floor.
[0012] In particular, the foot 1 is characterised by a housing 6 of the pinion adapted to contain the pinion 5 inside the bottom of the shell 2 so as to be interposed between these two elements. In other words, the pinion 5 is not directly engaged with the shell 2, but only with the screw 3, by interposing an element specifically designed to allow to increase the robustness of the engagement of the gears between pinion and screw.
[0013] The shell 2 is internally hollow body extended on a rectilinear axis X-X coinciding with the rectilinear axis of the foot. As shown in figure 2A, the shell 2 is advantageously formed by a single folded metal sheet preferably to form a cylinder with a first end 20 open and provided with a flange 22, and a second end 21 provided with a through axial hole 23 delimited by an axially folded edge 23A. Alternatively, with a suitable processing, the aforementioned hole 23 could be substantially closed by the edge 23A thereof. In particular, the two folded edges of the metal sheet are in contact along a shaped longitudinal slot 24.
[0014] Starting from the second end 21, the slot 24 comprises a first generally rectilinear segment preferably followed by a first radial aperture 25A determined by the widening of said slot by removing the material of the metal sheet, then a second radial aperture 26 partially covered by a first plastically deformable tab 27, and lastly at least one shape coupling fitting 28 adapted to lock the folding of the metal sheet in position. Preferably, there are two fittings. It should be observed that although optional, the first aperture has the advantage of extending the stem of the pinion 5 and optimise the guide of the pinion with the support 6 carrying chamfers and axial clearances out of the seat.
[0015] Furthermore, at least one second plastically deformable tab 29 is then obtained beside said slot 24; preferably, there are two tabs in a diametrically opposite position and preferably at 90° from the slot.
[0016] As shown in figure 2B, two notches 21A and 22A are present respectively on the edge 23A and on the flange 22 on the diametrically side with respect to the slot 24. These notches allow to fold the metal sheet to form the shell 2.
[0017] It should be observed that, according to an advantage of the present invention, in a position diametrically opposite to the first aperture 25A, the metal sheet of the shell 2 comprises a corresponding window 25B (figure 2B). Preferably, this window 25B comprises a tooth 25C projecting on the plane thereof preferably on the side closest to the second end 21 of the shell 2, so as to act as locking means against the accidental exit of the pinion 5 once fitted in operative position.
[0018] The great advantage of the shell 2 provided by a folded metal sheet lies in the ease of manufacture which can be obtained by cutting and subsequently folding and deforming a sheet web.
[0019] Alternatively, although not preferred, the shell 2 may be obtained according to the prior art such as for example a single excavated solid workpiece or two half-shells joined together. In any case, irrespective of the technique used, the shell 2 must have a window 25B on the side wall in proximity of the second end 21 with size such to allow the insertion of the head of the pinion 5 orthogonally with respect to the axis X-X. As a matter of fact, as explained in greater detail below, providing such wide aperture and the housing 6 of the pinion allows to increase the robustness performance of the foot adjustment gear mechanism.
[0020] The housing 6 of the pinion 5 (figures 3A-3E) is formed by a generally cylindrical block with main axis Y-Y which extends between a first base 60 and a second base 61 opposite to the first. Furthermore, it is passed through by a through hole 62 with a generally circular cross-section which extends with an axis Z-Z transversal with respect to said main axis Y-Y opening on the side wall 63 of the housing with two diametrically opposite apertures (figure 3D). A first aperture 64 has dimensions such to allow the head of the pinion 5 to pass through and a second aperture 65 (figures 3D-3E) instead has dimensions such to allow the stem of the pinion to pass through. As a matter of fact, the hole 62 is advantageously conformed in a first portion 66 which partially reproduces the shape of the head of the pinion and a second portion 67 which fittingly reproduces the stem of the pinion. An annular step 68 connects the two first 66 and second 67 portions (figure 3E). It should be borne in mind that there lacks the part of the first portion 66 of the hole 64 facing toward the second base 61, but there is only present the step 68 so that on one side the pinion does not protrude from the first aperture 25A and on the other side the gears of the pinion are entirely free to engage the gears of the head of the screw, as explained hereinafter.
[0021] The first base 60 is flat and it can optionally comprise a protrusion 69 for engagement with the hole 23 of the second end 21 of the shell 2, should said hole be present, so as to facilitate an automated assembly of the housing in the shell.
[0022] The second base 61 is instead rounded so as to fully adapt to the upper face of the head of the screw 3, as explained hereinafter, without interfering with the pinion / screw gears.
[0023] The pinion 5 is a per se conventional member in known levelling devices and it comprises a head 50 connected as a single piece with a stem 51 through a collar 52 so as to have a longitudinal axis A-A (figure 1). Both the head and the stem are generally cylindrical-shaped and the head 50 comprises several teeth 53 arranged in an orderly manner on a circular crown 54 so as to circumscribe an engagement seat (not shown) for a tool for driving the pinion in rotation.
[0024] It should be observed that providing the aforementioned housing 6 of the pinion and the broad window 25B of the shell allow the teeth 53 to have a greater extension in the direction longitudinal to the axis A-A. In other words, said pinion 5 comprises teeth 53 which partially occupy the overall dimensions of the thickness of the shell 2 (figure 7).
[0025] This greater extension advantageously increases the surface for engagement with the corresponding teeth of the head of the screw and, therefore, the stability during the movement of the gears with the result of increasing the robustness and the duration of the work thereof.
[0026] The screw 3 is also a member for transmitting the movement present in the other known levelling devices. It extends along a longitudinal axis coinciding with the axis X-X of the shell, when assembled therein. In particular, it comprises a head 30 with a crown gear 31 such to fittingly mesh with the teeth 53 of the pinion 5 and a threaded stem 32 externally connected to the crown through an annular step 33. The crown 31 then circumscribes a seat 34 (figure 4A) for housing the second rounded base 61 of the housing 6 of the pinion 5. It should be observed that also the teeth of the crown 31 have dimensions greater than the teeth of the crowns of the screws according to the prior art, specifically due to the fact that they are engaged with the corresponding teeth 53 of the pinion, which - as advantageously explained - are oversized with respect to those of pinions normally used. Obviously, the diameter of the head 30 shall not exceed the inner diameter of the shell.
[0027] The nut screw 4 is entirely conventional and it is formed by a body 41 which extends rectilinear along an axis coinciding with the axis X-X of the shell when fitted therein. The body is internally hollow, cylindrical and passed through by a threading adapted to be engaged with the threaded stem 32 of the screw 3. Furthermore, it is provided with a first perforated end 42 and provided with a flange 40 and a second end 43 for inserting the screw 3. The outer wall of the body 41 is also passed through by two longitudinal grooves 44 for engagement with the second tabs 29 of the shell 2 to lock the shell on the nut screw against undesired rotations. Preferably, at the flange 40, the inner wall of the body 41 comprises at least one seat 45 for engagement with the anti-rotation elements of a possible plate for resting on the ground, as described below. The seat is for example a space delimited by two ribs (not indicated in figure 1).
[0028] As a matter of fact, the flange 40 of the nut screw 4 may directly rest on a floor or it may rest on a plate 7 having the function of widening the base for resting on the floor, therefore stabilising the furniture onto which the foot of the invention is applied, and / or the function of protecting the flange. In addition, the plate may have an aesthetic function given that it may be made with any shapes, sizes, materials and / or colours as desired. In particular, the plate comprises a first generally flat face 70 for resting on the floor and a second face 71 opposite to the first and provided with anti-rotation elements 72 adapted to engage the at least one seat 45 of the inner wall of the body 41 of the nut screw 4. Preferably, these elements are teeth which engage said seat by interference. Furthermore, the plate 7 is provided with a perimeter edge 73 raised toward the second face 71 so as to define an annular seat (not indicated) for housing the flange 40 of the nut screw 4.
[0029] According to a preferred embodiment of the invention, the foot 1 comprises a sheet 8 (figure 1) for engagement with a flange 22 of the shell 2. As a matter of fact, the sheet is particularly advantageous given that the shape of the flange 22 of the shell 2 could be difficult to calibrate, resulting from the forming of a metal sheet folded on itself. Therefore, the addition of a sheet which corrects / increases the thickness and the radial extension of the flange, allows to ensure a better resting surface of the side of the furniture so as to freely and precisely manage such surface. In particular, the sheet 8 is substantially flat with a central hole 80, a first face 81 opposite a second face 82 and a perimeter edge 83 which extends toward said second face. Two locking wings 84, diametrically opposite with respect to the central hole, then extend from the perimeter edge.
[0030] With reference to the figures 1, 4-6, now described below is the fitting and the operation of the foot 1 according to the present invention.
[0031] Generally, first and foremost the screw 3 is engaged with the nut screw 4, at least for a certain portion of the respective threads. If present, the plate 7 is inserted into the hole of the first end 52 of the nut screw 4 lodging the respective teeth 72 in the appropriate seats 45 of said first end. At this point, the housing 6 of the pinion 5 is inserted into the shell 2, previously cut from a metal sheet with the shape described above and folded on itself so as to perfectly match the respective contact edges which form the aforementioned slot 24. In particular, the housing is inserted with the first face 64 of the hole 62 thereof facing toward the second aperture 25B of the shell and, as a result, the second face 65 is faced toward the first aperture 25A of the shell. Furthermore, the first base 60 is faced toward the shell (figure 4A).
[0032] The housing 6 slides in the shell 2 until the aforementioned faces are at the apertures of the shell. Now, the pinion 5 can be inserted into the second aperture 25B of the shell 2 on the side of the stem 51 until the latter engages the second portion 67 of the hole 6 for housing the pinion and the collar 52 abuts against the step 68 of said hole (figure 4B). It should be observed that the head 50 of the pinion 5 is internal with a part of the teeth 53 that occupies a part of the thickness of the wall of the shell 2, and the stem 51 which also occupies a part of the thickness of the wall of the shell.
[0033] The screw / nut screw 3,4 is subsequently inserted into the shell 2 until the seat 34 delimited by the crown gear 31 of the head 30 of the screw 3 rests against the second base 61 of the housing 6.
[0034] At this point, pushing the screw 3, seat 6 and pinion 5 upwards again allows to bring the surface 60 to rest on the inner surface of the folding 23 of the second end 21 of the shell 2 so that the protrusion 69 of the housing 6 engages said hole 23 and so that the portion of the head 50 of the pinion 5 proximal to the hole overcomes the tooth 25C of the second aperture 25B of the shell 2 (figure 4C).
[0035] Preferably, the sheet 8 is fitted onto the shell 2 by inserting it with the second face 82 facing toward the second end 21 of the shell, until it reaches the flange 22 on which it rests (figure 5). At this point, the two locking wings 84 are folded on said flange.
[0036] Lastly, the two second tabs 29 of the shell 2 are folded inwards so that each engages a corresponding groove 44 of the nut screw 4 (figure 6), while the first tab 27 is still folded inwards but so as to prevent the head 30 of the screw 3 moves away from the second end 21 of the shell 2 releasing the housing 6 from engagement with the hole 23 and, as a result, the head 50 of the pinion 5 from the locking of the tooth 25C of the second aperture 2B of the shell.
[0037] The foot 1 according to the present invention thus fitted is ready to be inserted into an appropriate seat obtained on the side of the furniture.
[0038] In the light of the above, it is clear that both the production and the fitting of the foot 1 are simple so as to facilitate the work of the operators. As a matter of fact, thanks to the metal sheet from which the shell 2 is obtained, the production is significantly simplified with respect to conventional shells made of several pieces or as a single piece already formed.
[0039] In addition, the use of a housing specifically designed to contain the pinion in the shell, providing a broad window on the shell such to allow a greater extension of the teeth and possibly also an appropriate aperture for housing the end of the stem of the pinion, allow to strengthen the meshing with the crown gear of the screw. As a result, the foot of the invention can bear significant loads even during the adjustment thereof. As a matter of fact, as shown in the section of figure 7, it can be observed that the teeth 53 of the pinion 5 extend until they occupy the space that would have been occupied by the wall of the shell 2. In other words, the circumferential and longitudinal extension of the window 25B is such to potentially allow the insertion of a head of a pinion with dimensions of the teeth greater than those normally used.
[0040] Still, the low number of components simplifies the manufacture and fitting, besides increasing the operational duration given the limited interaction between said components.
[0041] Numerous variants to the foot according to the present invention can be adopted by the person skilled in the art, but without departing from the scope of protection of the attached claims.
[0042] For example, the materials chosen for producing the components of the foot are generally made of metal, like steel, aluminium or alloys.
[0043] The embodiments may vary depending on the specific needs or preferences; for example, the outer surface of the foot may be cylindrical or polygonal-shaped, the plate 7 and therefore the sheet 8 may be round-shaped, square-shaped, polygonal-shaped or have any other shape, same case applying to different colours depending on the preferences.
Claims
1. Adjustable foot (1) for levelling furniture, comprising a shell (2) extending along a rectilinear axis (X-X) to cover a moving mechanism consisting in a screw (3) coupled to a nut-screw (4), the nut-screw being provided with an extended portion (40) for resting on a ground, and in a pinion (5) for moving the screw with respect to the nut-screw, characterized in that said shell (2) is formed by a metal sheet folded on itself with a first end (20) opened and with a flange (22), a second end (21) bounded by an edge (23A), and a slot (24) contacting the two longitudinal-folded edge, which slot defines a first radial aperture (25A) in a diametrically opposite position to which a radial window is obtained (25B) allowing the passage of the head (50) of said pinion (5), and in that it further comprises a housing (6) for rotatably housing on its axis (A-A) the pinion (5) within the shell (2) and interposing between said pinion and the shell.
2. Adjustable foot (1) according to claim 1, wherein from said second end (21) of the shell (2), said slot (24) comprises a first rectilinear segment followed by said first radial aperture (25A), a second radial aperture (26) partially covered by a first plastically deformable tab (27) and two subsequent interlocking means (28).
3. Adjustable foot (1) according to claim 2, wherein said shell (2) comprises at least one second plastically-deformable tab (29) lateral to said slot (24).
4. Adjustable foot (1) according to any one of claims 1 to 3, wherein two notches (21A;22A) are provided respectively on the edge (23A) of the second end (21) and on the flange (22) of the first end (20) of the shell (2) from the side diametrically opposite with respect to the slot (24).
5. Adjustable foot (1) according to any one of claims 1 to 4, wherein said window (25B) of the shell (2) comprises a tooth (25C) protruding onto its plane.
6. Adjustable foot (1) according to any one of claims 1 to 5, wherein said pinion (5) comprises teeth (53) which partially occupy the thickness of the shell (2).
7. Adjustable foot (1) according to any one of claims 1 to 6, wherein the housing (6) of the pinion (5) is generally cylindrical with a main axis (Y-Y) extending between a first base (60) and a second base (61) and is crossed by a hole (62) having an axis (Z-Z) transversal with the main axis (Y-Y), for housing said pinion (5).
8. Adjustable foot (1) according to claim 7, wherein said hole (62) of the housing (6) of the pinion (5) has a first aperture (64) allowing the passage of the head (50) of the pinion (5) and a second aperture (65) allowing the passage of the stem (51) of the pinion.
9. Adjustable foot (1) according to claim 7 or 8, wherein said second base (61) adapts complementary to the upper surface (34) defined by the crown gear (31) of the head (30) of the screw (3).
10. Adjustable foot (1) according to any one of claims 1 to 9, further comprising a sheet (8) for engaging the flange (22) of the shell (2) to correct / increase the thickness and the radial extension of the same flange.
11. Adjustable foot (1) according to any one of claims 1 to 10, further comprising a plate (7) for resting onto a floor, comprising a first face (70) generally plane to rest onto the floor and a second face (71) opposite to the first and provided with anti-rotating means (72) adapted to engage a seat (45) of the inner wall of the body (41) of the nut-screw (4).