Moistureproof cabinet for storing fireworks and crackers
Through the design of moisture-proof cabinets, gas transmission openings and moisture-proof fans are used to achieve gas replacement, which solves the problem of unstable temperature and humidity during the storage of fireworks and firecrackers, avoids chemical reactions and safety hazards, and ensures the stability of fireworks and firecrackers.
Patent Information
- Application Number
- CN202511059345.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-30
- Publication Date
- 2025-09-23
AI Technical Summary
The existing storage method of fireworks and firecrackers requires repeated adjustment of temperature and humidity, which leads to chemical reactions and safety hazards, affecting stability.
The moisture-proof cabinet design includes a cabinet body, moisture-proof fan, opening and closing module, and drive module. Gas replacement is achieved through gas transmission openings and moisture-proof fans, avoiding repeated adjustments of temperature and humidity.
This ensures that the cabinet is dry without repeatedly adjusting the temperature and humidity, avoiding chemical reactions and safety accidents, and ensuring the stability of fireworks and firecrackers.
Smart Images

Figure CN120684946A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of fireworks and firecrackers storage equipment, in particular to a moisture-proof cabinet for storing fireworks and firecrackers. Background Art
[0002] Fireworks and firecrackers are flammable and explosive items. When storing fireworks and firecrackers, the temperature and humidity of the air in the storage space need to be controlled to prevent the fireworks and firecrackers from getting damp and triggering chemical reactions.
[0003] At present, the existing storage method for fireworks and firecrackers is to place them in a storage bin in a stacked manner, and control the temperature and humidity in the storage bin through the ventilation system and humidity control system of the storage bin. However, since the stacking method is used to store fireworks and firecrackers, the temperature and humidity inside the fireworks and firecrackers will be different from those outside. Therefore, in the existing technology, the temperature and humidity are usually repeatedly adjusted and controlled so that the temperature and humidity inside the fireworks and firecrackers are consistent with those outside, thereby ensuring the stability of the fireworks and firecrackers during storage.
[0004] Because fireworks are unstable during processing, repeated adjustment of temperature and humidity can easily cause chemical reactions in some fireworks, affecting the stability of the fireworks themselves. In severe cases, the fireworks may explode, causing serious safety accidents. Summary of the Invention
[0005] Based on this, the purpose of the present invention is to provide a moisture-proof cabinet for storing fireworks and firecrackers to solve the technical problem that the existing storage method of fireworks and firecrackers in the background technology requires repeated adjustment of temperature and humidity, which may easily cause chemical reactions in some fireworks and firecrackers during the adjustment process, affecting the stability of the fireworks and firecrackers themselves. In severe cases, the fireworks and firecrackers may explode and cause serious safety accidents.
[0006] A moisture-proof cabinet for storing fireworks and firecrackers according to an embodiment of the present invention includes a cabinet body for storing fireworks and firecrackers, a moisture-proof fan, at least two sets of opening and closing modules that expand outward or close inward, and a driving module for driving each of the opening and closing modules to perform synchronous movement; At least two sets of the opening and closing modules are respectively arranged on opposite sides of the cabinet, so that when the two opening and closing modules are simultaneously expanded outward, oppositely arranged gas transmission openings are respectively formed on opposite sides of the cabinet; The moisture-proof fan is arranged opposite to at least one of the opening and closing modules, and is used to suck the gas medium outside the cabinet through one of the gas transmission openings and then output it toward the other gas transmission opening, so as to replace the gas in the moisture-proof cabinet; The driving module includes a transmission bracket and a driver, the driver is connected to the transmission bracket, and the transmission bracket is used to transmit the driving force of the driver to each of the opening and closing modules respectively, so that each of the opening and closing modules can be expanded outward or closed inward at the same time.
[0007] Furthermore, the moisture-proof cabinet includes a first opening and closing module group and a second opening and closing module group, and the first opening and closing module group and the second opening and closing module group are respectively arranged on the top and bottom of the cabinet body.
[0008] Furthermore, the first opening and closing module includes a first closed door and a second closed door arranged opposite to the first closed door; Wherein, the first closed door and the second closed door are both slidably connected to the top of the cabinet. When the first closed door and the second closed door are unfolded outward, the first gas transmission opening formed between the first closed door and the second closed door is arranged opposite to the moisture-proof fan.
[0009] Furthermore, the second opening and closing module includes a third closed door and a fourth closed door arranged opposite to the third closed door; In which, the third closed door and the fourth closed door are both slidably connected to the bottom of the cabinet. When the third closed door and the fourth closed door are expanded outward, the second gas transmission opening formed between the third closed door and the fourth closed door is arranged opposite to the first gas transmission opening.
[0010] Furthermore, the transmission bracket includes at least two rods with sliders and a moving member with at least two oblique sliding grooves, and the moving member is connected to the driver to drive the moving member to perform lifting motion; The two ends of at least one of the rods are connected to the first closed door and the third closed door respectively, and the two ends of at least another of the rods are connected to the second closed door and the fourth closed door respectively; Among them, the sliders on the two rods are respectively slidably connected to the corresponding oblique sliding grooves, so that when the movable part is lifted and lowered, the sliders slide along the sliding path of the oblique sliding grooves, so that the first closed door and the second closed door, and the third closed door and the fourth closed door are simultaneously expanded outward or closed inward.
[0011] Furthermore, the moisture-proof cabinet further includes at least one adsorption module, which is slidably connected to the middle of the cabinet body and is used to adsorb the moisture medium in the cabinet body.
[0012] Furthermore, the moisture-proof cabinet includes two adsorption modules, and the two adsorption modules are respectively arranged on opposite sides of the cabinet body.
[0013] Furthermore, the adsorption module includes a sliding bracket having an adsorption plate, the sliding bracket is slidably connected to the cabinet, and the adsorption plate is used to adsorb the moist medium in the cabinet.
[0014] Furthermore, the adsorption module further includes an elastic member, and the sliding bracket is elastically slidably connected to the cabinet through the elastic member; Wherein, a mutually cooperating clamping structure is further provided between the sliding bracket and the cabinet body, and the sliding bracket is restricted within the cabinet body by the clamping structure.
[0015] Furthermore, the snap-fit structure includes a pull rod with a limit member and a lock rotatably connected to the cabinet body, the pull rod is connected to the sliding bracket, and the lock is used to limit the movement of the limit member to limit the movement of the sliding bracket relative to the cabinet body.
[0016] Compared with the prior art: In a moisture-proof cabinet for storing fireworks and firecrackers proposed by the present invention, it includes a cabinet body, a moisture-proof fan, at least two groups of opening and closing modules that expand outward or close inward, and a driving module, so that when the moist medium in the cabinet body is discharged, the driver in the driving module is first used to drive the transmission bracket to move. At this time, the transmission bracket will simultaneously drive each opening and closing module to expand outward or close inward synchronously. When each opening and closing module is expanded outward at the same time, gas transmission openings can be formed on opposite sides of the cabinet body, and the gas transmission openings on both sides are relatively arranged, so that when the moisture-proof fan is started, the moisture-proof fan will discharge the air outside the cabinet body. After the medium is sucked in through a gas transmission opening, it is output toward another gas transmission opening, so that the gas in the moisture-proof cabinet is replaced. By replacing the gas, the dryness of the cabinet can be guaranteed. In the process of gas replacement, the relative setting of the output of the two gas transmission openings is adopted, so that the circulating gas will pass through the fireworks and firecrackers, and then the moisture in the fireworks and firecrackers is output from the cabinet, so that the temperature and humidity in the cabinet can be guaranteed to meet the standards without repeatedly adjusting the temperature and humidity. Moreover, since the gas in the atmosphere is directly used, during the adjustment process, some fireworks and firecrackers will not undergo chemical reactions, thereby avoiding serious safety accidents caused by the detonation of fireworks and firecrackers. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Figure 1 A perspective view of a moisture-proof cabinet for storing fireworks and firecrackers according to an embodiment of the present invention; Figure 2 This is an exploded view of the first opening and closing module and the second opening and closing module of the moisture-proof cabinet for storing fireworks and firecrackers in one embodiment of the present invention; Figure 3 A perspective view of a moisture-proof cabinet for storing fireworks and firecrackers from another perspective in one embodiment of the present invention; Figure 4 FIG. 4 is an exploded view of an adsorption module according to an embodiment of the present invention.
[0018] Description of the drawings: 100, cabinet; 200, moisture-proof fan; 300, first opening and closing module; 310, first closed door; 320, second closed door; 400, second opening and closing module; 410, third closed door; 420, fourth closed door; 500, driving module; 510, transmission bracket; 511, slider; 512, rod body; 513, oblique slide; 514, moving part; 520, driver; 600, first gas transmission opening; 610, second gas transmission opening; 700, adsorption module; 710, adsorption plate; 720, sliding bracket; 730, elastic part; 800, snap-fit structure; 810, limit part; 820, pull rod; 830, lock.
[0019] The following specific embodiments will further illustrate the present invention in conjunction with the above-mentioned drawings. DETAILED DESCRIPTION
[0020] To facilitate understanding of the present invention, the present invention will be described more fully below with reference to the accompanying drawings. The drawings illustrate several embodiments of the present invention. However, the present invention may be implemented in many different forms and is not limited to the embodiments described herein. Rather, these embodiments are provided to provide a more thorough and comprehensive understanding of the present invention.
[0021] It should be noted that when an element is referred to as being "fixed to" another element, it may be directly on the other element or there may be an intermediate element. When an element is referred to as being "connected to" another element, it may be directly connected to the other element or there may be an intermediate element. The terms "vertical," "horizontal," "left," "right," and similar expressions used herein are for illustrative purposes only.
[0022] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one skilled in the art to which this invention pertains. The terms used in this specification of the present invention are for the purpose of describing specific embodiments only and are not intended to limit the present invention. The term "and / or" as used herein includes any and all combinations of one or more of the associated listed items.
[0023] See also Figure 1-Figure 4 , shown is a moisture-proof cabinet for storing fireworks and firecrackers in one embodiment of the present invention, comprising a cabinet body 100 for storing fireworks and firecrackers, a moisture-proof fan 200, at least two sets of opening and closing modules that can be expanded outward or closed inward, and a driving module 500 for driving each opening and closing module to perform synchronous movement; At least two sets of opening and closing modules are respectively arranged on opposite sides of the cabinet 100, so that when the two opening and closing modules are simultaneously expanded outward, oppositely arranged gas transmission openings are respectively formed on opposite sides of the cabinet 100; The moisture-proof fan 200 is arranged opposite to at least one opening and closing module. The moisture-proof fan 200 is used to suck the gas medium outside the cabinet 100 through a gas transmission opening and then output it toward another gas transmission opening, so as to replace the gas in the moisture-proof cabinet; The driving module 500 includes a transmission bracket 510 and a driver 520. The driver 520 is connected to the transmission bracket 510. The transmission bracket 510 is used to transmit the driving force of the driver 520 to each opening and closing module respectively, so that each opening and closing module can expand outward or close inward at the same time.
[0024] In a specific implementation, fireworks and firecrackers can be stored in the cabinet 100. During the storage of fireworks and firecrackers, due to the influence of ambient temperature, fireworks and firecrackers need to be moisture-proofed during storage. In order to prevent the fireworks and firecrackers from getting damp, in this embodiment, a moisture-proof fan 200, at least two groups of opening and closing modules that expand outward or close inward, and a driving module 500 are provided. When the moist medium in the cabinet 100 is discharged, the driver 520 in the driving module 500 is first used to drive the transmission bracket 510 to move. At this time, the transmission bracket 510 will simultaneously drive each opening and closing module to expand outward or close inward synchronously. When each opening and closing module expands outward at the same time, gas transmission openings can be formed on opposite sides of the cabinet 100, and the gas transmission openings on both sides The relative arrangement allows for when the moisture-proof fan 200 is started, the moisture-proof fan 200 draws in the gas medium outside the cabinet 100 through a gas transmission opening, and then outputs it toward another gas transmission opening, thereby replacing the gas in the moisture-proof cabinet. By replacing the gas, the dryness level inside the cabinet 100 can be guaranteed, and during the gas replacement process, the relative arrangement of the two gas transmission openings is adopted, so that the circulating gas will pass through the fireworks and firecrackers, and then the moisture in the fireworks and firecrackers will be output from the cabinet 100, so that the temperature and humidity inside the cabinet 100 can be guaranteed to meet the standards without repeatedly adjusting the temperature and humidity, and because the gas in the atmosphere is directly used, during the adjustment process, some fireworks and firecrackers will not undergo chemical reactions, thereby avoiding the detonation of fireworks and firecrackers and causing serious safety accidents.
[0025] Specifically, in this embodiment, the moisture-proof cabinet includes a first opening and closing module 300 and a second opening and closing module 400, and the first opening and closing module 300 and the second opening and closing module 400 are respectively arranged at the top and bottom of the cabinet body 100. That is to say, when the first opening and closing module 300 and the second opening and closing module 400 are expanded outward at the same time, corresponding gas transmission openings can be formed at the top and bottom of the cabinet body 100, respectively.
[0026] In some preferred embodiments, the first opening and closing module 300 includes a first closed door 310 and a second closed door 320 disposed opposite to the first closed door 310; Among them, the first enclosed door 310 and the second enclosed door 320 are both slidably connected to the top of the cabinet 100. When the first enclosed door 310 and the second enclosed door 320 are unfolded outward, the first gas transmission opening 600 formed between the first enclosed door 310 and the second enclosed door 320 is arranged opposite to the moisture-proof fan 200.
[0027] The second opening and closing module 400 includes a third closed door 410 and a fourth closed door 420 disposed opposite to the third closed door 410; Among them, the third closed door 410 and the fourth closed door 420 are both slidably connected to the bottom of the cabinet 100. When the third closed door 410 and the fourth closed door 420 are expanded outward, the second gas transmission opening 610 formed between the third closed door 410 and the fourth closed door 420 is arranged opposite to the first gas transmission opening 600.
[0028] In a specific implementation, a top sliding track and a bottom sliding track can be arranged at the top and bottom of the cabinet 100 respectively, and the corresponding first closed door 310 and the second closed door 320 can be slidably connected to the top sliding track to ensure the stability of the first closed door 310 and the second closed door 320 when expanding outward or closing inward, and the corresponding third closed door 410 and the fourth closed door 420 can be slidably connected to the bottom sliding track to ensure the stability of the third closed door 410 and the fourth closed door 420 when expanding outward or closing inward.
[0029] In addition, it should be noted that, in this embodiment, the transmission bracket 510 includes at least two rods 512 having sliders 511 and a moving member 514 having at least two oblique sliding grooves 513. The moving member 514 is connected to the driver 520 for driving the moving member 514 to perform lifting motion. The two ends of at least one rod 512 are connected to the first closed door 310 and the third closed door 410 respectively, and the two ends of at least another rod 512 are connected to the second closed door 320 and the fourth closed door 420 respectively; Among them, the sliders 511 on the two rod bodies 512 are respectively slidably connected in the corresponding oblique sliding grooves 513, so that when the moving member 514 is lifted and lowered, the sliders 511 slide along the sliding path of the oblique sliding grooves 513, so that the first closed door 310 and the second closed door 320, as well as the third closed door 410 and the fourth closed door are simultaneously expanded outward or closed inward.
[0030] Specifically, the moving part 514 is set in an inverted V shape with a crossbeam in the middle. The driving end of the driver 520 is specifically connected to the middle of the moving part 514. When the moving part 514 performs lifting and lowering movements, the corresponding two oblique slide grooves 513 will move up and down. The sliding path of the corresponding oblique slide grooves 513 is utilized to enable the oblique slide grooves 513 to drive the corresponding slider 511 to move laterally, and the movement of the slider 511 is utilized to drive the rod body 512 to move laterally, thereby realizing the function of simultaneously expanding outward or closing inward the first closed door 310 and the second closed door 320, as well as the third closed door 410 and the fourth closed door 420. In this embodiment, the special shape of the moving part 514 can reduce the purpose of arranging the driving equipment, thereby reducing the cost of producing the moisture-proof cabinet.
[0031] It should be noted that in some preferred embodiments, an LPC controller can be arranged in the cabinet 100, and the start and stop of the moisture-proof fan 200 and the start and stop of the driver 520 can be automatically controlled by the LPC controller. For example, when the moisture-proof fan 200 is started, the controller can simultaneously control the driver 520 to turn on. In addition, in some other preferred embodiments, a temperature and humidity sensor can also be arranged in the cabinet 100, and the temperature and humidity inside the cabinet 100 can be detected by the temperature and humidity sensor. When the temperature and humidity of the cabinet 100 do not correspond to the preset temperature and humidity, the controller can automatically control the moisture-proof fan 200 and the driver 520 to achieve automatic protection. The temperature and humidity in the cabinet 100 can meet the standards, thereby avoiding unstable conditions in fireworks and firecrackers.
[0032] Furthermore, the moisture-proof cabinet in this example can also include at least one adsorption module 700, which is slidably connected to the middle of the cabinet body 100. The adsorption module 700 is used to adsorb the moist medium in the cabinet body 100. To ensure that the moist medium has sufficient adsorption capacity, in this embodiment, there can be two adsorption modules 700, and the two adsorption modules 700 are respectively arranged on opposite sides of the cabinet body 100. Specifically, the two adsorption modules 700 can be respectively arranged on the two inner sides of the middle of the cabinet body 100.
[0033] Specifically, the adsorption module 700 includes a sliding bracket 720 having an adsorption plate 710. The sliding bracket 720 is slidably connected to the cabinet 100. The adsorption plate 710 is used to adsorb the moist medium in the cabinet 100. It should be noted that the adsorption plate 710 adopts a porous plate body with a moist medium in the existing technology.
[0034] To facilitate the replacement of the adsorption plate 710, in this embodiment, the adsorption module 700 also includes an elastic member 730, and the sliding bracket 720 is elastically slidably connected to the cabinet 100 through the elastic member 730, wherein a mutually cooperating snap-fit structure 800 is also provided between the sliding bracket 720 and the cabinet 100, and the sliding bracket 720 limits the sliding bracket 720 within the cabinet 100 through the snap-fit structure 800. Specifically, the snap-fit structure 800 includes a pull rod 820 with a limit member 810, and a lock 830 rotatably connected to the cabinet 100. The pull rod 820 is connected to the sliding bracket 720, and the lock 830 is used to limit the movement of the limit member 810, so as to limit the movement of the sliding bracket 720 relative to the cabinet 100.
[0035] By setting the elastic member 730 and the clamping structure 800, the sliding bracket 720 can be automatically popped out from the cabinet 100 by rotating the lock buckle 830 and utilizing the elastic effect of the elastic member 730. There is no need to manually pull the sliding bracket 720 out of the cabinet 100, thereby achieving the purpose of simple operation. After the adsorption plate 710 is replaced, the sliding bracket 720 is manually pushed into the cabinet 100, and the lock buckle 830 is rotated in the opposite direction again to complete the locking and fixation of the sliding bracket 720.
[0036] In summary, the present embodiment provides a moisture-proof cabinet for storing fireworks and firecrackers, which includes a cabinet body 100, a moisture-proof fan 200, at least two groups of opening and closing modules that expand outward or close inward, and a driving module 500, so that when the moist medium in the cabinet body 100 is discharged, the driver 520 in the driving module 500 is first used to drive the transmission bracket 510 to move. At this time, the transmission bracket 510 will simultaneously drive each opening and closing module to expand outward or close inward synchronously. When each opening and closing module expands outward at the same time, gas transmission openings can be formed on opposite sides of the cabinet body 100, and the gas transmission openings on both sides are relatively arranged, so that when the moisture-proof fan 200 is started, the moisture-proof fan 200 absorbs the gas medium outside the cabinet 100 through a gas transmission opening and then outputs it toward another gas transmission opening, so that the gas in the moisture-proof cabinet is replaced. By replacing the gas, the dryness inside the cabinet 100 can be guaranteed. In the process of gas replacement, the relative setting of the output of the two gas transmission openings is adopted, so that the circulating gas will pass through the fireworks and firecrackers, and then the moisture in the fireworks and firecrackers is output from the cabinet 100, so that the temperature and humidity inside the cabinet 100 can be guaranteed to meet the standards without repeatedly adjusting the temperature and humidity. Moreover, since the gas in the atmosphere is directly used, during the adjustment process, some fireworks and firecrackers will not undergo chemical reactions, thereby avoiding serious safety accidents caused by the detonation of fireworks and firecrackers.
[0037] Throughout this specification, reference to terms such as "one embodiment," "some embodiments," "examples," "specific examples," or "some examples" means that a specific feature, structure, material, or characteristic described in conjunction with that embodiment or example is included in at least one embodiment or example of the present invention. In this specification, schematic representations of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in any one or more embodiments or examples.
[0038] The above embodiments merely illustrate several implementations of the present invention, and while their descriptions are relatively specific and detailed, they should not be construed as limiting the scope of the present invention. It should be noted that a person skilled in the art would be able to make numerous modifications and improvements without departing from the spirit of the present invention, all of which fall within the scope of protection of the present invention. Therefore, the scope of protection of the present invention shall be determined by the appended claims.
Claims
1. A moisture-proof cabinet for storing fireworks and firecrackers, characterized in that: The device comprises a cabinet for storing fireworks and firecrackers, a moisture-proof fan, at least two sets of opening and closing modules that can be expanded outward or closed inward, and a driving module for driving each of the opening and closing modules to move synchronously; At least two sets of the opening and closing modules are respectively arranged on opposite sides of the cabinet, so that when the two opening and closing modules are simultaneously expanded outward, oppositely arranged gas transmission openings are respectively formed on opposite sides of the cabinet; The moisture-proof fan is arranged opposite to at least one of the opening and closing modules, and is used to input the gas in the moisture-proof cabinet from the gas medium outside the cabinet through one of the gas transmission openings and then output it toward the other gas transmission opening, so as to replace the gas in the moisture-proof cabinet; The driving module includes a transmission bracket and a driver, the driver is connected to the transmission bracket, and the transmission bracket is used to transmit the driving force of the driver to each of the opening and closing modules respectively, so that each of the opening and closing modules can be expanded outward or closed inward at the same time.
2. The moisture-proof cabinet for storing fireworks and firecrackers according to claim 1, characterized in that: The moisture-proof cabinet includes a first opening and closing module group and a second opening and closing module group, wherein the first opening and closing module group and the second opening and closing module group are respectively arranged at the top and bottom of the cabinet body.
3. The moisture-proof cabinet for storing fireworks and firecrackers according to claim 2, characterized in that: The first opening and closing module includes a first closed door and a second closed door arranged opposite to the first closed door; Wherein, the first closed door and the second closed door are both slidably connected to the top of the cabinet. When the first closed door and the second closed door are unfolded outward, the first gas transmission opening formed between the first closed door and the second closed door is arranged opposite to the moisture-proof fan.
4. The moisture-proof cabinet for storing fireworks and firecrackers according to claim 3, characterized in that: The second opening and closing module includes a third closed door and a fourth closed door arranged opposite to the third closed door; In which, the third closed door and the fourth closed door are both slidably connected to the bottom of the cabinet. When the third closed door and the fourth closed door are expanded outward, the second gas transmission opening formed between the third closed door and the fourth closed door is arranged opposite to the first gas transmission opening.
5. The moisture-proof cabinet for storing fireworks and firecrackers according to claim 4, characterized in that: The transmission bracket includes at least two rods with sliders and a moving member with at least two oblique sliding grooves, and the moving member is connected to the driver for driving the moving member to perform lifting motion; The two ends of at least one of the rods are connected to the first closed door and the third closed door respectively, and the two ends of at least another of the rods are connected to the second closed door and the fourth closed door respectively; Among them, the sliders on the two rods are respectively slidably connected to the corresponding oblique sliding grooves, so that when the movable part is lifted and lowered, the sliders slide along the sliding path of the oblique sliding grooves, so that the first closed door and the second closed door, as well as the third closed door and the fourth closed door are simultaneously expanded outward or closed inward.
6. The moisture-proof cabinet for storing fireworks and firecrackers according to claim 1, characterized in that: The moisture-proof cabinet further includes at least one adsorption module, which is slidably connected to the middle of the cabinet body and is used to adsorb the moisture medium in the cabinet body.
7. The moisture-proof cabinet for storing fireworks and firecrackers according to claim 6, characterized in that: The moisture-proof cabinet includes two adsorption modules, which are respectively arranged on opposite sides of the cabinet body.
8. The moisture-proof cabinet for storing fireworks and firecrackers according to claim 7, characterized in that: The adsorption module includes a sliding bracket with an adsorption plate, the sliding bracket is slidably connected to the cabinet, and the adsorption plate is used to adsorb the moist medium in the cabinet.
9. The moisture-proof cabinet for storing fireworks and firecrackers according to claim 8, characterized in that: The adsorption module further includes an elastic member, and the sliding bracket is elastically slidably connected to the cabinet through the elastic member; Wherein, a mutually cooperating clamping structure is further provided between the sliding bracket and the cabinet body, and the sliding bracket is restricted within the cabinet body by the clamping structure.
10. The moisture-proof cabinet for storing fireworks and firecrackers according to claim 9, characterized in that: The clamping structure includes a pull rod with a limit member and a lock rotatably connected to the cabinet body. The pull rod is connected to the sliding bracket, and the lock is used to limit the movement of the limit member to limit the movement of the sliding bracket relative to the cabinet body.