GUIDE FITTING AND FURNITURE OR APPLIANCE ELEMENT
Patent Information
- Application Number
- DE502023002902
- Authority / Receiving Office
- DE · DE
- Patent Type
- Patents
- Current Assignee / Owner
- Priority Date
- 2022-04-27
- Filing Date
- 2023-04-21
- Publication Date
- 2026-02-12
- Estimated Expiration
- 2043-04-21
AI Technical Summary
Existing furniture and household appliance elements with translational-rotational movements face challenges in initiating combined movements due to handles that restrict rotation, especially in larger and taller designs like refrigerators and freezers, leading to stability issues.
A guide fitting with a guide cam track, guide element, linear guide, and ejection device with an unlockable energy storage unit, allowing for a combined translational-rotational movement by applying force against an ejection direction, triggered by activators on the guide cam track or linear guide.
Facilitates a simple initiation of combined translational-rotational movement, reducing assembly effort and ensuring stability by allowing the body part to move from one position to another without interference, suitable for larger furniture and appliances.
Description
[0001] The present invention relates to a guide fitting for guiding a body part that is mounted to be movable both translationally and rotationally according to the preamble of claim 1.
[0002] The invention further relates to a furniture or household appliance element according to the preamble of claim 13.
[0003] Such furniture or household appliance elements, such as shelves or racks, in which a body part is mounted in a supporting structure so that it can move both rotationally and translationally, are known, for example, from DE 10 2019 109 866 A1 or from DE9300364U1. A translational-rotational bearing is used to carry out 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 and rotationally 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] Such a furniture or household appliance element has proven its worth in practice.
[0007] To initiate such a translational-rotational movement, it may be necessary in some situations to move the body part to be moved forward from a first end position.
[0008] One suitable method for this is the attachment of a handle. However, such a handle may restrict the movement of the body section relative to the supporting structure, as it could, for example, prevent the body section from rotating 180° relative to the supporting structure to achieve a desired position with the same surface area as the initial position before reaching the rotated position by bumping against the supporting structure.
[0009] The object of the present invention is to provide a guide fitting and a furniture or household appliance element that facilitates the initiation of a combined translational-rotational movement.
[0010] This problem is solved by a guide fitting with the features of claim 1.
[0011] The problem is further solved by a furniture or household appliance element with the features of claim 13.
[0012] The guide fitting according to the invention has a guide cam track, a guide element guided in the at least one guide cam track, and a linear guide with at least one first connecting part and a second connecting part movable relative to this, one of which is fixed to the guide element and the other is coupled to the guide cam track by means of a rotary bearing.
[0013] The guide cam track or guide element can be permanently attached to the body part.
[0014] The guide fitting is characterized by at least one ejection device with a releaseable energy storage unit, with which the body part can be driven from at least one end position by applying force against an ejection direction along a limited distance.
[0015] The guide fitting further includes at least one activator for unlocking the energy storage device of the ejection mechanism.
[0016] With a guide fitting designed in this way, it is possible in a simple manner to trigger a combined translational-rotational movement of the body part relative to a stationary base.
[0017] Advantageous embodiments of the invention are the subject of the dependent claims.
[0018] According to an advantageous embodiment, at least one ejection device is arranged in a fixed position relative to the guide element.
[0019] In In a preferred embodiment, two activators are arranged on the or fixedly spaced from the guide cam track.
[0020] By arranging such activators on the guide cam track, it is possible in a simple way to trigger the translational-rotational movement via the rotational movement of the body part by pressing the body part against the desired rotational movement.
[0021] According to a preferred embodiment, the guide cam track has a guide groove for receiving the guide element and an arm extending outside the guide groove, on which at least one activator is arranged, in particular molded.
[0022] According to one embodiment, two activators are arranged on the arm, in particular molded onto it.
[0023] By molding the activators onto the guide cam track, the assembly effort of such a guide fitting is further advantageously reduced.
[0024] According to a further advantageous embodiment, the guide fitting also has a carrier plate on which the at least one first connecting part of the linear guide, the guide element and the at least one ejection device are fixed.
[0025] The use of such a carrier plate for the guide fitting also simplifies the construction and assembly of the guide fitting.
[0026] In an advantageous embodiment, the carrier plate has a central area on which two parallel first connecting parts of the linear guides are mounted, and two mirror-symmetrically shaped edge areas, wherein an ejection device is fixed to at least one of the edge areas. Preferably, an ejection device is fixed to each of the two edge areas.
[0027] This allows the translational-rotational movement to be initiated from two different end positions.
[0028] According to another alternative embodiment, the at least one activator is fixedly arranged on the second connecting part of the linear guide, and the ejection device is fixedly arranged on or near the first connecting part of the linear guide.
[0029] By arranging the activator on the linear guide, it is also possible to trigger the translational-rotational movement in a simple way by activating the ejection device via the translational movement of the body part.
[0030] In all its variants, the ejection device utilizes the relative movement between a stationary piece of furniture and one that initially moves in an approximately translational direction. "Approximately translational" here means that the translational component of the furniture's movement is significantly greater than the rotational component at the beginning of the movement from an end position.
[0031] According to another advantageous embodiment, the guide fitting has at least one further guide cam track in which a further guide element is guided, which additionally supports the guidance of the furniture.
[0032] The furniture or household appliance element according to the invention comprises a support body with a base support plate, a top support plate and at least one side wall, and a body part which is mounted to be movable translationally and rotationally relative to the support body and which comprises a base plate, a top plate and at least one side wall.
[0033] A guide fitting is arranged between the top support plate and the top plate and / or between the bottom support plate and the bottom plate.
[0034] The guide fitting has at least one guide cam track and a guide element guided in or on the guide cam track, which are arranged on respective mutually facing surfaces of the top support plate and the top plate or the bottom support plate and the bottom plate.
[0035] The guide fitting further features a linear guide with connecting parts that are movable relative to each other in a translational direction, one of which is arranged on the cover support plate or the cover plate and the other is mounted on the other of the cover support plate or the cover plate by means of a rotary bearing.
[0036] The linear guide preferably consists of two guide rails aligned parallel to each other and running rails that can be moved relative to these.
[0037] The guide fitting has at least one ejection device with a unlockable energy storage device and at least one activator for unlocking the energy storage device of the ejection device, with which the body part can be driven from at least one end position by applying force against an ejection direction along a limited distance.
[0038] According to another embodiment, at least one ejection device is designed as an at least partially electric ejection device, with an electric motor for tensioning an ejector and / or for driving the ejection movement itself and / or with sensors for detecting a desired opening of the body part.
[0039] In an advantageous embodiment, the guide cam track is attached to the base plate or the top plate of the body part, and the guide element is fixedly attached to the base support plate or the top support plate of the support body.
[0040] In another advantageous embodiment, a first guide fitting is arranged between the base support plate and the base plate, and a second guide fitting is arranged between the cover support plate and the cover plate.
[0041] An arrangement of two guide fittings is particularly suitable for furniture or household appliance elements that are larger in height.
[0042] In another advantageous embodiment, the body part can be moved relative to the support body from a first functional position to a second functional position rotated by a predetermined angle to the initial position, wherein in both functional positions the base plates and the top plates of the body part and the support body are aligned in matching geometries relative to each other.
[0043] Preferred embodiments of the invention are explained in more detail below with reference to the accompanying drawings. These show: Figure 1 shows an embodiment of a furniture element according to the invention with a support element and a body part, with a body part positioned in a closing position corresponding to a starting position; Figure 2 shows one of the Figure 1 corresponding isometric view of the furniture element in an intermediate position of the body part relative to the support body caused by the ejection device, Figure 3, one of the Figure 1 corresponding isometric view of the furniture element in an end position of the cabinet part with access to shelves of the cabinet part, Figure 4, one of the Figure 2 corresponding isometric view of the furniture element with the cover support plate hidden to illustrate a guide fitting arranged between the cover support plate and the cover plate, Figure 5 another isometric view of the in Figure 1The furniture element shown in a partial exploded view with a variant embodiment of two guide fittings, arranged between base support plate and base plate and top support plate and top plate, Figure 6 an isometric magnification of the in Figure 5 the guide fitting shown, Figure 7 an exploded view of the in Figure 6 the guide fitting shown, Figure 8 an isometric representation of the in Figure 6 shown guide fitting with extended ejection device, Figure 9 another isometric view of the in Figure 8 shown guide fitting with tensioned ejection device, Figure 10, one of the Figure 9corresponding isometric view in the unlocked position of the activator on the ejection device, Figure 11 an isometric view of an alternative embodiment of a guide fitting with an ejection device arranged on the linear guide, Figure 12 an isometric exploded view of the guide fitting according to Figure 11 Figure 13 shows an isometric view of a further embodiment of a guide fitting according to the invention with an ejection device arranged between parallel guide rails of a linear guide and an activator arranged on one of the guide rails; Figure 14 shows an exploded view of the Figure 13 The guide fitting shown and Figure 15 an isometric detail view of the ejection device and the activator arranged on a running rail in the starting position, Figure 16 one of the Figure 15corresponding illustration with the ejection device triggered, Figure 17 a perspective single view of an ejection device in the mounted position; Figures 18A to 18D several views of a movable furniture part being ejected by the ejection device; and Figures 19A to 19D several views of the ejection device being cocked by moving the lever in the closing direction.
[0044] 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 guide fitting, furniture or household appliance element, ejector, activator, guide fitting, guide cam track, linear guide, and the like as chosen in the respective figures. These terms are not to be understood restrictively; that is, these references may change due to different working positions, mirror-symmetrical design, or similar factors.
[0045] In the Figures 1 - 5 Reference numeral 1 denotes a total embodiment of a furniture element according to the invention.
[0046] The furniture element 1 shown here essentially consists of a support element 2 with a base support plate 21 and a top support plate 22 and side walls 23 connecting the base support plate 22 with the top support plate 21, as well as a body part 3 that is simultaneously translationally and rotationally movable relative to the support element 2.
[0047] Instead of the side wall 23 connecting the base support plate 21 with the cover support plate 22, a design variant of the support element 2 without side wall 23 is also conceivable, for example when the base support plate 21 and the cover support plate 22 are attached to a building wall.
[0048] The body part 3 also has a base plate 31, a top plate 32 and a connecting element connecting the base plate 31 to the top plate 32, in the illustrated embodiment in the form of at least one side wall 33.
[0049] In the embodiment shown in these figures, the shelf-like body part 3 has a square base, with two side walls 33 that form an interior space in a Figure 1 Close in the shown closed position and two open vertical sides, as shown in the Figures 2 and 3 , which allow access to the interior.
[0050] Instead of side walls, it is also conceivable to connect the base plate 31 to the cover plate 32 via corner posts 36, as shown by way of example in Figure 3 , or to connect a central post in the center of the surface of the base plate 31 or cover plate 32.
[0051] In the version shown here, the interior of the cabinet section 3 has several shelves 35. However, other configurations or subdivisions of the interior of the cabinet section 3 are also conceivable in principle.
[0052] What next in the Figures 2 , 4 and 5 The area shown is between the cover support plate 22 and the cover plate 32, as shown in the Figures 2 and 4 , and / or between the base support plate 21 and the base plate 31, shown in Figure 5 , a guide fitting 4 is arranged, which enables the simultaneous translational and rotational movement of the body part 3 relative to the support element 2.
[0053] Preferred embodiments of such a guide fitting 4 are described in the Figures 6-16 A more detailed explanation.
[0054] A first design variant of such a guide fitting 4 is in the Figures 6 - 10 shown.
[0055] As in Figure 6 and7 As shown, the guide fitting 4 has a guide cam track 5 and a guide element 11 guided in the guide cam track 5. It is also conceivable, in principle, to provide several guide cam tracks 5 with their respective guide elements 11s on the guide fitting 4.
[0056] The guide fitting 4 further comprises a linear guide 6 with at least two connecting parts that are movable relative to each other, one of which is fixed to the guide element 11 and the other is coupled to the guide cam track 5 by means of a rotary bearing 9.
[0057] In the embodiment shown in the figures, the linear guide consists of two guide rails 61 aligned parallel to each other and running rails 62 that are movable relative to these.
[0058] Other design variants of linear guides are also conceivable, for example in the form of a guide rail and a roller carriage, rack and pinion or the like guided on or along this.
[0059] The guide cam track 5 or the guide element 11 can be fixedly attached to the body part 3.
[0060] What next in the Figure 6 and 7 As can be seen, the guide fitting 4 has at least one, in this embodiment two, ejection devices 8 with a unlockable energy storage device, with which the body part 3 can be driven from at least one end position by applying force against an ejection direction B along a limited distance.
[0061] The drive is effected by force transmission to at least one activator 10, via which the power storage of the ejection device 8 is unlocked.
[0062] During the Figures 6-10The first version shown is the guide cam track 5, as also exemplified in the Figures 4 and 5 It can be seen that it is fixed to the top plate 32 of the body part 3 or to the bottom plate 31 of the body part 3.
[0063] The guide cam track 5 has a guide groove 51 in which the guide element 11, designed here as a wheel, can be guided.
[0064] The guide element 11, as well as the first two connecting parts, namely the guide rails 61 of the linear guides 6 and the ejection devices 8, are fixed to a support plate 7. Alternatively, the guide rails 61, the guide element 11 and / or the ejection devices can be arranged directly on the top support plate 22 and / or bottom support plate 21.
[0065] The support plate 7 is fixed in place to the top support plate 22 or the bottom support plate 21 of the base, in the case of a furniture element 1, to the support body 2.
[0066] To fix the guide rails 61 of the linear guides 6 to the carrier plate 7, different fixing elements 73, 74, 75 are provided in a central area 71 of the carrier plate 7.
[0067] The fixing elements 75 are designed as pins protruding from the central area 71 of the carrier plate 7, which are received in corresponding bores of a fastening section of the respective guide rail 61 and thus enable a positive locking fixing of the guide rails 61 in the plane of the carrier plate 7.
[0068] For protection against lifting, the additional fixing elements 73 and 74 are provided, which are plate-like and overlap the fastening area of the guide rails 61.
[0069] An ejection device 8 is attached to each of the edge regions 72 of the carrier plate 7. It is also conceivable to provide an ejection device 8 only at one of the edge regions 72 of the carrier plate 7.
[0070] The ejection devices 8 are known per se from the prior art and comprise a housing 81, an ejector 82 coupled in the housing 81 along a track 83 with the (not shown) energy storage device, which, by means of an activator 10, from a, for example, in Figure 8 shown relaxed extended position in a Figure 10 The tensioned function shown can be moved by pressing the ejector 82 in the opposite direction of ejection B.
[0071] This tensioning of the energy storage device occurs during the movement sequence of the body part 3 relative to the support body 2, each time the body part 3 is moved into an end position, as described in the Figure 1 and 3As shown, the body part 3, viewed in a horizontal plane relative to the support body 2, occupies the same space in both different end positions. Other ejection devices can also be used, in which the tensioning of the energy storage device can occur additionally or alternatively during further extension of the body part 3.
[0072] If the body part 3 is to be moved out of this position, the body part 3 can be moved by slightly pressing it against the direction of rotation R1, R2 controlled by the guide cam track 5, as illustrated by the example of Figure 2 by pressing in the direction of R2, using the activator 10, as shown for example in Figure 10, it can be unlocked.
[0073] After unlocking the energy storage device, it drives the ejector 82 in ejection direction B. The ejector 82 presses against the activator 10, thereby pushing the guide cam track 5 and with it the body part 3 out of the end position in ejection direction B into the Figure 2 Position shown.
[0074] After this ejection process, the user can easily move the body part 3 further into the desired position.
[0075] Furthermore, in the Figures 6 - 10 In the illustrated embodiment, two activators 10 are arranged on an arm 52 branching off from a central area of the guide cam track 5. It is also conceivable to arrange only one activator 10 on the arm 52 if assisted pushing of the furniture is required only in one direction.
[0076] The geometry of the arm 52 is designed such that the activators 10 slide along the respective outer sides of the ejection devices 8 and, accordingly, come into contact with a respective ejector 82 at a predetermined position before reaching the end position of the body part 3.
[0077] The activators 10 can be molded directly onto the arm 52. Alternatively, the activators 10 could be screwed onto the arm 52 or directly onto the body part 3.
[0078] The alignment of the two linear guides 6 attached here to the carrier plate 7, i.e. the guide rails 61 and the linearly movable running rails 62 on these, determine the translation direction A of the combined translational-rotational movement of the body part 3 relative to the carrier element.
[0079] The pivot bearing 9, which is mounted on the two guide rails 62, consists of a first and second mounting plate 91, 93, wherein the second mounting plate 93 is attached to the guide rails 62 and the first mounting plate 91 can be attached to the top plate 32 or the bottom plate 31 of the body part 3. In a Figure 9 In the exemplary embodiment shown, a rotary plate 92 is additionally attached to the first mounting plate 91. The mounting plates 91 and 93 are rotatably mounted relative to each other.
[0080] During the Figure 11 and 12 In the alternative design variant shown, ejection devices 8 are fixed directly to the guide rails 62 of the linear guide 6.
[0081] The activators 10 are fixed here at a suitable point on the guide rail 61.
[0082] In this design variant, the power transmission from the power storage device of the ejection devices 8 does not take place via the guide cam track 5, but via the linear guides 6.
[0083] A third design variant of such a guide fitting 4 is in the Figures 13 to 16 depicted.
[0084] A preferred embodiment of an ejection device 8 that can be used here is described in the Figure 17 and 18 shown.
[0085] In this embodiment, only one ejection device 8 is provided, the housing of which, like the guide rails 61, is fixed on the support plate 7 or alternatively on the base plate 31 or the top plate 32 of the body part 3. The activator 10 is arranged on the guide rail 62 in this case. Thus, this embodiment represents a kinematic reversal of the embodiment according to Figure 11 and 12 dar.
[0086] In Figure 15The ejector 82 of the ejection device 8 is shown in the position in which the body part 3 is in an end position.
[0087] Figure 16 shows the ejector 82 of the ejection device 8 with the energy storage device relaxed, in which the guide rail 62 has been moved accordingly over the activator 10, which is accompanied by a movement of the body part 3 into the position shown here as an example. Figure 2 the position shown is accompanied by.
[0088] It is also conceivable to provide electrically or electromechanically driven ejection devices instead of the mechanical ejection devices shown here, in which the ejector is electrically pre-tensioned, for example by means of an electric motor or an electromagnetic drive.
[0089] The ejection device can be triggered, for example, by motion, force, or touch sensors. A force sensor could be used to detect a force exerted by a user on the movable body part 3, or a force / displacement sensor could be used. A touch sensor could, for example, detect a touch initiating an opening movement via electrically conductive materials. Controlling an electric motor or electromagnetic drive via a preferably wireless remote control, such as a mobile phone, voice control, or similar device, or via a proximity sensor or a gesture-recognizing optical sensor is also conceivable. The ejection device 8 returns to a standby position after a predetermined time or after an opening process is detected.
[0090] It is also conceivable to operate only the resetting of the ejection device 8 electrically and to carry out the ejection process itself mechanically. For the ejection process, for example, one or more springs are used (described in more detail below).
[0091] It is also conceivable to operate the unlocking of the ejection device 8 electrically and to carry out the ejection process itself mechanically.
[0092] A preferred variant of such an ejection device 8 is described in the Figure 17 , 18A-18D and 19A-19Dshown. Further details of the ejection device described with reference to these figures can be found in the subsequently published DE 10 2022 134 222 A1, to whose content reference is expressly made here. The ejection device 8 comprises a housing 81 on which the ejector 82 is rotatably mounted. The ejector 82 acts on the activator 10, which can be coupled to a movable furniture part. The ejector 82 is biased in a rotational direction corresponding to the opening direction of the movable furniture part by a force storage device 85, and the ejector 82 can be locked in place by a locking mechanism with the force storage device 85 in tension. A clamping element 84, which is fixed to the movable furniture part, is also shown on the ejection device 8.
[0093] The ejector 82 comprises a control section located within the housing 81. A slide 88, comprising a latch 861 and a control element 871, is slidably mounted on the control section. The latch 861 is guided in the cam guide 86 on an insert element, while the control element 871 is guided on the control cam 87.
[0094] Furthermore, a pressure piece 89 is rotatably mounted on the control section and held by a fastening element 891, which is fixed to the control section. The pressure piece 89 is guided by a driver on a further control cam, which is fixed to the insert element.
[0095] In the Figures 18A and 18B The ejector device 8 is shown ejecting a movable furniture part (not shown). The ejector 82 is actuated by the force of the energy storage units 85 in Figure 18A counterclockwise and in Figure 18Brotated clockwise and thus acts on the activator 10, which moves the movable furniture part from the starting position in the opening direction.
[0096] The ejector 82 pivots so far that the bar 861 moves out of the curve guide 86, which is designed to be open and has an exit channel and an entry channel. In Figure 18B The locking bar 861 is still located in the exit channel of the curve guide 86, and in the Figures 18C and 18D The locking bar 861 on the slider 88 has moved away from the cam guide 86. The movable furniture part moves with the activator 10 at the Figures 18B to 18D from right to left, and the clamping element 84 attached to the movable furniture part comes into contact with the pressure piece 89 attached to the ejector 82 in the ejected open position.
[0097] The rotary movement of the ejector 82 causes the control element 871 to move along the control cam 87 and displace the slide 88 radially outwards, as described by the Figures 18B and 18C The part can be removed until the control element 871 is arranged in a channel that extends substantially circumferentially around the axis of rotation 821. From this open position, the movable furniture part can now be moved either in the closing direction or in the opening direction, whereby in both cases the ejector 82 is pivoted back into the starting position and the locking mechanism is brought into the starting position.
[0098] In the Figures 19A to 19D The clamping process of the ejector 82 is shown when the movable furniture part is moved back in the closing direction with the activator 10. The activator 10 then presses against the ejector 82 and pivots it in Figure 19A clockwise and in the Figures 19B to 19D counterclockwise.
[0099] The activator 10 rotates the ejector 82, and the control element 871 moves along the control cam 87, displacing the slide 88 radially towards the axis of rotation 821. The control cam 87 positions the bolt 861 so that it enters the entry channel of the cam guide 86 and there guides the slide 88.
[0100] In the Figure 19C The movable furniture part with the activator 10 is shown in an overpressure position, and the ejector 82 has been pivoted so that the bolt 861 is moved via the detent receptacle 862 along the cam guide 86. The guidance of the slide 88 is now determined by the bolt 861, and the control element 871 is inactive.
[0101] By releasing the movable furniture part, the activator 10 is moved in the opposite direction by the force of the energy storage device 85, whereby a detent projection 864 pushes the bolt 861 into the detent receptacle 862 via a stop 863, where the bolt 861 engages. Figure 19D This corresponds to the starting position and the closed position of the movable furniture part, which can be unlocked again by pressing into an overpressure position, as described above.
[0102] The ejection device 8 can be removed from the in Figure 18D The position shown can be clamped by the clamping element 84 not only by moving the movable furniture part in the closing direction, but also by moving the movable furniture part in the opening direction. Reference symbol list
[0103] 1 Furniture or household appliance element 2 Support body 21 Base support plate 22 Top support plate 23 Side panel 3 Body part 31 Base plate 32 Top plate 33 Side panel 35 Shelf 36 Support beam 4 Guide fitting 5 Guide track 51 Guide groove 52 Arm 6 Linear guide 61 Guide rail 62 Running rail 7 Support plate 71 Central area 72 Edge area 73 Fixing element 74 Fixing element 75 Fixing element 8 Ejection device 81 Housing 82 Ejector 821 Axis of rotation 83 Track 84 Clamping element 85 Energy storage device 86 Cam guide 861 Latch 862 Detent receptacle 863 Stop 864 Detent projection 87 Control cam 871 Control element 88 Slider 89 Pressure piece 891 Mounting part 9 Swivel bearing 91 Mounting plate 92 Turntable 10 Activator 11 Guide element A Direction of translation B Ejection direction R1, R2 Rotation direction
Claims
1. Guide fitting (4) for guiding the movement of a body part (3) mounted for simultaneous translational and rotational movement relative to a stationary base, comprising - a guide cam track (5), - a guide element (11) guided in the guide cam track (5), - a linear guide (6) with at least one first connecting part and a second connecting part movable relative thereto, one of which is coupled in a stationary manner to the guide element (11) and the other of which is coupled to the guide cam track (5) by means of a pivot bearing (9), - wherein the guide cam track (5) or the guide element (11) can be fixedly attached to the body part (3), characterized by - at least one ejection device (8) with an unlockable force accumulator (85), with which the body part (3) can be driven from at least one end position by exerting force counter to an ejection direction along a limited distance, and - at least one activator (10) for unlocking the force accumulator (85) of the ejection device (8).
2. Guide fitting (4) according to claim 1, characterized in that the at least one ejection device (8) is arranged in a fixed position relative to the guide element (11).
3. Guide fitting (4) according to claim 1 or 2, characterized in that two activators (10) are arranged on or fixedly spaced from the guide cam track (5).
4. Guide fitting (4) according to claim 1 or 2, characterized in that the guide cam track (5) has a guide groove (51) accommodating the guide element (11) and an arm (52) extending outside the guide groove (51), on which the at least one activator (10) is arranged, in particular integrally formed.
5. Guide fitting (4) according to claim 4, characterized in that two activators (10) are arranged, in particular integrally formed, on the arm (52) extending outside the guide groove (51).
6. Guide fitting (4) according to one of the preceding claims, characterized by a support plate (7), on which at least one of the connecting parts of the linear guide (6), which can be moved relative to one another, the guide element (11) and the at least one ejection device (8) are fixed.
7. Guide fitting (4) according to claim 6, characterized in that the support plate (7) has a central region (71), to which two first connecting parts of the linear guide (6), which are aligned parallel to one another, are fastened, and two edge regions (72) of mirror-symmetrical shape, an ejection device (8) being fixed to at least one of the edge regions (72).
8. Guide fitting (4) according to claim 1 or 2, characterized in that the at least one activator (10) is arranged in a stationary manner on the second connection part of the linear guide (6) and the at least one ejection device (8) is arranged in a stationary manner on or near the first connection part of the linear guide (6).
9. Guide fitting (4) according to claim 8, characterized in that the at least one ejection device (8) is arranged between two second connecting parts of the linear guide (6) arranged next to each other and parallel to each other.
10. Guide fitting (4) according to one of the preceding claims, characterized in that the at least one ejection device (8) is designed as an at least partially electrical ejection device (8).
11. Guide fitting (4) according to one of the preceding claims, characterized in that the linear guide consists of two guide rails (61) aligned parallel to one another and running rails (62) displaceable relative to these.
12. Guide fitting (4) according to one of the preceding claims, characterized by at least one further guide cam track in which a further guide element is guided.
13. Furniture or household appliance element (1), comprising - a support body (2) with a base support plate (21), a top support plate (22) and at least one side wall (23), - a body part (3) mounted for simultaneous translational and rotational movement relative to the support body (2), with a base plate (31), a top plate (32) and at least one side wall (33), - wherein a guide fitting (4) is arranged between the top support plate (22) and the top plate (32) and / or between the base support plate (21) and the base plate (31), - wherein the guide fitting (4) has at least one guide cam track (5) and a guide element (11) guided in or on the guide cam track (5), which are arranged on respective mutually facing surfaces of the top support plate (22) and the top plate (32) or of the base support plate (21) and the base plate (31), - wherein the guide fitting (4) further comprises a linear guide (6) with connecting parts displaceable relative to one another in a direction of translation (A), of which one is arranged on the top support plate (22) or the top plate (32) and the other is mounted on the other of the top support plate (22) or the top plate (32) by means of a pivot bearing (9) 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 (9), characterized in that - the guide fitting (4) has at least one ejection device (8) with an unlockable force accumulator (85) and at least one activator (10) for unlocking the force accumulator (85) of the ejection device (8), with which the body part (3) can be driven from at least one end position by exerting force counter to an ejection direction along a limited path.
14. Furniture element (1) according to claim 13, characterized in that the guide cam track (5) is stationary fixed to the base plate (31) or the top plate (32) of the body part (3) and the guide element (11) is stationary fixed to the base support plate (21) or the top support plate (22) of the support body (2).
15. Furniture element (1) according to claim 13 or 14, characterized in that a first guide fitting (4) is arranged between the base support plate (21) and the base plate (31) and a second guide fitting (4) is arranged between the top support plate (22) and the top plate (32).
16. Furniture element (1) according to one of claims 13 to 15, characterized in that the body part (3) can be moved relative to the support body (2) from a first functional position into a second functional position rotated by a predetermined angle relative to the starting position, the base plates (21, 31) and the top plates (22, 32) of the body part (3) and of the support body (2) being aligned in matching geometries relative to one another in both functional positions.