Adjustable storage cabinet for vegetable processing

CN224722875UActive Publication Date: 2026-09-08ANHUI METTLE FOODS CO LTD
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Patent Information

Application Number
CN202521774564.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-08-20
Publication Date
2026-09-08
Estimated Expiration
2035-08-20

AI Technical Summary

Technical Problem

[0004]本实用新型提供一种蔬菜加工用可调节储存柜,解决相关技术中蔬菜堆积存放降低存放品质的技术问题

Benefits of technology

[0017] 1. The adjustable storage cabinet for vegetable processing described in this utility model has spray holes on the nozzle, and the distribution box and support plate are separable. When the air supply device inputs air into the air supply box, the air enters the distribution box through the connecting part, and then is sprayed out from the spray holes through the nozzle, forming an airflow above the support plate. The sprayed gas can promote air circulation around the vegetables, avoid the vegetables piling up and causing poor air circulation in the middle, thereby reducing the increase of humidity and the growth of microorganisms, effectively improving the storage quality of vegetables. At the same time, the structure of the detachable distribution box and support plate makes it easy to disassemble and maintain the auxiliary support mechanism, making the operation more convenient.

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Abstract

The utility model relates to the field of storage cabinet discloses an adjustable storage cabinet for vegetable processing, including storage cabinet body, support plate, auxiliary support mechanism, gas supply box and communicating piece, the support plate adjustable setting is inside the storage cabinet body, the auxiliary support mechanism passes through the support plate, and forms the support and the blocking area above the support plate, the communicating piece sets up inside the gas supply box, and cooperates with the position of the auxiliary support mechanism and communicates, the auxiliary support mechanism is located the area above the support plate and is equipped with the blast hole, and its blast hole sprays the gas, the utility model provides an adjustable storage cabinet for vegetable processing, through the blast pipe and set blast hole, the shunt box and the support plate can be separated, form air flow after gas supply, promote the vegetable air circulation, reduce humidity and microorganism breeding, improve the storage quality, and the blast pipe can form the stereoscopic support, reduce the vegetable extrusion injury, separate after the whole vegetables are convenient to pour out, improve the take vegetable efficiency.
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Description

Technical Field

[0001] This utility model relates to the field of storage cabinet technology, and more specifically, to an adjustable storage cabinet for vegetable processing. Background Technology

[0002] Vegetables are used as raw materials and are temporarily stored in a storage cabinet before processing. Then, a series of pre-processing operations are carried out on the vegetables, including washing, peeling, and cutting (some vegetables can be left unpeeled and uncut). Next, they are blanched. After completing the above pre-processing steps, they are processed into food using different methods such as physical, chemical and biological methods, so that the vegetables can be easily stored for a long time.

[0003] When storing root and leafy vegetables, they are often piled up to increase storage capacity. This results in a lack of air circulation in the middle, increasing the humidity of the vegetables. On the one hand, the vegetables' own moisture cannot evaporate, and on the other hand, moisture produced by respiration also accumulates inside the pile. This high humidity environment, combined with the increased temperature, provides favorable conditions for the growth of microorganisms. Bacteria, molds, and other microorganisms will multiply rapidly, decomposing the organic matter in the vegetables and reducing their storage quality. Utility Model Content

[0004] This utility model provides an adjustable storage cabinet for vegetable processing, which solves the technical problem of reduced storage quality of vegetables due to stacking.

[0005] This utility model provides an adjustable storage cabinet for vegetable processing, including a storage cabinet body, a support plate, an auxiliary support mechanism, an air supply box, and a connecting component;

[0006] The support plate is adjustablely installed inside the storage cabinet body, and the auxiliary support mechanism passes through the support plate and forms a support and blocking area above the support plate;

[0007] The connecting component is located inside the air supply box and is connected to the corresponding position of the auxiliary support mechanism.

[0008] The auxiliary support mechanism is provided with nozzles in the area above the support plate, and the nozzles spray gas.

[0009] As a further optimization of this utility model, slot frames are installed on both sides of the interior of the storage cabinet body, and the slot frames slide in conjunction with the support plate.

[0010] As a further optimization of this utility model, the auxiliary support mechanism includes a nozzle, a flow divider box, and an insert tube. Multiple nozzles are provided and communicate with the flow divider box. One end of the nozzle is closed and extends to the top of the support plate. The nozzle hole is opened on the nozzle. One end of the insert tube is connected to the flow divider box, and the other end is provided with an air inlet. The flow divider box and the support plate are detachable.

[0011] As a further optimization of this utility model, both the diversion box and the support plate are provided with sliding sleeves on the removed side, and the two sleeves are connected to a connecting plate.

[0012] As a further optimization of this utility model, the connecting member includes a spring and a blocking block. The diversion box has multiple connecting ports for the insertion tube to pass through. One end of the spring is connected to the inner wall of the air supply box, and the other end is connected to the blocking block, so that the blocking block presses against the connecting port.

[0013] As a further optimization of this utility model, a guide rod is installed inside the air supply box, and one end of the guide rod slides through the spring and the sealing block.

[0014] As a further optimization of this utility model, the support plate is provided with multiple holes.

[0015] As a further optimization of this utility model, the air supply box is connected to an air supply device to input air into the air supply box.

[0016] The beneficial effects of this utility model are as follows:

[0017] 1. The adjustable storage cabinet for vegetable processing described in this utility model has spray holes on the nozzle, and the distribution box and support plate are separable. When the air supply device inputs air into the air supply box, the air enters the distribution box through the connecting part, and then is sprayed out from the spray holes through the nozzle, forming an airflow above the support plate. The sprayed gas can promote air circulation around the vegetables, avoid the vegetables piling up and causing poor air circulation in the middle, thereby reducing the increase of humidity and the growth of microorganisms, effectively improving the storage quality of vegetables. At the same time, the structure of the detachable distribution box and support plate makes it easy to disassemble and maintain the auxiliary support mechanism, making the operation more convenient.

[0018] 2. The adjustable storage cabinet for vegetable processing described in this utility model is equipped with multiple nozzles, one end of which is closed and extends above a support plate, forming a three-dimensional support above the support plate. When vegetables are placed on the support plate, they can be divided into multiple areas. Through physical support, direct compression between vegetables is reduced, effectively avoiding physical damage such as local crushing and skin breakage caused by excessive stacking. It also prevents rotting in the middle of the stack due to excessive pressure, ensuring the integrity of the stored vegetables from a mechanical support perspective. At the same time, the nozzles can be separated from the support plate through a diversion box. The diversion box and the support plate are slidably connected by a shaft and a connecting plate. When it is necessary to pour out the vegetables, pushing the connecting plate drives the shaft to slide, which can quickly separate the diversion box from the support plate, allowing the nozzles to detach from the support plate. At this time, the support plate is no longer obstructed by the nozzles, and the user can directly tilt or flip the support plate to pour out the vegetables as a whole. This avoids the secondary damage caused by manually searching or grabbing vegetables layer by layer during traditional stacking storage, greatly improving the efficiency and convenience of vegetable retrieval. Attached Figure Description

[0019] Figure 1 This is a schematic diagram of the overall structure of an adjustable storage cabinet for vegetable processing proposed in this utility model.

[0020] Figure 2 This is a schematic diagram of the structure of the support plate in an adjustable storage cabinet for vegetable processing proposed in this utility model.

[0021] Figure 3 This is a side sectional view of an adjustable storage cabinet for vegetable processing proposed in this utility model.

[0022] Figure 4 for Figure 3 A partial structural diagram.

[0023] In the picture:

[0024] 1. Storage cabinet body;

[0025] 2. Support plate;

[0026] 3. Auxiliary support mechanism; 31. Nozzle; 301. Nozzle hole; 32. Flow divider box; 33. Insert pipe; 331. Air inlet; 34. Insert shaft; 35. Connecting plate;

[0027] 4. Gas supply box; 401. Connecting port;

[0028] 5. Connecting component; 51. Spring; 52. Sealing block; 53. Guide rod;

[0029] 6. Groove frame. Detailed Implementation

[0030] The subject matter described herein will now be discussed with reference to exemplary embodiments. It should be understood that these embodiments are discussed only to enable those skilled in the art to better understand and implement the subject matter described herein, and changes may be made to the function and arrangement of the elements discussed without departing from the scope of this specification. Various processes or components may be omitted, substituted, or added as needed in the examples. Furthermore, features described in some examples may be combined in other examples.

[0031] like Figures 1 to 4 As shown in the figure, an adjustable storage cabinet for vegetable processing according to an embodiment of the present utility model includes a storage cabinet body 1, a support plate 2, an auxiliary support mechanism 3, an air supply box 4, and a connecting piece 5;

[0032] The support plate 2 is adjustablely installed inside the storage cabinet body 1, and the auxiliary support mechanism 3 passes through the support plate 2 and forms a support and blocking area above the support plate 2.

[0033] The connecting piece 5 is located inside the air supply box 4 and is connected to the corresponding position of the auxiliary support mechanism 3.

[0034] The auxiliary support mechanism 3 is provided with a nozzle 301 in the area above the support plate 2, and the nozzle 301 ejects gas.

[0035] The support plate 2 has multiple holes.

[0036] Multiple holes on the support plate 2 allow air to circulate above and below it. When gas is ejected from the nozzle 301 of the auxiliary support mechanism 3, the gas flows above the support plate 2, and some of the gas can flow to the bottom of the support plate 2 through the holes. At the same time, the air below the support plate 2 can also rise to the top through the holes, thereby enhancing the overall air circulation inside the storage cabinet body 1. The enhanced air circulation helps to remove the heat and moisture generated by the respiration of vegetables, reduce the humidity around the vegetables, reduce the chance of microbial growth, and further improve the storage quality of vegetables.

[0037] Air supply box 4 is connected to an air supply device to supply air to air supply box 4.

[0038] The gas supply device connected to the gas supply box 4 inputs air into the gas supply box 4, providing a power source for the entire gas flow. The input air enters the auxiliary support mechanism 3 through the connecting part 5 in the gas supply box 4, and is then sprayed out through the nozzle 301 to regulate the vegetable storage environment.

[0039] The storage cabinet body 1 serves as the overall frame, providing the installation base for other components. The support plate 2 is adjustable inside the storage cabinet body 1, allowing for position adjustments based on the height requirements of the stored vegetables, thus flexibly changing the storage space size. The auxiliary support mechanism 3 passes through the support plate 2, forming a support and blocking area above it. The support area can hold vegetables, while the blocking area provides some protection. The connecting piece 5 is located inside the gas supply box 4, cooperating with the auxiliary support mechanism 3 at a corresponding position, allowing gas from the gas supply box 4 to enter the auxiliary support mechanism 3 through the connecting piece 5. The auxiliary support mechanism 3 is located on the support plate 2. The nozzle 301 in the upper area can spray gas, which can promote air circulation around the vegetables, prevent the vegetables from piling up and causing poor air circulation in the middle, reduce humidity and microbial growth, and thus improve the quality of vegetable storage. When using, first adjust the position of the support plate 2 in the storage cabinet body 1 according to the height of the vegetables, place the vegetables in the support area of ​​the auxiliary support mechanism 3, and then the gas enters the auxiliary support mechanism 3 from the gas supply box 4 through the connecting piece 5, and is then sprayed out through the nozzle 301, forming an air flow environment above the support plate 2, which circulates and regulates the air around the vegetables to maintain good storage conditions.

[0040] In an optional embodiment, slot frames 6 are installed on both sides of the interior of the storage cabinet body 1, and the slot frames 6 are slidably engaged with the support plate 2.

[0041] The slot frames 6 installed on both sides inside the storage cabinet body 1 slide in cooperation with the support plate 2. The slot frames 6 provide guidance and support for the sliding of the support plate 2, so that the support plate 2 can move inside the storage cabinet body 1. Through this sliding cooperation, users can flexibly adjust the position of the support plate 2 according to the actual quantity and height of the vegetables to be stored, thereby making reasonable use of the storage space and improving the convenience and space utilization of the storage cabinet.

[0042] When the position of the support plate 2 needs to be adjusted, the user selects the position of the slot frame 6, pushes the support plate 2 in, and makes it slide within the slot frame 6 to provide space of the appropriate height for storing vegetables.

[0043] In an optional embodiment, the auxiliary support mechanism 3 includes a nozzle 31, a flow divider box 32, and a tube 33. The nozzle 31 is provided with multiple nozzles and communicates with the flow divider box 32. One end of the nozzle 31 is closed and extends to the top of the support plate 2. The nozzle hole 301 is opened on the nozzle 31. One end of the tube 33 is communicated with the flow divider box 32, and the other end is provided with an air inlet 331. The flow divider box 32 and the support plate 2 can be separated.

[0044] Gas enters through the air inlet 331 of the insertion tube 33, reaches the distribution box 32 through the insertion tube 33, and is then distributed by the distribution box 32 to each nozzle 31. Finally, it is ejected from the nozzle hole 301 on the nozzle 31. The multiple nozzles 31 and nozzle holes 301 can distribute the gas above the support plate 2, inputting air around the vegetables. Due to the setting of multiple insertion tubes 33, a support area is formed, avoiding excessive accumulation and compression. The distribution box 32 can be separated from the support plate 2, which is convenient for disassembling and maintaining the auxiliary support mechanism 3. When cleaning or maintenance is required, the distribution box 32 can be separated from the support plate 2, making the operation more convenient. At the same time, the nozzles 31 can form a blocking area, so that when the entire support plate 2 is removed, the insertion tubes 33 can be separated from the support plate 2, which facilitates the pouring out of the vegetables on the support plate 2.

[0045] In an optional embodiment, both the diversion box 32 and the support plate 2 are provided with slidingly sleeved insert shafts 34 on their removed sides, and the two insert shafts 34 are connected to a connecting plate 35.

[0046] The diverter box 32 and the support plate 2 are provided with insertion shafts 34 on the removed side. The two insertion shafts 34 are connected by a connecting plate 35. The insertion shafts 34 are slidably sleeved with the diverter box 32 and the support plate 2. The connecting plate 35 connects the two insertion shafts 34 into a whole. When it is necessary to separate or install the diverter box 32 from the support plate 2, push the connecting plate 35. The connecting plate 35 drives the insertion shafts 34 to slide in the diverter box 32 and the support plate 2, thereby realizing the relative movement of the diverter box 32 and the support plate 2. This structure makes the separation and installation of the diverter box 32 from the support plate 2 more convenient.

[0047] By pushing or pulling the connecting plate 35, the insertion shaft 34 is driven to slide, thereby separating or connecting the diversion box 32 and the support plate 2, which facilitates the operation of the auxiliary support mechanism 3.

[0048] In an optional embodiment, the connecting member 5 includes a spring 51 and a blocking block 52. The diversion box 32 has a plurality of connecting ports 401 for the insertion tube 33 to pass through. One end of the spring 51 is connected to the inner wall of the air supply box 4, and the other end is connected to the blocking block 52, so that the blocking block 52 presses against the connecting port 401.

[0049] When the insertion tube 33 is inserted into the connection port 401, it pushes the sealing block 52 to compress the spring 51, causing the sealing block 52 to leave the connection port 401. At this time, the connection port 401 is open, and gas can flow through the connection port 401 between the gas supply box 4 and the auxiliary support mechanism 3. When the insertion tube 33 is pulled out, the spring 51 returns to its original state, causing the sealing block 52 to press against the connection port 401 again, sealing the connection port 401 and preventing gas leakage. This achieves controllability of the connection between the gas supply box 4 and the auxiliary support mechanism 3, and ensures the stability and sealing of gas flow.

[0050] Furthermore, a guide rod 53 is installed inside the air supply box 4, and one end of the guide rod 53 slides through the spring 51 and the sealing block 52.

[0051] The guide rod 53 provides guidance for the movement of the sealing block 52, ensuring that the sealing block 52 can move smoothly along the direction of the guide rod 53 under the action of the spring 51, avoiding the sealing block 52 from deviating or tilting during the movement, thereby ensuring that the sealing block 52 can accurately press against the communication port 401.

[0052] The embodiments of the present utility model have been described above, but the present embodiments are not limited to the specific implementation methods described above. The specific implementation methods described above are merely illustrative and not restrictive. Those skilled in the art can make many other forms under the guidance of the present embodiments, all of which are within the protection scope of the present embodiments.

Claims

1. An adjustable storage cabinet for vegetable processing, characterized in that, It includes the storage cabinet body (1), support plate (2), auxiliary support mechanism (3), air supply box (4) and connecting parts (5); The support plate (2) is adjustablely installed inside the storage cabinet body (1), and the auxiliary support mechanism (3) passes through the support plate (2) and forms a support and blocking area above the support plate (2); The connecting piece (5) is located inside the air supply box (4) and is connected to the corresponding position of the auxiliary support mechanism (3); The auxiliary support mechanism (3) is provided with a nozzle (301) in the area above the support plate (2), and the nozzle (301) sprays out gas.

2. The adjustable storage cabinet for vegetable processing according to claim 1, characterized in that: The storage cabinet body (1) has slot frames (6) installed on both sides inside, and the slot frames (6) are slidably engaged with the support plate (2).

3. The adjustable storage cabinet for vegetable processing according to claim 1, characterized in that: The auxiliary support mechanism (3) includes a nozzle (31), a flow divider box (32) and a tube (33). The nozzle (31) is provided in multiple ways and is connected to the flow divider box (32). One end of the nozzle (31) is closed and extends to the top of the support plate (2). The nozzle hole (301) is opened on the nozzle (31). One end of the tube (33) is connected to the flow divider box (32) and the other end is provided with an air inlet (331). The flow divider box (32) and the support plate (2) can be separated.

4. The adjustable storage cabinet for vegetable processing according to claim 3, characterized in that: Both the diversion box (32) and the support plate (2) are provided with sliding sleeves (34) on the removed side, and the two sleeves (34) are connected to the connecting plate (35).

5. An adjustable storage cabinet for vegetable processing according to claim 3, characterized in that: The connecting component (5) includes a spring (51) and a blocking block (52). The diversion box (32) has multiple connecting ports (401) for the insertion tube (33) to pass through. One end of the spring (51) is connected to the inner wall of the air supply box (4), and the other end is connected to the blocking block (52) so that the blocking block (52) presses against the connecting port (401).

6. The adjustable storage cabinet for vegetable processing according to claim 5, characterized in that: A guide rod (53) is installed inside the air supply box (4), and one end of the guide rod (53) slides through the spring (51) and the sealing block (52).

7. An adjustable storage cabinet for vegetable processing according to any one of claims 1-6, characterized in that: The support plate (2) has multiple holes.

8. An adjustable storage cabinet for vegetable processing according to claim 7, characterized in that: The air supply box (4) is connected to an air supply device to supply air to the air supply box (4).