Novel fire rescue cabinet
The fire rescue cabinet with its vertical opening design solves the problem of space occupation by existing fire cabinet doors, ensures unobstructed rescue passages and multi-person collaborative operation, and improves the efficiency of fire equipment retrieval and rescue.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-03
- Publication Date
- 2026-04-07
AI Technical Summary
The existing fire cabinets have hinged doors that occupy surrounding space when opened, obstructing rescue passages and preventing multiple people from simultaneously accessing fire equipment, resulting in low rescue efficiency.
The cabinet door assembly, which adopts a vertical opening and closing design, uses guide rails and limiting components to achieve the folding function of the cabinet door, avoiding the occupation of surrounding space. It also uses sliders and return springs to ensure a stable state, and combines with layered partitions to classify and store equipment.
Ensuring unobstructed rescue routes improves the efficiency of multiple people simultaneously accessing fire safety equipment, simplifies operational procedures, and enhances the collaboration and effectiveness of emergency rescue.
Smart Images

Figure CN224085876U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to fire fighting equipment technical field, concretely relates to a novel fire fighting rescue cabinet. BACKGROUND
[0002] The fire fighting cabinet is a special cabinet body for storing and protecting fire fighting equipment and appliances, which is usually arranged in a public area, a fire fighting passage and the like of a building for easy access to meet the needs of personnel to quickly obtain fire fighting supplies for fire extinguishing and rescue when a fire occurs. The fire fighting cabinet is equipped with various key equipment, such as dry powder, carbon dioxide, water-based fire extinguishers and fire blankets for dealing with different fires; fire hoses connected to fire hydrants or water sources and end water guns for fire extinguishing; fire axes and crowbars for breaking and demolishing; fire helmets and fireproof heat-resistant gloves for protection; and some are also provided with emergency lighting lamps and evacuation indication signs to provide lighting and guide evacuation direction when a fire occurs.
[0003] According to the authorized announcement number (CN221713405U) of a safety emergency fire fighting cabinet for building fire fighting. The main structure of the fire fighting cabinet is a cabinet body, the front end of the cabinet body is assembled with a pair of open type cabinet doors through a hinge, and a storage rack is arranged in the cabinet body. In the daily management process of fire fighting equipment, fire fighting personnel properly place various fire fighting equipment in the cabinet body, and the storage rack can scientifically classify and store the equipment according to the type. Once a fire occurs, the fire fighting personnel can go to the front of the fire fighting cabinet, open the two oppositely arranged cabinet doors, and then take out the fire fighting equipment stored in the cabinet body.
[0004] The structure disclosed in the patent has defects in actual application, specifically as follows: when the two cabinet doors are opened, the extension direction will invade the space range of the adjacent rescue passage. In the critical period of emergency evacuation and rescue, this will greatly hinder the rapid passage of personnel and equipment, resulting in a great reduction in rescue efficiency. At the same time, the cabinet body peripheral space occupied after the cabinet doors are opened will limit the number of personnel going to the cabinet body to take fire fighting equipment. The space limitation makes the taking process of fire fighting equipment unable to be efficiently carried out, and different personnel are prone to action interference due to space crowding, which ultimately affects the taking efficiency of fire fighting equipment and delays the valuable fire extinguishing and rescue opportunity. UTILITY MODEL CONTENTS
[0005] The utility model aims at providing a novel fire fighting rescue cabinet, which can solve the problems of occupying peripheral space when the open type cabinet door of the prior art is opened, hindering the rescue passage and multiple people taking fire fighting equipment at the same time, and low rescue efficiency, and proposes a solution, which can utilize the unique vertical opening and closing design to avoid the invasion of the cabinet body peripheral space after the cabinet doors are opened, keep the rescue passage unobstructed at all times, and greatly improve the taking efficiency of fire fighting equipment.
[0006] The utility model is realized by the following technical scheme:
[0007] A novel fire-fighting rescue cabinet, comprising: a fire-fighting cabinet body, a cabinet door mounting opening is formed in the fire-fighting cabinet body; two oppositely arranged guide rails, the two guide rails are respectively assembled on opposite sides of the cabinet door mounting opening; a cabinet door assembly, the cabinet door assembly comprises a first folding plate, a second folding plate and two oppositely arranged sliders, one end of the first folding plate is rotatably connected with the top end of the two guide rails respectively; the two sliders are respectively slidably assembled in the two guide rails, and the sliders can reciprocate along the extension direction of the guide rails; one end of the second folding plate is rotatably connected with the first folding plate, and the other end of the second folding plate is rotatably connected with the two sliders respectively.
[0008] Further, in the utility model, the number of the cabinet door assembly is multiple, among the two adjacent cabinet door assemblies, the two sliders of one cabinet door assembly are connected with the two sliders of the other cabinet door assembly correspondingly; the multiple cabinet door assemblies are connected into an integral structure along the extension direction of the guide rails in sequence; wherein, the multiple cabinet door assemblies can realize the unfolding and folding functions in a coordinated action.
[0009] Further, in the utility model, the cabinet door assembly further comprises a limiting assembly; when the multiple cabinet door assemblies complete the folding action, the limiting assembly can limit the cabinet door assembly in the lowermost position, so as to maintain the stable state of the folded cabinet door assembly.
[0010] Further, in the utility model, the limiting assembly comprises a limiting plug, a reset spring, an assembly groove formed in the guide rail and a limiting slot formed in the lowermost slider; the reset spring is sleeved outside the limiting plug, and the reset spring is coaxially arranged with the limiting plug; the reset spring is assembled in the assembly groove, one end of the reset spring is connected with the inner wall of the assembly groove, and the other end of the reset spring is connected with the outer wall of the limiting plug; wherein, under the elastic recovery force of the reset spring, the limiting piece can be clamped into the limiting slot, so as to limit the lowermost slider.
[0011] Further, in the utility model, the limiting plug is provided with a guide inclined surface, and the guide inclined surface cooperates with the upward sliding path of the slider.
[0012] Further, in the utility model, a plurality of layered partitions are detachably installed in the fire-fighting cabinet body from top to bottom, and the plurality of layered partitions divide the internal space of the fire-fighting cabinet body into a plurality of mutually independent partition compartments.
[0013] Further, in the utility model, a plurality of mounting slots are sequentially formed in the opposite sides of the fire-fighting cabinet body from top to bottom, and the opposite sides of the layered partition can be clamped into the oppositely arranged two mounting slots.
[0014] Compared with the prior art, the utility model has the following advantages and beneficial effects:
[0015] 1. The cabinet door assembly utilizes an innovative folding structure, when in the folded state, the first folding plate and the second folding plate are superimposed on each other, without expanding the space around the cabinet. This feature ensures that the fire rescue cabinet does not encroach on the fire passage when the cabinet door is opened, maintaining the unobstructed passage, effectively avoiding the situation of delayed rescue due to limited space, greatly improving the rescue efficiency, and providing a solid guarantee for the smooth development of emergency rescue operations.
[0016] 2. When opening the cabinet door, the fire personnel only need to apply force to the area below the second folding plate to smoothly complete the folding operation of the cabinet door assembly. The entire operation process is simple and clear, without complicated steps, allowing the fire personnel to quickly open the cabinet door and obtain fire equipment in the emergency situation, seizing valuable time for rescue work.
[0017] 3. The cabinet door assembly does not occupy the surrounding space when folded, leaving sufficient space around the fire rescue cabinet for multiple fire personnel to simultaneously take equipment. This design meets the actual needs of multiple personnel working together and simultaneously taking different fire equipment in emergency rescue scenarios, further improving the collaboration and efficiency of rescue operations and enhancing overall rescue effectiveness. BRIEF DESCRIPTION OF DRAWINGS
[0018] The drawings described herein are used to provide further understanding of the embodiments of the present application, constitute a part of this application, and do not constitute a limitation on the embodiments of the present application. In the drawings:
[0019] Figure 1 is a perspective view of a new type of fire rescue cabinet;
[0020] Figure 2 is a structural schematic view of the cabinet door assembly;
[0021] Figure 3 is Figure 2 is an enlarged view of position A in FIG. 4;
[0022] Figure 4 is a longitudinal sectional view of the guide rail;
[0023] Figure 5 is Figure 4 is an enlarged view of position B in FIG. 5;
[0024] Figure 6 is a longitudinal sectional view of the lowermost slider;
[0025] Figure 7 is a structural schematic view of the interior of the fire cabinet.
[0026] Markings in the drawings and corresponding component names:
[0027] 1-fire fighting cabinet body, 2-guide rail, 3-first folding plate, 4-second folding plate, 5-sliding block, 6-limiting assembly, 7-cabinet door assembly, 8-connector, 9-limiting plug, 10-reset spring, 11-assembly groove, 12-guide inclined surface, 13-limiting slot, 14-cabinet door mounting port, 15-separation compartment, 16-layered partition, 17-mounting slot. DETAILED DESCRIPTION
[0028] In order to make the purpose, technical scheme and advantages of the utility model more clearly, the utility model is further described in detail below by combining with examples and drawings. The schematic implementation mode and the description thereof of the utility model are only used for explaining the utility model, and do not serve as the limitation of the utility model.
[0029] EXAMPLE
[0030] Please refer to Figures 1 to 3 The embodiment of the utility model provides a novel fire fighting rescue cabinet. The fire fighting cabinet body 1 is equipped with the cabinet door mounting port 14, and two guide rails 2 are symmetrically installed on both sides of the cabinet door mounting port 14. The cabinet door assembly 7 is installed between the two guide rails 2, and the cabinet door assembly 7 has two working states of unfolding and folding. In the unfolded state, the cabinet door assembly 7 can close the cabinet door mounting port 14 to provide protection for the fire fighting equipment in the fire fighting cabinet body 1. In the folded state, the cabinet door assembly 7 opens the cabinet door mounting port 14 to facilitate the use of the fire fighting equipment in the cabinet.
[0031] Specifically, the cabinet door assembly 7 is composed of the first folding plate 3, the second folding plate 4 and two oppositely arranged sliding blocks 5. The two sides of one end of the first folding plate 3 are rotatably connected to the two guide rails 2 by means of the hinge structure, and the two sides of the other end of the first folding plate 3 are also rotatably connected to the two sides of one end of the second folding plate 4 by means of the hinge structure. The two sides of the other end of the second folding plate 4 are rotatably connected to the two sliding blocks 5 by means of the hinge structure. The two sliding blocks 5 are slidably fitted in the corresponding guide rails 2 and can reciprocally slide along the axial direction of the guide rails 2.
[0032] For example, when the operation of closing the cabinet door mounting port 14 is performed, the first folding plate 3, the second folding plate 4 and the two sliding blocks 5 are synchronously moved downward under the action of gravity until the first folding plate 3 and the second folding plate 4 are parallel to the plane determined by the two guide rails 2, achieving the closure of the cabinet door mounting port 14.
[0033] When the cabinet door installation opening 14 needs to be opened, the firefighter applies an external force to push the lower area of the second folding plate 4, prompting the second folding plate 4 to move upward. In this process, the second folding plate 4 drives the two sliding blocks 5 to slide upward along the guide rail 2, and at the same time, one end of the second folding plate 4 exerts a pushing force on the first folding plate 3, causing the second folding plate 4 to rotate relative to the first folding plate 3 until the first folding plate 3 and the second folding plate 4 overlap each other, thereby completing the opening operation of the cabinet door installation opening 14, facilitating the firefighter to take the fire-fighting equipment from the fire-fighting cabinet body 1. The cabinet door assembly 7 does not occupy peripheral space when folded, which is beneficial for multiple firefighters to simultaneously perform equipment taking operations and does not hinder the fire-fighting passage, effectively improving the rescue efficiency.
[0034] Please refer to Figures 1 to 3 In some embodiments of the present application, a plurality of cabinet door assemblies 7 are connected in sequence along the extension direction of the guide rail 2 to form an organic whole structure. A single cabinet door assembly 7 is composed of a first folding plate 3 and a second folding plate 4, which are connected by a rotating connection mode to ensure flexibility and stability during folding and unfolding. Specifically, the two sides of the end of the first folding plate 3 away from the second folding plate 4, and the two sides of the end of the second folding plate 4 away from the first folding plate 3, are each provided with a sliding block 5 by rotating installation. The design of the sliding block 5 enables it to form a sliding fit with the guide rail 2, thereby guiding the cabinet door assembly 7 to move along the predetermined path.
[0035] In the butt joint structure of the plurality of cabinet door assemblies 7 (except for the uppermost cabinet door assembly 7), there is a specific connection relationship between the two adjacent cabinet door assemblies 7. That is, the two sliding blocks 5 of one cabinet door assembly 7 are precisely connected with the corresponding two sliding blocks 5 of the other cabinet door assembly 7 (the two adjacent sliding blocks 5 can be connected by a connecting piece 8). This connection mode ensures that the force can be effectively transmitted between adjacent assemblies during the movement of the cabinet door assembly 7, maintaining the coordinated operation of the entire system.
[0036] For example, when closing the cabinet door installation opening 14, the plurality of cabinet door assemblies 7 move downward simultaneously under the action of gravity or other driving mechanisms. Until the first folding plate 3 and the second folding plate 4 of each cabinet door assembly 7 are in a parallel state with the planes determined by the two guide rails 2, the closure of the cabinet door installation opening 14 is completed. In this process, the second folding plate 4 of the first cabinet door assembly 7 can exert a stable pulling force on the first folding plate 3 of the second cabinet door assembly 7 through the sliding block 5 connected thereto. The existence of this pulling force prevents the second cabinet door assembly 7 from moving downward and falling completely below the two guide rails 2. The subsequent cabinet door assemblies 7 achieve stable descent and closure through similar interaction relationships.
[0037] For example, in the plurality of cabinet door assemblies 7, in addition to the direct rotational connection of one end of the first folding plate 3 of the first cabinet door assembly 7 with the two guide rails 2, the other end of the first folding plate 3 of all the remaining cabinet door assemblies 7 is provided with a sliding block 5 through rotational installation. This differentiated design not only meets the needs of fixing the starting end of the first cabinet door assembly 7, but also ensures the consistency and flexibility of the subsequent cabinet door assemblies 7 during movement.
[0038] For example, when it is necessary to open the cabinet door mounting port 14, the fire-fighting personnel initiates the operation by applying a pushing force to the lowermost cabinet door assembly 7. After the lowermost cabinet door assembly 7 is subjected to the force, it efficiently transmits the force to the second-to-last cabinet door assembly 7. In this way, through this step-by-step transmission, the plurality of cabinet door assemblies 7 can finally be pushed to the folded state, and the entire folded assembly can be stably placed at the top end position of the two guide rails 2. This design greatly improves the convenience of taking the fire-fighting equipment, and ensures that the required equipment can be quickly obtained in an emergency rescue scenario.
[0039] Please refer to Figure 4 and Figure 5 In some embodiments of the present application, the fire-fighting rescue cabinet is equipped with a limiting assembly 6. When the plurality of cabinet door assemblies 7 complete the folding action, the limiting assembly 6 automatically limits the lowermost cabinet door assembly 7 to maintain the stable state of the folded cabinet door assembly 7. Once this stable state is reached, the fire-fighting personnel no longer needs to manually push the lowermost cabinet door assembly 7, and can completely free their hands to freely carry out other emergency rescue operations, significantly improving the convenience and efficiency of the rescue process.
[0040] Specifically, the limiting assembly 6 includes a limiting plug 9, a return spring 10, an assembly groove 11 provided in the guide rail 2, and a limiting clamping groove 13 provided in the lowermost sliding block 5. The return spring 10 is coaxially sleeved on the outside of the limiting plug 9 in the axial direction, and the two are assembled in the assembly groove 11 of the guide rail 2. One end of the return spring 10 is stably connected with the inner wall of the assembly groove 11, and the other end of the return spring 10 is stably connected with the outer wall of the limiting plug 9. In the initial natural state, the return spring 10 is in the original length, and pushes the limiting plug 9 by relying on its own elastic force, so that the output end of the limiting plug 9 extends to the inside of the guide rail 2.
[0041] When the operation of opening the cabinet door installation port 14 is performed, the fireman pulls the limiting plug 9 by hand to overcome the force of the reset spring 10, and pulls the output end of the limiting plug 9 back into the assembly channel 11 from the inside of the guide rail 2. After this operation is completed, the fireman applies a pushing force to the lowermost cabinet door assembly 7, which promotes the synchronous upward movement of the plurality of cabinet door assemblies 7 and sequentially completes the folding action. As the operation proceeds, when the slider 5 connected to the second folding plate 4 in the lowermost cabinet door assembly 7 moves to the position where the assembly channel 11 is located, and the assembly channel 11 and the limiting slot 13 of the slider 5 are accurately aligned in space, the fireman immediately removes the pulling force acting on the limiting plug 9. At this time, the reset spring 10 quickly recovers the elastic deformation, and under the driving of the elastic recovery force, the limiting plug 9 quickly moves along the predetermined track to the limiting slot 13, until the limiting plug 9 is accurately inserted into the limiting slot 13, thereby realizing reliable positioning of the slider 5, and finally achieving the purpose of maintaining the stable state of the folded cabinet door assembly 7.
[0042] When the operation of closing the cabinet door installation port 14 is needed to be performed, the fireman needs to manually pull out the limiting plug 9 again. The detailed operation process of this part will not be repeated here.
[0043] Please refer to Figures 4 to 6 In some embodiments of the present application, a guide slope 12 is provided on the limiting plug 9, which is adapted to the upward sliding path of the slider 5 in the guide rail 2. When the slider 5 slides upward along the guide rail 2 and reaches the position where the limiting plug 9 is located, the slider 5 will contact the guide slope 12 of the limiting plug 9. At this time, the slider 5 exerts pressure on the guide slope 12, and based on the special geometric structure of the guide slope 12, the pressure will be decomposed into a component force towards the inside of the assembly channel 11. Under the action of this component force, the limiting plug 9 overcomes the resistance of the reset spring 10, and its output end is smoothly pushed into the assembly channel 11. Once the slider 5 slides through the assembly channel 11, the pressure exerted on the limiting plug 9 disappears, and the reset spring 10 immediately exhibits its elastic recovery characteristics, quickly pushing the output end of the limiting plug 9 back to the state of extending out of the assembly channel 11.
[0044] In the process of the plurality of sliders 5 sliding in the guide rail 2 in turn, each slider 5 will interact with the limiting plug 9 in the above-mentioned manner. Until the last slider 5 moves to the assembly groove 11 position, and also pushes the output end of the limiting plug 9 into the assembly groove 11. When the limiting slot 13 of this slider 5 moves to align with the assembly groove 11, the reset spring 10 instantaneously exerts force to drive the limiting plug 9 to precisely pop into the limiting slot 13. It is worth noting that the other side of the limiting plug 9 relative to the guide slope 12 is not provided with the guide slope 12, so when the slider 5 has a downward movement trend, the limiting plug 9 will form a firm limiting block to the slider 5, thereby ensuring that the folded cabinet door assembly 7 always maintains a stable state.
[0045] When it is necessary to close the cabinet door mounting port 14, the operation is also very simple. The firefighter only needs to manually pull the limiting plug 9 out of the limiting slot 13, so as to easily release the limiting of the limiting plug 9 to the slider 5, and enable the cabinet door assembly 7 to smoothly perform subsequent closing operation.
[0046] Please refer to Figure 7 In some embodiments of the present application, the internal space of the fire-fighting cabinet body 1 is arranged in a sequence from top to bottom along the vertical direction, and a plurality of layered partitions 16 are installed by detachable connecting means. These layered partitions 16 divide the internal space of the fire-fighting cabinet body 1 into a plurality of independent separate compartments 15 by virtue of their reasonable layout. This structural design effectively realizes the classified storage of various fire-fighting equipment, greatly improves the orderliness of the storage of fire-fighting equipment, fully optimizes the utilization efficiency of the internal space of the fire-fighting rescue cabinet, and significantly enhances the functionality and practicality of the fire-fighting rescue cabinet in actual application.
[0047] Specifically, a plurality of installation clamping grooves 17 are sequentially provided on the opposite two side walls inside the fire-fighting cabinet body 1 from top to bottom. The opposite two sides of the layered partition 16 have a clamping structure which can be stably clamped into the two installation clamping grooves 17 arranged opposite to each other. Since the installation clamping grooves 17 are distributed along the vertical direction, the user can flexibly select to clamp the layered partition 16 into the installation clamping groove 17 at a suitable position according to the actual size height of different specifications of fire-fighting equipment, and then freely regulate the distance between the two adjacent layered partitions 16. In this way, the fire-fighting rescue cabinet can adapt to various different specifications of fire-fighting equipment, and significantly improves the storage compatibility and practicality of the fire-fighting rescue cabinet for various fire-fighting equipment.
[0048] Working principle:
[0049] Close the cabinet door installation opening 14: when closing the cabinet door, the cabinet door assembly 7 starts to act under the action of gravity. The first folding plate 3, the second folding plate 4 and the sliding block 5 can rotate and move freely due to the activity characteristics of each hinge point. Each component moves downward synchronously, the first folding plate 3 and the second folding plate 4 continuously adjust the angle until they are parallel to the plane determined by the guide rail 2, and the sliding block 5 is guided by the guide rail 2 to accurately complete the closure of the cabinet door installation opening 14, realizing the protection of the equipment in the cabinet.
[0050] Open the cabinet door installation opening 14: the second folding plate 4 below is pushed by the fire-fighting personnel, and since the second folding plate 4 is hinged with the sliding block 5 and the sliding block 5 can slide in the guide rail 2, the external force makes the second folding plate 4 move upward. The second folding plate 4 drives the sliding block 5 to slide upward, and at the same time it generates a pushing force on the first folding plate 3, so that the two relatively rotate until the first folding plate 3 and the second folding plate 4 overlap each other, opening the cabinet door installation opening 14. This way avoids occupying the surrounding space and does not hinder the fire-fighting passage, improving the rescue efficiency.
[0051] The above specific embodiments further illustrate the purpose, technical scheme and beneficial effects of the present application. It should be understood that the above description is only a specific embodiment of the present application and is not used to limit the protection scope of the present application. Any modification, equivalent replacement, improvement, etc. within the spirit and principles of the present application should be included in the protection scope of the present application.
Claims
1. A novel fire rescue cabinet, characterized in that, include: Fire cabinet (1), wherein the fire cabinet (1) is provided with a cabinet door installation opening (14); Two guide rails (2) are arranged opposite to each other, and the two guide rails (2) are respectively assembled on opposite sides of the cabinet door mounting opening (14); Cabinet door assembly (7), the cabinet door assembly (7) includes a first folding plate (3), a second folding plate (4) and two oppositely arranged sliders (5), one end of the first folding plate (3) is rotatably connected to the top of the two guide rails (2); The two sliders (5) are respectively slidably assembled in the two guide rails (2), and the sliders (5) can slide back and forth along the extension direction of the guide rails (2); One end of the second folding plate (4) is rotatably connected to the first folding plate (3), and the other end of the second folding plate (4) is rotatably connected to the two sliders (5) respectively.
2. The novel fire rescue cabinet according to claim 1, characterized in that, The number of cabinet door assemblies (7) is multiple. In two adjacent cabinet door assemblies (7), the two sliders (5) of one cabinet door assembly (7) are respectively connected to the two sliders (5) of the other cabinet door assembly (7). Multiple cabinet door components (7) are sequentially connected to form an integral structure along the extension direction of the guide rail (2); Among them, multiple cabinet door components (7) can achieve the functions of unfolding and folding through coordinated action.
3. The novel fire rescue cabinet according to claim 2, characterized in that, It also includes a limiting component (6); After the multiple cabinet door components (7) have completed the folding action, the limiting component (6) can limit the cabinet door component (7) at the bottom position, thereby maintaining the stable state of the folded cabinet door component (7).
4. The novel fire rescue cabinet according to claim 3, characterized in that, The limiting component (6) includes a limiting rod (9), a return spring (10), an assembly channel (11) opened in the guide rail (2), and a limiting slot (13) opened in the bottom slider (5); The reset spring (10) is fitted outside the limiting rod (9), and the reset spring (10) and the limiting rod (9) are arranged coaxially. The reset spring (10) is assembled inside the assembly channel (11), one end of the reset spring (10) is connected to the inner wall of the assembly channel (11), and the other end of the reset spring (10) is connected to the outer wall of the limiting rod (9). Under the elastic restoring force of the reset spring (10), the limiting member can be inserted into the limiting slot (13) to limit the lowermost slider (5).
5. The novel fire rescue cabinet according to claim 4, characterized in that, The limiting rod (9) is provided with a guide slope (12), which cooperates with the upward sliding path of the slider (5).
6. The novel fire rescue cabinet according to any one of claims 1 to 5, characterized in that, The fire cabinet (1) is detachably equipped with multiple layered partitions (16) from top to bottom, which divide the internal space of the fire cabinet (1) into multiple independent compartments (15).
7. The novel fire rescue cabinet according to claim 6, characterized in that, The fire cabinet (1) has multiple mounting slots (17) arranged sequentially from top to bottom on both sides. The two sides of the layered partition (16) can be inserted into the two mounting slots (17) arranged opposite to each other.
Citation Information
Patent Citations
Safety emergency fire-fighting cabinet for building fire fighting
CN221713405U