Intelligent vacuum moisture-proof box

Through the moisture-proof package control mechanism of the intelligent vacuum moisture-proof box, the existing moisture-proof box has solved the problems of large power consumption and low dehumidification efficiency, and achieved efficient humidity control with low power consumption, extending the service life of the equipment.

CN223117137UActive Publication Date: 2025-07-18ZHUHAI KANGHE TECHNOLOGY DEVELOPMENT CO LTD
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Patent Information

Application Number
CN202421830565.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-30
Publication Date
2025-07-18
Estimated Expiration
2034-07-30

AI Technical Summary

Technical Problem

The existing moisture-proof boxes have shortcomings in efficient dehumidification and energy saving, which leads to aggravation of expensive equipment and high power consumption.

Method used

An intelligent vacuum moisture-proof box is designed to control the opening and closing of the container door through the moisture-proof pack control mechanism in the moisture-proof packing container, and the humidity sensor and driving motor are used to control the dehumidification process of the moisture-proof packing, avoid continuous exhaust fan operation and reduce power consumption.

Benefits of technology

It realizes precise control of the humidity in the box under low power consumption, avoids the problem of low dehumidification efficiency caused by slow gas flow in high vacuum environments, and extends the service life of the equipment.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model relates to the technical field of storage boxes, and discloses an intelligent vacuum moisture-proof box which comprises a box body, a vacuumizing mechanism, a moisture-proof bag containing box, a moisture-proof control mechanism, a controller and a power source. The box body is used for containing stored objects and provided with an openable box cover, and when the box cover covers the box body, the box body is sealed by the box cover. The vacuumizing mechanism is used for detecting and adjusting the vacuum degree in the box body, the moisture-proof bag containing box is used for containing a moisture-proof bag, is arranged on the box body and is communicated with a cavity in the box body, and a containing box door capable of being opened and closed is arranged at the joint of the moisture-proof bag containing box and the box body. The moisture-proof control mechanism is connected with the containing box door and used for detecting the humidity in the box body and controlling opening and closing of the containing box door. The controller is electrically connected with the vacuumizing mechanism and the moisture-proof control mechanism and used for controlling the vacuumizing mechanism and the moisture-proof control mechanism to work, and the power source is used for supplying power to an electric device in the moisture-proof box. According to the moisture-proof box, the humidity in the box body can be controlled within a proper range with relatively low electric energy consumption.
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Description

Technical Field

[0001] The utility model relates to the technical field of storage boxes, and particularly relates to an intelligent vacuum moisture-proof box. Background Art

[0002] With the increasing improvement of people's living standards, more and more people have developed a hobby of photography. Expensive equipment such as the lenses of single-lens reflex cameras has high requirements for the storage environment and usually needs to be stored in an environment with appropriate humidity and less dust. For this reason, many storage products with vacuum pumping and dehumidification functions have emerged on the market. The existing moisture-proof boxes on the market generally continuously extract the air in the box body through an exhaust fan, remove the moisture in the gas through a dehumidification device, and then send it back into the box body; or directly place a moisture-proof packet in the box body, and directly absorb the water vapor in the box body through materials with strong water absorption performance such as calcium chloride in the moisture-proof packet. For the former, due to the high requirements for the vacuum degree of the storage environment in order to prevent dust for expensive equipment, the gas density in the box body is relatively low, resulting in low circulating dehumidification efficiency and large power consumption; for the latter, since the moisture-proof packet continuously dehumidifies and cannot control the dehumidification process, it may cause the humidity in the box body to be too low, and some components made of materials such as rubber in the lens will accelerate the aging speed at too low humidity, resulting in an accelerated aging speed of the equipment stored in the box body. Therefore, it is necessary to design a new intelligent vacuum moisture-proof box that can solve the above problems. Content of the Utility Model

[0003] In order to overcome the deficiencies of the prior art, the purpose of the utility model is to provide an intelligent vacuum moisture-proof box, which can control the humidity in the box body with low power consumption and also has high dehumidification efficiency in a vacuum environment.

[0004] To solve the above problems, the technical solution adopted by the utility model is as follows: An intelligent vacuum moisture-proof box, comprising: a box body for accommodating the object to be preserved, having an openable and closable box cover, when the box cover is closed with the box body, the box body is sealed by the box cover; a vacuum pumping mechanism communicated with the cavity in the box body, for detecting the vacuum degree in the box body and adjusting the vacuum degree in the box body; a moisture-proof packet accommodating box for accommodating a moisture-proof packet, arranged on the box body and communicated with the cavity in the box body, and an openable and closable accommodating box door is arranged at the interface between the moisture-proof packet accommodating box and the box body; a moisture-proof control mechanism connected with the accommodating box door, for detecting the humidity in the box body and controlling the opening and closing of the accommodating box door; a controller electrically connected with the vacuum pumping mechanism and the moisture-proof control mechanism, for controlling the operation of the vacuum pumping mechanism and the moisture-proof control mechanism; and a power supply for supplying power to the vacuum pumping mechanism, the moisture-proof control mechanism and the controller.

[0005] Compared with the prior art, the utility model has the beneficial effect that by placing the moisture-proof bag in the moisture-proof bag storage box, the moisture-proof bag in the moisture-proof bag storage box can be controlled by controlling the opening and closing of the storage box door to control whether the moisture-proof bag in the moisture-proof bag storage box contacts the air in the box body, thereby realizing the control of the dehumidification process of the moisture-proof bag, thereby realizing the control of the humidity in the box body, and the humidity in the box body can be controlled within the appropriate range required by the equipment. At the same time, compared with the solution of circulating the air in the box body through the dehumidification device through the exhaust fan, the exhaust fan does not need to work continuously, which reduces the power consumption, and can avoid the problem of low dehumidification efficiency caused by low gas density and slow gas flow speed in the box body under a high vacuum environment.

[0006] In the above-mentioned intelligent vacuum moisture-proof box, a cavity is arranged in the box cover, and the vacuum pumping mechanism, the moisture-proof bag accommodating box, the moisture-proof control mechanism, the controller and the power supply are all arranged in the cavity of the box cover.

[0007] The above-mentioned intelligent vacuum moisture-proof box, the storage box door is a sliding door slidably arranged at the interface between the moisture-proof bag storage box and the box body, the moisture-proof control mechanism includes a drive motor, a humidity sensor and a linear drive mechanism, the drive motor and the humidity sensor are electrically connected to the controller, the storage box door is transmission-connected to the drive motor through the linear drive mechanism, the humidity sensor is used to detect the humidity in the box body, and the linear drive mechanism is used to convert the torque output by the drive motor into a linear torque for driving the storage box door to slide.

[0008] In the above-mentioned intelligent vacuum moisture-proof box, the linear drive mechanism includes a rack and a gear, the rack is arranged on the side of the storage box door facing away from the box body, the gear is arranged on the output shaft of the drive motor, the gear is meshed with the rack, and an avoidance hole for avoiding the rack is arranged on the side wall of the moisture-proof bag storage box.

[0009] In the above-mentioned intelligent vacuum moisture-proof box, a porous baffle can be detachably provided at the interface between the moisture-proof bag storage box and the box body, and the porous baffle is fixedly provided on a side of the storage box door close to the box body.

[0010] In the above-mentioned intelligent vacuum moisture-proof box, the power source includes a battery, and a wireless charging module is provided on the box body, and the wireless charging module is electrically connected to the battery.

[0011] The above-mentioned intelligent vacuum moisture-proof box has a control panel disposed on the box body, and the control panel includes control buttons, a display screen and indicator lights, and the control buttons, the display screen and the indicator lights are all electrically connected to the controller.

[0012] For the above-mentioned intelligent vacuum moisture-proof box, a buzzer is provided on the box body, and the buzzer is electrically connected to the controller.

[0013] For the above-mentioned intelligent vacuum moisture-proof box, the vacuum pumping mechanism includes a vacuum pump, a pressure sensor, a one-way valve, and a solenoid valve. The vacuum pump is connected to the air extraction port of the box body through a hose and the one-way valve. The solenoid valve is connected to the vacuum-breaking port of the box body through a hose. The pressure sensor is used to detect the pressure inside the box body. The vacuum pump, the pressure sensor, the one-way valve, and the solenoid valve are all electrically connected to the controller.

[0014] For the above-mentioned intelligent vacuum moisture-proof box, a shoulder strap is provided on the box body, and a locking mechanism is provided between the box cover and the box body.

[0015] The present utility model will be further described in detail below with reference to the accompanying drawings and specific embodiments. Description of the Drawings

[0016] Figure 1 Schematic perspective view of the intelligent vacuum moisture-proof box according to an embodiment of the present utility model;

[0017] Figure 2 Schematic internal structure view of the box cover according to an embodiment of the present utility model;

[0018] Figure 3 Schematic side sectional view of the intelligent vacuum moisture-proof box according to an embodiment of the present utility model;

[0019] Figure 4 Schematic front sectional view of the intelligent vacuum moisture-proof box according to an embodiment of the present utility model;

[0020] Figure 5 Schematic bottom view of the box cover according to an embodiment of the present utility model;

[0021] Figure 6 Schematic exploded view of the intelligent vacuum moisture-proof box according to an embodiment of the present utility model.

[0022] Explanation of the reference numerals in the drawings:

[0023] 100 box body, 110 box cover, 111 display screen, 112 control button, 113 indicator light, 114 buzzer, 115 upper cover, 116 middle shell, 117 inner lining board, 118 sealing ring, 120 locking mechanism, 130 shoulder strap, 200 vacuum pumping mechanism, 210 vacuum pump, 220 one-way valve, 230 solenoid valve, 240 pressure sensor, 300 moisture-proof accommodation box, 310 accommodation box door, 320 porous baffle, 400 moisture-proof control mechanism, 410 driving motor, 420 gear, 430 rack, 440 humidity sensor, 500 power supply, 510 wireless charging module. Specific Embodiments

[0024] Embodiments of the present utility model will be described in detail below. Referring to Figures 1 to 3 and Figure 6 , embodiments of the present utility model provide an intelligent vacuum moisture-proof box, which includes a box body 100, a vacuum pumping mechanism 200, a moisture-proof bag accommodating box 300, a moisture-proof control mechanism 400, a controller, and a power supply 500. The box body 100 has an openable and closable box cover 110. A cavity for accommodating the object to be stored is provided inside the box body 100. When the box cover 110 is closed on the box body 100, the cavity inside the box body 100 is sealed by the box cover 110. The vacuum pumping mechanism 200 is provided on the box body 100 and is communicated with the inside of the box body 100 for detecting the vacuum degree inside the box body 100 and adjusting the vacuum degree inside the box body 100. The moisture-proof bag accommodating box 300 is provided on the box body 100 for accommodating moisture-proof bags and is communicated with the cavity inside the box body 100. An openable and closable accommodating box door 310 is provided at the interface between the moisture-proof bag accommodating box 300 and the box body 100. The moisture-proof control mechanism 400 is provided on the box body 100 and is connected to the accommodating box door 310 for detecting the humidity inside the box body 100 and controlling the opening and closing of the accommodating box door 310. The controller is provided on the box body 100 and is electrically connected to the vacuum pumping mechanism 200 and the moisture-proof control mechanism 400 for controlling the operation of the vacuum pumping mechanism 200 and the moisture-proof control mechanism 400. The power supply 500 is also provided on the box body 100 for supplying power to the devices that need to be powered inside the entire intelligent vacuum moisture-proof box.

[0025] In the intelligent vacuum moisture-proof box according to the embodiment of the present utility model, an object to be stored, such as a single-lens reflex camera lens, etc., is placed into the box body 100, and the box cover 110 is closed to seal the cavity inside the box body 100. Then, the vacuum pumping mechanism 200 is started to pump the air in the cavity of the box body 100 until the vacuum degree in the cavity of the box body 100 reaches the required vacuum degree value. When the moisture-proof control mechanism 400 detects that the humidity inside the box body 100 is too high, it drives the accommodation box door 310 to open, so that the moisture-proof accommodation box 300 communicates with the inside of the box body 100 through the interface, and the moisture-proof bag absorbs the moisture inside the box body 100. When the moisture-proof control mechanism 400 detects that the humidity inside the box body 100 falls within the required humidity range, it drives the accommodation box door 310 to close, preventing the moisture-proof bag inside the moisture-proof accommodation box 300 from continuing to contact the air inside the box body 100, and avoiding the moisture-proof bag continuously dehumidifying the inside of the box body 100, resulting in too low humidity inside the box body 100 and accelerating the aging of the stored items. The intelligent vacuum moisture-proof box according to the embodiment of the present utility model can control the dehumidification process of the moisture-proof bag by controlling the opening and closing of the accommodation box door 310 of the moisture-proof accommodation box 300, thereby realizing the control of the humidity inside the box body 100. Compared with the dehumidification scheme of using a suction fan to circulate the gas inside the box body 100 through a dehumidification device, there is no need for the suction fan to work for a long time, which saves electric energy, increases the working duration of the intelligent vacuum moisture-proof box under battery drive, and at the same time avoids the problem of low circulation dehumidification efficiency due to low air density and low air flow speed in a high vacuum environment.

[0026] Referring to Figure 2 and Figure 3 , in this embodiment, the box cover 110 is composed of an upper cover 115, a middle shell 116 and an inner lining plate 117 from top to bottom. An incompletely sealed cavity is formed between the upper cover 115 and the middle shell 116, and the vacuum pumping mechanism 200 and the controller box power supply 500 are both arranged in the cavity between the upper cover 115 and the middle shell 116. A groove is provided in the middle of the middle shell 116, and the opening of the groove faces the direction of the inner lining plate 117. The groove on the middle shell 116 serves as the box body of the moisture-proof accommodation box 300, and the accommodation box door 310 is arranged between the lower surfaces of the inner lining plate 117 and the middle shell 116. A through hole is provided in the middle of the inner lining plate 117, serving as the interface between the moisture-proof accommodation box 300 and the box body 100.

[0027] It can be understood that the accommodation box door 310 can be arranged between the middle shell 116 and the inner lining plate 117 by means of hinge, or can be slidably arranged between the middle shell 116 and the inner lining plate 117 to realize the opening and closing of the moisture-proof accommodation box 300. The accommodation box door 310 can also be composed of a plurality of grille plates rotatably arranged between the middle shell 116 and the inner lining plate 117, and the opening and closing of the moisture-proof accommodation box 300 are realized by driving the grille plates to rotate. Referring to Figures 3 to 5In this embodiment, the storage box door 310 is a sliding door that is slidably arranged between the middle shell 116 and the inner lining plate 117. The moisture-proof control mechanism 400 drives the storage box door 310 to slide, so that the storage box door 310 blocks or opens the through hole on the inner lining plate 117, thereby realizing the opening and closing of the moisture-proof bag storage box 300.

[0028] It is understandable that the specific structure of the moisture-proof control mechanism 400 needs to be determined according to the action mode of the container door 310. Figure 3 and Figure 6 The moisture control mechanism 400 includes a drive motor 410, a humidity sensor 440 and a linear drive mechanism. The drive motor 410, the linear drive mechanism and the humidity sensor 440 are arranged between the middle shell 116 and the inner lining plate 117. The drive motor 410, the linear drive mechanism and the humidity sensor 440 are all electrically connected to the controller. The container door 310 is connected to the drive motor 410 through the linear drive mechanism. The linear drive mechanism is used to convert the torque output by the output shaft of the drive motor 410 into a linear torque that can drive the container door 310 to slide along the inner lining plate 117. The humidity sensor 440 is connected to the box body 100 through the through hole on the inner lining plate 117, and is used to detect the humidity in the box body 100 and transmit the humidity in the box body 100 to the controller. It can be understood that the linear drive mechanism can be a combination of a lead screw pair, a rack 430 and a gear 420, or a combination of a slide rail and a synchronous pulley group. In this embodiment, referring to Figure 3, the linear drive mechanism includes a rack 430 and a gear 420, the rack 430 is arranged on the side of the storage box door 310 facing away from the box body 100, the gear 420 is arranged on the output shaft of the driving motor 410, the gear 420 is meshed with the rack 430, and an avoidance hole for avoiding the rack 430 is arranged on the side wall of the moisture-proof bag storage box 300.

[0029] It is understandable that in order to prevent the moisture-proof bag in the moisture-proof bag storage box 300 from falling into the box body 100 after the storage box door 310 is opened, resulting in failure of humidity control in the box body 100, the moisture-proof bag can be fixed to the top of the moisture-proof bag storage box 300 by means of Velcro or double-sided tape, or a protective net or a baffle with air holes can be provided at the through hole of the inner lining plate 117 to prevent the moisture-proof bag from falling from the moisture-proof bag storage box 300 into the box body 100. Figures 3 to 6 In this embodiment, a porous baffle 320 is provided at the through hole of the inner lining plate 117, and an array of air holes is provided on the baffle. When the storage box door 310 is opened, the cavity inside the box body 100 is connected to the interior of the moisture-proof bag storage box 300 through the air holes; when the storage box door 310 is closed, the storage box door 310 blocks the air holes connected to the moisture-proof bag storage box 300. Figure 4 and Figure 5, in this embodiment, the porous baffle 320 is detachably mounted on the inner lining plate 117 by means of snap fasteners. At both ends of the through holes on the inner lining plate 117, there are buckle slots matching the buckle structures at both ends of the porous baffle 320. A sliding track for restricting and guiding the sliding direction of the accommodation box door 310 is formed between the edge of the buckle slot and the inner wall of the moisture-proof accommodation box 300. The humidity sensor 440 is disposed in a mounting groove on one side of the moisture-proof accommodation box 300. The through holes of the inner lining plate 117 and the ventilation hole array of the porous baffle 320 are in a "convex" shape. The mounting groove of the humidity sensor 440 is disposed above the protruding area of the through hole of the inner lining plate 117. Whether the accommodation box door 310 is opened or not, the humidity sensor 440 can communicate with the inside of the box body 100 through the protruding area of the ventilation hole array of the porous baffle 320, so as to continuously detect the humidity inside the box body 100.

[0030] It can be understood that generally, the vacuum pumping mechanism 200 uses an air extractor 210 to pump out the air inside the box body 100 to adjust the degree of vacuum inside the box body 100. Refer to Figure 2 , Figure 3 and Figure 6 , in this embodiment, the vacuum pumping mechanism 200 includes an air extractor 210, a one-way valve 220, a solenoid valve 230 and a pressure sensor 240. On both the inner lining plate 117 and the middle shell 116 in the box cover 110, there are air extraction ports for vacuum pumping, vacuum breaking ports for breaking the vacuum, and detection holes for detecting the pressure inside the box body 100. The air extractor 210, the solenoid valve 230 and the pressure sensor 240 are all electrically connected to the controller. The air extractor 210 is connected to the air extraction port through a hose and a one-way valve 220. The one-way valve 220 is used to prevent the extracted gas from flowing back into the box body 100. The detection probe of the pressure sensor 240 is connected to the detection hole through a hose, and is used to detect the pressure inside the box body 100 and feedback the detection result to the controller. One end of the solenoid valve 230 is connected to the vacuum breaking port through a hose. When the solenoid valve 230 is opened, external air can enter the box body 100 through the vacuum breaking port, so that the atmospheric pressure inside and outside the box body 100 is balanced, and the box cover 110 can be opened.

[0031] It can be understood that in order to facilitate the movable use of the intelligent vacuum moisture-proof box, the power supply 500 can use a battery for power supply. At the same time, in order to reduce the number of interfaces on the box body 100 to avoid the interfaces affecting the sealing performance after the box body 100 is closed, a wireless charging module 510 is also provided on the box body 100. Refer to Figure 2 , in this embodiment, the wireless charging module 510 is disposed between the upper cover 115 and the middle shell 116. The wireless charging module 510 is connected to the battery and can charge the battery by receiving the power emitted by a wireless charger. A control panel is also provided on the box body 100 for the interaction between the user and the intelligent vacuum moisture-proof box. Refer toFigure 2 In this embodiment, the control panel is arranged between the upper cover 115 and the middle shell 116, and includes a display screen 111, a buzzer 114, control buttons 112 and indicator lights 113. The display screen 111, the buzzer 114, the control buttons 112 and the indicator lights 113 are all electrically connected to the controller. The indicator lights 113 are used to indicate the power or the working state of the intelligent vacuum moisture-proof box. The display screen 111 is used to display information such as the humidity and pressure inside the box body 100. The control buttons 112 are used to input parameters such as the vacuum degree and humidity range, and manually control the operation of the vacuum pumping mechanism 200 and the moisture-proof control mechanism 400, so as to open the accommodation box door 310 to replace the moisture-proof bag, or manually break the vacuum of the box body 100 to open the box cover 110. The buzzer 114 is used to give a sound reminder to the user, reminding the user that the mechanism is abnormal or the vacuum breaking is completed, and the box cover 110 can be opened, etc. It can be understood that the controller is generally composed of a programmable controller and various drivers or drive circuits, and its specific structure is common knowledge in the art and will not be elaborated here.

[0032] Refer to Figures 4 to 6 In this embodiment, a sealing ring 118 is arranged on the edge of the inner lining plate 117, and a locking mechanism 120 is arranged between the box cover 110 and the box body 100. After the box cover 110 is closed, a certain pressure can be generated between the box cover 110 and the box body 100 through the locking mechanism 120 to ensure that the sealing ring 118 can reliably air-seal the box body 100. It can be understood that a sealing ring 118 or sealant should also be arranged between the middle shell 116 and the inner lining plate 117 to prevent external gas from entering the box body 100 through the gap between the middle shell 116 and the inner lining plate 117 after the box cover 110 is closed. A shoulder strap 130 is arranged on the box body 100 to facilitate the out-of-home carrying of the intelligent vacuum moisture-proof box and improve the portability of the product.

[0033] It should be noted that in the description of the present invention, if there is a description of the orientation, such as the orientation or positional relationship indicated by up, down, front, back, left, right, etc., it is all based on the orientation or positional relationship shown in the drawings. It 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 or operated in a specific orientation, and should not be construed as a limitation to the present invention.

[0034] In the description of the present invention, the meaning of several is one or more, the meaning of multiple is two or more, greater than, less than, exceeding, etc. are understood as not including the present number, above, below, within, etc. are understood as including the present number. If there is a description of the first or the second, etc., it is only for the purpose of distinguishing technical features and cannot be understood as indicating or implying relative importance or implicitly indicating the quantity of the indicated technical features or implicitly indicating the sequence relationship of the indicated technical features.

[0035] In the description of the present utility model, unless otherwise clearly defined, terms such as "arrangement", "installation", "connection", etc. shall be understood in a broad sense, and those skilled in the relevant technical field can reasonably determine the specific meanings of the above terms in the present utility model in combination with the specific content of the technical solution.

[0036] The above embodiments are only the preferred embodiments of the present utility model, and the scope of protection of the present utility model cannot be limited thereby. Any non-substantial changes and substitutions made by those skilled in the art based on the present utility model fall within the scope of protection required by the present utility model.

Claims

1. An intelligent vacuum moisture-proof box, characterized in that, include: A box body (100) is used to contain objects to be stored, and has a box cover (110) that can be opened and closed. When the box cover (110) is closed on the box body (100), the box body (100) is sealed by the box cover (110); A vacuum extraction mechanism (200) is communicated with the cavity in the box body (100) and is used to detect and adjust the vacuum degree in the box body (100); A moisture-proof bag storage box (300) for storing the moisture-proof bag, arranged on the box body (100) and communicating with the cavity in the box body (100); an openable and closable storage box door (310) is arranged at the interface between the moisture-proof bag storage box (300) and the box body (100); A moisture-proof control mechanism (400) connected to the storage box door (310) and used to detect the humidity in the box body (100) and control the opening and closing of the storage box door (310); a controller, electrically connected to the vacuum pumping mechanism (200) and the moisture-proof control mechanism (400), and used to control the operation of the vacuum pumping mechanism (200) and the moisture-proof control mechanism (400); A power supply (500) is used to supply power to the vacuuming mechanism (200), the moisture-proof control mechanism (400) and the controller.

2. The intelligent vacuum moisture-proof box according to claim 1, characterized in that, A cavity is provided in the box cover (110), and the vacuuming mechanism (200), the moisture-proof bag accommodating box (300), the moisture-proof control mechanism (400), the controller and the power supply (500) are all arranged in the cavity of the box cover (110).

3. The intelligent vacuum moisture-proof box according to claim 1, wherein, The storage box door (310) is a sliding door that is slidably arranged at the interface between the moisture-proof bag storage box (300) and the box body (100); the moisture-proof control mechanism (400) comprises a drive motor (410), a humidity sensor (440) and a linear drive mechanism; the drive motor (410) and the humidity sensor (440) are electrically connected to the controller; the storage box door (310) is transmission-connected to the drive motor (410) via the linear drive mechanism; the humidity sensor (440) is used to detect the humidity in the box body (100); and the linear drive mechanism is used to convert the torque output by the drive motor (410) into a linear torque that drives the storage box door (310) to slide.

4. The intelligent vacuum moisture-proof box according to claim 3, characterized in that, The linear drive mechanism comprises a rack (430) and a gear (420); the rack (430) is arranged on a side of the storage box door (310) facing away from the box body (100); the gear (420) is arranged on an output shaft of the drive motor (410); the gear (420) is meshed with the rack (430); and an avoidance hole for avoiding the rack (430) is arranged on the side wall of the moisture-proof bag storage box (300).

5. The intelligent vacuum moisture-proof box according to claim 1, wherein A porous baffle (320) is also detachably provided at the interface between the moisture-proof bag storage box (300) and the box body (100), and the porous baffle (320) is fixedly provided on a side of the storage box door (310) close to the box body (100).

6. The intelligent vacuum moisture-proof box according to claim 1, characterized in that, The power supply (500) includes a battery. A wireless charging module (510) is provided on the box body (100), and the wireless charging module (510) is electrically connected to the battery.

7. The intelligent vacuum moisture-proof box according to claim 1, characterized in that A control panel is provided on the box body (100). The control panel includes control buttons (112), a display screen (111), and an indicator light (113). The control buttons (112), the display screen (111), and the indicator light (113) are all electrically connected to the controller.

8. The intelligent vacuum moisture-proof box according to claim 1, characterized in that, A buzzer (114) is provided on the box body (100), and the buzzer (114) is electrically connected to the controller.

9. The intelligent vacuum moisture-proof box according to claim 1, wherein The vacuum pumping mechanism (200) includes a suction fan (210), a pressure sensor (240), a one-way valve (220), and a solenoid valve (230). The suction fan (210) is communicated with the air extraction port of the box body (100) through a hose and the one-way valve (220). The solenoid valve (230) is communicated with the vacuum-breaking port of the box body (100) through a hose. The pressure sensor (240) is used to detect the pressure inside the box body (100). The suction fan (210), the pressure sensor (240), the one-way valve (220), and the solenoid valve (230) are all electrically connected to the controller.

10. The intelligent vacuum moisture-proof box according to claim 1, wherein, A shoulder strap (130) is provided on the box body (100), and a locking mechanism (120) is provided between the box cover (110) and the box body (100).