Portable disaster site quick response tool combination box

By designing a portable disaster site rapid response tool kit, the problems of large toolbox size, inconvenient transportation, messy tool storage, and difficulty in accessing tools at night have been solved. The kit enables orderly storage, stable support, and convenient access to tools, thereby improving the efficiency and safety of disaster site rescue.

CN224239565UActive Publication Date: 2026-05-15BEIJING TOPDESI EMERGENCY EQUIP CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
BEIJING TOPDESI EMERGENCY EQUIP CO LTD
Filing Date
2025-06-20
Publication Date
2026-05-15

AI Technical Summary

Technical Problem

Existing rescue toolboxes are bulky, inconvenient to transport, have disorganized storage, lack stability, and are difficult to quickly locate and retrieve in low-light or nighttime environments, affecting the efficiency and safety of disaster relief efforts.

Method used

A portable disaster site rapid response tool kit was designed, including a main frame, layered drawer modules, folding support feet, tool fixing plates, lighting components, and a positioning marking system. Through the combination of sliding structures, magnetic adsorption layers, light-sensitive switches, and positioning marking systems, the kit enables the orderly storage, stable support, convenient access, and nighttime identification of tools.

Benefits of technology

The improved portability and stability of the toolbox ensured rapid access and safe operation of tools in complex environments, significantly enhancing the efficiency and safety of disaster relief efforts.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a portable disaster site quick response tool combination box. The portable disaster site quick response tool combination box comprises a main frame, a layered drawer module, folding supporting legs, a tool fixing plate, a lighting assembly and a positioning identification system. Folding supporting legs are arranged at the bottom of the main frame, a sliding layered drawer module is arranged in the main frame, a tool fixing plate is arranged in a drawer, a light sensation controlled LED light bar and a standby battery bin are arranged on the top of the drawer, and a fluorescent coating and a reflective patch are adopted on the outer surface to enhance the distinguishing degree. Through compact design, classified storage of tools, an anti-skid stable structure, night lighting and a positioning function, the portability, stability and operation convenience of the rescue tool box are remarkably improved, and therefore the rescue efficiency and safety of a disaster site are improved.
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Description

Technical Field

[0001] This utility model relates to the field of emergency rescue equipment technology, and in particular to a portable disaster site rapid response tool kit. Background Technology

[0002] Emergency rescue operations at disaster sites demand high efficiency and equipment portability, typically requiring rapid response and the use of multiple tools to handle complex and ever-changing situations. Most existing rescue toolkits are designed for single functions or simple combinations. While they may meet basic needs to some extent, their structural design often fails to adequately consider the actual operating environment and convenience requirements at disaster sites. For example, some toolkits are bulky, making them inconvenient to move and difficult to locate and retrieve in emergencies. Furthermore, the ground at disaster sites may be uneven or slippery, and existing toolkits lack stability when placed, easily tipping over or sliding, hindering the smooth progress of rescue operations.

[0003] Meanwhile, disaster relief often requires multiple people to collaborate on equipment assembly or on-site handling tasks. However, the inefficient layout of toolboxes and the disorganized storage of tools further increase the difficulty and time cost of operations. Especially at night or in poorly lit environments, the process of finding specific tools can significantly slow down the rescue progress and increase safety hazards. All these factors pose challenges to the efficiency and safety of disaster relief work. Utility Model Content

[0004] The purpose of this utility model is to provide a portable disaster site rapid response tool kit, which solves the problems mentioned in the background art.

[0005] This utility model is implemented as follows: a portable disaster site rapid response tool kit includes a main frame, layered drawer modules, folding support legs, tool fixing plates, lighting components, and a positioning marking system. The main frame is a rectangular frame structure with four foldable support legs at its bottom. Each foldable support leg is connected to the main frame via a hinge and secured by a limiting pin when unfolded. Inside the main frame, at least two layered drawer modules are slidably connected along the height direction. Each layered drawer module has slide rails on both sides, which engage with guide grooves on the inner wall of the main frame. The layered drawer modules slide up and down along the guide grooves via the slide rails. The movable, layered drawer module has a tool fixing plate inside, with multiple tool slots of various shapes. The size of the tool slots matches the shape of commonly used rescue tools. A lighting component is installed on the top of the main frame, which includes LED light strips and a light sensor switch. The LED light strips are evenly distributed along the top edge of the main frame, and the light sensor switch automatically controls the opening and closing of the LED light strips according to the ambient light intensity. A positioning marking system is set on the outer surface of the main frame. The positioning marking system consists of a fluorescent coating and reflective patches. The fluorescent coating covers the outer surface of the main frame, and the reflective patches are embedded in the corners of the main frame.

[0006] Furthermore, a handle is provided on the front side of the layered drawer module, and the handle is covered with a non-slip rubber sleeve. The handle is fixedly connected to the layered drawer module by bolts. A damper is provided on the rear side of the layered drawer module. One end of the damper is fixedly connected to the layered drawer module, and the other end is fixedly connected to the inner wall of the main frame. The damper is used to slow down the speed of the layered drawer module during the sliding process to prevent tools from falling off or being damaged due to rapid pulling.

[0007] Furthermore, the bottom of the folding support foot is equipped with an anti-slip pad made of silicone material with a high coefficient of friction. The anti-slip pad is fixed to the bottom of the folding support foot with screws. After the folding support foot is unfolded, a certain gap is formed between the bottom of the main frame and the ground. The height of the gap can be adjusted by adjusting the position of the limit pin to adapt to the stable placement requirements under different terrain conditions.

[0008] Furthermore, a magnetic adsorption layer is provided on the back of the tool fixing plate. The magnetic adsorption layer is composed of multiple small permanent magnets and is fixed to the back of the tool fixing plate with adhesive. The tool fixing plate is connected to the bottom surface of the layered drawer module by magnetic adsorption through the magnetic adsorption layer, which facilitates the disassembly and replacement of the tool fixing plate.

[0009] Furthermore, the lighting assembly also includes a backup battery compartment, which is located at the center of the top of the main frame. The backup battery compartment contains a rechargeable lithium battery, which is electrically connected to the LED light strip via wires. A power indicator light is located on the outside of the backup battery compartment to display the remaining power of the lithium battery.

[0010] Furthermore, the fluorescent coating of the positioning marking system is doped with phosphorescent powder, which can continue to glow at night after absorbing light during the day, with a glowing time of no less than 8 hours; the surface of the reflective patch is treated with microprisms, which can reflect external light sources back to their original direction and enhance visibility.

[0011] Furthermore, mounting points are provided on the sides of the main frame. Each mounting point consists of a metal ring and a mounting base. The metal ring is fixed to the mounting base by a threaded connection. The mounting points are used to suspend additional tool kits or other rescue equipment, increasing the functionality and expandability of the tool kit.

[0012] Furthermore, the bottom of the layered drawer module is provided with drainage holes, which are evenly distributed along the bottom edge of the layered drawer module. The diameter of the drainage holes is 5 mm, which is used to drain water that enters the layered drawer module due to humid environment or when cleaning tools.

[0013] Furthermore, a handle is provided at the top of the main frame. The handle has a U-shaped structure, and both ends of the handle are connected to the main frame by hinges. The handle can be flipped upward to a horizontal position and locked. The outside of the handle is covered with soft foam material to improve grip comfort.

[0014] Furthermore, the tool holder plate is equipped with an elastic pressure plate in the tool slot. The elastic pressure plate is made of spring steel. One end of the elastic pressure plate is fixed to the inner wall of the tool slot, and the other end extends towards the center of the tool slot. The elastic pressure plate is used to clamp the tool and prevent the tool from loosening or falling off during transportation.

[0015] This invention solves the problems of existing rescue toolboxes, such as large size, inconvenient transport, disorganized tool storage, insufficient stability, and difficulty in quickly locating and retrieving required tools at night or in low-light environments, through a combined design of a main frame, layered drawer modules, folding support legs, tool fixing plates, lighting components, and a positioning marking system. The compact design of the main frame, combined with the sliding structure of the layered drawer modules, allows for more organized tool storage and easier, quicker retrieval. The anti-slip pads and adjustable gaps of the folding support legs enhance the toolbox's stability on complex terrain. The magnetic adsorption layer and elastic pressure plates of the tool fixing plates ensure the tools are securely held during transport. The light-sensitive switch and spare battery compartment of the lighting components guarantee ease of operation in low-light conditions. The fluorescent coating and reflective patches of the positioning marking system enhance the toolbox's visibility at night or in low-visibility environments. These technologies work together to significantly improve the efficiency and safety of disaster relief operations. Attached Figure Description

[0016] Figure 1This is a three-dimensional structural diagram of the present invention, showing the overall layout of the main frame, layered drawer modules, folding support legs, handles, and lighting components. The folding support legs are in the unfolded state, and the handles are flipped to a horizontal position and locked.

[0017] Figure 2 This is a schematic diagram of the internal structure of the layered drawer module of this utility model, which focuses on showing the tool slots and elastic pressure plates on the tool fixing plate, as well as the distribution of drainage holes at the bottom of the layered drawer module.

[0018] Figure 3 This is a partial enlarged view of the positioning and marking system of this utility model, which shows in detail the arrangement of the fluorescent coating and reflective patches on the outer surface and corners of the main frame.

[0019] The attached diagram is labeled as follows: 1. Main frame; 2. Layered drawer module; 3. Folding support leg; 4. Tool fixing plate; 5. Lighting assembly; 6. Handle; 7. Tool slot; 8. Elastic pressure plate; 9. Drain hole; 10. Fluorescent coating; 11. Reflective patch; 12. Anti-slip pad; 13. Limit pin; 14. Handle; 15. Damper; 16. Magnetic adsorption layer; 17. Spare battery compartment; 18. Mounting point. Detailed Implementation

[0020] This utility model provides a portable disaster site rapid response tool kit, the specific implementation of which is described in conjunction with the attached... Figure 1 To be continued Figure 3 A detailed description is provided below. This tool kit includes a main frame 1, layered drawer modules 2, folding support legs 3, tool fixing plate 4, lighting components 5, and a positioning and marking system. The structural design of each component and their connection relationships are described below.

[0021] The main frame 1 is a rectangular frame structure made of aluminum alloy, featuring high strength and lightweight characteristics. Four folding support legs 3 are located at the bottom of the main frame 1. Each folding support leg 3 is connected to the bottom corner of the main frame 1 via a hinge, with the hinge axis perpendicular to the bottom surface of the main frame 1. When unfolded, the folding support legs 3 are secured by limiting pins 13, which are inserted into pre-drilled holes between the main frame 1 and the folding support legs 3, ensuring stability when unfolded. Anti-slip pads 12, made of high-friction silicone, are fixed to the bottom of the folding support legs 3 with screws, effectively preventing the toolbox from sliding on complex terrain. A handle 6 is located at the top of the main frame 1. The handle 6 has a U-shaped structure, with both ends connected to the main frame 1 via hinges. The handle 6 can be flipped upwards to a horizontal position and locked. The locking mechanism consists of a spring pin and a corresponding slot. The outside of the handle 6 is covered with soft foam material to improve grip comfort.

[0022] The main frame 1 has two sliding drawer modules 2 connected along its height. The number of drawer modules 2 can be adjusted according to actual needs, with a maximum of four. Each drawer module 2 has slide rails on both sides, which engage with guide grooves on the inner wall of the main frame 1. The guide grooves are opened along the height of the main frame 1, and the slide rails are embedded in the guide grooves and slidably connected via ball bearings. A handle 14 is located on the front of each drawer module 2, and is bolted to its front surface. The handle 14 is covered with an anti-slip rubber sleeve to increase friction during operation. A damper 15 is located on the rear of each drawer module 2. One end of the damper 15 is bolted to the rear surface of the drawer module 2, and the other end is fixedly connected to the inner wall of the main frame 1. The damper 15 contains a hydraulic device to slow down the speed of the drawer module 2 during sliding, preventing internal tools from falling off or being damaged due to rapid pulling. The bottom of the layered drawer module 2 has multiple drainage holes 9, which are evenly distributed along the bottom edge of the layered drawer module 2 and have a diameter of 5 mm. These holes are used to drain water that enters the layered drawer module 2 due to a humid environment or when cleaning tools.

[0023] The layered drawer module 2 has a tool fixing plate 4 inside. The tool fixing plate 4 is connected to the bottom surface of the layered drawer module 2 via a magnetic adsorption layer 16. The magnetic adsorption layer 16 is composed of multiple small permanent magnets, which are fixed to the back of the tool fixing plate 4 with adhesive. The design of the magnetic adsorption layer 16 facilitates the disassembly and replacement of the tool fixing plate 4. The tool fixing plate 4 has multiple tool slots 7 of different shapes. The size of the tool slots 7 matches the shape of commonly used rescue tools. The tool slots 7 are equipped with elastic pressure plates 8. The elastic pressure plates 8 are made of spring steel. One end of the elastic pressure plate 8 is fixed to the inner wall of the tool slot 7 by rivets, and the other end extends towards the center of the tool slot 7. The elastic pressure plate 8 is designed to clamp the tools and prevent them from loosening or falling off during transportation.

[0024] A lighting assembly 5 is installed on the top of the main frame 1. The lighting assembly 5 includes LED light strips and a light sensor switch. The LED light strips are evenly distributed along the top edge of the main frame 1 and are fixed to the top surface of the main frame 1 with screws. The light sensor switch is located at the center of the top of the main frame 1 and is electrically connected to the LED light strips via wires. The light sensor switch contains a photoresistor that automatically controls the opening and closing of the LED light strips according to the ambient light intensity. The lighting assembly 5 also includes a spare battery compartment 17, which is located at the center of the top of the main frame 1. A rechargeable lithium battery is installed in the spare battery compartment 17 and is electrically connected to the LED light strips via wires. A power indicator light is located on the outside of the spare battery compartment 17 to display the remaining power of the lithium battery. The power indicator light is composed of LED beads, with different colored beads representing different power statuses.

[0025] A positioning marking system is provided on the outer surface of the main frame 1. The positioning marking system consists of a fluorescent coating 10 and reflective patches 11. The fluorescent coating 10 covers the outer surface of the main frame 1 and is doped with phosphorescent powder. The phosphorescent powder absorbs light during the day and can continue to glow at night for at least 8 hours. The reflective patches 11 are embedded at the corners of the main frame 1. The surface of the reflective patches 11 is treated with microprisms to reflect external light sources back to their original direction, enhancing visibility. Mounting points 18 are provided on the sides of the main frame 1. Mounting points 18 consist of a metal ring and a fixing base. The metal ring is fixed to the fixing base by a threaded connection. Mounting points 18 are used to hang additional tool bags or other rescue equipment, increasing the functional expandability of the tool kit.

[0026] In practical applications, when rescue tools need to be deployed quickly at a disaster site, the operator first places the tool kit on the ground, unfolds the folding support legs 3 and secures them with the limiting pins 13, and adjusts the gap between the folding support legs 3 and the ground to adapt to the stable placement requirements under different terrain conditions. Then, the operator lifts the tool kit using the handle 6 and moves it to the designated location. In low-light environments, the light sensor switch of the lighting component 5 automatically turns on the LED light strip after detecting that the ambient light intensity is below a set threshold, providing sufficient illumination for the operator. If the lithium battery is low, the operator can replace the lithium battery through the spare battery compartment 17 to ensure continuous operation of the lighting function.

[0027] The tool slots 7 on the tool mounting plate 4 are pre-designed according to the type and size of the rescue tools, and the elastic clamps 8 ensure that the tools are firmly fixed during transportation. When a tool needs to be retrieved, the operator pulls the handle 14 of the layered drawer module 2. The layered drawer module 2 slides along the guide groove of the main frame 1 to reveal the required tool. The damper 15 slows down the sliding speed of the layered drawer module 2 to prevent the tool from loosening due to vibration. The tool mounting plate 4 can be quickly disassembled and replaced via the magnetic adsorption layer 16 to adapt to the tool configuration adjustment under different mission requirements. In nighttime or low-visibility environments, the fluorescent coating 10 and reflective patches 11 of the positioning marking system significantly enhance the visibility of the tool kit, making it easy for the operator to quickly locate and retrieve tools.

[0028] The above embodiments describe in detail the specific structure and operating principle of this utility model. The connection and cooperation relationships between the various components are clear and explicit, and it can achieve the functional requirements of a portable disaster site rapid response tool kit.

[0029] To enable those skilled in the art to fully understand and implement this utility model, the specific implementation principle of this utility model is further explained below in conjunction with specific application scenarios.

[0030] When deploying the tool kit at a disaster site, operators first place the main frame 1 on the ground. Then, the folding support legs 3 are unfolded, switching from a folded to an unfolded state by rotating the hinge axis, and the folding support legs 3 are secured by inserting the limiting pins 13 into pre-set holes. The anti-slip pads 12 ensure the stability of the tool kit on wet or uneven terrain. Their high-friction coefficient material generates sufficient static friction upon contact with the ground, preventing the tool kit from sliding or tipping over. Simultaneously, by adjusting the position of the limiting pins 13, the clearance between the folding support legs 3 and the ground can be changed to adapt to stability requirements under different terrain conditions.

[0031] In low-light environments, the photosensitive switch automatically triggers the LED light strip's on / off function when the ambient light intensity falls below a set threshold. A photoresistor adjusts the circuit's on / off state based on changes in external light intensity; when the light intensity decreases, the photoresistor's resistance increases, triggering the circuit to conduct and illuminating the LED light strip, providing sufficient lighting for the operator. The lithium battery in the backup battery compartment 17 is connected to the LED light strip via wires, allowing for seamless switching to backup power in case of main power failure, ensuring continuous lighting. A power indicator light displays the remaining battery level in real-time using LEDs of different colors, facilitating timely battery replacement by the operator.

[0032] When tools are needed, the operator pulls the handle 14 on the front of the layered drawer module 2. The anti-slip rubber sleeve on the outside of the handle 14 increases the friction between the fingers and the handle, making it easier to apply force. The layered drawer module 2 is embedded in the guide grooves on the inner wall of the main frame 1 via slide rails on both sides. The ball bearing structure reduces sliding resistance, allowing the layered drawer module 2 to slide out smoothly. The hydraulic device inside the damper 15 slows down the sliding speed of the layered drawer module 2 through the resistance generated by the fluid flow, preventing tools from loosening or falling off due to rapid pulling. The tool slot 7 on the tool fixing plate 4 is pre-designed to match the shape of the rescue tool, and the elastic pressure plate 8 clamps the tool to prevent it from loosening during transportation. The magnetic adsorption layer 16 consists of multiple small permanent magnets, which magnetically attract the tool fixing plate 4 to the bottom surface of the layered drawer module 2, facilitating quick removal and replacement of the tool fixing plate 4.

[0033] In nighttime or low-visibility environments, the fluorescent coating 10 and reflective patches 11 of the positioning marking system significantly enhance the visibility of the tool kit. The phosphorescent powder doped in the fluorescent coating 10 absorbs light during the day, stores energy, and continues to glow at night for at least 8 hours, providing passive light source identification for operators. The reflective patches 11 have a microprism-like surface that efficiently reflects external light back to its original direction, enhancing visibility. The mounting point 18 is designed to allow for the attachment of tool bags or other rescue equipment, expanding the functionality of the tool kit.

[0034] In addition, the drain hole 9 at the bottom of the layered drawer module 2 is used to drain any water that may enter the module. When the tools are washed or used in a humid environment, the water flows along the bottom edge of the layered drawer module 2 and drains out through the drain hole 9, preventing water from corroding or damaging the tools. The U-shaped structure of the handle 6, combined with the soft foam material covering, not only improves grip comfort but also makes it easier for operators to quickly lift the tool kit and move it to a designated location.

[0035] The aforementioned steps and principles work together to ensure the tool kit's efficiency and convenience in the complex environment of a disaster site, meeting the needs for rapid response and stable operation. The coordinated operation of the various components enables functions such as categorized storage, rapid retrieval, stable placement, and nighttime identification of tools, significantly improving the efficiency and safety of rescue operations.

[0036] The above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Any modifications, equivalent substitutions and improvements made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.

Claims

1. A portable disaster site rapid response tool kit, characterized in that, The system includes a main frame (1), layered drawer modules (2), folding support legs (3), tool fixing plate (4), lighting components (5), and a positioning marking system. The main frame (1) is a rectangular frame structure with four folding support legs (3) at its bottom. Each folding support leg (3) is connected to the main frame (1) via a hinge and is fixed after unfolding by a limit pin (13). Inside the main frame (1), two layered drawer modules (2) are slidably connected along the height direction. Each layered drawer module (2) has sliding supports on both sides. The slide rails cooperate with the guide grooves on the inner wall of the main frame (1); the layered drawer module (2) is equipped with a tool fixing plate (4), and the tool fixing plate (4) has multiple tool slots (7) of different shapes; a lighting component (5) is installed on the top of the main frame (1), the lighting component (5) includes LED light strips and light-sensitive switches, and the LED light strips are evenly distributed along the top edge of the main frame (1); a positioning marking system is provided on the outer surface of the main frame (1), the positioning marking system is composed of a fluorescent coating (10) and a reflective patch (11).

2. A portable disaster site rapid response tool kit according to claim 1, characterized in that: A handle (14) is provided on the front side of the layered drawer module (2), and the handle (14) is covered with an anti-slip rubber sleeve; a damper (15) is provided on the rear side of the layered drawer module (2), one end of the damper (15) is fixedly connected to the layered drawer module (2), and the other end is fixedly connected to the inner wall of the main frame (1).

3. A portable disaster site rapid response tool kit according to claim 1, characterized in that: it is foldable. The bottom of the support foot (3) is provided with an anti-slip pad (12), which is made of silicone material. After the folded support foot (3) is unfolded, a gap is formed between the bottom of the main frame (1) and the ground. The height of the gap is adjusted by adjusting the position of the limit pin (13).

4. A portable disaster site rapid response tool kit according to claim 1, characterized in that: The tool fixing plate (4) has a magnetic adsorption layer (16) on its back side, which is composed of multiple small permanent magnets. The tool fixing plate (4) is connected to the bottom surface of the layered drawer module (2) by magnetic adsorption through the magnetic adsorption layer (16).

5. A portable disaster site rapid response tool kit according to claim 1, characterized in that: The lighting assembly (5) also includes a backup battery compartment (17), which is located at the top center of the main frame (1) and contains a rechargeable lithium battery; a power indicator light is provided on the outside of the backup battery compartment (17).

6. A portable disaster site rapid response tool kit according to claim 1, characterized in that: The main frame (1) has mounting points (18) on its side. The mounting points (18) consist of a metal ring and a fixing seat. The metal ring is fixed to the fixing seat by a threaded connection.

7. A portable disaster site rapid response tool kit according to claim 1, characterized in that: The bottom of the layered drawer module (2) is provided with a drain hole (9), which is evenly distributed along the bottom edge of the layered drawer module (2) and has a diameter of five millimeters.