Efficient heat dissipation structure of bullet cabinet and heat dissipation method of efficient heat dissipation structure

By installing a ventilation hood, filter plate, ventilation rack, filter screen and temperature controller inside the gun and ammunition cabinet, combined with a cleaning structure of sliding rod and brush, the problems of poor heat dissipation and impurity entry in the gun and ammunition cabinet are solved, achieving efficient heat dissipation and convenient access.

CN121337136APending Publication Date: 2026-01-16JIANGXI RUIDUN INTELLIGENT TECH GRP CO LTD
View PDF 1 Cites 0 Cited by

Patent Information

Application Number
CN202511662483.6
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-11-13
Publication Date
2026-01-16

AI Technical Summary

Technical Problem

Existing gun and ammunition cabinets have poor heat dissipation, especially in the lower cavity. Furthermore, airflow may introduce impurities, affecting the temperature and cleanliness inside the cabinet.

Method used

The gun cabinet is equipped with a ventilation hood, filter plate, ventilation rack, filter screen and temperature controller. The temperature controller controls the operation of the cooling fan and cold air blower. Combined with the cleaning structure of sliding rod and brush, the airflow and cleanliness are ensured.

Benefits of technology

It achieves efficient heat dissipation inside the gun cabinet, maintaining the temperature within a specified range, preventing impurities from entering, ensuring smooth airflow, and facilitating the retrieval of ammunition boxes and machine guns.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN121337136A_ABST
    Figure CN121337136A_ABST
Patent Text Reader

Abstract

The invention relates to the technical field of bullet cabinets, in particular to an efficient heat dissipation structure of a bullet cabinet and a heat dissipation method thereof.The efficient heat dissipation structure comprises a ventilation hood arranged in a bullet cabinet body, a temperature controller for monitoring the temperature condition in the bullet cabinet body is arranged in the bullet cabinet body, and a heat dissipation fan electrically connected with the temperature controller is arranged in the ventilation hood; a filter plate, a ventilation frame and a filter screen are fixedly installed in the bullet cabinet body. According to the bullet cabinet, the multiple storage frames are arranged in the cabinet body of the bullet cabinet to store the bullet boxes, and the storage frames are arranged in a staggered mode, so that airflow in the first cavity is always kept in a flowing state; the temperature is monitored at any time through the temperature monitor, the ventilation frame and the two ventilation hoods are arranged on the storage frame, the first brush and the second brush can regularly clean the ventilation frame and the ventilation hoods when moving, and then flowing of airflow is kept; the frame is arranged in the storage frame, and the storage frame can move on the frame, so that the cartridge box is more convenient to take.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This invention relates to the field of gun and ammunition cabinet technology, and in particular to a high-efficiency heat dissipation structure and heat dissipation method for gun and ammunition cabinets. Background Technology

[0002] Gun and ammunition cabinets are cabinet-like devices specifically designed for storing firearms and ammunition. They are primarily used by military, police, and other organizations that require the management of firearms and ammunition.

[0003] According to the gun and ammunition cabinet disclosed in announcement number CN213282144U, it includes a cabinet body. It features storage bags that can hold a large number of small items, providing good storage. A push-rod motor is activated, and an anti-slip plate secures the bullets. Dust removal agent is poured into a dehumidifying box for dehumidification. When ventilation and dust removal are needed, the sealing cap is opened, activating the fan for both ventilation and dust removal, with good results. The document proposes dividing the cabinet into upper and lower chambers using a fixed plate. The fan dissipates heat from the upper chamber, but the fixed plate cannot dissipate heat from the lower chamber, thus affecting the overall heat dissipation within the cabinet. When the sealing cap is opened, the airflow entering the cabinet is not filtered, allowing impurities to enter and affecting the internal temperature. Summary of the Invention

[0004] The purpose of this invention is to solve the problem of poor heat dissipation in existing gun cabinets, and to propose a high-efficiency heat dissipation structure and method for gun cabinets.

[0005] To achieve the above objectives, the present invention adopts the following technical solution:

[0006] The efficient heat dissipation structure and method of the gun cabinet include a ventilation hood built into the gun cabinet body, and a temperature controller for monitoring the internal temperature conditions of the gun cabinet body is installed inside the gun cabinet body. The ventilation hood is equipped with a cooling fan electrically connected to the temperature controller. Filter plates, ventilation racks, and filter screens are fixedly installed inside the gun cabinet body. The gun cabinet body is also equipped with a cleaning structure for cleaning the ventilation hood and ventilation rack.

[0007] The gun and ammunition cabinet is divided into two chambers, namely chamber one and two chamber two, by two filter plates.

[0008] Preferably, the ventilation rack is located on both sides of the gun cabinet, the two filter plates are vertically arranged correspondingly, and a cold air fan that is electrically connected to the controller and delivers cold energy is installed on the gun cabinet.

[0009] Preferably, the cleaning structure comprises a sliding rod one and a sliding rod two slidingly arranged in the magazine cabinet body, a plate body is fixedly installed on the sliding rod one, and a brush one for scraping and cleaning the ventilation rack and the filter screen is arranged on the both sides of the plate body; a support frame extending to the ventilation cover is fixedly installed on the sliding rod two, and a brush two for scraping and cleaning the ventilation cover is arranged on the inner wall of the support frame.

[0010] Preferably, the plate body and the sliding rod one extend to the upper end position in the ventilation rack, the support frame and the sliding rod two extend to the lower end position outside the ventilation cover, and the filter screen is connected to one side of the ventilation rack through bolts.

[0011] Preferably, a rack one and a rack two extending to the cavity one are respectively fixedly installed on the sliding rod one and the sliding rod two, a self-locking rod is rotatably installed in the magazine cabinet body, and a driving gear meshingly connected with the rack one and the rack two is keyed connected to the self-locking rod.

[0012] A use method of the efficient heat dissipation structure of the magazine cabinet according to the claim, characterized in that the use method comprises the following steps:

[0013] Step S1, after the bullet box and the machine gun are placed in the main body, the temperature monitor can monitor the temperature in the magazine cabinet body in real time;

[0014] Step S2, the controller sends an opening signal to the heat dissipation fan, after the heat dissipation fan is opened, the airflow outside is sucked into the cavity one through the ventilation cover, the ventilation cover intercepts the impurities in the airflow, so that the cold energy can cool the main body, the independent placement of the storage frame and the clamp makes the cold energy airflow circulate, and the heat energy is discharged outside the main body through the heat dissipation port;

[0015] Step S3, at the same time, the airflow outside enters the magazine cabinet body through the ventilation rack, the ventilation rack and the filter screen can intercept the impurities in the airflow, the airflow enters the cavity one through the filter plate, and the main body can be cooled;

[0016] Step S4, when the temperature monitor monitors that the temperature in the main body exceeds the specified threshold value, a signal is immediately sent to the controller, the controller sends a signal to the air cooler, after the air cooler is powered on, the cold energy enters the cavity two, the cold energy enters the cavity one through the cavity two, and the bullet box and the machine gun in the cavity one are cooled, when the temperature monitor monitors that the temperature in the main body is lower than the specified threshold value, the air cooler stops running;

[0017] Step S5, when the need for regular cleaning of the ventilation cover, ventilation frame, the controller sends a signal to the electric telescopic rod two, electric telescopic rod two output telescopic slide with a slide rod, slide rod one drive plate, brush one on the ventilation frame and ventilation cover to scratch clean, slide rod one down slide drive rack down, rack down drive mesh connected driving gear rotation, driving gear through the self-locking rod drive rack two up, rack two in the up drive slide rod two, slide rod two drive frame, brush two on the ventilation cover to scratch clean;

[0018] Electric telescopic rod two output end contraction drive slide rod one up, slide rod two down, brush one and brush two in the reciprocating movement on the ventilation cover, ventilation frame cleaning.

[0019] Compared with the prior art, the present application has the following advantages:

[0020] 1, the present application by setting multiple storage frame in the bullet cabinet body for storing the cartridge box, the staggered arrangement of storage frame, this makes the airflow in the cavity one always keep flowing state, the airflow in the cabinet can be discharged through the heat dissipation port.

[0021] 2, the present application by temperature monitor moment temperature monitoring, through the setting of ventilation frame and two ventilation cover on the storage frame, through the ventilation cover, ventilation frame filtered airflow will enter the cavity one, airflow in the flow can be cartridge box and mechanical gun in the cavity one heat dissipation, while the brush one and brush two in the movement can be regularly cleaned ventilation frame, ventilation cover, thereby maintaining the flow of airflow.

[0022] 3, the present application by setting the frame in the storage frame, the storage frame can move on the frame, so that the storage frame can move the cartridge box to the opening of the cabinet, the stop plate in the movement can push the designated storage frame, thereby making the cartridge box more convenient to take. BRIEF DESCRIPTION OF DRAWINGS

[0023] Figure 1 The cabinet cut view of the high efficiency heat dissipation structure of the bullet cabinet put forward in the present application;

[0024] Figure 2 The structure schematic view of the high efficiency heat dissipation structure of the bullet cabinet put forward in the present application;

[0025] Figure 3 The cut view of the high efficiency heat dissipation structure of the bullet cabinet put forward in the present application;

[0026] Figure 4 The side cut view of the high efficiency heat dissipation structure of the bullet cabinet put forward in the present application;

[0027] Figure 5 The frame cut view of the high efficiency heat dissipation structure of the bullet cabinet put forward in the present application;

[0028] Figure 6 A structure amplification schematic view of the high-efficiency heat dissipation structure of the gun cabinet.

[0029] In the figure: 1, support frame; 2, driving gear; 3, ventilation cover; 4, heat dissipation fan; 5, frame; 6, guide rod; 7, sliding block; 8, storage frame; 9, limiting frame; 10, support end; 11, screw rod; 12, nut; 13, electric telescopic rod; 14, support plate; 15, rotating rod two; 16, abutting plate; 17, rotating rod one; 18, clamp; 19, air cooler; 20, ventilation frame; 21, filter screen; 22, sliding rod two; 23, sliding rod one; 24, plate body; 25, rack one; 26, rack two; 27, self-locking rod. DETAILED DESCRIPTION

[0030] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only some of the embodiments of the present application, not all.

[0031] Reference Figures 1-6 , the high-efficiency heat dissipation structure of the gun cabinet and the heat dissipation method thereof, comprising a ventilation cover 3 built-in the gun cabinet body, and a temperature controller for monitoring the temperature condition inside the gun cabinet body is arranged in the gun cabinet body, the ventilation cover 3 is provided with a heat dissipation fan 4 electrically connected with the temperature controller, and the temperature set in the gun cabinet body is set as 15℃-25℃.

[0032] The gun cabinet body is fixedly provided with filter plates, ventilation frames 20 and filter screens 21, the ventilation frames 20 are arranged at both sides of the gun cabinet body, and the two filter plates are vertically arranged correspondingly, the gun cabinet body is provided with an air cooler 19 electrically connected with the controller and capable of conveying cold energy, and it is to be noted that the bullet box and the mechanical gun are placed in the gun cabinet body, the heat dissipation fan 4 can convey air flow by rotating, so as to maintain the temperature inside the gun cabinet body, when the temperature in the gun cabinet body exceeds the specified threshold value, the air cooler 19 is started to make the cold energy enter the gun cabinet body, so as to quickly dissipate heat of the gun cabinet body.

[0033] The gun cabinet body is further provided with a cleaning structure for cleaning the ventilation cover 3 and the ventilation frame 20.

[0034] The cleaning structure comprises sliding rod one 23 and sliding rod two 22 slidingly sleeved in the gun cabinet body, the sliding rod one 23 is fixedly provided with a plate body 24, and the plate body 24 is provided with brush one on both sides for scraping and cleaning the ventilation frame 20 and the filter screen 21, and the gun cabinet body guides the sliding rod one 23 and the sliding rod two 22, so that the sliding rod two 22 and the sliding rod one 23 can stably pull the plate body 24 and the support frame 1 when moving.

[0035] The sliding rod two 22 is fixedly installed with a support frame 1 extending to the ventilation cover 3, and a brush two for scraping and cleaning the ventilation cover 3 is arranged on the inner wall of the support frame 1. The ventilation frame 20 and the filter screen 21 can intercept dust from the outside, the ventilation cover 3 can intercept dust from the outside, and the brush one and the brush two can scrape down the dust when moving, thereby ensuring the flow of air flow.

[0036] The plate body 24 and the sliding rod one 23 extend to the upper end position in the ventilation frame 20, the support frame 1 and the sliding rod two 22 extend to the lower end position outside the ventilation cover 3, the filter screen 21 is connected to one side of the ventilation frame 20 through a bolt, and the sliding rod one 23 and the sliding rod two 22 are respectively fixedly installed with a rack one 25 and a rack two 26 extending into the cavity one.

[0037] The self-locking rod 27 is rotatably installed in the bullet cabinet, and the self-locking rod 27 is connected with a driving gear 2 engaged with the rack one 25 and the rack two 26. The bullet cabinet is provided with an electric telescopic rod two connected with the sliding rod one 23. When the output end of the electric telescopic rod two is extended or retracted, the plate body 24 moves downward, the brush one is driven to clean the ventilation frame 20 and the filter screen 21, and the support frame 1 moves upward to drive the brush two to clean the ventilation cover 3.

[0038] The bullet cabinet is divided into a cavity one and two cavities two by two filter plates, the cavity one is fixedly installed with uniformly distributed frames 5, the frames 5 are fixedly installed with guide rods 6, the guide rods 6 are slidably sleeved with sliding blocks 7, the sliding blocks 7 are integrally connected with storage frames 8 for storing bullet boxes, the guide rods 6 guide the sliding blocks 7 to smoothly pull the storage frames 8 when moving, the cavity one is used for installing core mechanisms and storing bullets, and the cavities two are mainly arranged with ventilation frames as air flow channels.

[0039] The frame 5 and the storage frame 8 are back-shaped structures with a top opening, the frame 5 is slidably sleeved with a limiting frame 9 connected with the storage frame 8, the limiting frame 9 is an L-shaped structure, the bullet cabinet is provided with a pushing structure for pushing the storage frame 8, the cavity one is provided with a moving frame, the moving frame is provided with a clamp 18 for clamping a mechanical gun, and the cavity one is provided with a hydraulic cylinder connected with the moving frame, so that the clamp 18 can drive the mechanical gun to move to the opening of the bullet cabinet.

[0040] The pushing structure includes a support end 10 fixedly installed on the storage frame 8, an electric motor one connected with a lead screw 11 is fixedly installed on the bullet cabinet, the lead screw 11 is rotatably installed on the bullet cabinet, a nut 12 is slidably sleeved on the lead screw 11, an electric telescopic rod one 13 is fixedly installed on the nut 12, a support plate 14 is fixedly connected to the output end of the electric telescopic rod one 13, a rotating rod two 15 is rotatably installed on the support plate 14, and a contact plate 16 is fixedly installed on the rotating rod two 15 and movably abuts against the support end 10.

[0041] The receiving frame 8 is horizontally arranged, the lead screw 11 is vertically arranged between two corresponding receiving frames 8, the guide end connected with the nut 12 is sleeved on the bullet cabinet body, the support plate 14 is rotatably provided with the rotating rod one 17 connected with the rotating rod two 15, the rotating rod two 15 and the rotating rod one 17 are horizontally arranged from top to bottom, the gear one and the gear two are respectively connected with the rotating rod one 17 and the rotating rod two 15, the straight gear is used for the gear one and the gear two, so that the rotating rod two 15 can drive the abutting plate 16 to deflect to the rear position of the specified support end 10, and the specified receiving frame 8 can be pushed to the opening of the bullet cabinet body.

[0042] A use method of the efficient heat dissipation structure of the bullet cabinet of claim 9, characterized in that the use method comprises the following steps:

[0043] Step S1, after the bullet box and the mechanical gun are placed in the main body, the temperature monitor can monitor the temperature in the bullet cabinet body in real time;

[0044] Step S2, the controller sends an opening signal to the cooling fan 4, the cooling fan 4 opens the airflow outside through the ventilation cover 3 to the cavity one, the ventilation cover 3 intercepts the impurities in the airflow, so that the cold energy can cool the main body, the independent placement of the receiving frame 8 and the clamp 18 makes the cold energy flow circulate, and the heat energy is discharged outside the main body through the heat dissipation port;

[0045] Step S3, at the same time, the airflow outside enters the bullet cabinet body through the ventilation frame 20, the ventilation frame 20 and the filter screen 21 can intercept the impurities in the airflow, the airflow enters the cavity one through the filter plate, and the main body can be cooled;

[0046] Step S4, when the temperature monitor detects that the temperature in the main body exceeds the specified threshold, immediately sends a signal to the controller, the controller sends a signal to the air cooler 19, the air cooler 19 is powered on to make the cold energy enter the cavity two, the cold energy enters the cavity one through the cavity two, and the bullet box and the mechanical gun in the cavity one are cooled, when the temperature monitor detects that the temperature in the main body is lower than the specified threshold, the air cooler 19 stops running;

[0047] Step S5, when the bullet box and the mechanical gun need to be taken, the operator opens the password cabinet door 2, and the operator sends a signal to the motor one through the operation table, the motor one output end drives the screw rod 11 to rotate, the screw rod 11 drives the nut 12 to move down when rotating, the nut 12 drives the supporting plate 14 and the abutting plate 16 to move down to the specified two storage frames 8, the motor two output end drives the rotating rod one 17 to rotate, the rotating rod one 17 rotates through the meshing connecting rotating rod two 15, the rotating rod two 15 drives the abutting plate 16 and one of the supporting ends 10 to move and abut, so that the supporting end 10 drives the storage frame 8 and the sliding block 7 to slide on the guide rod 6, and the storage frame 8 can move to the opening of the bullet cabinet body;

[0048] The hydraulic cylinder output end telescopic drives the moving frame and the clamp 18 to drive the mechanical cavity gun to move to the opening of the bullet cabinet body, and the operator can take the bullet box and the mechanical gun respectively;

[0049] Step S6, when the ventilation cover 3 and the ventilation frame 20 need to be cleaned regularly, the controller sends a signal to the electric telescopic rod two, the electric telescopic rod two output end telescopic drives the sliding rod one 23 to move down, the sliding rod one 23 drives the plate body 24 and the brush one to rub and clean the ventilation frame 20 and the ventilation cover 3, the sliding rod one 23 drives the rack one 25 to move down when moving down, the rack one 25 drives the driving gear 2 to rotate when moving down, the driving gear 2 drives the rack two 26 to move up through the self-locking rod 27, the rack two 26 drives the sliding rod two 22 to move when moving up, so that the sliding rod two 22 drives the supporting frame 1 and the brush two to rub and clean the ventilation cover 3;

[0050] The electric telescopic rod two output end telescopic drives the sliding rod one 23 to move up, so that the sliding rod two 22 moves down, and the brush one and the brush two clean the ventilation cover 3 and the ventilation frame 20 when reciprocating.

[0051] The above is only the preferred specific embodiment of the present application, but the protection scope of the present application is not limited to this, any person skilled in the art can make equivalent replacement or change according to the technical scheme and the inventive concept of the present application within the technical range disclosed by the present application, which should be covered in the protection scope of the present application.

Claims

1. The efficient heat dissipation structure of the bullet cabinet, comprising a ventilation cover (3) built in the bullet cabinet body, and a temperature controller arranged in the bullet cabinet body to monitor the temperature condition inside the bullet cabinet body, characterized in that, The ventilation cover (3) is provided with a heat dissipation fan (4) electrically connected with a temperature controller, the bullet cabinet body is fixedly provided with filter plates, ventilation frames (20) and filter screens (21), and the bullet cabinet body is further provided with a cleaning structure for cleaning the ventilation cover (3) and the ventilation frame (20). The bullet cabinet body is divided into two cavities one and two by the two filter plates.

2. The efficient heat dissipation structure of the bullet cabinet according to claim 1, wherein, The ventilation frame (20) is arranged at both sides of the bullet cabinet body, the two filter plates are vertically arranged in correspondence, and the bullet cabinet body is provided with a cold air fan (19) electrically connected with the controller and used for conveying cold energy.

3. The efficient heat dissipation structure of the bullet cabinet according to claim 2, characterized in that, The cleaning structure comprises a sliding rod one (23) and a sliding rod two (22) slidingly arranged in the bullet cabinet body, the sliding rod one (23) is fixedly provided with a plate body (24), brush one for scraping and cleaning the ventilation frame (20) and the filter screen (21) is arranged on the both sides of the plate body (24), the sliding rod two (22) is fixedly provided with a support frame (1) extending into the ventilation cover (3), and brush two for scraping and cleaning the ventilation cover (3) is arranged on the inner wall of the support frame (1).

4. The efficient heat dissipation structure of the bullet cabinet according to claim 3, characterized in that, The plate body (24) and the sliding rod one (23) extend to the upper end position in the ventilation frame (20), the support frame (1) and the sliding rod two (22) extend to the lower end position outside the ventilation cover (3), and the filter screen (21) is connected to one side of the ventilation frame (20) through bolts.

5. The efficient heat dissipation structure of the bullet cabinet according to claim 4, wherein, The sliding rod one (23) and the sliding rod two (22) are respectively fixedly provided with a rack one (25) and a rack two (26) extending into the cavity one, the bullet cabinet body is rotatably provided with a self-locking rod (27), and the self-locking rod (27) is key-connected with a driving gear (2) in mesh connection with the rack one (25) and the rack two (26).

6. A method of using the high-efficiency heat dissipation structure of the bullet cabinet according to claim 5, characterized by, The use method comprises the following steps: Step S1, after the bullet box and the machine gun are placed in the main body, the temperature monitor can monitor the temperature in the bullet cabinet body in real time; Step S2, the controller sends an opening signal to the heat dissipation fan 4, the heat dissipation fan 4 opens, and the airflow outside is sucked into the cavity one through the ventilation cover 3, the ventilation cover 3 intercepts the impurities in the airflow, so that the cold energy can cool the main body, and the independent placement of the receiving frame 8 and the clamp 18 makes the cold energy airflow circulate, and the heat energy is discharged outside the main body through the heat dissipation port; Step S3, at the same time, the airflow outside enters the bullet cabinet body through the ventilation frame 20, the ventilation frame 20 and the filter screen 21 can intercept the impurities in the airflow, and the airflow enters the cavity one through the filter plate, so that the main body can be cooled; Step S4, when the temperature monitor detects that the temperature in the main body exceeds the specified threshold value, a signal is immediately sent to the controller, the controller sends a signal to the cold air fan 19, the cold air fan 19 is powered on, the cold energy enters the cavity two, and the cold energy enters the cavity one through the cavity two, so that the bullet box and the machine gun in the cavity one are cooled, and when the temperature monitor detects that the temperature in the main body is lower than the specified threshold value, the cold air fan 19 stops running; Step S5, when the need for regular cleaning of the ventilation cover 3, ventilation frame 20, the controller sends a signal to the electric telescopic rod two, electric telescopic rod two output telescopic rod driven slide bar one 23 down, slide bar one 23 drive plate body 24, brush one on the ventilation frame 20 and ventilation cover 3 with scratch clean, slide bar one 23 down when driving rack one 25 down, rack one 25 down when driving the mesh connection driving gear 2 rotation, driving gear 2 through the self-locking rod 27 drive rack two 26 up, rack two 26 in the up when driving slide bar two 22, so that the slide bar two 22 drive frame 1, brush two on the ventilation cover 3 with scratch clean; Electric telescopic rod two output telescopic rod driven slide bar one 23 up, make slide bar two 22 down, make brush one and brush two in the reciprocating movement on the ventilation cover 3, ventilation frame 20 clean.

Citation Information

Patent Citations

  • Bullet cabinet

    CN213282144U