EP3885681A1 - Compartiment de produits réfrigérés pourvu de cadre autoserrant, porte, ainsi qu'appareil frigorifique électroménager - Google Patents

Compartiment de produits réfrigérés pourvu de cadre autoserrant, porte, ainsi qu'appareil frigorifique électroménager Download PDF

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Publication number
EP3885681A1
EP3885681A1 EP21160468.1A EP21160468A EP3885681A1 EP 3885681 A1 EP3885681 A1 EP 3885681A1 EP 21160468 A EP21160468 A EP 21160468A EP 3885681 A1 EP3885681 A1 EP 3885681A1
Authority
EP
European Patent Office
Prior art keywords
frame
storage container
refrigerated goods
storage compartment
bracket
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.)
Pending
Application number
EP21160468.1A
Other languages
German (de)
English (en)
Inventor
Lena Apprich
Stefan Deissler
Denis Lux
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 EP3885681A1 publication Critical patent/EP3885681A1/fr
Pending legal-status Critical Current

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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
    • F25D23/00General constructional features
    • F25D23/02Doors; Covers
    • F25D23/04Doors; Covers with special compartments, e.g. butter conditioners

Definitions

  • the invention relates to a storage compartment for refrigerated items for a household refrigerator, with a storage container which has a loading opening for items to be cooled, and with a separate frame which is arranged on the storage container in the area of the loading opening.
  • the invention also relates to a door for a household refrigerator and a household refrigerator.
  • Door racks for household refrigerators are known in a wide variety of designs. They usually have a tub-like container into which food can be placed. Such tub-like containers can be open at the top or be covered by a cover which can be pivotably mounted. The visibility of door racks is usually impaired, in particular the visibility of the food stored therein is then restricted.
  • a refrigerated goods storage compartment known as a door rack, which has a tub-like container. Furthermore, the storage compartment for refrigerated goods has a separate profile element which encompasses an upper edge of the container on both sides in the attached state. The profile element is designed with a groove into which the upper edge is immersed.
  • the refrigerated goods storage compartment has separate adapter parts that are designed like clips. These adapter parts are also plugged onto the upper edges of the side walls of the container from above. In the assembled state, they are therefore between the container and the profile element and are used to fasten the profile element.
  • the structure is component-intensive and the profile element forms an outer part, so that the walls of the container are thereby partially covered from the outside.
  • the refrigerated goods storage compartment has a storage container.
  • the storage container has a loading opening for introducing and removing items to be cooled.
  • the refrigerated goods storage compartment also has a separate frame from the storage container.
  • the space is designed to be elastically deformable at least in some areas. Due to this deformability, a self-retaining connection can be produced, with which the frame is held in position on the storage container in a self-clamping manner and is supported on the storage container by the self-clamping force.
  • a self-retaining connection can be produced, with which the frame is held in position on the storage container in a self-clamping manner and is supported on the storage container by the self-clamping force.
  • Such a configuration advantageously provides that no additional fastening elements are required.
  • such a configuration makes it possible in a particularly advantageous manner that a secure position fixing of the frame on the storage container can be achieved in a simple manner.
  • This self-retaining connection can be produced particularly easily due to the material configuration of the frame and is particularly secure with regard to the mechanical mounting.
  • the frame is designed to be open. Viewed along its longitudinal axis, it has a first end. This first end is part of the self-holding connection. This first end is supported by force on the storage container. A particularly mechanically stable, clamping support of the frame on the storage container can thus be achieved. A particularly effective expansion is achieved in this way. The support forces can thereby be generated particularly advantageously and remain permanent.
  • the frame has a front bracket which is arranged on a front wall of the storage container or rests against it.
  • the frame also has a side bracket.
  • This side bar is oriented at an angle to the front bar.
  • the side bar ends at one end of the front bar on the latter.
  • the front bar is oriented at an angle of 90 ° to the front bar.
  • This side bracket which is in particular shorter than the front bracket, is supported by force on a step which is formed on a side wall of the storage container. The step thus serves as a stop or as a counter bearing in order to be able to clamp or spread the side bracket on it in a stable manner.
  • the side bracket is supported on the one hand both on this step and on the front wall of the storage container.
  • the side bracket represents an end piece or a cantilevered piece of the entire frame
  • the side bracket is in this regard a particularly advantageous sub-element of the frame in order to form the relevant clamp bracket.
  • the frame has two side brackets which open at opposite ends of the front bracket. It is preferably provided that both side brackets are held in position on the storage container in a self-clamping manner and are supported on the storage container by the self-clamping effect.
  • the storage container thus has two opposite side walls, each of which has a corresponding step. The respective side bracket is supported at the end on these.
  • the first end is part of the side bar and is arranged facing away from the front bar.
  • the side bracket has a length so that in the assembled state it is held in a self-clamping manner on a storage container between the front wall and the step.
  • the clear width measured in the depth direction of the refrigerated goods storage compartment between the front wall and the step is therefore dimensioned so that a
  • the side bar of the frame can only be arranged in a spread-apart manner through this self-locking positioning. This is done in that the frame is designed to be elastically deformable at least in some areas. This elastic deformability is measured in this depth direction, in which the clear width between the front wall and the step is also measured.
  • this side bracket is thus designed to be elastically deformable in the direction of its longitudinal extension and thus the longitudinal axis. This means that it can elastically change its length in this direction.
  • the frame has a base bracket. Furthermore, the frame has an elastically deformable clamping part. This elastically deformable clamping part is arranged on the base bracket. Such a configuration makes it possible for the base bracket as such to be designed to be invariable in length in the direction of its longitudinal axis. Only this elastically deformable clamping part then has this inherent elastic deformability. Such an elastically deformable clamping part can be made relatively small in this context. It is in particular that component which is then supported directly on the step.
  • the elastically deformable clamping part is in particular a soft component. It can be formed from an elastomer, for example. It can also be made of silicone.
  • the clamping part is a separate component which is attached to the base bracket.
  • the base bracket can be manufactured and manufactured separately and independently of the clamping part. In this way, different manufacturing processes and, in particular, individual material configurations of the two components can be taken into account in the best possible way.
  • the clamping part is attached to a side bracket of the base bracket.
  • the base bracket is formed in particular by the front bracket and the at least one side bracket, in particular the two opposite side brackets.
  • the base bracket is in particular U-shaped.
  • the clamping part is also made in one piece with the base bracket.
  • the entire frame can then be a 2K component.
  • the clamping part, which is elastically deformable in itself, can then, for example, be injection molded.
  • the clamping part has an elastically deformable contact plate. This protrudes from the top of the side bracket on which the clamping part is arranged.
  • the clamping part has a fastening part, in particular if it is a separate component from the base bracket. With this, the clamping part is arranged directly on the side bracket.
  • the base bracket preferably has a retaining web.
  • This retaining web has a passage or a hole.
  • the clamping part is arranged on the holding web and extends through the implementation. In particular, this is such that the clamping part is located on both sides of the bushing when it is arranged in the final assembled position.
  • the clamping part is designed as a buffer part.
  • the holding web is arranged or designed as a transverse web at a rear end of the side bracket of the base bracket.
  • an angle part to the side bracket at the rear end of the side bracket is formed, as it were, by the retaining web.
  • the stable mounting of the clamping part is improved as a result.
  • improved holding forces can also be generated.
  • this configuration with the holding web also results in an additional elastic deformation option, which is present in addition to the clamping part, in particular with respect to the side bracket of the base bracket on which the holding web is arranged.
  • the retaining web can therefore be resiliently arranged on the side bracket.
  • the frame preferably has a position stabilizing web. With this position stabilization bar, the position of the frame on the storage container can be stabilized.
  • the position stabilization bar is a separate bar from the holding bar. In particular, it is arranged in a contactless manner with respect to the retaining web. Just the position of the The frame in the width direction relative to the storage container is thereby additionally adjustable and can be maintained upright in an improved manner.
  • the position stabilization bar is formed on an inside of a side bracket of the frame.
  • the position stabilization bar extends, starting from this inside, obliquely backwards and inwards.
  • the position stabilization bar is viewed to the rear and thus cantilevered when viewed in the direction of a rear wall of the storage container. It thus also has a certain deformation elasticity or pivot elasticity. It thus acts as a kind of spring element.
  • the position stabilizing web rests against a transition between a wall section of the storage container, which forms the step, and a further wall section of the storage container adjoining it to the rear.
  • this transition in particular represents a small-area contact area on which the position stabilizing web can rest and, on the other hand, can also pivot elastically in the best possible way.
  • a corresponding spring force of the position stabilizing web can thereby also be built up in an advantageous manner. This supports the centered position of the frame on the storage container in a particularly advantageous manner.
  • the frame is attached to the storage container with at least one additional snap connection.
  • the snap connection is a separate connection from the self-retaining connection. It is also designed to be functionally and locally different from the self-retaining connection.
  • the snap connection can be formed, for example, between the front bracket of the frame and the front wall of the storage container. Snap hooks can be provided in this regard. This also prevents the front bar, in particular, from being undesirably cambered during self-clamping, preferably the side bar of the frame. An unwanted lifting of the front bracket from the front wall of the storage container is prevented. In particular, this snap connection of the front bar of the frame held close to the front wall.
  • a side bracket of the frame can also be attached to the storage container with a snap connection in addition to the self-retaining connection.
  • the storage container preferably has a receiving channel in which the frame is arranged.
  • the receiving channel is formed in an upper area of the front wall and / or by side walls of the storage container. This receiving channel also forms a certain platform on which the frame rests with its underside or its lower edge.
  • the frame is preferably arranged in an interior of the storage container on the storage container. It is therefore not arranged on the outside of the storage container. Rather, it is covered to the outside by the front wall and the side walls.
  • the storage container can be made transparent at least in the areas in which the frame is arranged. As a result, when looking at the refrigerated goods storage compartment, the attached frame can be recognized from the outside through the front wall and / or the side wall of the storage container.
  • the frame is arranged on the storage container in the area of the loading opening.
  • the frame is in particular L-shaped when viewed in a plane perpendicular to a longitudinal axis of this frame. Viewed in this cross section, the frame thus has a geometry that is simply angled in this regard.
  • the frame has a first leg which, when the frame is mounted on the storage container, extends inside the container.
  • the container limits this interior or the receiving volume with walls.
  • the arrangement of the frame is therefore such that this first leg is arranged behind a wall of the container that delimits the interior.
  • a simply constructed storage compartment for refrigerated goods can be provided.
  • the frame is geometrically very simple.
  • the refrigerated goods storage compartment enables parts of the frame that extend inside the storage container to be deliberately recognized from the outside. This creates the possibility that wall areas of the frame can be provided with additional information, which is then provided by the Wall behind which this wall area of the frame extends, can be perceived and identified. A geometry of the frame is thus created which no longer covers the outer sides of walls of the storage container, as is the case in the prior art.
  • this first limb of the L-shape In addition to using the wall areas of the frame that can be seen through the wall of the storage container, in particular this first limb of the L-shape, this also enables a greater number of variants for the storage compartment for refrigerated goods to be achieved. In particular, this allows different decor variants to be produced, which can be recognized through this transparent area of the wall. Nevertheless, through this position of this first leg of the L-shape, this first leg is then also arranged in a protected manner, so that the information display and / or variant formation of a decor display is protected and cannot be permanently impaired, for example cannot be scratched.
  • a geometrically specified frame is formed by the above-mentioned concept, which is arranged with a first leg of its L-shape lying on the inside in the storage container.
  • This first leg which extends inside the storage container, is no longer covered so that it cannot be seen from the outside due to this L-shape of the frame, but is only covered on the outside by the wall of the storage container, which, however, is transparent in the area of the first leg and thus permeable to light in the spectral range that is visible to humans.
  • the first leg has a height, measured in the height direction of the refrigerated goods storage compartment, which is a maximum of 50%, in particular a maximum of 40%, in particular a maximum of 30% of the height of the wall of the storage container.
  • the wall of the storage container is preferably single-walled, at least in the area behind which the first leg of the frame extends. This means that the wall does not have a cavity in this area or is not formed from two or more wall parts arranged one behind the other. With this configuration, a compact structure can be achieved, and in particular the optical one and thus clearer and clearer perceptibility of the outside of the first leg through the wall are made possible.
  • the first leg of the frame is opaque. It is precisely because of this that a combination is created between transparent and non-transparent areas that are produced by different components of the refrigerated goods storage compartment.
  • the opaque first leg can thus be recognized particularly advantageously through the transparent area of the wall of the storage container.
  • a particularly individual decor design of this first leg can also take place in addition to or instead of this, so that a diverse design of variants of a refrigerated goods storage compartment that is flexible with regard to the decor is made possible.
  • a second leg of the L-shape is a roof leg which, when the frame is mounted on the storage container, covers an upper edge of walls of this storage container that delimit the interior, at least in some areas from above.
  • the frame with its L-shape is arranged as an inverted L and thus positioned as an L turned upside down. Due to the above-mentioned advantageous embodiment, in which the second leg of the L-shape is oriented as a horizontal roof leg, the upper edge of the walls is thus protected by this frame. Nevertheless, this L-shape has a configuration such that an outside of a wall and in particular a front wall of this storage container is no longer covered by the frame and thus the outside of the wall, in particular the front wall of the storage container, is exposed up to this upper edge and is not covered on the outside by the frame. This enables the first leg to be recognized particularly extensively through the transparent area of this wall, in particular the front wall of the storage container.
  • the second leg of the L-shape is designed to be tapered towards its free end. This means that the second leg is thicker when it joins the first leg than that of the first leg remote end.
  • the frame is made more filigree precisely in the area and the structure is reduced in the height of the refrigerated goods storage compartment.
  • an upper side of this second leg facing away from the first leg is designed to be inclined at an angle. In particular, this inclination of this upper side is such that, coming from the first leg of the L-shape, it slopes downwards to this front free end.
  • the frame is preferably formed in one piece, in particular from plastic.
  • the frame in particular on the outside facing the wall of the storage container, has a coating.
  • This coating can be designed both materially and individually in terms of color and / or structure. This results in a wide variety of different decor variants.
  • a "behind-the-glass effect" is achieved for this first leg of the frame.
  • a coating diverse configurations can be provided, for example also painting or chrome plating.
  • the frame Since the specific shape of the frame, namely as an L-shape, also makes it very compact, space can also be saved here.
  • the frame no longer slips over the upper edge of the storage compartment walls in the form of a bead, but is also arranged in a very filigree manner here.
  • the frame viewed in the direction of its longitudinal axis, is U-shaped.
  • the frame can on the one hand be attached to the storage container in a stable position. This is because not only is there a straight frame strip, but this U-shape enables it to be attached to at least two walls of the storage container that extend in different planes.
  • this U-shape there is no formed circumferentially closed frame, which would be relatively expensive to install on the storage container. Due to the open frame shape, the frame as such is also flexible to a certain extent, so that assembly on the storage container is simplified. Manufacturing tolerances can be compensated for in a simplified manner by the assembly.
  • the storage container is designed as a shell or tub which, in addition to a base, has a front wall, two opposite side walls and a back wall.
  • the interior and thus the storage volume of the storage container is limited by the front wall, the side walls and the rear wall as well as the floor.
  • the loading opening of the storage container is limited by the upper edges of the rear wall, the front wall and the side walls.
  • the frame is thus arranged in an advantageous manner only on a front wall and side walls of the storage container adjoining the front wall. This also saves material on the one hand, which reduces the weight of the refrigerated goods storage compartment and, on the other hand, enables the compactness of the entire refrigerated goods storage compartment.
  • the refrigerated goods storage compartment is preferably designed as a door storage compartment. This can preferably be arranged non-destructively detachable on an inner wall of the door.
  • At least one side of the storage container and / or the frame, in particular a front side of the first leg of the frame, is painted or colored or is hot-stamped. It can be provided, for example, that a front side of the frame, in particular of the first leg, is hot-stamped and one side of the storage container is painted or colored.
  • Another aspect of the invention relates to a household refrigerator with a refrigerated goods storage compartment according to the above aspect or an advantageous embodiment thereof.
  • the domestic refrigeration appliance can also have a door according to the aspect mentioned above.
  • a household refrigerator 1 is shown in a simplified representation, which is designed for storing and preserving food.
  • the household refrigerator 1 can be, for example, a refrigerator or a freezer or a combined refrigerator-freezer.
  • the household refrigerator 1 has a housing 2 in which at least one receiving space 3 for food is formed.
  • the receiving space 3 can be a refrigerator compartment or a freezer compartment.
  • the household refrigerator 1 also has a door 4 which is pivotably arranged on the housing 2.
  • the door 4 is designed to close the receiving space 3 at the front.
  • the door 4 has an inner wall 5 which, when the door 4 is closed, faces the receiving space 3.
  • a door rack 6, which can be an exemplary embodiment for a refrigerated goods storage compartment 7, is arranged on this inner wall 5 by way of example and to be understood schematically.
  • the inner wall 5 preferably has integrated, vertically oriented spars 8, 9. These are oriented in parallel.
  • the refrigerated goods storage compartment 7 can in particular be releasably attached to these bars 8, 9.
  • the refrigerated goods storage compartment 7 can, for example, also be a food receiving tray which can be pushed into the receiving space 3 and pulled out again. It is then not stored and held on the door 4, but rather is only arranged in the receiving space 3.
  • FIG. 3 a partial section of an embodiment of the door rack 6 is shown.
  • This door rack 6 has a storage container 10.
  • the storage container 10 is designed like a trough. It has a front wall 11, opposite side walls 12 and 13 ( Fig. 7 ) and a rear wall 14. In addition, it has a bottom wall 15. An interior 16 of the storage container 10 is delimited by these walls.
  • the door rack 6 has a loading opening 17. Storage goods can be introduced into and removed from the interior 16 via this loading opening 17.
  • the door rack 6 is designed in such a way that, in its intended mounting position on the door 4, the rear wall 14 faces the door 4, in particular the inner wall 5.
  • the storage container 10 is in particular formed in one piece, preferably made of plastic.
  • the door rack 6 has a frame 18.
  • the frame 18 is a separate component from the storage container 10.
  • the frame 18 is preferably formed in one piece.
  • the frame 18 is in Fig. 2 shown in its assembled end position on the storage container 10.
  • the frame 18 is designed as an angled strip.
  • the frame 18 has a front bar 19. In addition, it has two opposite side brackets 20 and 21 ( Fig. 7 ) on.
  • the frame 18 is in particular U-shaped.
  • the side wall 12 and the side wall 13 each have a receiving channel 22 and 23 ( Fig. 7 ) on.
  • the front wall 11 also has such a receiving channel 24. These are formed in the upper area of the aforementioned front wall 11 and the side walls 12 and 13. Through this receiving channel 24 an outwardly formed niche is provided in which the front bar 19 of the frame 18 is arranged. These receptacles 22, 23 and 24 are in the walls 11, 12 and 13 steps 25, 26 ( Fig. 7 ) and 27 trained. The frame 18 sits on this with its lower edge.
  • the frame 18 also has on its upper edge an outwardly oriented collar 28 which covers the upper edge or the upper edge of the side wall 12, the side wall 13 and the front wall 11 or covers upwards. As a result, this collar 28 forms an upper cover for the upper edge of the storage container 10.
  • the side bracket 20 and the side bracket 21 do not extend over the entire extent of the side walls 12 and 13 in the depth direction (z-direction) (the spatial directions can be seen when the door 4 is closed)
  • Fig. 2 can be seen, the side wall 12 has an offset.
  • a step 29 is formed in this context.
  • a front wall area 30 of the side wall 12 is thus oriented further outward in the width direction (x direction) than a second wall section 31 of this side wall 12.
  • This rear wall section 31 is thus arranged offset inward. This is provided accordingly for the opposite side wall 13.
  • the frame 18 is designed to be elastically deformable at least in some areas.
  • a self-retaining connection 33 can be produced. With this self-holding connection 33, the frame 18 is held in position on the storage container 10 in a self-clamping manner. By this self-retaining connection 33, the frame 18 is supported on the storage container 10 by the self-clamping force. In particular, a rear end 34 of the side bracket 20 is supported on this step 29 in a manner that is acted upon by force. The same is true with a rear end 35 ( Fig. 7 ) of the side bracket 21 is formed on the step 32.
  • the side bracket 20 lies on the inside against the front wall 11. This also forms a stop so that the side bracket 20 is self-locking between the front wall 11 and the step 32. The same applies in this context to the side bracket 21.
  • the frame 18 has a longitudinal axis A.
  • Fig. 3 is the representation according to Fig. 2 shown in a different perspective.
  • the view of the door rack 6 from the front is shown here.
  • its assembled state can be seen on the spar 8.
  • the rear end 34 of the side bracket 20 is wedge-shaped.
  • Fig. 4 an exemplary embodiment of the frame 18 is shown in a partial area in a perspective illustration. It can be seen that the frame 18 has a base bracket 18a. This base bracket 18a is U-shaped here. The base bar 18a has the front bar 19 and the side bars 20 and 21.
  • a retaining web 37 is integrally formed in a rear edge 36 of the side bracket 20. This holding web 37 represents a transverse web. It is thus oriented in the width direction.
  • the retaining web 27 protrudes from the side bracket 20 in a cantilevered manner in the width direction on the left edge of the side bracket 20.
  • a clamping part 38 is arranged on this holding web 37.
  • the clamping part 38 is elastically deformable in itself. The elastic deformability of the frame 18 is thereby formed.
  • the clamping part 38 can be a soft component.
  • the clamping part 38 is a separate component from the base bracket 18a.
  • this clamping part 38 In the assembled state as shown in FIGS. 2 and 3 this clamping part 38, in particular with the plate-shaped contact part 39, rests directly on the step 29. A force is applied to this clamping part 38 through the scenario described above, so that it is deformed, in particular compressed. This creates the spreading or jamming of the frame 18, in particular of the side bracket 20, between the front wall 11 and the step 29.
  • the clamping part 38 is preferably formed from an anti-slip material. As a result, the generated, force-loaded support is also kept reliably fixed in position.
  • the configuration on the opposite side bracket 21 with a corresponding clamping part 38 is also corresponding.
  • a position stabilizing web 40 is formed. This is formed separately from the holding web 37. It extends from an inside 41 ( Fig. 5 ) of the side bracket 20 inwards and obliquely backwards.
  • the position stabilizing web 40 is arranged in a cantilevered manner at its rear end. In the depth direction, it extends in particular further to the rear than the holding web 37 is arranged.
  • FIG. 3 is a perspective horizontal sectional view of the arrangement in FIG Fig. 2 shown.
  • the cutting plane is the xz plane.
  • a section through the clamping part 38 is shown.
  • FIG. 5 it can also be seen how the support of the clamping part 38 is implemented on the inside of the step 29.
  • the position stabilizing web 40 rests against a transition 46.
  • the transition 46 rests between a wall section 42 of the storage container 10, which forms the step 29, and a further wall section 43 of the storage container adjoining it towards the rear.
  • the wall section 43 is part of the wall area 31.
  • FIG. 6 is a perspective view of the arranged state of the door rack 6 according to FIGS. 2 to 5 shown on the inner wall 5.
  • Fig. 7 the entire door rack 6, as explained, is shown, but with a view of the rear side 14.
  • Fig. 8 is the area I in Fig. 5 shown enlarged. It can be seen that the holding web 37 has a passage 44 in the exemplary embodiment shown. The clamping part 38 is passed through this. It extends on both sides of this passage 44. In addition to the plate-like contact part 39, the clamping part 38 has a fastening part 45. This is particularly mushroom-like or barb-like. The clamping part 38 extends on both sides of this passage 44.
  • FIG. 13 is an enlarged plan view of the embodiment according to FIG Fig. 8 shown.

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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)
  • Devices That Are Associated With Refrigeration Equipment (AREA)
EP21160468.1A 2020-03-23 2021-03-03 Compartiment de produits réfrigérés pourvu de cadre autoserrant, porte, ainsi qu'appareil frigorifique électroménager Pending EP3885681A1 (fr)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
DE102020203720.5A DE102020203720A1 (de) 2020-03-23 2020-03-23 Kühlgutabstellfach mit selbstklemmenden Rahmen, Tür sowie Haushaltskältegerät

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Publication Number Publication Date
EP3885681A1 true EP3885681A1 (fr) 2021-09-29

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Application Number Title Priority Date Filing Date
EP21160468.1A Pending EP3885681A1 (fr) 2020-03-23 2021-03-03 Compartiment de produits réfrigérés pourvu de cadre autoserrant, porte, ainsi qu'appareil frigorifique électroménager

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EP (1) EP3885681A1 (fr)
DE (1) DE102020203720A1 (fr)

Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP1338219A1 (fr) * 2002-02-25 2003-08-27 BSH Bosch und Siemens Hausgeräte GmbH Profil enfichable
DE202008007362U1 (de) 2008-06-02 2008-08-21 BSH Bosch und Siemens Hausgeräte GmbH Kühlgutabstellfach
DE202009003726U1 (de) * 2009-03-16 2009-07-16 BSH Bosch und Siemens Hausgeräte GmbH Haushaltskältegerät und Türabsteller für ein Kältegerät
WO2018069101A1 (fr) * 2016-10-12 2018-04-19 BSH Hausgeräte GmbH Élément d'appareil électroménager doté d'une liaison par bouton-poussoir et appareil électroménager doté d'un élément d'appareil électroménager de ce type

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP1338219A1 (fr) * 2002-02-25 2003-08-27 BSH Bosch und Siemens Hausgeräte GmbH Profil enfichable
DE202008007362U1 (de) 2008-06-02 2008-08-21 BSH Bosch und Siemens Hausgeräte GmbH Kühlgutabstellfach
DE202009003726U1 (de) * 2009-03-16 2009-07-16 BSH Bosch und Siemens Hausgeräte GmbH Haushaltskältegerät und Türabsteller für ein Kältegerät
WO2018069101A1 (fr) * 2016-10-12 2018-04-19 BSH Hausgeräte GmbH Élément d'appareil électroménager doté d'une liaison par bouton-poussoir et appareil électroménager doté d'un élément d'appareil électroménager de ce type

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