Distributed logistics intelligent refrigeration cabinet and use method

By using a motor-driven horizontal and vertical screw system and heat dissipation components, the problems of moving and layering storage of refrigerated cabinets are solved, achieving convenient use and efficient cooling.

CN115523701BActive Publication Date: 2025-11-18JIANGSU TIANYI AIRPORT SPECIAL EQUIP CO LTD
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Patent Information

Application Number
CN202210406597.4
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-04-18
Publication Date
2025-11-18
Estimated Expiration
2042-04-18

AI Technical Summary

Technical Problem

Existing refrigerated cabinets are inconvenient to move, difficult to disassemble, have large doors that take up a lot of space, and lack internal compartmentalization, making them inconvenient to use.

Method used

The automatic opening, cooling, and movement of the cabinet are achieved by using a motor-driven horizontal adjusting screw and lifting motor, combined with a heat dissipation component and a water pump system. The items are fixed and placed in layers by using limit springs and clamping plates.

Benefits of technology

It enables convenient movement, automatic opening, and layered storage of refrigerated cabinets, improving efficiency and space utilization.

✦ Generated by Eureka AI based on patent content.

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    Figure CN115523701B_ABST
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Abstract

The application discloses a kind of distributed logistics intelligent refrigeration cabinets and use method, belong to refrigeration cabinet technical field, by starting regulating motor adjustment first horizontal adjusting screw movement, by first horizontal adjusting screw drives sliding door to be moved and is opened box, start electric heater, fan blade and water pump, cooling liquid is extracted from water tank then through bow-shaped radiating pipe and first connecting pipe into heat exchange pipe and carries out heat absorption cooling treatment, when cooling liquid passes through fan blade and electric heater, cooling heat dissipation treatment is carried out, when passing through heat exchange pipe, heat absorption treatment is carried out in the box, the frozen goods needing to be placed is placed on bow-shaped radiating pipe, then by limit spring cooperation side clamping plate, the rotation of second horizontal adjusting screw is driven by starting lifting motor, adjusting pipe movement is driven by second horizontal adjusting screw, by adjusting pipe adjustment cross hinged frame.
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Description

TECHNICAL FIELD

[0001] The present application relates to a refrigeration cabinet, in particular to a distributed logistics intelligent refrigeration cabinet, and also relates to a refrigeration cabinet use method, in particular to a distributed logistics intelligent refrigeration cabinet use method, and belongs to the technical field of refrigeration cabinets. BACKGROUND

[0002] The refrigeration cabinet in the prior art is not convenient to move when in use, and often needs to be carried by multiple people, although the fixed structure is combined with the vehicle body, but it is very laborious to disassemble, and in addition, the refrigeration cabinet door in the prior art adopts a manual opening and overturning mode, which occupies a large space, and the interior does not realize the function of layered placement and fixation, therefore, a distributed logistics intelligent refrigeration cabinet and use method are designed to solve the above problems. SUMMARY

[0003] The main purpose of the present application is to provide a distributed logistics intelligent refrigeration cabinet and use method, by starting the adjusting motor to adjust the movement of the first horizontal adjusting screw, by the first horizontal adjusting screw to drive the sliding door to move into the inner wall of the box body, to open the box body, start the electric heater, fan and water pump, the cooling liquid is extracted from the water tank and then enters the heat exchange pipe through the bow-shaped heat dissipation pipe and the first connecting pipe to heat and cool, when the cooling liquid passes through the fan and the electric heater, it is cooled and radiated, and when it passes through the heat exchange pipe, it is heated to the box body, the frozen goods to be placed are placed on the bow-shaped heat dissipation pipe, and then the goods are clamped by the limiting spring and the side clamping plate, the lifting motor is started to drive the rotation of the second horizontal adjusting screw, the adjusting pipe is driven to move by the second horizontal adjusting screw, the cross hinge frame is adjusted by the adjusting pipe, the base is unfolded by the cross hinge frame, and the box body is lifted by the base and universal wheels and moved by the universal wheels.

[0004] The purpose of the present application can be achieved by adopting the following technical scheme:

[0005] A distributed logistics intelligent refrigerated cabinet includes a cabinet body, a top cover installed on the top of the cabinet body, and a heat dissipation component provided on the inner top of the top cover. A water tank component is provided inside the top cover and at the top of the cabinet body. The water tank component and the heat dissipation component are connected by a water pump. A heat exchange pipe is provided in the inner layer of the cabinet body. Both the water tank component and the heat dissipation component are connected to the heat exchange pipe to form a heat dissipation circulation system. A first horizontal adjustment screw assembly is provided on the inner top side of the cabinet body. A sliding door is fitted on the outer side of the first horizontal adjustment screw assembly. A second horizontal adjustment screw assembly is provided on the inner bottom of the cabinet body. A lifting frame assembly is fitted on the outer side of the second horizontal adjustment screw assembly. Bow-shaped heat dissipation pipes are installed at equal intervals inside the cabinet body, and a fixing frame assembly is installed on top of the bow-shaped heat dissipation pipes.

[0006] Preferably, the heat dissipation assembly includes fan blades, a fan cover, a heat absorption chamber, an electric heater, and an arc-shaped heat dissipation pipe. The heat absorption chamber is installed on one side of the top of the top cover, and the arc-shaped heat dissipation pipe is built inside the heat absorption chamber. The electric heater is installed at the bottom of the heat absorption chamber. The fan cover, which communicates with the heat absorption chamber, is installed on the top of the top cover, and the fan blades are built inside the fan cover. One end of the arc-shaped heat dissipation pipe is connected to one end of the water pump.

[0007] Preferably, the water tank assembly includes a water tank, a second connecting pipe, and a solenoid valve. The water tank is installed inside the top cover and at the top of the tank body. The top of the water tank is connected to the solenoid valve that passes through the top cover. One side of the water tank is connected to the second connecting pipe, and the other end of the second connecting pipe is connected to the heat exchange pipe. The bottom of the other side of the water tank is connected to the other end of the water pump.

[0008] Preferably, the first leveling screw assembly includes an adjusting motor and a first leveling screw. The adjusting motor is installed at the top of one side of the housing, and the first leveling screw is installed through the output end of the adjusting motor. A sliding door is engaged with the outer side of the first leveling screw.

[0009] Preferably, the second leveling screw assembly includes a lifting motor and a second leveling screw. The lifting motor is installed on one side of the inner bottom of the housing, and the output end of the lifting motor is installed through the housing with the second leveling screw.

[0010] Preferably, the lifting frame assembly includes an adjusting tube, a cross hinge frame, a base, and casters. The two outer ends of the second horizontal adjusting screw are fitted with adjusting tubes, and the adjusting tubes mesh with the second horizontal adjusting screw. The bottom of the adjusting tube is hinged with a cross hinge frame, and the bottom end of the cross hinge frame is fitted with a lower hinge block that can slide on the base. Casters are installed at the four corners of the bottom of the base.

[0011] Preferably, the fixing bracket assembly includes an L-shaped fixing bracket, a limiting spring, and a side clamping plate. The L-shaped fixing bracket is installed on both sides of the top of the bow-shaped heat dissipation pipe, the limiting spring is installed at equal intervals on the inner side of the L-shaped fixing bracket, and the other end of the limiting spring is installed with a side clamping plate.

[0012] A method for using a distributed logistics intelligent refrigerated container includes the following steps:

[0013] Step 1: Adjust the first horizontal adjustment screw by starting the adjustment motor. The first horizontal adjustment screw will drive the sliding door to move and retract to both sides of the inner wall of the cabinet, thus opening the cabinet.

[0014] Step 2: Start the electric heater, fan blades and water pump to draw the cooling liquid out of the water tank and then enter the heat exchange tube through the bow-shaped heat dissipation pipe and the first connecting pipe for heat absorption and cooling.

[0015] Step 3: Cooling and heat dissipation are carried out as the cooling liquid passes through the fan blades and electric heater;

[0016] Step 4: Heat absorption treatment is performed inside the chamber as the heat passes through the heat exchange tubes;

[0017] Step 5: Place the frozen items to be placed on the bow-shaped heat dissipation tube, and then use the limiting spring and side clamping plate to clamp the items;

[0018] Step 6: Start the lifting motor to drive the rotation of the second horizontal adjusting screw, which in turn drives the adjusting tube to move. The adjusting tube adjusts the cross hinge frame, which unfolds the base. The base and casters lift the box and move it using the casters.

[0019] Beneficial technical effects of the present invention:

[0020] This invention provides a distributed logistics intelligent refrigerated cabinet and its usage method. The method involves starting an adjusting motor to move a first horizontal adjusting screw, which in turn moves a sliding door to the inner walls of the cabinet, opening the cabinet. An electric heater, fan blades, and water pump are then activated to draw cooling liquid from a water tank. The liquid then passes through an arc-shaped heat dissipation pipe and a first connecting pipe into a heat exchange pipe for heat absorption and cooling. The cooling liquid dissipates heat as it passes through the fan blades and electric heater, and absorbs heat within the cabinet as it passes through the heat exchange pipe. Frozen items are placed on the arc-shaped heat dissipation pipe, and then clamped by a limit spring and side clamping plates. A lifting motor is then activated to rotate a second horizontal adjusting screw, which in turn moves an adjusting pipe. This adjusting pipe adjusts a cross-hinged frame, which unfolds the base. The base and casters lift the cabinet, and the casters allow for movement. Attached Figure Description

[0021] Figure 1 This is a front view of the overall device according to a preferred embodiment of a distributed logistics intelligent refrigerated cabinet and its usage method according to the present invention;

[0022] Figure 2 This is a side view of the cabinet body according to a preferred embodiment of a distributed logistics intelligent refrigerated cabinet and its usage method according to the present invention;

[0023] Figure 3 This is a schematic diagram of the lifting frame assembly structure of a preferred embodiment of a distributed logistics intelligent refrigerated cabinet and its usage method according to the present invention;

[0024] Figure 4 This is a schematic diagram of the clamping plate assembly structure of a preferred embodiment of a distributed logistics intelligent refrigerated cabinet and its usage method according to the present invention;

[0025] Figure 5 This is a schematic diagram of the combined structure of the water-cooling component and the door adjustment component according to a preferred embodiment of a distributed logistics intelligent refrigerated cabinet and its usage method according to the present invention.

[0026] In the diagram: 1-Top cover, 2-Solenoid valve, 3-Fan cover, 4-Fan blade, 5-Heat absorption chamber, 6-First connecting pipe, 7-Electric heater, 8-Water pump, 9-Water tank, 10-Second connecting pipe, 11-Adjusting motor, 12-Box body, 13-First horizontal adjusting screw, 14-Heat exchange pipe, 15-Sliding door, 16-Lifting motor, 17-Base, 18-Arch-shaped heat dissipation pipe, 19-L-shaped fixing bracket, 20-Second horizontal adjusting screw, 21-Adjusting pipe, 22-Cross hinge bracket, 23-Limit spring, 24-Universal wheel, 25-Side clamping plate. Detailed Implementation

[0027] To enable those skilled in the art to understand the technical solution of the present invention more clearly, the present invention will be further described in detail below with reference to the embodiments and accompanying drawings, but the embodiments of the present invention are not limited thereto.

[0028] like Figures 1-5As shown in the figure, this embodiment provides a distributed logistics intelligent refrigerated cabinet and its usage method, including a cabinet body 12, a top cover 1 installed on the top of the cabinet body 12, and a heat dissipation component provided at the inner top of the top cover 1. A water tank component is provided inside the top cover 1 and at the top of the cabinet body 12. The water tank component and the heat dissipation component are connected by a water pump 8. A heat exchange pipe 14 is provided in the inner interlayer of the cabinet body 12. The water tank component and the heat dissipation component are both connected to the heat exchange pipe 14 to form a heat dissipation circulation system. A first horizontal adjustment screw assembly is provided on the inner top side of the cabinet body 12. A sliding door 15 is sleeved on the outer side of the first horizontal adjustment screw assembly. A second horizontal adjustment screw assembly is provided at the inner bottom of the cabinet body 12. A lifting frame assembly is sleeved on the outer side of the second horizontal adjustment screw assembly. Bow-shaped heat dissipation pipes 18 are installed at equal intervals inside the cabinet body 12, and a fixing frame assembly is installed on the top of the bow-shaped heat dissipation pipes 18.

[0029] By starting the regulating motor 11, the first horizontal regulating screw 13 is adjusted to move, which in turn moves the sliding door 15 to retract to both sides of the inner wall of the housing 12, opening the housing 12. The electric heater 7, fan blades 4, and water pump 8 are then activated, drawing cooling liquid from the water tank 9 and allowing it to enter the heat exchange tube 14 through the arc-shaped heat dissipation pipe 18 and the first connecting pipe 6 for heat absorption and cooling. The cooling liquid also dissipates heat as it passes through the fan blades 4 and electric heater 7, and as it passes through the heat exchange tube 14, it cools the housing. Heat absorption treatment is performed inside 12. The items to be frozen are placed on the bow-shaped heat dissipation pipe 18. Then, the items are clamped by the limit spring 23 and the side clamping plate 25. The lifting motor 16 is started to drive the rotation of the second horizontal adjustment screw 20. The second horizontal adjustment screw 20 drives the adjustment tube 21 to move. The adjustment tube 21 adjusts the cross hinge frame 22. The base 17 is unfolded by the cross hinge frame 22. The box 12 is lifted by the base 17 and the universal wheels 24 and moved by the universal wheels 24.

[0030] In this embodiment, the heat dissipation assembly includes a fan blade 4, a fan cover 3, a heat absorption chamber 5, an electric heater 7, and an arc-shaped heat dissipation pipe 18. The heat absorption chamber 5 is installed on one side of the top of the top cover 1. The arc-shaped heat dissipation pipe 18 is built inside the heat absorption chamber 5. The electric heater 7 is installed at the bottom of the heat absorption chamber 5. The fan cover 3, which communicates with the heat absorption chamber 5, is installed on the top of the top cover 1. The fan blade 4 is built inside the fan cover 3. One end of the arc-shaped heat dissipation pipe 18 is connected to one end of the water pump 8.

[0031] In this embodiment, the water tank assembly includes a water tank 9, a second connecting pipe 10, and a solenoid valve 2. The water tank 9 is installed inside the top cover 1 and at the top of the box body 12. The top of the water tank 9 is connected to the solenoid valve 2 that penetrates the top cover 1. The second connecting pipe 10 is connected to one side of the water tank 9. The other end of the second connecting pipe 10 is connected to the heat exchange pipe 14. The bottom of the other side of the water tank 9 is connected to the other end of the water pump 8.

[0032] In this embodiment, the first horizontal adjusting screw assembly includes an adjusting motor 11 and a first horizontal adjusting screw 13. The adjusting motor 11 is installed at the top of one side of the housing 12. The output end of the adjusting motor 11 passes through the housing 12 and is connected to the first horizontal adjusting screw 13. A sliding door 15 is engaged with the outer side of the first horizontal adjusting screw 13.

[0033] In this embodiment, the second leveling screw assembly includes a lifting motor 16 and a second leveling screw 20. The lifting motor 16 is installed on one side of the inner bottom of the housing 12, and the output end of the lifting motor 16 is installed through the housing 12 to form the second leveling screw 20.

[0034] In this embodiment, the lifting frame assembly includes an adjusting tube 21, a cross hinge frame 22, a base 17, and casters 24. The adjusting tube 21 is sleeved on both ends of the outer side of the second horizontal adjusting screw 20, and the adjusting tube 21 meshes with the second horizontal adjusting screw 20. The bottom of the adjusting tube 21 is hinged to the cross hinge frame 22, and the bottom end of the cross hinge frame 22 is sleeved with a lower hinge block that can slide on the base 17. Casters 24 are installed at the four corners of the bottom of the base 17.

[0035] In this embodiment, the fixing frame assembly includes an L-shaped fixing frame 19, a limiting spring 23, and a side clamping plate 25. The L-shaped fixing frame 19 is installed on both sides of the top of the bow-shaped heat dissipation pipe 18. The limiting spring 23 is installed at equal intervals on the inner side of the L-shaped fixing frame 19. The other end of the limiting spring 23 is installed with a side clamping plate 25.

[0036] A method for using a distributed logistics intelligent refrigerated container includes the following steps:

[0037] Step 1: Adjust the first horizontal adjustment screw 13 by starting the adjustment motor 11. The first horizontal adjustment screw 13 drives the sliding door 15 to move and retract to both sides of the inner wall of the box 12, opening the box 12.

[0038] Step 2: Start the electric heater 7, fan blades 4 and water pump 8 to draw the cooling liquid from the water tank 9 and then enter the heat exchange tube 14 through the bow-shaped heat dissipation pipe 18 and the first connecting pipe 6 for heat absorption and cooling.

[0039] Step 3: Cooling and heat dissipation are carried out as the cooling liquid passes through the fan blades 4 and the electric heater 7;

[0040] Step 4: Heat absorption treatment is performed inside the chamber 12 when passing through the heat exchange tube 14;

[0041] Step 5: Place the frozen items to be placed on the bow-shaped heat dissipation tube 18, and then use the limiting spring 23 in conjunction with the side clamping plate 25 to clamp the items;

[0042] Step 6: Start the lifting motor 16 to drive the rotation of the second horizontal adjusting screw 20. The second horizontal adjusting screw 20 drives the adjusting tube 21 to move. The adjusting tube 21 adjusts the cross hinge frame 22. The cross hinge frame 22 unfolds the base 17. The base 17 and the casters 24 lift the box 12 and move it through the casters 24.

[0043] The above are merely further embodiments of the present invention, but the scope of protection of the present invention is not limited thereto. Any equivalent substitutions or modifications made by those skilled in the art within the scope disclosed in the present invention, based on the technical solution and concept of the present invention, shall fall within the scope of protection of the present invention.

Claims

1. A distributed logistics intelligent refrigerated cabinet, characterized in that: The enclosure includes a housing (12), a top cover (1) is installed on the top of the housing (12), and a heat dissipation component is provided at the inner top of the top cover (1). A water tank component is provided inside the top cover (1) and at the top of the housing (12). The water tank component and the heat dissipation component are connected by a water pump (8). A heat exchange pipe (14) is provided in the inner interlayer of the housing (12). The water tank component and the heat dissipation component are both connected to the heat exchange pipe (14) to form a heat dissipation circulation system. A first horizontal adjustment screw component is provided on the inner top side of the housing (12). A sliding door (15) is sleeved on the outer side of the first horizontal adjustment screw component. A second horizontal adjustment screw component is provided at the inner bottom of the housing (12). A lifting frame component is sleeved on the outer side of the second horizontal adjustment screw component. Bow-shaped heat dissipation pipes (18) are installed at equal intervals inside the housing (12), and a fixing frame component is installed on the top of the bow-shaped heat dissipation pipes (18). The heat dissipation assembly includes a fan blade (4), a fan cover (3), a heat absorption chamber (5), an electric heater (7), and an arc-shaped heat dissipation pipe (18). The heat absorption chamber (5) is installed on one side of the top of the top cover (1). The arc-shaped heat dissipation pipe (18) is built inside the heat absorption chamber (5). The electric heater (7) is installed at the bottom of the heat absorption chamber (5). The fan cover (3) is installed on the top of the top cover (1) and communicates with the heat absorption chamber (5). The fan blade (4) is built inside the fan cover (3). One end of the arc-shaped heat dissipation pipe (18) is connected to one end of the water pump (8). The water tank assembly includes a water tank (9), a second connecting pipe (10), and a solenoid valve (2). The water tank (9) is installed inside the top cover (1) and at the top of the box body (12). The top of the water tank (9) is connected to the solenoid valve (2) that penetrates the top cover (1). The second connecting pipe (10) is connected to one side of the water tank (9). The other end of the second connecting pipe (10) is connected to the heat exchange pipe (14). The bottom of the other side of the water tank (9) is connected to the other end of the water pump (8). The first horizontal adjusting screw assembly includes an adjusting motor (11) and a first horizontal adjusting screw (13). The adjusting motor (11) is installed at the top of one side of the housing (12). The output end of the adjusting motor (11) passes through the housing (12) and the first horizontal adjusting screw (13) is installed thereon. A sliding door (15) is engaged on the outside of the first horizontal adjusting screw (13). The second level adjustment screw assembly includes a lifting motor (16) and a second level adjustment screw (20). The lifting motor (16) is installed on one side of the inner bottom of the housing (12), and the output end of the lifting motor (16) is installed through the housing (12) to install the second level adjustment screw (20).

2. The distributed logistics intelligent refrigerated cabinet according to claim 1, characterized in that: The lifting frame assembly includes an adjusting tube (21), a cross hinge frame (22), a base (17), and casters (24). The adjusting tube (21) is sleeved on both ends of the outer side of the second horizontal adjusting screw (20), and the adjusting tube (21) meshes with the second horizontal adjusting screw (20). The bottom of the adjusting tube (21) is hinged with a cross hinge frame (22), and the bottom end of the cross hinge frame (22) is sleeved with a lower hinge block that can slide on the base (17). Casters (24) are installed at the four corners of the bottom of the base (17).

3. The distributed logistics intelligent refrigerated cabinet according to claim 2, characterized in that: The mounting bracket assembly includes an L-shaped mounting bracket (19), a limiting spring (23), and a side clamping plate (25). The L-shaped mounting bracket (19) is installed on both sides of the top of the bow-shaped heat dissipation pipe (18). The limiting spring (23) is installed at equal intervals on the inner side of the L-shaped mounting bracket (19). The side clamping plate (25) is installed on the other end of the limiting spring (23).

4. The method of using a distributed logistics intelligent refrigerated cabinet according to claim 3, characterized in that: Includes the following steps: Step 1: Adjust the first horizontal adjustment screw (13) by starting the adjustment motor (11), and drive the sliding door (15) to move and retract to both sides of the inner wall of the box (12) to open the box (12); Step 2: Start the electric heater (7), fan blades (4) and water pump (8) to draw the cooling liquid out of the water tank (9) and then enter the heat exchange tube (14) through the bow-shaped heat dissipation pipe (18) and the first connecting pipe (6) for heat absorption and cooling treatment; Step 3: Cooling and heat dissipation treatment is carried out when the cooling liquid passes through the fan blades (4) and the electric heater (7); Step 4: Heat absorption treatment is performed inside the box (12) when passing through the heat exchange tube (14); Step 5: Place the frozen items to be placed on the bow-shaped heat dissipation tube (18), and then clamp the items with the limiting spring (23) and the side clamping plate (25); Step 6: Start the lifting motor (16) to drive the rotation of the second horizontal adjusting screw (20), drive the adjusting tube (21) to move through the second horizontal adjusting screw (20), adjust the cross hinge frame (22) through the adjusting tube (21), unfold the base (17) through the cross hinge frame (22), lift the box (12) through the base (17) and the casters (24), and move it through the casters (24).

Citation Information

Patent Citations

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