US20260185770A1 · App 19/375,456
COOLING DEVICE HAVING A COMPARTMENT COVER
Publication
Application
Classifications
IPC Classifications
CPC Classifications
Applicants
BSH Hausgerâte GmbH
Inventors
Kaan Sezgin KARADAG, Kaan ERARSLAN, Irem TETIK, Veysel TEKCE, Dogan KILINC
Abstract
A cooling device, particularly a domestic cooling device, has a cabinet structure with a storage space and an evaporator arrangement in the cabinet structure close to a cabinet wall of the cabinet structure. A compartment cover separates the evaporator arrangement with an evaporator from the storage space. The compartment cover has a cover front wall parallel to the cabinet wall, and wall parts which extend from the cover front wall to the cabinet wall to define a receiving space. The compartment cover has a holder that is removably retained on an edge part of each of the wall parts close to the cabinet wall. A sealing embodiment has a seal that forms a continuation of the holder item and which can flex when it contacts the cabinet wall.
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Description
CROSS-REFERENCE TO RELATED APPLICATION
[0001]This application claims the priority, under 35 U.S.C. § 119, of Turkish Patent Application TR 2024/020934, filed Dec. 27, 2024; the prior application is herewith incorporated by reference in its entirety.
FIELD AND BACKGROUND OF THE INVENTION
[0002]The present invention relates to a cooling device having a compartment cover. The cooling device has a body with a cabinet structure and a storage space, an evaporator arrangement in the cabinet structure close to a related cabinet wall of the cabinet structure, and a compartment cover which covers the evaporator arrangement to separate the evaporator arrangement from the storage space. The compartment cover has a cover front wall parallel to the cabinet wall, and wall parts which extend from the cover front wall to the cabinet wall to define a receiving space.
[0003]In cooling devices, particularly in domestic cooling devices, there is cabinet structure which defines a storage space wherein the objects to be cooled or to be frozen can be placed. Cooling devices moreover comprise an evaporator arrangement which includes an evaporator as a component of the cooling cycle. The evaporator arrangement is disposed inside the cabinet structure in a manner close to a related cabinet wall of the cabinet structure. Compartment covers are used which hide the evaporator arrangement aesthetically in a manner separating the evaporator arrangement from the storage space and which cover the evaporator receiving space, wherein the evaporator is disposed, and they separate the evaporator receiving space from the storage space. Provision of insulation between the receiving space and the storage space by the compartment covers is important for the efficiency of the cooling system. In other words, the compartment covers, which have a design such that the cool air, which exists in the storage space, will be suctioned towards the evaporator receiving space through the other edge regions except the air suctioning opening, increases air losses in the system and unfavorably affects the efficiency of the cooling system.
[0004]U.S. Pat. No. 11,415,356 B2, which belongs to the known state of the art, describes a refrigerator with a cabinet, a vaporizer, a vaporizer cover module, and a cool air feeding module embodied to communicate with the vaporizer cover module. The vaporizer cover module comprises a rear plate which has a planar shape defining the surface of the storage area, a first insulation element provided on the rear surface of the rear plate, and a second insulation element provided on the front surface of the inner frame and in a distanced manner from the first insulation element. The first insulation element and the second insulation element define a heat exchange space embodied to accommodate the vaporizer between the first insulation element and the second insulation element.
[0005]As a result, because of the above-mentioned problems, an improvement is required in the related technical field.
SUMMARY OF THE INVENTION
[0006]The present invention relates to a compartment cover which is suitable for use in a cooling device, for eliminating the above-mentioned disadvantages and for bringing new advantages to the related technical field.
[0007]A specific object of the invention is to provide a compartment cover which increases air insulation between the storage space and the evaporator receiving space for cooling devices and which is easily replaceable when needed during the lifetime of the device.
- [0009]a body which has a cabinet structure bounding a storage space, said cabinet structure having a cabinet wall;
- [0010]an evaporator arrangement disposed in said cabinet structure in a vicinity of said cabinet wall of said cabinet structure, said evaporator arrangement having an evaporator;
- [0011]a compartment cover disposed to cover said evaporator arrangement for separating said evaporator arrangement from said storage space, said compartment cover having a cover front wall extending substantially parallel to said cabinet wall, and wall parts which extend from said cover front wall to said cabinet wall for defining a receiving space;
- [0012]said compartment cover having a holder removably attached to at least one related edge part of said related wall parts which is close to said cabinet wall, and a sealing embodiment with a seal at a continuation of said holder and configured to flex upon contacting said cabinet wall.
[0013]In other words, In order to realize the abovementioned objects and the objects which are to be deduced from the detailed description below, the present invention is a cooling device, particularly a domestic cooling device comprising a body which has a cabinet structure defining a storage space, an evaporator arrangement provided in the cabinet structure in a manner being close to a related cabinet wall of the cabinet structure and which has an evaporator, and a compartment cover which covers the evaporator arrangement in a manner separating the evaporator arrangement from the storage space, and wherein the compartment cover comprises a cover front wall provided in a manner being in an essentially parallel plane to the cabinet wall, and wall parts which extend from the cover front wall to the cabinet wall in a manner defining a receiving space. The compartment cover provided in the cooling device comprises a holder item which is retained in a removable manner to at least one related edge part of the related wall parts which is close to the cabinet wall, and a sealing embodiment which has a sealing item, or seal, provided at the continuation of the holder item and which can flex when it contacts to the cabinet wall. By means of this, a compartment cover is provided which is developed in a manner providing high air insulation between the storage space and the side where the evaporator arrangement is disposed. As the compartment cover provides high air insulation, occurrence of irregular air passages between the storage space, which has temperature difference, and the side where the evaporator is disposed is prevented, and air losses are reduced and by means of this, efficiency of the cooling system is increased. In case the sealing embodiment loses its insulation property in time, since the sealing embodiment can be easily removed without leaving a residue part at the related edge part, the replacement of the sealing embodiment is facilitated. In other words, a sealing embodiment with facilitated maintenance is provided.
[0014]The cabinet structure is a structure which has cabinet walls encircling or bounding the storage space so as to define the storage space of the cooling device. The cabinet structure can be an inner liner structure of the cooling device having a lower wall, an upper wall, a rear wall, and mutual side walls. The cabinet structure can be an inner liner structure of the cooling device which has a lower wall, an upper wall, a rear wall and mutual side walls. There is an access opening, which provides access to the storage space from outside, at the front side of the cabinet structure. The storage space can be formed by a freezing space wherein a freezing process can be realized and/or a cooling space wherein a cooling process can be realized.
[0015]The storage space is a space part encircled by the cabinet wall of the cooling device. In the storage space, there can be objects to be cooled or to be frozen, in other words, besides foods, there can be shelves whereon foods are placed, and there can be drawers wherein foods, for instance, vegetables, fruits can be placed.
[0016]The body comprises a cabinet structure having outer walls facing outwardly and inner walls facing the storage space, and an insulation element between the cabinet structure and the outer walls. The insulation element is provided in a manner penetrating to a space between the cabinet structure and the outer walls and in a manner filling said space. The insulation element can be any insulation material in a manner providing thermal insulation between the storage space and the outer medium, for instance a polyurethane material. Said outer walls are formed by an upper wall, a lower wall, a rear wall and mutual side walls.
[0017]The related cabinet wall can be any cabinet wall of the cabinet structure. Preferably, said cabinet wall can be a rear wall which exists at the side which is opposite to the front side where the access opening of the cabinet structure is disposed.
[0018]The evaporator can be any type of evaporator, for instance a pipe-type evaporator. The pipe-type evaporator can have a structure where a number of pipes is brought together and where the liquid passes through these pipes. The outer surface of the pipes can be equipped with fins for increasing heat transfer.
[0019]The evaporator arrangement is an arrangement formed by at least one evaporator, a heating element, particularly a radiant heating element, at least one bracket part for fixing the heating element onto the evaporator, and bypass preventing parts.
[0020]The compartment wall can be a wall structure embodied to separate the side, where the evaporator arrangement exists, and the storage space from each other. The compartment wall can have at least one cover front wall. Preferably, the compartment wall has the cover front wall, a cover upper wall part, a cover lower wall part, a first cover side wall part and a second cover side wall.
[0021]The related wall parts can be wall parts or skirt parts obtained by bending of the cover front wall towards the rear wall of the cabinet structure.
[0022]The related at least one edge part is the edge region of the wall parts which is close to the rear wall of the cabinet structure.
[0023]The inscription, which mentions that said seal has a flexible structure, means that the seal has a compressible structure. Said seal can be a flexible element made particularly from an elastomeric material (rubber, etc.), for instance, a gasket.
[0024]The cooling device can be particularly a domestic cooling device, for instance a refrigerator. The cooling device can be a cooling device with a single-door or with two (or more) doors. The cooling device with a single door can be a cooling device which has only a cooling compartment or a cooling device which has only a freezing compartment.
[0025]The holder item can be any mechanical item configured such that the sealing embodiment can be held to the related edge part. For instance, said holder item can be at least one structure including items like a tab or an extension.
[0026]The sealing element can be any item essentially configured to provide air sealing, particularly a flexible element, for instance, a gasket element.
[0027]In a possible embodiment of the invention, the sealing embodiment is provided in a manner extending in at least one part of the related edge parts. By means of this, the sealing embodiment can be provided on the compartment cover at a more important part where air sealing has more importance and where air losses are observed densely.
[0028]The inscription, which mentions that said sealing embodiment extends in at least one part of the related edge parts, means that for instance the sealing embodiment can be provided longitudinally in whole of the related edge part, or the sealing embodiment can be provided in a manner extending at a part of the related edge part.
[0029]In a possible embodiment of the invention, the related wall parts are cover side wall parts which extend essentially at a height direction of the device and provided mutually with respect to each other. By means of this, air insulation is improved in the parts which exist between the cover side walls and the side walls of the cabinet structure and where air passages take place densely.
[0030]The cover side wall parts are the wall parts of the compartment cover provided essentially in a parallel plane to the mutual side walls of the cabinet structure.
[0031]In a possible embodiment of the invention, there is an insulation element, particularly an expanded polystyrene element inside the receiving space, there is an evaporator receiving space, wherein the evaporator can be at least partially placed, between the insulation element and the cabinet wall, and the sealing embodiment is provided at the edge parts of at least the cover side wall parts which define the evaporator receiving space. By means of this, suctioning of air, suctioned from the storage space towards the evaporator receiving space by a fan, through a part except the air suctioning opening is prevented, the air losses which exist in the system are reduced. Thus, the air insulation between the evaporator receiving space and the storage space is improved.
[0032]The insulation element can be any insulation element, for instance, an expanded polystyrene element (EPS) configured to provide air insulation between the evaporator receiving space and the storage space. Said insulation element can have different thickness values at different regions of the receiving space. For instance, the insulation element can have a higher thickness value at a region of the receiving space, and it can have a lower thickness value in another region of the receiving space. Preferably, the insulation element can have a lower thickness value at the part where the evaporator receiving space is formed, namely it can be thinner, and the insulation element can have a bigger thickness value at a region which exists at the upper side of the evaporator arrangement, namely, it will be thicker.
[0033]The inscription, which mentions an evaporator receiving space wherein the evaporator can be at least partially placed, means that the evaporator is completely existing inside the evaporator receiving space or means that a part of the evaporator is inside the evaporator receiving space.
[0034]The inscription, which mentions that at least the cover side wall parts of said sealing embodiment are provided at the edge parts which define the evaporator receiving space, means that only the cover side wall parts of the sealing embodiment can be provided at the edge parts which define the evaporator receiving space or the related cover side wall parts of the sealing embodiment can be provided at the other edge parts of the related cover side wall parts which do not define the evaporator receiving space besides the edge parts of the related cover side wall parts which define the evaporator receiving space. In other words, for instance, if the related cover side wall part has length “L” and if “L/2” of the cover side wall part defines the evaporator receiving space, the sealing embodiment can be provided in “L/2”, “2L/3” and “L” length of said cover side wall part.
[0035]In a possible embodiment of the invention, on a face of the part of the insulation element, which exists at an upper side of the evaporator with respect to the height direction, which faces the cabinet wall, there is a first flexible element, particularly a sponge element shaped and dimensioned in a manner close to a cover upper wall part and cover side wall parts of the compartment cover which are far from the evaporator. The insulation element can have a lower thickness value at the part where the evaporator receiving space is formed, namely, it can be thinner, and the insulation element can have a higher thickness value at the part which exists at the upper side of the evaporator arrangement, namely, it can be thicker. In other words, at the region of the insulation element which exists at the upper side of the insulation element, the face of insulation element which faces the cabinet wall is provided in a manner being close to the related edge part. In other words, the face of the insulation element which faces the cabinet wall becomes suitable for positioning of the first flexible element directly. By using the first flexible element at the upper side of the evaporator arrangement, the cost of the air insulation at the upper side of the compartment cover is provided in a lower manner.
[0036]The first flexible element can be any flexible element, for instance a sponge element which is compressible when it contacts to a surface.
[0037]In a possible embodiment of the invention, the first flexible element has an overlapping part where the first flexible element overlaps with the sealing embodiments at the sides which are close to the sealing embodiments provided at the cover side wall parts. By means of this, occurrence of a space between the related sealing embodiment and the first flexible element in a manner leading to air permeability in the height direction is prevented.
[0038]The overlapping part means that the sealing embodiment and the compartment cover of the first flexible element overlap with each other in the width direction.
[0039]In a possible embodiment of the invention, the cabinet wall is a rear wall of the cabinet structure which is opposite to a front side where an access opening is formed. By means of this, the compartment cover is provided in a manner separating the evaporator arrangement, which is near the rear wall and which exists in the cabinet structure, from the storage space.
[0040]In a possible embodiment of the invention, the holder item comprises connection extensions provided mutually to each other such that a wall receiving part, where the related edge part can be placed, is disposed in between. By means of this, the sealing embodiment can be held to the edge part in a stable manner. At the same time, when needed, by means of the connection extensions, separation of the sealing embodiment from the related edge part can be easily provided.
[0041]The connection extensions can be a couple of mutual extensions extending longitudinally on the sealing embodiment, or can be more than one and couple of mutual extensions provided in a distanced manner to each other.
[0042]In a possible embodiment of the invention, the related wall parts have a related retaining protrusion in the regions thereof which are close to the edge parts, the related connection extensions comprise a related recess part which corresponds to the retaining protrusions, and in a condition where the sealing embodiment is retained to the related edge part, the retaining protrusions are configured to be placed to the related recess parts. By means of this, retaining of the sealing embodiment to the related edge part is improved. By means of this arrangement, undesired separation of sealing embodiment from the related edge part is prevented.
[0043]The retaining protrusions can be any bulge or protrusion form embodied at the related edge part.
[0044]The recess parts can be a depression or groove form shaped and dimensioned on the connection extensions with respect to the retaining protrusions.
[0045]In a possible embodiment of the invention, there is a related inclined face at the sides of the retaining protrusions which are close to the related edge part, and each of the connection extensions has a related guiding inner face in order to provide passage of a part of the related connection extension beyond the related retaining protrusion and thus in order to provide placement of the retaining protrusions to the related recess parts, at a condition where the sealing embodiment is pushed towards the related edge part. By means of this, the connection extensions hold to the related edge part easily. Moreover, separation of the connection extensions from the related edge part can be easily provided by applying a little force to the connection extensions in a manner diverging the connection extensions from each other.
[0046]The inclined face can be embodied on a lower face of the retaining protrusions which faces the seal.
[0047]The guiding inner face can be embodied at the faces of the connection extensions which face the edge part which exists at the sides which are close to the free end part of the connection extensions.
[0048]In a possible embodiment of the invention, the seal is arranged to have a front contact wall which can contact to the cabinet wall, and to have an inner space defined by mutual flexible walls which have a structure which can flex when the front contact wall contacts to the cabinet wall. By means of this, the seal is compressed between the related edge part and the cabinet wall, and complete air sealing is provided.
[0049]Here, at a condition where said front contact wall has not yet contacted to the cabinet wall, the front contact wall can essentially have a curved form. Here, at a condition where said front contact wall has not yet contacted to the cabinet wall, the front contact wall can essentially have a horizontal form.
[0050]The mutual flexible walls can essentially have a shape which is similar to V-shape. On the mutual flexible walls, there can be items like groove, channel, notch for providing flexibility to the flexible walls.
[0051]In a possible embodiment of the invention, at a lower side of the cover front wall which is close to a base wall of the cabinet structure where the compartment cover is seating, there are connection arrangements provided in a distanced manner to each other in a width direction, and in order to connect the compartment cover to the base wall, each of the connection arrangements comprises a related connection housing in a manner providing passage of a related connection element in a crosswise direction. By means of this, by means of the horizontal force component of the connection force provided by the connection element in crosswise direction, the sealing embodiment is compressed in a manner providing air insulation. By means of the orthogonal force component of the connection force provided by the connection element in crosswise direction, the second flexible element is compressed in a manner providing air insulation.
[0052]The connection arrangements have at least one connection housing arranged such that the connection element can pass through. At the compartment cover, there can be more than one connection arrangement provided in a distanced manner to each other in the width direction. For instance, at the compartment cover, there can be a couple of connection arrangement provided in a distanced manner to each other in the width direction.
[0053]The connection element can be a removable connection element, a connection element for instance like a screw or a bolt.
[0054]The crosswise direction is a direction where the connection element passes and extends through the connection housing.
[0055]In a possible embodiment of the invention, there is a second flexible element, particularly a sponge element between the compartment cover and the base wall. By means of this, air sealing between the compartment cover and the base wall is provided.
[0056]The second flexible element can be any flexible element, for instance, a sponge element which is compressible when it contacts to a surface.
[0057]In a possible embodiment of the invention, at the lower side of the compartment cover, in order to guide the air suctioned from the storage space to the evaporator, there is an air suctioning opening opened from the storage space to the receiving space. By means of this, cool air passes only through the air suctioning opening and reaches the evaporator, efficiency of the cooling system is increased.
[0058]The air suctioning opening shape and number can differ according to factors like the design, the flow rate of the air to be suctioned, the capacity of the fan. For instance, air suctioning opening can have a grill structure which has more than one adjacent opening.
[0059]In a possible embodiment of the invention, holder item is made of a plastic material, particularly an acrylonitrile butadiene styrene material, and the seal is made of an elastomeric material. By means of this, the sealing embodiment can be produced easily and low-cost manner by means of co-extrusion method by using a single mold.
[0060]The plastic material can be any plastic material, for instance, an acrylonitrile butadiene styrene material.
[0061]The elastomeric material can be any elastomeric flexible material, for instance a rubber material.
[0062]Other features which are considered as characteristic for the invention are set forth in the appended claims.
[0063]Although the invention is illustrated and described herein as embodied in a cooling device having a compartment cover, it is nevertheless not intended to be limited to the details shown, since various modifications and structural changes may be made therein without departing from the spirit of the invention and within the scope and range of equivalents of the claims.
[0064]The construction and method of operation of the invention, however, together with additional objects and advantages thereof will be best understood from the following description of specific embodiments when read in connection with the accompanying drawings.
BRIEF DESCRIPTION OF THE FIGURES
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DETAILED DESCRIPTION OF THE INVENTION
[0083]In this detailed description, the subject matter is explained with references to examples without forming any restrictive effect only in order to make the subject more understandable.
[0084]In this context, said width direction x describes the width direction of the cooling device 1, the width direction of the body 4, the width direction of the cabinet structure 5, the width direction of the evaporator arrangement 6, the width direction of the evaporator 7, the width direction of the compartment cover 8, the width direction of the insulation element 40 and the width direction of the sealing embodiment 15.
[0085]In this context, said depth direction y describes the depth direction of the cooling device 1, the depth direction of the body 4, the depth direction of the cabinet structure 5, the depth direction of the evaporator arrangement 6, the depth direction of the evaporator 7, the depth direction of the compartment cover 8, the depth direction of the insulation element 40 and the depth direction of the sealing embodiment 15.
[0086]In this context, said height direction z describes the height direction of the cooling device 1, the height direction of the body 4, the height direction of the cabinet structure 5, the height direction of the evaporator arrangement 6, the height direction of the evaporator 7, the height direction of the compartment cover 8, the height direction of the insulation element 40 and the height direction of the sealing embodiment 15.
[0087]In
[0088]In the cooling device 1, the objects, placed into the storage space 2, are cooled by means of at least one cooling cycle. The aim of realizing cooling function in the cooling device 1 is to be able to preserve various objects, which exist in said storage space 2, for longer durations at a temperature which is lower than the temperature of the outer medium. In the cooling cycle, there are components like a compressor, a condenser, at least one evaporator 7, namely, at least one heat exchanger. The evaporator 7 is a device where the cooling fluid, which passes through, suctions heat and where the cooling fluid is converted from liquid form into gas form. During the cooling cycle, the liquid cooling fluid is compressed by the compressor and comes to the evaporator 7 and takes heat from the periphery while passing through the evaporator 7. This heat exchange in the evaporator 7 provides suctioning of the heat from the periphery while the cooling fluid passes from liquid form to gas form. By means of this, as the cool air, suctioned from the storage space 2 and having a relatively higher temperature, passes through the evaporator 7, the temperature thereof further decreases by means of the heat exchange in the evaporator 7. The cool air, which has lower temperature, is fed again to the storage space 2 by means of air feeding openings 50. By means of this, the temperature value of the storage space 2 is preserved in the adjusted manner. The evaporator 7 is preferably a pipe-type evaporator comprising an array of pipes. In the evaporator arrangement 6, there are bypass preventing parts 44 provided in a manner holding to the pipes of the evaporator 7 and which exist at mutual sides to each other in the width direction x, for instance, there are parts made of expanded polystyrene sponge (EPS). The cooling cycle of the cooling device 1 is managed by at least one control unit not illustrated in the figures, particularly by an electronic board, for instance by a printed circuit board. As shall be seen in
[0089]With reference to
[0090]With reference to
[0091]With reference to
[0092]With reference to
[0093]As can be seen in
[0094]The fixation of the compartment cover 8 to the cabinet structure 5 is as follows: firstly, the insulation element 40 is placed to the receiving space 11 of the compartment cover 8, and then, the first flexible element 41 and the second flexible element 58 are adhered to the related parts, and the sealing embodiments 15 are retained to the related edge parts 12. In this manner, the compartment cover 8 made ready outside the device is positioned in a manner close to the cabinet wall 28 where the evaporator arrangement 6 is disposed, and in a manner seating to the base wall 43. Meanwhile, the seal 17 which exists in the sealing embodiment 15 exists in a first condition I as shall be seen in
[0095]It should be understood that the scope of protection of the present invention is set forth in the annexed claims and should not be restricted to the illustrative disclosures given above, under the detailed description. Those of ordinary skill in the pertinent art can obviously produce similar embodiments under the light of the foregoing disclosures, without departing from the main principles of the present invention.
- [0097]1 cooling device
- [0098]2 storage space
- [0099]3 access opening
- [0100]4 body
- [0101]5 cabinet structure
- [0102]6 evaporator arrangement
- [0103]7 evaporator
- [0104]8 compartment cover
- [0105]9 cover front wall
- [0106]10a cover upper wall part
- [0107]10b cover lower wall part
- [0108]10c first cover side wall part
- [0109]10d second cover side wall part
- [0110]11 receiving space
- [0111]12 edge part
- [0112]13a first retaining protrusion
- [0113]13b second retaining protrusion
- [0114]14a first inclined face
- [0115]14b second inclined face
- [0116]15 sealing embodiment
- [0117]16 holder item, holder
- [0118]17 sealing item, seal
- [0119]18 wall receiving part
- [0120]19a first connection extension
- [0121]19b second connection extension
- [0122]20a first guiding inner face
- [0123]20b second guiding inner face
- [0124]21 seating base
- [0125]22a first recess part
- [0126]22b second recess part
- [0127]23 front contact wall
- [0128]24a first flexible wall
- [0129]24b second flexible wall
- [0130]26 inner space
- [0131]27a first outer groove
- [0132]27b second outer groove
- [0133]28 cabinet wall
- [0134]29a first connection arrangement
- [0135]29b second connection arrangement
- [0136]30a first connection part
- [0137]30b second connection part
- [0138]31a first connection housing
- [0139]31b second connection housing
- [0140]33 support rib
- [0141]34 lower wall
- [0142]35 cover front face
- [0143]36 air suctioning opening
- [0144]37 air output opening
- [0145]38a first connection slotted extension
- [0146]38b second connection slotted extension
- [0147]38c third connection slotted extension
- [0148]38d fourth connection slotted extension
- [0149]39a first holder tab
- [0150]39b second holder tab
- [0151]40 insulation element
- [0152]41 first flexible element
- [0153]42 evaporator receiving space
- [0154]43 base wall
- [0155]44 bypass preventing part
- [0156]45 first air guiding channel
- [0157]46a first corresponding connection hole
- [0158]46b second corresponding connection hole
- [0159]46c third corresponding connection hole
- [0160]46d fourth corresponding connection hole
- [0161]47 connection element
- [0162]48 passage hole
- [0163]49 corresponding connection housing
- [0164]50 air feeding opening
- [0165]51 housing corresponding to fan
- [0166]52 second air guiding channel
- [0167]53 insulation layer
- [0168]54 corresponding air output opening
- [0169]55 first corresponding air suctioning opening
- [0170]56 second corresponding air suctioning opening
- [0171]57a first tab guiding part
- [0172]57b second tab guiding part
- [0173]58 second flexible element
- [0174]59 contact face
- [0175]60 overlapping part
- [0176]I first condition
- [0177]II second condition
- [0178]F connection force
- [0179]F1 horizontal force component
- [0180]F2 orthogonal force component
- [0181]S Compression force
- [0182]A Detail A
- [0183]x width direction
- [0184]y depth direction
- [0185]z height direction
- [0186]c crosswise direction
Claims
1. A cooling device, comprising:
a body having a cabinet structure bounding a storage space, said cabinet structure having a cabinet wall;
an evaporator arrangement disposed in said cabinet structure in a vicinity of said cabinet wall of said cabinet structure, said evaporator arrangement having an evaporator;
a compartment cover disposed to cover said evaporator arrangement for separating said evaporator arrangement from said storage space, said compartment cover having a cover front wall extending substantially parallel to said cabinet wall, and wall parts which extend from said cover front wall to said cabinet wall for defining a receiving space; and
said compartment cover having a holder removably attached to an edge part of a respective one of said wall parts close to said cabinet wall, and a sealing embodiment with a seal disposed at a continuation of said holder and configured to flex upon contacting said cabinet wall.
2. The cooling device according to
3. The cooling device according to
4. The cooling device according to
5. The cooling device according to
6. The cooling device according to
7. The cooling device according to
8. The cooling device according to
9. The cooling device according to
10. The cooling device according to
11. The cooling device according to
12. The cooling device according to
13. The cooling device according to
14. The cooling device according to
15. The cooling device according to
16. The cooling device according to
17. The cooling device according to
18. The cooling device according to
19. The cooling device according to