Vehicle-mounted mobile weapon library
By adopting a double-layer steel plate welded frame, multiple locking mechanisms and intelligent environment monitoring system in the on-board mobile arsenal, the shortcomings of the existing on-board mobile arsenal in protective structure, storage devices and environmental control are solved, and a high-security and stable storage environment is achieved.
Patent Information
- Application Number
- CN202510821641.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-19
- Publication Date
- 2025-08-15
AI Technical Summary
The existing vehicle-mounted mobile arsenal lacks layered protection in the design of protective structures, the storage device layout is rigid, the locking system is single, and the environmental control capabilities are insufficient, making it difficult to meet the high-security storage needs.
It adopts a double-layer steel plate welded frame plus a 360° insulation layer, integrates multiple locking mechanisms and intelligent environment monitoring systems, including face recognition, mechanical locks, password locks, temperature and humidity sensors, ventilation fans, etc., to achieve multi-dimensional protection and environmental adjustment.
It improves the protection, stability and safety of the arsenal, ensures the long-term safe storage of guns and ammunition in extreme environments, and improves the anti-theft ability and environmental adaptability.
Smart Images

Figure CN120486794A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of weapon storage and transportation equipment, and in particular to a vehicle-mounted mobile weapons depot. Background Art
[0002] With the development of security protection technologies and the need for equipment mobility, early fixed armories have gradually evolved towards modularization and vehicle-mounted systems. Traditional armories are primarily fixed building structures, constructed with materials such as reinforced concrete and steel plates to create a protective system, and mechanical locks are used for secure storage, but they lack mobile deployment capabilities. In recent years, the emergence of vehicle-mounted mobile armories has met the needs of military and security sectors for rapid equipment transfer and flexible deployment. Their technological development focuses on lightweight protective structures, rationalized storage space, and intelligent locking systems. For example, composite steel plates and skeleton structures are used to enhance impact resistance, electronic combination locks are introduced to enhance security, and basic environmental monitoring functions are also being integrated.
[0003] However, existing vehicle-mounted mobile arsenals still have obvious technical defects in actual applications: first, the protective structure is mostly built with a single material and lacks a layered protection design, resulting in insufficient comprehensive performance in scenarios such as fire prevention and violent destruction. For example, the bonding strength between the steel plate and the filler is limited, and the protective layer is prone to peeling; second, the layout of the storage device is rigid, and it is difficult to balance the load-bearing capacity of the storage rack and the space utilization rate, and there is a lack of modular fixed structures for different types of equipment, resulting in poor loading stability; third, the locking system mostly relies on a single mechanical lock or electronic lock, and has not formed a multi-dimensional authentication system, and there is a risk of password leakage or mechanical structure cracking; fourth, the environmental control capability is weak, and it is impossible to adjust the temperature, humidity, air quality and other parameters in the warehouse in real time. In addition, there is a lack of an integrated intrusion monitoring and alarm mechanism, which makes it difficult to meet high-security storage needs. Summary of the Invention
[0004] The purpose of the present invention is to overcome the above problems and provide a vehicle-mounted mobile weapons depot. To achieve the above purpose, the present invention adopts the following technical solutions:
[0005] A vehicle-mounted mobile armory comprises a main frame, a door assembly, an auxiliary system, a storage device, and a locking mechanism; the door assembly is rotationally connected to the front side panels of the main frame via a hinge assembly to form an open and close closed interface; the storage device is fixed on both sides of the interior of the main frame; the locking mechanism is embedded in the interior of the door assembly; the main frame comprises a top plate, a bottom plate, and two groups of symmetrically arranged side panels; the top plate, bottom plate, and side panels are welded at right angles to form a pairwise vertical frame structure, enclosing a closed accommodating cavity.
[0006] The door assembly includes a door body, a lock door, a hinge assembly, and a face recognition integrated machine; the lock door is arranged in the middle of the door body; the face recognition integrated machine and the locking mechanism are fixed inside the lock door; the fixed side of the door assembly is provided with two exposed hinges and four protruding fixed bolts, a rotary switch is provided in the middle, and six movable bolts are evenly arranged on the opening side.
[0007] The locking mechanism includes a mechanical lock group and a password lock group; the password lock group and the mechanical lock group are arranged inside the locked door, the mechanical lock group includes a first mechanical lock and a second mechanical lock; the password lock group includes a first password lock and a second password lock.
[0008] It also includes a strong and weak current inlet; the strong and weak current inlet is arranged at the lower right side of the rear side plate of the main frame and is connected to the internal electrical system.
[0009] The storage device is fixed on two symmetrically arranged side panels, including several storage racks, load-bearing plates, partitions, a rack group and a fixed bracket; the storage racks include several evenly spaced square tubes; the two ends of the square tubes are rigidly connected to the front side panels and partitions respectively; the storage racks are arranged in a layered array and fixedly connected to the left side panel; the rack group and the fixed bracket are fixedly connected to the left and right sides respectively.
[0010] The storage rack group includes a first storage rack, a second storage rack and a third storage rack; the bottoms of the first storage rack and the second storage rack are respectively fixedly connected to the load-bearing plate, the front ends are connected to the partition plate, and the rear ends are connected to the rear side plate; the left ends of the first storage rack and the second storage rack are rigidly connected to the left side plate; the two ends of the third storage rack are rigidly connected to the front side plate and the rear side plate, respectively, and a partition plate is provided in the middle along the longitudinal interval; the top end of the partition plate is fixedly connected to the top plate, and the bottom end is rigidly connected to the bottom plate.
[0011] The fixed bracket includes a first fixed bracket and a second fixed bracket; the bottom of the first fixed bracket is connected to the load-bearing plate, and the left end is fixedly connected to the left side plate; the two ends of the second fixed bracket are rigidly connected to the front side plate and the rear side plate respectively, and a partition is arranged in the middle along the longitudinal interval.
[0012] The side panels include a front side panel, a rear side panel, a left side panel and a right side panel; the front side panel, the rear side panel, the left side panel and the right side panel are surrounded by spatial positioning to form a rectangular frame structure.
[0013] It also includes an auxiliary system, including a human body sensor, an infrared camera, a visible light camera, a temperature and humidity sensor, a ventilation fan, an explosion-proof socket and a central control unit. The human body sensor is installed at the top of the main frame and is fixedly connected to the infrared camera and the visible light camera. The temperature and humidity sensor is embedded in the side wall of the main frame. The ventilation fan is arranged on the front side of the main frame and is connected to the temperature and humidity sensor signal. The explosion-proof socket is installed at the bottom of the main frame. The central control unit is electrically connected to the human body sensor, infrared camera, visible light camera, temperature and humidity sensor, ventilation fan and explosion-proof socket.
[0014] The advantages of the present invention are:
[0015] 1. This invention utilizes a double-layer steel plate welded structure with an integrated 360° wraparound thermal insulation layer, achieving high protection and stability in extreme environments. The double-layer steel plates are welded at right angles to form a closed chamber, effectively blocking external impact and heat conduction. The composite insulation material maintains a constant temperature within the chamber while meeting explosion-proof and flame-retardant requirements. This solves the problem of traditional armories being susceptible to temperature and humidity degradation in complex climates, ensuring the long-term safe storage of firearms and ammunition.
[0016] 2. This invention achieves advanced theft prevention and identity verification capabilities through the use of multiple locking mechanisms. A mechanical lock assembly and a combination lock assembly are embedded within the door, requiring simultaneous verification before opening. The facial recognition module utilizes liveness detection technology to prevent counterfeit attacks, while the asymmetric lock structure further enhances the difficulty of cracking. This design significantly outperforms single lock or biometric solutions, effectively addressing the risk of unauthorized intrusion and meeting the requirements for weapon storage in high-security scenarios.
[0017] 3. This invention integrates temperature and humidity sensors, ventilation fans, human motion sensors, and a monitoring system to achieve intelligent environmental monitoring and security linkage. The temperature and humidity sensors collect data in real time and trigger the ventilation fans to adjust the internal environment, preventing weapons from getting damp or overheating. The human motion sensor, combined with the millimeter-wave radar, activates infrared and visible light cameras to record and generate an alarm in the event of an unauthorized intrusion. A central control unit manages all modules, ensuring stable operation during vehicle transport or static deployment, significantly enhancing the arsenal's active defense capabilities and environmental adaptability. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] The drawings constituting a part of this application are used to provide a further understanding of this application and make other features, purposes and advantages of this application more apparent. The drawings and descriptions of the exemplary embodiments of this application are used to explain this application and do not constitute an improper limitation on this application.
[0019] In the attached figure:
[0020] Figure 1 This is a structural diagram of a vehicle-mounted mobile weapons depot in Example 1.
[0021] Figure 2 This is a front view of a vehicle-mounted mobile armory in Example 1.
[0022] Figure 3 This is a right view of a vehicle-mounted mobile armory in Example 1.
[0023] Figure 4 This is a rear view of a vehicle-mounted mobile weapons depot in Example 1.
[0024] Figure 5 This is a cross-sectional view of a vehicle-mounted mobile arsenal in Example 1.
[0025] Figure 6 This is a schematic diagram of the partial structure of a vehicle-mounted mobile weapons depot in Example 1.
[0026] Figure 7 This is a partial right view of a vehicle-mounted mobile armory in Example 1.
[0027] Figure 8 This is a schematic diagram of the structure of a locking door in a vehicle-mounted mobile armory in Example 1.
[0028] Figure 9 This is a framework diagram of an auxiliary system in a vehicle-mounted mobile weapons depot in Example 1.
[0029] The symbols in the figure are:
[0030] 1. Main frame; 11. Top plate; 12. Bottom plate; 13. Side plate; 131. Front side plate; 132. Rear side plate; 133. Left side plate; 134. Right side plate; 2. Door assembly; 21. Door body; 22. Door lock; 23. Hinge assembly; 24. Face recognition integrated device; 25. Fixed door bolt; 26. Rotary switch; 27. Movable door bolt; 3. Auxiliary system; 31. Human body sensor; 32. Ventilation fan; 4. Storage device; 41. Storage rack; 42. Load-bearing plate; 43. Partition; 44. Shelf group; 441. First shelf; 442. Second shelf; 443. Third shelf; 45. Fixed bracket; 451. First fixed bracket; 452. Second fixed bracket; 5. Locking mechanism; 51. First mechanical lock; 52. Second mechanical lock; 53. First password lock; 54. Second password lock; 6. Power inlet. DETAILED DESCRIPTION
[0031] To make the objectives, technical solutions, and advantages of the embodiments of the present invention more clear, the technical solutions of the embodiments of the present invention will be clearly and completely described below in conjunction with the accompanying drawings of the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Generally, the components of the embodiments of the present invention described and shown in the drawings herein can be arranged and designed in various different configurations.
[0032] The present invention is described in detail and specifically below through specific examples to provide a better understanding of the present invention. However, the following examples do not limit the scope of protection of the present invention.
[0033] Example 1
[0034] A vehicle-mounted mobile armory comprises a main frame 1, a door assembly 2, an auxiliary system 3, a storage device 4, and a locking mechanism 5; the door assembly 2 is rotationally connected to the front side panels of the main frame 1 via a hinge assembly to form an open and close closed interface; the storage device 4 is fixed on both sides of the interior of the main frame 1; the locking mechanism 5 is embedded in the interior of the door assembly 2; the main frame 1 comprises a top plate 11, a bottom plate 12 and two groups of symmetrically arranged side panels 13; the top plate 11, the bottom plate 12 and the side panels 13 are welded at right angles to form a pairwise vertical frame structure, enclosing a closed accommodating cavity.
[0035] In this embodiment, a double-layer steel plate welded frame structure consisting of a top plate 11, a bottom plate 12, and two sets of symmetrical side plates 13 is provided, combined with a rotational connection between the door assembly 2 and the hinge assembly 23, to achieve the stability and openability of the closed storage cavity. The double-layer steel plates of the main frame 1 are welded at right angles to form two perpendicular rectangular frames, enclosing a closed space and ensuring the stability of the internal storage environment; the door assembly 2 is rotationally connected to the front side plate 131 via the hinge assembly 23 to form an opening and closing interface for easy access; the storage device 4 is fixed on both sides, and the locking mechanism 5 is embedded in the door assembly 2. The overall structure meets the dual requirements of vehicle transportation and static storage.
[0036] Furthermore, the door body assembly 2 includes a door body 21, a lock door 22, a hinge assembly 23, and a face recognition integrated machine 24; the lock door 22 is arranged in the middle of the door body 21; the face recognition integrated machine 24 and the locking mechanism 5 are fixed inside the lock door 22; the fixed side of the door body assembly 2 is provided with two exposed hinges and four protruding fixed bolts 25, a rotary switch 26 is provided in the middle, and six movable bolts 27 are evenly arranged on the opening side.
[0037] In this embodiment, a lock door 22 is integrated into the middle of the door body 21, along with a facial recognition system 24, a fixed bolt 25, and a movable bolt 27, achieving the synergy of multiple physical and electronic locking functions. The lock door 22 incorporates the facial recognition system 24 and the locking mechanism 5. Two exposed hinges and four fixed bolts 25 on the fixed side enhance structural stability. Six movable bolts 27 on the opening side, in conjunction with a rotary switch 26, enable flexible opening and closing of the door body 21. The hinge assembly 23 ensures reliable rotation of the door body 21. The overall design balances ease of operation with anti-theft performance.
[0038] Door 21 utilizes a JKM-DA-0920 safe door. The door body 41 and door frame protective structure, from exterior to interior, consists of 8.0mm thick steel plate, 90mm thick reinforced concrete layer, 3.0mm thick steel plate, and 1.5mm thick steel plate. 12mm diameter rebar is installed within the reinforced concrete layer, spaced 150mm apart. The fixed side of door assembly 2 features two exposed hinges and four 28mm diameter fixed bolts 25 with a 30mm extension. The opening side features six 38mm diameter movable bolts 27 with a 35mm extension. Door 21 is equipped with two FDS-B-III / S&G6731 mechanical combination locks. The locks are reinforced with 8mm thick steel plate. The armory's overall dimensions are: 6058mm long, 2438mm wide, and 2438mm high.
[0039] Furthermore, the locking mechanism 5 includes a mechanical lock group and a password lock group; the password lock group and the mechanical lock group are arranged inside the lock door 22, the mechanical lock group includes a first mechanical lock 51 and a second mechanical lock 52; the password lock group includes a first password lock 53 and a second password lock 54.
[0040] In this embodiment, a physical locking function with a multiple-verification mechanism is implemented by configuring a first mechanical lock 51, a second mechanical lock 52, a first combination lock 53, and a second combination lock 54 within the locked door 22. Both the mechanical lock assembly and the combination lock assembly are embedded within the locked door 22, requiring simultaneous verification before the door 21 can be opened. This asymmetric lock structure enhances security, prevents a single lock from being cracked, and meets the requirements of high-security scenarios.
[0041] Furthermore, it also includes a strong and weak current inlet 6; the strong and weak current inlet 6 is arranged at the lower right side of the rear side plate 132 of the main frame 1 and is connected to the internal electrical system.
[0042] This embodiment connects an external power source to the internal electrical system by providing a power inlet 6 at the lower right corner of the rear side panel 132 of the main frame 1. The installation location of the power inlet 6 facilitates maintenance and access, ensuring a stable power supply to the auxiliary system 3. The protective design also prevents external interference, ensuring the safety and reliability of the electrical system.
[0043] Furthermore, the storage device 4 is fixed on two symmetrically arranged side panels 13, and includes a number of storage racks 41, a load-bearing plate 42, a partition 43, a storage rack group 44 and a fixed bracket 45; the storage rack 41 includes a number of evenly spaced square tubes 42; the two ends of the square tubes 42 are rigidly connected to the front side panel 131 and the partition 43 respectively; the storage racks 41 are arranged in a layered array and fixedly connected to the left side panel 133; the storage rack group 44 and the fixed bracket 45 are fixedly connected to the left side panel 133 and the right side panel 134 respectively.
[0044] In this embodiment, the armory is a fully enclosed structure, constructed with 3.0mm thick steel plates and a steel frame. Both the horizontal and vertical sections are constructed with 20mm x 40mm x 2.0mm square tubes, 1.5mm thick steel plates, and 90mm thick fireproof rock wool panels. The main frame 1 is clad and secured with 0.5mm steel plates on all sides, with a thickness of 100mm. The storage racks 41 are constructed with 20mm x 40mm x 2mm square tubes, and the load-bearing plates 42 are constructed with 2.0mm steel plates.
[0045] This embodiment achieves the classified storage function of multiple types of firearms and ammunition by arranging the storage racks 41 in a layered array, combined with the symmetrical fixation of the rack group 44 and the fixing bracket 45.
[0046] The storage rack 41 is composed of evenly spaced square tubes, with both ends rigidly connected to the front side panel 131 and the partition 43. The layered design is suitable for guns of different sizes; the storage rack group 44 and the fixing bracket 45 are respectively fixed to the left side panel 133 and the right side panel 134, optimizing space utilization and meeting the layered storage needs of ammunition racks.
[0047] Furthermore, the storage rack group 44 includes a first storage rack 441, a second storage rack 442 and a third storage rack 443; the bottoms of the first storage rack 441 and the second storage rack 442 are respectively fixedly connected to the load-bearing plate 42, the front ends are connected to the partition 43, and the rear ends are connected to the rear side plate 132; the left ends of the first storage rack 441 and the second storage rack 442 are rigidly connected to the left side plate 133; the two ends of the third storage rack 443 are rigidly connected to the front side plate 131 and the rear side plate 132, respectively, and a partition 43 is arranged in the middle along the longitudinal interval; the top end of the partition 43 is fixedly connected to the top plate 11, and the bottom end is rigidly connected to the bottom plate 12.
[0048] This embodiment realizes the partitioning and fixing function of ammunition and guns through the differentiated connection mode of the first rack 441, the second rack 442 and the third rack 443, combined with the longitudinal spacing arrangement of the partition 43.
[0049] The bottom ends of the first and second storage racks 441, 442 are connected to the load-bearing plate 42, and the front and rear ends are respectively fixed to the partition plate 43 and the rear side plate 132, and the left end is rigidly connected to the left side plate 133; the two ends of the third storage rack 443 are connected to the front side plate 131 and the rear side plate 132, and the middle partition plate 43 is longitudinally spaced apart. The top end is fixed to the top plate 11 and the bottom end is fixed to the bottom plate 12 to ensure structural stability and reasonable partitioning.
[0050] Furthermore, the fixed bracket 45 includes a first fixed bracket 451 and a second fixed bracket 452; the bottom of the first fixed bracket 451 is connected to the load-bearing plate 42, and the left end is fixedly connected to the left side plate 133; the two ends of the second fixed bracket 452 are rigidly connected to the front side plate 131 and the rear side plate 132 respectively, and a partition 43 is arranged in the middle along the longitudinal interval.
[0051] This embodiment achieves stable support for the load-bearing plate 42 and the side panels 13 through the differentiated connection design of the first fixing bracket 451 and the second fixing bracket 452. The first fixing bracket 451 is connected to the load-bearing plate 42 at its bottom and fixed to the left side panel 133 at its left end. The second fixing bracket 452 is connected to the front and rear side panels 131 and 132 at its ends, and is longitudinally spaced apart by the central partition 43. These two brackets work together to enhance the rigidity of the internal structure of the frame, prevent deformation of the load-bearing plate 42, and improve the overall load-bearing capacity.
[0052] Furthermore, the side panel 13 includes a front side panel 131 , a rear side panel 132 , a left side panel 133 and a right side panel 134 ; the front side panel 131 , the rear side panel 132 , the left side panel 133 and the right side panel 134 are spatially positioned and enclosed to form a rectangular frame structure.
[0053] This embodiment achieves spatial positioning and enclosure of the main frame 1 through the rectangular frame structure of the front side panels 131, rear side panels 132, left side panels 133, and right side panels 134. The four sets of side panels 13, through spatial positioning, form a rectangular frame, ensuring the installation accuracy and structural stability of each component, providing a unified installation reference for the door assembly 2, storage device 4, and auxiliary system 3, and ensuring the coordination of overall functionality.
[0054] Furthermore, it also includes an auxiliary system 3, including a human body sensor 31, an infrared camera, a visible light camera, a temperature and humidity sensor, a ventilation fan 32, an explosion-proof socket and a central control unit. The human body sensor is installed at the top of the main frame 1 and is fixedly connected to the infrared camera and the visible light camera. The temperature and humidity sensor is embedded in the side wall of the main frame 1. The ventilation fan 32 is arranged on the front side of the main frame 1 and is connected to the temperature and humidity sensor signal. The explosion-proof socket is installed at the bottom of the main frame 1. The central control unit is electrically connected to the human body sensor, infrared camera, visible light camera, temperature and humidity sensor, ventilation fan and explosion-proof socket.
[0055] In this embodiment, a human body sensor 31 is installed at the top of the main frame 1 and operates based on passive infrared technology. The EKMB1107112 from the Panasonic EKMB series can be selected to continuously monitor changes in infrared radiation within the warehouse. This sensor triggers an alarm by detecting changes in heat emitted by the human body, ensuring high sensitivity and reliability. Upon detecting fluctuations in thermal radiation caused by abnormal human activity, a trigger signal is immediately sent to the central control unit. This trigger signal activates the infrared and visible light cameras to record and generate an alarm. This design not only improves the accuracy of intrusion detection but also ensures a rapid response to unauthorized intrusions.
[0056] The infrared camera and visible light camera near the human body sensor 31 are fixedly installed on the top inside the main frame 1. The infrared camera can be selected from Hikvision DS-2CE16D0T-IT3Z, which uses the built-in LED light to fill in the light to capture images under low-light conditions. This camera can provide clear images in extremely low-light environments, ensuring all-weather monitoring capabilities. The visible light camera can be selected from Axis M3045-W, which can obtain color images under normal lighting conditions, support H.264 / H.265 encoding standards, and provide high-definition video output. The two-way video signal is transmitted in real time to the central control unit for storage and analysis through the network interface. When the human body sensor 31 triggers an intrusion signal, the two cameras start synchronously, record the entire process of the event and store the video data in the central control unit. This method ensures that the security situation in the warehouse can be effectively monitored whether it is day or night.
[0057] The temperature and humidity sensor is embedded in the side wall of the main frame 1 and is responsible for continuously collecting temperature and humidity data in the library. Sensirion SHT31-DIS-B can be used. This sensor uses a capacitive humidity sensor element and a bandgap temperature sensor element to accurately measure relative humidity and temperature, and can be used to measure humidity and temperature. 2 The C interface transmits the data to the central control unit. The analog signals output by the temperature and humidity sensors undergo A / D conversion and are then transmitted to the central control unit. The central control unit determines, based on preset thresholds, whether to activate the ventilation fan 32 to adjust the environment. This approach ensures accurate monitoring of environmental parameters within the warehouse and enables timely action to maintain optimal storage conditions.
[0058] The ventilation fan 32 is located on the front side of the main frame 1 and is connected to the temperature and humidity sensor signal. The Delta Electronics AFBL1212L model can be used. This fan uses a brushless DC motor design, which is highly efficient, energy-efficient, and has a long lifespan. It is installed above the front panel of the main frame 1 to facilitate effective air circulation. When the temperature and humidity sensor detects that environmental parameters deviate from the safety threshold, the central control unit adjusts the speed of the ventilation fan 32 based on the feedback information and precisely controls the air volume through a PWM signal. As the environmental parameters return to normal, the ventilation fan 32 automatically shuts off, ensuring that the temperature and humidity in the warehouse remain within the appropriate range and protecting the firearms and ammunition stored inside from the impact of environmental factors.
[0059] An explosion-proof socket, mounted at the bottom of the main frame 1, provides explosion-proof power input for the entire system. Appleton EXD explosion-proof plugs and sockets are compatible. These sockets are designed for use in hazardous environments, are explosion-proof and waterproof, and feature built-in overload protection to prevent damage from excessive current. Furthermore, a grounding terminal compliant with international standards enhances safety. This ensures stable operation of the electrical system, even in flammable and explosive environments, ensuring the continuous power supply required by the mobile arsenal.
[0060] Auxiliary system 3, the intelligent core of the onboard mobile arsenal, achieves environmental monitoring and security linkage through electrical connections and signal interaction between various components. An explosion-proof socket, installed at the bottom of the main frame 1, provides explosion-proof power input to the central control unit and various electrical devices, ensuring power safety in the onboard environment. The central control unit, the system's nerve center, establishes a two-way communication link through electrical connections with the human body sensor 31, infrared camera, visible light camera, temperature and humidity sensor, and ventilation fan 32. It receives data collected by each sensor in real time and outputs control signals to the actuator components according to preset logic, achieving integrated management of the entire system.
[0061] In both mobile and static deployment scenarios, the components of auxiliary system 3 operate in tandem. When the temperature and humidity sensors detect an environmental anomaly, the central control unit activates ventilation fan 32 while maintaining the monitoring status of the occupancy sensor 31 and the camera. If the occupancy sensor 31 triggers an intrusion signal, the central control unit simultaneously activates recording on both cameras and maintains ventilation fan 32 to ensure a stable monitoring environment. Throughout this process, explosion-proof sockets provide continuous power, and the central control unit, through real-time data processing and logical decision-making, achieves automated linkage between environmental regulation and security monitoring, ensuring the safe operation of the arsenal.
[0062] This embodiment integrates a human body sensor 31, a temperature and humidity sensor, a ventilation fan 32, and an explosion-proof socket to achieve environmental monitoring, security linkage, and power supply functions. The human body sensor 31 is installed at the top of the main frame 1 and is fixedly connected to an infrared camera and a visible light camera to trigger an illegal intrusion alarm. The temperature and humidity sensor is embedded in the side panel 13, and the ventilation fan 32 adjusts the internal environment based on the signal. The explosion-proof socket is installed at the bottom of the main frame 1 to meet the vehicle's power supply requirements. The central control unit is electrically connected to each module to ensure efficient system operation.
[0063] While the specific embodiments of the present invention have been described in detail above, they are merely exemplary, and the present invention is not equivalent to the specific embodiments described above. For those skilled in the art, any equivalent modifications and substitutions of the present invention are also within the scope of the present invention. Therefore, equivalent changes and modifications made without departing from the spirit and scope of the present invention are intended to be encompassed within the scope of the present invention.
Claims
1. A vehicle-mounted mobile arsenal, characterized by: The invention comprises a main frame (1), a door assembly (2), an auxiliary system (3), a storage device (4), and a locking mechanism (5); the door assembly (2) is rotatably connected to the front side plate of the main frame (1) through a hinge assembly to form an open and close closed interface; the storage device (4) is fixed on both sides of the interior of the main frame (1); the locking mechanism (5) is embedded in the interior of the door assembly (2); the main frame (1) comprises a top plate (11), a bottom plate (12) and two groups of symmetrically arranged side plates (13); the top plate (11), the bottom plate (12) and the side plates (13) are welded at right angles to form a pairwise vertical frame structure, which encloses a closed accommodating cavity.
2. The vehicle-mounted mobile arsenal according to claim 1, characterized in that: The door assembly (2) comprises a door body (21), a locking door (22), a hinge assembly (23), and a face recognition integrated device (24); the locking door (22) is arranged in the middle of the door body (21); the face recognition integrated device (24) and the locking mechanism (5) are fixed inside the locking door (22); the fixed side of the door assembly (2) is provided with two exposed hinges and four protruding fixed bolts (25), the middle part is provided with a rotary switch (26), and the opening side is evenly provided with six movable bolts (27).
3. The vehicle-mounted mobile arsenal according to claim 2, characterized in that: The locking mechanism (5) includes a mechanical lock group and a password lock group; the password lock group and the mechanical lock group are arranged inside the lock door (22); the mechanical lock group includes a first mechanical lock (51) and a second mechanical lock (52); the password lock group includes a first password lock (53) and a second password lock (54).
4. The vehicle-mounted mobile arsenal according to claim 3, characterized in that: It also includes a strong and weak current inlet (6); the strong and weak current inlet (6) is arranged at the lower right side of the rear side plate (132) of the main frame (1) and is connected to the internal electrical system.
5. The vehicle-mounted mobile arsenal according to claim 4, characterized in that: The storage device (4) is fixed on two symmetrically arranged side panels (13), and includes a plurality of storage racks (41), a load-bearing plate (42), a partition (43), a rack group (44) and a fixed bracket (45); the storage rack (41) includes a plurality of evenly spaced square tubes (42); the two ends of the square tubes (42) are rigidly connected to the front side panel (131) and the partition (43), respectively; the storage racks (41) are arranged in a layered array and are fixedly connected to the left side panel (133); the rack group (44) and the fixed bracket (45) are fixedly connected to the left side panel (133) and the right side panel (134), respectively.
6. The vehicle-mounted mobile arsenal according to claim 5, characterized in that: The rack group (44) includes a first rack (441), a second rack (442) and a third rack (443); the bottoms of the first rack (441) and the second rack (442) are respectively fixedly connected to the load-bearing plate (42), the front ends are connected to the partition plate (43), and the rear ends are connected to the rear side plate (132); the left ends of the first rack (441) and the second rack (442) are rigidly connected to the left side plate (133); the two ends of the third rack (443) are respectively rigidly connected to the front side plate (131) and the rear side plate (132), and a partition plate (43) is arranged in the middle along the longitudinal interval; the top end of the partition plate (43) is fixedly connected to the top plate (11), and the bottom end is rigidly connected to the bottom plate (12).
7. The vehicle-mounted mobile arsenal according to claim 6, characterized in that: The fixing bracket (45) includes a first fixing bracket (451) and a second fixing bracket (452); the bottom of the first fixing bracket (451) is connected to the load-bearing plate (42), and the left end is fixedly connected to the left side plate (133); the two ends of the second fixing bracket (452) are rigidly connected to the front side plate (131) and the rear side plate (132), respectively, and a partition plate (43) is provided in the middle along the longitudinal interval.
8. The vehicle-mounted mobile arsenal according to claim 7, characterized in that: The side panels (13) include a front side panel (131), a rear side panel (132), a left side panel (133) and a right side panel (134); the front side panel (131), the rear side panel (132), the left side panel (133) and the right side panel (134) are spatially positioned and enclosed to form a rectangular frame structure.
9. The vehicle-mounted mobile arsenal according to claim 8, characterized in that: The auxiliary system (3) includes a human body sensor (31), an infrared camera, a visible light camera, a temperature and humidity sensor, a ventilation fan (32), an explosion-proof socket and a central control unit. The human body sensor (31) is installed on the top of the main frame (1) and is fixedly connected to the infrared camera and the visible light camera. The temperature and humidity sensor is embedded in the side wall of the main frame (1). The ventilation fan (32) is arranged on the front side of the main frame (1) and is connected to the temperature and humidity sensor signal. The explosion-proof socket is installed on the bottom of the main frame (1). The central control unit is electrically connected to the human body sensor (31), the infrared camera, the visible light camera, the temperature and humidity sensor, the ventilation fan (32) and the explosion-proof socket.