Mobile intelligent air-conditioning square bin

By installing retractable right and left warehouse bodies on the truck and using hydraulic cylinders and scissor-type telescopic mechanisms to expand the interior space of the square warehouse, the problem of the inability to expand the interior space in existing technologies is solved, and emergency applications and intelligent temperature control of large working spaces are realized.

CN223358412UActive Publication Date: 2025-09-19JINAN BOWO ENERGY TECH CO LTD
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Patent Information

Application Number
CN202423233124.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-26
Publication Date
2025-09-19
Estimated Expiration
2034-12-26

AI Technical Summary

Technical Problem

Existing cube warehouse technology has improved the internal space utilization, but it cannot expand the internal space of the cube warehouse, which limits its usage scenarios.

Method used

A mobile intelligent air-conditioned cubicle is designed. The internal space is expanded using a hydraulic cylinder and a scissor-type telescopic mechanism. By installing retractable right and left cubicle bodies on a truck, the cubicle space is nearly tripled in size. An air-conditioning system is also equipped to achieve intelligent temperature control.

Benefits of technology

It realizes the expansion of the internal space of the square warehouse, increases the floor area, expands the application scenarios, is suitable for emergency situations that require a large working space, and improves the sealing and convenience of equipment management.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of movable square bins, in particular to a movable intelligent air conditioner square bin which comprises a bin body, the bin body comprises a main bin body, a right bin body, a left bin body, first hydraulic cylinders and a telescopic device, the main bin body is a cuboid-shaped shell with openings in the left side and the right side, and the four corners of the outer portion of the main bin body are each provided with one first hydraulic cylinder in an inverted mode; the right bin body is a cuboid-shaped shell with the left side open, the left bin body is a cuboid-shaped shell with the right side open, the inner sides of the two ends of the main bin body are connected with the outer sides of the two ends of the right bin body and the outer sides of the two ends of the left bin body through telescopic devices respectively, a right side plate is arranged on the right side of the right bin body, and a left side plate is arranged on the left side of the left bin body. The right side plate, the left side plate and the main bin body are the same in side size. According to the movable intelligent air conditioner square bin, the internal space of the square bin can be expanded, the occupied area of the square bin is increased, the application scene of the square bin is expanded, and the square bin can be used for emergency occasions needing large-area space.
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Description

Technical Field

[0001] The utility model relates to the technical field of mobile square warehouses, in particular to a mobile intelligent air-conditioning square warehouse. Background Art

[0002] Mobile container warehouses are modular, standardized structures with high flexibility, allowing for quick installation and disassembly. They can be used as first aid stations, temporary dormitories, or office command centers during field rescue, construction, and operational operations.

[0003] Prior art cubicle technology focuses on internal space utilization. The utility model patent, granted with authorization number CN214091189U, provides a mobile cubicle comprising a mobile room, an air purifier, storage cabinets, an LCD TV, an aromatherapy device, chairs, and a Wi-Fi module. The top panel has an upper duct, with one air purifier mounted on the outer end of the top panel, and its air inlet connected to the upper duct. A lower duct is mounted on the lower portion of one side panel, with another air purifier mounted on the side of the lower duct, and its air inlet connected to the lower duct. The room is equipped with storage cabinets, a Wi-Fi module, a TV, and an aromatherapy device. The chairs include a seat plate and a sleeve. Two guide rods on either side of the seat plate's rear end are respectively sleeved within two sleeves, with the outer rear ends of the sleeves mounted on the inner sides of the side panels. Each seat has a slot and a fixing plate at its upper end. The side panels have multiple open slots at the upper ends of the multiple seats, each with a magnet mounted within its front end. This novel design provides a better environment for people, with foldable seats, increasing indoor space utilization and providing excellent conditions for people to smoke, entertain, or work.

[0004] In the process of realizing the present utility model, the inventors found that there are at least the following problems in the prior art: the existing square warehouse technology has made many improvements in the internal space utilization, but cannot expand the internal space of the square warehouse, which limits the use of the square warehouse. Summary of the Invention

[0005] In response to the shortcomings of the existing technology, the utility model develops a mobile intelligent air-conditioning cube, which can expand the internal space of the cube, increase the floor area of ​​the cube, and expand the application scenarios of the cube. It can be used in emergency situations that require a large space.

[0006] The technical solution to the technical problem solved by the present invention is as follows: an embodiment of the present invention provides a mobile intelligent air-conditioning square warehouse, which is installed on a trailer behind a truck, and includes a warehouse body, a generator, an air-conditioning outdoor unit, and an air-conditioning indoor unit. The generator and the air-conditioning outdoor unit are installed on the outside of the warehouse body, and the air-conditioning indoor unit is installed inside the warehouse body. The warehouse body includes a main warehouse body, a right warehouse body, a left warehouse body, a hydraulic cylinder 1, and a telescopic device. The main warehouse body is a rectangular shell with openings on both sides. The hydraulic cylinder 1 is inverted and arranged at the four corners of the outside of the main warehouse body; the right warehouse body is arranged on the right side of the main warehouse body, the right warehouse body is a rectangular shell with an opening on the left side, and the outer contour of the right warehouse body is matched with the inner contour of the main warehouse body; the left warehouse body is arranged on the left side of the main warehouse body, the left warehouse body is a rectangular shell with an opening on the right side, and the outer contour of the left warehouse body is matched with the inner contour of the right warehouse body; the inner sides of both ends of the main warehouse body are connected to the outer sides of both ends of the right warehouse body and the left warehouse body by telescopic devices respectively, a right side plate is provided on the right side of the right warehouse body, and a left side plate is provided on the left side of the left warehouse body, and the right side plate and the left side plate have the same side dimensions as the main warehouse body.

[0007] As an optimization, the telescopic device is a scissor-type telescopic mechanism, which includes a hydraulic cylinder 2, a guide rod 1, a lower connecting rod, an upper connecting rod, and a guide rod 2. The hydraulic cylinder 2 and the guide rod 1 are fixed on the inner sides of both ends of the main warehouse body, the hydraulic cylinder 2 is horizontally arranged, the guide rod 1 is vertically arranged on both sides of the front end of the hydraulic cylinder 2, the guide rod 2 is parallel to the guide rod 1, and the guide rod 2 is vertically arranged on the outer sides of both ends of the right warehouse body or the left warehouse body. At least one pair of lower connecting rods and upper connecting rods are arranged, and a rotating shaft is installed in the center of the lower connecting rod and the upper connecting rod. A sleeve is provided at the end of the telescopic rod of the hydraulic cylinder 2, and the sleeve connects the central rotating shaft of the first pair of lower connecting rods and upper connecting rods. One end of the first pair of lower connecting rods and upper connecting rods is respectively hinged to a sleeve, and the sleeve is installed on the guide rod 1. The other end of the lower connecting rod and the upper connecting rod is respectively hinged to one end of the next upper connecting rod and the lower connecting rod. The end of the last pair of lower connecting rods and upper connecting rods is hinged to a sleeve, and the sleeve is installed on the guide rod 2.

[0008] As an optimization, a guard plate is set on the inner side of both ends of the main warehouse body, the guard plate is U-shaped, and the telescopic device is set under the guard plate.

[0009] As an optimization, both ends of the right bin body are provided with slots corresponding to the size of the guard plate.

[0010] As an optimization, a shielding plate is provided on the left opening edge of the main compartment body, and the shielding plate fits the outer contour of the left compartment body. The rubber pad on the surface of the left compartment body always fits the shielding plate.

[0011] As an optimization, an inward-retracted groove is provided at the opening on the right side of the left warehouse body.

[0012] As an optimization, a row of wheels are provided at the bottom of the right side plate of the right warehouse body and the left side plate of the left warehouse body. The rotating shafts on both sides of the wheels are installed on the right side plate and the left side plate through bearings, and the bottom surface of the wheels is lower than the bottom surface of the right side plate and the left side plate.

[0013] As an optimization, the generator and outdoor air conditioner are mounted on the rear exterior of the main compartment, while the indoor air conditioner is mounted inside the left compartment. The pipeline connecting the outdoor and indoor air conditioners enters through the leftmost opening on the rear end of the left compartment. After the right and left compartments are retracted into the main compartment, the left panel of the left compartment no longer aligns with the side of the main compartment, allowing the pipeline connecting the outdoor and indoor air conditioners to enter the left compartment through this gap.

[0014] The effects provided in the content of the utility model are only the effects of the embodiments, rather than all the effects of the utility model. The above technical solution has the following advantages or beneficial effects:

[0015] 1. By setting up a hydraulic cylinder 1 in an inverted position at each of the four corners of the outside of the main warehouse body, after the truck drives to the square warehouse construction site, the telescopic rod of the hydraulic cylinder 1 is controlled to extend and contact the ground to lift the warehouse body. After the truck leaves, the telescopic rod of the hydraulic cylinder 1 is controlled to retract back to its position. Then the telescopic devices at both ends of the main warehouse body are controlled to extend, and the right and left warehouse bodies are pushed out of the main warehouse body, thereby forming a square warehouse space with an area nearly three times the area of ​​the main warehouse body. This mobile intelligent air-conditioned square warehouse can expand the internal space of the square warehouse, increase the floor space of the square warehouse, and expand the application scenarios of the square warehouse. It can be used in emergency situations that require a large work space. In addition, the extension amount of the telescopic device can be flexibly controlled, and the temperature inside the square warehouse can also be set by the air conditioner, which is highly intelligent.

[0016] 2. By setting a circle of shielding plates on the left opening edge of the main warehouse body, the position of the left warehouse body can be limited, making it easier to insert the left warehouse body into the right warehouse body during the recovery process, and the sealing of the square warehouse can be improved.

[0017] 3. By setting an inward-retracted bevel at the opening on the right side of the left bin body, it is convenient to insert the left bin body into the right bin body during the recovery process.

[0018] 4. By setting a row of wheels at the bottom of the right side plate of the right warehouse body and the left side plate of the left warehouse body, the wheels can touch the ground when the right warehouse body and the left warehouse body are deployed and retracted, reducing friction resistance and avoiding wear on the warehouse body.

[0019] 5. All equipment and wiring are placed at the rear end of the main warehouse for easy management and space saving. The pipelines enter the left warehouse through the gap opening, which will not interfere with the operation of the equipment. The air conditioner and power supply equipment can be installed in one piece on the warehouse, avoiding the complicated work of on-site installation. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] Figure 1 This is an overall structural diagram of an embodiment of the utility model in driving state.

[0021] Figure 2This is a rear view of an embodiment of the utility model in driving state.

[0022] Figure 3 This is a diagram of the internal structure of an embodiment of the utility model in the driving state after the right compartment body is hidden.

[0023] Figure 4 、 Figure 9 This is a three-dimensional diagram of an embodiment of the utility model in an unfolded state.

[0024] Figure 5 This is a three-dimensional diagram of an embodiment of the utility model in the unfolded state with the left compartment body hidden.

[0025] Figure 6 for Figure 5 A partial enlarged view of the B area after the guard plate is hidden.

[0026] Figure 7 This is a front view of an embodiment of a telescopic device.

[0027] Figure 8 This is a rear view of an embodiment of the left warehouse body.

[0028] Figure 10 It is the left view of the right warehouse body.

[0029] Figure 11 for Figure 10 A partial enlarged view of the middle C area.

[0030] Among them: truck 1, warehouse body 2, generator 3, air conditioner outdoor unit 4, air conditioner indoor unit 5, main warehouse body 21, right warehouse body 22, left warehouse body 23, hydraulic cylinder 1 24, telescopic device 25, guard plate 211, baffle 212, slot 221, hydraulic cylinder 2 251, guide rod 1 252, lower connecting rod 253, upper connecting rod 254, guide rod 2 255. DETAILED DESCRIPTION

[0031] In order to clearly illustrate the technical features of this solution, the present invention is described in detail below through specific implementation methods and in conjunction with the accompanying drawings.

[0032] Figures 1 to 11 An embodiment of the present invention is as follows: Figure 1 、 Figure 2 、 Figure 3 As shown, a mobile intelligent air-conditioning cubicle is installed on a trailer behind a truck 1, and includes a cubicle body 2, a generator 3, an air-conditioning outdoor unit 4, and an air-conditioning indoor unit 5. The generator 3 and the air-conditioning outdoor unit 4 are installed outside the cubicle body 2, and the air-conditioning indoor unit 5 is installed inside the cubicle body 2. Figure 4As shown, the warehouse body 2 includes a main warehouse body 21, a right warehouse body 22, a left warehouse body 23, a hydraulic cylinder 24, and a telescopic device 25. The main warehouse body 21 is a rectangular shell with openings on the left and right sides, and a hydraulic cylinder 24 is inverted at the four corners of the outside of the main warehouse body 21; the right warehouse body 22 is arranged on the right side of the main warehouse body 21, and the right warehouse body 22 is a rectangular shell with an opening on the left side. The outer contour of the right warehouse body 22 is consistent with the inner contour of the main warehouse body 21; the left warehouse body 23 is arranged on the left side of the main warehouse body 21, and the left warehouse body 23 is a rectangular shell with an opening on the right side. The outer contour of the left warehouse body 23 is consistent with the inner contour of the right warehouse body 22; the inner sides of both ends of the main warehouse body 21 are connected to the outer sides of the right and left warehouse bodies 22 and 23 respectively by telescopic devices 25, a right side plate is provided on the right side of the right warehouse body 22, and a left side plate is provided on the left side of the left warehouse body 23. The right side plate and the left side plate have the same side dimensions as the main warehouse body 21.

[0033] like Figure 2 As shown, the generator 3 and the air conditioner outdoor unit 4 are mounted on the rear exterior of the main compartment 21, and the air conditioner indoor unit 5 is mounted inside the left compartment 23. The pipelines connecting the air conditioner outdoor unit 4 and the air conditioner indoor unit 5 enter through the leftmost opening on the rear end face of the left compartment 23. After the right compartment 22 and the left compartment 23 are retracted into the main compartment 21, the left side panel of the left compartment 23 is no longer in contact with the side of the main compartment 21. The pipelines connecting the air conditioner outdoor unit 4 and the air conditioner indoor unit 5 enter the interior of the left compartment 23 through this gap opening. All equipment and wiring are arranged at the rear end of the main compartment 21 for easy management and space saving. The pipelines enter the interior of the left compartment 23 through the gap opening without interfering with the operation of the equipment. The air conditioner and power supply equipment can be installed integrally on the compartment 2, avoiding the complex work of on-site installation.

[0034] like Figure 5 As shown, a guard plate 211 is provided on the inner side of both ends of the main warehouse body 21. The guard plate 211 is U-shaped, and the telescopic device 25 is provided below the guard plate 211. A card slot 221 corresponding to the size of the guard plate 211 is provided at both ends of the right warehouse body 22. In actual application, a layer of rubber pad is provided inside the main warehouse body 21 and outside the right warehouse body 22 and the left warehouse body 23 to improve the sealing performance. A layer of rubber pad is provided on the surface of the guard plate 211. During the expansion and retraction process of the right warehouse body 22, the rubber pad on the outer surface of the guard plate 211 always fits with the inner contour of the card slot 221, and the rubber pad on the inner cavity surface of the main warehouse body 21 always fits with the rubber pad on the outer surface of the right warehouse body 22. A circle of shielding plate 212 is provided on the left opening edge of the main warehouse body 21. The shielding plate 212 fits with the outer contour of the left warehouse body 23. By providing a shielding plate 212 around the left opening edge of the main compartment body 21, the position of the left compartment body 23 is restricted, making it easier to insert the left compartment body 23 into the right compartment body 22 during the recovery process, and improving the sealing of the square compartment. The rubber pad on the surface of the left compartment body 23 is always in contact with the shielding plate 212.

[0035] like Figure 6 、 Figure 7 As shown, the telescopic device 25 is a scissor-type telescopic mechanism, and the telescopic device 25 includes a hydraulic cylinder 251, a guide rod 252, a lower connecting rod 253, an upper connecting rod 254, and a guide rod 255. The hydraulic cylinder 251 and the guide rod 252 are fixed to the inner sides of both ends of the main warehouse body 21. The hydraulic cylinder 251 is horizontally arranged, and the guide rod 1 252 is vertically arranged on both sides of the front end of the hydraulic cylinder 251. The guide rod 255 is parallel to the guide rod 1 252. The guide rod 255 is vertically arranged on the outer sides of both ends of the right warehouse body 22 or the left warehouse body 23. The lower connecting rod 253 and the upper connecting rod 254 are arranged at least A pair of lower connecting rods 253 and upper connecting rods 254 are installed with a rotating shaft in the center, and a ring is set at the end of the telescopic rod of the second hydraulic cylinder 251. The ring is connected to the central rotating shaft of the first pair of lower connecting rods 253 and upper connecting rods 254. One end of the first pair of lower connecting rods 253 and upper connecting rods 254 is hinged to a sleeve respectively, and the sleeve is installed on the guide rod 1 252. The other end of the lower connecting rod 253 and upper connecting rod 254 is hinged to one end of the next upper connecting rod 254 and lower connecting rod 253 respectively. The end of the last pair of lower connecting rods 253 and upper connecting rods 254 is hinged to a sleeve, and the sleeve is installed on the guide rod 255. When the telescopic rod of the hydraulic cylinder 251 is extended, the angle between the lower connecting rod 253 and the upper connecting rod 254 is reduced, and the distance between the guide rod 1 252 and the guide rod 2 255 is increased, so that the telescopic device 25 can be extended, thereby pushing out the right warehouse body 22 or the left warehouse body 23 to expand; conversely, the telescopic rod of the hydraulic cylinder 251 is retracted to retract the right warehouse body 22 or the left warehouse body 23, and controlling the extension amount of the telescopic rod of the hydraulic cylinder 251 can control the expansion area of ​​the right warehouse body 22 or the left warehouse body 23.

[0036] like Figure 8 As shown, the opening on the right side of the left warehouse body 23 is provided with an inward-retracted bevel. By arranging an inward-retracted bevel at the opening on the right side of the left warehouse body 23, it is convenient to insert the left warehouse body 23 into the right warehouse body 22 during the recovery process.

[0037] like Figure 10 、 Figure 11 As shown, a row of rotating wheels are provided at the bottom of the right side panel of the right warehouse body 22 and the left side panel of the left warehouse body 23. The rotating shafts on both sides of the rotating wheels are mounted on the right and left panels via bearings, and the bottom surfaces of the rotating wheels are lower than the bottom surfaces of the right and left panels. By providing a row of rotating wheels at the bottom of the right side panel of the right warehouse body 22 and the left side panel of the left warehouse body 23, the rotating wheels can touch the ground when the right and left warehouse bodies 22, 23 are deployed and retracted, reducing frictional resistance and preventing wear on the warehouse bodies.

[0038] By placing a hydraulic cylinder 24 in an inverted position at each of the four corners of the main warehouse body 21, after the truck 1 arrives at the square warehouse construction site, the telescopic rod of the hydraulic cylinder 24 is controlled to extend and contact the ground to lift the warehouse body 2. After the truck 1 leaves, the telescopic rod of the hydraulic cylinder 24 is controlled to retract back into position. The telescopic devices 25 at both ends of the main warehouse body 21 are then controlled to extend, pushing the right warehouse body 22 and the left warehouse body 23 out of the main warehouse body 21, thereby forming a square warehouse space with an area nearly three times that of the main warehouse body 21. This mobile intelligent air-conditioned square warehouse can expand the interior space of the square warehouse, increase the square warehouse's floor space, and expand the application scenarios of the square warehouse. It can be used in emergency situations that require a large workspace. In addition, the extension of the telescopic device 25 can be flexibly controlled, and the temperature inside the square warehouse can also be set by the air conditioner, which is highly intelligent. When the square warehouse needs to be recovered, first control the telescopic device 25 to retract and put the right warehouse body 22 and the left warehouse body 23 into the main warehouse body 21, then control the telescopic rod of the hydraulic cylinder 24 to extend and contact the ground to lift the warehouse body 2, and after the forklift behind the truck 1 is inserted under the warehouse body 2, control the telescopic rod of the hydraulic cylinder 24 to retract, and the warehouse body 2 can fall onto the forklift behind the truck 1 to achieve recovery.

[0039] Although the above describes the specific implementation methods of the utility model in conjunction with the accompanying drawings, it does not limit the scope of protection of the utility model. On the basis of the technical solution of the utility model, various modifications or variations that can be made by those skilled in the art without creative work are still within the scope of protection of the utility model.

Claims

1. A mobile intelligent air-conditioning cubicle, mounted on a trailer behind a truck (1), comprising a cubicle body (2), a generator (3), an air-conditioning outdoor unit (4), and an air-conditioning indoor unit (5), wherein the generator (3) and the air-conditioning outdoor unit (4) are mounted outside the cubicle body (2), and the air-conditioning indoor unit (5) is mounted inside the cubicle body (2), and is characterized by: The warehouse body (2) includes a main warehouse body (21), a right warehouse body (22), a left warehouse body (23), a hydraulic cylinder (24), and a telescopic device (25). The main warehouse body (21) is a rectangular parallelepiped shell with openings on the left and right sides. The hydraulic cylinder (24) is inverted and arranged at the four corners of the outside of the main warehouse body (21). The right warehouse body (22) is arranged on the right side of the main warehouse body (21). The right warehouse body (22) is a rectangular parallelepiped shell with an opening on the left side. The outer contour of the right warehouse body (22) is in line with the inner contour of the main warehouse body (21). The left warehouse body (23) is arranged on the left side of the main warehouse body (21). The left warehouse body (23) is a rectangular parallelepiped shell with an opening on the right side. The outer contour of the left warehouse body (23) fits the inner contour of the right warehouse body (22). The inner sides of both ends of the main warehouse body (21) are connected to the outer sides of both ends of the right warehouse body (22) and the left warehouse body (23) through telescopic devices (25). A right side plate is arranged on the right side of the right warehouse body (22), and a left side plate is arranged on the left side of the left warehouse body (23). The side dimensions of the right side plate and the left side plate are the same as those of the main warehouse body (21).

2. A mobile intelligent air-conditioning cubicle according to claim 1, characterized in that: The telescopic device (25) is a scissor-type telescopic mechanism. The telescopic device (25) includes a second hydraulic cylinder (251), a first guide rod (252), a lower connecting rod (253), an upper connecting rod (254), and a second guide rod (255). The second hydraulic cylinder (251) and the first guide rod (252) are fixed to the inner sides of both ends of the main warehouse body (21). The second hydraulic cylinder (251) is horizontally arranged. The first guide rod (252) is vertically arranged on both sides of the front end of the second hydraulic cylinder (251). The second guide rod (255) is parallel to the first guide rod (252). The second guide rod (255) is vertically arranged on the outer sides of both ends of the right warehouse body (22) or the left warehouse body (23). The lower connecting rod (253) and the upper connecting rod (254) are vertically arranged on both sides of the front end of the second hydraulic cylinder (251). At least one pair is provided, a rotating shaft is installed at the center of the lower connecting rod (253) and the upper connecting rod (254), a sleeve is provided at the end of the telescopic rod of the second hydraulic cylinder (251), and the sleeve is connected to the central rotating shaft of the first pair of lower connecting rods (253) and the upper connecting rod (254), one end of the first pair of lower connecting rods (253) and the upper connecting rod (254) is respectively hinged to a sleeve, and the sleeve is installed on the first guide rod (252), and the other end of the lower connecting rod (253) and the upper connecting rod (254) is respectively hinged to one end of the next upper connecting rod (254) and the lower connecting rod (253), and the end of the last pair of lower connecting rods (253) and the upper connecting rod (254) is hinged to a sleeve, and the sleeve is installed on the second guide rod (255).

3. The mobile intelligent air-conditioning cubicle according to claim 2, characterized in that: A guard plate (211) is provided on the inner side of both ends of the main warehouse body (21), the guard plate (211) is U-shaped, and the telescopic device (25) is provided below the guard plate (211).

4. The mobile intelligent air-conditioning cubicle according to claim 3 is characterized in that: Both ends of the right bin body (22) are provided with card slots (221) corresponding to the size of the guard plate (211).

5. The mobile intelligent air-conditioning cubicle according to claim 3 is characterized in that: A circle of shielding plates (212) is provided on the left opening edge of the main warehouse body (21), and the shielding plates (212) fit the outer contour of the left warehouse body (23).

6. The mobile intelligent air-conditioning cubicle according to claim 1, characterized in that: An inwardly contracted groove is provided at the opening on the right side of the left bin body (23).

7. The mobile intelligent air-conditioning cubicle according to claim 1, characterized in that: A row of rotating wheels are provided at the bottom of the right side plate of the right warehouse body (22) and the left side plate of the left warehouse body (23). The rotating shafts on both sides of the rotating wheels are installed on the right side plate and the left side plate through bearings. The bottom surface of the rotating wheels is lower than the bottom surface of the right side plate and the left side plate.

8. The mobile intelligent air-conditioning cubicle according to claim 1, characterized in that: The generator (3) and the air conditioner outdoor unit (4) are installed outside the rear end of the main warehouse body (21), and the air conditioner indoor unit (5) is installed inside the left warehouse body (23). The pipeline connecting the air conditioner outdoor unit (4) and the air conditioner indoor unit (5) enters through the leftmost opening of the rear end surface of the left warehouse body (23).