DE202008018347U1 - The refrigerator - Google Patents

The refrigerator

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Publication number
DE202008018347U1
DE202008018347U1 DE202008018347U DE202008018347U DE202008018347U1 DE 202008018347 U1 DE202008018347 U1 DE 202008018347U1 DE 202008018347 U DE202008018347 U DE 202008018347U DE 202008018347 U DE202008018347 U DE 202008018347U DE 202008018347 U1 DE202008018347 U1 DE 202008018347U1
Authority
DE
Germany
Prior art keywords
glass plate
characterized
housing part
appliance according
adhesive
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.)
Expired - Lifetime
Application number
DE202008018347U
Other languages
German (de)
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 Bosch und Siemens Hausgaraete 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
Priority to DE102007046032A priority Critical patent/DE102007046032A1/en
Priority to DE102007046032.7 priority
Priority to ES200703483 priority
Priority to ES200703483A priority patent/ES2335170B1/en
Priority to PCT/EP2008/052383 priority patent/WO2009043603A1/en
Priority to EPPCT/EP2008/05280 priority
Application filed by BSH Bosch und Siemens Hausgaraete GmbH filed Critical BSH Bosch und Siemens Hausgaraete GmbH
Priority to DE202008018347U priority patent/DE202008018347U1/en
Publication of DE202008018347U1 publication Critical patent/DE202008018347U1/en
Anticipated expiration legal-status Critical
Expired - Lifetime 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 COVERED BY ANY OTHER SUBCLASS
    • F25D23/00General constructional features
    • F25D23/02Doors; Covers
    • 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 COVERED BY ANY OTHER SUBCLASS
    • F25D29/00Arrangement or mounting of control or safety devices
    • F25D29/005Mounting of control devices
    • 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 COVERED BY ANY OTHER SUBCLASS
    • F25D2400/00General features of, or devices for refrigerators, cold rooms, ice-boxes, or for cooling or freezing apparatus not covered by any other subclass
    • F25D2400/18Aesthetic features

Abstract

Refrigeration appliance (1) with at least one housing part (5), which has at least one outer wall (2), characterized in that the outer wall of the housing part (5) is formed partially or completely by a glass plate (2).

Description

  • The present invention relates to a refrigeration device having at least one housing part, which has at least one outer wall.
  • Refrigerators are now an integral part of every household. In the meantime, however, consumers do not only expect them to fulfill their functional properties, but also to have an appealing, visual appearance. To change the visual appearance are often additional panels made of different materials and in a variety of colors on the outer wall of the respective housing part such. B. applied to the door of a refrigerator. Such a panel, which is additionally applied externally on the outer wall of a household appliance for decoration purposes, can make the construction of a household appliance under some circumstances too complex and aesthetically inappropriate.
  • The invention has for its object to provide a refrigerator, which has a simplified structural design and at the same time meets increased aesthetic requirements. According to the invention, this object is achieved in a cooling device of the type mentioned above in that the outer wall of the housing part is partially or completely formed by a glass plate.
  • This results in a simpler construction for the refrigeration device. On the other hand, increased demands on the aesthetic appearance of the refrigeration device are better fulfilled.
  • In particular, the present invention relates to a refrigerator comprising a housing part and a glass plate, which with the housing part a partial section or the total area of the outer wall of the housing part such. B. a door replaced. Preferably, an adhesive for connection of the housing part is provided with the glass plate. The advantage of such an adhesion connection is that the mounting of the outer wall on the respective housing part is simpler, and thus also the production of such a refrigeration device can be made simpler and therefore less expensive. In addition, it may be possible to dispense with a mechanical connection of the glass plate to the housing part in particular. This has the consequence that act through the elimination of mechanical fasteners, such as guide rails and metal plates or metal brackets, almost no mechanical stress, such as tensions, on the glass plate during assembly. Therefore, this adhesive connection technique also leads to a material and resource-saving production of the respective refrigeration device. In addition, an attractive design of the respective refrigeration device can be realized by the adhesive connection technology. This is achieved due to the omission of guide rails and metal plates, so that a frameless impression is created, which makes the refrigerator optically attractive to the consumer.
  • The inner container of a refrigeration device designed in this way can preferably be made of one piece, or possibly also of several parts. Basically, the respective housing part - such. As a door or a side wall of the body of the refrigerator - have any shape, as can be produced in an advantageous manner in any form corresponding glass plates. Thus, the housing part can have both one or more straight as well as curved or curved outer surfaces, which are partially or completely replaced by a glass plate.
  • The housing part can in particular be a cabinet body with a receiving space of a refrigeration device, in particular a refrigerator or freezer, located therein. In addition, according to a further embodiment, it is provided that the housing part is formed by a door to which the respective glass plate can be attached as part of the outer wall or as an entire outer wall. It is thus conceivable to provide only in each case the door partially or completely with a glass plate, while the remaining surfaces of the housing part are not blinded.
  • To connect the glass plate to the housing part, this preferably has a shape similar to the outer surfaces of the housing part. If, for example, the outer surface of the housing part has a curvature, then a glass plate corresponding to the outer surface of the housing part is provided.
  • In a preferred embodiment, the glass plate is made of inorganic hard glass, which can be colored according to the respective requirements of the consumer in various colors.
  • For the connection of the glass plate to the housing part, an adhesive connection is preferably provided. This is effected in particular by an adhesive. An advantage of the adhesive over mechanical connections is on the one hand a simplified mounting of the glass plate and on the other hand a visually appealing designed housing part.
  • According to an advantageous development, the adhesive in particular has a chemical compound. In principle, any chemical compound which has adhesive or adhesive properties is suitable. Dry Compounds with appropriate adhesive properties are preferably in at least partially liquid state, and therefore can be easily and inexpensively dosed and processed in the context of manufacturing. Thus, for example, be provided that the housing part is positioned in the connection with the glass plate such that the respective side to be provided with an outer wall is aligned horizontally. By means of known metering devices, the corresponding chemical compound can be applied or sprayed onto the surface of the housing. The glass plate is then applied to the surface treated with the chemical compound. This has the advantage that the attachment of the glass plate is also carried out from above, so that in practice the glass plate is only deposited from above onto the previously treated housing surface. This simplified assembly significantly reduces or even avoids damage caused by the aforementioned mechanical loads.
  • In another embodiment, an adhesive is provided as an adhesive. As an adhesive, for example, a liquid adhesive can be used. Liquid adhesive has the advantage that it can also be easily metered in the context of production and thus can be applied to the housing part to be closed with an outer wall. As an adhesive, however, any other type of adhesive may be provided. Equally conceivable would be a combination of liquid and at least partially solid adhesives.
  • Preferably, the adhesive is designed as an adhesive tape, and in particular as a double-sided adhesive tape. The use of adhesive tape has the advantage that it is easy to work with. In particular, adhesive tape can be selectively attached to specific locations of the housing, for example, at the edge, so that a material-saving processing is guaranteed. In addition, the use of double-sided adhesive tape makes it possible to dispense with additional, additional adhesives and thus further processing steps.
  • According to a preferred embodiment, the chemical compound is in particular a foam-like compound. Basically, any foam-like compound is suitable, which has corresponding, adhesive properties. Foam-like compounds with the appropriate adhesive properties can also be easily and inexpensively dosed and processed in the context of manufacturing. Preferably, the foam-like compound has an adhesive component. This ensures that can be dispensed with the use of a foam on other adhesives.
  • If the chemical compound is a foam-like compound, it should preferably also have heat-insulating properties. The afflicted with these properties foam thus serves both for the connection of the glass plate to the housing part, as well as for thermal insulation of the respective refrigeration device. Advantage of the use of a foam-like compound with the aforementioned properties is the reduction of manufacturing steps and thus a more cost-effective production.
  • When using a foam-like compound, it is advantageous if the glass plate may have elevations on its back. These bumps increase the surface area of the glass plate and thus improve the bonding properties between the foam and the glass plate by contacting the foam with a larger surface area.
  • In a further embodiment it is provided that a hook-and-loop fastener is provided as the adhesive. A Velcro is in its typical form of two nylon strips, one of which Widerhäkchen, which has other loops. When compressed, they provide a durable quick release. In this case, for example, the nylon strip with the loops attached to the housing, and the other strip with the check mark on the glass plate. After appropriate positioning of the glass plate and the housing to be veneered, the glass plate is slightly compressed only with the housing, so that connect the loops with the hook. Since the Velcro is an almost arbitrarily often to be solved closure means, the glass plate can advantageously be easily replaced or replaced.
  • According to a further embodiment, the adhesive is formed as a magnetic means. For example, the magnetic means may be adhesively attached to a glass plate made of a non-magnetizable material. However, any other suitable attachment of the magnetic means may be used. The thus attached to the glass plate magnetic means is then combined with a housing or housing part, which often consists of metal, and thus is easily magnetized, and connected thereto. However, it is also conceivable that can be dispensed with the magnetic means when magnetizable material is introduced into the glass plate, and this can thus be connected directly to the housing or housing part. This would have the advantage that can be dispensed with any means for connecting the glass plate to the housing part.
  • In a further embodiment, a frame is provided between the housing and the glass plate. In this case, one side of the frame is connected to the refrigeration device, while on the other, ie the second side of the frame by means of the adhesive, the glass plate is attached. The use of a frame has the advantage that, for example, glass plate and housing need not have similar surfaces or similar shape. Thus, for example, a straight glass plate can be attached to a household appliance with a curved or arched outer surface. The frame, as an intermediate element for connecting the housing to the glass plate, thus serves as a compensation or adaptation means for connecting a glass plate to a housing outside with a different surface or shape. In addition to the purpose previously described, the function of the frame may be to add strength or stability to the housing. In addition, in the cavity, which is formed by frame, glass plate and housing, an insulating material foam for thermal insulation are introduced.
  • The frame is preferably made of metallic material, such as stainless steel. However, any other material may be provided which has the desired characteristics or requirements.
  • In a further embodiment, an intermediate layer is provided between the glass plate and the housing part. The use of an intermediate layer has the advantage that, in particular for decorative purposes, no colored glass has to be used. Instead, a wide variety of optical effects can be realized purely through the use of differently colored intermediate layers.
  • In particular, at least one print or film can also be applied to the rear wall and / or front wall of the glass plate. The foil or printing can be made of any material that seems suitable for the purpose. Preferably, the films are made of plastic, which can be easily processed during manufacture. By means of different foils or printings different transparency levels for the glass plate and different decorations can be realized.
  • In a further embodiment, the aforementioned intermediate layer is formed as an adhesive for connecting the glass plate or cover to the housing part, in particular the refrigerator door. The intermediate layer can be designed, for example, as an adhesive film. This has the advantage that can be dispensed with additional or additional adhesive for connection of the glass plate or panel with the housing part.
  • Alternatively to a frameless glass plate as the outer wall of the door of a refrigerator, the glass plate according to an expedient development of the invention can be completed along at least one outer peripheral edge by a profile element. This gives the glass plate along the respective outer peripheral edge mechanical protection against damage. In particular, when the glass plate forms a composite structure with the respective edge-terminating profile element, it helps to improve material rigidity, preferably torsional rigidity, of the overall construction of the door. In addition, can be achieved by different material combinations of glass plate and their respective, edge-closing profile element, a favorable aesthetic appearance.
  • Other developments of the invention are given in the dependent claims.
  • The invention and its developments are explained in more detail with reference to drawings.
  • They show schematically:
  • 1 a three-dimensional representation of an embodiment of an electric refrigeration device having at least one door according to the inventive design principle, and
  • 2 a three-dimensional exploded view of an embodiment of a door constructed according to the invention for the refrigerator of 1 ,
  • In the following description of the figures, the same reference numerals designate the same or comparable components.
  • 1 provides a perspective schematic view of an electric refrigerator 1 as an embodiment of the present invention. It has a body 9 with three receiving spaces located therein, which are arranged one above the other. At the front of the carcass 9 are three appliance doors 5 provided, which are movably connected to the body and close the receiving spaces tight.
  • 2 shows a perspective schematic view of an embodiment of a door 5 from 1 , which is constructed according to the construction principle according to the invention. This is the door 5 in the 2 represented with their disassembled individual components in an exploded view. The door 5 has an internal frame part 4 , one at the front of the frame part 4 provided glass plate 2 , and one at the back of the frame part 4 provided inner wall part 3 on. The frame part 4 is designed here as a rectangular box element. It is positioned behind the glass plate. For fixing the glass plate 2 with the frame part 4 are adhesives 7 , designed as double-sided adhesive tape provided. The adhesive 7 is on the front-side contact surface of the frame part 4 applied. For thermal insulation is foam material 6 provided, which is the cavity of the frame part 4 , the glass plate 2 and the inner wall part 3 is included. Possibly. can be dispensed with the double-sided tape when the adhesive 7 is formed as a foam-like connection with corresponding adhesive components. The foam-like compound then serves both as an adhesive 7 for fixing the glass plate 2 on the frame part 4 , as well as the thermal insulation of the entire door. The foam material is in the cavity, which consists of frame part 4 , Glass plate 5 and inner wall part 3 is formed, injected and fills the cavity after appropriate hardening. The foam material is in direct contact with the above-mentioned glass plate 2 and insulates them from the rear thermally insulating. In addition, between the refrigerator door 5 and the glass plate 2 or between the frame part 4 and the glass plate 2 an intermediate layer may be provided (not in 2 shown). This intermediate layer can in turn be used as an adhesive 7 be formed, so that additional adhesive for fixing the glass plate to the frame part 4 or the door 5 can be waived. The intermediate layer may be formed, for example, as a plastic film. The frame part 4 can absorb the adhesive 7 have any constructions. For example, on the frame part 4 Indentations may be provided which the adhesives 7 , in particular adhesives.
  • Viewed differently points in the refrigeration device 1 from 1 the respective door 5 an outer wall 2 on, partially or completely through a glass plate or panel 2 is formed. A partial area or the total area of the outer wall of the door 5 is so through the glass plate 2 replaced so that the glass plate 2 into the construction structure of the door 5 integrated as a composite component. This is a heat-insulating insulating material layer 6 self-adhesive and / or by additional adhesive 7 with the inner wall of the glass plate 2 and / or with the frame part 4 connected. In particular, if necessary, one or more structural elements 12 in the insulation material layer 6 in the area of the inner wall of the glass plate 2 be foamed. The respective structural element may preferably by adhesive such. As adhesive tapes or adhesive on the inner wall of the glass plate 2 be fixed. It preferably has one or more indentations on its surface into which the foamed insulation material 6 can intervene, so that a total of sandwich or composite material between glass plate 2 , Insulation material 6 and structural element 12 is formed. In particular, it is viewed in side view H-shaped. Additionally or independently of this is the glass plate 2 on its back wall by adhesive adhesive 7 with the frame part 7 of the housing part 5 connected. The adhesives are preferably formed by one or more adhesive tapes or adhesives. Due to the adhesive connection technology, especially with the help of the insulation material alone 6 can be effected, a more attractive design of the respective refrigeration device can be realized. This is achieved due to the omission of guide rails and metal plates, so that a frameless impression is created, which makes the refrigerator optically attractive to the consumer.
  • The glass plate 2 is here in the embodiment of 2 formed substantially rectangular. It has a transparent, in particular rectangular viewing window 8th within its opaque covering area 9 on. Behind the window 8th is an electronic module 10 with a control panel and / or a display unit, in particular a display arranged. Preferably, the display unit, in particular a display, is positioned behind the transparent viewing window. The keys, preferably touch keys or touch screen keys, the control unit of the electronic module 10 may also be laterally outside the transparent viewing window in the opaque field of the glass plate 2 be arranged. In particular, therefore, the operating unit behind the opaque cover surface 9 be housed. The electronic module sits behind the glass plate 2 in a receiving shaft 11 whose entrance opening in the outer edge region of the outer wall 2 of the housing part 5 is located and extends to the desired mounting end position of the electronic module. Alternatively, behind the viewing window 8th a recess in the housing part 5 for an insight into the interior of the carcass 9 be provided of the refrigeration device KG.
  • In summary, the glass plate forms according to an advantageous embodiment of the invention, a frameless outer wall of the door of a refrigerator. She is backfoamed with insulating insulation material.
  • It may be aesthetically advantageous, in particular, if the upper edge of the glass plate has an outwardly slightly bent, d. H. has concave contour. This results in a harmonious, rounded overall impression of the refrigerator for the viewer.
  • Alternatively, according to a further advantageous embodiment, the glass plate 2 be bordered at its two vertically extending longitudinal side edges, at its horizontally extending upper edge and / or horizontally extending lower edge by a randabschließendes frame profile element, in particular by a mechanical connection, such. B. a tongue and groove connection, be held. Preferably, the outer edge of the glass plate inserted in a longitudinal groove of the associated frame profile element. In the 2 Four lateral frame profile elements surround all four lateral edges of the glass plate 2 as a rectangular outer frame. They are shown in phantom with the reference numeral 13 Mistake.
  • Optionally, the glass plate in the rectangular frame of the frame profile elements also be inserted only largely flush, so that also formed as in the above enclosure a largely seamless exterior wall for the door. Profile elements and glass plate are preferably adhesively fixed to the insulating material layer.
  • In particular, it may also be expedient if the glass plate is integrated into the interior space delimited by the four frame profile elements in such a way that a substantially uniform, in particular smooth outer surface of frame profile elements and glass plate is formed together. Forward protruding edges are thus largely avoided.
  • Alternatively, it may in particular already be sufficient if the glass plate is inserted only at its two vertically extending longitudinal side edges in each case a profile element in the manner of a spring / groove connection or is connected by another mechanical connection and / or adhesive connection with this profile element. Optionally, the two lateral profile elements and the glass plate loosely be joined together largely flush and at its respective back to the insulating material layer and / or an inner frame part such. B. 4 in 2 be attached.
  • In general terms, the glass plate can be terminated on at least one outer edge with a profile element. This can advantageously serve as a design element, as a holder element, and / or as a protective element of the glass plate against mechanical damage. The glass plate and its respective edge-side profile element are with respect to their outer contour substantially in a common position plane. This combination of components is preferably back-foamed from behind by the heat-insulating material and in particular fixed with this.
  • For the respective profile element, the side wall of the door formed by the glass plate laterally, d. H. Limited at the respective end edge, preferably a material is used which is different from glass. In particular, stainless steel, aluminum, plastic or Kevlar is selected for the particular profile element.
  • Possibly. It may also be appropriate, behind the outer wall of the door 5 arranged, with frontal view of the door inside, invisible frame part 4 from 2 omit. Then, the glass plate is either alone or in combination with one or more lateral profile elements at least on its outer edge from its rear side with the insulation material 6 back-foamed. Preferably, as well as possibly its respective edge-terminating profile element is connected by self-adhesion of the insulating material with this. These may optionally also additional adhesives such. As adhesive tapes or adhesive may be used. The inner wall part 3 In this case, it can preferably be formed as a shuttering element, which receives the insulation material in the soft-elastic, hot-tacky state. It preferably has a trough-like shape or shell shape for this purpose.
  • The above-described construction of a door for a refrigeration device is of course applicable to any, further housing part of a refrigeration device in an advantageous manner. Thus, the housing part z. B. also be formed by a longitudinal side wall of the body of a refrigerator.

Claims (12)

  1. Refrigeration appliance ( 1 ) with at least one housing part ( 5 ), the at least one outer wall ( 2 ), characterized in that the outer wall of the housing part ( 5 ) partially or completely through a glass plate ( 2 ) is formed.
  2. Refrigerating appliance according to claim 1, characterized in that the housing part ( 5 ) is formed by a door.
  3. Refrigerating appliance according to claim 2, characterized in that a partial area or the total area of the outer wall of the door ( 5 ) through the glass plate ( 2 ) is formed such that the glass plate ( 2 ) in the construction structure of the door ( 5 ) is integrated as a composite component.
  4. Refrigerating appliance according to one of the preceding claims, characterized in that a heat-insulating insulating material layer ( 6 ) self-adhesive and / or by additional adhesive to the inner wall of the glass plate ( 2 ) and / or with at least one frame part ( 4 ) of the housing part ( 5 ) connected is.
  5. Refrigerating appliance according to claim 4, characterized in that one or more structural elements ( 12 ) in the Insulating material layer ( 6 ) in the region of the inner wall of the glass plate ( 2 ) are foamed.
  6. Refrigerating appliance according to one of the preceding claims, characterized in that the glass plate ( 2 ) on its rear wall by adhesive adhesives ( 7 ) with at least one frame part ( 7 ) of the housing part ( 5 ) connected is.
  7. Refrigerating appliance according to one of claims 5 or 6, characterized in that the adhesive means are formed by one or more adhesive tapes or adhesives.
  8. Refrigerating appliance according to one of the preceding claims, characterized in that the glass plate ( 2 ) a viewing window ( 8th ), which is more transparent than its residual surface ( 9 ).
  9. Refrigerating appliance according to claim 8, characterized in that behind the viewing window ( 8th ) a recess in the housing part ( 5 ) for insight into the interior of the carcass ( 9 ) of the refrigeration device (KG) is provided.
  10. Refrigerating appliance according to claim 8, characterized in that behind the viewing window ( 8th ) an electronic module ( 10 ) is arranged with a control panel and / or a display unit.
  11. Refrigerating appliance according to claim 10, characterized in that the electronic module ( 10 ) behind the glass plate ( 2 ) in a receiving shaft ( 11 ) whose inlet opening in the outer edge region of the outer wall ( 2 ) of the housing part ( 5 ) and extends to the desired mounting end position of the electronic module.
  12. Refrigerating appliance according to one of the preceding claims, characterized in that the glass plate ( 2 ) along at least one outer peripheral edge by a profile element ( 13 ) is completed.
DE202008018347U 2007-09-26 2008-03-12 The refrigerator Expired - Lifetime DE202008018347U1 (en)

Priority Applications (7)

Application Number Priority Date Filing Date Title
DE102007046032A DE102007046032A1 (en) 2007-09-26 2007-09-26 device
DE102007046032.7 2007-09-26
ES200703483 2007-12-21
ES200703483A ES2335170B1 (en) 2007-12-21 2007-12-21 Door of appliance and domestic appliance with a door of such type.
EPPCT/EP2008/05280 2008-02-27
PCT/EP2008/052383 WO2009043603A1 (en) 2007-09-26 2008-02-27 Refrigeration unit
DE202008018347U DE202008018347U1 (en) 2007-09-26 2008-03-12 The refrigerator

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
DE202008018347U DE202008018347U1 (en) 2007-09-26 2008-03-12 The refrigerator

Publications (1)

Publication Number Publication Date
DE202008018347U1 true DE202008018347U1 (en) 2013-04-25

Family

ID=39580140

Family Applications (1)

Application Number Title Priority Date Filing Date
DE202008018347U Expired - Lifetime DE202008018347U1 (en) 2007-09-26 2008-03-12 The refrigerator

Country Status (7)

Country Link
EP (7) EP2792981B1 (en)
CN (5) CN103868315B (en)
DE (1) DE202008018347U1 (en)
PL (5) PL2205917T3 (en)
RU (4) RU2455594C2 (en)
TR (1) TR201300297T3 (en)
WO (5) WO2009043602A1 (en)

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