Intelligent bullet explosion-proof cabinet integrating multiple safety functions
By integrating intelligent locking, monitoring, and pressure relief components into the explosion-proof cabinet for firearms and ammunition, the problem of high-pressure gas being difficult to release during an internal explosion is solved, achieving comprehensive safety protection and improving the safety of firearms and ammunition storage.
Patent Information
- Application Number
- CN202520625957.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-03
- Publication Date
- 2026-03-17
- Estimated Expiration
- 2035-04-03
AI Technical Summary
When an explosion occurs inside an existing gun and ammunition explosion-proof cabinet, the high-pressure gas and energy cannot be released in time, resulting in excessive pressure in the cabinet and increasing the safety risks to surrounding personnel and facilities.
An intelligent gun and ammunition explosion-proof cabinet was designed, integrating an intelligent locking component, an intelligent monitoring component, a flame-retardant component, and an explosion-proof pressure relief component. The cabinet uses an intelligent door lock for identity verification, real-time monitoring and fire suppression, and utilizes the pressure relief component to release high-pressure gas and energy in a timely manner, reducing the risk of explosion.
It achieves comprehensive, multi-functional, and intelligent security for ammunition storage, reducing the risk of more serious explosions caused by internal explosions and protecting the safety of surrounding personnel and facilities.
Smart Images

Figure CN223994590U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of gun and ammunition explosion-proof cabinet technology, specifically an intelligent gun and ammunition explosion-proof cabinet integrating multiple safety functions. Background Technology
[0002] Gun and ammunition explosion-proof cabinets are used to store firearms and ammunition. In existing technologies, special explosion-proof materials and structural designs, such as multi-layer high-strength steel plates and explosion-proof fillers, are used to improve the explosion-proof, impact-proof, and collision-proof performance of the cabinet. At the same time, advanced biometric technologies, such as fingerprint recognition, facial recognition, and real-time monitoring and alarms, are integrated to enhance the security performance of the cabinet.
[0003] Existing explosion-proof cabinets for firearms and ammunition are entirely enclosed, which reduces the entry of moisture and dust from the outside environment. However, the firearms and ammunition stored inside still pose a risk of explosion due to the firearms themselves, the environment, and human factors. When an explosion occurs inside the cabinet, the high-pressure gas and energy generated by the explosion cannot be released to the outside in time because the cabinet is in a sealed environment. This can easily lead to a more serious explosion due to excessive internal pressure, thus posing a significant safety risk to surrounding personnel and facilities.
[0004] Therefore, there is an urgent need for an intelligent gun and ammunition explosion-proof cabinet that integrates multiple safety functions to solve the above problems. Utility Model Content
[0005] To achieve the above objectives, this utility model provides the following technical solution: an intelligent gun and ammunition explosion-proof cabinet integrating multiple safety functions, including a cabinet body and two symmetrically arranged protective doors hinged to the cabinet body. The cabinet body is provided with multiple detachable placement mesh panels, and also includes an intelligent locking component installed on the protective doors, an intelligent monitoring component installed on the cabinet body, a flame-retardant component installed on the cabinet body, and an explosion-proof pressure relief component installed on the cabinet body.
[0006] The smart lock assembly includes a smart lock disposed between two protective doors. One of the two protective doors is provided with a verification device for multiple authentications of the smart lock. The verification device includes a control box disposed on the protective door. The control box is provided with a password input key and a fingerprint recognition key. The control box is provided with a camera for facial recognition of the person opening the smart lock.
[0007] The intelligent monitoring component includes four vibration sensors installed at the bottom of the cabinet, with the four vibration sensors located at the four corners of the bottom of the cabinet. A door magnetic sensor is installed between the two protective doors, and a smoke alarm is installed on the top inner wall of the cabinet.
[0008] The cabinet is equipped with multiple high-definition cameras, each of which has night vision capabilities and a wide dynamic range.
[0009] The flame-retardant component includes a storage box located on the top of the cabinet, which is filled with carbon dioxide extinguishing agent. The storage box is connected to a delivery pipe via a high-pressure pump, and the side wall of the delivery pipe is connected to nozzles via multiple connecting pipes.
[0010] The explosion-proof pressure relief assembly includes a pressure relief pipe fixedly connected to the cabinet near the storage box. An installation pipe is located inside the pressure relief pipe, and conical covers are provided at both ends of the installation pipe. The larger conical ends of the two conical covers are located away from the installation pipe and connected to the inner wall of the pressure relief pipe. A sealing ball is provided at one of the two conical covers away from the cabinet. The pressure relief pipe is equipped with a compression assembly for squeezing the sealing ball. The end of the pressure relief pipe near the vibration sensor is located on the inner wall of the cabinet and is fixedly connected to a conical guide cover. The pressure relief pipe is equipped with a guide assembly for guiding high-pressure gas and energy.
[0011] The pressure relief pipe is provided with a guide assembly for guiding the movement of the sealing ball. The guide assembly includes two guide grooves symmetrically arranged on the inner wall of the pressure relief pipe. The two guide grooves are slidably connected to guide plates, and one end of the two guide plates is connected to the sealing ball.
[0012] The extrusion assembly includes a filter plate fixedly connected to the end of the pressure relief pipe away from the cabinet. A spring is provided on the side of the filter plate near the sealing ball, and the end of the spring away from the filter plate is connected to the sealing ball.
[0013] The guiding assembly includes an installation groove on the side wall of the pressure relief pipe near the filter plate. An L-shaped guiding pipe is inserted into the installation groove. An installation ring is provided on the side wall of the L-shaped guiding pipe. A rotating ring is fitted on the side wall of the pressure relief pipe. The side wall of the rotating ring is connected to the installation ring through an L-shaped rod. A T-bolt is threadedly connected to the side of the rotating ring away from the cabinet through a fixing plate.
[0014] Compared with the prior art, the beneficial effects of this utility model are:
[0015] This invention provides comprehensive, multifunctional, and intelligent security for ammunition storage by incorporating intelligent locking components, intelligent monitoring components, and flame-retardant components, thereby enhancing the safety of ammunition storage. Furthermore, by utilizing a pressure relief component, when some ammunition inside the cabinet explodes due to the ammunition itself, environmental factors, or human error, the high-pressure gas and energy generated by the explosion can be promptly released to the outside of the cabinet. This reduces the risk of a more severe explosion due to excessive internal pressure, effectively protecting the safety of surrounding personnel and facilities. Attached Figure Description
[0016] Figure 1 This is a schematic diagram of the overall structure of this utility model;
[0017] Figure 2 This is a schematic diagram of the location distribution structure of the intelligent monitoring component of this utility model;
[0018] Figure 3 This is a schematic diagram of the internal structure of the pressure relief component of this utility model;
[0019] Figure 4 This is a schematic diagram of the guiding component structure of this utility model.
[0020] In the diagram: 101, Cabinet; 102, Protective Door; 103, Mesh Panel Placement; 2, Smart Lock; 201, Control Box; 202, Password Input Key; 203, Fingerprint Recognition Key; 204, Camera; 301, Vibration Sensor; 302, Smoke Detector; 401, Storage Box; 402, Delivery Pipe; 403, Connecting Pipe; 404, Nozzle; 501, Pressure Relief Pipe; 502, Mounting Pipe; 503, Conical Cover; 504, Sealing Ball; 505, Guide Cover; 601, Guide Groove; 602, Guide Plate; 701, Filter Plate; 702, Spring; 801, Mounting Groove; 802, L-shaped Guide Pipe; 803, Rotating Ring; 804, L-shaped Rod; 805, Mounting Ring; 806, T-bolt. Detailed Implementation
[0021] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0022] Example 1
[0023] Please see Figures 1-4 The illustration shows an intelligent bullet explosion-proof cabinet integrating multiple safety functions, including a cabinet body 101 and two symmetrically arranged protective doors 102 hinged to the cabinet body 101. The cabinet body 101 is provided with multiple detachable placement mesh panels 103, and also includes an intelligent locking component installed on the protective doors 102, an intelligent monitoring component installed on the cabinet body 101, a flame-retardant component installed on the cabinet body 101, and an explosion-proof pressure relief component installed on the cabinet body 101.
[0024] Please see Figure 1The smart lock assembly shown in the figure includes a smart lock 2 disposed between two protective doors 102. One of the two protective doors 102 is provided with a verification device for multiple authentications of the smart lock 2. The verification device includes a control box 201 disposed in the protective door 102. The control box 201 is provided with a password input key 202 and a fingerprint recognition key 203. The control box 201 is provided with a camera 204 for facial recognition of the person opening the smart lock 2.
[0025] It should be noted here that the intelligent locking component, through multiple authentication methods, effectively prevents unauthorized opening and safeguards the first line of security for the storage of firearms and ammunition.
[0026] Please see Figure 2 The intelligent monitoring components shown in the figure include four vibration sensors 301 installed at the bottom of the cabinet 101. The four vibration sensors 301 are located at the four corners of the bottom of the cabinet 101. A door magnetic sensor (not shown here) is installed between the two protective doors 102. A smoke alarm 302 is installed on the top inner wall of the cabinet 101.
[0027] It should be noted here that the intelligent monitoring component is used to provide timely early warnings of the usage status of cabinet 101 and potential internal fire hazards.
[0028] Please see Figure 2 The cabinet 101 shown in the figure contains multiple high-definition cameras (not shown here), each of which has night vision function and wide dynamic range;
[0029] It should be noted that multiple high-definition cameras installed inside cabinet 101 provide comprehensive and blind-spot-free monitoring of the interior, clearly recording the internal situation day or night.
[0030] Please see Figure 1 and Figure 2 The flame-retardant components shown in the figure include a storage box 401 located on the top of the cabinet 101. The storage box 401 is filled with carbon dioxide extinguishing agent. The storage box 401 is connected to a delivery pipe 402 via a high-pressure pump. The side wall of the delivery pipe 402 is connected to a nozzle 404 via multiple connecting pipes 403.
[0031] It should be noted here that the installation of flame-retardant components facilitates rapid fire suppression within cabinet 101, preventing the fire from spreading and protecting the safety of the ammunition and cabinet 101.
[0032] Working principle: When the firearms and ammunition in the cabinet 101 need to be retrieved during use, the smart door lock 2 installed on the protective door 102 is used first. The person opening the door needs to verify his identity through multiple methods such as password, fingerprint, and facial recognition. Only after the verification is successful will the smart door lock 2 be opened, thereby effectively preventing unauthorized opening and ensuring the first line of security for the storage of firearms and ammunition.
[0033] Furthermore, vibration sensors 301 are installed at the four corners of the bottom of cabinet 101 to monitor in real time whether cabinet 101 is subjected to external impact or vibration. A door magnetic sensor is installed between the two protective doors 102 to accurately monitor the opening and closing status of the doors. Once a door is illegally opened, an alarm is immediately triggered. A smoke detector 302 on the inner wall of the top of cabinet 101 can promptly detect potential fire hazards inside the cabinet. In addition, multiple high-definition cameras with night vision and wide dynamic range capabilities provide comprehensive and blind-spot-free monitoring of the interior of cabinet 101, clearly recording the internal situation day and night. The information collected by the vibration sensors 301, door magnetic sensors, smoke detectors 302, and cameras is transmitted in real time so that management personnel can promptly detect abnormalities and take appropriate measures.
[0034] Meanwhile, a storage box 401 is installed on the top of the cabinet 101, which contains carbon dioxide extinguishing agent. When the smoke alarm 302 detects a fire, the signal is transmitted to the control system. The control system starts the high-pressure pump and delivers the carbon dioxide extinguishing agent in the storage box 401 to the nozzle 404 through the delivery pipe 402 and the connecting pipe 403. The extinguishing agent is sprayed from the nozzle 404 to quickly extinguish the fire, prevent the fire from spreading, and protect the safety of the ammunition and the cabinet 101.
[0035] In summary, cabinet 101, through the installation of intelligent locking components, intelligent monitoring components, and flame-retardant components, provides comprehensive, multifunctional, and intelligent security for the storage of firearms and ammunition, thereby enhancing the security of firearms and ammunition storage.
[0036] Example 2
[0037] Please see Figure 4This embodiment further illustrates Example 1. The explosion-proof pressure relief assembly shown in the figure includes a pressure relief pipe 501 fixedly connected to the side of the cabinet 101 near the storage box 401. The pressure relief pipe 501 has an installation pipe 502 inside. The two ends of the installation pipe 502 are respectively provided with conical covers 503. The large conical ends of the two conical covers 503 are located away from the installation pipe 502 and are connected to the inner wall of the pressure relief pipe 501. One of the two conical covers 503 away from the cabinet 101 is provided with a sealing ball 504. The pressure relief pipe 501 is provided with a compression assembly for squeezing the sealing ball 504. The end of the pressure relief pipe 501 near the vibration sensor 301 is located on the inner wall of the cabinet 101 and is fixedly connected with a conical guide cover 505. The pressure relief pipe 501 is provided with a guide assembly for guiding high-pressure gas and energy.
[0038] It should be noted here that: by setting up the pressure relief component, when some of the bullets inside the cabinet 101 explode due to the bullets themselves, the environment, or human factors, the high-pressure gas and energy generated by the explosion inside the cabinet 101 can be released to the outside of the cabinet 101 in a timely manner, thereby reducing the risk of a more serious explosion due to excessive internal pressure in the cabinet 101, and thus effectively protecting the safety of surrounding personnel and facilities.
[0039] Please see Figure 3 and Figure 4 The pressure relief pipe 501 shown in the figure is provided with a guide assembly for guiding the movement of the sealing ball 504. The guide assembly includes two guide grooves 601 that are symmetrically arranged on the inner wall of the pressure relief pipe 501. The two guide grooves 601 are slidably connected to guide plates 602. The opposite ends of the two guide plates 602 are connected to the sealing ball 504.
[0040] It should be noted here that the guide component is designed to guide and limit the movement of the blocking ball 504.
[0041] Please see Figure 3 and Figure 4 The compression assembly shown in the figure includes a filter plate 701 fixedly connected to the end of the pressure relief pipe 501 away from the cabinet 101. A spring 702 is provided on the side of the filter plate 701 near the sealing ball 504. The end of the spring 702 away from the filter plate 701 is connected to the sealing ball 504.
[0042] It should be noted here that: by setting the compression component, the sealing ball 504 abuts against the side wall of the conical cover 503 under normal circumstances, thereby reducing the probability of moisture and dust from the external environment entering the cabinet 101.
[0043] Please see Figure 3 and Figure 4The guide assembly shown in the figure includes an installation groove 801 opened on the side wall of the pressure relief pipe 501 near the filter plate 701. An L-shaped guide pipe 802 is inserted into the installation groove 801. An installation ring 805 is provided on the side wall of the L-shaped guide pipe 802. A rotating ring 803 is sleeved on the side wall of the pressure relief pipe 501. The side wall of the rotating ring 803 is connected to the installation ring 805 through an L-shaped rod 804. A T-bolt 806 is threadedly connected to the side of the rotating ring 803 away from the cabinet 101 through a fixing plate.
[0044] It should be noted that the guide component can be used to guide the high-pressure gas and energy flowing out of the pressure relief pipe 501 to a safe direction, so as to avoid secondary damage to surrounding personnel and equipment. At the same time, if the top of the cabinet 101 is a safe area, the guide component does not need to be installed and used.
[0045] Working principle: When some bullets inside the cabinet 101 explode due to the bullets themselves, the environment, or human factors, high-pressure gas and energy are generated inside the cabinet 101. At this time, under the action of high-pressure gas and energy, the sealing ball 504 will be pushed away from the conical cover 503, so that the high-pressure gas and energy can flow out from the gap between the sealing ball 504 and the conical cover 503. This releases the high-pressure gas and energy generated by the explosion to the outside in a timely manner, reducing the risk of a more serious explosion due to excessive internal pressure in the cabinet 101, thereby effectively protecting the safety of surrounding personnel and facilities. At the same time, under normal circumstances, the sealing ball 504 will abut against the side wall of the conical cover 503 under the elastic compression of the compression component, thereby reducing the probability of moisture and dust from the external environment entering the cabinet 101.
[0046] It will be apparent to those skilled in the art that this invention is not limited to the details of the exemplary embodiments described above, and that it can be implemented in other specific forms without departing from the spirit or essential characteristics of this invention. Therefore, the embodiments should be considered illustrative and non-limiting in all respects, and the scope of this invention is defined by the appended claims rather than the foregoing description. Thus, it is intended that all variations falling within the meaning and scope of equivalents of the claims be included within this invention. No reference numerals in the claims should be construed as limiting the scope of the claims.
Claims
1. An intelligent bullet explosion-proof cabinet integrated with multiple security functions, comprising: a cabinet body (101) and two mutually symmetrical protection doors (102) hinged to the cabinet body (101), wherein a plurality of detachable placing mesh plates (103) are arranged in the cabinet body (101); characterized in that it further comprises: an intelligent locking assembly arranged on the protection door (102); an intelligent monitoring assembly arranged on the cabinet body (101); a fireproof assembly arranged on the cabinet body (101); an explosion-proof pressure relief assembly arranged on the cabinet body (101); the intelligent locking assembly comprises an intelligent door lock (2) arranged between the two protection doors (102), one of the two protection doors (102) is provided with a verification member for multiple identity verification of the intelligent door lock (2), the verification member comprises a control box (201) arranged on the protection door (102), the control box (201) is provided with a password input key (202) and a fingerprint recognition key (203), the control box (201) is provided with a camera (204) for face recognition of the person opening the intelligent door lock (2); the intelligent monitoring assembly comprises four vibration sensors (301) arranged at the bottom of the cabinet body (101), the four vibration sensors (301) are located at the four corners of the bottom of the cabinet body (101), a door magnetic sensor is arranged between the two protection doors (102), and a smoke alarm (302) is arranged on the inner wall of the top of the cabinet body (101); a plurality of high-definition cameras are arranged in the cabinet body (101), and each high-definition camera has night vision function and wide dynamic range.
2. The smart ammunition safe integrated with multiple security features as claimed in claim 1, wherein: the fireproof assembly comprises a storage box (401) arranged on the top of the cabinet body (101), the storage box (401) is filled with carbon dioxide extinguishing agent, the storage box (401) is connected with a delivery pipe (402) through a high-pressure pump, and the side wall of the delivery pipe (402) is connected with a spray head (404) through a plurality of connecting pipes (403).
3. The smart ammunition ballistic resistant safe integrated with multiple security features of claim 2, wherein: the explosion-proof pressure relief assembly comprises a pressure relief pipe (501) fixedly connected to one side of the cabinet body (101) close to the storage box (401), the pressure relief pipe (501) is internally provided with a mounting pipe (502), both ends of the mounting pipe (502) are provided with conical covers (503), the large end of the cone of each conical cover (503) is arranged away from the mounting pipe (502) and connected with the inner wall of the pressure relief pipe (501), one of the two conical covers (503) away from the cabinet body (101) is provided with a blocking ball (504), the pressure relief pipe (501) is provided with an extrusion assembly for extruding the blocking ball (504), one end of the pressure relief pipe (501) close to the vibration sensor (301) is located on the inner wall of the cabinet body (101) and fixedly connected with a conical guide cover (505), and the pressure relief pipe (501) is provided with a guide assembly for guiding high-pressure gas and energy.
4. The smart ammunition ballistic resistant safe integrated with multiple security features of claim 3, wherein: The pressure relief pipe (501) is provided with a guide assembly for guiding the movement of the blocking ball (504), the guide assembly comprises two symmetrically arranged guide grooves (601) opened in the inner wall of the pressure relief pipe (501), the two guide grooves (601) are slidably connected with guide plates (602), and the opposite ends of the two guide plates (602) are connected with the blocking ball (504).
5. The smart ammunition ballistic resistant safe integrated with multiple security features of claim 4, wherein: The extrusion assembly comprises a filter plate (701) fixedly connected to the end of the pressure relief pipe (501) away from the cabinet body (101), one side of the filter plate (701) close to the blocking ball (504) is provided with a spring (702), and the end of the spring (702) away from the filter plate (701) is connected with the blocking ball (504).
6. The smart ammunition ballistic resistant safe integrated with multiple security features of claim 5, wherein: The guide assembly comprises a mounting groove (801) opened in the side wall of the end of the pressure relief pipe (501) close to the filter plate (701), the mounting groove (801) is inserted with an L-shaped guide pipe (802), the side wall of the L-shaped guide pipe (802) is provided with a mounting ring (805), the side wall of the pressure relief pipe (501) is sleeved with a rotating ring (803), the side wall of the rotating ring (803) is connected with the mounting ring (805) through an L-shaped rod (804), and the side of the rotating ring (803) away from the cabinet body (101) is screw-connected with a T-shaped bolt (806) through a fixed plate.