Multi-layer fire extinguisher storage rack
By employing a multi-layered partition design and a limiting and fixing structure, the problem of low space utilization and high management difficulty of single-layer storage racks has been solved, enabling orderly storage and rapid retrieval of fire extinguishers and improving fire response efficiency.
Patent Information
- Application Number
- CN202422519500.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-17
- Publication Date
- 2025-11-18
- Estimated Expiration
- 2034-10-17
AI Technical Summary
Most existing fire extinguisher storage racks are single-layered, resulting in low space utilization and potentially insufficient space when multiple fire extinguishers are needed, increasing the difficulty of management and maintenance.
A multi-layer fire extinguisher storage rack is designed, which adopts a multi-layer partitioned placement structure. The fire extinguishers are stored in multiple layers through components such as columns, support plates, pulleys, rectangular slide rails, placement plates, and arc-shaped grooves. The rack is fixed by a cylinder-driven pressure plate and limit grooves to ensure the stability and safety of the fire extinguishers during storage and retrieval.
This approach enables the orderly management of fire extinguishers, improves space utilization, reduces the risk of displacement and collision damage during storage, and enhances fire response efficiency.
Smart Images

Figure CN223555376U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of storage racks, and more particularly to a multi-layer fire extinguisher storage rack. Background Technology
[0002] A fire extinguisher is a portable fire-fighting tool designed to extinguish fires. It is filled with chemicals, which vary depending on the type of extinguisher and are designed to address different causes of fire. Fire extinguishers are common fire-fighting equipment, widely stored in public places or areas where fires may occur to ensure a rapid response in the event of a fire. Fire extinguisher storage racks, also known as fire extinguisher boxes or cabinets, are specifically designed for the long-term, fixed storage of portable fire extinguishers. Their main purpose is to facilitate quick location and retrieval of fire extinguishers for fire prevention and extinguishing purposes. These storage racks play an indispensable role in daily life and work, providing protection for people's lives and property.
[0003] Most existing storage shelves are single-layered, so each fire extinguisher needs to occupy a certain amount of floor space, which may reduce space utilization, especially when there are many fire extinguishers. In addition, when multiple fire extinguishers need to be used, a single-layered storage shelf may not be enough. Furthermore, if all fire extinguishers are placed on the same single-layered storage shelf, the arrangement of fire extinguishers may appear cluttered, increasing the difficulty of management and maintenance.
[0004] Therefore, since most of the existing storage racks are single-layered, which may reduce space utilization and may not be sufficient, and if all fire extinguishers are placed on the same single-layered storage rack, it will increase the difficulty of management and maintenance. A multi-layered fire extinguisher storage rack can be designed, which adopts a multi-layered partitioned placement structure to facilitate the retrieval and management of fire extinguishers. Utility Model Content
[0005] To overcome the problems that most existing storage shelves are single-layered, which may lead to reduced space utilization and may not be sufficient, and that placing all fire extinguishers on the same single-layered storage shelf will increase the difficulty of management and maintenance.
[0006] The technical solution of this utility model is as follows: a multi-layer fire extinguisher storage rack, including a box and placement components; three sets of placement components for separating and placing fire extinguishers are horizontally installed on the inner side of the box. The placement components include columns, support plates, pulleys, rectangular slide rails, rectangular slide grooves, placement plates, arc-shaped grooves, square telescopic columns, square telescopic sleeves, cylinders, pressure plates, arc-shaped limiting grooves, and arc-shaped rubber pads. The support plates are arranged linearly and symmetrically. Three sets of placement plates are linearly arranged between two sets of support plates and fixedly connected to the columns. Arc-shaped grooves for placing fire extinguishers are horizontally spaced above the placement plates. Pressure plates are fixedly connected to the square telescopic sleeves above the placement plates. Arc-shaped limiting grooves for limiting the position of fire extinguishers are opened below the pressure plates corresponding to the arc-shaped grooves.
[0007] Preferably, the cabinet is opened, the upright is pulled, and the support plate moves out along the rectangular slide rail. The fire extinguishers are then placed one by one along the arc-shaped groove on the placement plate. Next, the square telescopic sleeve moves the pressure plate downward, and the arc-shaped limiting groove on the pressure plate limits the fire extinguishers, preventing them from shifting during storage. When a fire occurs, the alarm light illuminates, and the square telescopic sleeve moves the pressure plate upward through the cylinder, making it easy to directly retrieve the fire extinguishers for use. The multi-layered, compartmentalized placement structure allows multiple fire extinguishers to be stored together, saving space and making fire extinguisher management more organized. At the same time, the fire extinguishers can be quickly retrieved when needed, improving the efficiency of fire response. In addition, the fire extinguishers are limited and fixed on the placement plate, which effectively protects them from damage or failure due to collisions.
[0008] Preferably, a connecting shaft is installed on one side of the cabinet, and an opening and closing plate is provided on the other side of the cabinet. The opening and closing plate is rotatably connected to the cabinet via the connecting shaft. An alarm light is installed at the upper corner of the cabinet. First, pull the handle, and the opening and closing plate will rotate open via the connecting shaft and the cabinet. After placing the fire extinguishers in sequence, the opening and closing plate will close. In case of fire, the alarm light on the cabinet will light up, making it easy to find the cabinet and retrieve the fire extinguishers for use.
[0009] Preferably, a transparent glass plate is installed in the middle of the opening and closing plate, a handle is installed on the side of the opening and closing plate away from the connecting shaft, and a rectangular sealing ring is installed on the edge of the opening and closing plate near the box body. When the opening and closing plate is closed, the rectangular sealing ring drives the opening and closing plate to fit against the inner wall of the box, increasing the sealing of the box body and preventing dust from entering the box body and falling on the fire extinguishers, affecting their use. During the storage of fire extinguishers, the number of fire extinguishers stored inside the box can be roughly seen through the transparent glass plate, and fire extinguishers can be added in time when the number is insufficient.
[0010] Preferably, each of the two sets of support plates is equipped with a column at the corner, and each of the support plates is equipped with a pulley at the corner of the side away from the column. The side of the support plate away from the column is provided with two sets of rectangular slide rails that are fixedly connected to the box. During the storage of fire extinguishers, the column can provide stable support for the support plate and improve the stability of the storage rack.
[0011] Preferably, a rectangular slide rail has a rectangular groove, and the pulley drives the support plate to slide along the rectangular groove and connect with the rectangular slide rail. When the opening and closing plate is opened, by pulling the column, the pulley drives the support plate to slide along the rectangular groove and connect with the rectangular slide rail, thereby pulling out the support plate.
[0012] Preferably, two sets of square telescopic columns are symmetrically installed on the upper two sides of the placement plate. A square telescopic sleeve is fitted over the square telescopic column, and a cylinder is installed at the upper end of the square telescopic sleeve. When a fire occurs, the alarm light is lit, and the square telescopic sleeve is driven by the cylinder to move the pressure plate upward, making it convenient to directly pick up the fire extinguisher for use.
[0013] Preferably, an arc-shaped rubber pad is installed below the arc-shaped limiting groove on the pressure plate. The cylinder is electrically connected to the alarm light. When the fire extinguisher is picked up, it is placed on the placement plate along the arc-shaped groove. Then, driven by the cylinder, the square telescopic sleeve moves the pressure plate downward along the square telescopic column, causing the arc-shaped rubber pad to continuously come into contact with and adhere to the fire extinguisher. Thus, the arc-shaped groove on the placement plate and the arc-shaped limiting groove on the pressure plate cooperate to limit and fix the fire extinguisher, preventing displacement of the fire extinguisher during storage and effectively protecting it from damage or failure due to collision.
[0014] The beneficial effects of this utility model are:
[0015] 1. Open the cabinet and pull the upright column to move the support plate along the rectangular slide rail. Place the fire extinguishers one by one on the placement plate along the arc-shaped groove. Then, the square telescopic sleeve moves the pressure plate downward. The arc-shaped limiting groove on the pressure plate limits the fire extinguishers to prevent displacement during storage. When a fire occurs, the alarm light will illuminate. Driven by the cylinder, the square telescopic sleeve moves the pressure plate upward, making it easy to directly retrieve the fire extinguisher for use. The multi-layered, compartmentalized placement structure allows multiple fire extinguishers to be stored together, saving space and making fire extinguisher management more organized. At the same time, fire extinguishers can be quickly retrieved when needed, improving the efficiency of fire response. In addition, the fire extinguishers are limited and fixed on the placement plate, which can effectively protect them from damage or failure due to collision.
[0016] 2. Pick up the fire extinguisher and place it on the placement plate along the arc-shaped groove. Then, driven by the cylinder, the square telescopic sleeve moves the pressure plate downward along the square telescopic column, causing the arc-shaped rubber pad to continuously come into contact with and adhere to the fire extinguisher. In this way, the arc-shaped groove on the placement plate and the arc-shaped limiting groove on the pressure plate cooperate to limit and fix the fire extinguisher, preventing displacement of the fire extinguisher during storage and effectively protecting it from damage or failure caused by collision. Attached Figure Description
[0017] Figure 1 The diagram shown is a schematic representation of the overall structure of the multi-layer fire extinguisher storage rack of this utility model.
[0018] Figure 2 The diagram shown is a schematic representation of the housing structure of the multi-layer fire extinguisher storage rack of this utility model.
[0019] Figure 3 The diagram shown is a schematic of the rectangular slide rail structure of the multi-layer fire extinguisher storage rack of this utility model.
[0020] Figure 4 The diagram shown is a schematic representation of the placement plate structure of the multi-layer fire extinguisher storage rack of this utility model.
[0021] Explanation of reference numerals in the attached drawings: 1. Box body; 101. Connecting shaft; 102. Opening and closing plate; 103. Transparent glass plate; 104. Handle; 105. Rectangular sealing ring; 106. Alarm light; 201. Column; 202. Support plate; 203. Pulley; 204. Rectangular slide rail; 205. Rectangular slide groove; 206. Placement plate; 207. Arc-shaped groove; 208. Square telescopic column; 209. Square telescopic sleeve; 210. Cylinder; 211. Pressure plate; 212. Arc-shaped limiting groove; 213. Arc-shaped rubber pad. Detailed Implementation
[0022] The present invention will be further described below with reference to the accompanying drawings and embodiments.
[0023] Please see Figures 1-4This utility model provides an embodiment: a multi-layer fire extinguisher storage rack, including a box body 1 and placement components; three sets of placement components for separating and placing fire extinguishers are horizontally installed on the inner side of the box body 1. The placement components include a column 201, a support plate 202, a pulley 203, a rectangular slide rail 204, a rectangular slide groove 205, a placement plate 206, an arc-shaped groove 207, a square telescopic column 208, a square telescopic sleeve 209, a cylinder 210, a pressure plate 211, and an arc-shaped limiting groove 21. 2 and the arc-shaped rubber pad 213, the support plate 202 are arranged linearly and symmetrically, and three sets of placement plates 206 fixedly connected to the column 201 are arranged linearly between the two sets of support plates 202. The upper part of the placement plate 206 is provided with an arc-shaped groove 207 for placing fire extinguishers at horizontal intervals. The upper part of the placement plate 206 is provided with a pressure plate 211 fixedly connected to the square telescopic sleeve 209. The lower part of the pressure plate 211 is provided with an arc-shaped limiting groove 212 for limiting the fire extinguisher, corresponding to the arc-shaped groove 207.
[0024] Please see Figure 2 In this embodiment, a connecting shaft 101 is installed on one side of the box 1, and an opening and closing plate 102 is provided on one side of the box 1. The opening and closing plate 102 is rotatably connected to the box 1 via the connecting shaft 101. An alarm light 106 is installed at the upper corner of the box 1. First, pull the handle 104, and the opening and closing plate 102 will rotate open via the connecting shaft 101 and the box 1. After placing the fire extinguishers in sequence, the opening and closing plate 102 will close. When a fire occurs, the alarm light 106 on the box 1 will light up, making it easy to find the box 1 and retrieve the fire extinguishers for use. A connecting shaft 106 is installed in the middle of the opening and closing plate 102. The device has a transparent glass plate 103 and an opening and closing plate 102 with a handle 104 on the side away from the connecting shaft 101. A rectangular sealing ring 105 is installed on the edge of the opening and closing plate 102 near the box body 1. When the opening and closing plate 102 is closed, the rectangular sealing ring 105 drives the opening and closing plate 102 to fit against the inner wall of the box body 1, increasing the sealing of the box body 1 and preventing dust from entering the box body 1 and falling on the fire extinguisher, which would affect its use. During the storage of the fire extinguisher, the number of fire extinguishers stored inside the box body 1 can be roughly seen through the transparent glass plate 103, and fire extinguishers can be added in time when the number is insufficient.
[0025] Please see Figures 3-4In this embodiment, a column 201 is installed at the corner between the two sets of support plates 202. A pulley 203 is installed at the corner of the side of the support plate 202 away from the column 201. Two sets of rectangular slide rails 204, fixedly connected to the box body 1, are provided laterally on the side of the support plate 202 away from the column 201. During the storage of fire extinguishers, the column 201 provides stable support for the support plate 202, improving the stability of the storage rack. Rectangular slide rails 204 are provided with rectangular grooves 20. 5. The pulley 203 drives the support plate 202 to slide along the rectangular slide groove 205 and connect with the rectangular slide rail 204. When the opening and closing plate 102 is opened, by pulling the column 201, the pulley 203 drives the support plate 202 to slide along the rectangular slide groove 205 and connect with the rectangular slide rail 204, thereby pulling out the support plate 202. Two sets of square telescopic columns 208 are symmetrically installed laterally on both sides of the upper end of the placement plate 206. The square telescopic columns 208 are fitted with square telescopic sleeves 209. A cylinder 210 is installed at the upper end of the rectangular telescopic sleeve 209. In the event of a fire, the alarm light 106 illuminates. Driven by the cylinder 210, the rectangular telescopic sleeve 209 moves the pressure plate 211 upward, facilitating the direct access to the fire extinguisher. The pressure plate 211 has an arc-shaped limiting groove 212, below which an arc-shaped rubber pad 213 is installed. The cylinder 210 is electrically connected to the alarm light 106. The fire extinguisher is picked up and placed along the arc-shaped groove 207 onto the placement plate 206, and then... Driven by cylinder 210, square telescopic sleeve 209 moves pressure plate 211 downward along square telescopic column 208, causing arc-shaped rubber pad 213 to continuously come into contact with and adhere to the fire extinguisher. Thus, the arc-shaped groove 207 on the placement plate 206 cooperates with the arc-shaped limiting groove 212 on the pressure plate 211 to limit and fix the fire extinguisher, preventing displacement of the fire extinguisher during storage, and effectively protecting the fire extinguisher from damage or failure due to collision.
[0026] When working, first pull the handle 104, and the opening and closing plate 102 will rotate and open with the housing 1 through the connecting shaft 101. Then, by pulling the column 201, the pulley 203 will drive the support plate 202 to slide along the rectangular slide groove 205 and the rectangular slide rail 204, thereby pulling out the support plate 202. Then, pick up the fire extinguisher and place it on the placement plate 206 along the arc groove 207. Then, driven by the cylinder 210, the square telescopic sleeve 209 will drive the pressure plate 211 to move downward along the square telescopic column 208, so that the arc rubber pad 213 will continuously come into contact with and adhere to the fire extinguisher. Thus, the arc groove 207 on the placement plate 206 and the arc limiting groove 212 on the pressure plate 211 cooperate to limit and fix the fire extinguisher, so as to prevent the fire extinguisher from shifting during storage, and effectively protect the fire extinguisher from damage or failure due to collision.
[0027] After the fire extinguishers are placed in sequence, the opening and closing plate 102 is closed. At the same time, the rectangular sealing ring 105 drives the opening and closing plate 102 to fit and connect with the inner wall of the box 1, increasing the sealing of the box 1 and preventing dust from entering the box 1 and falling on the fire extinguishers, which would affect their use. During the storage of fire extinguishers, the number of fire extinguishers stored inside the box 1 can be roughly seen through the transparent glass plate 103. When the number is insufficient, fire extinguishers can be added in time.
[0028] In the event of a fire, the alarm light 106 on the box 1 will light up, making it easy to locate the box 1. Then, driven by the cylinder 210, the square telescopic sleeve 209 will move the pressure plate 211 upward, making it easy to directly retrieve the fire extinguisher for use.
[0029] Following the steps outlined above, open the housing 1, pull the upright column 201 to move the support plate 202 along the rectangular slide rail 204, and place the fire extinguishers sequentially onto the placement plate 206 along the arc-shaped groove 207. Then, the square telescopic sleeve 209 moves the pressure plate 211 downwards, limiting the fire extinguishers through the arc-shaped limiting groove 212 on the pressure plate 211 to prevent displacement during storage. In the event of a fire, the alarm light 106 illuminates, and the cylinder 210 drives the square telescopic sleeve 209 to move the pressure plate 211 upwards, facilitating direct retrieval of the fire extinguishers for use. This system utilizes a multi-layered, compartmentalized storage structure to centrally store multiple fire extinguishers, saving space and making fire extinguisher management more organized. Simultaneously, fire extinguishers can be quickly retrieved when needed, improving fire response efficiency. Furthermore, the fire extinguishers are secured on the storage plate 206, providing effective protection against damage or malfunction due to collisions. This addresses the issue that most existing storage racks are single-layered, potentially reducing space utilization and being insufficient. Placing all fire extinguishers on the same single-layered rack would increase the difficulty of management and maintenance.
Claims
1. A multi-layer fire extinguisher storage rack, comprising a housing (1); characterized in that: It also includes placement components; three sets of placement components for separating and placing fire extinguishers are installed horizontally on the inner side of the box (1). The placement components include a column (201), a support plate (202), a pulley (203), a rectangular slide rail (204), a rectangular slide groove (205), a placement plate (206), an arc-shaped groove (207), a square telescopic column (208), a square telescopic sleeve (209), a cylinder (210), a pressure plate (211), an arc-shaped limiting groove (212), and an arc-shaped rubber pad (213). The support plates (202) are arranged linearly and symmetrically. Between the two sets of support plates (202), there are three sets of placement components that are fixedly connected to the column (201). The placement plate (206) has horizontally spaced arc-shaped grooves (207) for placing fire extinguishers above it. The placement plate (206) has a pressure plate (211) fixedly connected to a square telescopic sleeve (209) above it. The pressure plate (211) has an arc-shaped limiting groove (212) for limiting the fire extinguisher below it, corresponding to the arc-shaped grooves (207). A connecting shaft (101) is installed on one side of the box (1). An opening and closing plate (102) is provided on one side of the box (1). The opening and closing plate (102) is rotatably connected to the box (1) through the connecting shaft (101). An alarm light (106) is installed at the upper corner of the box (1).
2. The multi-layer fire extinguisher storage rack according to claim 1, characterized in that: A transparent glass plate (103) is installed in the middle of the opening and closing plate (102). A handle (104) is installed on the side of the opening and closing plate (102) away from the connecting shaft (101). A rectangular sealing ring (105) is installed on the edge of the opening and closing plate (102) near the box body (1).
3. A multi-layer fire extinguisher storage rack according to claim 1, characterized in that: A column (201) is installed at the corner between the two sets of support plates (202). A pulley (203) is installed at the corner of the side of the support plate (202) away from the column (201). Two sets of rectangular slide rails (204) are provided horizontally on the side of the support plate (202) away from the column (201) and are fixedly connected to the box body (1).
4. A multi-layer fire extinguisher storage rack according to claim 1, characterized in that: A rectangular slide rail (204) has a rectangular slide groove (205) and a pulley (203) drives a support plate (202) to slide along the rectangular slide groove (205) and connect with the rectangular slide rail (204).
5. A multi-layer fire extinguisher storage rack according to claim 1, characterized in that: Two sets of square telescopic columns (208) are symmetrically installed on the upper two sides of the placement plate (206). A square telescopic sleeve (209) is fitted on the outside of the square telescopic column (208), and a cylinder (210) is installed on the upper end of the square telescopic sleeve (209).
6. A multi-layer fire extinguisher storage rack according to claim 1, characterized in that: An arc-shaped rubber pad (213) is installed below the arc-shaped limiting groove (212) on the pressure plate (211), and the cylinder (210) is electrically connected to the alarm light (106).