Furniture or domestic appliance element, and method for installing a furniture or domestic appliance element

EP4648650A1Pending Publication Date: 2025-11-19PAUL HETTICH GMBH & CO KG
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Patent Information

Application Number
EP2024700577
Authority / Receiving Office
EP · EP
Patent Type
Applications
Current Assignee / Owner
Priority Date
2023-01-12
Filing Date
2024-01-10
Publication Date
2025-11-19

AI Technical Summary

Technical Problem

The existing methods for assembling furniture or household appliance elements with translational and rotational movement are time-consuming due to the need for precise positioning of guide bearings, which are often visible and require complex fastening, making the process cumbersome and aesthetically unappealing.

Method used

The use of positioning domes that protrude into recesses in the support plates to align and fix guide bearings, allowing for easier and more precise assembly by enabling the body part to be mounted directly to a wall with improved stability and accuracy, using a combination of spring-loaded and clamping mechanisms to secure the guide bearing in place.

Benefits of technology

This solution simplifies the assembly process by allowing the body part to be easily aligned and fixed to the support body, ensuring precise positioning and improved stability, while maintaining an aesthetically concealed fastening system, thus reducing installation time and enhancing the overall assembly efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to a furniture or domestic appliance element (1), having a support body (2) with a base support plate (21) and a cover support plate (22) and a body part (3) which is movably mounted relative to the support body (2) at least partly in a simultaneously translational and rotational manner and which comprises a base plate (31), a cover plate (32), and at least one lateral wall (33) and / or central wall. A guide bearing (4) is arranged between the cover support plate (22) and the cover plate (32) and / or between the base support plate (21) and the base plate (31), wherein the guide bearing (4) is fixed to the cover support plate (22) or the base support plate (21) via at least one positioning mandrel (8), and the positioning mandrel (8) protrudes into a recess (25) in the cover support plate (22) or the base support plate (21) and / or an opening (43) of a first bearing part (41) of the guide bearing (4).
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Description

[0001] Furniture or household appliance element and method for assembling a furniture or household appliance element

[0002] The present invention relates to a furniture or household appliance element according to the preamble of claim 1 and to a method for assembling a body part, which is mounted so as to be at least partially simultaneously translationally and rotationally movable relative to a support body, in the support body of a furniture or household appliance element.

[0003] Such furniture or household appliance elements such as shelves or racks, in which a body part is mounted in a support body so that it can move both rotationally and translationally, are known, for example, from DE 10 2019 109 866 A1.

[0004] In particular, to prevent dirt from entering the guide bearing(s) which enable the translational and rotational movement of the body part relative to the support body, as well as for aesthetic reasons, it is desirable to mount the body part in the support body in such a way that no fastening elements are visible to the outside when viewing the furniture or household appliance element.

[0005] Typically, the guide bearing is screwed to the respective locations of a base plate or a cover plate of the body part and to a base support plate and a cover support plate of the support body.

[0006] Since the guide bearing must be positioned very precisely on the support body and the body part to ensure the translational and rotational movement of the body part, this is very time-consuming when assembling the two components.

[0007] The object of the present invention is to enable, in addition to the concealed mounting of the guide bearing, a simpler mounting of the body part on the support body.

[0008] This object is achieved by a furniture or household appliance element having the features of claim 1. The object is furthermore also achieved by the assembly methods according to claims 12, 14 and 15. The furniture or household appliance element according to the invention has a support body with a base support plate, a cover support plate and optionally at least one side wall, as well as a body part mounted so as to be movable at least partially simultaneously in translation and rotation relative to the support body, said body part having a base plate, a cover plate and at least one side wall and / or a central wall.

[0009] A guide bearing is arranged between the cover support plate and the cover plate and / or between the base support plate and the base plate.

[0010] The guide bearing is fixed to the cover support plate or the base support plate via at least one positioning dome, wherein the positioning dome protrudes into a recess in the cover support plate or the base support plate and / or a recess of a first bearing part of the guide bearing.

[0011] By using at least one such positioning dome, it is possible to easily align the guide bearing including the body part precisely to the support body.

[0012] By equipping the body part with a central wall, two storage areas can be separated from each other, for example.

[0013] In addition to a conventional support body with a base support plate, a top support plate and at least one side wall, the body part, which is at least partially mounted for simultaneous translational and rotational movement, can only be fixed directly to a room wall via a base support plate and a top support plate, whereby the base support plate and the top support plate form the support body in this case.

[0014] Advantageous embodiments of the invention are the subject of the subclaims.

[0015] According to an advantageous design variant, the guide bearing is fixed to the top support plate or the bottom support plate via two positioning domes. This enables both further improved stability of the mount and further improved precision in positioning the body part on the support body.

[0016] According to an advantageous embodiment, the at least one positioning dome is fixed in the recess of the first bearing part of the guide part. This enables the pre-assembly of the guide bearing on the body part, which can then be precisely positioned by inserting the at least one positioning dome into the corresponding recess in the top support plate or the bottom support plate.

[0017] According to an advantageous further development, the at least one positioning dome is fixed in the recess of the first bearing part of the guide bearing in a spring-loaded manner.

[0018] This also enables the body part to be mounted on the support body by inserting the body part horizontally between the base support plate and the cover support plate of the support body, whereby the positioning dome(s) are pressed into the recess of the first bearing part under spring load when inserted and are only pushed out of the recess by the spring force when the recess in the cover support plate and / or the base support plate is reached, which enables particularly simple mounting of the body part on the support body.

[0019] According to an advantageous alternative embodiment, the at least one positioning dome is fixed in the recess in the cover support plate or the base support plate and projects into the recess of the first bearing part of the guide bearing.

[0020] Here too, the at least one positioning dome is preferably fixed in the recess in the cover support plate or the base support plate under spring load, so that here, analogous to the previous exemplary embodiment, the body part can again be inserted horizontally between the base support plate and the cover support plate of the support body. In this case, upon reaching the desired assembly position, the respective positioning dome is pressed out of the recess in the cover support plate or the base support plate by the spring force into the recess of the first bearing part of the guide bearing. A preferred embodiment of the guide bearing has at least one guide cam track and a guide element guided in the guide cam track, which are arranged on mutually facing surfaces of the cover support plate and the cover plate or of the base support plate and the base plate.

[0021] This guide bearing further comprises a pivot bearing and a linear guide, with connecting parts which are displaceable relative to one another in a translation direction, one of which is arranged on the cover support plate or the cover plate and the other is mounted via the pivot bearing on the other of the cover support plate or the cover plate and / or one connecting part is arranged on the base support plate or the base plate and the other is mounted via the pivot bearing on the other of the base support plate or the base plate.

[0022] According to a further advantageous embodiment, the pivot bearing has a ball socket arranged on the first bearing part of the guide bearing, in which a ball head arranged on a second bearing part of the guide bearing is received.

[0023] With a pivot bearing designed in this way, a division of the guide bearing into two separate bearing parts is possible, so that a base bearing part of the guide bearing can be mounted in advance on the base support plate or the cover support plate of the support body using the at least one positioning dome and when the support body is joined to the body part, the guide bearing is brought together by coupling the ball head with the ball socket.

[0024] The first bearing part of the guide bearing preferably has the linear guide and the guide element and the second bearing part of the guide bearing has the guide cam track.

[0025] According to a further advantageous embodiment, the at least one positioning dome has a base body with a cylindrical outer surface for receiving in the recess of the cover support plate or the base support plate and at least one holding element for holding in the recess of the first bearing part of the guide bearing.

[0026] According to an advantageous further development, the at least one holding element for holding in the recess of the first bearing part of the guide bearing is designed as a continuous web projecting radially beyond the outer surface of the casing, the outer diameter of which is larger than a diameter of the recess.

[0027] This allows the positioning dome to be held in the recess of the first bearing part of the guide bearing in both the spring-loaded and the non-spring-loaded version.

[0028] In a further preferred embodiment, the outer surface of the base body is formed in several parts in the circumferential direction, with clamping tongues provided between fixed wall cylinder elements, which, when received in the recess of the cover support plate or the base support plate, press against an inner wall of the recess.

[0029] This enables a particularly stable mounting of the positioning dome in the recess of the cover support plate or the base support plate.

[0030] In yet another preferred embodiment, the base body has a central clamping element receptacle in which a clamping element is accommodated that can be tightened axially to the cylindrical outer surface of the casing and with which the clamping tongues can be pressed radially outwards to secure the positioning dome in the recess of the cover support plate or the base support plate.

[0031] This design variant enables the clamping tongue to be actively pushed outwards to further improve the securing of the positioning dome in the recess of the cover support plate or the base support plate.

[0032] A method according to the invention for assembling a body part that is mounted so as to be movable at least partially simultaneously in translation and rotation relative to the support body in the support body of a furniture or household appliance element has the following method steps: a) fastening a first guide bearing with at least one positioning dome fixed thereto to the base plate of the body part, b) placing the body part on the base support plate of the support body in such a way that the at least one positioning dome dips into the recess in the base support plate, c) mounting the cover support plate of the support body on the at least one side wall of the support body.In a preferred development of this method, the first bearing part of a second guide bearing with the ball socket of the pivot bearing arranged on the first bearing part and at least one positioning dome fixed thereto is fastened to the cover support plate of the support body before step c) in such a way that the at least one positioning dome dips into the recess in the cover support plate.

[0033] Furthermore, the second bearing part of a second guide bearing with the ball head of the pivot bearing arranged on the second bearing part is fastened to the cover plate of the body part before step c).

[0034] The ball socket of the pivot bearing is then placed onto the ball head of the second bearing part of the second guide bearing in step c).

[0035] In an alternative method for assembling a body part, which is mounted so as to be at least partially simultaneously translationally and rotationally movable relative to the support body, in the support body of a furniture or household appliance element, the following method steps are used: a) inserting at least one positioning dome into the recess in the base support plate of the support body, forming a resilient mounting of the positioning dome in the recess, b) fastening a first guide bearing to the base plate of the body part, c) inserting the body part between the base support plate and the cover support plate of the support body in such a way that the at least one positioning dome dips into the recess in the first bearing part of the guide bearing when it reaches the recess.

[0036] In an alternative method to this, the following method steps take place: a) fastening a first guide bearing with at least one positioning dome spring-mounted thereon to the base plate of the body part, b) inserting the body part between the base support plate and the cover support plate of the support body in such a way that the at least one positioning dome dips into the recess in the base support plate when it reaches the latter.

[0037] Preferred embodiments of the invention are explained in more detail below with reference to the accompanying drawings. They show:

[0038] Fig. 1 is a schematic perspective view of a furniture element with a first, non-translationally and rotationally movable support body and a translationally and rotationally movable body part in the closed position,

[0039] Fig. 2 shows a representation of the furniture element corresponding to Figure 1 with the body part moved out of the closed position,

[0040] Fig. 3 is a partial exploded view of the furniture element. Fig.

[0041] 1 and Fig. 2 before assembly of the body part and fixing of a cover support plate of the support body,

[0042] Fig. 4 a schematic perspective view of the

[0043] Body part with guide bearing mounted on its cover plate with positioning domes protruding from a first bearing part,

[0044] Fig. 5 is a plan view of an underside of the body part with a guide bearing mounted under the base plate of the body part, also with positioning domes protruding from a first bearing part,

[0045] Fig. 6a is a perspective view of the individual part shown in Fig. 5

[0046] Guide bearing with spring-loaded positioning domes in the first bearing part,

[0047] Fig. 6b a representation corresponding to Fig. 6a with positioning domes pressed into the recesses in the first bearing part,

[0048] Fig. 7 is a partial exploded view of the guide bearing according to

[0049] Fig. 6a and Fig. 6b before mounting the positioning domes,

[0050] Fig. 8 is a top view of the guide bearing with positioning domes inserted into the recesses, Fig. 9 is a schematic perspective view of an upper

[0051] Part of the furniture element with the second bearing part of the guide bearing mounted on a cover plate of the body part and the first bearing part with a two-part pivot bearing arranged above it,

[0052] Fig. 10 is a side sectional view of the guide bearing mounted on the cover plate of the body part with the guide bearing assembled by placing a ball socket of the pivot bearing on a ball head of the pivot bearing,

[0053] Fig. 11 is a view of the furniture element corresponding to Fig. 9 to show the assembly of the furniture element with the first bearing part of the guide bearing attached to the cover plate of the support body and the second bearing part attached to the cover plate of the body part,

[0054] Fig. 12a, 12b schematic perspective representations of a variant of a positioning dome,

[0055] Fig. 13a, 13b schematic perspective representations of the

[0056] Figures 12a and 12b show the positioning dome in an exploded view with the clamping element and screw removed,

[0057] Fig. 14 is a schematic exploded view of an alternative

[0058] Design variant of a guide bearing,

[0059] Fig. 15a is a schematic isometric view of the first

[0060] Bearing part of the guide bearing according to Fig. 14,

[0061] Fig. 15b is another perspective view of the first

[0062] Bearing part of the guide bearing Fig. 14 in a view from below,

[0063] Fig. 16 an isometric view of two alternative

[0064] Design variants of positioning domes for use with the guide bearing according to Fig. 14, Fig. 17 a schematic isometric representation of a cover support plate or base support plate of a support body with recesses,

[0065] Fig. 18 an isometric view of the guide bearing before

[0066] Mounting on the deck support plate or the floor support plate and

[0067] Fig. 19 shows the fully assembled guide bearing via the positioning domes on the cover support plate or the base support plate.

[0068] In the following description of the figures, terms such as top, bottom, left, right, front, back, etc., refer exclusively to the exemplary representation and position of the furniture element, the support body, the body part, the guide bearings, the positioning domes, and the like chosen in the respective figures. These terms are not to be understood as limiting; i.e., these references may change due to different working positions or the mirror-symmetrical design, etc.

[0069] In Figs. 1 to 3, reference numeral 1 denotes an embodiment of a furniture or household appliance element according to the invention. In all the embodiments shown in the figures, the furniture or household appliance element 1 is always depicted as a furniture element. In principle, however, a design as a household appliance element, for example, as a wine cooler element, is also conceivable.

[0070] The furniture or household appliance element 1 has a support body 2, with a base support plate 21 and a cover support plate 22 and at least one side wall 23 connecting the base support plate 21 to the cover support plate 22.

[0071] The support body 2 can alternatively also be designed as a wall bracket with a top support plate 22 and a bottom support plate 21, for example if the furniture or household appliance element 1 is arranged in a corner or niche of a room. A side wall 23 connecting the top support plate 22 and the bottom support plate 21 is accordingly not necessary in such a design variant. In the exemplary embodiment shown in Figures 1 to 3, the support body is designed as a cabinet element and, in addition to the bottom support plate 21 and the top support plate 22, consists of two side walls 23, a rear wall and a front wall 24 designed as a pivoting door, with which the interior space closed off by the side walls 23 and the rear wall can be opened and closed. In particular, the side walls 23 are firmly fixed to the bottom support plate 21 and the top support plate 22.

[0072] In the embodiment shown, the base support plate 21 and the cover support plate 22 protrude laterally in an X-direction beyond a central side wall 23 to accommodate a body part 3 which is held on the support body 2 so as to be at least partially simultaneously translationally and rotationally movable.

[0073] The body part 3 also initially has a base plate 31 and a cover plate 32 as well as at least one side wall 33 connected to the base plate 31 and the cover plate 32.

[0074] As shown in Figures 2 and 3, a guide bearing 4 is arranged between the cover support plate 22 of the support body 2 and the cover plate 32 of the body part 3, with which the at least partially simultaneous translational and rotational movement of the body part 3 relative to the support body 2 is enabled.

[0075] Figure 4 shows the body part 3 in individual representation with guide bearing 4 arranged on the cover plate 32.

[0076] As further shown in Figure 5, preferably or in a conceivable variant, as an alternative to the arrangement of the guide bearing 4 on the cover plate 32, a guide bearing 4 is arranged here on the base plate 31 of the body part 3.

[0077] A first embodiment of such a guide bearing 4 is shown in Figures 6a, 6b, 7 and 8.

[0078] The guide bearing 4 has at least one guide cam track 52 and a guide element 51 guided in the guide cam track 52. In the embodiment shown here, the guide element 51 is attached to a first bearing part 41 of the guide bearing 4. The guide cam track 52 is integrally formed on a second bearing part 42 of the guide bearing 4.

[0079] In principle, it is also conceivable to attach the guide element 51 and the guide cam track 52 to mutually facing surfaces of the cover support plate 22 and the cover plate 32 or the base support plate 21 and the base plate 31.

[0080] In the embodiment shown, a linear guide 7 is also arranged or fastened to the first bearing part 41 of the guide bearing 4, with connecting parts that can be displaced relative to one another in a translation direction A.

[0081] In the exemplary embodiment shown, the linear guide 7 has a guide rail 71 arranged on the first bearing part 41, on which a guide rail 72 is mounted so as to be displaceable in the translation direction A. A plate-shaped rotary axis bearing 73 is fastened to this guide rail 72, on which a first component of a rotary bearing 6 (not shown here) is arranged, which, together with a corresponding second component of the rotary bearing 6 arranged on the second bearing part 42, forms the rotary bearing 6.

[0082] In order to fix the first bearing part 41 of the guide bearing 4 to the cover support plate 22 or the base support plate 21 of the support body 2, the guide bearing 4 has at least one positioning dome 8 which, in the assembled state, protrudes into a recess 25 in the cover support plate 22 or the base support plate 21 and / or into a recess 43 of the first bearing part 41 of the guide bearing 4.

[0083] Preferably, the guide bearing 4 is fixed to the cover support plate 22 or the base support plate 21 via two positioning domes 8, as shown in the embodiments shown in the figures.

[0084] In the exemplary embodiments shown in Figures 4 to 11, the positioning domes 8, in the assembled state, protrude into the recess 25 in the cover support plate 22 or the base support plate 21. Such a recess 25 is shown as an example in Figure 17. The positioning domes 8 protrude from a recess 43 in the first bearing part 41 on a side of the first bearing part 41 facing away from the second bearing part 42 and, in one embodiment variant (not shown here), are fixedly fixed to the first bearing part 41.

[0085] In a further embodiment, as shown in Figures 6a and 6b, the positioning domes 8 are fixed in the recess 43 of the first bearing part 41 of the guide bearing 4 in a spring-loaded manner.

[0086] This makes it possible for the positioning domes 8 to be pressed into the space between the first bearing part 41 and the second bearing part 42 against the force of a spring (not shown here).

[0087] This variant enables the body part 3 to be mounted on the support body 2 in such a way that the body part 3 can be pushed horizontally between the base support plate 21 and the cover support plate 22, wherein the positioning domes 8 are pressed into the position shown in Figure 6b before being pushed in, thus enabling the body part 3 to be pushed forward into the mounting position.

[0088] As soon as the assembly position is reached, the positioning domes 8 are pressed into the recesses 25 in the cover support plate 22 or the base support plate 21 by the spring force and thus fix the guide bearing 4 in its working position.

[0089] The positioning domes 8 (and accordingly also the shape of the recesses 25) can be designed differently.

[0090] In a preferred embodiment, as shown in Figures 12a, 12b, 13a and 13b, each of the positioning domes 8 has a base body 81 with a cylindrical outer surface 84 for receiving in the recess 25 of the cover support plate 22 or the base support plate 21 and at least one holding element for holding in the recess 43 of the first bearing part 41 of the guide bearing 4.

[0091] The holding element is designed here as a circumferential web 85 projecting radially beyond the outer surface 84 of the casing, the outer diameter of which is larger than the diameter of the recess 43. Accordingly, the recesses 25 are designed here as cylindrical blind holes.

[0092] Furthermore, in the embodiment shown in Figures 12a, 12b, 13a and 13b, the outer shell surface 84 of the base body 81 is formed in several parts in the circumferential direction, with clamping tongues 86 provided between fixed wall cylinder elements 87, which, when received in the recess 25 of the cover support plate 22 or the base support plate 21, press against an inner wall of the recess 25.

[0093] The clamping tongues 86 can additionally be formed with a toothing, as shown in Figures 12a, 12b, 13a and 13b.

[0094] In order to further increase the at least predominantly frictional holding of the positioning dome 8 in the recess 25, in the embodiment shown in Figures 12a, 12b, 13a and 13b, the base body 81 is additionally provided with a central clamping element receptacle in which a clamping element 82 is received which can be tightened axially to the cylindrical outer surface 84 and with which the clamping tongues 86 can be pressed radially outwards to secure the positioning dome 8 in the recess 25 of the cover support plate 22 or the base support plate 21.

[0095] The tightening of the clamping element 82 is preferably carried out via a tightening screw 83, which is accessible via a tool opening 34 in the base plate 31 or the cover plate 32 of the body part 3. This enables a partially positive fixation of the positioning dome 8 in the recess 25 by pressing the clamping tongues 86, in particular the toothing of the clamping tongues, into the inner side wall of the recess 25.

[0096] In the preferred embodiment shown in Figures 13a and 13b, the clamping element 82 is formed with a conically shaped outer surface 822, which, in the assembled state, presses against a correspondingly conically shaped pressure surface 861 on the inside of the web 86. To prevent rotation of the clamping element 82, the clamping element 82 is formed with a lateral flattening 821, which bears against a correspondingly straight inner surface 871 of one of the wall cylinder elements 87. The tightening screw 83 is received in a central screw bore 823 in the clamping element 82.

[0097] In an alternative embodiment, shown in Figure 16, the positioning dome 8 has a smooth cylindrical outer surface 84, optionally interrupted by axially extending grooves 89 serving to prevent rotation. This embodiment of positioning domes 8 serves to fix the positioning domes 8 in the respective recess 25 in the cover support plate 22 or the base support plate 21.

[0098] In one embodiment, the positioning domes 8 are also spring-loaded and fixed in the recesses 25 in the cover support plate 22 or the base support plate 21.

[0099] The holding elements for holding in the recess 43 of the first bearing part 41 of the guide bearing 4 are designed here as locking elements 90 or locking receptacles 88, which are formed protruding from an end face of the respective positioning dome 8.

[0100] The first bearing part 41 of the guide bearing 4 is preferably designed according to Figures 15a, 15b, 18, and 19. Here, one of the recesses 43 has a locking tongue 44 that protrudes into the locking receptacle 88 of the positioning dome 8 in the rusted state.

[0101] The second of the recesses 43 shown has on its peripheral edge a plurality of locking lugs 44 which engage with the locking receptacles 88 of the positioning dome 8 and thus cause rusting and thus bring about a stationary fixation of the guide bearing 4 on the base support plate 21 or the cover support plate 22.

[0102] Figure 19 shows the assembled state of the first bearing part 41 of the guide bearing 4 on the base support plate 21 or the cover support plate 22.

[0103] To further facilitate the assembly of the body part 3 on the support body 2, in a special embodiment variant, shown in Figures 9 to 11, the pivot bearing 6 is constructed such that the first bearing part 41 and the second bearing part 42 can be attached separately from one another in advance to the cover support plate 22 or the base support plate 21 of the support body 2 and the base plate 31 or cover plate 32 of the body part 3.

[0104] As shown by way of example in Figure 9, the second bearing part 42 is attached in advance to the cover plate 32 of the body part 3, while the first bearing part 41, as shown in Figure 11, is attached to the cover support plate 22 of the support body 2 by means of the positioning domes 8.

[0105] In this embodiment, the pivot bearing 6 has a ball socket 61 arranged on the first bearing part 41 of the guide bearing 4, in which a ball head 62 arranged on the second bearing part 42 of the guide bearing 4 is received in the assembled state, as shown in the sectional view according to Figure 10.

[0106] The guide bearing 4 is assembled here when the cover support plate 22 is placed on the support body 2 and the body part 3.

[0107] The exemplary embodiments shown enable various advantageous methods for assembling the body part 3, which is mounted in the support body 2 so as to be at least partially simultaneously translationally and rotationally movable relative to the support body 2.

[0108] Thus, the embodiments shown in Figures 5 to 13 enable, in a first method step a), fastening of a first guide bearing 4 with at least one positioning dome 8 fixed thereto to the base plate 31 of the body part 3.

[0109] Subsequently, in a method step b), the body part 3 is placed on the base support plate 21 of the support body 2 in such a way that the at least one positioning dome 8 is inserted into the recess 25 in the base support plate 21.

[0110] In a method step c), the top support plate 22 of the support body 2 is then mounted on the support body 2 on at least one side wall 23 of the support body 2. In the case of positioning domes 8 that are not arranged resiliently but stationary on the first bearing part 41 of the guide bearing 4, the body part 3 must be placed from above onto the bottom support plate 21 of the support body 2.

[0111] If the positioning domes 8 are resiliently mounted on the first bearing part 41 of the guide bearing 4, it is also possible to insert the body part 3 between the base support plate 21 and the cover support plate 22 of the support body 2, wherein the positioning domes 8 here dip into the recess 25 in the base support plate 21 when they reach it.

[0112] In the embodiment variant in which the upper guide bearing 4, preferably arranged between the cover support plate 22 and the cover plate 32, in the form of a first bearing part 41 and a second bearing part 42, can be coupled to one another via the ball socket-ball head connection, in a further method step d), the first bearing part 41 of the second guide bearing 4, with the ball socket 61 of the pivot bearing 6 arranged on the first bearing part 41 and at least one positioning dome 8 fixed thereto, is preferably fastened to the cover support plate 22 of the support body 2 before step c). The at least one positioning dome 8 thereby penetrates into the recess 25 in the cover support plate 22.

[0113] Depending on the design of the positioning domes 8, it may be useful to additionally screw the first bearing part 41 to the cover support plate 22.

[0114] Furthermore, the second bearing part 42 of the second guide bearing 4 is fixed to the cover plate 32 of the body part 3 before step c). The ball head 62 of the pivot bearing 6 is arranged in the second bearing part 42.

[0115] Finally, together with the assembly of the cover support plate 22, the ball socket 61 of the pivot bearing 6 is placed onto the ball head 62 of the second bearing part 42 of the second guide bearing 4 in step c).

[0116] Finally, the embodiment shown in Figures 14 to 19 enables a method for assembling a body part 3 in the support body 2, which body part is mounted so as to be at least partially simultaneously translationally and rotationally movable relative to the support body 2, in which, in a step a), the at least one positioning dome 8 is inserted into the recess 25 in the base support plate 21 of the support body 2, forming a resilient mounting of the positioning dome 8 in the recess 25.

[0117] Subsequently or previously, in a step b), a first guide bearing 4 is attached to the base plate 31 of the body part 3.

[0118] Finally, in a step c), the body part 3 is inserted between the base support plate 21 and the cover support plate 22 of the support body 2 in such a way that the at least one positioning dome 8 is immersed in the recess 43 in the first bearing part 41 of the guide bearing 4 when it reaches it.

[0119] List of reference symbols

[0120] 1 furniture element

[0121] 2 support body

[0122] 21 Floor support plate

[0123] 22 Deck support plate

[0124] 23 Side wall

[0125] 24 front wall

[0126] 25 recess

[0127] 3 Body part

[0128] 31 Base plate

[0129] 32 cover plate

[0130] 33 Side wall

[0131] 34 Tool opening

[0132] 4 guide bearings

[0133] 41 first bearing part

[0134] 42 second bearing part

[0135] 43 recess

[0136] 44 locking tongue

[0137] 51 Guide element

[0138] 52 Guide cam track

[0139] 6 pivot bearings

[0140] 61 ball socket

[0141] 62 ball head

[0142] 7 Linear guide

[0143] 71 Guide rail

[0144] 72 guide rail

[0145] 73 rotary axle bearings

[0146] 8 Positioning dome

[0147] 81 base bodies

[0148] 82 clamping element 821 flattening

[0149] 822 lateral surface

[0150] 823 screw hole

[0151] 83 Tightening screw 84 Outer shell surface

[0152] 85 Bridge

[0153] 86 clamping tongue

[0154] 861 pressure surface

[0155] 87 Wall cylinder element 871 Inner surface

[0156] 88 locking mount

[0157] 89 groove

[0158] 90 locking element x direction y direction z direction

[0159] A Translation direction

Claims

Claims 1 . Furniture or household appliance element (1 ), comprising - a support body (2) with a base support plate (21) and a cover support plate (22), - a body part (3) mounted at least partially simultaneously in translation and rotation relative to the support body (2) with a base plate (31), a cover plate (32) and at least one side wall (33) and / or a central wall, - wherein a guide bearing (4) is arranged between the cover support plate (22) and the cover plate (32) and / or between the base support plate (21) and the base plate (31), characterized in that - the guide bearing (4) is fixed to the cover support plate (22) or the base support plate (21) via at least one positioning dome (8), wherein the positioning dome (8) projects into a recess (25) in the cover support plate (22) or the base support plate (21) and / or a recess (43) of a first bearing part (41) of the guide bearing (4).

2. Furniture or household appliance element according to claim 1, characterized in that the guide bearing (4) is fixed to the cover support plate (22) or the base support plate (21) via at least two positioning domes (8).

3. Furniture or household appliance element according to claim 1 or 2, characterized in that the at least one positioning dome (8) is fixed in the recess (43) of the first bearing part (41) of the guide bearing (4) and projects into the recess (25) in the cover support plate (22) or the base support plate (21).

4. Furniture or household appliance element according to claim 3, characterized in that the at least one positioning dome (8) is spring-loaded and fixed in the recess (43) of the first bearing part (41) of the guide bearing (4).

5. Furniture or household appliance element according to claim 1 or 2, characterized in that the at least one positioning dome (8) in the recess (25) in the cover support plate (22) or the base support plate (21) is fixed and projects into the recess (43) of the first bearing part (41) of the guide bearing (4).

6. Furniture or household appliance element according to claim 5, characterized in that the at least one positioning dome (8) is fixed in the recess (25) in the cover support plate (22) or the base support plate (21) in a spring-loaded manner.

7. Furniture or household appliance element according to one of the preceding claims, characterized in that the guide bearing (4) has at least one guide cam track (52) and a guide element (51) guided in the guide cam track (52), which are arranged on mutually facing surfaces of the cover support plate (22) and the cover plate (32) or of the base support plate (21) and the base plate (31) and further has a pivot bearing (6) and a linear guide (7), with connecting parts which are displaceable relative to one another in a translation direction (A), one of which is arranged on the cover support plate (22) or the cover plate (32) and the other is mounted via the pivot bearing (6) on the other of the cover support plate (22) or the cover plate (32) and / or one connecting part is arranged on the base support plate (21) or the base plate (31) and the other is mounted via the pivot bearing (6) on the other of the base support plate (21) or the Base plate (31) is mounted.

8. Furniture or household appliance element according to claim 7, characterized in that the pivot bearing (6) has a ball socket (61) arranged on the first bearing part (41) of the guide bearing (4), in which a ball head (62) arranged on a second bearing part (42) of the guide bearing (4) is received.

9. Furniture or household appliance element according to one of the preceding claims, characterized in that the at least one positioning dome (8) has a base body (81) with a cylindrical outer surface (84) for receiving in the recess (25) of the cover support plate (22) or the base support plate (21) and at least one holding element for holding in the recess (43) of the first bearing part (41) of the guide bearing (4).

10. Furniture or household appliance element according to claim 9, characterized in that the at least one holding element for holding in the Recess (43) of the first bearing part (41) of the guide bearing (4) is designed as a circumferential web (85) projecting radially beyond the outer surface (84), the outer diameter of which is larger than a diameter of the recess (43).

11. Furniture or household appliance element according to claim 9 or 10, characterized in that the outer surface (84) of the base body (81) is formed in several parts in the circumferential direction, with clamping tongues (86) provided between fixed wall cylinder elements (87) which, when received in the recess (25) of the cover support plate (22) or the base support plate (22), press against an inner wall of the recess (25).

12. Method for assembling a body part (3) which is mounted so as to be at least partially simultaneously translationally and rotationally movable relative to the support body (2) in the support body (2) of a furniture or household appliance element according to one of the preceding claims, with the following method steps: a) fastening a first guide bearing (4) with at least one positioning dome (8) fixed thereto to the base plate (31) of the body part (3), b) placing the body part (3) on the base support plate (21) of the support body in such a way that the at least one positioning dome (8) dips into the recess (25) in the base support plate (21), c) mounting the cover support plate (22) of the support body (2) on the at least one side wall (23) of the support body (2).

13. The method according to claim 12, comprising the further method steps: d) fastening the first bearing part (41) of a second guide bearing (4) with the ball socket (61) of the pivot bearing (6) arranged on the first bearing part (41) and at least one positioning dome (8) fixed thereto to the cover support plate (22) of the support body (2) before step c) in such a way that the at least one positioning dome (8) dips into the recess (25) in the cover support plate (22), e) fastening the second bearing part (42) of a second guide bearing (4) with the ball head (62) of the pivot bearing (6) arranged on the second bearing part (42) to the cover plate (32) of the body part (3) before step c), f) Placing the ball socket (61) of the pivot bearing (6) onto the ball head (62) of the second bearing part (42) of the second guide bearing (4) in step c).

14. Method for assembling a body part (3) mounted so as to be at least partially simultaneously translationally and rotationally movable relative to the support body (2) in the support body (2) of a furniture or household appliance element according to one of the preceding claims 1 to 11, with the following method steps: a) inserting at least one positioning dome (8) into the recess (25) in the base support plate (21) of the support body (2) to form a resilient mounting of the positioning dome (8) in the recess (25), b) fastening a first guide bearing (4) to the base plate (31) of the body part (3), c) inserting the body part (3) between the base support plate (21) and the cover support plate (22) of the support body (2) in such a way that the at least one positioning dome (8) upon reaching the recess (43) in the first bearing part (41) of the guide bearing (4) in this immerses.

15. Method for assembling a body part (3) which is mounted so as to be movable at least partially simultaneously in translation and rotation relative to the support body (2) in the support body (2) of a furniture or household appliance element according to one of the preceding claims 1 to 11, with the following method steps: a) fastening a first guide bearing (4) with at least one positioning dome (8) fixed thereto in a spring-mounted manner to the base plate (31) of the body part (3), b) pushing the body part (3) between the base support plate (21) and the cover support plate (22) of the support body (2) in such a way that the at least one positioning dome (8) dips into the recess (25) in the base support plate (21) when it reaches the latter.