EP3809069A1 - Récipient de produit alimentaire doté d'un coulisseau d'un dispositif d'aération pouvant être coulissé dans le sens de la profondeur ainsi que réfrigérateur électroménager - Google Patents

Récipient de produit alimentaire doté d'un coulisseau d'un dispositif d'aération pouvant être coulissé dans le sens de la profondeur ainsi que réfrigérateur électroménager Download PDF

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Publication number
EP3809069A1
EP3809069A1 EP20197456.5A EP20197456A EP3809069A1 EP 3809069 A1 EP3809069 A1 EP 3809069A1 EP 20197456 A EP20197456 A EP 20197456A EP 3809069 A1 EP3809069 A1 EP 3809069A1
Authority
EP
European Patent Office
Prior art keywords
slide
food receptacle
snap
shell
food
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.)
Granted
Application number
EP20197456.5A
Other languages
German (de)
English (en)
Other versions
EP3809069B1 (fr
Inventor
Carlos Ramos Alzamora
Xiaowen Zhang
Elena LEINMÜLLER
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
Priority date (The priority date 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 date listed.)
Filing date
Publication date
Application filed by BSH Hausgeraete GmbH filed Critical BSH Hausgeraete GmbH
Publication of EP3809069A1 publication Critical patent/EP3809069A1/fr
Application granted granted Critical
Publication of EP3809069B1 publication Critical patent/EP3809069B1/fr
Active legal-status Critical Current
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
    • 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
    • F25D2317/00Details or arrangements for circulating cooling fluids; Details or arrangements for circulating gas, e.g. air, within refrigerated spaces, not provided for in other groups of this subclass
    • F25D2317/04Treating air flowing to refrigeration compartments
    • F25D2317/041Treating air flowing to refrigeration compartments by purification
    • F25D2317/0411Treating air flowing to refrigeration compartments by purification by dehumidification

Definitions

  • the food receptacle for a household refrigerator.
  • the food receptacle has a tray for receiving the food.
  • the food receptacle also has a lid which is separate from the shell and which can be placed on the shell to close the shell.
  • the food receptacle has a ventilation device with which an exchange of air between the surroundings and the interior of the food receptacle can be carried out. The ventilation device releases a ventilation opening in an open position and closes the ventilation opening in the closed position.
  • Another aspect of the invention relates to a household refrigerator with such a food receptacle.
  • Such a household refrigerator is for example from the WO 2004/038312 A1 known.
  • There recesses are formed in a lid of the food receptacle in which strip-like and flat plates are pivotably mounted. It is therefore necessary that the cover itself is formed with such rimmed recesses in order to be able to insert these flaps therein.
  • the pivot axis, about which a flap can pivot, is arranged within the cover, viewed in the height direction, and thus within the height of the cover.
  • the food receptacle for a household refrigerator.
  • the food receptacle has a tray for receiving food.
  • the food receptacle also has a lid which is separate from the shell and which can be placed on the shell to close the shell.
  • the food receptacle also has a ventilation device with which an exchange of air between the surroundings and an interior of the food receptacle can be carried out. In an open position, the ventilation device releases a ventilation opening of the food receptacle and closes this ventilation opening in the closed position.
  • the ventilation device has at least one slide.
  • This slide is mounted on the shell so as to be displaceable in the depth direction of the food receptacle.
  • the open position is set in a first displacement position of the slide.
  • the closed position is set in a second displacement position of the slide that is different from this.
  • Such a concept thus achieves a preferred installation position for the ventilation device. It is no longer provided on the lid of the food receptacle, but on a separate bowl. This means that it is shifted as far forward as possible, also viewed in the depth direction. This improves the accessibility for a user.
  • This position of the ventilation device which is moved forward to the maximum, also enables easier handling for a user.
  • this arrangement of the ventilation device also achieves an improved concept in that the Position can be more easily recognized by a user. Because the forward position of the ventilation device makes it easier for a user to see the position in which the slide is located, even when viewed appropriately. A particularly advantageous concept of the ventilation device is achieved by the slide. A more complex movement in the form of a pivoting movement of a flap, as is the case in the prior art, is therefore no longer necessary, but rather only a simple linear movement must be carried out. On the one hand, this is easier to implement conceptually, and on the other hand, it can be easily initiated by a user. Last but not least, this possibility of a slide with two different displacement positions also increases the precision of the setting of these different displacement positions.
  • the slide is mounted directly on the shell in such a way that it can only be moved in this depth direction. This enables a particularly simple movement concept.
  • the slide can be operated directly by a user. There is no longer a need for a separate actuating device which the user would actuate and which would move the slide. This also saves components.
  • the slide is arranged linearly displaceable directly on the shell.
  • the shell thus serves as a carrier for this slide.
  • the direct mounting of the slide on the shell means that additional mechanical components as coupling elements or the like can be dispensed with.
  • the slide is held on the shell with at least one snap connection and, in the held state, can be displaced in the depth direction.
  • a snap connection is easy to adjust and, nevertheless, secure and precise mounting is made possible.
  • the slide can not only be attached directly to the shell in a non-destructive, detachable manner by means of such a design of a snap connection.
  • the snap connection represents an advantageous embodiment in this context.
  • the snap connection also enables a relative movement between the slide and the shell to be made possible in the snapped state. In particular, there is the shift in the depth direction allows, so that the first displacement position and the second displacement position can be set or approached easily and without jamming and spreading.
  • the snap connection has at least one snap element.
  • the snap element is formed in particular on an underside of the slide.
  • this snap element is designed as a snap hook. This is another beneficial concept. Because on the one hand, the top of the slide is not restricted by any connecting elements. Snap elements positioned in this way are also avoided in this way. By positioning the snap element on the underside of the slide, a tidy positioning is achieved here and, on the other hand, an improved direct snap coupling with the shell is made possible.
  • the design as a snap hook enables a particularly secure and reliable coupling with the shell. The snapped state is kept particularly safe as a result. Nevertheless, the sliding movement of the slide relative to the shell is made possible without restriction in this defined depth direction.
  • the snap hook is designed to be resilient in the width direction of the food receptacle.
  • the slide can be placed on the shell from above and, by the springing of the snap hook occurring in the width direction, it can be guided past a counter-snap element on the shell by springing out the snap hook in the width direction.
  • the snap element is then guided past the counter snap element and brought into the snapped position.
  • the snap element and the counter snap element are arranged so as to overlap one another in the width direction of the food receptacle.
  • this snap connection advantageously achieves a holder both in the height direction and in the width direction of the food receptacle.
  • the snap hook engages under or engages behind the counter-snap element on the shell, in particular in the width direction and / or in the height direction.
  • the snap hook engages behind a counter-snap element of the snap connection, which is formed on the shell, in the width direction.
  • a counter-snap element of the snap connection which is formed on the shell, in the width direction.
  • the snap hook engages with a vertical hook web, which is thus oriented in the height direction, into a guide slot of the shell. This is done in such a way that the snap hook is guided through the guide slot during the displacement movement of the slide in the depth direction.
  • the guide link is designed as a slot. The guide link is thus limited in the direction of its longitudinal axis, which is oriented in the depth direction, at the opposite edge regions. A particularly advantageous displacement concept is achieved in this way. This enables the slide to be guided safely, in particular in a very straight line, in the depth direction.
  • the snap hook has a horizontal engagement bar. This is oriented in particular at an angle between 80 ° and 100 °, in particular 90 °, with respect to the vertical hook web.
  • a snap hook is preferably L-shaped. The snap hook engages behind said counter-snap element, in particular with this horizontal rear engagement web. With this rear engagement web, an additional guide element is preferably also created, which can rest on the underside of the counter-snap element. In this way, the guidance of the slide during the relative movement with respect to the shell in the depth direction is guided even better.
  • the snap hooks are preferably arranged in such a way that, viewed in the width direction, they face one another with their engaging webs.
  • the slide is designed in one piece.
  • it can be made of plastic.
  • the slide preferably has a strip-shaped or plate-shaped base part.
  • the at least one snap hook is formed in one piece on the underside of this base part.
  • At least one snap hook is formed on an outer quarter of the length of the strip-like slide, viewed in the direction of the longitudinal axis of the slide.
  • This position makes it possible for the snap points of the snap connection, viewed in the direction of the longitudinal axis of the slide, to be formed relatively far towards the ends.
  • the slide is mechanically coupled to the shell, in particular at the end faces. This avoids fluttering at the end or unwanted sticking up. This also avoids the situation where a relatively large part of the slide could possibly be bent upwards in the event of an end-side force.
  • the preferably present second snap element in particular the second snap hook, is also formed in a second outer length quarter opposite to the first outer length quarter.
  • the slide has at least one guide web on its underside.
  • the guide bar is a separate part from the snap element.
  • the guide web is designed and arranged at a distance from a snap element in the direction of the longitudinal axis of the slide.
  • a guide channel is preferably formed in the shell.
  • the guide channel is designed to be open at the top.
  • the guide web on the slide engages in an advantageous manner from above into this guide channel in the shell.
  • at least two such guide webs are formed on the underside of the slide.
  • a guide web is formed in one piece with the slide.
  • the second guide web which is preferably present, also engages in an advantageous manner into a second guide channel in the shell from above.
  • the guide web is formed in a middle third of the length of the strip-like slide, in particular of the base part, viewed in the direction of the longitudinal axis of the slide. This positioning enables the guiding concept to be made particularly advantageous. This promotes particularly precise linear guidance.
  • the slide has a handle on its upper side.
  • the handle can preferably be a recessed grip.
  • the handle can be grasped directly by a user.
  • Gripping this handle can mean direct contact with a user with two fingers.
  • it can also mean that only one finger is gripped on the handle or that it is contacted and the sliding movement of the slide is thereby generated by means of a corresponding action of force. This is particularly advantageous when the handle is designed as a recessed grip. Because then a single finger can be inserted into this recessed grip and the sliding movement of the slide can be initiated without undesired slipping or the like.
  • the shell has a flat upper edge. This can be referred to as a support plateau.
  • the slide is slidably mounted on this upper edge. It can be provided that the surface dimension of this upper edge, viewed in the depth direction, is greater than the dimension of the slide, in particular its strip-shaped base part, measured in the depth direction. It can also be provided that these relevant dimensions are the same in the depth direction.
  • the coupling between the shell and the slide is such that in the second displacement position, in which the closed position of the ventilation device is set, the slide, viewed in the depth direction, protrudes at least partially further back than a rear edge region of the upper edge.
  • the slide In the first displacement position of the slide relative to the shell, the rear edge of the slide, viewed in depth, can be positioned in front of the rear edge area of the upper edge or at the same depth or further back than this rear edge area of the upper edge when viewed in depth direction.
  • a free space or gap between the rear edge area of the upper edge of the shell and the front edge of the lid is at least partially released by the slide.
  • a rear edge of the slide rests against a front edge of the lid of the food receptacle when the slide is in the closed state.
  • the slide When viewed in the width direction, the slide preferably extends over at least 50 percent, in particular at least 60 percent, in particular at least 70 percent, in particular at least 80 percent, in particular at least 90 percent of the width of the shell.
  • This upper edge of the shell is preferably the upper cover of a handle on the front of the shell.
  • the handle of the shell can, for example, be a recessed grip that is open at the bottom. A user can thus reach into the recessed grip from below.
  • a handle is limited from above by a roof wall.
  • This roof wall can be the upper edge of the shell.
  • this handle also has a front boundary wall. This adjoins a front edge area of the upper edge and extends downwards from there.
  • a recess is formed in this upper edge of the shell.
  • the slide is sunk into this recess, at least in some areas, when it is mounted on the shell.
  • the slide which is designed as a separate component to the shell, is colored in an individual color. It is also possible that different slides can be mounted on the shell. These can, for example, differ in color and / or in shape and / or in dimensions be trained. This allows simple variants of a food receptacle to be formed.
  • the handle of the shell in particular the front-side boundary wall, has a decorative element.
  • the decorative element can, for example, be printing or structuring.
  • This decorative element can also be a film. Hot stamping can also be provided, by means of which such a decorative element is applied.
  • the slide can be locked in the first displacement position. It can be provided that the slide can be locked in the second displacement position. This makes it possible for at least one of these two displacement positions to be held by a locking device of the food receptacle. This prevents undesired movement of the slide from one of the two positions set in this regard. For example, when the shell is moved, in particular jerkily, because a user pulls it out or pushes it in, for example, an undesired shifting of the slide relative to the shell can be avoided. In this way it can also be avoided that when the shell is moved in this way, an undesired adjustment of the slide into a position that is not noticed by a user takes place.
  • a closed position of the slide is undesirably changed at least in part and thus a partial opening of the food storage container occurs on the ventilation device.
  • a locking device can be a snap device.
  • This snap device is in particular a connection different from the above-mentioned advantageous embodiment of a snap connection for mechanically attaching the slide to the shell.
  • the food receptacle has a display strip 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 in some areas on the shell. Especially at the top of the bowl.
  • the household refrigerator can be a refrigerator or a freezer or a combined refrigerator-freezer.
  • the household refrigerator has a housing in which at least one receiving space for food is formed.
  • the food receptacle can be arranged in the receptacle and forms, in particular when the lid is closed on the tray, its own closed storage area.
  • the food receptacle can in particular be a fresh food container in which an individual storage condition, in particular an individual temperature and / or humidity, can be set.
  • the household refrigerator has a humidifying device with which the individual air humidity in the food receptacle can be adjusted.
  • the food receptacle can preferably be removed from the receptacle and reinserted and thus also a portable or mobile container.
  • top, bottom, front, bottom, horizontal, vertical, depth direction, “width direction”, “height direction” mean that the container or the device is used and arranged as intended given positions and orientations.
  • Fig. 1 is shown in an exemplary representation of a household refrigerator 1, which is designed as a combined refrigerator-freezer.
  • the household refrigerator 1 has a body 2 with an inner container 3.
  • the inner container 3 delimits with its walls a first interior space or receiving space 4, which is a cooling space, and a second interior space or receiving space 5, which is arranged below and separated therefrom, and which is a freezer space.
  • the receiving space 4 is generally used for frost-free cooling of items to be cooled, preferably at temperatures between +4 ° C and +8 ° C.
  • the receiving space 4 can, however, also be designed as a zero-degree compartment, in particular for keeping fruit or vegetables fresh.
  • the receiving space 4 is accessible when the door 6, which closes the receiving 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 receiving space 5 is accessible when the freezer door 7 is open.
  • a refrigerated goods or fresh food container or food receiving container is mounted such that it can be pulled out and has a lid 9 and a separate drawer or shell 10.
  • an additional, separate cover 11 can be arranged over the cover 9, for example in the form of a partition, for example a glass compartment floor.
  • the fresh food container represents a food receptacle 8.
  • the inner container 3 has, among other things, two opposite vertical side walls 3a and 3b.
  • the food receiving container 8 is separated from the remaining partial volume of the receiving space 4.
  • the food receiving container 8 can be removed from the receiving space 4 in a non-destructive manner. Also in the inserted state in 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 when it is still stored in the receiving space 4 in order to be able to get into the interior of the shell 10.
  • the food receiving container 8 viewed in the height direction (x-direction), is arranged directly above a further container 8 'which is preferably present. It can preferably be provided that the food receiving container 8 is arranged at the position of the container 8 '.
  • the container 8 ′ can be a food receiving container 8 in addition to or instead of the food receiving container 8. When it is formed at the position of the container 8 ', the food receiving container 8 preferably extends further forwards in the depth direction than the container then arranged directly above it.
  • FIG. 2 a partial area of the household refrigerator 1 is shown in a perspective view, in which the food receptacle 8 is arranged.
  • the completely The food receptacle 8 which can be removed from the receiving space 4 has a ventilation device 12.
  • This ventilation device 12 enables air to be exchanged between the surroundings and a volume space or an interior 13 of the food receptacle 8.
  • the ventilation device 12 has a slide 14.
  • the slide 14 has a strip-shaped base part 15. This extends in the width direction. This base part 15 and thus also the slide 14 extend over at least 50 percent, in particular at least 60 percent, in particular at least 70 percent, in particular at least 80 percent, in particular at least 90 percent of the width of the shell 10 measured in the width direction.
  • the slide 14 is formed in one piece . It is made in particular from plastic.
  • a handle 17 is preferably formed on an upper side 16 of the slide 14, in particular the base part 15.
  • the handle 17 is designed in particular as a recessed grip.
  • On an underside 18 of the slide 14, in particular of the base part 15, are, as shown in FIG Fig. 3 can be seen, a first snap element 19 and in particular a second snap element 20 is integrally formed.
  • the snap elements 19 and 20, viewed in the direction of a longitudinal axis A of the slide 14, which extends in the width direction, are formed at outer longitudinal quarters. In particular, they are formed at the end of the base part 15 on the underside 18.
  • the snap elements 19 and 20 are preferably designed as snap hooks.
  • at least one guide web 21 is formed on the underside 18.
  • two guide webs 21 and 22 are formed integrally with the base part 15.
  • the two guide webs 21 and 22 extend perpendicular to the longitudinal axis A. They thus extend in the depth direction (z-direction).
  • the guide webs 21 and 22, viewed in the direction of the longitudinal axis A are preferably formed in a central third of the length of the entire length of the base part 15. They are separate elements from the snap elements.
  • the guide webs 21 and 22 are not designed as snap elements.
  • the shell 10 has a front wall 23.
  • the front wall 23 has an upper edge 24.
  • the upper edge 24 is formed as a surface in the exemplary embodiment. In particular, it is a rectangular area.
  • the upper edge 24 represents an upper cover and thus a roof wall of a handle 25.
  • the handle 25 is formed in one piece in the front wall 23.
  • the handle 25 is in particular a recessed grip that can be gripped with one hand by engaging from below.
  • the handle 25 is also delimited by a vertical delimitation wall 26.
  • This vertical boundary wall 26 is a front wall. It adjoins a front edge region 27 of the upper edge 24.
  • the upper edge 24 also has a rear edge region 28.
  • a recess 29 is formed in this upper edge 24.
  • the slide 14 is arranged in this recess 29 when it is mounted on the shell 10, in particular the front wall 23.
  • the slide 14 is a separate component from the shell 10.
  • the slide 14 is arranged on the front wall 23 in a non-destructive detachable manner. In particular, it is arranged snapped into the recess 29.
  • a free space or a gap 30 is formed between the rear edge region 28 of the front wall 23 and a front edge 31 of the cover 9.
  • This free space or gap 30 can be covered or released by the slide 14.
  • the slide 14 is snapped onto the upper edge 24 by a snap connection 32.
  • the recess 29 can also not be formed in one embodiment.
  • the counter snap elements 33 and 34 are formed on the upper edge 24. In particular, they are designed as holes or perforations in the upper edge 24. As can be seen, these counter-snap elements 33 and 34 are preferably designed as slots oriented in the depth direction. In this context, they also represent elongated holes. In particular, in an advantageous embodiment, these counter-snap elements 33 and 34 are also functionally designed as guide slots 35 and 36 at the same time. This means that on the one hand they are components of the snap connection 32, so that the snap elements 19 and 20 can be snapped together.
  • these snap elements 19 and 20 can be displaced in the depth direction, in particular only in the depth direction, relative to the counter snap elements 33 and 34, since these are also designed as guide links 35 and 36.
  • the snap elements 19 and 20 In the snapped state of the slide 14 on the shell 10, in particular the front wall 23, it is therefore possible for the snap elements 19 and 20 to move relative to the counter snap elements 33 and 34.
  • a relative movement in the depth direction is made possible in this regard.
  • only a movement in the depth direction is possible.
  • guide channels 37 and 38 are formed in the upper edge 24.
  • the guide webs 21 and 22 engage in these guide channels 37 and 38 from above. This enables a further improved guidance of the slide 14 in its relative movement to the front wall 23 in the state arranged thereon.
  • at least two defined displacement positions can be set.
  • a first displacement position of the slide 14 on the shell 10 an open position of the ventilation device 12 is set. This is in the perspective partial view of the food receptacle 8 in FIG Fig. 5 shown.
  • this first displacement position and thus the open position of the ventilation device 12 there is a distance between the front edge 31 of the cover 9 and a rear edge or a rear edge region 43 of the slide 14, in particular of the base part 15. This creates a ventilation gap. This is the gap 30.
  • the rear edge region 43 is designed in particular with a bevel 39, as shown in FIG Figures 10 to 13 can be seen.
  • the front edge 31 is inclined in a complementary manner.
  • an improved closing effect is achieved between the front edge 31 resting against one another and the rear edge region 43.
  • the slide 14 can only be displaced backwards in the depth direction, in particular only in the depth direction. It is then in the second shift position, as shown in Fig. 4 shown is brought.
  • This second displacement position of the slide 14 is the closed position of the Ventilation device 12.
  • the slide 14 is not mounted on the cover 9. At most, it is in direct contact and rests against the front edge 31 when the slide 14 is arranged in the second displacement position.
  • Fig. 6 is shown in a perspective view of the food receptacle 8, it being cut at the front.
  • the relevant cutting plane is in the xy plane.
  • the cutting plane is as shown in Fig. 4 drawn along the section line VI-VI. In particular, this cutting plane is drawn in the area of the snap elements 21 and 22. Therefore, according to the partial representation in Fig. 7 the snapped state of the snap element 20 with the counter snap element 34 is shown.
  • the snap element 20 has a vertical hook web 40.
  • the snap element 20 has a rear engagement web 41 adjoining the vertical hook web 40.
  • the rear engagement web 41 is oriented horizontally.
  • the snap element 20 is preferably L-shaped in this sectional plane.
  • the rear engagement web 41 is designed to overlap with the upper edge 24 in the width direction.
  • the engaging web 41 engages behind or engages below the boundary wall of the upper edge 24, which bounds the counter-snap element 32.
  • Fig. 8 Area II is shown in a corresponding representation in Fig. 6 shown.
  • Fig. 8 a corresponding configuration of the snap element 19 can be seen in this context, as has already been explained with regard to the shape and configuration for the further snap element 20.
  • the snap elements 19 and 20 are arranged so that they are facing each other with their rear engagement webs 41 and 42.
  • FIG. 9 in a partial representation of area III in Fig. 6 shown. The engagement of the guide webs 21 and 22 in the guide channels 37 and 38 is shown here.
  • a partial area of the food receptacle 8 is shown in a further perspective sectional illustration.
  • the section plane in the yz plane is shown here.
  • the cutting plane is formed here outside the handle 17 of the slide 14.
  • the first displacement position of the slide 14 is shown here, in which the open position of the ventilation device 12 is set.
  • a front edge region 44 of the slide 14, in particular of the base part 15, is rounded.
  • the rear edge region 43 is rounded.
  • the representation is according to Fig. 10 shown, but the slide 14 is moved back in the depth direction, so that the second displacement position is set.
  • the closed position of the ventilation device 12 is thus set.
  • An air flow L as shown in Fig. 10 is shown and escapes from the interior 13 is no longer possible here.
  • a corresponding first displacement position of the slide 14 is shown in a perspective sectional illustration, the section here being different from Fig. 10 is pulled in the area of the handle 17.
  • FIG. 13 is a representation with the closed position of the ventilation device 12 shown, as shown in FIG Fig. 11 is shown.
  • Fig. 11 is in Fig. 13 analogous to Fig. 12 the cutting plane drawn in the area of the handle 17.
  • the cut is in Figures 12 and 13 also pulled through the guide web 21 and the guide channel 38.

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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)
  • Closures For Containers (AREA)
EP20197456.5A 2019-10-18 2020-09-22 Récipient de produit alimentaire doté d'un coulisseau d'un dispositif d'aération pouvant être coulissé dans la direction de la profondeur ainsi que réfrigérateur électroménager Active EP3809069B1 (fr)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
DE102019216098.0A DE102019216098A1 (de) 2019-10-18 2019-10-18 Lebensmittel-Aufnahmebehälter mit in Tiefenrichtung verschiebbarem Schieber einer Lüftungsvorrichtung, sowie Haushaltskältegerät

Publications (2)

Publication Number Publication Date
EP3809069A1 true EP3809069A1 (fr) 2021-04-21
EP3809069B1 EP3809069B1 (fr) 2023-07-19

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EP20197456.5A Active EP3809069B1 (fr) 2019-10-18 2020-09-22 Récipient de produit alimentaire doté d'un coulisseau d'un dispositif d'aération pouvant être coulissé dans la direction de la profondeur ainsi que réfrigérateur électroménager

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EP (1) EP3809069B1 (fr)
DE (1) DE102019216098A1 (fr)
PL (1) PL3809069T3 (fr)

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
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US2255503A (en) * 1939-10-26 1941-09-09 Gen Electric Ventilated food storage receptacle
WO2004038312A1 (fr) 2002-10-23 2004-05-06 Lg Electronics Inc. Compartiment a legumes pour refrigerateur
KR20090133008A (ko) * 2008-06-23 2009-12-31 엘지전자 주식회사 조절부재를 구비한 냉장고
KR101097002B1 (ko) * 2009-12-17 2011-12-20 엘지전자 주식회사 냉장고
CN102607234A (zh) * 2012-03-29 2012-07-25 合肥美的荣事达电冰箱有限公司 用于冰箱的储物盒和具有该储物盒的冰箱

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