Intelligent cleaning and storage cabinet system for work clothes of watcher in electric power dispatching control center

By designing an intelligent cleaning storage cabinet system including frame, motor, shaft wheel, circulation chain, auxiliary wheel, sensor, drying lamp, filter device and power supply device, the problem of inconvenient cleaning of work clothes of the power dispatching and control center staff is solved, and automated cleaning, drying and storage is achieved, improving the convenience of use and equipment reliability.

CN223008692UActive Publication Date: 2025-06-24CHINA YANGTZE POWER
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Patent Information

Application Number
CN202421333197.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-06-12
Publication Date
2025-06-24
Estimated Expiration
2034-06-12

AI Technical Summary

Technical Problem

The work clothes of the on-duty officer of the power dispatching and control center are inconvenient to clean, inconsistent standards, and irregular storage, resulting in inconsistent cleaning and drying, and there are problems such as blockage and leakage of cleaning solvents, and leakage of power supply device operation failures.

Method used

Design an intelligent cleaning storage cabinet system including frame, motor, shaft wheel, circulation chain, auxiliary wheel, sensor, drying lamp, filter device and power supply device. The automatic cleaning, drying and storage of clothes is achieved through the circulation chain and motor, and automated control is achieved using sensors and controllers to ensure the consistency and safety of the cleaning and drying process.

Benefits of technology

It realizes automatic cleaning, drying and storage of work clothes, solves the problems of inconvenient cleaning and inconsistent standards, reduces the risks of blockage and leakage of cleaning solvents, and improves the reliability and convenience of power supply devices.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

An intelligent cleaning and storage cabinet system for work clothes of a watcher in a power dispatching control center comprises a frame, two motors are installed on the two sides of the top of the frame, the output end of each motor is connected with a shaft wheel, a circulating chain is rotationally connected between the two shaft wheels, and the circulating chain is rotationally connected with five auxiliary wheels. The inner wall of the top of the frame is further fixedly connected with a clothes placement sensor, a cleaning sensor, a drying sensor and a clothes arrangement and storage sensor, the frame is further provided with a first partition layer and a second partition layer, the inner wall of the top of the frame is further fixedly connected with two circuit connectors, and the two ends of the lower portion of each circuit connector are connected with two drying lamp tubes respectively. A filtering device is arranged at the bottom of the frame, a water inlet pipe is arranged on one side of the filtering device, a water drainage pipe is arranged on the other side of the filtering device, the filtering device is connected with an inlet of a centrifugal pump, and an outlet of the centrifugal pump is connected with a plurality of nozzles. The intelligent cleaning storage cabinet system is easy to operate, and all modules of the intelligent cleaning storage cabinet system work independently.
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Description

Technical Field

[0001] The utility model relates to the field of automatic clothing storage, and particularly relates to an intelligent cleaning and storage cabinet system for the work uniforms of the duty officers in the power dispatching control center. Background Art

[0002] The daily work and rest of the duty officers in the power dispatching control center is a 24-hour shift system. During their duty, they need to wear customized suits, dress pants and shirts, hereinafter collectively referred to as work uniforms. Due to this work characteristic, they need to change clothes frequently. Usually, dispatchers are equipped with multiple sets of work uniforms. After each set is used, they take it home for cleaning and drying, in preparation for later reuse. Over time, the differences in the cleaning process will cause varying degrees of wear to the work uniforms, and there is even a situation where work uniforms are lost, which is not conducive to the fine development of fixed-position management. Therefore, an intelligent cleaning and storage cabinet system for the work uniforms of the duty officers in the power dispatching control center is needed to achieve the function of automatically cleaning and storing clothes without taking them home, which greatly facilitates the process of employees changing clothes. Content of the Utility Model

[0003] The purpose of the utility model is to solve the problems that the existing work uniforms of the duty officers in the power dispatching control center are inconvenient to clean, the standards are not unified, and the storage is not standardized, to solve the automation problem of the coherent operation of the placement, cleaning, drying, filtering and storage and sorting of work uniforms, to solve the problem of integration of drying and cleaning, to solve the problems of blockage and leakage of cleaning solvents, and to solve the problem of electric leakage when the power supply device malfunctions.

[0004] An intelligent cleaning and storage cabinet system for the work uniforms of the duty officers in the power dispatching control center includes a frame. Two motors are installed on both sides of the top of the frame. The output end of each motor is connected to a shaft wheel. A circulating chain is rotatably connected between the two shaft wheels. The circulating chain is rotatably connected to five auxiliary wheels. The inner wall of the top of the frame is also fixedly connected with a clothing placement sensor, a cleaning inductor, a drying inductor, and a clothing sorting and storage inductor. The frame is also provided with a first partition layer and a second partition layer. The inner wall of the top of the frame is also fixedly connected with two circuit connectors. Two drying tubes are respectively connected to both ends below each circuit connector. Drying tube sensors are installed on all four drying tubes. A filtering device is provided at the bottom of the frame. A water inlet pipe is installed on one side of the filtering device, and a drain pipe is installed on the other side. The filtering device is connected to the inlet of a centrifugal pump, and the outlet of the centrifugal pump is connected to a plurality of nozzles.

[0005] There are four drying tube sensors. The power supply wires and data wires of the drying tube sensors are connected in parallel with the controller of the human-computer interaction device, and the controller is also connected to the control panel.

[0006] Two partition doors are installed in the second partition layer, and a square hole is provided between the connections of the two partition doors. The square hole facilitates the passage of the circulating chain. Two opening and closing power devices are fixedly connected to the top of the first partition layer. The output end of each opening and closing power device is connected to the partition door in a rolling manner. A wiring hole is also provided at the top of the first partition layer. The partition door is slidably connected to the bottom wall of the second partition layer.

[0007] Multiple fixing buckles on the circulating chain.

[0008] An inlet valve is installed on the water inlet pipe, and the sensor data line of the inlet valve is connected to the controller of the human-machine interaction device.

[0009] A drain valve is installed on the drain pipe, and the sensor data line of the drain valve is connected to the controller of the human-machine interaction device.

[0010] Two partition doors are installed in the first partition layer, and a square hole is provided between the connections of the two partition doors. The square hole facilitates the passage of the circulating chain. Two opening and closing power devices are fixedly connected to the top of the first partition layer. The output end of each opening and closing power device is connected to each partition door in a rolling manner. A wiring hole is also provided at the top of the first partition layer. The partition door is slidably connected to the bottom wall of the first partition layer.

[0011] Auxiliary wheels are fixedly connected below the clothing placement sensor, the cleaning sensor and the drying sensor. Two auxiliary wheels are connected below the clothing sorting and storage sensor.

[0012] There are eight nozzles, and each nozzle is arranged inside four of the drying tubes.

[0013] The sorting and storage sensor, the circuit connector and the drying tube sensor are connected to the controller of the human-machine interaction device through data lines. The human-machine interaction device is connected to the power supply device, and the power supply device is connected with a leakage protector.

[0014] Preferably, the main controller is connected to control the motor, the clothing placement sensor, the cleaning sensor, the drying sensor, the clothing sorting and storage sensor, the opening and closing power device, the centrifugal pump, the inlet valve, and the drain valve.

[0015] Preferably, the circulating chain is arranged to penetrate through the square hole.

[0016] Preferably, the buckle is used for fixedly connecting the work clothes. Preferably, the fixing buckles pass through the clothing placement sensor, the cleaning sensor, the drying sensor and the sorting and storage sensor in sequence.

[0017] Preferably, two auxiliary wheels are connected below the clothing sorting and storage sensor to bear more mass of the clothing hanging parts.

[0018] Preferably, between the first partition layer and the second partition layer is a clothing cleaning and drying module. The clothing placement sensor is installed on the outer side of the first partition layer, and the cleaning sensor and the drying sensor are arranged on the inner sides of the first partition layer and the second partition layer. The cleaning sensor is close to the first partition layer side, and the drying sensor is close to the second partition layer side. The clothing sorting and storage sensor is installed on the outer side of the second partition layer.

[0019] Preferably, the two partition doors slide outwardly driven by the output end of the opening and closing power device.

[0020] Preferably, the five auxiliary wheels reduce the horizontal tension of the circulating chain, making the operation more stable. The auxiliary wheels can also improve the quality of the load-bearing clothing placed on the circulating chain. The two sprocket wheels drive the circulating chain to rotate in a cycle, and stable transmission is achieved through the auxiliary drive of the five auxiliary wheels.

[0021] Preferably, the eight nozzles are arranged inside the four drying tubes to prevent the solvent from being sprayed on the drying tubes, causing uneven heating on the surface of the drying tubes and reducing the service life of the drying tubes.

[0022] Preferably, after the user inputs an instruction by operating the control panel in the man-machine interaction device, the controller in the control module executes the corresponding instruction. Preferably, the leakage protector is connected to the ground, and the power supply device provides three-phase power.

[0023] Compared with the prior art, the beneficial effects of the present utility model are as follows:

[0024] 1. The operation of this device is simple. Each module of the intelligent cleaning and storage cabinet system works independently, and can run through via the top conduction and conveying circulating chain. The power supply device and the leakage protector in the power control module can minimize the probability of power failure or malfunction of the device.

[0025] 2. The first partition layer and the second partition layer at both ends of the cleaning and drying module of the device are folded and spliced by plastic-steel material panels, and the joints are provided with rubber gaskets, having a certain ability to prevent water and air leakage; solving the problems of cleaning solvent blockage and leakage. The device can realize the standard of fixed-position management of the clothing of power production dispatching personnel and the convenience of use.

[0026] 3. The intelligent cleaning and storage cabinet system for the work clothes of the duty officers in the power dispatching control center of the present invention solves the automation problem of the coherent operation of the placement, cleaning, drying, filtering and sorting of the work clothes. The drying and cleaning are set intermittently, solving the problem of integration of drying and cleaning.

[0027] 4. For the work clothes of the 24-hour shift operation positions, the placement, cleaning, drying, filtering and sorting can be carried out in a coherent manner. BRIEF DESCRIPTION OF THE DRAWINGS

[0028] Figure 1It is a front structural schematic diagram of the intelligent cleaning and storage cabinet system for the work uniforms of the duty officers in the new-type power dispatching control center;

[0029] Figure 2 It is a structural schematic diagram at the A-4 cross-section of the first partition layer;

[0030] Figure 3 It is a structural schematic diagram of the intelligent cleaning and storage cabinet system for the work uniforms of the duty officers in the power dispatching control center when looking from the A-2 cross-section to the A-3 cross-section;

[0031] Figure 4 It is a structural schematic diagram at the A-1 cross-section of the second partition layer;

[0032] Reference numerals: axle wheel 1; auxiliary wheel 101; motor 2; buckle 3; endless chain 4; sorting and storage inductor 5; clothing placement sensor 501; circuit connector 6; cleaning inductor 601; drying inductor 602; first partition layer 7; partition door 701; square hole 702; opening and closing power device 703; wiring hole 704; drying lamp tube inductor 8; nozzle 9; drying lamp tube 10; filtering device 11; centrifugal pump 1101; water inlet pipe 12; water inlet valve 1201; drain pipe 13; drain valve 1301; frame 14; human-computer interaction device 15; control panel 1501, controller 1502; power supply device 16; leakage protector 1601; second partition layer 17. Detailed implementation manners

[0033] It should be understood that the orientation or positional relationship indicated by the terms "upper", "top", "bottom", "inner", "outer", "end", etc. is based on the orientation or positional relationship shown in the drawings, and is only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be construed as a limitation to the present invention.

[0034] In addition, the description in the present invention only refers to the preferred embodiments of the present invention and is not used to limit the present invention. Although the present invention has been described in detail with reference to the embodiments, those skilled in the art can still modify the technical solutions described in the embodiments, or perform equivalent replacements for some of the technical features. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention shall be included within the protection scope of the present invention.

[0035] The power supply device 16 supplies power to the motor 2, the sorting and storage inductor 5, the clothing placement sensor 501, the cleaning inductor 601, the drying inductor 602, the opening and closing power device 703, the drying lamp inductor 8, the drying lamp 10, the centrifugal pump 1101, the sensors and control mechanisms of the water inlet valve 1201, and the sensors and control mechanisms of the drain valve 1301, the human-computer interaction device 15, the control panel 1501, and the controller 1502.

[0036] The controller 1502 is controlled and connected to all the sensors of the whole system, including but not limited to the solvent cleaning and drying module, the motor drive module, and the partition opening and closing module. Specifically as follows:

[0037] The controller 1502 is controlled and connected to the motor 2, the sorting and storage inductor 5, the clothing placement sensor 501, the circuit connector 6, the cleaning inductor 601, the drying inductor 602, the opening and closing power device 703, the drying lamp inductor 8, the centrifugal pump 1101, the sensors of the water inlet valve 1201, the sensors of the drain valve 1301, the control panel 1501, the power supply device 16, and the inductor of the leakage protector 1601 through the data line.

[0038] Embodiment 1

[0039] As Figures 1 - 4 shown, the main part inside the device is the intelligent cleaning and storage cabinet system. There is a rubber gasket at the joint of the first partition layer 7 and the second partition layer 17. The intelligent cleaning and storage cabinet system is connected to the AC power supply through the power cord.

[0040] Please refer to Figures 1 to 4 shown, an intelligent cleaning and storage cabinet system for the work clothes of the duty officers in the power dispatching control center, including a frame 14. Two motors 2 are installed on both sides of the top of the frame 14. The output end of each motor 2 is connected with a shaft wheel 1. A circulating chain 4 is rotatably connected between the two shaft wheels 1. The circulating chain 4 is rotatably connected with five auxiliary wheels 101. The inner wall of the top of the frame 14 is also fixedly connected with a clothing placement sensor 501, a cleaning inductor 601, a drying inductor 602, and a clothing sorting and storage inductor 5. The frame 14 is also provided with a first partition layer 7 and a second partition layer 17. The inner wall of the top of the frame 14 is also fixedly connected with two circuit connectors 6. Two drying lamps 10 are respectively connected to both ends below each circuit connector 6. Drying lamp inductors 8 are installed on all four drying lamps 10. A filtering device 11 is arranged at the bottom of the frame 14. A water inlet pipe 12 is installed on one side of the filtering device 11, and a drain pipe 13 is installed on the other side. The filtering device 11 is connected to the inlet of the centrifugal pump 1101, and the outlet of the centrifugal pump 1101 is connected to a plurality of nozzles 9.

[0041] There are four drying lamp tube sensors 8, and the power supply lines and data lines of the drying lamp tube sensors 8 are connected in parallel with the controller 1502 of the human-machine interaction device 15. The controller 1502 is also connected to the control panel 1501.

[0042] There are two partition doors 701 installed in the second partition layer 17. There is a square hole 702 between the connections of the two partition doors 701. The square hole 702 facilitates the passage of the circulating chain 4. Two opening and closing power devices 703 are fixedly connected to the top of the first partition layer 7. The output end of each opening and closing power device 703 is connected to the partition door 701 in a rolling manner. There is also a wiring hole 704 provided at the top of the first partition layer 7. The partition door 701 is slidably connected to the bottom wall of the second partition layer 17. There are multiple fixed buckles 3 on the circulating chain 4.

[0043] An inlet valve 1201 is installed on the water inlet pipe 12, and the sensor data line of the inlet valve 1201 is connected to the controller 1502 of the human-machine interaction device 15.

[0044] A drain valve 1301 is installed on the drain pipe 13, and the sensor data line of the drain valve 1301 is connected to the controller 1502 of the human-machine interaction device 15.

[0045] There are two partition doors 701 installed in the first partition layer 7. There is a square hole 702 between the connections of the two partition doors 701. The square hole 702 facilitates the passage of the circulating chain 4. Two opening and closing power devices 703 are fixedly connected to the top of the first partition layer 7. The output end of each opening and closing power device 703 is connected to each partition door 701 in a rolling manner. There is also a wiring hole 704 provided at the top of the first partition layer 7. The partition door 701 is slidably connected to the bottom wall of the first partition layer 7.

[0046] Auxiliary wheels 101 are fixedly connected below the clothing placement sensor 501, the cleaning sensor 601, and the drying sensor 602. Two auxiliary wheels 101 are connected below the clothing sorting and storage sensor 5.

[0047] There are eight nozzles 9, and each nozzle 9 is arranged inside four drying lamp tubes 10.

[0048] The sorting and storage sensor 5, the circuit connector 6, and the drying lamp tube sensor 8 are connected to the controller 1502 of the human-machine interaction device 15 through data lines. The human-machine interaction device 15 is connected to the power supply device 16, and the power supply device 16 is connected with a leakage protector 1601.

[0049] Preferably, the main controller 1502 is controlled to connect the motor 2, the clothing placement sensor 501, the cleaning sensor 601, the drying sensor 602, the clothing sorting and storage sensor 5, the opening and closing power device 703, the centrifugal pump 1101, the inlet valve 1201, and the drain valve 1301.

[0050] Preferably, the circulating chain 4 is disposed through the square hole 702.

[0051] Preferably, the buckle 3 is used for fixedly connecting the work clothes. Preferably, the fixing buckle 3 sequentially passes through the clothing placement sensor 501, the cleaning sensor 601, the drying sensor 602 and the finishing and storage sensor 5.

[0052] Preferably, two auxiliary wheels 101 are connected below the clothing finishing and storage sensor 5 to bear more mass of the clothing hanging parts.

[0053] Preferably, the clothing cleaning and drying module is provided between the first partition layer 7 and the second partition layer 17. The clothing placement sensor 501 is installed on the outer side of the first partition layer 7, and the cleaning sensor 601 and the drying sensor 602 are arranged on the inner sides of the first partition layer 7 and the second partition layer 17. The cleaning sensor 601 is close to the first partition layer 7, and the drying sensor 602 is close to the second partition layer 17. The clothing finishing and storage sensor 5 is installed on the outer side of the second partition layer 17.

[0054] Preferably, the two partition doors 701 slide outwardly driven by the output end of the opening and closing power device 703.

[0055] Preferably, the five auxiliary wheels 101 reduce the horizontal tension of the circulating chain 4 and make the operation more stable. The auxiliary wheels 101 can also increase the mass of the load-bearing clothes placed on the circulating chain 4. The two shaft wheels 1 drive the circulating chain 4 to rotate in a reciprocating manner, and stable transmission is achieved through the auxiliary transmission of the five auxiliary wheels 101.

[0056] Preferably, eight nozzles 9 are arranged inside the four drying tubes 10 to prevent the solvent from being sprayed on the drying tubes 10, which may cause uneven heating on the surface of the drying tubes 10 and reduce the service life of the drying tubes 10.

[0057] Preferably, after the user inputs an instruction by operating the control panel 1501 in the human-computer interaction device 15, the controller 1502 in the control module executes the corresponding instruction. Preferably, the leakage protector 1601 is connected to the ground B-1, and the power supply device 16 provides three-phase power. The first partition layer 7 and the second partition layer 17 are folded and spliced by plastic-steel material panels, and there are rubber gaskets at the joints with the frame 14, having a certain waterproof and airtight ability.

[0058] Embodiment 2

[0059] Functions of each device of the intelligent cleaning and storage cabinet system and methods for the operation steps of each device:

[0060] The shaft wheel 1 drives the circulating chain 4 to rotate. The output end of the motor 2 is rotationally connected to the shaft wheel 1. The buckle 3 is used to fix the clothes hanger. Inside the circuit connector 6, the power supply wires and data lines of the drying lamp tube inductor 8 and the drying lamp tube 10 are connected, and it is also used to fix the drying lamp tube 10.

[0061] When the clothing placement sensor 501 detects the clothes fixed on the buckle 3 on the circulating chain 4, the controller 1502 opens the opening and closing partition door 701 in the first partition layer 7; the output end of the motor 2 rotates slowly, and the circulating chain 4 moves slowly accordingly. The shaft wheel 1 at the output end of the motor 2 maintains the slow rate of the clothes moving forward.

[0062] When the clothes are conveyed to the cleaning inductor 601 along with the circulating chain 4, and the cleaning inductor 601 detects the clothes fixed on the buckle 3 on the circulating chain 4, the controller 1502 closes the partition door 701 between the first partition layer 7 and the second partition layer 17; the output end of the motor 2 rotates slowly at a speed of 10 - 15 rpm, and the circulating chain 4 continues to move slowly through the square hole 702 provided on the partition door 701.

[0063] The controller 1502 controls the centrifugal pump 1101 to open the inlet valve 1201 and close the drain valve 1301; the solvent is filtered by the filter device 11 along the inlet pipe 12 and then conveyed to the centrifugal pump 1101. The centrifugal pump 1101 atomizes the clean solvent at a high speed through each nozzle 9 and sprays it onto the clothes. The clean solvent dissolves and elutes the stains attached to the clothes. After the nozzles 9 spray and wash the clothes sufficiently for 2 - 3 minutes, the controller 1502 closes the centrifugal pump 1101, closes the inlet valve 1201, opens the drain valve 1301, and closes the motor 2. The eluted clean solvent and stains flow out along the drain pipe 13 together. At the same time, the controller 1502 turns on the drying lamp tube inductor 8. When the drying lamp tube inductor 8 detects the clothes, the controller 1502 turns on the drying lamp tube 10. After drying the clothes for 5 - 10 minutes until the cleaning agent on the clothes completely evaporates, the controller turns on the motor 2, and the circulating chain 4 conveys the clothes forward continuously.

[0064] When it is conveyed to the drying inductor 602, the controller 1502 opens the opening and closing partition door 701 of the second partition layer 17. When it is conveyed to the sorting and storage inductor 5, the controller 1502 closes the partition door 701 of the second partition layer 17. After the partition door 701 of the second partition layer 17 is closed, the clothes continue to be conveyed along the circulating chain 4, and the staff at the user end takes down the washed and dried clothes and seals them for standby.

[0065] The wiring hole 704 is used for the data transmission line of the drying lamp sensor 8, the power supply lines of the drying lamp sensor 8 and the centrifugal pump 1101. The filtering device 11 is used to filter the cleaning agent at the water inlet to prevent the inlet of the centrifugal pump 1101 from being blocked by impurities. The clothes cleaning and storage system in this new model works intermittently. After placing the clothes in the storage system, when the clothes are cleaned and dried, the next batch of clothes can be placed. Multiple clothes can be processed simultaneously.

Claims

1. An intelligent cleaning storage cabinet system for work clothes of duty personnel in a power dispatching and control center, comprising a frame (14), characterized in that: Two motors (2) are installed on both sides of the top of the frame (14); the output end of each motor (2) is connected to a shaft wheel (1); a circulating chain (4) is rotatably connected between the two shaft wheels (1); the circulating chain (4) is rotatably connected to five auxiliary wheels (101); a clothing placement sensor (501), a washing sensor (601), a drying sensor (602), and a clothing arrangement and storage sensor (5) are also fixedly connected to the inner wall of the top of the frame (14); the frame (14) is also provided with a first partition layer (7) and a second partition layer (17). The top inner wall of the frame (14) is also fixedly connected to two circuit connectors (6), and the two ends below each circuit connector (6) are respectively connected to two drying lamp tubes (10), and the four drying lamp tubes (10) are each equipped with a drying lamp tube sensor (8). A filter device (11) is provided at the bottom of the frame (14), and a water inlet pipe (12) is provided on one side of the filter device (11), and a drain pipe (13) is provided on the other side. The filter device (11) is connected to the inlet of a centrifugal pump (1101), and the outlet of the centrifugal pump (1101) is connected to a plurality of nozzles (9).

2. The intelligent cleaning storage cabinet system for work clothes of the duty personnel in the power dispatching and control center according to claim 1 is characterized in that: There are four drying lamp sensors (8), and power lines and data lines of the drying lamp sensors (8) are connected in parallel to the controller (1502) of the human-machine interaction device (15), and the controller (1502) is also connected to the control panel (1501).

3. The intelligent cleaning storage cabinet system for work clothes of the duty personnel in the power dispatching and control center according to claim 1 is characterized in that: The second partition layer (17) is provided with two partition doors (701), a square hole (702) is provided between the connection points of the two partition doors (701), and the square hole (702) is convenient for the circulation chain (4) to pass through; the top of the first partition layer (7) is fixedly connected to two opening and closing power devices (703), and the output end of each opening and closing power device (703) is rollingly connected to the partition door (701); the top of the first partition layer (7) is also provided with a wiring hole (704), and the partition door (701) is slidably connected to the bottom wall of the second partition layer (17).

4. The intelligent cleaning storage cabinet system for work clothes of the duty personnel in the power dispatching and control center according to claim 1 is characterized in that: A plurality of fixing buckles (3) on the circulating chain (4).

5. The intelligent cleaning storage cabinet system for work clothes of the duty personnel in the power dispatching and control center according to claim 1 is characterized in that: The water inlet pipe (12) is provided with a water inlet valve (1201), and a sensor data line of the water inlet valve (1201) is connected to a controller (1502) of the human-machine interaction device (15).

6. The intelligent cleaning storage cabinet system for work clothes of the duty personnel in the power dispatching and control center according to claim 1 is characterized in that: The drainage pipe (13) is provided with a drainage valve (1301), and a sensor data line of the drainage valve (1301) is connected to a controller (1502) of the human-machine interaction device (15).

7. The intelligent cleaning storage cabinet system for work clothes of the duty personnel in the power dispatching and control center according to claim 1 is characterized in that: The first partition layer (7) contains two partition doors (701), a square hole (702) is provided between the connection points of the two partition doors (701), the square hole (702) facilitates the passage of the circulating chain (4), the top of the first partition layer (7) is fixedly connected to two opening and closing power devices (703), the output end of each opening and closing power device (703) is rollingly connected to each partition door (701), the top of the first partition layer (7) is also provided with a wiring hole (704), and the partition door (701) is slidably connected to the bottom wall of the first partition layer (7).

8. The intelligent cleaning storage cabinet system for work clothes of the duty personnel in the power dispatching and control center according to claim 1 is characterized in that: Auxiliary wheels (101) are fixedly connected below the clothing placement sensor (501), the washing sensor (601) and the drying sensor (602), and two auxiliary wheels (101) are connected below the clothing arrangement and storage sensor (5).

9. The intelligent cleaning storage cabinet system for work clothes of the duty personnel in the power dispatching and control center according to claim 1 is characterized in that: There are eight nozzles (9), and each nozzle (9) is arranged on the inner side of four drying lamp tubes (10).

10. The intelligent cleaning storage cabinet system for work clothes of the duty personnel in the power dispatching and control center according to claim 1 is characterized in that: The tidying and storing sensor (5), the circuit connector (6) and the drying lamp sensor (8) are connected to a controller (1502) of a human-machine interaction device (15) via a data line; the human-machine interaction device (15) is connected to a power supply device (16); and the power supply device (16) is connected to a leakage protector (1601).