Multi-door high-capacity vertical refrigerator

By installing pallets and moving blocks in the connecting groove of the vertical refrigerator, dynamic adjustment of pallet height is solved, and the problem of difficulty in operating when changing partition intervals of existing vertical refrigerators is solved, and the convenience and practicality of use are improved.

CN222895371UActive Publication Date: 2025-05-23WANGCANG COUNTY WUYUAN FOOD CO LTD
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Patent Information

Application Number
CN202421712750.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-19
Publication Date
2025-05-23
Estimated Expiration
2034-07-19

AI Technical Summary

Technical Problem

Existing vertical refrigerators are difficult to operate and are not practical when changing partition spacing, especially when placing heavier food on the surface of the partition.

Method used

A multi-door large-capacity vertical refrigerator is designed. By installing pallets and moving blocks in the connecting groove, dynamic adjustment of pallet height is achieved, avoiding the operation of pulling out the pallet and inserting it in the replacement position.

Benefits of technology

This design greatly facilitates placing larger food in the refrigerator, improves the practicality and convenience of operation, and reduces difficulties in use.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of vertical refrigerators, in particular to a multi-door large-capacity vertical refrigerator which comprises a main body, the main body comprises a main machine, a connecting shell is fixedly connected to the lower surface of the main machine, a connecting groove is formed in the surface of the connecting shell, a bearing mechanism is installed on the inner wall of the connecting groove, and the bearing mechanism comprises a supporting plate. The supporting plate is located in the connecting groove, an adjusting mechanism is installed on the lower surface of the supporting plate and comprises a moving block, the upper surface of the moving block is attached to the lower surface of the moving block, a second protruding block is fixedly connected to the front face of the moving block, and the second protruding block is located in the connecting groove. The inner wall of the connecting groove is fixedly connected with a fixed block, and the fixed block is located below the moving block. According to the utility model, the height of the supporting plate can be changed without pulling out the supporting plate to replace the position and inserting the supporting plate, so that the use is greatly facilitated, and the practicability of the device is improved.
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Description

Technical Field

[0001] The utility model relates to the field of vertical refrigerators, in particular to a multi-door large-capacity vertical refrigerator. Background Art

[0002] Vertical freezer refers to a freezer with the opening facing forward, which is equivalent to a single-door refrigerator with freezing function as the main function. Vertical freezer has high volume ratio and VVR, high internal space utilization, suitable for classified storage of food, large capacity, usually with multi-layer adjustable storage racks, which can conveniently store food of various sizes. It is widely used in supermarkets, restaurants, hotels and other places to store various frozen foods such as ice cream, cakes, meat, seafood, etc.

[0003] When using common vertical freezers on the market, it is sometimes necessary to put larger foods into the freezer, so the interval between the partitions needs to be changed. In the process of changing the interval, the partition of the freezer needs to be removed and inserted into the groove of the lower layer. When heavier foods are already placed on the surface of the partition, it is more difficult to operate, which reduces the practicality of the device. Utility Model Content

[0004] The utility model aims to solve the shortcomings in the prior art and proposes a multi-door large-capacity vertical refrigerator.

[0005] In order to achieve the above-mentioned purpose, the utility model adopts the following technical scheme: a multi-door large-capacity upright freezer, comprising a main body, the main body comprising a host, the lower surface of the host is fixedly connected to a connecting shell, the surface of the connecting shell is provided with a connecting groove, the inner wall of the connecting groove is installed with a supporting mechanism, the supporting mechanism comprises a support plate, the support plate is located inside the connecting groove, the lower surface of the support plate is installed with an adjustment mechanism, the adjustment mechanism comprises a moving block, the upper surface of the moving block is in contact with the lower surface of the moving block, the front side of the moving block is fixedly connected to a second protrusion, the second protrusion is located inside the connecting groove, the inner wall of the connecting groove is fixedly connected to a fixed block, and the fixed block is located below the moving block.

[0006] As a further description of the above technical solution:

[0007] A connecting mechanism is installed on the front of the connecting shell, and the connecting mechanism includes a door body. The back of the door body is movably connected to the front of the connecting shell, a sealing strip is fixedly connected to the back of the door body, and a first groove is opened on the surface of the door body.

[0008] As a further description of the above technical solution:

[0009] A second groove is formed on the upper surface of the support plate, and a second through hole is formed on the surface of the second groove. The number of the second through holes is plural.

[0010] As a further description of the above technical solution:

[0011] A replacement mechanism is installed on the surface of the second groove, and the replacement mechanism includes a moving plate, the lower surface of the moving plate is in contact with the upper surface of the second groove, and the surface of the moving plate is fixedly connected to a connecting plate, and the back side of the connecting plate is in contact with the front side of the support plate.

[0012] As a further description of the above technical solution:

[0013] A first protrusion is fixedly connected to the back side of the connecting plate, a third groove is formed on the surface of the supporting plate, and the first protrusion is located inside the third groove.

[0014] As a further description of the above technical solution:

[0015] A first through hole is opened on the front side of the connection shell, the second protrusion is located inside the first through hole, a third protrusion is fixedly connected to the inner wall of the first through hole, and a moving box is movably connected to the inner wall of the connection shell.

[0016] The utility model has the following beneficial effects:

[0017] 1. Compared with the prior art, this multi-door large-capacity vertical freezer, through the moving block, the fixed block and the supporting plate, when it is necessary to change the interval between the supporting plates in use, the moving block in the connecting groove opened on the surface of the connecting shell is moved to the right, the moving block gradually moves to the right, and its lower surface is no longer in contact with the upper surface of the fixed block, and then it descends along the gap on the right side of the fixed block. At this time, the height of the supporting plate is reduced, which increases the space above the supporting plate, and objects with higher height and larger volume can be placed on the upper surface of the supporting plate. Compared with the conventional device, in use, since it is sometimes necessary to put larger volume food into the refrigerator, it is necessary to change the interval between the partitions, and in the process of changing the interval, the partition of the refrigerator needs to be removed and inserted into the groove of the lower layer. When heavier food has been placed on the surface of the partition, it is more difficult to operate, which reduces the practicality of the device. The device does not need to pull out the supporting plate and replace it, and can change the height of the supporting plate, which greatly facilitates the use and improves the practicality of the device.

[0018] 2. Compared with the prior art, this multi-door large-capacity vertical freezer has a movable plate, a connecting plate and a first protrusion. During use, a movable plate is installed on the upper surface of a support plate installed inside a connecting shell. When it is necessary to clear the frost inside the freezer, the power is first turned off, and then the first protrusion on the connecting plate fixed on the surface of the movable plate is pulled out from the support plate, and the movable plate is taken out. Then, the melted water inside the freezer will flow from the second through hole opened on the support plate to the movable box at the bottom of the connecting shell, which makes cleaning more convenient and improves the practicability of the device. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] Figure 1 This is a schematic diagram of the overall structure of a multi-door large-capacity vertical freezer proposed by the utility model from a first perspective;

[0020] Figure 2 This is a second-view overall structural schematic diagram of a multi-door, large-capacity vertical freezer proposed by the utility model;

[0021] Figure 3 A multi-door large-capacity vertical refrigerator proposed by the utility model Figure 2 A magnified view of the structure at A;

[0022] Figure 4 This is a cross-sectional view of a multi-door, large-capacity vertical freezer proposed by the utility model;

[0023] Figure 5 A multi-door large-capacity vertical refrigerator proposed by the utility model Figure 4 Enlarged view of the structure at B.

[0024] Legend:

[0025] 1. Main body; 101. Host; 102. Connecting shell; 103. First through hole; 104. Connecting groove; 2. Connecting mechanism; 201. Door body; 202. Sealing strip; 203. First groove; 3. Supporting mechanism; 301. Support plate; 302. Second groove; 303. Third groove; 304. Second through hole; 4. Replacement mechanism; 401. Moving plate; 402. Connecting plate; 403. First protrusion; 5. Adjusting mechanism; 501. Moving block; 502. Second protrusion; 503. Third protrusion; 504. Fixed block; 6. Moving box. DETAILED DESCRIPTION

[0026] Reference Figure 1-5The utility model provides a multi-door large-capacity vertical refrigerator: comprising a main body 1, the main body 1 comprising a host 101, a connecting shell 102 is fixedly connected to the lower surface of the host 101, a connecting groove 104 is provided on the surface of the connecting shell 102, a supporting mechanism 3 is installed on the inner wall of the connecting groove 104, the supporting mechanism 3 comprises a supporting plate 301, the supporting plate 301 is located inside the connecting groove 104, an adjusting mechanism 5 is installed on the lower surface of the supporting plate 301, the adjusting mechanism 5 comprises a moving block 501, the upper surface of the moving block 501 is in contact with the lower surface of the moving block 501, a second protrusion 502 is fixedly connected to the front of the moving block 501, and the second protrusion 50 2 is located inside the connection groove 104, and the inner wall of the connection groove 104 is fixedly connected with a fixed block 504, and the fixed block 504 is located below the moving block 501. When it is necessary to change the interval between the support plate 301 and the support plate 301, the moving block 501 in the connection groove 104 opened on the surface of the connection shell 102 is moved rightward, and the moving block 501 gradually moves rightward, and its lower surface is no longer in contact with the upper surface of the fixed block 504, and then it descends along the gap on the right side of the fixed block 504. At this time, the height of the support plate 301 is reduced, and the space above the support plate 301 is increased, so that objects with higher height and larger volume can be placed on the upper surface of the support plate 301.

[0027] A connecting mechanism 2 is installed on the front of the connecting shell 102, and the connecting mechanism 2 includes a door body 201, the back of the door body 201 is movably connected to the front of the connecting shell 102, and a sealing strip 202 is fixedly connected to the back of the door body 201. A first groove 203 is provided on the surface of the door body 201, and a second groove 302 is provided on the upper surface of the support plate 301. A second through hole 304 is provided on the surface of the second groove 302, and the number of the second through holes 304 is multiple. A replacement mechanism 4 is installed on the surface of the second groove 302, and the replacement mechanism 4 includes a moving plate 401, and the lower surface of the moving plate 401 is fitted with the upper surface of the second groove 302. The surface of the moving plate 401 is fixedly connected with a connecting plate 402, and the back of the connecting plate 402 is fitted with the front of the support plate 301. The back of the connecting plate 402 is fixedly connected with a first protrusion 403, and the surface of the support plate 301 A third groove 303 is provided on the surface, and the first protrusion 403 is located inside the third groove 303. A first through hole 103 is provided on the front side of the connecting shell 102, and the second protrusion 502 is located inside the first through hole 103. The inner wall of the first through hole 103 is fixedly connected with the third protrusion 503, and the inner wall of the connecting shell 102 is movably connected with the moving box 6. The upper surface of the support plate 301 installed inside the connecting shell 102 is installed with the moving plate 401. When it is necessary to clear the frost inside the freezer, firstly turn off the power, and then pull out the first protrusion 403 on the connecting plate 402 fixed on the surface of the moving plate 401 from the support plate 301, and take out the moving plate 401. Then the melted water inside the freezer will flow from the second through hole 304 opened on the support plate 301 to the moving box 6 at the bottom of the connecting shell 102, which is more convenient for cleaning and improves the practicability of the device.

[0028] Working principle: When the interval between the pallets 301 and the pallets 301 needs to be changed, the moving block 501 in the connecting groove 104 opened on the surface of the connecting shell 102 is moved to the right, and the moving block 501 gradually moves to the right, and its lower surface no longer fits the upper surface of the fixed block 504, and then descends along the gap on the right side of the fixed block 504. At this time, the height of the pallet 301 decreases, increasing the space above the pallet 301, and objects with higher height and larger volume can be placed on the upper surface of the pallet 301. The device does not need to pull out the pallet 301 to replace the position and insert it. The height of the support plate 301 can be changed, which greatly facilitates the use. A movable plate 401 is installed on the upper surface of the support plate 301 installed inside the connecting shell 102. When it is necessary to clear the frost inside the freezer, first turn off the power, then pull out the first protrusion 403 on the connecting plate 402 fixed on the surface of the movable plate 401 from the support plate 301, take out the movable plate 401, and then the melted water inside the freezer will flow from the second through hole 304 opened on the support plate 301 to the movable box 6 at the bottom of the connecting shell 102, which makes cleaning more convenient and improves the practicability of the device.

[0029] Finally, it should be noted that the above is only a preferred embodiment of the present invention and is not intended to limit the present invention. Although the present invention has been described in detail with reference to the aforementioned embodiments, those skilled in the art can still modify the technical solutions described in the aforementioned embodiments or make equivalent substitutions for some of the technical features therein. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principles of the present invention should be included in the protection scope of the present invention.

Claims

1. A multi-door large-capacity vertical freezer, comprising a main body (1), characterized in that: The main body (1) comprises a host (101), the lower surface of the host (101) being fixedly connected to a connecting shell (102), the surface of the connecting shell (102) being provided with a connecting groove (104), the inner wall of the connecting groove (104) being provided with a supporting mechanism (3), the supporting mechanism (3) comprising a supporting plate (301), the supporting plate (301) being located inside the connecting groove (104), the lower surface of the supporting plate (301) being provided with an adjusting mechanism (5), the adjusting mechanism (5) comprising a moving block (501), the upper surface of the moving block (501) being in contact with the lower surface of the moving block (501), the front surface of the moving block (501) being fixedly connected to a second protrusion (502), the second protrusion (502) being located inside the connecting groove (104), the inner wall of the connecting groove (104) being fixedly connected to a fixing block (504), the fixing block (504) being located below the moving block (501).

2. A multi-door large-capacity vertical freezer according to claim 1, characterized in that: A connecting mechanism (2) is installed on the front of the connecting shell (102), the connecting mechanism (2) comprising a door body (201), the back of the door body (201) being movably connected to the front of the connecting shell (102), a sealing strip (202) being fixedly connected to the back of the door body (201), and a first groove (203) being provided on the surface of the door body (201).

3. The multi-door large-capacity vertical freezer according to claim 1, characterized in that: The upper surface of the support plate (301) is provided with a second groove (302), the surface of the second groove (302) is provided with a second through hole (304), and the number of the second through holes (304) is multiple.

4. A multi-door large-capacity vertical freezer according to claim 3, characterized in that: A replacement mechanism (4) is installed on the surface of the second groove (302), and the replacement mechanism (4) comprises a movable plate (401), the lower surface of the movable plate (401) is in contact with the upper surface of the second groove (302), and the surface of the movable plate (401) is fixedly connected to a connecting plate (402), and the back surface of the connecting plate (402) is in contact with the front surface of the supporting plate (301).

5. A multi-door large-capacity vertical freezer according to claim 4, characterized in that: A first protrusion (403) is fixedly connected to the back side of the connecting plate (402), a third groove (303) is provided on the surface of the supporting plate (301), and the first protrusion (403) is located inside the third groove (303).

6. The multi-door large-capacity vertical freezer according to claim 1, characterized in that: The front surface of the connection shell (102) is provided with a first through hole (103), the second protrusion (502) is located inside the first through hole (103), the inner wall of the first through hole (103) is fixedly connected to the third protrusion (503), and the inner wall of the connection shell (102) is movably connected to the movable box (6).