Assembled fire-fighting box
By using a modular fire box design and butterfly bolt connections, combined with flexible telescopic rods and camera monitoring, the problems of inconvenient transportation and low installation efficiency of traditional fire boxes are solved, enabling rapid disassembly and assembly and comprehensive inspection and recording.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- SICHUAN LENGFENG FIRE PROTECTION TECHNOLOGY CO LTD
- Filing Date
- 2025-05-29
- Publication Date
- 2026-05-08
AI Technical Summary
Traditional fire extinguisher boxes suffer from problems such as inconvenient transportation, low installation flexibility, and high maintenance costs, and existing improvement solutions have low assembly efficiency.
It adopts a modular design, including a top plate, bottom plate, side plates and fixing components, which are connected by wing bolts and screws. Combined with flexible telescopic rod components and microcontrollers, it can achieve quick assembly and disassembly and all-round camera monitoring.
It enables rapid assembly and disassembly of fire extinguisher boxes, saving transportation and storage space, improving installation efficiency, and has comprehensive monitoring capabilities to ensure the integrity of inspection records.
Smart Images

Figure CN224207269U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of fire box technology, and in particular to an assembled fire box. Background Technology
[0002] Firefighting equipment refers to equipment used for fire extinguishing, fire prevention, and fire accidents. The most common firefighting equipment is the fire extinguisher, which can be classified into gas-storage fire extinguishers, pressurized fire extinguishers, and chemical reaction fire extinguishers according to the pressure method that drives the fire extinguisher. Fire extinguishers are usually placed in fire extinguisher boxes for use. Currently, buildings, outdoor venues, entertainment venues, etc. are equipped with corresponding fire extinguisher boxes.
[0003] Traditional fire extinguisher boxes mostly adopt an integral welding or one-piece molding structure, which has problems such as inconvenient transportation and storage, low installation flexibility and high maintenance costs. Existing improvement solutions, such as setting up detachable panel type or folding fire extinguisher boxes, have partially alleviated the above defects, but adjacent panels still need to be fixed with a large number of screws, resulting in low assembly efficiency. Utility Model Content
[0004] The purpose of this utility model is to address the problems existing in the background technology by proposing an assembled fire box.
[0005] The technical solution of this utility model is an assembled fire box, which includes a fire box body, and the fire box body includes a top plate, a bottom plate, a front side plate, a back plate, a left side plate, a right side plate, and multiple sets of fixing components.
[0006] Both the top plate and the bottom plate are horizontally arranged, with the top plate positioned above the bottom plate. The front side plate, back plate, left side plate, and right side plate are respectively located at the front, rear, left, and right sides between the top plate and the bottom plate. The front side plate has an opening and a door is rotatably mounted on it. Rectangular limiting grooves are provided at the bottom end of the top plate and the top end of the bottom plate. The fixing components include a column, a wing bolt, and a screw rod. The screw rod is fixedly connected to the top end of the bottom plate. Threaded grooves are provided at both ends of the column. The column is threaded to the screw rod through the threaded groove at its bottom end. Multiple first through holes are provided on the top plate. The wing bolt passes through the first through holes and is threaded to the threaded groove at the top end of the column.
[0007] Preferably, an elastic telescopic rod assembly is connected to the inner wall of the back panel, a camera is installed at the outer end of the elastic telescopic rod assembly, and a microcontroller is installed on the main body of the fire box, with the microcontroller electrically connected to the camera.
[0008] Preferably, the elastic telescopic rod assembly includes a sleeve, a movable rod, and a spring. The sleeve has a detachable connection structure with the inner wall of the back plate. The end of the movable rod is slidably mounted on the inner side of the sleeve. The spring is mounted on the inner side of the sleeve. The camera is mounted on the movable rod. A rubber ring is installed on the outer end of the sleeve.
[0009] Preferably, a latch is installed between the door and the front panel.
[0010] Preferably, it also includes a partition plate with multiple second through holes for multiple columns to pass through, and each of the multiple columns is fixed with a limit ring.
[0011] Preferably, both ends of the left and right side panels are connected with sealing strips, and both ends of the inner walls of the front and back panels are provided with slots for the sealing strips to be inserted.
[0012] Compared with the prior art, the present invention has the following beneficial technical effects: the main body of the fire box set in the present technical solution can be easily disassembled and assembled, and its space occupies less after disassembly, thereby saving transportation space and storage space; in addition, the installation structure of the fire box is simplified, and the splicing work can be completed quickly, which has the advantage of high assembly efficiency. Attached Figure Description
[0013] Figure 1 This is a schematic diagram of the structure of this utility model.
[0014] Figure 2 This is an exploded view of the present invention.
[0015] Figure 3 This is a cross-sectional view of the elastic telescopic rod assembly in this utility model.
[0016] Reference numerals: 1. Top plate; 101. First perforation; 2. Bottom plate; 3. Front side plate; 31. Door; 4. Back plate; 5. Left side plate; 6. Right side plate; 7. Partition; 701. Second perforation; 8. Column; 81. Limiting ring; 801. Threaded groove; 9. Buckle; 10. Rectangular limiting groove; 11. Wing bolt; 121. Sleeve; 122. Movable rod; 123. Spring; 13. Camera; 14. Rubber ring; 15. Sealing strip; 16. Slot; 17. Screw. Detailed Implementation
[0017] Example 1
[0018] like Figure 1 and Figure 2 As shown in the figure, the assembled fire box proposed in this embodiment includes a fire box body, which includes a top plate 1, a bottom plate 2, a front side plate 3, a back plate 4, a left side plate 5, a right side plate 6, and multiple sets of fixing components.
[0019] Both the top plate 1 and the bottom plate 2 are horizontally arranged, with the top plate 1 positioned above the bottom plate 2. The front side plate 3, back plate 4, left side plate 5, and right side plate 6 are respectively located at the front, rear, left, and right sides between the top plate 1 and the bottom plate 2. The front side plate 3 has an opening and a door 31 is rotatably mounted on it. The bottom end of the top plate 1 and the top end of the bottom plate 2 are both provided with rectangular limiting grooves 10. Both ends of the left side plate 5 and the right side plate 6 are connected to sealing strips 15. The inner walls of the front side plate 3 and the back plate 4 are provided with slots 16 for the sealing strips 15 to be inserted. When installing the left side plate 5 or the right side plate 6, the sealing strips 15 on both sides need to be inserted into the corresponding slots 16 on both sides, thereby reducing the gap between the two adjacent plates and enhancing the sealing performance.
[0020] The fixing assembly includes a column 8, a wing bolt 11, and a screw 17. The screw 17 is fixedly connected to the upper end of the base plate 2. Both ends of the column 8 are provided with threaded grooves 801. The column 8 is threadedly connected to the screw 17 through the threaded groove 801 at its bottom end. The top plate 1 is provided with multiple first through holes 101. The wing bolt 11 passes through the first through holes 101 and is threadedly connected to the threaded groove 801 at the upper end of the column 8.
[0021] It also includes a partition 7, which has multiple second through holes 701 for multiple columns 8 to pass through. Each column 8 is fixed with a limit ring 81. Before installing the top plate 1, the partition 7 needs to be installed inside the fire box body so that the multiple second through holes 701 on the partition 7 are aligned with the multiple columns 8. After the partition 7 is released, it slides down to the limited position under the action of gravity. The limit ring 81 is used to limit the partition 7.
[0022] In this embodiment, when installing the fire box body, the base plate 2 is first placed on a flat surface, and multiple columns 8 are threadedly connected to multiple screws 17 to achieve a fixed connection between the columns 8 and the base plate 2. Then, the front side plate 3 and the back plate 4 are respectively placed on the front and rear sides of the base plate 2, and the left side plate 5 and the right side plate 6 are respectively placed on the left and right sides of the base plate 2. Finally, the top plate 1 is placed on top of the 3, back plate 4, left side plate 5 and right side plate 6. It should be noted that the bottom ends of the front side plate 3, back plate 4, left side plate 5 and right side plate 6 must be inserted into the rectangular limiting groove 10 at the bottom, and the top ends of the front side plate 3, back plate 4, left side plate 5 and right side plate 6 must be inserted into the rectangular limiting groove 10 at the top, so as to achieve the limiting of the front side plate 3, back plate 4, left side plate 5 and right side plate 6. Finally, the wing bolt 11 is passed through the first through hole 101 and threadedly connected to the column 8, thus completing the splicing work of the fire box body.
[0023] In summary, the fire box body designed in this technical solution is easy to disassemble and assemble, and occupies little space after disassembly, thus saving transportation and storage space; moreover, the fire box has a simplified installation structure, which can be quickly assembled, and has the advantage of high assembly efficiency.
[0024] Example 2
[0025] like Figure 1 and Figure 3 As shown in this embodiment, compared to Embodiment 1, this embodiment proposes an assembled fire box. In this embodiment, an elastic telescopic rod assembly is connected to the inner wall of the back panel 4. The elastic telescopic rod assembly includes a sleeve 121, a movable rod 122, and a spring 123. The sleeve 121 has a detachable connection structure with the inner wall of the back panel 4. The sleeve 121 and the back panel 4 can be assembled and connected by screws. The end of the movable rod 122 is slidably mounted on the inner side of the sleeve 121. The spring 123 is mounted on the inner side of the sleeve 121. The camera 13 is mounted on the movable rod 122. A rubber ring 14 is installed on the outer end of the sleeve 121. The rubber ring 14 is used to increase... The friction between the device and the movable rod 122 slows down the pop-out speed of the movable rod 122. A camera 13 is installed at the outer end of the elastic telescopic rod assembly. A microcontroller (not shown) is installed on the main body of the fire box. The microcontroller is electrically connected to the camera 13. It should be noted that the microcontroller can achieve network connectivity by connecting an external communication module that supports SIM cards (such as 4G / LTE, NB-IoT, GSM module), thereby transmitting video to the terminal device. A latch 9 is installed between the box door 31 and the front side panel 3. The latch 9 is designed to lock the box door 31 to prevent the box door 31 from being pushed open by the elastic telescopic rod assembly.
[0026] In this embodiment, when conducting a fire inspection, after opening the box door 31, the elastic telescopic rod assembly automatically extends, causing the camera 13 to move to the outside of the top plate 1, enabling all-round, no-blind-spot photography of the interior of the fire box, thereby recording the inspection process. If any omissions or inadequate inspections occur, internal personnel can use video evidence to hold relevant responsible persons accountable.
[0027] The embodiments of the present invention have been described in detail above with reference to the accompanying drawings. However, the present invention is not limited thereto. Various changes can be made within the scope of knowledge possessed by those skilled in the art without departing from the spirit of the present invention.
Claims
1. An assembled fire-fighting box, characterized in that, The fire box includes a main body, which includes a top plate (1), a bottom plate (2), a front side plate (3), a back plate (4), a left side plate (5), a right side plate (6), and multiple sets of fixing components. The top plate (1) and the bottom plate (2) are both horizontally arranged. The top plate (1) is located above the bottom plate (2). The front side plate (3), the back plate (4), the left side plate (5), and the right side plate (6) are respectively located at the front, rear, left, and right sides between the top plate (1) and the bottom plate (2). The front side plate (3) has an opening and a door (31) is rotatably installed on it. The bottom end of the top plate (1) and the top end of the bottom plate (2) are both provided with rectangular limiting grooves (10). The fixing components include The column (8), the wing bolt (11) and the screw (17) are fixedly connected to the upper end of the base plate (2). Both ends of the column (8) are provided with threaded grooves (801). The column (8) is threaded to the screw (17) through the threaded groove (801) at its bottom end. The top plate (1) is provided with multiple first through holes (101). The wing bolt (11) passes through the first through hole (101) and is threaded to the threaded groove (801) at the upper end of the column (8).
2. The assembled fire-fighting box according to claim 1, characterized in that, An elastic telescopic rod assembly is connected to the inner wall of the back panel (4). A camera (13) is installed at the outer end of the elastic telescopic rod assembly. A microcontroller is installed on the main body of the fire box. The microcontroller is electrically connected to the camera (13).
3. The assembled fire-fighting box according to claim 2, characterized in that, The elastic telescopic rod assembly includes a sleeve (121), a movable rod (122), and a spring (123). The sleeve (121) has a detachable connection structure with the inner wall of the back plate (4). The end of the movable rod (122) is slidably mounted on the inner side of the sleeve (121). The spring (123) is mounted on the inner side of the sleeve (121). The camera (13) is mounted on the movable rod (122). A rubber ring (14) is installed on the outer end of the sleeve (121).
4. The assembled fire-fighting box according to claim 3, characterized in that, A latch (9) is installed between the door (31) and the front panel (3).
5. The assembled fire-fighting box according to claim 1, characterized in that, It also includes a partition (7), on which multiple second through holes (701) are provided for multiple columns (8) to pass through, and a limit ring (81) is fixed on each of the multiple columns (8).
6. The assembled fire-fighting box according to claim 1, characterized in that, Both ends of the left side plate (5) and the right side plate (6) are connected with sealing strips (15), and both ends of the inner walls of the front side plate (3) and the back plate (4) are provided with slots (16) for the sealing strips (15) to be inserted.