EP3798551B1 - Lebensmittel-aufnahmebehälter mit tragschiene, in welcher eine klappe bewegbar gelagert ist, sowie haushaltskältegerät - Google Patents

Lebensmittel-aufnahmebehälter mit tragschiene, in welcher eine klappe bewegbar gelagert ist, sowie haushaltskältegerät Download PDF

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Publication number
EP3798551B1
EP3798551B1 EP20196809.6A EP20196809A EP3798551B1 EP 3798551 B1 EP3798551 B1 EP 3798551B1 EP 20196809 A EP20196809 A EP 20196809A EP 3798551 B1 EP3798551 B1 EP 3798551B1
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EP
European Patent Office
Prior art keywords
flap
storage container
food storage
support rail
cover
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Active
Application number
EP20196809.6A
Other languages
German (de)
English (en)
French (fr)
Other versions
EP3798551A1 (de
Inventor
Ralph Staud
Thomas Tischer
Andreas Kessler
Andreas Korte
Ingo Heidenfelder
Marco Lärm
Max Eicher
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
BSH Hausgeraete GmbH
Original Assignee
BSH Hausgeraete GmbH
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Filing date
Publication date
Application filed by BSH Hausgeraete GmbH filed Critical BSH Hausgeraete GmbH
Publication of EP3798551A1 publication Critical patent/EP3798551A1/de
Application granted granted Critical
Publication of EP3798551B1 publication Critical patent/EP3798551B1/de
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Anticipated expiration legal-status Critical

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Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F25REFRIGERATION OR COOLING; COMBINED HEATING AND REFRIGERATION SYSTEMS; HEAT PUMP SYSTEMS; MANUFACTURE OR STORAGE OF ICE; LIQUEFACTION SOLIDIFICATION OF GASES
    • F25DREFRIGERATORS; COLD ROOMS; ICE-BOXES; COOLING OR FREEZING APPARATUS NOT OTHERWISE PROVIDED FOR
    • F25D25/00Charging, supporting, and discharging the articles to be cooled
    • F25D25/02Charging, supporting, and discharging the articles to be cooled by shelves
    • F25D25/024Slidable shelves
    • F25D25/025Drawers
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F25REFRIGERATION OR COOLING; COMBINED HEATING AND REFRIGERATION SYSTEMS; HEAT PUMP SYSTEMS; MANUFACTURE OR STORAGE OF ICE; LIQUEFACTION SOLIDIFICATION OF GASES
    • F25DREFRIGERATORS; COLD ROOMS; ICE-BOXES; COOLING OR FREEZING APPARATUS NOT OTHERWISE PROVIDED FOR
    • F25D17/00Arrangements for circulating cooling fluids; Arrangements for circulating gas, e.g. air, within refrigerated spaces
    • F25D17/04Arrangements for circulating cooling fluids; Arrangements for circulating gas, e.g. air, within refrigerated spaces for circulating air, e.g. by convection
    • F25D17/042Air treating means within refrigerated spaces
    • F25D17/045Air flow control arrangements

Definitions

  • One aspect of the invention relates to a food receptacle for a household refrigeration appliance according to claim 1.
  • a further aspect of the invention relates to a household refrigeration appliance with such a food receptacle.
  • Such a household refrigerator is, for example, from WO 2004/038312 A1 known.
  • recesses are formed in a lid of the food container, in which plate-like and flat flaps are pivotably mounted. It is therefore necessary that the lid itself is formed with such bordered recesses in order to be able to insert these flaps therein.
  • the pivot axis, about which a flap can be pivoted, is arranged within the lid when viewed in the height direction and thus within the height of the lid.
  • constellations occur in which the upwardly projecting portion of the flap is relatively high up. Due to the flat design of the flap, a freely projecting part of the flap that projects steeply upwards is oriented in a pivoted manner.
  • the food storage container has a bowl for holding food.
  • the food receptacle has a lid that is separate from the bowl and can be placed on the bowl to close the bowl.
  • the food receptacle has a ventilation device with which air can be exchanged between the environment and the interior of the food receptacle.
  • the ventilation device has a pivotable flap which, in an open position, exposes a ventilation opening and closes the ventilation opening in a closed position.
  • the flap has a longitudinal axis.
  • the ventilation device has a support rail that is separate from the cover and on which the flap is pivotably arranged.
  • the mounting rail has an integrated ventilation channel with which air can be exchanged between the interior of the food container and the environment.
  • the ventilation duct is closed in the closed position of the flap and open in the open position of the flap.
  • a mounting rail creates a separate additional part on which the flap is arranged.
  • the flap is pivotably arranged on this mounting rail.
  • Such a mounting rail provides a solid and robust component which serves as a support for the flap. This allows the movement of the flap to be improved. The panning movement becomes more precise. This allows the open position and the closed position of the flap to be adjusted more precisely.
  • the mounting rail is also a torsion-resistant component. Since the flap is designed to be more delicate in this context, its position and holder can be improved. This is particularly true the torsional rigidity of the flap is also increased.
  • this mounting rail creates an element with which the entire module, consisting of the mounting rail and the flap, can be attached to other components of the food container in a more mechanically stable and improved manner. In particular, this attachment only takes place via the mounting rail.
  • the ventilation device is arranged on a front edge of the lid and is arranged to project forward relative to the front edge. Viewed in the depth direction of the food receptacle, the ventilation device is arranged in a free space between the front edge of the lid and an upper bowl flange of the bowl.
  • the shell flange is in particular part of a front wall of the shell.
  • the flap when viewed in the depth direction of the food container, the flap is arranged completely in front of a front edge of the lid. This concerns the arrangement of the flap in any possible position. The flap is also arranged without contact with the front edge of this lid.
  • the flap makes it possible to reach the closed position safely and, on the other hand, to avoid undesirable protrusion too far upwards in the open position. An undesirable collision with freely projecting edges and/or the flap protruding upwards relative to the lid when the flap is open is also avoided.
  • the flap is protected by being installed in the mounting rail. Furthermore, due to its higher rigidity and mechanical load-bearing capacity, the mounting rail is suitable for guiding the pivoting movement of the flap more precisely. This makes it easier to avoid jamming of the flap when moving.
  • the mounting rail is designed as a trough. This configuration makes it particularly advantageous to accommodate the flap.
  • this specification improves the integrated design of the ventilation duct.
  • a very compact module can be provided, consisting of the mounting rail, the separate flap and the ventilation duct formed in one piece in the mounting rail.
  • the mounting rail is in particular V-shaped. This shape enables a pivoting movement of a flap to be improved. In this regard, appropriate installation space is made possible for the pivoting movement.
  • the additional design and geometry of the mounting rail is not unnecessarily enlarged.
  • an opening of the ventilation channel facing the interior of the food receptacle is formed in a V-shaped sloping wall.
  • This also allows a space-saving concept to be realized and a specifically oriented wall to be used to accommodate this opening.
  • the locally specific location of this opening in the ventilation duct also enables air to be advantageously removed from the interior of the food container. Due to this inclination, the air path is not undesirably angled, and the ventilation duct can be locally short and relatively straight. This improves the removal of air from the interior upwards.
  • the V-shape is oriented in such a way that, viewed in the depth direction, a front sloping wall is formed which rises forward and upwards. A rear sloping wall, viewed in this depth direction, is oriented rising upwards from its front end towards the rear.
  • a free space formed in the depth direction between a front edge of the lid and a rear edge of a front wall of the shell is covered by the separate mounting rail.
  • This mounting rail therefore also serves as an additional module to cover an upper opening or a loading opening of the tray together with the lid.
  • the lid is shortened in this context and supplemented by this support rail with the flap in order to cover this opening in the shell from above.
  • the support rail which is separate from the cover, is attached to a front end of the cover.
  • This is a mechanically simple connection. Nevertheless, a high mechanical holding force can be achieved here become.
  • the mounting rail has a groove at its rear end facing the cover. The front edge of the lid dips into this groove.
  • this mechanical connection between the cover and the mounting rail can be released non-destructively. This allows the mounting rail to be reversibly removed and reattached. This configuration is advantageous for cleaning purposes, for example.
  • the flap is arranged in the closed position in the height direction of the food receptacle at maximum height of an upper side of the mounting rail.
  • the flap is arranged completely recessed in the mounting rail in the closed position. In this closed position it does not protrude upwards.
  • the flap is not undesirably damaged. This can be the case if it protrudes if other objects hit it.
  • the top of the mounting rail is arranged flush with the top of the flap. This creates an overall surface without unevenness.
  • the flap is oriented particularly horizontally in the closed position.
  • the flap In the open position, which is different from this, the flap is folded down when viewed in the height direction. In particular, only that end region of the flap that has the axis of rotation is at the same height level both in the closed and in the open position.
  • the mounting rail makes it possible for the flap to be arranged completely within the mounting rail even in the open position. In any position of the flap that is possible, the flap is therefore arranged completely within the mounting rail in an advantageous embodiment. This makes a particularly protected concept possible. In particular, the more precise and improved movement control of the flap already mentioned above is thereby achieved. This concept also makes it possible for no part of the flap to protrude further upwards in the height direction in the open position than in the closed position of the flap.
  • the mounting rail has a support on which an actuating element of the food container is movably arranged.
  • This actuating element is designed to operate the flap.
  • the actuating element can be positioned in a freely accessible manner.
  • the support which is designed in particular as a flat plane, enables the relative movement guidance of the actuating elements to be permanently functional and easy for a user.
  • the support is a horizontal plane. In particular, when viewed in the depth direction, it is designed to directly close or limit the pivoting space towards the front. The actuating element is therefore arranged directly in front of this pivoting space.
  • the flap has a plate part.
  • the flap also has a coupling part that projects downwards from the plate part.
  • the coupling part is designed to be coupled to an actuation unit of the food container.
  • the actuation element is arranged on this actuation unit or is coupled to this actuation unit. This allows the pivoting movement of the flap to be initiated.
  • This design creates a precise actuation concept that transfers the movement of the actuation element very directly and precisely to the flap. This means that undesirable tolerances can be significantly reduced.
  • this design also achieves a short mechanical chain of action for transmitting the movement from the actuating element to the flap with a high compactness of the structure.
  • the actuation unit is arranged completely within the mounting rail.
  • the actuation unit has a ramp and/or the coupling part has a ramp.
  • a ramp enables the flap to move very continuously from a closed position to the open position or vice versa. This is particularly possible without jamming or jerking.
  • a coupling part which is designed in particular as a web, a relatively small area of direct contact with the actuation unit can be achieved. This allows frictional forces to be minimized when the components move relative to one another. This makes operation easier. In this context, only relatively small forces have to be exerted on the actuating element in order to achieve the movement of the flap.
  • the coupling part is formed in that half of the length of the plate part in which the pivot axis or axis of rotation of this flap is also formed on the inside.
  • the active principle is thereby further improved. This means that relatively short lever travel is achieved.
  • the actuating element is a mechanical slide which is mounted so as to be displaceable in the width direction of the food receptacle. This makes a very simple actuation movement possible.
  • the actuating element is a spring. It is also possible for the actuating element to be a motor. This means that the flap can also be adjusted using a motor.
  • the engine can be started by operating a control element, for example a push button or a touch-sensitive control panel.
  • a pivot axis or rotation axis of the flap is formed at a rear end of the flap when viewed in the depth direction of the food receptacle. Due to such an exposed arrangement of the position of the axis of rotation, the flap with this end remains at the same height in all positions. In contrast, the remaining area of the flap is pivoted. In particular, in this context, the flap is pivoted downwards from the closed position to the open position.
  • the actuation unit is a U-shaped bracket.
  • This actuation unit is arranged below the flap when viewed in the height direction of the food container, and when viewed in the depth direction this bracket extends below the flap between the actuation element and the coupling part of the flap.
  • a pivot axis of the respective rotation axis of the flap is formed on a front end of the flap in the depth direction of the food receptacle.
  • a rear end of the flap is then pivoted downwards during a pivoting movement from the closed position to the open position.
  • the ventilation duct that is then released is exposed to the front.
  • the actuation unit is a V-shaped bracket which extends in the depth direction of the food receptacle below the flap between the actuation element and the coupling part. Since in such a design, with a pivot axis at the front, the coupling part is also mounted further forward, this bracket in this version is designed to be significantly smaller than in the version in which the U-shaped bracket is designed and essentially covers a large part of the flap Viewed in depth direction, it spans.
  • the bracket which has a V-shaped cross-section, can therefore be adapted to its shape and installed in the mounting rail to save space. The same is also the case with the Design with the U-shaped bracket allows, which is also installed in particular completely within the mounting rail.
  • the mounting rail is in particular a separate attachment on the front of the cover.
  • the food receptacle has a display power.
  • An open position or a closed position of the flap is symbolically displayed in this display bar.
  • the display bar extends partially under the lid, and/or the display bar is arranged in a non-destructively detachable manner.
  • the flap is arranged completely in front of a front edge of the lid and without contact to the front edge.
  • This configuration makes it possible for the cover itself to be designed as a uniform and uninterrupted plate. This makes manufacturing easier. Since the flap is thus arranged virtually outside the surface dimensions of the lid and is specifically positioned in front of the lid in the depth direction, the movability of the flap, in particular with regard to a corresponding mechanism, can be carried out more easily and in line with needs.
  • a ventilation opening is no longer integrally formed in the lid itself, but rather a ventilation opening is formed between a lid, in particular a front edge of the lid, and the shell, in particular an upper shell flange.
  • the ventilation device has an actuating element that is separate from the flap and whose actuation allows the flap to be pivoted.
  • This design makes it possible to operate the flap in a simple and user-friendly manner. Thanks to an upwardly exposed and easily accessible design of the actuating element, a user can also easily grasp it and operate it accordingly.
  • the ventilation device is arranged on a front edge of the lid and is arranged to project forward relative to the front edge. Viewed in the depth direction, the ventilation device is arranged in a free space which is formed between the front edge of the lid and an upper shell flange of the shell. In such a configuration, this ventilation device is advantageously applied as an entire module to the lid from the front, for example plugged on.
  • the ventilation device is designed as a separate module, which can then also be a retrofit module.
  • a separate module which can then also be a retrofit module.
  • the ventilation device has a support element, which can in particular be designed like a rail. This carrier element can advantageously have a slot or a groove.
  • the front area and thus also the front edge of the lid dip into this slot or into this groove.
  • the carrier element also provides a mechanically resilient component in order to enable secure attachment to the front of the cover on the one hand, and to accommodate and carry further components, such as an advantageously present actuating element, on the other hand.
  • the coupling device for coupling to the flap can also be arranged on this carrier element or attached to it.
  • the food receptacle has a display bar with which an open position and a closed position of the flap are symbolically displayed.
  • This display bar can be a separate component.
  • the display bar can be arranged at least partially under the lid and thus extend under the lid.
  • the display bar is arranged adjacent to the actuating element.
  • the display bar can advantageously be arranged on the cover and/or on a support element of the ventilation device in a non-destructively detachable manner. This also makes it possible to replace the display bar.
  • a further aspect of the invention relates to a household refrigeration appliance with at least one food receptacle according to the above-mentioned aspect or an advantageous embodiment thereof.
  • the household refrigeration device can be a refrigerator or a freezer or a fridge-freezer combination device.
  • the household refrigerator has a housing in which at least one receiving space for food is formed.
  • the food storage container can be arranged in the storage space and forms its own closed storage area, especially when the lid is closed on the tray.
  • the food storage container can in particular be a fresh-keeping container in which an individual storage condition, in particular an individual temperature and/or humidity, can be set.
  • the household refrigerator has a humidification device with which the individual air humidity in the food container can be adjusted.
  • the food storage container can be removed from the storage space and used again and is therefore also a portable or mobile container.
  • top, bottom, front, back, horizontal, vertical, depth direction, width direction, “height direction” refers to the intended use and arrangement of the container or the device given positions and orientations.
  • Fig. 1 is shown in an exemplary representation of a household refrigeration device 1, which is designed as a refrigerator-freezer combination device.
  • the household refrigerator 1 has a body 2 with an inner container 3.
  • the inner container 3 delimits with its walls a first interior or receiving space 4, which is a cooling space, and a second interior or receiving space 5, which is arranged, for example, underneath and separated from it, which is a freezer space.
  • the receiving space 4 is generally used for frost-free cooling of refrigerated goods, preferably at temperatures between +4 ° C and +8 ° C.
  • the receiving space 4 can also be designed as a zero-degree compartment, in particular for keeping fruit or vegetables fresh.
  • the recording space 4 is accessible when the door 6, which closes the recording space 4 at the front, is open.
  • the further receiving space 5 is generally used for deep-freezing frozen goods, for example at -18 ° C.
  • the recording room 5 is accessible when the freezer room door 7 is open.
  • a refrigerated goods or fresh-keeping container is stored in a pull-out manner, which has a lid 9 and a drawer or tray 10.
  • an additional, separate cover 11 can be arranged above the lid 9, for example in the form of a partition, for example a glass shelf.
  • the fresh-keeping container represents a food storage container 8.
  • the inner container 3 has, among other things, two opposing vertical side walls 3a and 3b.
  • the food storage container 8 is separated from the remaining partial volume of the storage space 4 at least by the cover 11.
  • the food container 8 can be removed from the receiving space 4 in a non-destructive manner. Even when inserted into the receiving space 4, it is provided that the shell 10 can be pushed back and forth in the depth direction and thus in the z direction while it is still stored in the receiving space 4 in order to be able to get into the interior of the shell 10.
  • FIG. 2 is a perspective view of a portion of the household refrigerator 1, in which the food container 8 is arranged.
  • the food container 8, which can be completely removed from the receiving space 4, has a ventilation device 12. With this ventilation device 12 there is an exchange of air between the environment and a volume space or an interior 13 ( Fig. 3 ) of the food receptacle 8 allows.
  • the ventilation device 12 has a flap 14 which can be pivoted about a pivot axis A oriented in the width direction (x direction).
  • the flap 14 extends as shown in Fig. 2 is shown, essentially over the entire width of the food container 8.
  • This pivotable flap 14 releases a ventilation opening in an open position and closes this ventilation opening in the closed position.
  • the ventilation device 12 has a support rail 15.
  • the support rail 15 extends in the width direction (x direction) over the entire width of the cover 9. It is designed as a bar-like element.
  • the mounting rail 15 is formed in one piece, in particular made of plastic.
  • the flap 14 is completely arranged in this mounting rail 15. It is only mounted on this mounting rail 15.
  • the plate-like flap 14 is in Fig. 2 shown in the closed position.
  • the mounting rail 15 is a separate unit from the cover 9. Viewed in the depth direction, the mounting rail 15 is arranged on the front of the cover 9, in particular arranged directly.
  • a cover module 16 is thus formed by the cover 9 and the mounting rail 15. This cover module 16 allows the loading opening of the tray 10 to be covered from above.
  • the ventilation device 12 has an actuating element 17.
  • this actuating element 17 is a mechanical slide. It can be moved linearly in the width direction.
  • the actuating element 17 is displaceably mounted on a support 18 in the mounting rail 15.
  • the support 18 is a flat surface. In particular, it is a portion of a top side 19 of the mounting rail 15.
  • This top side opening 20 is completely surrounded all the way around.
  • the top opening 20 represents a ventilation opening 21 of a ventilation duct 22 ( Fig. 2 ) of the ventilation device 12. This top opening 20 is therefore also a ventilation opening 21 ( Fig. 3 ), as discussed above.
  • a pivot axis A is oriented in the width direction.
  • the ventilation opening 21 is limited by a circumferentially closed edge 24
  • Fig. 3 is the representation according to Fig. 2 shown, but with the flap 14 in the open position.
  • the flap 14 is pivoted downwards about the pivot axis A.
  • Fig. 4 is in a vertical sectional view along section line IV-IV in Fig. 2 a portion of the food receptacle 8 is shown.
  • the shell 10 has a front wall 25. This has a shell flange or an upper front flange 26.
  • the mounting rail 15 is arranged on a front edge 27 of the cover 9. In particular, plugging is provided here.
  • the mounting rail 15 has a groove 28 at its rear end. The front edge 27 of the cover 9 is inserted into this groove 28.
  • the mounting rail 15 bridges the distance or free space 23 formed in the depth direction between the front edge 27 of the cover 9 and a rear edge 29 of the front flange 26. This is in particular also the rear edge 29 of the front wall 25.
  • the mounting rail 15 has a front sloping wall 30. This inclined wall 30 rests on a complementary inclined wall 31 of the front wall 25. As a result, the position of the mounting rail 15 is maintained on the shell 10 when the cover module 16 is in place.
  • the mounting rail 15 points in its in Fig. 4
  • Cross-sectional representation shown (sectional plane is the yz plane) has a trough-like shape.
  • a longitudinal axis of the mounting rail 15, which runs parallel to the pivot axis A, is in Fig. 4 oriented perpendicular to the plane of the figure.
  • the cross section is therefore formed perpendicular to this longitudinal axis.
  • the mounting rail 15 has a V-shape in an advantageous embodiment.
  • a front sloping wall 32 is formed. In particular, it connects downwards to the upper front sloping wall 30.
  • this V-shape has a rear sloping wall 33. This is from its deeper and front end in the depth direction, rising backwards and upwards.
  • the front or front sloping wall 32 is viewed from a V-tip 34 and rises towards the front and upwards.
  • an opening 35 of the ventilation duct 21, which faces the interior 13, is formed in this rear inclined wall 33.
  • the flap 14 When the flap 14 is in the closed position, it is oriented horizontally. The opening 22 facing away from the interior 13 is closed.
  • a top side 36 of the flap 14 is in particular flush with a top side 19 of the mounting rail 15. In this closed position, the flap 14 is thus arranged completely recessed in the mounting rail 15.
  • the mounting rail 15 has a pivoting space 37.
  • the pivoting space 37 is there to ensure that the flap 14 moves between the closed position and the open position, as in Fig. 5 is shown, can be pivoted inside the mounting rail 15.
  • the flap 14 is arranged completely within the mounting rail 15 in all possible positions.
  • the pivoting space 37 is limited at the bottom by a boundary wall 38.
  • This boundary wall 38 is inclined. It sets the stop for the flap 14 in its in Fig. 5 shown open position.
  • the ventilation device 12 also has an actuation unit 39, as shown in Fig. 4 is shown on.
  • the actuation unit 39 here is a bracket 40 with a V-shaped cross section.
  • This bracket 40 is arranged completely within the mounting rail 15. It is a mechanical coupling element between the actuating element 17 and the flap 14.
  • the flap 14 has a coupling part 41. This is connected in one piece to a flat plate part 42 of the flap 14.
  • the coupling part 41 which is preferably designed as a web, projects downwards from an underside of the plate part 42. In particular, it rests directly on the bracket 40.
  • the bracket 40 in particular the lower web coupled to the coupling part 41, has a width direction (perpendicular to the plane of the figure in Fig. 4 ) has a rising or falling ramp.
  • the coupling part 41 has a complementary ramp in this regard.
  • the arrangement of the flap 14 is such that when the actuating element 17 is actuated by the gravity of the flap 14, the movement into the in Fig. 5 shown open position takes place. Starting from the in Fig. 5 In the open position shown, when the actuating element 17 is moved in the opposite direction, the flap 14 is then pushed up again and into the in Fig. 4 horizontal position shown. Like here and also in Figs. 2 and 3 can be seen, the pivot axis A is formed at a front end 43 of the flap 14.
  • Fig. 6 is a corresponding representation as in Fig. 2 Another embodiment of a food receptacle 8 of the invention is shown. Here too, the flap 14 is shown in the closed state. In contrast to the representation in Fig. 2 is in execution Fig. 6 The pivot axis A is also oriented in the width direction, but is formed at the end at a rear end 44 of the flap 14.
  • Fig. 7 in a corresponding representation as in Fig. 3 the open state of this flap 14 is shown.
  • the flap 14 When the flap 14 is open, when the food container 8 is viewed from the front, it allows a view into the ventilation duct 22 and into the ventilation opening 21. In Fig. 7 this is not the case.
  • This ventilation opening 21 is covered by the front area of the mounting rail 15.
  • Fig. 5 is a vertical sectional view along the section line VIII-VIII according to the design Fig. 6 partially shown.
  • the position of the pivot axis A at the rear end 44 of the flap 14 is shown here.
  • the bracket 40 is not designed here as a V-shaped bracket, but as a U-shaped bracket. This extends again, viewed in the depth direction, between the actuating element 17 and the coupling part 41.
  • the coupling part 41 when viewed in the depth direction, is arranged in that half of the plate part 42 of the flap 14 in which the pivot axis A is also formed.
  • This also applies to the example according to Fig. 2 to Fig. 5 . Therefore, with that Embodiment example in Fig. 8 the extension of the bracket 40 in the depth direction is greater than in the exemplary embodiment Fig. 2 to Fig. 5 .
  • the opening 35 is not formed in the rear inclined wall 33, but in the front inclined wall 32.
  • Fig. 9 is a sectional view along section line IX-IX in Fig. 7 shown.
  • the downwardly pivoted position of the flap 14 is shown here. This shows the open position of the flap 14.
  • An air flow T can then be shown here as in Fig. 5 escape from the interior 13 via the ventilation duct 22.
  • a display bar 45 can also be provided in all versions. This symbolically displays an open position and a closed position of the flap 14.
  • the display bar 45 is arranged in the area of the actuating element 17. Depending on the displacement position of the actuating element 17, a display area of the display bar 45 symbolizing the open position of the flap 14 is released and visible or a display area of the display bar 45 symbolizing the closed position of the flap 14 is released and visible.

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  • Engineering & Computer Science (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Physics & Mathematics (AREA)
  • Mechanical Engineering (AREA)
  • Thermal Sciences (AREA)
  • General Engineering & Computer Science (AREA)
  • Cold Air Circulating Systems And Constructional Details In Refrigerators (AREA)
EP20196809.6A 2019-09-24 2020-09-18 Lebensmittel-aufnahmebehälter mit tragschiene, in welcher eine klappe bewegbar gelagert ist, sowie haushaltskältegerät Active EP3798551B1 (de)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
DE102019214589.2A DE102019214589A1 (de) 2019-09-24 2019-09-24 Lebensmittel-Aufnahmebehälter mit Tragschiene, in welcher eine Klappe bewegbar gelagert ist, sowie Haushaltskältegerät

Publications (2)

Publication Number Publication Date
EP3798551A1 EP3798551A1 (de) 2021-03-31
EP3798551B1 true EP3798551B1 (de) 2023-11-08

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EP20196809.6A Active EP3798551B1 (de) 2019-09-24 2020-09-18 Lebensmittel-aufnahmebehälter mit tragschiene, in welcher eine klappe bewegbar gelagert ist, sowie haushaltskältegerät

Country Status (3)

Country Link
EP (1) EP3798551B1 (pl)
DE (1) DE102019214589A1 (pl)
PL (1) PL3798551T3 (pl)

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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE102021206173A1 (de) * 2021-06-17 2022-12-22 BSH Hausgeräte GmbH Speisenaufnahmebehälter, umfassend eine Klimatisierungsvorrichtung mit spezifischer Betriebszustandsanzeige, sowie Haushaltskältegerät
CN115493341A (zh) * 2021-06-17 2022-12-20 博西华电器(江苏)有限公司 包括空气调节装置的储藏容器以及家用制冷设备
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