The present invention relates to a cooling device comprising a profile disposed on the edge of a storage plate. The present invention particularly relates to a refrigerator, particularly a domestic refrigerator having a shelf.
A profile is disposed on at least one edge of the plate-shaped shelves of refrigerators used for storing items. The profile is obtained from materials like metal or plastic.
If said profile is obtained from a substantially resistant material, it supports the storage plate/shelf, on whose edge it is placed, against bending and flexing which occur due to the loads applied thereon. Therefore, the profile is connected to one or more than one edge of the shelf, which is in quadrangle (rectangle, square, etc.) shape.
The profile may, moreover, be used for creating visual difference. By means of profiles having different color, structure and dimensions, shelves and thus cooling devices, which are different from each other, can be obtained. The profile, used for this purpose, can support the shelf as mentioned above, or optionally it may be a profile, which does not support the shelf.
The shelf edge, which is mostly preferred for both purposes, is the front edge. The profile, used in the art, is generally positioned by grabbing the shelf edge from below and from above (
The invention provides an additional improvement, an additional advantage or an alternative to the present art.
The main object of the present invention is to provide a cooling device having a storage plate comprising a profile providing a long lifetime usage.
In order to realize said object, the present invention is a cooling device, particularly a domestic refrigerator, having a storage plate for storing an item disposed in the cooling device and a profile disposed on an edge of the storage plate; and that the cooling device comprises a profile configured as being on the same level with or a lower level than an upper face of the storage plate when the profile is disposed on the edge of the storage plate. Thus, a protrusion or step, which leads to the risk of profile impact or catching risk, is not formed on the storage plate. This eliminates or relatively reduces the risk of accidental separation of the profile from the storage plate.
The cooling device described in the present invention can be a device having storage plate, particularly a freezer or a refrigerator, particularly a domestic refrigerator. The cooling device may have a chamber thermally isolated from the outer environment. The cooled chamber can be accessed through a door provided on any wall of the chamber, particularly on the front or upper wall of the chamber. There may be one door or more than one door. The door can be connected by means of a hinge or by means of another method and mechanism known in the related art and providing door performing pivotal movement. Sealing element can be positioned on the periphery of the door for providing thermal isolation. The sealing element can be a gasket or a different element used in cooling devices in the related art.
The storage plate can embodied so as to bear an item which is desired to be kept in a cool medium in a cooling device. For instance, the storage plate may be a shelf carrying a foodstuff placed into a domestic refrigerator. The shelf is particularly made of glass, or it may be made of any material like plastic and metal or a suitable composite material known to be used in the production of shelves.
The profile may be an item used for increasing the resistance of the storage plate against flexing/bending due to the load placed thereon or against a possible impact to the storage plate; or used for creating visual difference. The profile can be obtained from a material, known in the related art, like metal, plastic, silicon or composite. For instance, the following can be used for obtaining the profile: aluminum, steel, thermoplastics (Acrylonitrile butadiene styrene (ABS), ABS/PC (Acrylonitrile butadiene styrene/Polycarbonate composite), polystyrene (PS), Styrene butadiene rubber (SBR)), thermoplastic elastomers or thermoplastic vulcanized units (Ethylene-Propylene-Diene-Monomer (EPDM), natural rubber (NR), Nitrile butadiene rubber (NBR), chloroprene rubber (CR), polyvinyl chloride (PVC), soft polyvinyl chloride (PVC)), etc. For instance, a section or whole of the profile may be hollow. Thus, since the amount of material used for obtaining the profile will be small, the production cost can be kept at a low level.
In a probable embodiment of the present invention, the profile comprises an upper face configured as being flush with the upper face of the storage plate when the profile is disposed on the edge of the storage plate. Thus, a surface can be obtained which is flush with the storage plate.
In a probable embodiment, the storage plate and the profile are configured as contacting on each points being on a line where upper faces of the storage plate and the profile are connected. Thus, the storage plate and the profile can be joined without any gap in between. By means of this, in case fluid is poured on the storage plate, fluid can be prevented from being penetrating between the storage plate and the profile. In this case, for instance if the fluid is a foodstuff, foodstuff penetration between the storage plate and the profile can be prevented; and thus odor and/or bacteria formation can be prevented.
In a probable embodiment of the present invention, the profile comprises an inclined edge being far from the storage plate. In another probable embodiment of the present invention, the profile comprises a rounded edge being far from the storage plate. Thus, due to any reason like cleaning, a contact, applied to the storage plate and to the profile, can be realized without being prevented. By means of this, the physical damaging of the contacting person can be prevented. Particularly the edges of the profile, obtained from hard materials and to which the user probably contacts, can be prevented from giving damage to the user.
In a probable embodiment of the present invention, the profile comprises a fixing element. Thus, the profile fixing process can be realized in a relatively rapid manner. In a probable embodiment, the fixing element is configured as extending over at least one of the lower face and the side face of the storage plate. Thus, in a compliant manner to the object of the invention, a protrusion, which leads to the risk of catching and impact, is not formed on the storage plate.
In a probable embodiment of the present invention, the storage plate comprises a step configured as providing that the profile is on the same level with or a lower level than the upper face of the storage plate when the profile is disposed on the storage plate. Thus, the profile can be placed on the edge of the storage plate as a coating. By means of this, a profile can be obtained, which seems to have the desired width, by using less material, as opposed to a profile having the same width. The profile can be formed by means of shaping methods known in the related art, like extrusion.
In a probable embodiment of the present invention, the fixing element is configured as extending over the step of the storage plate. Thus, the profile is fixed, and at the same time, in a compliant manner to the object of the invention, a protrusion, which leads to the risk of catching and impact, is not formed on the storage plate.
The profile may extend along an edge of the storage plate. However, optionally, the profile as a whole; or the visual section, part of the profile other than the fixing element of the profile; and/or the fixing element may extend along only a section of said edge. In other words, a partial profile, visual section and/or fixing element can be provided when compared with the length of the edge. Again, optionally, the profile, the visual section and/or the fixation element can be provided as repeated having a distance there between. The number of said distances can be one or more than one. For instance, a profile can be provided comprising two fixing elements provided only at the two ends, despite a visual section extending along the edge. Or for instance, a profile can be obtained disposed on the middle section and occupying only one-third of the edge. Pluralities of such examples can be obtained as combinations within the abovementioned limits.
In a probable embodiment of the present invention, the cooling device comprises an adhesive layer disposed between the fixing element of the profile and the storage plate. Thus, a resistant fixation can be provided. For instance, a layer can be formed by means of the adhesives cured with ultraviolet (UV) light. This provides a firm connection.
In a probable embodiment of the present invention, the fixing element of the profile comprises a rounded edge and/or an inclined edge. Thus, due to any reason like cleaning, a contact, applied to the storage plate and to the profile, can be realized without being prevented. By means of this, the physical damaging of the contacting person can be prevented. Particularly the edges of the profile, obtained from hard materials and to which the user probably contacts, can be prevented from giving damage to the user.
In a probable embodiment of the present invention, the profile is configured as covering, at least partially, a front face of the storage plate. Thus, the storage plate can be protected against the impacts which may be applied onto the front face thereof. For instance, the front face of a storage plate made of glass can be protected by means of a profile made of a resistant material like metal or plastic.
In a probable embodiment of the present invention, the length of the profile is almost equal to the length of the edge of the storage plate. Thus, all of said advantages of the profile can be obtained on the whole edge. For instance, the storage plate can be protected by means of the profile against any impact which may be applied onto the related edge.
In a probable embodiment of the present invention, the edge of the storage plate is the front edge. Thus, the advantages of the invention can be obtained on the edge with which the user most frequently interacts.
All directional references such as front, top and bottom are based on reference to the cooling device (1) shown in
In
The fixing element (22) is in plate form. Adhesive is applied between the storage plate (10) and the face of the fixing element (22) facing the storage plate (10), and thereby the profile (20) is fixed to the storage plate (10). The adhesive can be an adhesive, cured with ultraviolet (UV) light. The adhesive can also be applied between the visual section (21) and the front face (14) of the storage plate (10). The rear edge of the plate forming the fixing element (22) is formed as the rounded edge (220). Thus, it does not have sharp lines.
As exemplified in
Number | Date | Country | Kind |
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2014/05104 | May 2014 | TR | national |