FURNITURE OR HOUSEHOLD APPLIANCE ELEMENT

DE502023004023D1Active Publication Date: 2026-05-28PAUL HETTICH GMBH & CO KG
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Patent Information

Authority / Receiving Office
DE · DE
Patent Type
Patents
Current Assignee / Owner
PAUL HETTICH GMBH & CO KG
Filing Date
2023-03-02
Publication Date
2026-05-28
Patent Text Reader
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Description

[0001] The present invention relates to a furniture or household appliance element according to the preamble of claim 1.

[0002] Such furniture or household appliance elements, such as shelves or racks, in which a body part is mounted in a support body that is simultaneously rotatably and translationally movable, are known, for example, from DE 10 2019 109 866 A1.

[0003] A translational-rotational bearing is used to perform the translational-rotational movement of the body part.

[0004] Especially with larger and / or taller furniture or household appliance elements, such as refrigerators and freezers or wine coolers, it is necessary for stability reasons to additionally support the movement of the translationally-rotatorically movable body part.

[0005] For example, it is known from DE 10 2019 132 207 A1 to arrange a guide bearing between the cover plates of the support body and the body part, with which the translational-rotational movement is additionally guided.

[0006] Particularly when arranging a top support plate that covers both the stationary support body and the translationally-rotatorily movable body part, it is desirable to precisely define the vertical distance between the top support plate of the support body and the top plate of the body part, or between the bottom support plate of the support body and the bottom plate of the body part, in order to keep the desired distances between components of the furniture or household appliance element constant.

[0007] In WO 2018 / 151123 A1, a guide element for a shelving unit is described which is supported by two rollers attached to a carrier in a guide cam track, the carrier being variably adjustable in its vertical position.

[0008] The object of the present invention is to prevent, in particular when a first and second body part are arranged side by side in a furniture or household appliance element, the lowering of the top support plate or the bottom plate of the body part during the translational rotational movement of the body part.

[0009] This problem is solved by a furniture or household appliance element having the features of claims 1 and 6.

[0010] The furniture or household appliance element according to the invention has a support body with a base support plate, a top support plate and optionally at least one side wall, as well as a body part which is mounted to be movable translationally and rotationally relative to the support body and which has a base plate, a top plate and at least one side wall.

[0011] A guide bearing is arranged between the top support plate and the top plate and / or between the bottom support plate and the bottom plate.

[0012] The guide bearing has at least one guide cam track and a guide element guided in or on the guide cam track, which are arranged on mutually facing surfaces of the top support plate and the top plate or the bottom support plate and the bottom plate.

[0013] Furthermore, the guide bearing has a linear guide with connecting parts that are movable relative to each other in a translational direction, one of which is arranged on the top support plate or the top plate and the other is mounted on the other side of the top support plate or the top plate by means of a rotary bearing and / or one connecting part is arranged on the bottom support plate or the bottom plate and the other is mounted on the other side of the bottom support plate or the bottom plate by means of a rotary bearing.

[0014] The guide element is designed as a support element that rests on or in the guide cam track, whereby the position of the guide element perpendicular to the plane of the top support plate or the bottom support plate is variably adjustable.

[0015] The guide element features a roller that rolls along a side surface of the guide cam track. The roller is attached to an axle, which is held stationary in a bushing along its longitudinal axis and rotatable about its longitudinal axis. The bushing can be clamped to the guide bearing, allowing for easy height adjustment.

[0016] By providing such a guide element designed as a support element, it is easily possible to determine the vertical distance between the top support plate of the support body and the top plate of the body part, or between the bottom support plate of the support body and the bottom plate of the body part, to a precisely defined dimension.

[0017] The variable adjustability allows, in particular, the compensation of height tolerances of the furniture or household appliance element.

[0018] Alternatively, the roller is attached to an axle that can be clamped in a vertical adjustment position along its longitudinal axis. The vertical adjustment mechanism comprises a bearing housing attached to the connecting element, an adjusting element mounted vertically within the bearing housing in which the axis of the guide element is fixed, and a locking lever for locking the adjusting element relative to the bearing housing.

[0019] This allows for easy and precise adjustment of the guide element in the vertical direction depending on the distance between the connecting element and the guide cam track.

[0020] Advantageous embodiments are the subject of the dependent claims.

[0021] In a preferred further development of this embodiment, a clamping lever is provided to fix the bushing in a clamping position.

[0022] This clamping lever preferably comprises a clamping body with a bushing receptacle that circumferentially encloses the bushing and a lever arm. The guide bearing here has a head with two parallel retaining plates, each with recesses in which the bushing is circumferentially guided. The clamping lever is received in a receiving space between the retaining plates, and in the clamping position, the clamping body is pressed against a clamping wall of the guide bearing with a partial surface of the wall forming the bushing receptacle frictionally engaging a partial surface of the outer surface of the bushing.

[0023] According to a further preferred development, the axis has a step for fixing the position of the roller on the axis.

[0024] On the side of the shoulder facing away from the roller, a bearing is mounted on the axle. This bearing is designed, in particular, as a support or as a ball bearing.

[0025] In a special further development, the guide cam track has a running ramp for the vertical support of the roller.

[0026] According to a further preferred embodiment, the linear guide is formed from an extension guide, with a guide rail arranged on the top support plate or the top plate and / or on the bottom support plate or the bottom plate and at least one sliding running rail mounted thereon, wherein the guide element is fixed to a plate-shaped connecting element of the guide bearing.

[0027] The arrangement of the guide element on the connecting element of the guide bearing allows for easy assembly.

[0028] The connecting element is preferably attached to at least one guide rail of the linear guide.

[0029] The guide cam track is preferably connected to the top plate of the body part and the at least one running rail of the linear guide is connected to the top support plate of the support body via the connecting plate.

[0030] According to a further embodiment, the axial bearing or the threaded bolt is fixed to the connecting element of the guide bearing.

[0031] According to an advantageous embodiment, the threaded bolt is axially adjustable in a threaded sleeve arranged on a head piece of the connecting element.

[0032] Preferred embodiments are explained in more detail below with reference to the accompanying drawings.

[0033] They show: Fig. 1 a schematic perspective view of a furniture element with a first support body that is not movable translationally or rotationally and a body part that is movable translationally and rotationally in the closed position, Fig. 2 one of the Figure 1 corresponding representation of the furniture element with the body part moved out of the closed position, Fig. 3 one of the Figure 1 Corresponding representation of the furniture element with the body part moved from the closed position to the open end position, Fig. 4a one of the Fig. 1 Corresponding representation of the furniture element with the common cover support plate removed to show the guide bearing, Fig. 4 leg representation of the furniture element of the Fig. 1Fig. 5 shows a schematic perspective view of a variant of a guide bearing with guide cam track and linear guide, Fig. 6 shows a schematic perspective close-up of the guide bearing and a first variant of a guide element, and Fig. 7 shows an exploded view of the guide element according to the diagram. Figure 6 Fig. 8 a schematic perspective view of a second embodiment of a guide element, Fig. 9 a sectional view through the in Figure 8 The guide element shown, Fig. 10 a schematic perspective view of a further embodiment of a guide element that can be fixed by clamping, attached in an alternatively designed head of the connecting element with the clamping lever released, Fig. 11 a schematic perspective view of the in Figure 10The illustrated embodiment with the guide element held in place by the clamping lever, Fig. 12 an exploded view of the guide element and the head of the connecting element according to Figure 10 Fig. 13 shows a sectional view of the guide element arranged on the head of the connecting element in the released position of the clamping lever; Fig. 14 shows a sectional view of the guide element arranged on the head of the connecting element in the clamped position of the clamping lever; Figs. 15 and 16 show sectional views of the guide element arranged on the head of the connecting element in different adjustment positions; Fig. 17 shows a sectional view of a further embodiment of a guide element that can be fixed by clamping; Fig. 18 shows an exploded view of the guide element and the head of the connecting element according to Figure 17Fig. 19 shows a schematic perspective view of a further embodiment of a guide element that can be variably fixed in the Z-direction by means of a vertical adjustment, attached to a head of the connecting element with a clamping lever in the fixing position. Fig. 20 shows an exploded view of the guide element and the vertical adjustment according to... Figure 19 , Fig. 21 a sectional view of the embodiment variant according to Figure 19 In the open position of the clamping lever, Fig. 22 shows a sectional view of the embodiment according to Figure 19 in the clamping position of the clamping lever, Fig. 23 a sectional view according to Figure 22 with the guide element pushed out of a bearing housing to its maximum extent, Fig. 24 shows a sectional view according to Figure 22with the guide element maximally accommodated in the bearing housing, Figure 25 shows a perspective view of the guide element arranged in the vertical adjustment with clamping lever in the clamping position and Figure 26 shows a perspective view of the guide element arranged in the vertical adjustment with clamping lever in the open position.

[0034] In the following figure descriptions, terms such as top, bottom, left, right, front, back, etc., refer exclusively to the exemplary representation and position of the furniture element, support body, body part, top panel, guide bearing, guide cam track, linear guide, guide element, and the like as chosen in the respective figures. These terms are not to be understood restrictively; that is, these relationships may change due to different working positions, mirror-symmetrical design, or similar factors.

[0035] In the Figs. 1 to 4Reference numeral 1 designates a variant embodiment of a furniture or household appliance element according to the invention. The furniture or household appliance element 1, depicted here as a furniture element, comprises a support body 2 and a body part 3 that is simultaneously mounted to be movable both translationally and rotationally.

[0036] For ease of reading, the furniture or household appliance element 1 will be referred to as furniture element 1 below. A corresponding household appliance element, in particular a refrigerator or freezer element or a wine cooler element, can be constructed analogously to the furniture or household appliance element 1 shown here as furniture element 1.

[0037] The support body 2 has at least one base support plate 21 and one top support plate 22, as well as at least one side wall 23 connected to the base support plate 21 and the top support plate 22. The front of the support body 2 is shown here as being closed by a hinged door 24.

[0038] The carcass part 3 has at least one base plate 31 and one top plate 32, as well as at least one side wall 33 connected to the base plate 31 and the top plate 32; in the embodiment shown here, there are two side walls 33. The side walls are covered on the outside by panels 34. The interior of the carcass part 3 is, by way of example, divided into several compartments arranged one above the other by several shelves 35 fixed to the side walls 33.

[0039] The base support plate 21 of the support body 2 extends along its length over the entire surface of the furniture element 1. The same applies to the top support plate 22, which covers both the upper end of the support body 2 and the upper end of the body part 3, as shown in the Figures 1 to 3 is shown.

[0040] The support body 2 can alternatively 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 located in a corner or niche of a room. In such a configuration, a side wall 23 connecting the top support plate 22 and the bottom support plate 21 is therefore not necessary.

[0041] As in Figure 4aAs shown, a guide bearing 4 is arranged between the cover plate 22 of the support body 2 and the cover plate 32 of the body part 3. The guide bearing 4 serves to support the translational-rotational movement of the body part 3.

[0042] Such a guide bearing 4 can also be arranged between the base support plate 21 and the base plate 31. In Figure 4b The furniture element 1 is shown in a view from below with the base support plate 21 and the guide bearing 4 removed.

[0043] Alternatively, a translational rotation fitting 10 can be installed between the base support plate 21 and the base plate 31, for example partially in Figure 2 depicted, arranged as is known, for example, from DE 10 2019 109 866 A1.

[0044] The command camp 4 shows, as in Figures 4a to 6The figure shows a guide cam track 5 arranged here on the cover plate 32 of the body part 3 and a guide element 8 arranged on a connecting element 6, which is plate-shaped here and is attached to the cover support plate 22 of the support body 2, and which projects into the guide cam track 5.

[0045] It is also conceivable to attach the guide element 8 directly to the cover support plate 22 of the support body 2.

[0046] Furthermore, the guide bearing 4 has a linear guide 7 with connecting parts that can be moved relative to each other, one of which is arranged on the top support plate 22 or the top plate 32 and the other of which is mounted on the other of the top support plate 22 or the top plate 32 by means of a rotary bearing 12.

[0047] When the guide bearing 4 is arranged in the base area of ​​the body part 3, one connecting part is arranged on the base support plate 22 or the base plate 32 and the other is mounted on the other of the base support plate 22 or the base plate 32 by means of the rotary bearing 12.

[0048] The guide element 8 or the further embodiment of a guide element 9 explained below is designed as a support element that rests on or in the guide cam track 5.

[0049] The guide element 8, 9 serves, in addition to supporting the translational-rotational movement of the body part 3, to determine the vertical distance between the top support plate 22 of the support body 2 and the top plate 32 of the body part 3, or between the bottom support plate 21 of the support body 2 and the bottom plate 31 of the body part 3 in the case of an arrangement of the guide bearing 4 in the bottom area of ​​the body part 3, to a precisely defined dimension.

[0050] The in the Figures 5 to 7 The first embodiment of such a guide element 8 shown has a roller 81 arranged on an axial bearing and capable of rolling on a base 51 of the guide cam track 5.

[0051] The axial bearing has an axial bearing receptacle 85 provided with a threaded bolt 851, onto which an axial bearing ring 84 can be placed, at the free end of which, facing away from the threaded bolt 851, here in the form of a pin 854, a roller receptacle 83 is attached, in which the roller 81 is rotatably mounted.

[0052] Role 81 is, as in the Figure 6 and 7 shown, via the roller axle 82, which is passed in a central bore 811 of the roller 81, in axle bearings 833 provided for this purpose in legs 831 of the roller receptacle 83 which are connected to each other via a connecting piece 832.

[0053] The roller receptacle 83 itself is attached to the axial bearing receptacle 85, preferably rotatably twisted with the pin 854 of the axial bearing receptacle 85.

[0054] The axial bearing or threaded bolt 85 is preferably fixed to the connecting element 6 of the guide bearing 4. The axial bearing receptacle 85 is designed at an end remote from the pin 854 as a threaded bolt 851, which is preferably adjustable axially to the threaded bolt 851 in a threaded sleeve 64 arranged on a head piece 63 of the connecting element 6.

[0055] To enable rotational movement about a longitudinal axis of the axial bearing receptacle 85 of the roller receptacle 83, the axial bearing ring 84 is clamped between a collar 852 of the axial bearing receptacle 85 and a connecting piece 832 of the roller receptacle 83 that connects the legs 831 together. The axial bearing ring 84 has a receptacle 841 through which a neck piece 853 of the axial bearing receptacle 85 passes.

[0056] An alternative design variant of such a guide element is found in the Figures 8 and 9 depicted.

[0057] This embodiment of the guide element 9 also has a threaded bolt 91 which, like the threaded bolt 851 of the embodiment described above, is preferably fixed in a threaded sleeve 64 arranged on the head piece 63 of the connecting element 6 in an axially adjustable manner relative to the threaded bolt 91.

[0058] The threaded bolt 91 is screwed into a sleeve 92 with an internal thread 96, at the end of which, spaced apart from the threaded bolt 91, a ball 93 is received. The ball 93 is held by a collar 95 at the lower end of the sleeve 92, which protrudes from the sleeve 92 by a predetermined amount. The collar 95 prevents the ball 93 from falling out.

[0059] Between the end face of the threaded bolt 91 and the ball 93, as shown in Figure 9As shown, a spring element 94 is provided, with which the ball 93 is always pushed out of the sleeve 92 against the threaded bolt 91.

[0060] The guide cam track 5 preferably has eyelets 52 on its outer sides for fixing, in particular screwing, the guide cam track 5 to the top plate 32 or to the bottom plate 31 of the body part 3.

[0061] Likewise, the connecting element 6 is attached to a main body 61, which is located in the Figure 5 In the example shown, the guide rails 72 of the linear guide 7 are attached, with eyelets 62 molded on the sides, which serve for fixing, in particular screwing to the top support plate 22 or bottom support plate 21.

[0062] The guide rail 71 of the linear guide 7 is rotatably mounted on a rotary bearing 12.

[0063] The pivot bearing 12 has a pivot bolt which is arranged on a circular mounting plate 11, which is attached to the top plate 32 or bottom plate 31 of the body part 3. The circular shape serves to distribute the force over the largest possible area. Other designs are also conceivable.

[0064] The axis of rotation of the rotary bearing 12 is mounted in a rotary axis bearing provided for this purpose (not shown) on the underside of the guide rail 71 of the linear guide 7 in order to enable the translational rotational movement of the body part 3 relative to the support body 2.

[0065] The axis of rotation can also be axially adjustable or telescopically mounted in the pivot bearing. This ensures that the entire guide bearing 4 is evenly supported.

[0066] In the Figures 10 to 18Two further preferred embodiments of guide elements 180, 190 are shown, in which the guide element 180, 190 has a roller 181, 191 that can roll on a side surface 53 of the guide cam track 5. The roller 181, 191 is attached here to an axis 182, 192 extending in the z-direction, preferably at one end of the axis 182, 192.

[0067] The axle 182, 192 is held stationary and rotatable about its longitudinal axis in a bushing 184, 194 which surrounds the axle in the area of ​​an upper section located away from the axle, in order to allow free rotation of the roller 181, 191 about its longitudinal axis, for example by means of a disk 186, 196 attached to the upper end of the axle 182, 192 and resting on an end face of the bushing 184, 194, as shown in the Figures 10, 11 and 17 is shown.

[0068] The bushing 184, 194 itself can be clamped to the guide bearing 4. A clamping lever 13 is preferably provided for clamping the bushing 184, 194 in a clamping position.

[0069] This clamping lever 13 preferably has, as shown in the Figure 12 and 18 The figure shows a clamping body 131 with a bushing receptacle 133 surrounding the bushing 184, 194 and a lever arm 132.

[0070] The guide bearing 4, preferably a section of a connecting element 160, similar to the connecting element 6 of the guide bearing 4 described above, has a head piece 163 arranged on a main body 161 of the connecting element 160 with two retaining plates 164 aligned parallel to each other, each with preferably circular recesses 166 in which the bushing 184, 194 is received circumferentially.

[0071] The clamping lever 13 is received in a receiving space 165 between the retaining plates 164.

[0072] In the Figure 11 and 14 to 17 In the clamping position of the clamping lever 13 shown, the clamping body 131 is pressed against a clamping wall 167 of the guide bearing 4. Due to an eccentric arrangement of the bushing receptacle 133 relative to the outer surface of the clamping body 131, the clamping body 131 is displaced in the horizontal plane such that the bushing receptacle 133 is no longer coaxially aligned with the recesses 166 of the retaining plates 164. As a result, a partial surface of the wall forming the bushing receptacle 133 frictionally engages a partial surface of the outer surface of the bushing 184, 194, and the bushing 184, 194, and thus the roller 181, 191, which is fixed in the z-direction within the bushing 184, 194, is fixed in the z-direction.

[0073] To change the positioning of the roller 181, 191 in the z-direction, the clamping lever 13 can be rotated by actuating the lever arm so that the bushing receptacle 133 is aligned coaxially with the recesses 166 of the retaining plates 164 and thereby the frictional engagement between the wall forming the bushing receptacle 133 and the partial surface of the outer shell surface of the bushing 184, 194 is eliminated.

[0074] The axis 182, 192 preferably has a shoulder 183, 193 for fixing the position of the roller 181, 191.

[0075] On the side of the shoulder 183, 193 facing away from the roller 181, 191, a bearing 185, 195 is mounted on the axis 182, 192.

[0076] During the Figures 10 to 16 In the illustrated version, this bearing is designed as a support that rests on the upper edges of the control curve 5 in the z-direction.

[0077] During the Figures 17 and 18In the alternative embodiment shown, this bearing is designed as a ball bearing. In this embodiment, the outer surface of the roller is preferably designed with a chamfer that rests on a corresponding running surface 54 of the control cam 5 in the vertical, i.e., z-direction, so that the roller 191 is supported on the running surface 54 in the z-direction.

[0078] In the Figures 19-26 A preferred embodiment of a vertical adjustment 210 for a guide element 290 similar to the guide element 190 is shown.

[0079] The guide element 290 also has a roller 291 which can roll on a side surface 53 of the guide cam track 5 and which is attached to an axis 292 extending in the z-direction, preferably at one end of the axis 292.

[0080] The axle 292 also preferably has a first shoulder 293 for fixing the roller 291 at or near a first end of the axle 291. Above or on the side of the shoulder 293 facing away from the roller 291, a bearing 295 is also mounted on the axle 292. The bearing 295 itself is also preferably designed as a ball bearing.

[0081] In order to be able to variably adjust the guide element 290 in the z-direction to a distance between the main body 261 of the connecting element 260 and the guide cam track 5, the axis 292 with the roller 291 rotatably fixed to it and the bearing 295 rotatably fixed to the axis 292 is variably held in the vertical adjustment 210 in the z-direction.

[0082] The vertical adjustment 210 indicates, as in Figure 20The figure shows a bearing housing 220 attached to the connecting element 260. The bearing housing 220 is preferably fixed with screws 266 in the area of ​​the head 263 of the connecting element 260. Screw receptacles 264 are provided in the head 263 of the connecting element 260 for this purpose, into which preferably conically shaped heads of the screws 266 can be countersunk.

[0083] The bearing housing 220 has a preferably approximately cuboid-shaped adjustment body receptacle 221 for receiving an adjustment body 230.

[0084] The adjusting body 230 has a retaining body 231 for supporting the axis 292 of the guide element 290. For fixing in the z-direction, as shown in Figure 20 It can be seen that on axis 292 a second paragraph 296 is arranged above the first paragraph 293, which, as in the Figures 21 to 24It can be seen that a bore in the base of the retaining body 231 prevents the axle 292 from slipping in the direction of the guide cam track 5.

[0085] What next in the Figures 21 to 24 As can be seen, one upper side of the bearing 295, facing away from the roller 291, rests against an underside of the holding body 231.

[0086] The adjusting body 230 is spring-loaded in the z-direction and mounted in the bearing housing 220.

[0087] This is, as in the Figures 20 to 24 As shown, a spring element 294, designed here as a helical compression spring, is placed over the axis 292 of the guide element 290.

[0088] A lower end of the spring element 294 rests against the base of the retaining body 231. An upper end of the spring element 294 rests against a cover 250, which fits snugly into a corresponding recess in the bearing housing 220 and (into the Figures 21 to 24) upwards against an underside of the head piece 263 of the connecting element 260.

[0089] To guide the axis 292 of the connecting element 260, the cover 250 has an axis receptacle 251, through which an upper end of the axis 292, located away from the roller 291, is received.

[0090] Preferably, an axle receptacle 265, here designed as a bore, is also provided in the head piece 263 of the connecting element 260, into which a neck of the axle receptacle 251 of the cover 250 projects into the axle receptacle 265.

[0091] To adjust the position of the connecting element 260 in the z-direction, the adjusting body 230 has a toothing 232 preferably formed in one piece with the holding body 231, which engages with a toothing 243 of a locking lever 240 when the guide element 290 or adjusting body 230 is fixed in the z-direction.

[0092] The locking lever 240 of this embodiment essentially consists of a bearing pin 241 and a lever arm 242 projecting radially from the bearing pin 241, as well as the toothing 243, which is formed on an angular segment of the bearing pin 241, as is the case, for example, in Figure 21 is shown.

[0093] The bearing bolt 241 serves to fix the locking lever 240 rotatably about the z-axis on the one hand in a corresponding bearing bolt receptacle 252 of the cover 250 and on the other hand at the corresponding bearing bolt receptacle 223 of the bearing housing 220.

[0094] The locking lever 240 can thus be moved from a release position that releases the adjusting body 230 in the z-direction by rotating the locking lever 240 using the lever arm 242, as described in Figure 21 This is exemplified by the fact that it can be incorporated into a Figures 22 to 24The shown fixing position can be rotated, whereby in the fixing position the toothing 232 of the adjusting body 230 engages in the toothing 243 of the locking lever 240 and thus prevents a displacement of the adjusting body 230 and thus of the guide element 290.

[0095] While in Figure 22 A mean position of the adjusting body 230 relative to the bearing housing 220 is shown. Figure 23 a maximally downward shifted position of the adjusting body 230 relative to the bearing housing 220.

[0096] This maximum position is defined by a radially outwardly projecting web 233 at the upper edge of the holding body 231, wherein this web 233 rests on a provided shoulder on the bottom or near a bottom of the bearing housing 220 when the adjusting body 230 is pushed down to its maximum position.

[0097] Figure 24shows a maximum upward shifted position of the adjusting body 230 relative to the bearing housing 220.

[0098] This maximum position is defined by the upper end of the holding body 231 striking a bottom surface of the cover 250.

[0099] Figure 25 The guide element 290, which is included in the vertical adjustment 210, is shown again in the fixed position of the locking lever 240 as an isometric single view.

[0100] Figure 26 Figure 210 shows the guide element 290 with locking lever 240 in the open position, in which the adjusting body 230 together with the guide element 290 can be moved in the z-direction.

[0101] What's next in Figure 26As shown, a raised section 253 is formed on a surface of the cover 250 facing the locking lever 240. This raised section serves to fix the locking lever 240 in the locked position. The raised section is positioned such that the lever arm 242 cannot be moved out of its locked position, as shown in Figure 25, without force. Reference symbol list

[0102] 1 Furniture or household appliance element 2Support body 21Base support plate 22Top support plate 23Side panel 24Swing door 3 Body part 31 Base plate 32 Top plate 33 Side panel 34 Side panel 35 Shelf 4 guide bearings 5 Guide curve track 51 Base 52 Eyelet 53 Side surface 54 Running ramp 6 Connecting element 61 Main body 62 Eyelet 63 Head piece 64 Threaded sleeve 7 Linear guide 71 Guide rail 72 Running rail 8 Guide element 81 Roller 811 Bore 82 Roller axle 83 Roller mount 831 Leg 832 Connecting piece 833 Axle bearing 84 Thrust bearing ring 841 Mount 85 Thrust bearing mount 851 Threaded bolt 852 Collar 853 Neck piece 854 Pin 9 Guide element 91 Threaded bolt 92 Sleeve 93 Ball 94 Spring element 95 Collar 96 Internal thread 10 Translation-rotation fitting 11 Mounting plate 12 Swivel bearing 13 Clamping lever 131 Clamping body 132 Lever arm 133 Bushing receptacle 160 Connecting element 161 Main body 163 Head piece 164 Retaining plate 165 Receipt space 166 Recess 167 Clamping wall 180 Guide element 181 Roller 182 Axle 183 Shoulder 184 Bushing 185 Bearing 186 Disc 190 Guide element 191 Roller 192 Axle 193 Shoulder 194 Bushing 195 Bearing 196 Disc 210 Vertical adjustment 220 Bearing housing 221 Adjustment body mount 223 Bearing bolt mount 230 Adjusting body 231 Holding body 232 Toothing 233 Web 240 Locking lever 241 Bearing pin 242 Lever arm 243 Toothing 250 Cover 251 Axle mount 252 Bearing bolt mount 253 Height increase 260 Connecting element 261 Main body 263 Head piece 264 Screw receptacle 265 Axle receptacle 266 Screw 290 Guide element 291 Roller 292 Axle 293 First paragraph 294 Spring element 295 Bearing 296 Second paragraph A Translation direction x direction y direction z direction

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 for simultaneous translational and rotational movement relative to the support body (2), with a base plate (31), a cover plate (32) and at least one side wall (33), - 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), - wherein the guide bearing (4) has at least one guide cam track (5) and a guide element (180, 190) guided in or on the guide cam track (5), 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), - wherein the guide bearing (4) further comprises a linear guide (7) with connecting parts displaceable relative to one another in a direction of translation (A), of which one is arranged on the cover support plate (22) or the cover plate (32) and the other is mounted on the other of the cover support plate (22) or the cover plate (32) by means of a pivot bearing (12) and / or the one connecting part is arranged on the base support plate (21) or the base plate (31) and the other is mounted on the other of the base support plate (21) or the base plate (31) by means of a pivot bearing (12), characterized in that - the guide element (180, 190) is designed as a support element supported on or in the guide cam track (5), the position of the guide element (180, 190) being variably adjustable perpendicular to the plane of the cover support plate (22) or the base support plate (21), - wherein the guide element (180, 190) has a roller (181, 191) which can roll on a side surface (53) of the guide cam track (5), wherein the roller (181, 191) is fastened to an axle (182, 192) which is held stationary in a bushing (184, 194) in the direction of its longitudinal axis and rotatable about its longitudinal axis, wherein the bushing (184, 194) can be clampingly fixed to the guide bearing (4).

2. Furniture or household appliance element (1) according to claim 1, characterized in that a clamping lever (13) fixing the bushing (184, 194) in a clamping position is provided for clamping fixation of the bushing (184, 194).

3. Furniture or household appliance element (1) according to claim 2, characterized in that the clamping lever (13) has a clamping body (131) with a bushing receptacle (133) circumferentially enclosing the bushing (184, 194) and a lever arm (132), the guide bearing (4) having a head piece (163) with two retaining plates (164) aligned parallel to one another with respective recesses (166), in which the bushing (184, 194) is received in a circumferentially guided manner, the clamping lever (13) being received in a receiving space (165) between the retaining plates (164) and, in the clamping position, the clamping body (131) being pressed against a clamping wall (167) of the guide bearing (4) with a partial surface of the wall forming the bushing receptacle (133) bearing frictionally against a partial surface of the outer casing surface of the bushing (184, 194).

4. Furniture or household appliance element (1) according to one of claims 7 to 9, characterized in that the axle (182, 192) has a shoulder (183, 193) for fixing the roller (181, 191) in place.

5. Furniture or household appliance element (1) according to claim 4, characterized in that on the side of the shoulder (183, 193) facing away from the roller (181, 191), a bearing (185, 195), in particular designed as a support or ball bearing, is accommodated on the axle (182, 192).

6. Furniture or household appliance element (1) according to the preamble of claim 1, wherein the guide element (290) is designed as a support element supported on or in the guide cam track (5), the position of the guide element (290) being variably adjustable perpendicular to the plane of the cover support plate (22) or the base support plate (21), wherein the guide element (290) has a roller (291) which can roll on a side surface (53) of the guide cam track (5), the roller (291) being fastened to an axle (292) which can be fixed in a clamping manner in a vertical adjustment (210) in the direction of its longitudinal axis, characterized in that the vertical adjustment (210) has a bearing housing (220) fastened to the connecting element (260), an adjusting body (230) which is received in the bearing housing (220) so as to be vertically displaceable and in which the axis (292) of the guide element (290) is fixed, and a detent lever (240) for the latching fixing of the adjusting body (230) relative to the bearing housing (220).

7. Furniture or household appliance element (1) according to one of the preceding claims, characterized in that the linear guide (7) is formed from a pull-out guide, with a guide rail (71) arranged on the cover support plate (22) or the cover plate (32) and / or on the base support plate (21) or the base plate (31) and at least one running rail (72) displaceably mounted thereon, the guide element (180, 190, 290) being fixed to a connecting element (6) of the guide bearing (4).

8. Furniture or household appliance element (1) according to claim 7, characterized in that the connecting element (6) is fastened to the at least one running rail (72) of the linear guide (7).

9. Furniture or household appliance element (1) according to claim 8, characterized in that the guide cam track (5) is connected to the cover plate (32) and / or to the base plate (31) of the body part (3) and the at least one running rail (72) of the linear guide (7) is connected via the connecting element (6) to the cover support plate (22) and / or to the base support plate (21) of the support body (2).

10. Furniture or household appliance element (1) according to one of claims 7 to 9, characterized in that the thrust bearing or the threaded bolt (851, 91) is fixed to the connecting element (6) of the guide bearing (4).

11. Furniture or household appliance element (1) according to claim 9, characterized in that the threaded bolt (851, 91) is fixed in a threaded sleeve (64) arranged on a head piece (63) of the connecting element (6) so as to be adjustable axially to the threaded bolt (851, 91).

12. Furniture or household appliance element (1) according to any one of the preceding claims, characterized in that the support body (2) comprises at least one side wall (23).