Quick-frozen food transfer device
By designing a quick-frozen food transport device and using low-temperature storage rooms and ice refrigeration technology, the problem of frozen food defrozen during the transfer process is solved, ensuring stable food quality and safe and efficient transportation.
Patent Information
- Application Number
- CN202421893905.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-07
- Publication Date
- 2025-06-20
- Estimated Expiration
- 2034-08-07
AI Technical Summary
Existing frozen foods are prone to defrosting during transportation, resulting in a decline in food quality.
A quick-frozen food transport device is designed, including a transport mechanism and a low-temperature storage room. By sealing the storage dish and putting it in a low-temperature storage room, and putting ice cubes in the storage room, low-temperature refrigeration of quick-frozen foods can be achieved to avoid rapid thawing.
It effectively avoids the rapid thawing of frozen food during the transportation process, ensures the stability of food quality, and achieves the safe and efficient transportation of food.
Smart Images

Figure CN223001966U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of quick-frozen food transportation, in particular to a quick-frozen food transfer device. Background Art
[0002] Quick-frozen food is a low-temperature product made from fresh raw materials, properly processed and rapidly frozen. During the production process of quick-frozen food, it is often necessary to transport the quick-frozen food in batches. However, during the transportation process of existing quick-frozen food, the quick-frozen food often thaws, resulting in a decrease in the quality of the quick-frozen food. Utility Model Content
[0003] In order to solve the technical problem that the quick-frozen food often thaws during the transportation process, which leads to the deterioration of the quality of the quick-frozen food, the utility model provides a quick-frozen food transportation device.
[0004] The utility model is implemented by the following technical scheme: a quick-frozen food transfer device, comprising a device body, the device body comprising a transfer mechanism and a low-temperature storage chamber, the low-temperature storage chamber is placed above the transfer mechanism, and a storage mechanism is placed inside the low-temperature storage chamber;
[0005] The storage institutions include:
[0006] A storage dish, the storage dish is placed inside the low-temperature storage chamber;
[0007] An upper dish cover, which is arranged on the top of the storage dish;
[0008] An upper fixing block, the upper fixing block is mounted on the surface of the upper dish cover;
[0009] A lower fixing block, the lower fixing block is installed on the surface of the storage dish;
[0010] A connecting handle is connected below the connecting handle, the limiting rod passes through the upper fixed block and the lower fixed block, and a rotating shaft rod is connected below the limiting rod, and the rotating shaft rod passes through the surface of the lower fixed block.
[0011] The staff rotates the connecting handle. The connecting handle rotates on its own axis, releases the limit with the upper fixed block, and then pulls the connecting handle. The rotating shaft rod connected to the bottom end of the connecting handle is pulled synchronously. The rotating shaft rod then deflects inside the lower fixed block, and the limiting rod releases the limit on the upper fixed block and the lower fixed block, so that the upper dish cover can be opened. The staff places the frozen food to be transported, such as fish and other foods, into the storage dish. Then, the above process is operated in reverse to firmly seal the storage dish to ensure the storage dish is tightly sealed. The sealed storage dish is then placed inside the low-temperature storage room. Then, ice cubes are placed in the cavity of the low-temperature storage room to refrigerate the food in the storage dish to prevent the frozen food from thawing quickly.
[0012] As a further improvement of the above solution, the transfer mechanism includes:
[0013] Push rod;
[0014] Moving platform, the moving platform is connected to the bottom end of the push rod; universal wheels, the universal wheels are installed below the moving platform, and the universal wheels drive the transfer mechanism to move; mounting plate, the mounting plate is installed inside the moving platform; electric push rod, the electric push rod is connected to the mounting plate; receiving frame, the receiving frame is installed at the top of the electric push rod; first shaft rod, the first shaft rod is connected to the receiving frame; second shaft rod, the second shaft rod is installed in a cross shape with the first shaft rod, and a deflection axis is provided at the intersection of the first shaft rod and the second shaft rod; sliding block, the sliding block is arranged at the bottom end of the second shaft rod; sliding groove, the sliding block is clamped inside the sliding groove, and the sliding block slides inside the sliding groove; loading platform, the loading platform is connected to the top ends of the first shaft rod and the second shaft rod; sliding sleeve, the sliding sleeve is installed above the loading platform; sliding rod, the sliding rod passes through the sliding sleeve, and block-shaped fixtures are installed at both ends of the sliding rod, and a receiving platform is connected above the block-shaped fixtures.
[0015] The staff pushes the push rod, and the moving platform connected to the bottom end of the push rod is also pushed accordingly. The moving platform then drives the universal wheels connected to its bottom end to move synchronously, and the universal wheels thus drive the transfer mechanism to move to achieve transfer. At the same time, when it is necessary to load and unload frozen food, through the operation of the electric push rod, the electric push rod pushes the receiving frame connected to it outward, and the receiving frame thus drives the first shaft rod connected to its outside to deflect. Through the cooperation with the deflection axis, the second shaft rod also deflects synchronously. The sliding block connected to the bottom end of the second shaft rod slides inside the sliding groove synchronously, and the first shaft rod and the second shaft rod thus drive the loading platform connected to their top to adjust the height, so as to control the height of the low-temperature storage room and facilitate the taking and placing of the storage dish.
[0016] As a further improvement of the above solution, the low-temperature storage room is in a rectangular hollow shape. The storage dish is placed inside the low-temperature storage room, and the storage dish forms a cavity in the low-temperature storage room. Ice cubes are placed in the cavity for refrigeration.
[0017] Compared with the prior art, the beneficial effects of the present utility model are as follows:
[0018] 1. For the quick-frozen food to be transported, such as fish and other foods, the present utility model places them into the storage dish, and firmly seals the storage dish to ensure its tightness. The sealed storage dish is then placed inside the low-temperature storage room, and ice cubes are placed in the cavity of the low-temperature storage room, thereby refrigerating the food in the storage dish at a low temperature to prevent the quick-frozen food from thawing quickly.
[0019] 2. The present utility model synchronously slides the sliding block connected to the bottom end of the second shaft rod inside the sliding groove, and the first shaft rod and the second shaft rod drive the loading platform connected above them to adjust the height, thereby controlling the height of the low-temperature storage room and facilitating the taking and placing of the storage dish. BRIEF DESCRIPTION OF THE DRAWINGS
[0020] Figure 1 is a schematic diagram of the overall structure of the present utility model;
[0021] Figure 2 is of the present utility model Figure 1 in a disassembled state schematic diagram of the structure;
[0022] Figure 3 is a schematic diagram of the connection structure of the transfer mechanism of the present utility model;
[0023] Figure 4 is a schematic diagram of the connection structure of the storage mechanism of the present utility model.
[0024] MAIN SYMBOL DESCRIPTION:
[0025] 1. Device main body; 2. Transfer mechanism; 21. Push rod; 22. Moving platform; 23. Universal wheel; 24. Mounting plate; 25. Electric push rod; 26. Bearing frame; 27. First shaft rod; 28. Second shaft rod; 29. Deflection axis; 210. Sliding block; 211. Sliding groove; 212. Loading platform; 213. Sliding sleeve; 214. Slide bar; 215. Bearing platform; 3. Low-temperature storage room; 4. Storage mechanism; 41. Storage dish; 42. Upper dish cover; 43. Upper fixing block; 44. Lower fixing block; 45. Connection handle; 46. Limiting rod; 47. Rotating axis rod. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0026] Next, in combination with the drawings and specific embodiments, the present utility model will be further described. It should be noted that, on the premise of no conflict, any combination of the following described embodiments or technical features can form a new embodiment.
[0027] Embodiment 1:
[0028] Please combine Figures 1-4, in this embodiment, a quick-frozen food transfer device is proposed, which includes a device main body 1. The device main body 1 includes a transfer mechanism 2 and a low-temperature storage chamber 3. The low-temperature storage chamber 3 is placed above the transfer mechanism 2, and a storage mechanism 4 is placed inside the low-temperature storage chamber 3;
[0029] The transfer mechanism 2 includes:
[0030] A push rod 21;
[0031] A moving platform 22, which is connected to the bottom end of the push rod 21;
[0032] Universal wheels 23, which are installed below the moving platform 22, and the universal wheels 23 drive the transfer mechanism 2 to move;
[0033] A mounting plate 24, which is installed inside the moving platform 22;
[0034] An electric push rod 25, which is connected to the mounting plate 24;
[0035] A receiving frame 26, which is installed at the top end of the electric push rod 25;
[0036] A first shaft rod 27, which is connected to the receiving frame 26;
[0037] A second shaft rod 28, which is installed in a cross shape with the first shaft rod 27, and a deflection axis 29 is provided at the intersection of the first shaft rod 27 and the second shaft rod 28;
[0038] A sliding block 210, which is arranged at the bottom end of the second shaft rod 28;
[0039] A sliding groove 211, the sliding block 210 is clamped inside the sliding groove 211, and the sliding block 210 slides inside the sliding groove 211;
[0040] A loading platform 212, which is connected to the top ends of the first shaft rod 27 and the second shaft rod 28;
[0041] A sliding sleeve 213, which is installed above the loading platform 212;
[0042] A sliding rod 214, which passes through the sliding sleeve 213, and block-shaped fixings are installed at both ends of the sliding rod 214, and a receiving platform 215 is connected above the block-shaped fixings.
[0043] By pushing the push rod 21, the moving table 22 connected to the bottom end of the push rod 21 is also pushed accordingly. The moving table 22 then drives the universal wheels 23 connected to its bottom end to move synchronously. The universal wheels 23 thus drive the transfer mechanism 2 to move, realizing the transfer. At the same time, when it is necessary to load and unload frozen foods, through the operation of the electric push rod 25, the electric push rod 25 pushes the receiving frame 26 connected to it outward. The receiving frame 26 then drives the first shaft rod 27 connected to its outside to deflect. Through the cooperation with the deflection axis 29, the second shaft rod 28 also deflects synchronously. The sliding block 210 connected to the bottom end of the second shaft rod 28 slides inside the sliding groove 211 synchronously. The first shaft rod 27 and the second shaft rod 28 thus drive the loading platform 212 connected above them to adjust the height, thereby controlling the height of the low-temperature storage chamber 3 and facilitating the taking and placing of the storage dish 41.
[0044] Among them, the storage mechanism 4 includes:
[0045] The storage dish 41 is placed inside the low-temperature storage chamber 3. The low-temperature storage chamber 3 is in a rectangular hollow shape. The storage dish 41 is placed inside the low-temperature storage chamber 3, and the storage dish 41 forms a cavity in the low-temperature storage chamber 3, and ice cubes are placed in the cavity.
[0046] The upper dish cover 42 is arranged at the top end of the storage dish 41;
[0047] The upper fixing block 43 is installed on the surface of the upper dish cover 42;
[0048] The lower fixing block 44 is installed on the surface of the storage dish 41;
[0049] The connecting handle 45 has a limiting rod 46 connected below it. The limiting rod 46 passes through the upper fixing block 43 and the lower fixing block 44. A rotating central axis rod 47 is connected below the limiting rod 46, and the rotating central axis rod 47 passes through the surface of the lower fixing block 44.
[0050] The staff rotates the connecting handle 45, and the connecting handle 45 rotates itself, releasing the limit with the upper fixing block 43. Then, the connecting handle 45 is pulled. The rotating central axis rod 47 connected to the bottom end of the connecting handle 45 is pulled synchronously. The rotating central axis rod 47 then deflects inside the lower fixing block 44, and the limiting rod 46 releases the limit on the upper fixing block 43 and the lower fixing block 44, so that the upper dish cover 42 can be opened. The staff places the frozen foods to be transferred, such as fish and other foods, into the storage dish 41. Subsequently, the above process is reversed to firmly seal the storage dish 41 to ensure the tightness of the seal of the storage dish 41. The sealed storage dish 41 is then placed inside the low-temperature storage chamber 3. Then, ice cubes are placed in the cavity of the low-temperature storage chamber 3 to refrigerate the food in the storage dish 41 at a low temperature and prevent the frozen foods from thawing quickly.
[0051] Specific implementation steps of the present utility model:
[0052] During short-distance transportation, the staff rotates the connecting handle 45. The connecting handle 45 rotates itself, releases the limit with the upper fixing block 43, and then pulls the connecting handle 45. The rotating shaft rod 47 connected to the bottom end of the connecting handle 45 is pulled synchronously. The rotating shaft rod 47 then deflects inside the lower fixing block 44, and the limiting rod 46 releases the limit on the upper fixing block 43 and the lower fixing block 44, so that the upper dish cover 42 can be opened. The staff places frozen foods to be transported, such as fish and other foods, into the storage dish 41, and then operates the above process in reverse to firmly seal the storage dish 41 to ensure the tightness of the seal of the storage dish 41;
[0053] The sealed storage dish 41 is then placed inside the low-temperature storage chamber 3. Then, ice cubes are placed in the cavity of the low-temperature storage chamber 3 to refrigerate the food in the storage dish 41 at a low temperature and prevent the frozen foods from thawing quickly;
[0054] The staff pushes the push rod 21. The moving platform 22 connected to the bottom end of the push rod 21 is also pushed accordingly. The moving platform 22 then drives the universal wheels 23 connected to its bottom end to move synchronously. The universal wheels 23 thus drive the transportation mechanism 2 to move to achieve transportation. At the same time, when it is necessary to load and unload frozen foods, through the operation of the electric push rod 25, the electric push rod 25 pushes the connecting support 26 connected to it outward. The connecting support 26 thus drives the first shaft rod 27 connected to its outside to deflect. Through the cooperation with the deflection axis 29, the second shaft rod 28 also deflects synchronously. The sliding block 210 connected to the bottom end of the second shaft rod 28 slides inside the sliding groove 211 synchronously. The first shaft rod 27 and the second shaft rod 28 thus drive the loading platform 212 connected to their upper sides to adjust the height, so as to control the height of the low-temperature storage chamber 3 and facilitate the taking and placing of the storage dish 41.
[0055] The above-mentioned implementation manners are only the preferred implementation manners of the present utility model and cannot be used to limit the scope of protection of the present utility model. Any non-substantial changes and substitutions made by those skilled in the art based on the present utility model fall within the scope of protection required by the present utility model.
Claims
1. A quick-frozen food transport device, comprising a device body, characterized in that: The device body includes a transfer mechanism and a low-temperature storage chamber, wherein the low-temperature storage chamber is placed above the transfer mechanism, and a storage mechanism is placed inside the low-temperature storage chamber; Wherein, the storage mechanism comprises: A storage vessel, the storage vessel being placed inside the low-temperature storage chamber; An upper dish cover, the upper dish cover is arranged on the top of the storage dish; An upper fixing block, the upper fixing block being mounted on the surface of the upper dish cover; A lower fixing block, the lower fixing block being mounted on the surface of the storage dish; A connecting handle is connected below the connecting handle, the limiting rod passes through the upper fixed block and the lower fixed block, and a rotating shaft rod is connected below the limiting rod, and the rotating shaft rod passes through the surface of the lower fixed block.
2. A quick-frozen food transport device as claimed in claim 1, characterized in that: The transfer mechanism comprises: Putting; A sports platform connected to the bottom end of the push rod; A universal wheel, which is installed below the moving platform and drives the transfer mechanism to move; A mounting plate, the mounting plate being mounted on the inner side of the sports table; An electric push rod, the electric push rod is connected to the mounting plate; A receiving frame, the receiving frame is installed on the top end of the electric push rod; A first shaft rod, the first shaft rod is connected to the receiving frame; A second shaft rod, the second shaft rod and the first shaft rod are installed in a cross shape, and a deflection axis is provided at the intersection of the first shaft rod and the second shaft rod; A sliding block, the sliding block is arranged at the bottom end of the second shaft; The sliding groove is provided with the sliding block which is clamped on the inner side of the sliding groove and slides on the inner side of the sliding groove.
3. A quick-frozen food transport device as claimed in claim 2, characterized in that: The transfer mechanism also includes: A loading platform, the loading platform is connected to the top ends of the first shaft and the second shaft; A sliding sleeve, the sliding sleeve is installed above the stage; A sliding rod is passed through the sliding sleeve, and block-shaped fixing objects are installed at both ends of the sliding rod, and a receiving platform is connected above the block-shaped fixing objects.
4. A quick-frozen food transport device as claimed in claim 1, characterized in that: The low-temperature storage chamber is in a rectangular hollow shape, and the storage dish is placed inside the low-temperature storage chamber. The storage dish forms a cavity in the low-temperature storage chamber, and ice cubes are placed in the cavity.