EP2247904A2 - Appareil frigorifique et contenant de rangement associé - Google Patents

Appareil frigorifique et contenant de rangement associé

Info

Publication number
EP2247904A2
EP2247904A2 EP09714267A EP09714267A EP2247904A2 EP 2247904 A2 EP2247904 A2 EP 2247904A2 EP 09714267 A EP09714267 A EP 09714267A EP 09714267 A EP09714267 A EP 09714267A EP 2247904 A2 EP2247904 A2 EP 2247904A2
Authority
EP
European Patent Office
Prior art keywords
receiving part
end position
refrigerating appliance
appliance according
holder part
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
EP09714267A
Other languages
German (de)
English (en)
Other versions
EP2247904B1 (fr
Inventor
Ralph Staud
Thomas Tischer
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 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 Bosch und Siemens Hausgeraete GmbH filed Critical BSH Bosch und Siemens Hausgeraete GmbH
Priority to PL09714267T priority Critical patent/PL2247904T3/pl
Publication of EP2247904A2 publication Critical patent/EP2247904A2/fr
Application granted granted Critical
Publication of EP2247904B1 publication Critical patent/EP2247904B1/fr
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

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
    • F25D23/028Details
    • 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 refrigeration device with at least one storage container, which has a fixed holder part and a receiving part movably mounted thereon for depositing goods to be cooled.
  • Refrigerators such as refrigerators, freezers or fridge freezers usually have one or more Abstell electnisse, ie so-called door racks, on the inner walls of their doors.
  • a first type of Abstell as Abstell asnis is formed by a box-shaped, open-top receiving part, which is rigid, that is immovably fastened to the inner wall of the respective door.
  • second type Abstell asnisse or door racks each having a fixed holder part and a movably mounted receiving part for parking good to be cooled.
  • the fixed holder part serves to attach or fix on the inner wall of the respective door. Due to the fact that the receiving part can be folded away from the inner wall of the respective door, it is possible to place it in the receiving part to be cooled in a more comfortable manner than in the case of a rigidly formed receiving part or to remove it therefrom. In particular, bulky or high, to be cooled goods such as bottles, packaging or other drinking containers can be more easily put into the movably mounted receiving part of this second type of door racks and take out again than is the case with the first type.
  • such laterally mounted hinges may restrict the freedom of design with respect to the outer and / or inner geometry of the door compartment under circumstances or interfere with the appearance of the outer and / or inner contour shape of the movably mounted receiving part and the associated, fixed holder part in the sidewall area.
  • largely opaque materials for receiving part and holder part are usually used.
  • the respective lateral hinge remains visible. Due to the central attachment of the respective lateral swivel joint on the side wall of the respective door compartment, it may also be necessary to limit the Abstelltiefe the bottom part of the receiving part so strong that in its tilting a rub against the rear wall of the holder part is avoided.
  • the tilting movement during loading and / or unloading of goods to be cooled may be too low. It may also be due to the lateral pivotal mounting of the receiving part of the respective door compartment under certain circumstances to an undesirable tilting, ie return and rocking of the receiving part.
  • a laterally mounted receiving part only manually, ie actively under force by an operator in its closed-end position are tilted back, which is perceived as uncomfortable and annoying. If the operator forgets about tilting back, it may happen that the door rack strikes an internal component of the refrigerator or a stored product to be cooled.
  • the invention has for its object to provide a refrigeration device with at least one Abstell thereinis that has a higher comfort function and at the same time improved shape with respect to its shape geometry.
  • this object is achieved in a refrigeration device of the type mentioned above in that the receiving part is rotatably mounted on the holder part in the region of its lower, front end edge with at least one hinge such that on the receiving part in the respective opening position between its closed end position and its opening End position a resulting, restoring torque is effected, through which it automatically tilts back into its closed position.
  • the geometry shape of the receiving part and / or the holder part of the door compartment according to the invention in the region of its side walls or side cheeks can be designed largely free.
  • the receiving part and / or the holder part can be formed there wider than before in the conventional door cabinets with laterally mounted in the middle of the longitudinal sides of the receiving part pivot bearings. This makes it possible to provide an increased storage space for goods to be cooled. Generally speaking it is Thus, by the forward displacement of the respective pivot joint in the region of the lower front end edge of the receiving part and / or holder part in an advantageous manner, the formation of a wider container interior of the Abstell mattersnisses allows.
  • the holder part whose side walls can be formed in particular as a shortened side flanges or even completely omitted in an advantageous manner.
  • An overlap or a double-walled meshing of the side walls of the holder part and receiving part, as is structurally caused by the side pivot bearings in the door cabinets of the old type, can be partially or completely avoided when inventively rotatably mounted door racks.
  • the storage container in the sidewall region which is visible to a user can now be formed by the vorverlagerte swivel joint preferably single-walled.
  • the respective side wall of the Abstell mattersnisses is in particular formed only by a side wall of the rotatably mounted receiving part.
  • the two side walls of the respective Abstellites can thus be formed in an advantageous field mostly or completely single-walled. In particular, they are preferably formed only by the two side walls of the invention rotatably mounted receiving part.
  • the receiving part with the present invention vorverlagerten swivel in the respective tilted or Aufmachposition an increased height clearance related to the available Einstell
  • the Abstell variousnisses for discontinued or to be taken goods such as beverage bottles, packaging or other beverage containers such as milk cartons, etc., in Free comparison to conventional door cabinets.
  • the upper edge, ie loading edge of its front wall can be further lowered in the opening-end position than was previously possible with laterally rotatably mounted door racks.
  • higher goods can be adjusted or removed more easily.
  • the loaded or empty receiving part automatically, ie by itself due to its own weight, fold back without action of the operator in the direction of its closing end position.
  • the receiving part in its respective opening position in particular the opening end position, remains tilted out at an angle relative to the largely flat inner wall surface of the door and thus protrudes too far out of the inner wall of the door when it is closed. If the receiving part would remain in a tilting position, in particular in its opening end position, when closing the door, it could protrude so far in relation to the inner wall of the door with the upper edge of its front wall that it abuts against an inner component in the inner container of the refrigerating appliance, such as a Carrying plate or a vegetable compartment.
  • At least one hinge on the underside of the bottom of the receiving part is provided in the region of the lower front edge.
  • the at least one hinge on the underside of the bottom of the receiving part is advantageously largely hidden and thus largely invisible to a viewer.
  • At least one rotary joint relative to the lower front edge of the receiving part on the underside of the bottom to set back a specifiable reformschrand something, so that it further improves the device from the perspective of an operator when they are frontal on the front wall of such a trained Door cabinet sees.
  • the at least one hinge directly along the lower front edge of the receiving part sections or consistently along the axial length provided.
  • both the receiving part and the holder part of the inventively constructed Abstell disposeers are advantageously transparent. This results in an advantageous manner, the optical effect of a wider container interior for inventively designed storage container. In particular, this can give a more transparent, aesthetically quiet overall appearance.
  • the same plastic material can be used in particular for both the fixed holder part and the rotatably mounted receiving part in the forward displacement according to the invention whose at least one rotary joint in a front area near the bottom of the lower front edge of the Abstell electnisses.
  • the respective side wall of the receiving part of the inventively constructed Abstell meetings encounters or door compartment can be made with about the same wall thickness as the front wall.
  • even thinner wall thicknesses or wall thicknesses of the side walls as well as the front wall of the storage container constructed according to the invention are sufficient than was required in the conventional storage containers with the pivot joints arranged centrally on the side walls of the receiving part.
  • thicker wall thicknesses of the side walls of the holder part in order to provide sufficient material rigidity of the side walls can. This can now be omitted in the storage container constructed according to the invention, since the at least one rotary joint is displaced forward into the bottom-side region of the storage container designed according to the invention.
  • the rotary joint is composed of at least one bushing element and at least one bolt or pin element on Receiving part and / or holder part together.
  • the inner contour of the respective bushing part corresponds to the outer contour of the associated bolt part.
  • the respective socket member may be attached to the underside of the bottom of the receiving part in the region of the lower, front end edge or directly on the lower, front end side of the receiving part, while the associated
  • Bolt element or pin element is arranged on the underside of the bottom of the holder part or directly on the lower, front end side of the holder part.
  • the respective socket element along a portion or the entire axial length of the lower front edge of the receiving part and / or the associated bolt member along a portion or the entire axial length of the lower front edge of the holder part extend.
  • Bottom of the bottom is provided in the region of the lower front edge of the holder part, while the associated bolt element at the lower front edge of the receiving part or at the bottom of the bottom of the receiving part in the region of the lower
  • Front edge is attached.
  • the respective rotary joint can be designed as a so-called hinge or rolled hinge.
  • a so-called rod hinge or piano hinge may be expedient in which in each case a rotary joint section is provided at predetermined longitudinal intervals. Considered along the axial longitudinal extension of the lower front edge of the receiving part is thus provided a plurality of hinge or rotary hinge sections.
  • a so-called flat band hinge may be provided as the respective pivot.
  • the receiving part and the holder part at one or more axial longitudinal locations in the region of the lower front edge of the receiving part are preferably in one piece via a common web element connected together.
  • this web element is thin-walled, preferably in the form of a folding element. Due to its flexibility, this allows a certain rotational movement of the receiving part and the holder part connected to one another via the common folding element.
  • a hinge hinge is in particular a simple and inexpensive variant as a hinge when the receiving part and the holder part are made in particular of plastic.
  • the receiving part and the holder part are then preferably integrally connected to each other.
  • polypropylene is preferably suitable as the material for the holder part and the receiving part as well as the respective folding hinge because of its excellent wear resistance.
  • Figure 1 shows a schematic representation of the interior of a refrigerator with a
  • FIG. 2 shows, in a diagrammatic cross-sectional view from the side, one of the storage containers of FIG. 1 in its closing end position
  • Figure 4 is a schematic representation of a rear view of the Abstell artnisses of Figures 2, 3 viewed from the bottom of the holder part ago, and
  • Figure 5 is a perspective view of a tilt lock in the opening-end position of the receiving part of the storage container of Fig. 2 with 4 in the region of
  • FIGS. 1 and 5 Elements with the same function and mode of operation are shown in FIGS. 1 and 5, respectively provided the same reference numerals.
  • FIG 1 shows schematically in perspective the interior of an open, double-door refrigeration device KG as an advantageous embodiment of a refrigerator according to the invention.
  • the refrigerator KG has a common housing with two vertically extending inner containers F1, F2 side by side, i. Set side by side and separated by a partition TW on.
  • the first inner container F1 left in Figure 1 is e.g. as a freezer ("freezer") and the second inner container F2 as a refrigerator ("cooler”) formed.
  • both inner container can be designed as refrigerators or freezers.
  • both inner container for the sake of simplicity, each referred to as a refrigeration cabinet.
  • Each refrigeration cabinet F1, F2 can be closed by a specially assigned door TU1, TU2.
  • the respective door TU1 or TU2 is rotatably suspended on the outer longitudinal frame of the refrigeration device KG.
  • the pivotable, free longitudinal sides of the doors TU1, TU2 with a sealing lip on the front surface of the partition TW.
  • each refrigeration cabinet F1 or F2 a plurality of support plates, drawers, storage compartments and / or one or more freezers are provided.
  • the respective door racks or Abstell elects are attached on the inner wall TIW of the respective door TU1 or TU2 .
  • the respective door rack, such as BE1 is between the vertical longitudinal side edges of the inner frame such.
  • IR1 of his door such as TU1 inserted largely passively, i. it extends substantially over the clear width of the two mutually parallel, vertical longitudinal side edges of the inner frame IR1 of the door TU1 in order to achieve the best possible use of space.
  • Such door racks are of course also in other refrigerators such as One or more door freezers, fridge freezers, refrigerators on the inner wall of the respective door attachable.
  • FIG. 2 shows, in a schematic cross-sectional view from the side, the storage container BE1 on the inner wall TIW of the door TU1 in a closing end position SP.
  • the holder part HT has a spatially considered flat-rectangular rear wall RHT. This lies with its rear wall surface largely planar surface on the outer surface of the door inner wall TIW. 2, the rear contact surface of the rear wall RHT of the holder part HT extends essentially in a straight line and parallel to the inner wall TIW, which extends in a substantially rectilinear manner.
  • a bottom part BHT is formed approximately at right angles to the rectangular rear wall RHT. This is preferably plate-shaped.
  • the bottom part BHT has an outer contour, viewed in plan view from above, in particular in the form of a regular trapezium.
  • the bottom part BHT is wider along its common rear end edge with the rear wall RHT than at its front end edge.
  • the bottom part BHT thus stands opposite its rear wall RHT at about 90 ° angle from the inner wall of the door TIW.
  • At the two longitudinal edges of the rear wall RHT short soflanschmaschine are formed approximately at a 90 ° angle. These are not visible in the cross-sectional image of Fig. 2 and for an operator in the intended use of the storage container BE1. 5, the storage container BE1 is viewed in fragmentary representation from the rear wall RHT of the holder part in a slightly perspective view.
  • a lateral short side flange SW1 is formed substantially rectangular.
  • This side flange SW1 has a fixing element FM on its outer wall surface, which engages in an associated, corresponding receiving element in the inner edge IR1 of the door TUI.
  • the fixing FM is designed as a U-shaped, outwardly projecting bracket. This can be plugged into a groove in the inner edge IR1 of the door TU1 congruent thereto, which has been omitted from the drawing simplicity in the figure 5.
  • the holder part HT can be detachably mounted on its two molded, short side flanges at opposite locations of the two vertically extending longitudinal edges of the inner frame IR1 of the door TU1.
  • a clamping or plug connection may be advantageous, which allows easy mounting of the holder part HT in corresponding receiving means or receiving sockets on both sides of the inner frame IR1 and a simple removal or suspension of the holder part HT from this suspension.
  • the holder part HT can be removed, for example for cleaning, in a user-friendly manner from the inner wall TIW of the door TU1.
  • the lateral flange parts such as e.g. SW1 on the rear wall RHT of the supporting part HT also be omitted.
  • the holder part composed solely of its bottom BHT and its rear wall RHT and viewed in side view has an L-shaped geometry shape.
  • the rear wall RHT of the holder part HT is expediently locked or fixed to the inner wall TIW of the door TU1 by means of one or more corresponding fixing means.
  • the receiving part AT is formed in the first approximation as an open-topped box. Viewed from above, its outer contour is also substantially trapezoidal. Its outer contour is seen wider from the front to the rear. This illustrates the perspective view of Figure 4, which shows the Abstell therenis BE1 viewed from its underside.
  • the box-shaped receiving part AT sits down Here in the embodiment (viewed from the front when viewed from the front) of a substantially horizontally disposed, plate-shaped bottom part BAT, a substantially vertically extending rear wall RAT, a substantially vertically extending front wall VAT and two substantially vertically extending side walls together, the front wall VAT and the Connect rear wall RAT together.
  • FIG. 5 shows a rear corner region between the rear wall RAT and a side wall SE1 of the receiving part AT.
  • the side walls, the front wall VAT and the rear wall RAT are substantially perpendicular to the plate-shaped, in particular largely flat bottom part BAT.
  • the receiving part AT is rotatably mounted with the aid of a rotary joint DS in the region of its lower, front end edge SK rotatably in the region of the front end edge HK (see Figure 4) of the bottom part BHT of the holder part HT.
  • the swivel joint DS in the front region of the bottom part BAT is set back a little relative to its front edge SK by a predefinable screening edge.
  • the lateral offset of the rotary joint DS with respect to the lower front edge SK of the receiving part AT is indicated in FIG. 2 by a double arrow VS.
  • the swivel DS sits at the bottom of the bottom part BAT of the receiving part AT.
  • the rotary joint is formed by an axial longitudinal hinge along the substantially rectilinearly extending front edge or front end edge of the bottom part BHT of the support part HT. It consists of two socket elements BU1, BU2 (see Figure 4) on the underside of the bottom BAT of the receiving part AT in the region of the front end edge SK and an associated bolt element or pin member BO along the front edge of the plate-shaped bottom BHT of the support member HT together.
  • the two bushing elements BU1, BU2 are each formed in a lateral, axially extending end region of the lower front edge SK of the bottom BAT of the receiving part AT (see FIG. 4) on the underside of the bottom BAT of the receiving part AT.
  • the cross-sectional view of Figure 2 shows the Abstell thereis BE1 in the region of the first female element BU1.
  • the socket element BU 1 is designed as a part-circular receiving tray. It is in particular as convex forward curved nose to the underbody of the Bottom part BAT molded. As a kind of partial sleeve, it surrounds a partial section of the outer circumference of the bolt element BO, which is designed to be part-circular in cross-section.
  • the bolt element BO is formed by a longitudinal bead or a thickened longitudinal strand, which runs continuously in the axial direction along the entire front edge of the bottom BHT of the supporting part HT. This extending over the entire width of the bottom BHT of the holder part HT longitudinal ridge is formed in the region of the top and bottom of the bottom part BHT and the front side to a first approximation part-circular cylindrical.
  • the inner contour of the nose-shaped downwardly projecting from the bottom of the holder part HT bushing element BU1 is suitably shaped corresponding to the outer contour of the bolt member BO.
  • the bushing element BU1 functions as a bearing shell or socket for the bolt element BO and allows for the receiving part AT a rotational movement or tilting movement about the rounded peripheral part of the bolt element BO around.
  • the central axis of the bolt or pin element BO forms the axis of rotation DA for the tilting movement or rotary rotational movement of the receiving part AT.
  • the bolt element BO is clamped largely passively into the respective bush element, so that in the axial direction along the longitudinal profile of the front end edge of the bottom BHT of the holder part HT considered, ie here perpendicular to the image plane of Figure 2 and Figure 3, an axial locking for the Recording part AT is effected.
  • the bottom BAT of the receiving part AT is substantially parallel to the bottom BHT of the holder part HT.
  • the rear, lower corner edge or lower trailing edge HK of the receiving part AT is placed on the bottom BHT of the holder part HT.
  • Both floors BAT, BHT sit in the closing end position one above the other and extend substantially at right angles with respect to the rear wall RHT of the holder part HT.
  • the fixed bottom part BHT of the holder part HT and the rotatably mounted bottom part BAT of the receiving part AT thus include between them a negligible angle, or in other words an angle of approximately 0 ° between them.
  • This closing end position for the receiving part AT is marked in FIG.
  • a dot-dash line SP which runs through the axis of rotation of the rotary joint DS and extends essentially parallel to the plane-shaped inner wall TIW or to the plate-shaped rear wall RHT of the holder part HT. Between this marking line SP and the bottom BAT results Angle of about 90 °.
  • the axis of rotation DA (see FIG. 4) through the rotary joint DS extends approximately perpendicular to the plane of the drawing of FIG. 2.
  • FIG. 3 shows a schematic cross-sectional view of the receiving part AT in its opening end position.
  • the opening end position is indicated by a dot-dashed marking line OP, which runs through the axis of rotation of the rotary joint DS and is inclined relative to the marking line SP for the closing end position by a tilt angle KW.
  • the opening end position OP can be predetermined in particular by locking means on the receiving part AT and / or on the holder part HT and / or on the rotary joint itself. These are not visible in the cross-sectional representations of FIGS. 2 and 3.
  • the bottom BAT of the receiving part AT is inclined relative to the horizontally extending bottom BHT of the holder part HT by the tilt angle KW. It results between two floors BAT, BHT an approximately wedge-shaped gap. Due to the inclination of the receiving part AT in the opening end position OP, the top-side opening of the box-shaped receiving part AT of the respective operating person now faces more strongly than in the closing end position SP. As a result, the available adjustment space of the door storage container relative to its clear height is more accessible than in the closed end position, as tilted by the front wall VAT of the receiving part AT whose upper loading edge is lowered relative to the position height of the upper edge of the receiving part AT in the closed end position.
  • the available interior of the receiving part AT can be loaded or unloaded more comfortably.
  • the pivot bearing displaced forwards into the frontal region of the receiving part advantageously has a larger one Tilting of the receiving part forward and thus a greater reduction of the loading edge.
  • the lower trailing edge HK of the receiving part AT describes a partial section of an imaginary rotation circle. This circle of rotation is indicated by dash-dotted lines in FIGS. 2, 3 and provided with the reference symbol K. Starting from the closing end position SP, the trailing edge HK of the receiving part AT moves in the tangential direction with respect to this imaginary rotation circle K out of the holder part HT upwards. As a result, a tendency of the rear edge HK on the rear wall RHT of the holder part HT is largely avoided.
  • the lower end edge HK of the receiving part AT passes through an imaginary circular arc section only within the interior of the holder part HT during its tilting movement.
  • a receiving part brought AT, that on the receiving part in the respective Aufmachposition between its closed end position and its opening end position a resulting, restoring torque is caused by the weight of the receiving part, through which the receiving part AT independently or automatically in its closed end position SP how can tilt back with a kind of return spring.
  • the lever arm S2 thus extends perpendicularly from the pivot point of the swivel joint DS to the imaginary extension of the force vector of the weight force F. It lies on that side of the receiving part AT which faces the rear wall RHT of the stationary holder part HT.
  • the restoring torque RM2 drives the receiving part AT back into its initial position in the closing end position SP in the manner of a return spring.
  • the center of gravity MS of the receiving part AT is closer to the rear wall RHT of the stationary holder part RHT than in a setting-up position, in particular an opening end position.
  • a weight F engages, which has a lever arm S1 to the axis of rotation of the rotary joint DS.
  • This lever arm S1 between the rotational axis of the rotary joint DS and the imaginary extension of the force vector F is greater than the lever arm S2 in the opening end position.
  • a restoring torque RM1 is exerted, which is greater than the restoring torque RM2 in the opening end position OP.
  • the front upper edge of the front wall VAT of the receiving part AT has a greater distance or a greater depth distance ITI than in the closing end position SP.
  • the distance of the upper front edge of the receiving part AT is lower in the closing end position SP than in the opening end position OP.
  • the tilt angle KW for the opening end position OP is expediently selected such that the center of mass MS of the receiving part AT at a Tilting always remains on the rear wall of the fixed holder part facing side with respect to the rotary joint.
  • the receiving part AT is inclined in its opening end position OP by a tilt angle KW between 10 ° and 70 °, in particular between 20 ° and 40 ° relative to its closing end position SP forward.
  • the swivel joint When the swivel joint is attached to the underside of the bottom of the receiving part AT as in the embodiment, the swivel joint remains largely invisible to an operator in a front view.
  • the hinge is slightly set back relative to the lower front edge SK of the receiving part AT by a predetermined screen edge, the hinge is better from the lower edge SK of the receiving part AT in front view, i. viewed from the front, covered.
  • the receiving part or the receptacle is made of a transparent plastic material or glass.
  • a transparent material can expediently also be used for the holder part.
  • both the receiving part and the holder part are made of the same plastic material.
  • pivot DS directly, i. directly at the lower leading edge, i. in the edge SK of the receiving part AT.
  • Fig. 4 shows schematically in perspective the receptacle BE1 of Fig. 1 with 3 viewed from the rear side.
  • the two socket elements BU1, BU2 provided at the bottom of the bottom BAT of the receiving part AT.
  • the first socket element BU 1 thus extends along an axial partial length parallel to the rectilinear lower edge SK.
  • the first bushing element BU1 and the second bushing element BU2 surrounds in a clip-like manner the bead or thickening of the bolt element BO mounted over the entire broadside.
  • the bolt element BO thus extends along the entire width of the front edge HK of the bottom BHT of the holder part HT.
  • jack elements across the width, i. Provide axial length of the front end edge SK of the bottom BAT of the receiving part AT distributed.
  • This multiplicity of bushing elements are then expediently assigned correspondingly many bolt element sections in the region of the lower front edge of the receiving part, the outer contour of which corresponds in each case to the inner contour of the bushing elements.
  • a single bolt element may be provided which extends along the axial overall length of the lower front edge of the receiving part.
  • socket elements such as BU1, BU2 a over the entire axial length of the front edge of the bottom BHT extending bushing element provided on the bottom of the bottom BHT of the receiving part AT.
  • the respective socket element is attached to the bottom of the bottom BHT of the holder part HT in the region of the front end side or directly on the front end side thereof.
  • the respective, associated bolt element is provided in the region of the lower front end edge SK of the receiving part AT.
  • the receiving part can be made wider in the direction of the inner wall of the door than was previously possible with conventionally laterally mounted door housings.
  • the receiving part of the inventively designed door compartment can be given a trapezoidal shape in plan view geometric shape, wherein the receiving chamber of the receiving part widens to the rear on the inner wall of the door. In this way, the available storage space between the two longitudinal frame parts of the inner frame of the door can be better utilized.
  • the receiving part as well as the holder part also other geometric shapes can be given to the receiving part, such. a rectangular outer and inner contour shape viewed from above in plan view.
  • the walls of the holder part and receiving part of the inventively designed door compartment thinner than conventional door cabinets.
  • the receiving part and in particular additionally as well as the holder part can be made transparent.
  • both components can be made of the same plastic material or of glass.
  • one or more locking means are expediently provided on the receiving part AT and / or stationary holder part HT of the respective depositing container.
  • These locking means are realized in the storage container BE1 of Figures 1 with 4 by undercuts or teeth of web members of the holder part and the receiving part in both bottom corners at the rear of the receiving part AT.
  • Figure 5 shows a perspective view of the storage container BE1 from the rear, ie viewed from the rear side in a left, bottom or bottom corner area of the receiving part AT.
  • the receiving part AT has on its rear wall RAT a laterally outwardly projecting web element VS1.
  • the receiving part AT has a bulge between its rear wall RAT and its side wall SE1, in which the soflanschteil SW1 of the holder part HT comes in a largely pass-shaped lying in the closed end position SP.
  • the side wall SE1 of the receiving part AT is laterally offset relative to the rear, vertical longitudinal edge of the rear wall RAT of the receiving part AT pulled out, i. widened towards the rear wall RAT.
  • a corresponding corresponding shaping between the receiving part and the holder part is also provided on the opposite longitudinal side in the corner region of the receptacle BE1.
  • limiting means for the tilting movement of the receiving part AT forward in an opening end position OP instead of these rear locking means already on the hinge itself.
  • a protruding hook may be provided on the respective socket element, which hook engages in a corresponding groove on the underside of the bottom of the stationary holder part in the opening end position.
  • other locking means or locking means for limiting the tilting movement of the receiving part forward are possible.
  • a lock for limiting the tilting movement of the receiving part can be integrated to the front itself in the hinge itself. This can be realized, for example, by frictional engagement, positive locking and / or frictional connection between the sleeve element and the associated pin element of the rotary joint in a desired opening end position.

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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)
  • Refrigerator Housings (AREA)
  • Devices That Are Associated With Refrigeration Equipment (AREA)

Abstract

Selon l'invention, au moins un contenant de rangement (BE1) destiné à un appareil frigorifique (KG) présente un élément de retenue (HT) fixe et un élément de réception (AT) placé mobile sur celui-ci, cet élément de réception (AT) étant destiné à recevoir des produits à réfrigérer. L'élément de réception (AT) est monté rotatif sur l'élément de retenue (HT) dans la région de son bord (SK) avant inférieur au moyen d'au moins une articulation tournante (DS) de sorte qu'un couple rétroactif (RM2) résultant soit exercé sur l'élément de réception (AT) dans chaque position d'ouverture entre sa position finale de fermeture (SP) et sa position finale d'ouverture (OP), ce couple ramenant automatiquement l'élément de réception (AT) dans sa position finale de fermeture (SP).
EP09714267.3A 2008-02-26 2009-02-23 Appareil frigorifique et contenant de rangement associé Active EP2247904B1 (fr)

Priority Applications (1)

Application Number Priority Date Filing Date Title
PL09714267T PL2247904T3 (pl) 2008-02-26 2009-02-23 Urządzenie chłodnicze i powiązany pojemnik do przechowywania

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
DE200810011120 DE102008011120A1 (de) 2008-02-26 2008-02-26 Kältegerät sowie zugehöriges Abstellbehältnis
PCT/EP2009/052118 WO2009106506A2 (fr) 2008-02-26 2009-02-23 Appareil frigorifique et contenant de rangement associé

Publications (2)

Publication Number Publication Date
EP2247904A2 true EP2247904A2 (fr) 2010-11-10
EP2247904B1 EP2247904B1 (fr) 2016-11-02

Family

ID=40896751

Family Applications (1)

Application Number Title Priority Date Filing Date
EP09714267.3A Active EP2247904B1 (fr) 2008-02-26 2009-02-23 Appareil frigorifique et contenant de rangement associé

Country Status (6)

Country Link
EP (1) EP2247904B1 (fr)
CN (1) CN101960243B (fr)
DE (1) DE102008011120A1 (fr)
PL (1) PL2247904T3 (fr)
RU (1) RU2010137737A (fr)
WO (1) WO2009106506A2 (fr)

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Publication number Priority date Publication date Assignee Title
DE102009029768B4 (de) 2009-06-18 2013-02-21 Zetzig Ab Vorrichtung zur Abgabe von Nikotin
DE102009046614A1 (de) 2009-11-11 2011-05-12 BSH Bosch und Siemens Hausgeräte GmbH Kältegerät mit einem Türabsteller und einer optisch herausgestellten Rastvorrichtung
ITVA20120040A1 (it) * 2012-10-18 2014-04-19 Whirlpool Co Frigorifero con sportello sulla porta per l¿accesso ad una porzione interna del comparto refrigerato
DE102017120160A1 (de) * 2017-09-01 2019-03-07 Paul Hettich Gmbh & Co. Kg Ablageboden und Möbel oder Haushaltsgerät
DE102017216293A1 (de) 2017-09-14 2019-03-14 BSH Hausgeräte GmbH Türabsteller für ein Kältegerät
CN109900037A (zh) * 2017-12-07 2019-06-18 博西华家用电器有限公司 冰箱
CN109945584A (zh) * 2019-03-13 2019-06-28 六安索伊电器制造有限公司 一种两间室四开门冰箱
CN113932514A (zh) * 2020-06-29 2022-01-14 博西华电器(江苏)有限公司 制冷装置
CN115574525B (zh) * 2021-06-21 2026-03-10 青岛海尔电冰箱有限公司 夹子组件及具有其的冰箱
JP2023084868A (ja) * 2021-12-08 2023-06-20 アクア株式会社 冷蔵庫

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GB1176555A (en) * 1967-08-03 1970-01-07 Tricity Cookers Ltd Improvements in or relating to Storage Chambers
DE2011705C3 (de) * 1970-03-12 1978-09-07 Gebr. Happich Gmbh, 5600 Wuppertal Kippascher, insbesondere für Fahrzeuge
FR2721870A1 (fr) * 1994-06-29 1996-01-05 Tourmez Didier Dipositif pour la couverture de receptacles de transport
US6905183B2 (en) * 2001-07-16 2005-06-14 Maytag Corporation Tilt-out door buckets for refrigerators or freezers
US6997526B2 (en) * 2002-12-09 2006-02-14 Maytag Corporation Refrigerator door storage systems
KR100953977B1 (ko) * 2003-10-04 2010-04-21 엘지전자 주식회사 냉장고용 도어바스켓
US6908163B1 (en) * 2004-01-15 2005-06-21 Maytag Corporation Bucket assembly for a refrigerator

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Title
See references of WO2009106506A2 *

Also Published As

Publication number Publication date
RU2010137737A (ru) 2012-04-10
DE102008011120A1 (de) 2009-08-27
WO2009106506A3 (fr) 2010-01-21
CN101960243B (zh) 2013-05-01
PL2247904T3 (pl) 2017-05-31
EP2247904B1 (fr) 2016-11-02
CN101960243A (zh) 2011-01-26
WO2009106506A2 (fr) 2009-09-03

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