CN211346013U - Connection structure and combined refrigerating device - Google Patents

Connection structure and combined refrigerating device Download PDF

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Publication number
CN211346013U
CN211346013U CN201921228808.XU CN201921228808U CN211346013U CN 211346013 U CN211346013 U CN 211346013U CN 201921228808 U CN201921228808 U CN 201921228808U CN 211346013 U CN211346013 U CN 211346013U
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refrigerating device
piece
magnetic
connecting sheet
connecting piece
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CN201921228808.XU
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刘志海
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Qingdao Haier Special Refrigerator Co Ltd
Haier Smart Home Co Ltd
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Qingdao Haier Special Refrigerator Co Ltd
Haier Smart Home Co Ltd
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Abstract

The utility model provides a connecting structure and a combined refrigerating device, wherein the combined refrigerating device comprises a first refrigerating device and a second refrigerating device, the first refrigerating device is adjacent to the second refrigerating device, and a gap part is arranged between the first refrigerating device and the second refrigerating device; the connecting structure is arranged in the gap part and comprises a first connecting sheet, a second connecting sheet and a third connecting sheet, the second connecting sheet and the third connecting sheet are arranged on the rear side of the first connecting sheet, the first connecting sheet covers the front side of the gap part, and the second connecting sheet and the third connecting sheet extend towards the rear side of the gap part; wherein, a first magnetic part is arranged between the second connecting piece and the first shell of the first refrigerating device and/or a second magnetic part is arranged between the second connecting piece and the second shell of the second refrigerating device; the first magnetic piece and/or the second magnetic piece enable the connecting structure to be magnetically adsorbed to the first shell and the second shell.

Description

Connection structure and combined refrigerating device
Technical Field
The utility model relates to a refrigeration technology field, more specifically relates to a connection structure and combination formula refrigerating plant.
Background
To maintain food freshness, refrigerated or frozen storage cabinets are used in both stores and homes. With the development of the market and the improvement of the living standard, people have higher and higher requirements on the large-volume refrigerator. Different consumers have different requirements, the eating habits and food storage habits of each family are different, even the requirements in different seasons or different periods are different, so that the refrigerator is required to have more functions while the volume of the refrigerator is increased, and different functional modules can be independently controlled and used independently.
There have been proposed combination refrigerators in which two or more refrigerators are coupled together by a coupling device. For attractive and simple appearance, the connecting device is provided with double-sided adhesive tapes which are attached to the side faces of the refrigerator bodies of two or more refrigerators. The connecting device using the double-sided adhesive tape has problems in that 1) the position of two or more refrigerators cannot be adjusted after the two or more refrigerators are assembled; 2) the double-sided adhesive tape has short service life and is easy to fall off.
In view of this, the present invention provides a new connecting structure and a combined type refrigeration device.
SUMMERY OF THE UTILITY MODEL
The utility model aims to overcome among the current combination formula refrigerating plant, owing to adopt the double faced adhesive tape to fix adjacent refrigerating plant, the equipment convenience that leads to is poor, unable adjustment refrigerating plant's position, and the problem that drops easily.
The utility model provides a connecting structure, which is suitable for a combined refrigerating device, the combined refrigerating device comprises a first refrigerating device and a second refrigerating device, the first refrigerating device is adjacent to the second refrigerating device, and a gap part is arranged between the first refrigerating device and the second refrigerating device; the connecting structure is arranged in the gap part and comprises a first connecting sheet, a second connecting sheet and a third connecting sheet, the second connecting sheet and the third connecting sheet are arranged on the rear side of the first connecting sheet, the first connecting sheet covers the front side of the gap part, and the second connecting sheet and the third connecting sheet extend towards the rear side of the gap part; wherein, a first magnetic part is arranged between the second connecting piece and the first shell of the first refrigerating device and/or a second magnetic part is arranged between the second connecting piece and the second shell of the second refrigerating device; the first magnetic piece and/or the second magnetic piece enable the connecting structure to be magnetically adsorbed to the first shell and the second shell.
As an optional technical solution, the connection structure is a pi-type structure.
As an optional technical solution, an adhesive layer is disposed between the first magnetic member and the second connecting piece, so that the first magnetic member is fixed on the second connecting piece; and/or another adhesion layer is arranged between the second magnetic piece and the third connecting piece, so that the second magnetic piece is fixed on the third connecting piece.
As an optional technical scheme, the first refrigeration device and the second refrigeration device are placed in parallel side by side, the first refrigeration device and the second refrigeration device are respectively a refrigerated cabinet, a freezer cabinet or a vertical refrigerator with both the refrigerated cabinet and the freezer cabinet, which can be sold and used independently, and the door body of the vertical refrigerator is a left-opening door or a right-opening door.
As an optional technical solution, the first magnetic member and the second magnetic member are respectively a magnet.
As an optional technical solution, the first magnetic connecting piece is formed by integrating the first magnetic piece and the second connecting piece; and/or, integrating the second magnetic piece and the third connecting piece to form a second magnetic connecting piece; the first magnetic connecting piece is magnetically adsorbed on the first shell, and/or the second magnetic connecting piece is magnetically adsorbed on the second shell.
As an optional technical solution, in the connecting structure, the first connecting piece, the second connecting piece and the third connecting piece are integrally formed.
As an optional technical solution, the connection structure is a soft magnetic connection strip.
The utility model also provides a connecting structure which is suitable for a combined refrigerating device, the combined refrigerating device comprises a first refrigerating device and a second refrigerating device, the first refrigerating device is adjacent to the second refrigerating device, and a gap part is arranged between the first refrigerating device and the second refrigerating device; the connecting structure is arranged in the gap part and comprises a first connecting sheet, a second connecting sheet and a third connecting sheet, the second connecting sheet and the third connecting sheet are arranged on the rear side of the first connecting sheet, the first connecting sheet covers the front side of the gap part, and the second connecting sheet and the third connecting sheet extend towards the rear side of the gap part; wherein, set up magnet between this second connection piece and this third connection piece, this magnet makes this second connection piece and this third connection piece magnetic adsorption respectively in this first casing of first refrigerating plant and this second refrigerating plant's second casing.
The utility model also provides a modular refrigerating plant, it includes adjacent first refrigerating plant and second refrigerating plant, its characterized in that still includes connection structure, this connection structure be as above connection structure.
Compared with the prior art, the utility model discloses a last magnet that sets up of connection structure, perhaps connection structure itself adopts magnetic material to make, and it sets up in the gap between the adjacent refrigerating plant among the combination formula refrigerating plant, through the fixed adjacent refrigerating plant of magnetic adsorption's mode for connection structure's installation convenience increases. In addition, due to the fact that the magnetic adsorption is fixed, the position of the connecting structure can be adjusted after the connecting structure is installed, and the connecting structure can be detached and installed repeatedly.
The present invention will be described in detail with reference to the accompanying drawings and specific embodiments, but the present invention is not limited thereto.
Drawings
Fig. 1 is a schematic view of the combined refrigeration device of the present invention.
Fig. 2 is a schematic top view of the connection structure assembled in the combined type refrigeration apparatus according to an embodiment of the present invention.
Fig. 3 is a schematic top view of a combined type refrigeration device with a connection structure according to another embodiment of the present invention.
Detailed Description
In order to make the objects, technical solutions and advantages of the present invention more clearly understood, the present invention will be further described in detail with reference to the following embodiments and accompanying drawings. It should be understood that the specific embodiments described herein are for purposes of illustration only and are not intended to limit the invention.
Fig. 1 is a schematic view of a combined refrigeration unit of the present invention; fig. 2 is a schematic top view of the connection structure assembled in the combined type refrigeration apparatus according to an embodiment of the present invention.
As shown in fig. 1 and 2, the combined refrigeration device 100 includes a first refrigeration device 10, a second refrigeration device 20, and a connecting structure 30, the first refrigeration device 10 is adjacent to the second refrigeration device 20 with a gap portion 60 therebetween, the connecting structure 30 is disposed in the gap portion 60, the connection structure 30 includes a first connection piece 31, a second connection piece 32 and a third connection piece 33, the second connection piece 32 and the third connection piece 33 are respectively disposed at the rear side of the first connection piece 31, the second connection piece 32 and the third connection piece 33 extend toward the rear side of the gap portion 60, a first magnetic member 41 is disposed between the second connection piece 32 and the first casing of the case 12 of the first refrigeration device 10, a second magnetic member 42 is disposed between the third connection piece 33 and the second casing of the case 22 of the second refrigeration device 20, so that the first connecting piece 32 and the second connecting piece 33 are magnetically attracted to the first casing and the second casing through the first magnetic member 41 and the second magnetic member 42, respectively.
In another embodiment of the present invention, a first magnetic member is disposed between the second connecting piece and the first housing; or a second magnetic part is arranged between the third connecting piece and the second shell; that is, only one of the first magnetic member and the second magnetic member is used, and the second connecting piece and the third connecting piece are respectively connected with the gap portion so that the connecting structure can be fixed in the gap portion. In other words, the connecting structure can be fixed on the first shell and the second shell through the first magnetic member and/or the second magnetic member.
As can be seen from fig. 2, the present invention is described by taking two magnetic members, i.e., the first magnetic member 41 and the second magnetic member 42 as an example, but not limited thereto.
In addition, in the present invention, the side of the user close to the definition is the "front side", and the side of the user far from the definition is the "rear side".
In a preferred embodiment, the first refrigeration device 10 and the second refrigeration device 20 are disposed side by side in parallel, the gap portion 60 is located between the first refrigeration device 10 and the second refrigeration device 20, and the connecting structure 30 is embedded in the gap portion 60. The connecting structure 30 embedded in the gap portion 60 can provide a magnetic force to connect the first refrigeration device 10 and the second refrigeration device 20 to each other; and on the other hand, can be used to decorate the gap portion 60, so that the appearance of the combined type refrigeration device 100 is more beautiful. The connecting structure 30 is embedded in the front side of the gap portion 60, and the width of the first connecting piece 31 is greater than the width of the gap portion 60, so that the first connecting piece 31 can completely cover the front side of the gap portion 60, and two ends of the first connecting piece 31 respectively partially cover the front side of the first casing and the front side of the second casing.
In a preferred embodiment, the first magnetic member 41 and the second magnetic member 42 are magnets, and the first housing and the second housing are metal housings magnetically attracted to the magnets. The first magnetic member 41 and the second magnetic member 42 are respectively bonded to the second connecting piece 32 and the third connecting piece 33, and the second connecting piece 32 and the third connecting piece 33 are ferromagnetic metal pieces. Further, in order to make the connection structure 30 better fill the gap portion 60, the first connection piece 31, the second connection piece 32 and the third connection piece 33 of the connection structure 30 are respectively made of soft magnetic materials, that is, the connection structure 30 is a soft magnetic connection strip; when it is filled in the gap portion 60, it can be deformed properly according to the actual shape of the gap portion 60, thereby ensuring that the front side of the gap portion 60 is completely covered.
In a preferred embodiment, an adhesive layer is disposed between the first magnetic member 41 and the second connecting piece 32, another adhesive layer is disposed between the second magnetic member 42 and the third connecting piece 33, the first magnetic member 41 and the second connecting piece 32 are fixed to each other through the adhesive layer, and the second magnetic member 42 and the third connecting piece 33 are fixed to each other.
In a preferred embodiment, the first connecting piece 31, the second connecting piece 32 and the third connecting piece 33 are integrally formed to form the connecting structure 30.
In a preferred embodiment, the first connecting piece 31 is a magnetic metal sheet, which can be magnetically attracted to the front sides of the first and second housings.
In a preferred embodiment, the first magnetic member 41 is integrated with the second connecting piece 32 to form a first magnetic connecting piece, or the first magnetic connecting piece is provided to replace the first magnetic member 41 and the second connecting piece 32; similarly, the second magnetic connecting piece is formed by integrating the second magnetic member 42 with the third connecting piece 33, or the second magnetic connecting piece is provided to replace the second magnetic member 42 and the third connecting piece 33; the first magnetic connecting piece and the second magnetic connecting piece are respectively disposed at the rear side of the first connecting piece 31 and extend toward the rear side of the slit portion 60. When the connecting structure 30 is embedded in the gap portion 60, the first magnetic connecting piece and the second magnetic connecting piece are respectively magnetically adsorbed to the first casing and the second casing.
In a preferred embodiment, the connecting structure 30 is a pi-type structure, and the preferred connecting structure 30 is a pi-type magnetic connecting strip.
In a preferred embodiment, the first refrigeration device 10 and the second refrigeration device 20 are respectively a refrigerator cabinet, a freezer cabinet or a vertical refrigerator having both a refrigerator cabinet and a freezer cabinet, which can be sold separately or used separately, and the door body thereof is a left-hand door or a right-hand door; the combined refrigerating device 100 can be a left-handed door, a right-handed door or a side-by-side door (as shown in fig. 1) as a whole, and can also be any combination of a refrigerator, a freezer and a vertical refrigerator.
In a preferred embodiment, the first refrigeration device 10 is a vertical refrigerator and includes a first door 11 and a first box 12, and the first box 12 may include a plurality of storage compartments; the second cooling device 20 is a vertical refrigerator and includes a second door 21 and a second box 22, and the second box 22 may include a plurality of storage compartments.
The utility model discloses in, connection structure 30 passes through magnetic adsorption and fixes between first casing and second casing for connection structure 30's installation convenience increases. In addition, due to the magnetic adsorption fixation, the position of the connecting structure 30 can be adjusted after installation, and the connecting structure can be disassembled and repeatedly installed.
Fig. 3 is a schematic top view of a combined type refrigeration device with a connection structure according to another embodiment of the present invention. The same reference numerals in fig. 3 as those in fig. 1 and fig. 2 denote the same elements with similar functions, which are not described herein again.
As shown in fig. 3, the connecting structure 30 includes a first connecting piece 31, a second connecting piece 32 and a third connecting piece 33, and the magnet 50 is disposed between the second connecting piece 32 and the third connecting piece 33. The connecting structure 30 is embedded between the first shell of the first box 12 and the second shell of the second box 22, the second connecting piece 32 is sandwiched between the first shell and the magnet 50, and the third connecting piece 33 is sandwiched between the second shell and the magnet 50; one side of the magnet 50 attracts the second connecting piece 32 and the first housing, and the other side of the magnet 50 attracts the third connecting piece 33 and the second housing, so that the connecting structure 30 magnetically fixes the first refrigeration device 10 and the second refrigeration device 20 (as shown in fig. 1).
In this embodiment, the first connecting piece 31 is magnetically attracted to the front side of the magnet 50.
In a preferred embodiment, the magnet 50 and the connecting structure 30 are integrated into a T-shaped magnetic connecting bar, or the T-shaped magnetic connecting bar is provided to be embedded in the gap portion 60, a transverse portion of the T-shaped magnetic connecting bar covers a front side of the gap portion 60, a longitudinal portion of the T-shaped magnetic connecting bar is accommodated in the gap portion 60, and the T-shaped magnetic connecting bar magnetically attracts the first shell and the second shell together.
To sum up, the utility model provides a connection structure and combination formula refrigerating plant sets up magnet on the connection structure, perhaps connection structure itself adopts magnetic material to make, and it sets up in the gap between the adjacent refrigerating plant among the combination formula refrigerating plant, through the fixed adjacent refrigerating plant of magnetic adsorption's mode for connection structure's installation convenience increases. In addition, due to the fact that the magnetic adsorption is fixed, the position of the connecting structure can be adjusted after the connecting structure is installed, and the connecting structure can be detached and installed repeatedly.
Of course, the present invention can have other various embodiments, and those skilled in the art can make various corresponding changes and modifications according to the present invention without departing from the spirit and the essence of the present invention, and these corresponding changes and modifications should fall within the protection scope of the appended claims.

Claims (10)

1. A connecting structure is suitable for a combined refrigerating device and is characterized in that,
the combined refrigerating device comprises a first refrigerating device and a second refrigerating device, wherein the first refrigerating device and the second refrigerating device are adjacent and a gap part is arranged between the first refrigerating device and the second refrigerating device;
the connecting structure is arranged in the gap part and comprises a first connecting sheet, a second connecting sheet and a third connecting sheet, the second connecting sheet and the third connecting sheet are arranged on the rear side of the first connecting sheet, the first connecting sheet covers the front side of the gap part, and the second connecting sheet and the third connecting sheet extend towards the rear side of the gap part;
wherein, a first magnetic part is arranged between the second connecting piece and the first shell of the first refrigerating device and/or a second magnetic part is arranged between the second connecting piece and the second shell of the second refrigerating device; the first magnetic piece and/or the second magnetic piece enable the connecting structure to be magnetically adsorbed to the first shell and the second shell.
2. The connecting structure according to claim 1, wherein the connecting structure is a pi-type structure.
3. The connecting structure according to claim 1, wherein an adhesive layer is disposed between the first magnetic member and the second connecting piece, so that the first magnetic member is fixed on the second connecting piece; and/or another adhesion layer is arranged between the second magnetic piece and the third connecting piece, so that the second magnetic piece is fixed on the third connecting piece.
4. The connecting structure according to claim 1, wherein the first refrigerating device and the second refrigerating device are arranged side by side in parallel, the first refrigerating device and the second refrigerating device are respectively a refrigerator, a freezer or a vertical refrigerator having both a refrigerator and a freezer which can be sold separately or used separately, and the door body of the first refrigerating device and the second refrigerating device is a left-hand door or a right-hand door.
5. The connecting structure according to claim 1, wherein the first magnetic member and the second magnetic member are magnets, respectively.
6. The connecting structure according to claim 1, wherein the first magnetic connecting piece is formed by integrating the first magnetic member with the second connecting piece; and/or, integrating the second magnetic piece and the third connecting piece to form a second magnetic connecting piece; the first magnetic connecting piece is magnetically adsorbed on the first shell, and/or the second magnetic connecting piece is magnetically adsorbed on the second shell.
7. The connecting structure according to claim 1, wherein the first connecting piece, the second connecting piece and the third connecting piece are integrally formed in the connecting structure.
8. The connection structure of claim 1, wherein the connection structure is a flexible magnetic connection strip.
9. A connecting structure is suitable for a combined refrigerating device and is characterized in that,
the combined refrigerating device comprises a first refrigerating device and a second refrigerating device, wherein the first refrigerating device and the second refrigerating device are adjacent and a gap part is arranged between the first refrigerating device and the second refrigerating device;
the connecting structure is arranged in the gap part and comprises a first connecting sheet, a second connecting sheet and a third connecting sheet, the second connecting sheet and the third connecting sheet are arranged on the rear side of the first connecting sheet, the first connecting sheet covers the front side of the gap part, and the second connecting sheet and the third connecting sheet extend towards the rear side of the gap part;
wherein, set up magnet between this second connection piece and this third connection piece, this magnet makes this second connection piece and this third connection piece magnetic adsorption respectively in this first casing of first refrigerating plant and this second refrigerating plant's second casing.
10. A combined refrigeration device comprising a first refrigeration device and a second refrigeration device adjacent to each other, further comprising a connection structure according to any one of claims 1 to 9.
CN201921228808.XU 2019-07-31 2019-07-31 Connection structure and combined refrigerating device Active CN211346013U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201921228808.XU CN211346013U (en) 2019-07-31 2019-07-31 Connection structure and combined refrigerating device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201921228808.XU CN211346013U (en) 2019-07-31 2019-07-31 Connection structure and combined refrigerating device

Publications (1)

Publication Number Publication Date
CN211346013U true CN211346013U (en) 2020-08-25

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN201921228808.XU Active CN211346013U (en) 2019-07-31 2019-07-31 Connection structure and combined refrigerating device

Country Status (1)

Country Link
CN (1) CN211346013U (en)

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