CN107367104B - Coolant container with separate front part - Google Patents

Coolant container with separate front part Download PDF

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Publication number
CN107367104B
CN107367104B CN201710308043.XA CN201710308043A CN107367104B CN 107367104 B CN107367104 B CN 107367104B CN 201710308043 A CN201710308043 A CN 201710308043A CN 107367104 B CN107367104 B CN 107367104B
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China
Prior art keywords
container
front wall
cooler
wall
handle element
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CN201710308043.XA
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Chinese (zh)
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CN107367104A (en
Inventor
A·芬克
贾美娟
B·普里斯特尔
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BSH Hausgeraete GmbH
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BSH Hausgeraete GmbH
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Publication of CN107367104A publication Critical patent/CN107367104A/en
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    • 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
    • F25D11/00Self-contained movable devices, e.g. domestic refrigerators
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F25REFRIGERATION OR COOLING; COMBINED HEATING AND REFRIGERATION SYSTEMS; HEAT PUMP SYSTEMS; MANUFACTURE OR STORAGE OF ICE; LIQUEFACTION SOLIDIFICATION OF GASES
    • F25DREFRIGERATORS; COLD ROOMS; ICE-BOXES; COOLING OR FREEZING APPARATUS NOT OTHERWISE PROVIDED FOR
    • F25D25/00Charging, supporting, and discharging the articles to be cooled
    • F25D25/02Charging, supporting, and discharging the articles to be cooled by shelves
    • F25D25/024Slidable shelves
    • F25D25/025Drawers
    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47BTABLES; DESKS; OFFICE FURNITURE; CABINETS; DRAWERS; GENERAL DETAILS OF FURNITURE
    • A47B88/00Drawers for tables, cabinets or like furniture; Guides for drawers
    • A47B88/90Constructional details of drawers
    • A47B88/944Drawers characterised by the front panel
    • A47B2088/9441Drawers characterised by the front panel the front panel being less wide than the drawer
    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47BTABLES; DESKS; OFFICE FURNITURE; CABINETS; DRAWERS; GENERAL DETAILS OF FURNITURE
    • A47B2210/00General construction of drawers, guides and guide devices
    • A47B2210/17Drawers used in connection with household appliances
    • A47B2210/175Refrigerators or freezers

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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)
  • Packages (AREA)
  • Devices That Are Associated With Refrigeration Equipment (AREA)
  • Details Of Rigid Or Semi-Rigid Containers (AREA)

Abstract

The invention relates to a cooler container with a separate front for a refrigerator, having a bottom wall, two side walls, a back wall and a separate front wall, which form a cooler container body, which front wall is formed by a planar element, wherein the front wall has an inner side and an outer side, which inner and outer sides form opposite main faces, characterized in that the cooler container body has a plurality of support ribs and at least one first retaining projection, which support ribs and at least one first retaining projection hold the front wall in a position of use on the cooler container body, and the support ribs and the at least one first retaining projection rest on different main faces. The invention further relates to a domestic refrigeration device having such a food container and to a method for mounting a front wall on a food container body.

Description

Coolant container with separate front part
Technical Field
The invention relates to a food cooler container for a domestic refrigerator, to a domestic refrigerator having such a food cooler container, and to a method for mounting a front wall on a food cooler container body.
Background
In domestic refrigeration appliances, a food container, such as a box or a vegetable compartment, is usually provided. Such a chill container is mostly made of a synthetic material. Transparent materials are preferred, so that the user can see the contents of the coolant container without the user having to remove the coolant container from the interior of the domestic refrigeration appliance. It is known to produce the coolant container in one piece, and it is also known to form the front wall of the coolant container as a separate component and to connect it to the remaining coolant container body.
EP 0962731 a1 discloses a storage compartment for a refrigerator door, having a storage base for storing cooling goods, which is provided at least on its front side opposite the refrigerator door with a retaining plate, wherein the retaining plate is designed as an at least substantially closed floor-type retaining wall which is releasably retained on the front side and which at least approximately reaches into the storage plane of the storage base.
Disclosure of Invention
The object of the present invention is to provide a cooler package which permits a very simple assembly and a secure fastening of the front wall of the cooler package to the cooler package body, wherein at the same time the cooler package can be produced very simply.
This object is achieved by the features of the independent claims. Preferred embodiments are specified in the dependent claims.
A first aspect relates to a food cooler container for a refrigerator, having a bottom wall, two side walls, a rear wall and a separate front wall, which form a food cooler container body, which front wall is formed by a planar element, wherein the front wall has an inner side and an outer side, which inner side and outer side form opposite main faces, wherein the food cooler container has a plurality of support ribs and at least one first retaining projection, which support ribs and at least one first retaining projection retain the front wall in a use position on the food cooler container body, and wherein the support ribs and the at least one first retaining projection are arranged on different main faces.
The chill container is preferably a shell or a box. The body of the cooling container, that is to say the back wall, the two side walls and the bottom wall of the cooling container, is preferably formed as a one-piece component. In other words, the cooling-product container body is produced in one piece. The front wall can be detachably or removably fastened to the chill container body.
The two sidewalls are a left sidewall and a right sidewall. Preferably, at least one support rib is arranged or provided on each side wall. Preferably, one side wall comprises two, three or four support ribs. The support ribs preferably project from the side walls or project from the side walls. Preferably, the support ribs are arranged on the front edge of the side wall. Preferably, the left and right side walls may have different numbers of support ribs. It is particularly preferred that the support ribs are arranged near the front edges of the side walls. It is particularly preferred that the distance of the support rib from the front edge of the side wall does not exceed 2cm, in particular does not exceed 1 cm. The support ribs are preferably arranged on the inner side of the side walls. In other words, the support ribs are directed towards the inside of the cooling container. Advantageously, the support ribs are integrally formed on the side walls, so that the support ribs are part of the body of the cooler container.
Advantageously, the supporting ribs and the at least one first retaining projection provide the possibility of very simple positioning of the front wall. For example, the front wall can be held in the vertical direction/height direction of the cooler container. Furthermore, it is advantageous if the supporting webs and the at least one first retaining projection are provided with only a small material consumption when the first cooling container body is produced, for example, by injection molding or deep drawing.
The front wall is preferably a plate-shaped planar element. The front wall is preferably transparent and/or translucent, particularly preferably made of glass. Preferably, the front wall can be pushed in between the support bar and the at least one first retaining projection, preferably from the upper edge of the side wall in the direction of use. For this purpose, the support rib and the at least one first retaining projection are spaced apart from one another in the depth direction of the cooling product container, so that the front wall can be pushed in between the first retaining projection and the support rib. The distance in the depth direction between the at least first holding projection and the support rib is preferably so large that the pushed-in front wall is held with a clearance fit between the at least first holding projection and the support rib. The front wall is secured against pivoting or tilting in an end position, i.e. in the use position, by the support rib and the at least one first retaining projection. The direction of use is preferably a push-in direction and can correspond to the height direction of the cooling product container.
Preferably, the chill container has a handle element. The handle element is preferably provided for fixing the front wall in the use position. In other words, the grip element prevents the front wall from being pulled out (accidentally) from the use position.
Preferably, the handle element has a limiting element, which fixes the front wall in the use position. In particular, it is preferred that the limiting element limits the movement of the front wall in the use/insertion direction, wherein the limiting element is arranged above the upper edge of the front wall in the height direction of the coolant container. Advantageously, the handle element and the front wall are arranged relative to each other such that a transfer of a pulling force from the handle element to the front wall in the height direction of the cooler package is at least substantially prevented/suppressed. Furthermore, it is advantageous to arrange the handle element on the front wall in such a way that little or no tensile and/or compressive forces can be transmitted to the front wall when the user lifts or pulls on the handle element.
It is particularly advantageous that inadvertent removal of the front wall is prevented by the handle element. Furthermore, advantageously, no further measures are required to fix the front wall by the combination of the supporting webs, the at least one first retaining projection and the grip element.
The grip element preferably has a grip recess. The handle recess is preferably arranged at least substantially above an upper edge of the front wall.
Preferably, the handle groove is defined by an arcuate section of the handle element. Furthermore, the arc-shaped section preferably comprises a limiting element, particularly preferably a partial section of the arc-shaped section forms the limiting element.
Preferably, the grip element comprises an abutment region. The contact region is in contact with one of the main surfaces in a contact region or upper end section of the front wall facing away from the base. In other words, the contact region of the front wall facing away from the bottom bears against the bearing region of the grip element.
Preferably, the at least one first retaining projection rests on the bottom-adjacent contact region or lower end section of the front wall. The bearing region of the grip element and the at least one first retaining projection are preferably arranged on the same main surface.
It is furthermore preferred that the handle element has a handle region which can be gripped by a user in order to lift the cooling product container or to pull the cooling product container. The grip region is preferably designed as a cover of the grip recess.
Preferably, the handle element has a fixed structure. The fastening structure serves to fasten the handle element to a side wall, wherein a corresponding fastening structure is provided on the side wall. The corresponding fastening structure of the side wall may be arranged on the inner side and/or the outer side of any one of the side walls.
A fastening indentation may preferably be provided as a fastening structure for the grip element. Preferably, a fixing indentation of the grip element is in engagement with a fixing projection of a corresponding fixing structure as a side wall. Preferably, corresponding fixing structures are provided on both side walls. Alternatively or additionally, the handle element has fastening projections as fastening structures, wherein one fastening projection of the handle element is in engagement with a fastening recess of a corresponding fastening structure as a side wall.
Alternatively or additionally, a fastening hook can be provided as a fastening structure for the handle element. Preferably, a fastening hook of the grip element is in engagement with a fastening hook receptacle of a corresponding fastening structure as a side wall. In addition, or alternatively, the handle element has fastening hook receptacles as fastening structures, wherein one fastening hook receptacle is in engagement with a fastening hook of a corresponding fastening structure as a side wall.
Advantageously, a stable fastening and at the same time a simple production in terms of process technology can be achieved by the fastening structure of the handle element and the corresponding fastening structure of the side wall. Advantageously, two fastening structures are provided on each side wall, spaced apart from each other. Thereby facilitating a more stable fixing of the grip element on the side wall.
Preferably, the at least one first retaining projection is arranged on the bottom wall of the cooling product container. Advantageously, the at least one first retaining protrusion is integrally formed on the bottom wall, so that the at least one first retaining protrusion is part of the body of the refrigerated container. Advantageously, the chill containment body can be produced together with the at least one first holding projection and the support rib in a common process. Preferably, the at least one first retaining projection projects from the bottom wall in the height direction of the cooling reservoir.
Preferably, the at least one first retention projection is arranged on the front edge of the bottom wall and is in particular configured as a (coherent) strip.
Preferably, the chill receptacle has at least one second holding projection which projects from the bottom wall. Preferably, the at least one first retaining projection rests against the outer side of the front wall. Preferably, the at least one second retaining projection additionally bears against the inner side of the front wall.
Preferably, exactly one first retention projection is provided, which rests on the first main face.
Preferably, at least one first retaining projection projects from one of the side walls or each at least one retaining projection projects from both side walls in the vicinity of the bottom wall. In addition to or instead of at least the first retaining projection projecting from the bottom wall, at least one further first retaining projection may project from a side wall.
Preferably, the at least one first and/or second retaining projection rests on the contact region of the front wall close to the base.
The term "in the vicinity of the bottom wall" is to be understood in particular as meaning that the distance of the retaining projection from the bottom wall in the height direction does not exceed 2cm, preferably does not exceed 1.5cm, further preferably does not exceed 1 cm. Advantageously, the retaining projection ensures that a lower edge of the front wall is not influenced by the outside and at the same time is reliably retained, so that a movement/bending of the front wall in the depth direction of the cooler package is prevented.
A further aspect of the invention relates to a domestic refrigeration device comprising a cooler inner container which forms an inner chamber for receiving a cooler and comprising a cooler container according to the first aspect and possible preferred embodiments as described above, wherein the cooler container is supported in the inner chamber. The food container is preferably removably supported in the interior of the domestic refrigeration appliance, in particular connected to the support device, so that the food container can be pushed into the interior of the domestic refrigeration appliance or pulled out of the interior.
Another aspect relates to a method for assembling a chillers container as described above, comprising the steps of: providing a chills container body and a separate front wall; arranging the front wall on the cooler container body in the position of use; the handle element is fixed to the cooler container body by inserting the handle element in one direction of use and then swinging the handle element until the handle element latches onto the side wall in order to fix the front wall in the position of use.
The expressions "rear side", "upper", "lower", "depth direction", "height direction", "width direction" and the like are to be understood as meaning the positions and orientations given when the cooling object housing and the domestic refrigeration device are used as intended and when an observer stands in front of the domestic refrigeration device at this time and looks in the direction of the domestic refrigeration device. In particular, the cooling jacket is designed or provided for receiving a load of 20kg to 30kg of cooling medium.
Drawings
Further advantages, features and details of the invention emerge from the claims, the following description of a preferred embodiment and from the drawings, in which identical or functionally identical elements are provided with the same reference symbols. Shown here are:
fig. 1 is a schematic perspective view of a domestic refrigeration appliance with an open door;
FIG. 2 is a perspective view of a chills container according to one embodiment;
FIGS. 3a, b are perspective views of the body of the refrigerated container according to FIG. 2;
fig. 4a, b are perspective views of the grip element according to fig. 2;
FIG. 5 is a partial cross-sectional view of the chillers vessel according to FIG. 2;
FIG. 6 is a perspective view of a chills container according to another embodiment;
FIG. 7 is an exploded view of the chills container according to FIG. 6;
FIG. 8 is a detail of the chillers container body according to FIG. 6;
FIG. 9 shows the assembly of the cooler container body with the front wall according to FIG. 6;
FIG. 10 is a detail of the refrigerated container body with front wall according to FIG. 6;
FIG. 11 shows the arrangement of the cooler container body and the front wall with the handle element according to FIG. 6;
fig. 12a, b are perspective views of the grip element according to fig. 6;
FIG. 13 is a partial cross-sectional view of the chillers container body according to FIG. 6;
FIG. 14 is a partial cross-sectional view of the chillers container body according to FIG. 6;
FIG. 15 shows the cooler container body according to FIG. 6 with the front wall now with an alternative securing hook;
fig. 16 shows the assembly of the chill container body and the front wall with the handle element according to fig. 6 and 15.
Detailed Description
Fig. 1 shows a schematic view of a domestic refrigeration appliance 100. The domestic refrigeration appliance 100 comprises a body 101 having a left side wall 102, a right side wall 104 and a bottom 103. Furthermore, the domestic refrigeration appliance 100 comprises a door 105. Furthermore, the domestic refrigeration appliance comprises a cooler inner vessel 106 which comprises two side walls 107, 108, a back wall 109, an upper wall 110 and a bottom 111. The inner side of the cooler inner container 106 forms a receiving space 112 for the food, in which the compartments 113 and 114, as well as the cooler container 300 and a further cooler container 116 are arranged. The chill reservoir 300, 116 is in particular a chill shell.
Fig. 2 shows a perspective view of the cooling container 200. The cooler container 200 includes a cooler container body 202, a front wall 210, and a handle member 400. The grip element 400 is arranged substantially above an upper edge (not shown) of the front wall 210. The front wall 210 comprises an outer side AS and an inner side (not shown) which is directed toward the storage compartment of the cooler container 200.
Fig. 3a shows a perspective view of the cooling container body 202. The chillers container body 202 has a back wall 204, a left side wall 206, a right side wall 208, and a bottom wall 214. A first retention tab 216 protrudes from the bottom wall 214. The first retaining projection 216 is arranged on the front edge 215 of the bottom wall 214 and is configured as a strip. Also in this embodiment, two second retaining tabs 218a, 218b project from the bottom wall 214. The second retaining projections 218a, 218b and the first retaining projection 216 are arranged at a distance from one another, so that the front wall 210 can be pushed or inserted between these retaining projections.
The chillers container body 202 has support ribs on the left and right side walls 206, 208. Support ribs 220, 222, 224 are provided or formed on the right side wall 208. Support ribs are also provided on the left side wall 206, but are not shown in fig. 3a, b. The support ribs on one side wall are spaced apart from each other in the height direction HR.
If the front wall 210 is connected to the chill container body 202, the end section near the bottom is arranged between the second retaining projections 218a, 218b and the first retaining projection 216. The front wall 210 is supported or held in the use position by support ribs such as 220, 222, 224 and by the first and second retention tabs 218a, 218b, 216. In an alternative embodiment, a plurality of first retention tabs may be provided without a second retention tab. In the exemplary embodiment of fig. 2 and 3a, the use position is a position in which the front wall 210 is positioned perpendicular to the bottom wall 214 or parallel to the height direction HR and the front wall 210 rests on the bottom wall 214 in contact with the bottom wall 214.
A securing projection 226 is provided on the outside of the left side wall 206 as a corresponding securing structure. Such a fixing projection 232 (not shown) is also provided on the right side wall 208. Furthermore, fastening hooks 228, 230 are provided on the upper edges 207, 209 of the side walls 206, 208 as further corresponding fastening structures.
Fig. 3b shows an enlarged partial view of the right side wall 208 with support ribs 220, 224, 226. The support ribs 220, 224, 226 are integrally constructed with the right side wall 208. The support ribs 220, 224, 226 are formed as projections or projections on the right side wall 208. The same applies to the left side wall 206.
According to another embodiment, it can be provided that only the first retaining projection 216 projects from the bottom wall 214. In this case, the second holding projections 218a, 218b are not provided. It is also possible to provide only one second retaining projection, which is in particular designed as a strip.
Fig. 4a, 4b show different perspective views of the grip element 400. The grip element 400 has a grip recess 402 and fastening notches 404, 406 as fastening structures. The securing notches 404, 406 cooperate with securing tabs on the side walls 206, 208. Here, the fastening notches 404, 406 of the grip element 400 snap-lock with the fastening projections of the side walls 206, 208. The securing hooks 228 and 230 of the side walls 206, 208 snap-lock with the securing hook receivers 408, 410 of the handle member 400. The fastening notches 404, 406 are arranged on the side walls 412, 414 of the handle element 400. The fastening hook receptacles 408, 410 are embodied as indentations in the curved section 416. The handle element 400 has a lower end section 418, which forms an abutment region, and a handle region 401, which is connected to an end section of the arc-shaped section 416. In the state in which the front wall 210 has been fitted on the cooler package body 200, the end section/abutment region 418 abuts in this embodiment against the outer side AS of the front wall 210. This is illustrated in fig. 5, which shows a partial sectional view of the chill container 200 according to fig. 2. The upper edge 211 of the front wall 210 is protected by the handle element 400 or in particular by a partial section of the curved section 416 and is fixed in the use position.
Fig. 6 shows a perspective view of the cooling object container 600. The cooling container 600 comprises a cooling container body 602, a front wall 610 and a handle element 1200. The handle element 1200 protects the upper edge (not shown) of the front wall 610. The front wall 610 comprises an outer side AS and an inner side (not shown) which is directed toward the storage compartment of the cooler container 600.
Fig. 7 shows an exploded view of the cooler container 600. The chillers container body 602 has a back wall 604, a left side wall 606, a right side wall 608, and a bottom wall 614. A first retention tab 616 protrudes from the bottom wall 614. In this embodiment, the first retention tab 616 is disposed on the front edge 615 of the bottom wall 614. Also in this embodiment, two second retention tabs 618a, 618b project from the bottom wall 614. The second retention tabs 618a, 618b and the first retention tab 616 are arranged at a spacing from one another so that the front wall 610 can be inserted between these retention tabs. In addition, the cooling container body 602 has support ribs 620, 622, 624 of the right side wall 608. Support ribs (not shown) are also provided on the left side wall 606. The support ribs of one side wall are spaced apart from each other. If the front wall 610 is connected to the cooler container body 602, the end section near the bottom is disposed between the retention tabs 618a, 618b, and 616. The front wall 610 is supported or held in a use position by the support ribs 620, 622, 624 and by the retention tabs 618a, 618b, 616. In the embodiment of fig. 6 and 7, the use position is a position in which the front wall 610 is perpendicular to the bottom wall 614. According to another embodiment, it can be provided that only the first retaining projection 616 projects from the bottom wall 614. In this case, the second holding projections 618a, 618b are not provided.
A securing tab 626 is provided on the inside of the right side wall 608 as a corresponding securing structure. In this embodiment, the fixing protrusion 626 is configured as an annular protrusion. Furthermore, the securing hooks 628 are provided as (further) corresponding securing structures. A similar fastening structure (not shown) may be disposed on the left sidewall 606. The fastening hooks of the two side walls 606, 608 are preferably arranged above the fastening projections of the two side walls 606, 608 in the height direction HR. The front wall 610 is fixed in the use position by the handle element 1200, i.e. the front wall 610 cannot be removed in the assembled state of the handle element 1200.
Fig. 8 shows a portion of the chiller container body 602.
Fig. 9 shows the front wall 610 when it is brought onto the cooler container body 602 in a position of use. This is done in the current embodiment by pushing the front wall 610 into the intermediate space between the support ribs 620, 622, 624 and the retaining tabs 616. The insertion is carried out in a direction of use or insertion ER.
Fig. 10 shows a detail of a refrigerated goods container body 602 with a front wall 610 which is held by means of support ribs 620, 622, 624 and holding projections 616.
Fig. 11 shows the cooling container body 602 with the front wall 610 in the assembled state of the handle element 1200. To this end, the handle element 1200 is fastened to the side walls 606, 608 substantially above the front wall 610 in one height direction HR of the container.
Fig. 12a, 12b show different perspective views of the grip element 1200. The grip element 1200 has a grip recess 1202, a grip region 1201, fastening indentations 1204, 1206 and fastening hook receivers 1208, 1210(1206, 1210 not shown). In the assembled state of the grip element 1200 on the cooling container body 602, the fastening recesses 1204, 1206 snap into fastening projections 626, 630 on the side walls 606, 608. The securing hooks 628 and 632 (not shown) of the side walls 606, 608 snap-lock with the securing hook receivers 1208, 1210 of the handle element 1200. The fastening hook receivers 1208, 1210 and the fastening notches 1204, 1206 are arranged on the side walls 1212, 1214 of the handle element 1200. The fastening hook receivers 1208, 1210 are arranged at a distance in the height direction HR above the fastening notches 1204, 1206 in the region of the handle groove 1202. The handle groove 1202 includes an arcuate section 1216. The fastening hooks 628, 632 each have a hook section 629, 631. The hook sections 629, 631 point upward in the height direction HR. The securing hooks 628, 632 have a width B and a thickness D, wherein the width B is greater than the thickness D. The width B is measured in the depth direction TR of the cooling container 600, and the thickness D is measured in the height direction HR of the cooling container 600. The handle element 1200 has a lower end section 1218, which forms an abutment region. In this exemplary embodiment, the lower end section or the contact region 1218 rests against the outer side AS of the front wall 610 when the front wall 610 is mounted/inserted. This is illustrated in fig. 13, which shows a partial sectional view of the chill container 600 according to fig. 6.
Fig. 14 shows a partial section through the cooling medium container 600, in which a different perspective view of the latching of the fastening hooks 628 with the fastening hook receptacles 1212 is shown. Fig. 14 shows how the securing hook 628 fits into the securing hook receiver 2016. The securing tab 626 fits into the securing notch 1210.
Fig. 15 shows an alternative configuration of a fastening hook in a cooler container 600. Shown here are the securing hooks 634 on the side wall 608. A grip element 1500 has been fitted on this side wall, which corresponds to the grip element 1200 except for the fastening hook receivers. The fixing hook 634 has a width B and a thickness D, wherein the width B is greater than the thickness D. The width B is measured in the height direction HR of the cooling container 600, and the thickness D is measured in the depth direction TR of the cooling container 600. A similar applies to the securing hooks (not shown) on the side walls 606.
Fig. 16 shows the chill container body 602 with the front wall 610 in the assembled state of the handle element 1500. In order to fasten the front wall 610 to the cooling container body 602 in the use position, the handle element 1500 is inserted in the vertical direction and subsequently the handle element 1500 is pivoted in the pivoting direction VR until the handle element 1500 is latched to the side walls 606, 608.
The chillers containers 300 and 116 may correspond to the chillers container 200 and/or the chillers container 600.

Claims (15)

1. A cooler container (200; 600) for a refrigerator, having a bottom wall (214; 614), two side walls (206, 606; 208, 608), a rear wall (204; 604) and a separate front wall (210; 610), which form a cooler container body (202; 602), said front wall being formed by planar elements, wherein the front wall (210; 610) has an inner side and an outer side (AS), which form opposite main faces to one another, characterized in that the cooler container body (202; 602) has a plurality of support ribs (220, 222, 224; 620, 622, 624) and at least one first retaining projection (216; 616), which hold the front wall (210; 610) in a position of use on the cooler container body (202; 602), furthermore, the support rib (220, 222, 224; 620, 622, 624) and the at least one first retaining projection (216, 616) rest against different main surfaces.
2. A cooler container (200; 600) according to claim 1, wherein the cooler container (200; 600) has a handle element and the handle element locks the front wall (210; 610) in such a way that the front wall (210; 610) is fixed in the position of use.
3. Cooling item container (200; 600) according to claim 2, wherein the handle element (400; 1200; 1500) has a limiting element which is arranged in the height direction (HR) of the cooling item container (200, 600) above an upper edge (211; 611) of the front wall (210; 610).
4. A cooler container (200; 600) according to claim 3, wherein the handle element (400; 1200) has a handle recess (402; 1202) which is arranged above an upper edge (211; 611) of the front wall (210; 610) at least substantially in the height direction (HR) of the cooler container (200, 600).
5. The cooler container (200; 600) according to claim 4, wherein the handle recess (402; 1202) is defined by an arc-shaped section (416; 1216) of the handle element (400; 1200), and a portion of the arc-shaped section (416; 1216) forms the delimiting element.
6. The cooler container (200, 600) according to any one of claims 2 to 5, wherein the handle element has an abutment region (418, 1218) which abuts against one of the main faces on the contact region of the front wall (410, 610) remote from the bottom.
7. Cooling item container (200, 600) according to one of claims 2 to 5, wherein the handle element (400; 1200; 1500) has a fixing structure (404, 406, 408, 410; 1204, 1206, 1208, 1210) and which serves for fixing the handle element (400; 1200; 1500) on the side wall (206, 208; 606, 608), and wherein a corresponding fixing structure (226; 228, 230, 232; 626, 628, 630, 632) is provided on the side wall.
8. A cooler container (200; 600) according to claim 7, wherein the handle element (400; 1200; 1500) has fastening notches (404, 406; 1204, 1206) as fastening structures and a fastening notch (404, 406; 1204, 1206) is in engagement with a fastening projection (226; 626) as a corresponding fastening structure of a side wall (206, 208; 606, 608); and/or the handle element has fixing projections as fixing structures, and a fixing projection is in cooperation with a fixing indentation of a corresponding fixing structure as a side wall.
9. A cooler container (200; 600) according to claim 7, wherein the handle element has fixing hooks as fixing structures and a fixing hook is in engagement with a fixing hook receiving portion of a corresponding fixing structure as a side wall; and/or the handle element (400; 1200; 1500) has a fastening hook receptacle (408, 410; 1208; 1210) as the fastening structure, and a fastening hook receptacle (408, 410; 1208; 1210) is in engagement with a fastening hook (228, 230; 628, 630) as a corresponding fastening structure of a side wall (206, 208; 606, 608).
10. The cooling object container (200; 600) according to any of claims 1-5, 8-9, wherein the at least one first retaining protrusion (216, 616) is arranged on a bottom wall (214, 614) of the cooling object container (200; 600).
11. The food cooler container (200; 600) according to any one of claims 1 to 5, 8 to 9, wherein the at least one first retaining projection (216, 616) is arranged on a front edge (215; 615) of the bottom wall (214, 614) and is in particular configured as a strip.
12. The cooler container (200; 600) according to any one of claims 1 to 5, 8 to 9, wherein the cooler container has at least one second retaining projection (218a, 218 b; 618a, 618b) which projects from the bottom wall and bears against an outer side (AS) of the front wall (210; 610) and the at least one second retaining projection (218a, 218 b; 618a, 618b) bears against an inner side of the front wall (210; 610).
13. The chillers container (200; 600) according to any of claims 1-5, 8-9, wherein at least one first retention tab protrudes from one of the side walls in the vicinity of the bottom wall (214, 614).
14. Domestic refrigeration appliance (100) comprising a cooler inner container (106) which forms an inner chamber for receiving a cooler and comprising a cooler container (200; 600) according to one of claims 1 to 13, wherein the cooler container (200; 600) is supported in the inner chamber.
15. Method for fitting a front wall (210, 610) on a chill containment body (202; 602) according to any of claims 1 to 13, comprising the steps of:
-providing the chillers container body (202; 602) and a separate front wall (210, 610);
-arranging the front wall (210, 610) on the chillers container body (202; 602) in a use position;
-fixing a handle element (1500) on the cooling item container body to fix the front wall (210, 610) in the use position by inserting the handle element (1500) of a cooling item container (200; 600) in one use direction and then swinging the handle element (1500) until the handle element (1500) latches onto the side wall.
CN201710308043.XA 2016-05-12 2017-05-04 Coolant container with separate front part Active CN107367104B (en)

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DE102016208207.8A DE102016208207A1 (en) 2016-05-12 2016-05-12 Refrigerated goods container with separate front
DE102016208207.8 2016-05-12

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CN107367104B true CN107367104B (en) 2021-02-19

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DE102016208207A1 (en) 2017-11-16
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CN107367104A (en) 2017-11-21
PL3244149T3 (en) 2020-05-18

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