Intelligent agricultural product cold storage device for e-commerce

By adopting staggered placement cabinets and a water collection system in a cold storage device for agricultural products, the problem of damage to agricultural products and ice cubes in the same cavity is solved, and the protection of agricultural products and the reuse of water resources are achieved.

CN120646360AInactive Publication Date: 2025-09-16SHENZHEN QUANXIN TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202510899926.7
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-07-01
Publication Date
2025-09-16
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

In existing agricultural product cold storage devices, agricultural products are easily damaged when placed in the same cavity with ice cubes, and water generated by melting ice cubes can soak and spoil the agricultural products.

Method used

An intelligent refrigerated storage device for agricultural products for e-commerce has been designed. It uses a staggered first and second placement cabinets. Agricultural products are placed in the second placement cabinet, and ice cubes are placed in the first placement cabinet. Melted water is collected through reserved holes and flows into a water collection tank to avoid direct contact with agricultural products.

Benefits of technology

Effectively protect agricultural products from ice damage and reuse water resources through the water collection tank to reduce waste.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses an intelligent e-commerce agricultural product cold storage device, and relates to the technical field of agricultural product cold storage, the intelligent e-commerce agricultural product cold storage device comprises a device main body, first placing cabinets and second placing cabinets, the device main body is internally and movably provided with multiple groups of first placing cabinets and multiple groups of second placing cabinets; the multiple sets of first containing cabinets and the multiple sets of second containing cabinets are arranged in a staggered mode, multiple sets of containing bins are arranged at the upper ends of the multiple sets of second containing cabinets, and the multiple sets of containing bins are different in size. According to the agricultural product storage device, the first storage cabinets, the second storage cabinets and the storage bins are arranged, agricultural products are placed in the multiple storage bins in the multiple second storage cabinets correspondingly, the agricultural products are placed in the storage bins of different sizes according to the different sizes of the agricultural products, and ice blocks are placed in the multiple first storage cabinets; the ice blocks in the first placing cabinets are used for refrigerating the agricultural products in the second placing cabinets, so that direct contact between the ice blocks and the agricultural products is avoided, and the agricultural products are protected.
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Description

Technical Field

[0001] The present invention relates to the technical field of agricultural product refrigeration storage, and in particular to an intelligent agricultural product refrigeration storage device for e-commerce. Background Art

[0002] Rural e-commerce, through the network platform, connects various resources serving the rural areas, expands rural information service business and service areas, and makes it an information service station throughout the townships, towns and villages. As the physical terminal of the rural e-commerce platform, it is directly rooted in the countryside, making farmers the biggest beneficiaries of the platform. The rural e-commerce platform cooperates with dense rural chain outlets, uses digital and information-based means, through intensive management, market-oriented operations, and systematic cross-regional and cross-industry alliances to build a compact and orderly business alliance, reduce rural business costs, expand rural business areas, make farmers the biggest beneficiaries of the platform, and enable merchants to obtain new profit growth.

[0003] Rural e-commerce sales of agricultural products mainly provide services in four modules, namely warehousing, quality inspection, processing and packaging, and distribution. At present, the distribution model requires trunk transportation to reach the cold storage, and then transportation again before reaching the distribution center. Therefore, it must be delivered three times before it can be delivered to retailers or distributors. Too many transportation links will lead to an increase in cold chain logistics costs. In addition, in order to ensure the quality of fresh products, special cold chain transportation tools are used in the last mile of terminal distribution, which has a high cost investment. In order to meet the needs of different consumers in terminal distribution, small insulated foam boxes with built-in refrigerants (ice cubes) are used. Compared with large insulated boxes, these refrigerants (ice cubes) cannot be recycled, resulting in waste.

[0004] In the prior art, agricultural product refrigeration storage devices are usually used in the last profitable terminal distribution of agricultural products. Most of the existing agricultural product refrigeration storage devices are composed of an insulated foam box and an upper cover. Ice cubes are generally added to the agricultural product refrigeration storage device to extend the shelf life. During the transportation and storage of agricultural products, since the agricultural products and ice cubes are in the same cavity and mixed together, the ice cubes will squeeze and damage the fragile surfaces of the agricultural products. Even when the ice cubes slowly melt over time, the meltwater will soak the agricultural products, and the agricultural products are prone to problems such as taste change, corruption and deterioration. Summary of the Invention

[0005] Based on this, the purpose of the present invention is to provide an intelligent agricultural product refrigeration storage device for e-commerce to solve the technical problems in the above-mentioned background technology.

[0006] To achieve the above objectives, the present invention provides the following technical solution: an intelligent refrigerated storage device for agricultural products for e-commerce, comprising a device body, a first storage cabinet, and a second storage cabinet, wherein multiple sets of the first storage cabinets and multiple sets of the second storage cabinets are movably installed inside the device body, and the multiple sets of the first storage cabinets and multiple sets of the second storage cabinets are staggered; The device body is symmetrically provided with doors at one end, and both sets of doors are provided with multiple sets of corresponding slideways. The inner wall of the device body is provided with multiple sets of slide grooves. The outer walls of the multiple sets of first placement cabinets and the multiple sets of second placement cabinets are symmetrically provided with support plates, and the multiple sets of support plates are movably connected to the multiple sets of slideways and the multiple sets of slide grooves respectively. The upper ends of the multiple sets of second placement cabinets are provided with multiple sets of placement bins, and the multiple sets of placement bins are of different sizes. Multiple groups of the first placement cabinets are provided with multiple groups of first reserved holes, multiple groups of the second placement cabinets are provided with collection troughs on the upper ends, and the multiple groups of collection troughs correspond to the multiple groups of first reserved holes respectively, and multiple groups of the collection troughs are provided with multiple groups of second reserved holes at both ends. A water collecting tank is installed inside the main body of the device, and the water collecting tank is connected to the second reserved holes at the end of a group of second placement cabinets through a water pipe. The water outlet of the water collecting tank is installed with a water outlet pipe, and one end of the water outlet pipe extends to the outer wall of the main body of the device.

[0007] By adopting the above technical solution, the problem of damage to agricultural products and ice cubes when placed in the same cavity is solved. Agricultural products are placed in multiple groups of placement bins in multiple groups of second placement cabinets respectively, and are placed in placement bins of different sizes according to the different sizes of agricultural products. Ice cubes are placed in multiple groups of first placement cabinets. The ice cubes in the multiple groups of first placement cabinets respectively refrigerate the agricultural products in the multiple groups of second placement cabinets. If the ice cubes melt, the melted water enters the collection tank of the next layer through the multiple groups of first reserved holes, and flows into the first placement cabinet of the next layer through the multiple groups of second reserved holes. The water flows to the first placement cabinet or the second placement cabinet of the next layer in turn, and finally flows into the water collection tank through the water pipe, thereby avoiding direct contact between the ice cubes and the agricultural products and protecting the agricultural products.

[0008] The present invention is further configured such that a plurality of groups of second transmission shafts are movably installed inside the main body of the device, and a synchronous belt is provided between the plurality of groups of second transmission shafts. A driving motor is installed inside the main body of the device, a second driving shaft is installed at the output end of the driving motor, and the second driving shaft is connected to a group of second transmission shafts through a synchronous belt, and a groove is provided at one end of the plurality of groups of second transmission shafts.

[0009] By adopting the above technical solution, the drive motor is started, driving the second drive shaft to rotate, thereby driving a group of second transmission shafts to rotate, and then driving multiple groups of second transmission shafts to rotate.

[0010] The present invention is further configured such that multiple sets of drive blocks are movably installed inside the device body, and one end of the multiple sets of drive blocks extends to the outer wall of the device body, the bottom ends of the multiple sets of drive blocks are all installed with a first drive shaft, and the bottom ends of the multiple sets of first drive shafts are all provided with a damping shaft.

[0011] By adopting the above technical solution, the delivery personnel pushes the driving block to rotate, driving the first driving shaft to rotate. The setting of the damping shaft prevents the driving block from rotating during the movement of the device body.

[0012] The present invention is further configured such that a plurality of first transmission shafts are movably installed inside the main body of the device, and the plurality of first transmission shafts are respectively connected to the plurality of first drive shafts through synchronous belts; a plurality of connecting cylinders are movably installed inside the main body of the device, and the plurality of connecting cylinders are respectively connected to the plurality of first transmission shafts through synchronous belts.

[0013] By adopting the above technical solution, the first driving shaft rotates, driving the first transmission shaft to rotate, thereby driving the linkage cylinder to rotate.

[0014] The present invention is further configured such that telescopic columns are movably installed inside the multiple groups of linkage cylinders, and the outer walls of the multiple groups of telescopic columns are respectively threadedly connected to the inner walls of the multiple groups of linkage cylinders, mounting rings are installed on the upper ends of the multiple groups of telescopic columns, movable blocks are movably installed inside the multiple groups of mounting rings, and connecting blocks are installed at both ends of the multiple groups of movable blocks.

[0015] By adopting the above technical solution, the linkage cylinder rotates, driving the telescopic column to move, thereby driving the installation ring to move, and then driving the movable block to move, and then driving the connecting block to move.

[0016] The present invention is further configured such that a plurality of first linkage shafts are movably installed inside the main body of the device, and a synchronous belt is provided between the plurality of first linkage shafts, the plurality of first linkage shafts are respectively threadedly connected to the inner walls of the plurality of first placement cabinets and the inner walls of the plurality of second placement cabinets, a groove is provided at one end of the plurality of first linkage shafts, and the plurality of connecting blocks are respectively movably connected to the grooves at the ends of the plurality of second transmission shafts and the grooves at the ends of the plurality of first linkage shafts.

[0017] By adopting the above technical solution, two groups of connecting blocks and movable blocks connect a group of second transmission shafts with a group of first linkage shafts, so that a group of first linkage shafts rotates, and multiple groups of first linkage shafts are connected by synchronous belts respectively, so that two groups of first linkage shafts rotate, and the outer wall of the first linkage shaft is threadedly connected to the inner wall of the second placement cabinet, and the first placement cabinet or the second placement cabinet is displaced.

[0018] The present invention is further configured such that a plurality of groups of support plates are provided with reserved grooves at the bottom ends, a plurality of groups of support plates are movably installed with limit shafts inside, a plurality of groups of limit shafts extending to one end of the reserved grooves are installed with limit gears, a plurality of groups of slide grooves are provided with tooth plates on the inner walls, and a plurality of groups of tooth plates are respectively meshed and connected with a plurality of groups of limit gears.

[0019] By adopting the above technical solution, the second placement plate is displaced, driving the limit gear to be displaced, thereby driving the limit gear to rotate, and further driving the limit shaft to rotate.

[0020] The present invention is further configured such that multiple groups of the limiting shafts extend to multiple groups of second placement cabinets and are each installed with a limiting bevel gear at one end thereof, multiple groups of the second placement cabinets are each symmetrically installed with a third transmission shaft, multiple groups of the third transmission shafts are each installed with a third transmission bevel gear at both ends thereof, and multiple groups of the third transmission bevel gears are respectively meshed and connected with multiple groups of limiting bevel gears.

[0021] By adopting the above technical solution, the limiting shaft rotates, driving the limiting bevel gear to rotate, thereby driving the third transmission bevel gear to rotate, and then driving the third transmission shaft to rotate, thereby driving another set of third transmission bevel gears to rotate.

[0022] The present invention is further configured such that multiple groups of the second placement cabinets are movably equipped with movable shafts, one end of each group of movable shafts is equipped with movable bevel gears, and the multiple groups of movable bevel gears are respectively engaged with the remaining multiple groups of third transmission bevel gears.

[0023] By adopting the above technical solution, the third transmission bevel gear rotates, driving the movable bevel gear to rotate, thereby driving the movable shaft to rotate.

[0024] The present invention is further configured such that multiple groups of second placement cabinets are movably installed with multiple groups of second connecting shafts, and the multiple groups of second connecting shafts are respectively connected to the multiple groups of movable shafts through synchronous belts. Multiple groups of second placement cabinets are movably installed with multiple groups of movable plates, and the inner walls of the multiple groups of movable plates are respectively threadedly connected to the outer walls of the multiple organizations of second connecting shafts, and the multiple groups of movable plates are respectively movably connected to the multiple groups of second reserved holes.

[0025] By adopting the above technical solution, the movable shaft rotates, driving the multiple sets of second linkage shafts to rotate, thereby driving the multiple sets of movable plates to move, and then closing the multiple sets of second reserved holes.

[0026] In summary, the present invention mainly has the following beneficial effects: The present invention solves the problem of damage to agricultural products and ice cubes when placed in the same cavity by providing a first placement cabinet, a second placement cabinet, and a placement bin. Agricultural products are respectively placed in multiple groups of placement bins in multiple groups of second placement cabinets, and are placed in placement bins of different sizes according to the different sizes of agricultural products. Ice cubes are placed inside multiple groups of first placement cabinets, and the ice cubes inside the multiple groups of first placement cabinets respectively refrigerate the agricultural products inside the multiple groups of second placement cabinets. If the ice cubes melt, the melted water enters the collection tank of the next layer through the multiple groups of first reserved holes, and flows into the first placement cabinet of the next layer through the multiple groups of second reserved holes. The water flows to the first placement cabinet or the second placement cabinet of the next layer in turn, and finally flows into the water collection tank through the water pipe, thereby avoiding direct contact between the ice cubes and the agricultural products and protecting the agricultural products.

[0027] The present invention is provided with a movable plate, and a group of second placement cabinets are displaced, which drives the limit shaft to rotate, thereby driving the third transmission shaft to rotate, and then driving the movable shaft to rotate, and then driving multiple groups of second linkage shafts to rotate, so that the multiple groups of movable plates are displaced, thereby closing the multiple groups of second reserved holes, preventing the water source inside the collection tank from spilling to the outer end of the device body through the second reserved holes after the second placement cabinet is moved, thereby protecting the delivery personnel, preventing the clothes from being soaked by the water source, and avoiding waste of water. BRIEF DESCRIPTION OF THE DRAWINGS

[0028] Figure 1 Schematic diagram of the main body of the device in the present invention; Figure 2 Schematic diagram of the connection between the driving block and the device body in the present invention; Figure 3 Schematic diagram of the internal structure of the device body in the present invention; Figure 4 Exploded diagram of multiple groups of first storage cabinets and multiple groups of second storage cabinets in the present invention; Figure 5 This is a schematic diagram of the first reserved hole in the present invention; Figure 6 This is a schematic diagram of the placement bin in the present invention; Figure 7 Schematic diagram of the second reserved hole in the present invention; Figure 8 Schematic diagram of the first transmission shaft in the present invention; Figure 9 Schematic diagram of the second transmission shaft in the present invention; Figure 10 Schematic diagram of the driving motor in the present invention; Figure 11 Schematic diagram of the linkage cylinder in the present invention; Figure 12 Schematic diagram of the movable shaft in the present invention; Figure 13 for Figure 12 A magnified view of point A; Figure 14 Schematic diagram of the limiting axis in the present invention.

[0029] In the figure: 1. device body; 2. box door; 3. slide; 4. slide groove; 5. first placement cabinet; 6. second placement cabinet; 7. support plate; 8. first reserved hole; 9. placement bin; 10. collecting tank; 11. second reserved hole; 12. reserved groove; 13. first linkage shaft; 14. first drive shaft; 15. drive block; 16. first transmission shaft; 17. drive motor; 18. second drive shaft; 19. second transmission shaft; 20. linkage cylinder; 21. telescopic column; 22. mounting ring; 23. movable block; 24. connecting block; 25. water collecting box; 26. water outlet pipe; 27. limit shaft; 28. limit gear; 29. ​​limit bevel gear; 30. third transmission shaft; 31. third transmission bevel gear; 32. movable shaft; 33. movable bevel gear; 34. second linkage shaft; 35. movable plate; 36. gear plate DETAILED DESCRIPTION

[0030] The following will be combined with the accompanying drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. The embodiments described below with reference to the accompanying drawings are exemplary and are only used to explain the present invention, and should not be understood as limiting the present invention.

[0031] The following describes an embodiment of the present invention based on its overall structure.

[0032] An intelligent e-commerce agricultural product refrigeration storage device, such as Figure 1 - Figure 14 As shown, the device includes a main body 1, a first storage cabinet 5 and a second storage cabinet 6. Multiple groups of first storage cabinets 5 and multiple groups of second storage cabinets 6 are movably installed inside the main body 1. The multiple groups of first storage cabinets 5 and multiple groups of second storage cabinets 6 are staggered. The multiple groups of first storage cabinets 5 are used to store ice cubes, and the multiple groups of second storage cabinets 6 are used to store agricultural products. A box door 2 is symmetrically installed at one end of the device body 1. Both sets of box doors 2 are provided with multiple sets of corresponding slideways 3. The inner wall of the device body 1 is provided with multiple sets of slide grooves 4. The outer walls of the multiple sets of first placement cabinets 5 and the multiple sets of second placement cabinets 6 are symmetrically provided with support plates 7, and the multiple sets of support plates 7 are movably connected to the multiple sets of slideways 3 and the multiple sets of slide grooves 4 respectively. The upper ends of the multiple sets of second placement cabinets 6 are provided with multiple sets of placement bins 9, and the multiple sets of placement bins 9 are of different sizes. Agricultural products of different sizes are placed in the multiple sets of placement bins 9 respectively. Multiple groups of first placement cabinets 5 are each provided with multiple groups of first reserved holes 8, and multiple groups of second placement cabinets 6 are each provided with a collecting trough 10 at the upper end, and the multiple groups of collecting troughs 10 correspond to the multiple groups of first reserved holes 8 respectively, and multiple groups of second reserved holes 11 are provided at both ends of the multiple groups of collecting troughs 10. A water collecting tank 25 is installed inside the device body 1, and the water collecting tank 25 is connected to the second reserved holes 11 at the end of a group of second placement cabinets 6 through a water pipe. The water outlet of the water collecting tank 25 is installed with a water outlet pipe 26, and one end of the water outlet pipe 26 extends to the outer wall of the device body 1. If the ice melts, the melted water enters the collection trough 10 of the next layer through the multiple groups of first reserved holes 8 respectively, and flows into the first placement cabinet 5 of the next layer through the multiple groups of second reserved holes 11. The water flows to the first placement cabinet 5 or the second placement cabinet 6 of the next layer in turn, and finally flows into the inside of the water collecting tank 25 through the water pipe. The water inside the water collecting tank 25 can be discharged to the inside of the ice-making device through the water outlet pipe 26, so that the water source is reused and water is saved.

[0033] See also Figure 8 - Figure 10 A plurality of second transmission shafts 19 are movably installed inside the device body 1, and the plurality of second transmission shafts 19 are connected by synchronous belts. A driving motor 17 is installed inside the device body 1, and a second driving shaft 18 is installed at the output end of the driving motor 17, and the second driving shaft 18 is connected to a group of second transmission shafts 19 through a synchronous belt. A groove is provided at one end of the plurality of second transmission shafts 19. When the driving motor 17 is started, the second driving shaft 18 is driven to rotate, thereby driving a group of second transmission shafts 19 to rotate, and then driving the plurality of second transmission shafts 19 to rotate.

[0034] See also Figure 8 - Figure 10 , multiple sets of drive blocks 15 are movably installed inside the device body 1, and one end of the multiple sets of drive blocks 15 extends to the outer wall of the device body 1, and the bottom ends of the multiple sets of drive blocks 15 are installed with first drive shafts 14, and the bottom ends of the multiple sets of first drive shafts 14 are provided with damping shafts. The delivery personnel push the drive blocks 15 to rotate, driving the first drive shafts 14 to rotate. The setting of the damping shaft prevents the drive blocks 15 from rotating during the movement of the device body 1.

[0035] See also Figure 8 - Figure 10 A plurality of first transmission shafts 16 are movably installed inside the device body 1, and the plurality of first transmission shafts 16 are respectively connected to the plurality of first drive shafts 14 through synchronous belts. A plurality of connecting cylinders 20 are movably installed inside the device body 1, and the plurality of connecting cylinders 20 are respectively connected to the plurality of first transmission shafts 16 through synchronous belts. When the first drive shaft 14 rotates, the first transmission shaft 16 is driven to rotate, thereby driving the connecting cylinder 20 to rotate.

[0036] See also Figure 8 - Figure 11 , telescopic columns 21 are movably installed inside the multiple groups of linkage cylinders 20, and the outer walls of the multiple groups of telescopic columns 21 are respectively threadedly connected to the inner walls of the multiple groups of linkage cylinders 20, and the upper ends of the multiple groups of telescopic columns 21 are installed with mounting rings 22, and movable blocks 23 are movably installed inside the multiple groups of mounting rings 22. Connecting blocks 24 are installed at both ends of the multiple groups of movable blocks 23. When the linkage cylinder 20 rotates, the telescopic columns 21 are driven to move, thereby driving the mounting rings 22 to move, and then driving the movable blocks 23 to move, and then driving the connecting blocks 24 to move.

[0037] See also Figure 5 - Figure 11 , multiple groups of first linkage shafts 13 are movably installed inside the device body 1, and the multiple groups of first linkage shafts 13 are connected by synchronous belts. The multiple groups of first linkage shafts 13 are respectively threadedly connected to the inner walls of the multiple groups of first placement cabinets 5 and the inner walls of the multiple groups of second placement cabinets 6. One end of the multiple groups of first linkage shafts 13 is provided with a groove, and the multiple groups of connecting blocks 24 are respectively movably connected to the grooves at the ends of the multiple groups of second transmission shafts 19 and the grooves at the ends of the multiple groups of first linkage shafts 13. The two groups of connecting blocks 24 and the movable block 23 connect a group of second transmission shafts 19 with a group of first linkage shafts 13, so that a group of first linkage shafts 13 rotates, and the multiple groups of first linkage shafts 13 are respectively connected by synchronous belts, so that the two groups of first linkage shafts 13 rotate, and the outer wall of the first linkage shaft 13 is threadedly connected to the inner wall of the second placement cabinet 6, and the first placement cabinet 5 or the second placement cabinet 6 is displaced.

[0038] See also Figure 2 - Figure 14 , multiple groups of support plates 7 are provided with reserved grooves 12 at the bottom ends, and multiple groups of support plates 7 are movably installed with limit shafts 27 inside. Multiple groups of limit shafts 27 extend to one end of the reserved grooves 12 and are equipped with limit gears 28. Multiple groups of slide grooves 4 are equipped with tooth plates 36 on the inner walls, and multiple groups of tooth plates 36 are respectively engaged with multiple groups of limit gears 28. The second placement plate 6 is displaced, driving the limit gear 28 to displace, thereby driving the limit gear 28 to rotate, and then driving the limit shaft 27 to rotate.

[0039] See also Figure 2 - Figure 13 , multiple groups of limiting shafts 27 extend to multiple groups of second placement cabinets 6, and one end of each group is installed with a limiting bevel gear 29. Multiple groups of second placement cabinets 6 are symmetrically installed with third transmission shafts 30. Both ends of multiple groups of third transmission shafts 30 are installed with third transmission bevel gears 31, and multiple groups of third transmission bevel gears 31 are respectively engaged with multiple groups of limiting bevel gears 29. When the limiting shaft 27 rotates, it drives the limiting bevel gear 29 to rotate, thereby driving the third transmission bevel gear 31 to rotate, and then driving the third transmission shaft 30 to rotate, thereby driving another group of third transmission bevel gears 31 to rotate.

[0040] See also Figure 2 - Figure 13 , multiple groups of second placement cabinets 6 are movably installed with movable shafts 32, and one end of each group of movable shafts 32 is installed with movable bevel gears 33, and the multiple groups of movable bevel gears 33 are respectively engaged with the remaining multiple groups of third transmission bevel gears 31. When the third transmission bevel gears 31 rotate, the movable bevel gears 33 are driven to rotate, thereby driving the movable shafts 32 to rotate.

[0041] See also Figure 2 - Figure 13 , multiple groups of second placement cabinets 6 are movably installed with multiple groups of second connecting shafts 34, and multiple groups of second connecting shafts 34 are respectively connected to multiple groups of movable shafts 32 through synchronous belts. Multiple groups of movable plates 35 are movably installed inside the multiple groups of second placement cabinets 6, and the inner walls of the multiple groups of movable plates 35 are respectively threadedly connected to the outer walls of the multiple organizations of second connecting shafts 34. The multiple groups of movable plates 35 are respectively movably connected to the multiple groups of second reserved holes 11. The movable shafts 32 rotate, driving the multiple groups of second connecting shafts 34 to rotate, thereby driving the multiple groups of movable plates 35 to move, and then closing the multiple groups of second reserved holes 11.

[0042] The working principle of the present invention is as follows: when the delivery personnel use the agricultural product refrigeration storage device to deliver agricultural products to the last mile, the delivery personnel place the agricultural products in multiple groups of storage bins 9 in multiple groups of second storage cabinets 6, and place them in storage bins 9 of different sizes according to the different sizes of the agricultural products, and place ice cubes in multiple groups of first storage cabinets 5. The ice cubes in the multiple groups of first storage cabinets 5 respectively refrigerate the agricultural products in the multiple groups of second storage cabinets 6; During the transportation process, if the ice cubes melt, the melted water flows into the collection tank 10 of the next layer through the multiple groups of first reserved holes 8, and flows into the first storage cabinet 5 of the next layer through the multiple groups of second reserved holes 11. The water flows to the first storage cabinet 5 or the second storage cabinet 6 of the next layer in turn, and finally flows into the water collection tank 25 through the water pipe. The water in the water collection tank 25 can be discharged into the ice making device through the outlet pipe 26, so that the water source is reused, water is saved, and direct contact between the ice cubes and the agricultural products is avoided, thereby protecting the agricultural products. After the delivery personnel deliver the agricultural products to the destination, when the delivery personnel pick up the agricultural products, the delivery personnel rotate the corresponding driving block 15, thereby driving a group of first driving shafts 14 to rotate, and the multiple groups of first driving shafts 14 are respectively connected to the multiple groups of first transmission shafts 16 through synchronous belts, so that a group of first driving shafts 14 drives a group of first transmission shafts 16 to rotate, and the multiple groups of first transmission shafts 16 are respectively connected to the multiple groups of linkage cylinders 20 through synchronous belts, so that a group of linkage cylinders 20 rotates; When one set of linkage cylinders 20 rotates, the inner wall of the linkage cylinder 20 is threadedly connected to the outer wall of the telescopic column 21, so that the telescopic column 21 moves, thereby driving the mounting ring 22 to move, and then driving the movable block 23 to move, and then driving the two sets of connection blocks 24 to move, so that the two sets of connection blocks 24 enter the groove at one end of the first linkage shaft 13 and the groove at one end of the second transmission shaft 19 respectively; When the driving block 15 rotates, the delivery personnel starts the driving motor 17, thereby driving the second driving shaft 18 to rotate. The second driving shaft 18 is connected to a group of second transmission shafts 19 through a synchronous belt, driving a group of second transmission shafts 19 to rotate, and multiple groups of second transmission shafts 19 are respectively connected by synchronous belts, and two groups of connecting blocks 24 and movable blocks 23 connect a group of second transmission shafts 19 with a group of first linkage shafts 13, so a group of first linkage shafts 13 rotates, and multiple groups of first linkage shafts 13 are respectively connected by synchronous belts, so two groups of first linkage shafts 13 rotate, and the outer wall of the first linkage shaft 13 is threadedly connected to the inner wall of the second placement cabinet 6, so a group of second placement cabinets 6 is displaced; When a group of second placement cabinets 6 is displaced, the two groups of support plates 7 are driven to displace, thereby driving the limit gear 28 to displace, and the limit gear 28 is meshed and connected with the tooth plate 36, so the limit gear 28 rotates, thereby driving the limit shaft 27 to rotate, and then driving the limit bevel gear 29 to rotate, and the limit bevel gear 29 is meshed and connected with a group of third transmission bevel gears 31, so a group of third transmission bevel gears 31 rotates, thereby driving the third transmission shaft 30 to rotate, and then driving another group of third transmission bevel gears 31 to rotate. When the other set of third transmission bevel gears 31 rotates, the other set of third transmission bevel gears 31 is meshed and connected with the movable bevel gear 33, so the movable bevel gear 33 rotates, thereby driving the movable shaft 32 to rotate. Since the movable shaft 32 is connected to the multiple sets of second linkage shafts 34 respectively through synchronous belts, the multiple sets of second linkage shafts 34 rotate, and the outer walls of the multiple sets of second linkage shafts 34 are respectively threadedly connected to the inner walls of the multiple sets of movable plates 35. Therefore, the multiple sets of movable plates 35 are displaced, thereby closing the multiple sets of second reserved holes 11, preventing the water source in the collection tank 12 from spilling to the outer end of the device body 1 through the second reserved holes 11 after the second placement cabinet 6 is moved; The present invention arranges the first placement cabinet 5, the second placement cabinet 6 and the placement bin 9, so that the agricultural products are placed in the multiple groups of placement bins 9 in the multiple groups of second placement cabinets 6 respectively, and are placed in placement bins 9 of different sizes according to the different sizes of the agricultural products. In addition, ice cubes are placed inside the multiple groups of first placement cabinets 5, and the ice cubes inside the multiple groups of first placement cabinets 5 respectively refrigerate the agricultural products inside the multiple groups of second placement cabinets 6, avoiding direct contact between the ice cubes and the agricultural products, and protecting the agricultural products.

[0043] Although an embodiment of the present invention has been shown and described, this specific embodiment is merely an explanation of the present invention and is not a limitation of the invention. The specific features, structures, materials or characteristics described may be combined in an appropriate manner in any one or more embodiments or examples. After reading this specification, those skilled in the art may make modifications, substitutions and variations to the embodiment without creative contribution as needed without departing from the principles and purpose of the present invention. However, as long as they are within the scope of the claims of the present invention, they are protected by patent law.

Claims

1. An intelligent e-commerce agricultural product cold storage device, comprising a device body (1), a first storage cabinet (5) and a second storage cabinet (6), characterized in that: Multiple groups of first placement cabinets (5) and multiple groups of second placement cabinets (6) are movably installed inside the device body (1), and the multiple groups of first placement cabinets (5) and the multiple groups of second placement cabinets (6) are staggered. The device body (1) is symmetrically provided with a door (2) at one end, and the two groups of doors (2) are provided with multiple groups of corresponding slideways (3). The inner wall of the device body (1) is provided with multiple groups of slide grooves (4). The outer walls of the multiple groups of the first placement cabinets (5) and the multiple groups of the second placement cabinets (6) are symmetrically provided with support plates (7), and the multiple groups of support plates (7) are movably connected to the multiple groups of slideways (3) and the multiple groups of slide grooves (4), respectively. The upper ends of the multiple groups of the second placement cabinets (6) are provided with multiple groups of placement bins (9), and the multiple groups of placement bins (9) are of different sizes. Multiple groups of the first placement cabinets (5) are provided with multiple groups of first reserved holes (8), multiple groups of the second placement cabinets (6) are provided with collection troughs (10) at their upper ends, and the multiple groups of collection troughs (10) correspond to the multiple groups of first reserved holes (8), respectively. Multiple groups of the collection troughs (10) are provided with multiple groups of second reserved holes (11) at both ends, and a water collecting tank (25) is installed inside the device body (1), and the water collecting tank (25) is connected to the second reserved holes (11) at the end of a group of the second placement cabinets (6) through a water pipe, and a water outlet pipe (26) is installed at the water outlet of the water collecting tank (25), and one end of the water outlet pipe (26) extends to the outer wall of the device body (1).

2. The intelligent e-commerce agricultural product cold storage device according to claim 1, characterized in that: A plurality of second transmission shafts (19) are movably installed inside the device body (1), and the plurality of second transmission shafts (19) are connected by synchronous belts. A driving motor (17) is installed inside the device body (1), and a second driving shaft (18) is installed at the output end of the driving motor (17), and the second driving shaft (18) is connected to a group of second transmission shafts (19) through a synchronous belt. A groove is provided at one end of the plurality of second transmission shafts (19).

3. The intelligent e-commerce agricultural product cold storage device according to claim 2, characterized in that: Multiple sets of drive blocks (15) are movably installed inside the device body (1), and one end of each set of drive blocks (15) extends to the outer wall of the device body (1). The bottom ends of each set of drive blocks (15) are all installed with first drive shafts (14), and the bottom ends of each set of first drive shafts (14) are all provided with damping shafts.

4. The intelligent e-commerce agricultural product cold storage device according to claim 3, characterized in that: The device body (1) has multiple sets of first transmission shafts (16) movably installed inside, and the multiple sets of first transmission shafts (16) are respectively connected to the multiple sets of first drive shafts (14) through synchronous belts. The device body (1) has multiple sets of link cylinders (20) movably installed inside, and the multiple sets of link cylinders (20) are respectively connected to the multiple sets of first transmission shafts (16) through synchronous belts.

5. The intelligent e-commerce agricultural product cold storage device according to claim 4, characterized in that: The multiple sets of linkage cylinders (20) are all movably provided with telescopic columns (21), and the outer walls of the multiple sets of telescopic columns (21) are respectively threadedly connected to the inner walls of the multiple sets of linkage cylinders (20). The upper ends of the multiple sets of telescopic columns (21) are all provided with mounting rings (22), and the interiors of the multiple sets of mounting rings (22) are all movably provided with movable blocks (23), and both ends of the multiple sets of movable blocks (23) are provided with connecting blocks (24).

6. The intelligent e-commerce agricultural product cold storage device according to claim 5, characterized in that: The device body (1) has multiple sets of first linkage shafts (13) movably installed inside, and multiple sets of first linkage shafts (13) are connected by synchronous belts, and multiple sets of first linkage shafts (13) are respectively threadedly connected to the inner walls of multiple sets of first placement cabinets (5) and the inner walls of multiple sets of second placement cabinets (6), and multiple sets of first linkage shafts (13) are each provided with a groove at one end, and multiple sets of connecting blocks (24) are respectively movably connected to the end grooves of multiple sets of second transmission shafts (19) and the end grooves of multiple sets of first linkage shafts (13).

7. The intelligent e-commerce agricultural product cold storage device according to claim 1, characterized in that: The bottom ends of the plurality of groups of support plates (7) are all provided with reserved grooves (12), the interiors of the plurality of groups of support plates (7) are all movably provided with limit shafts (27), the plurality of groups of limit shafts (27) extending to one end of the reserved grooves (12) are all provided with limit gears (28), the inner walls of the plurality of groups of slide grooves (4) are all provided with tooth plates (36), and the plurality of groups of tooth plates (36) are respectively engaged with the plurality of groups of limit gears (28).

8. The intelligent e-commerce agricultural product cold storage device according to claim 7, characterized in that: Multiple groups of the limiting shafts (27) are extended to multiple groups of second storage cabinets (6) and are each installed with a limiting bevel gear (29) at one end thereof. Multiple groups of the second storage cabinets (6) are each symmetrically installed with a third transmission shaft (30). Multiple groups of the third transmission shafts (30) are each installed with a third transmission bevel gear (31) at both ends thereof, and multiple groups of the third transmission bevel gears (31) are respectively meshed and connected with multiple groups of the limiting bevel gears (29).

9. The intelligent e-commerce agricultural product cold storage device according to claim 8, characterized in that: A plurality of sets of the second placement cabinets (6) are all movably installed with movable shafts (32), one end of each set of movable shafts (32) is installed with movable bevel gears (33), and the plurality of sets of movable bevel gears (33) are respectively meshed and connected with the remaining plurality of sets of third transmission bevel gears (31).

10. The intelligent e-commerce agricultural product cold storage device according to claim 9, characterized in that: Multiple sets of second placement cabinets (6) are movably installed with multiple sets of second linkage shafts (34), and the multiple sets of second linkage shafts (34) are respectively connected to the multiple sets of movable shafts (32) through synchronous belts. Multiple sets of movable plates (35) are movably installed inside the multiple sets of second placement cabinets (6), and the inner walls of the multiple sets of movable plates (35) are respectively threadedly connected to the outer walls of the multiple sets of second linkage shafts (34), and the multiple sets of movable plates (35) are respectively movably connected to the multiple sets of second reserved holes (11).