Classifiable archive management device based on artificial intelligence
By setting up ventilation and dehumidification mechanisms and circulation mechanisms in the file storage cabinets, using motors to drive fan blades for ventilation and dehumidification, and recycling the lightweight activated carbon layer, the problem of file storage cabinets being easily affected by moisture is solved, and automatic dehumidification and efficient file protection are achieved.
Patent Information
- Application Number
- CN202511225549.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-08-29
- Publication Date
- 2025-10-21
AI Technical Summary
Existing filing cabinets are susceptible to moisture and mold, and desiccant bags need to be replaced frequently, making them inconvenient to use.
It adopts a ventilation and dehumidification mechanism, combined with a light activated carbon layer and a circulation mechanism, uses a motor to drive the fan blades for ventilation and dehumidification, and automatically adjusts the dehumidification process through the recycling of the light activated carbon layer.
It realizes the automatic dehumidification of the file storage cabinet, avoids the damage of the files due to moisture, reduces the frequency of desiccant replacement, and improves the dehumidification efficiency and convenience of use.
Smart Images

Figure CN120814725A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of archive management devices, and in particular to an artificial intelligence-based classifiable archive management device. Background Art
[0002] Archives management, also known as archives work, is the general term for all business activities of archives that directly manage archive entities and archive information and provide utilization services. Archives management includes the collection, organization, storage, appraisal, statistics and utilization of archives.
[0003] Currently, files are usually placed in file storage cabinets. When classifying them, the file number is first entered into the computer, and then the file is placed in the corresponding position of the file storage cabinet. When retrieving the file later, only the corresponding file number needs to be entered into the computer. The computer will identify the corresponding file based on artificial intelligence technology, which is convenient and quick to retrieve. However, files are usually paper documents, which are easily damaged by moisture and mold when placed in file storage cabinets. Therefore, existing file storage cabinets usually have vents for ventilation, and then desiccant bags are placed in the file storage cabinets for dehumidification. However, the desiccant bags will become ineffective after a period of use, so they need to be replaced manually on a regular basis, which is very troublesome.
[0004] Based on this, we propose an artificial intelligence-based classifiable archive management device. Summary of the Invention
[0005] The purpose of the present invention is to solve the shortcomings of the prior art and to propose an artificial intelligence-based classifiable archive management device.
[0006] In order to achieve the above object, the present invention adopts the following technical solutions: An artificial intelligence-based classifiable file management device includes a file storage cabinet and a plurality of storage boxes; A ventilation and dehumidification mechanism, the ventilation and dehumidification mechanism comprising a dehumidification box fixedly connected to the side wall of the file storage cabinet, the dehumidification box and the side wall of the file storage cabinet both having ventilation openings, the two ventilation openings being interconnected, the inner wall of the ventilation opening being fixedly connected to a vertical plate, the side wall of the vertical plate being rotatably connected to a rotating shaft, the side wall of the rotating shaft being fixedly connected to a plurality of fan blades, the inner wall of the dehumidification box being sealed and fixedly connected to a sealing plate, the sealing plate dividing the interior of the dehumidification box into a dehumidification chamber and a circulation chamber, the inner wall of the dehumidification chamber being provided with an air inlet, the inner wall of the air inlet being sealed and fixedly connected to an air inlet pipe, and the side wall of the file storage cabinet being provided with an exhaust opening; A circulation mechanism, the circulation mechanism comprising a plurality of slots formed on the upper end of the sealing plate, the plurality of slots being arranged to penetrate the sealing plate, and the inner walls of the plurality of slots being sealed and slidably connected to a lightweight activated carbon layer, an air inlet cavity being formed in the side wall of the dehumidification box, a plurality of air jet holes being formed in the inner wall of the air inlet cavity, the exhaust port being connected to the air inlet cavity via a connecting pipe, and an air outlet being formed in the inner wall of the circulation cavity; A driving mechanism is installed in the dehumidification chamber.
[0007] Preferably, the circulation mechanism also includes a plurality of vertical cylinders fixedly connected to the upper end of the dehumidification box, the inner walls of the plurality of vertical cylinders are sealed and slidably connected with a sliding plug, the lower end of the sliding plug is rotatably connected to a vertical rod, the lower end of the vertical rod extends into the dehumidification chamber and is fixedly connected to the lightweight activated carbon layer, and a first spring is fixedly connected between the sliding plug and the top of the vertical cylinder.
[0008] Preferably, the driving mechanism includes a motor fixedly connected to the top of the dehumidification chamber through a bracket, and the output end of the motor passes through the side wall of the vertical plate and is fixedly connected to the rotating shaft.
[0009] Preferably, multiple impellers are fixedly connected to the side walls of the multiple lightweight activated carbon layers.
[0010] Preferably, a plurality of slide grooves are provided at the bottom of the filing storage cabinet, and the plurality of placement boxes are respectively slidably connected to the inner walls of the plurality of slide grooves, and each of the placement boxes has two symmetrical communication openings on its side wall.
[0011] Preferably, a control mechanism is installed at the upper end of the file storage cabinet, and the control mechanism includes a control box fixedly connected to the upper end of the file storage cabinet, a conductive slide is sealingly and slidingly connected to the inner wall of the control box, a conductive plate is embedded in the inner wall of the control box, and a second spring is fixedly connected between the inner wall of the control box and the conductive slide.
[0012] Preferably, the control mechanism also includes an exhaust hole opened on the inner wall of the control box, the vertical cylinder is connected to the control box through a one-way exhaust pipe, the diameter of the exhaust hole is smaller than the diameter of the one-way exhaust pipe, the inner wall of the vertical cylinder is fixedly connected to a one-way air intake pipe, and the conductive slide, conductive plate, motor and external power supply are electrically connected through wires.
[0013] Preferably, a first solenoid valve is installed on the inner wall of the exhaust hole, a second solenoid valve is installed on the inner wall of the air inlet pipe, a warning light is fixedly connected to the upper end of the control box, and the conductive slide, conductive plate, first solenoid valve, second solenoid valve, warning light and external power supply are electrically connected through wires.
[0014] Preferably, a reset hole is opened on the inner wall of the control box, and a third solenoid valve is installed on the inner wall of the reset hole.
[0015] Preferably, the inner walls of the air inlet and the air outlet are fixedly connected with filters, the side walls of the file storage cabinet are fixedly connected with multiple electric push rods, the movable ends of the electric push rods pass through the side walls of the file storage cabinet and are fixedly connected to the placement box, and the electric push rods are connected to the external control device through a PLC control circuit.
[0016] The present invention has the following beneficial effects: 1. By setting up a ventilation and dehumidification mechanism and starting the motor, the interior of the file storage cabinet can be ventilated and dehumidified to prevent the interior of the file storage cabinet from being too humid, causing the files to be damp and thus damaged; 2. Since the motor generates heat during operation, when air flows through the motor, part of the heat on the motor will be absorbed by the air, thereby dissipating the heat of the motor. When the hot air enters the filing cabinet, it can better remove moisture from the inside of the filing cabinet. 3. By setting a circulation mechanism, as the dehumidification proceeds, the lightweight activated carbon layer will absorb moisture in the air and its own weight will become heavier, and then the lightweight activated carbon layer will move downward into the circulation chamber, and the hot air discharged through the exhaust port will enter the air inlet chamber through the connecting pipe, and then the hot air will be ejected horizontally through multiple jet holes. When the hot air flows through the lightweight activated carbon layer, the hot air will bring out the moisture in the lightweight activated carbon layer, and finally the air will be discharged through the air outlet. Therefore, when the lightweight activated carbon layer absorbs enough moisture, it will automatically enter the circulation chamber and remove the moisture in the lightweight activated carbon layer. Then the lightweight activated carbon layer will become lighter. Under the action of the first spring, the lightweight activated carbon layer will move upward back to the dehumidification chamber to continue dehumidification. Therefore, the lightweight activated carbon layer can be recycled, and there is no need to replace it frequently, which is more convenient to use. 4. By setting up the impeller, the horizontal airflow ejected through the air jet hole acts on the surface of the impeller, which will drive the impeller to rotate, and then drive the light activated carbon layer to rotate, so that all sides of the light activated carbon layer can fully contact the hot air, thereby improving the water removal efficiency of the light activated carbon layer. In addition, when the light activated carbon layer absorbs moisture in the air, it will also rotate, so that all parts of the light activated carbon layer are fully in contact with the air, avoiding the light activated carbon layer from being in contact with the air on one side. When this side absorbs more moisture, the water absorption capacity will decrease, resulting in a decrease in dehumidification capacity; 5. By setting up a control mechanism, the external air humidity can be automatically judged. When the external environment is too humid, the ventilation of the filing cabinet will be automatically stopped. Because the humidity of the external air is very high at this time, it is easy to bring external moisture into the filing cabinet during ventilation, making the humidity inside the filing cabinet more serious. 6. By setting a warning light, a reset hole and a third solenoid valve, when the weather is severely humid, the warning light will be powered off and extinguished to remind the staff that the air is humid at this time and the ventilation of the file storage cabinet has stopped. When the air environment is no longer humid, the third solenoid valve will be energized, and the air in the control box will be discharged through the reset hole, so that the pressure in the control box will be reduced. The conductive slide will move to the left and reset under the action of the second spring, so that the conductive slide will contact the conductive plate again. At this time, the circuit is connected, the first solenoid valve and the second solenoid valve are energized and opened, and the motor will also be energized and started to ventilate and dehumidify the interior of the file storage cabinet again. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Figure 1 This is a schematic diagram of the three-dimensional structure of an artificial intelligence-based classifiable archive management device proposed by the present invention; Figure 2 for Figure 1 Rear view schematic diagram of the mid-structure; Figure 3 for Figure 1 Schematic cross-sectional view of the structure; Figure 4 for Figure 1 Schematic diagram of the cross-sectional structure of the dehumidification box and vertical cylinder; Figure 5 for Figure 4 Schematic diagram of the cross-sectional structure of the middle sealing plate; Figure 6 for Figure 3 A schematic diagram of the structure enlargement at point A; Figure 7 for Figure 3 A magnified schematic diagram of the structure at point B in FIG; Figure 8 for Figure 3 Schematic diagram of the enlarged structure at point C in FIG.
[0018] Figure: 1, filing cabinet; 2, storage box; 3, dehumidification box; 4, ventilation port; 5, vertical plate; 6, rotating shaft; 7, fan blade; 8, sealing plate; 801, dehumidification chamber; 802, circulation chamber; 9, air inlet; 10, air inlet pipe; 11, air outlet; 12, notch; 13, light activated carbon layer; 14, vertical cylinder; 15, sliding plug; 16, vertical rod; 17, first spring; 18, motor; 19, air inlet chamber; 20, spray Air hole; 21. Connecting pipe; 22. Impeller; 23. Slide; 24. Connecting port; 25. Control box; 26. Conductive slide; 27. Conductive plate; 28. Second spring; 29. One-way exhaust pipe; 30. One-way air inlet pipe; 31. Exhaust hole; 32. Air outlet; 33. First solenoid valve; 34. Second solenoid valve; 35. Warning light; 36. Reset hole; 37. Third solenoid valve; 38. Filter; 39. Electric push rod. DETAILED DESCRIPTION
[0019] To make the above-mentioned objects, features, and advantages of the present invention more readily apparent, specific embodiments of the present invention are described in detail below with reference to the accompanying drawings. The following description sets forth numerous specific details to facilitate a full understanding of the present invention. However, the present invention can be implemented in many other ways than those described herein, and those skilled in the art may make similar modifications without departing from the scope of the present invention. Therefore, the present invention is not limited to the specific embodiments disclosed below.
[0020] Reference Figures 1-8 , an artificial intelligence-based classifiable file management device, comprising a file storage cabinet 1 and a plurality of placement boxes 2; The ventilation and dehumidification mechanism includes a dehumidification box 3 fixedly connected to the side wall of the file storage cabinet 1. The dehumidification box 3 and the side wall of the file storage cabinet 1 are both provided with ventilation holes 4. The two ventilation holes 4 are interconnected. The inner wall of the ventilation hole 4 is fixedly connected to a vertical plate 5. The side wall of the vertical plate 5 is rotatably connected to a rotating shaft 6. The side wall of the rotating shaft 6 is fixedly connected to a plurality of fan blades 7. The inner wall of the dehumidification box 3 is sealed and fixedly connected to a sealing plate 8. The sealing plate 8 divides the interior of the dehumidification box 3 into two parts: a dehumidification chamber 801 and a circulation chamber 802. The inner wall of the dehumidification chamber 801 is provided with an air inlet 9. The inner wall of the air inlet 9 is sealed and fixedly connected to an air inlet pipe 10. An exhaust outlet 11 is provided on the side wall of the file storage cabinet 1; The circulation mechanism includes a plurality of slots 12 formed on the upper end of the sealing plate 8. The plurality of slots 12 are all provided through the sealing plate 8, and the inner walls of the plurality of slots 12 are all sealed and slidably connected with a lightweight activated carbon layer 13. An air inlet cavity 19 is formed in the side wall of the dehumidification box 3, and a plurality of air injection holes 20 are formed in the inner wall of the air inlet cavity 19. The exhaust port 11 is connected to the air inlet cavity 19 through a connecting pipe 21. An air outlet 32 is formed on the inner wall of the circulation cavity 802. A driving mechanism is installed in the dehumidification chamber 801.
[0021] The circulation mechanism also includes a plurality of vertical cylinders 14 fixedly connected to the upper end of the dehumidification box 3. The inner walls of the plurality of vertical cylinders 14 are sealed and slidably connected with a sliding plug 15. The lower end of the sliding plug 15 is rotatably connected to a vertical rod 16. The lower end of the vertical rod 16 extends into the dehumidification chamber 801 and is fixedly connected to the lightweight activated carbon layer 13. A first spring 17 is fixedly connected between the sliding plug 15 and the top of the vertical cylinder 14.
[0022] The driving mechanism includes a motor 18 fixedly connected to the top of the dehumidification chamber 801 through a bracket. The output end of the motor 18 passes through the side wall of the vertical plate 5 and is fixedly connected to the rotating shaft 6.
[0023] Furthermore, when the files are stored, the motor 18 is started to drive the rotating shaft 6 to rotate, and then drive the multiple fan blades 7 to rotate. Under the action of the multiple fan blades 7, the external air will be drawn into the dehumidification chamber 801 through the air inlet pipe 10 and the air inlet 9. The air flows from left to right in the dehumidification chamber 801. When it flows through the lightweight activated carbon layer 13, the moisture in the air will be absorbed by the lightweight activated carbon layer 13, and then the air will flow through the motor 18 and the vent 4 into the file storage cabinet 1, thereby ventilating the files, and finally the air will be discharged through the exhaust port 11.
[0024] It is worth mentioning that since the motor 18 generates heat during operation, when air flows through the motor 18, part of the heat on the motor 18 will be absorbed by the air, thereby dissipating the heat of the motor 18, and when the hot air enters the filing cabinet 1, it can better dehumidify the interior of the filing cabinet 1.
[0025] Furthermore, as dehumidification proceeds, the lightweight activated carbon layer 13 will become heavier after absorbing moisture in the air, and then the lightweight activated carbon layer 13 will move downward into the circulation chamber 802, and the hot air discharged through the exhaust port 11 will enter the air inlet chamber 19 through the connecting pipe 21, and then the hot air will be ejected horizontally through multiple jet holes 20. When the hot air flows through the lightweight activated carbon layer 13, the hot air will bring out the moisture in the lightweight activated carbon layer 13, and finally the air will be discharged through the air outlet 32. Therefore, when the lightweight activated carbon layer 13 absorbs enough moisture, it will automatically enter the circulation chamber 802 and remove the moisture in the lightweight activated carbon layer 13. Then the lightweight activated carbon layer 13 will become lighter. Under the action of the first spring 17, the lightweight activated carbon layer 13 will move upward back to the dehumidification chamber 801 to continue dehumidification. Therefore, the lightweight activated carbon layer 13 can be recycled without frequent replacement, and it is more convenient to use.
[0026] Multiple impellers 22 are fixedly connected to the side walls of the multiple lightweight activated carbon layers 13.
[0027] Furthermore, the lateral airflow ejected through the air jet hole 20 acts on the surface of the impeller 22, which will drive the impeller 22 to rotate, and then drive the lightweight activated carbon layer 13 to rotate, so that each surface of the lightweight activated carbon layer 13 can fully contact the hot air, thereby improving the water removal efficiency of the lightweight activated carbon layer 13, and the lightweight activated carbon layer 13 will also rotate when absorbing moisture in the air, so that each part of the lightweight activated carbon layer 13 is fully in contact with the air, avoiding the lightweight activated carbon layer 13 from being in contact with the air on one side. When this side absorbs more moisture, the water absorption capacity will decrease, thereby causing the dehumidification capacity to decrease.
[0028] A plurality of slide grooves 23 are provided at the bottom of the filing cabinet 1, and a plurality of placement boxes 2 are slidingly connected to the inner walls of the plurality of slide grooves 23 respectively. Two communication ports 24 are symmetrically provided on the side wall of each placement box 2. A plurality of electric push rods 39 are fixedly connected to the side wall of the filing cabinet 1. The movable end of the electric push rod 39 passes through the side wall of the filing cabinet 1 and is fixedly connected to the placement box 2. The electric push rod 39 is connected to the external control device through the PLC control circuit.
[0029] Furthermore, when files are stored in categories, the file number is first input into the computer. Then, the computer will control the control device based on artificial intelligence technology, so that the corresponding electric push rod 39 is energized and extended, and then the corresponding placement box 2 will be pushed out. The file can then be placed in the corresponding placement box 2 for classified storage. The same is true when retrieving files. Enter the corresponding file number, and the file in the placement box 2 will be pushed out for easy retrieval.
[0030] A control mechanism is installed at the upper end of the file storage cabinet 1, and the control mechanism includes a control box 25 fixedly connected to the upper end of the file storage cabinet 1, a conductive slide 26 is sealed and slidably connected to the inner wall of the control box 25, a conductive plate 27 is embedded in the inner wall of the control box 25, and a second spring 28 is fixedly connected between the inner wall of the control box 25 and the conductive slide 26.
[0031] The control mechanism also includes an exhaust hole 31 opened on the inner wall of the control box 25. The vertical cylinder 14 is connected to the control box 25 through a one-way exhaust pipe 29. The diameter of the exhaust hole 31 is smaller than the diameter of the one-way exhaust pipe 29. The one-way exhaust pipe 29 only allows the air in the vertical cylinder 14 to enter the control box 25. The inner wall of the vertical cylinder 14 is fixedly connected with a one-way air intake pipe 30. The one-way air intake pipe 30 only allows external air to enter the vertical cylinder 14. The conductive slide 26, the conductive plate 27, the motor 18 and the external power supply are electrically connected by wires.
[0032] A first solenoid valve 33 is installed on the inner wall of the exhaust hole 31, a second solenoid valve 34 is installed on the inner wall of the air inlet pipe 10, a warning light 35 is fixedly connected to the upper end of the control box 25, and the conductive slide 26, the conductive plate 27, the first solenoid valve 33, the second solenoid valve 34, the warning light 35 and the external power supply are electrically connected through wires.
[0033] When the light activated carbon layer 13 is in the process of dehumidification, the light activated carbon layer 13 will move up and down. When the light activated carbon layer 13 moves downward, the light activated carbon layer 13 will drive the sliding plug 15 to slide downward in a sealed manner through the vertical rod 16. At this time, the external air will be sucked into the vertical cylinder 14 through the one-way air inlet pipe 30. When the light activated carbon layer 13 moves upward, it will drive the sliding plug 15 to slide upward in a sealed manner through the vertical rod 16. At this time, the air in the vertical cylinder 14 will enter the control box 25 through the one-way exhaust pipe 29. At this time, the pressure in the control box 25 increases, which will push the conductive slide plate 26 to move to the right (such as Figure 3 As shown), the air entering the control box 25 will be slowly discharged through the exhaust hole 31. Since the aperture of the exhaust hole 31 is smaller than the diameter of the one-way exhaust pipe 29, the air intake speed of the control box 25 is greater than the exhaust speed. Therefore, when the air is relatively dry, the lightweight activated carbon layer 13 cannot absorb much moisture. Therefore, the amplitude and speed of the up and down movement of the lightweight activated carbon layer 13 are relatively small. Therefore, the conductive slide 26 will slowly reset after moving a short distance to the right. When the air is very humid, the lightweight activated carbon layer 13 will absorb a large amount of moisture in a short time. At this time, the lightweight activated carbon layer 13 The amplitude and speed of the up and down movement are both fast, and a large amount of air will be pumped into the control box 25 in a short time, while the exhaust speed is slow, so the conductive slide 26 will continue to move to the right until the conductive slide 26 moves away from the conductive plate 27. At this time, the circuit will be disconnected, and the first solenoid valve 33 and the second solenoid valve 34 will be powered off and closed, and the motor 18 will be powered off and stopped. At this time, ventilation of the filing cabinet 1 will stop, because the humidity of the external air is very high at this time, and it is easy to bring external moisture into the filing cabinet 1 during ventilation, making the humidity in the filing cabinet 1 more serious.
[0034] A reset hole 36 is formed on the inner wall of the control box 25 , and a third solenoid valve 37 is installed on the inner wall of the reset hole 36 .
[0035] Furthermore, when the weather is severely humid, the warning light 35 will be powered off and extinguished, reminding the staff that the air is humid at this time and the ventilation of the file storage cabinet 1 has stopped. When the air environment is no longer humid, the third solenoid valve 37 is energized, and the air in the control box 25 is discharged through the reset hole 36, so that the pressure in the control box 25 is reduced, and the conductive slide 26 will move to the left and reset under the action of the second spring 28, so that the conductive slide 26 contacts the conductive plate 27 again. At this time, the circuit is connected, the first solenoid valve 33 and the second solenoid valve 34 are energized and opened, and the motor 18 is also energized and started, and the interior of the file storage cabinet 1 is ventilated and dehumidified again. Finally, the third solenoid valve 37 is powered off to close it, and the reset hole 36 cannot be exhausted.
[0036] The inner walls of the air inlet 9 and the air outlet 32 are fixedly connected with a filter 38, which can intercept dust in the air and prevent external dust from entering the file storage cabinet 1 through the air inlet 9 and the air outlet 32, thereby causing the files to be dirty.
[0037] In the present invention, when files are classified and stored, the file number is first input into the computer. Then, the computer will control the control device based on artificial intelligence technology, so that the corresponding electric push rod 39 is energized and extended, and then the corresponding placement box 2 will be pushed out. The file can then be placed in the corresponding placement box 2 for classified storage. The same is true when retrieving files. The corresponding file number is input, and the file in the placement box 2 will be pushed out for easy retrieval.
[0038] When the files are stored, the motor 18 is started to drive the rotating shaft 6 to rotate, and then drive the multiple fan blades 7 to rotate. Under the action of the multiple fan blades 7, the external air will be drawn into the dehumidification chamber 801 through the air inlet pipe 10 and the air inlet 9. The air flows from left to right in the dehumidification chamber 801. When it flows through the lightweight activated carbon layer 13, the moisture in the air will be absorbed by the lightweight activated carbon layer 13, and then the air will flow through the motor 18 and the vent 4 into the file storage cabinet 1, and then the air will circulate between the multiple placement boxes 2 through the multiple connecting ports 24, thereby ventilating the files, and finally the air will be discharged through the exhaust port 11.
[0039] Since the motor 18 generates heat during operation, when air flows through the motor 18, part of the heat on the motor 18 will be absorbed by the air, thereby dissipating the heat of the motor 18. When the hot air enters the filing cabinet 1, it can better dehumidify the interior of the filing cabinet 1.
[0040] As dehumidification proceeds, the lightweight activated carbon layer 13 will become heavier after absorbing moisture in the air, and then the lightweight activated carbon layer 13 will move downward into the circulation chamber 802, and the hot air discharged through the exhaust port 11 will enter the air inlet chamber 19 through the connecting pipe 21, and then the hot air will be ejected horizontally through multiple jet holes 20. When the hot air flows through the lightweight activated carbon layer 13, the hot air will bring out the moisture in the lightweight activated carbon layer 13, and finally the air will be discharged through the air outlet 32. Therefore, when the lightweight activated carbon layer 13 absorbs enough moisture, it will automatically enter the circulation chamber 802 and remove the moisture in the lightweight activated carbon layer 13. Then the lightweight activated carbon layer 13 will become lighter. Under the action of the first spring 17, the lightweight activated carbon layer 13 will move upward back to the dehumidification chamber 801 to continue dehumidification. Therefore, the lightweight activated carbon layer 13 can be recycled without frequent replacement, and it is more convenient to use.
[0041] In addition, the lateral airflow ejected through the air jet hole 20 acts on the surface of the impeller 22, which will drive the impeller 22 to rotate, and then drive the lightweight activated carbon layer 13 to rotate, so that each surface of the lightweight activated carbon layer 13 can fully contact the hot air, thereby improving the water removal efficiency of the lightweight activated carbon layer 13, and the lightweight activated carbon layer 13 will also rotate when absorbing moisture in the air, so that each part of the lightweight activated carbon layer 13 is fully in contact with the air, avoiding the lightweight activated carbon layer 13 from being in contact with the air on one side. When this side absorbs more moisture, the water absorption capacity will decrease, thereby causing the dehumidification capacity to decrease.
[0042] When the light activated carbon layer 13 is in the process of dehumidification, the light activated carbon layer 13 will move up and down. When the light activated carbon layer 13 moves downward, the light activated carbon layer 13 will drive the sliding plug 15 to slide downward in a sealed manner through the vertical rod 16. At this time, the external air will be sucked into the vertical cylinder 14 through the one-way air inlet pipe 30. When the light activated carbon layer 13 moves upward, it will drive the sliding plug 15 to slide upward in a sealed manner through the vertical rod 16. At this time, the air in the vertical cylinder 14 will enter the control box 25 through the one-way exhaust pipe 29. At this time, the pressure in the control box 25 increases, which will push the conductive slide plate 26 to move to the right (such as Figure 3 As shown), the air entering the control box 25 will be slowly discharged through the exhaust hole 31. Since the aperture of the exhaust hole 31 is smaller than the diameter of the one-way exhaust pipe 29, the air intake speed of the control box 25 is greater than the exhaust speed. Therefore, when the air is relatively dry, the lightweight activated carbon layer 13 cannot absorb much moisture. Therefore, the amplitude and speed of the up and down movement of the lightweight activated carbon layer 13 are relatively small. Therefore, the conductive slide 26 will slowly reset after moving a short distance to the right. When the air is very humid, the lightweight activated carbon layer 13 will absorb a large amount of moisture in a short time. At this time, the lightweight activated carbon layer 13 The amplitude and speed of the up and down movement are both fast, and a large amount of air will be pumped into the control box 25 in a short time, while the exhaust speed is slow, so the conductive slide 26 will continue to move to the right until the conductive slide 26 moves away from the conductive plate 27. At this time, the circuit will be disconnected, and the first solenoid valve 33 and the second solenoid valve 34 will be powered off and closed, and the motor 18 will be powered off and stopped. At this time, ventilation of the filing cabinet 1 will stop, because the humidity of the external air is very high at this time, and it is easy to bring external moisture into the filing cabinet 1 during ventilation, making the humidity in the filing cabinet 1 more serious.
[0043] In addition, when the weather is severely humid, the warning light 35 will also be powered off and extinguished, reminding the staff that the air is humid at this time and the ventilation of the file storage cabinet 1 has stopped. When the air environment is no longer humid, the third solenoid valve 37 is energized, and the air in the control box 25 is discharged through the reset hole 36, so that the pressure in the control box 25 is reduced, and the conductive slide 26 will move to the left and reset under the action of the second spring 28, so that the conductive slide 26 contacts the conductive plate 27 again. At this time, the circuit is connected, the first solenoid valve 33 and the second solenoid valve 34 are energized to open, and the motor 18 is also energized to start, and the interior of the file storage cabinet 1 is ventilated and dehumidified again. Finally, the third solenoid valve 37 is powered off to close it, and the reset hole 36 cannot be exhausted.
[0044] The above description is only a preferred specific embodiment of the present invention, but the scope of protection of the present invention is not limited thereto. Any technician familiar with the technical field, within the technical scope disclosed by the present invention, who makes equivalent replacements or changes based on the technical solution and inventive concept of the present invention, should be covered by the scope of protection of the present invention.
Claims
1. An artificial intelligence-based classified archive management device, characterized in that: include: A filing cabinet (1) and a plurality of storage boxes (2); A ventilation and dehumidification mechanism, the ventilation and dehumidification mechanism comprising a dehumidification box (3) fixedly connected to the side wall of the file storage cabinet (1), the dehumidification box (3) and the side wall of the file storage cabinet (1) are both provided with ventilation holes (4), the two ventilation holes (4) are interconnected, the inner wall of the ventilation hole (4) is fixedly connected with a vertical plate (5), the side wall of the vertical plate (5) is rotatably connected with a rotating shaft (6), the side wall of the rotating shaft (6) is fixedly connected with a plurality of fan blades (7), the inner wall of the dehumidification box (3) is sealed and fixedly connected with a sealing plate (8), the sealing plate (8) divides the interior of the dehumidification box (3) into two parts, a dehumidification chamber (801) and a circulation chamber (802), the inner wall of the dehumidification chamber (801) is provided with an air inlet (9), the inner wall of the air inlet (9) is sealed and fixedly connected with an air inlet pipe (10), and the side wall of the file storage cabinet (1) is provided with an exhaust port (11); A circulation mechanism, the circulation mechanism comprising a plurality of notches (12) provided at the upper end of the sealing plate (8), the plurality of notches (12) being provided through the sealing plate (8), and the inner walls of the plurality of notches (12) being sealed and slidably connected with a light activated carbon layer (13), an air inlet cavity (19) being provided in the side wall of the dehumidification box (3), a plurality of air jet holes (20) being provided in the inner wall of the air inlet cavity (19), the air outlet (11) being connected to the air inlet cavity (19) via a connecting pipe (21), and an air outlet (32) being provided on the inner wall of the circulation cavity (802); A driving mechanism is installed in the dehumidification chamber (801).
2. The artificial intelligence-based classifiable archive management device according to claim 1, characterized in that: in: The circulation mechanism further comprises a plurality of vertical cylinders (14) fixedly connected to the upper end of the dehumidification box (3), wherein the inner walls of the plurality of vertical cylinders (14) are all sealed and slidably connected to a sliding plug (15), the lower end of the sliding plug (15) is rotatably connected to a vertical rod (16), the lower end of the vertical rod (16) extends into the dehumidification chamber (801) and is fixedly connected to the light activated carbon layer (13), and a first spring (17) is fixedly connected between the sliding plug (15) and the inner top of the vertical cylinder (14).
3. The artificial intelligence-based classifiable archive management device according to claim 1, characterized in that: in: The driving mechanism comprises a motor (18) fixedly connected to the top of the dehumidification chamber (801) via a bracket, and an output end of the motor (18) passes through the side wall of the vertical plate (5) and is fixedly connected to the rotating shaft (6).
4. The artificial intelligence-based classifiable archive management device according to claim 2, characterized in that: in: Multiple impellers (22) are fixedly connected to the side walls of the multiple lightweight activated carbon layers (13).
5. The artificial intelligence-based classifiable archive management device according to claim 2, characterized in that: in: The bottom of the file storage cabinet (1) is provided with a plurality of slide grooves (23), and the plurality of placement boxes (2) are respectively slidably connected to the inner walls of the plurality of slide grooves (23), and each of the placement boxes (2) has two symmetrical communication openings (24) on its side wall.
6. The artificial intelligence-based classifiable archive management device according to claim 5, characterized in that: in: A control mechanism is installed at the upper end of the file storage cabinet (1), and the control mechanism includes a control box (25) fixedly connected to the upper end of the file storage cabinet (1), an inner wall of the control box (25) is sealed and slidably connected to a conductive slide (26), an inner wall of the control box (25) is embedded with a conductive plate (27), and a second spring (28) is fixedly connected between the inner wall of the control box (25) and the conductive slide (26).
7. The artificial intelligence-based classifiable archive management device according to claim 6, characterized in that: in: The control mechanism further includes an exhaust hole (31) formed on the inner wall of the control box (25); the vertical cylinder (14) is connected to the control box (25) via a one-way exhaust pipe (29); the diameter of the exhaust hole (31) is smaller than the diameter of the one-way exhaust pipe (29); a one-way air inlet pipe (30) is fixedly connected to the inner wall of the vertical cylinder (14); and the conductive slide (26), the conductive plate (27), the motor (18) and the external power supply are electrically connected via wires.
8. The artificial intelligence-based classifiable archive management device according to claim 7, characterized in that: in: A first solenoid valve (33) is installed on the inner wall of the exhaust hole (31), a second solenoid valve (34) is installed on the inner wall of the air inlet pipe (10), a warning light (35) is fixedly connected to the upper end of the control box (25), and the conductive slide (26), the conductive plate (27), the first solenoid valve (33), the second solenoid valve (34), the warning light (35) and the external power supply are electrically connected via wires.
9. The artificial intelligence-based classifiable archive management device according to claim 6, characterized in that: in: A reset hole (36) is provided on the inner wall of the control box (25), and a third solenoid valve (37) is installed on the inner wall of the reset hole (36).
10. The artificial intelligence-based classifiable archive management device according to claim 9, characterized in that: in: The inner walls of the air inlet (9) and the air outlet (32) are both fixedly connected with a filter (38), and the side wall of the file storage cabinet (1) is fixedly connected with a plurality of electric push rods (39), the movable ends of the electric push rods (39) pass through the side wall of the file storage cabinet (1) and are fixedly connected to the placement box (2), and the electric push rods (39) are connected to an external control device via a PLC control circuit.