Outdoor storm fire extinguisher

By adding components such as a weight ring, a protective shell and a remote communicator to the fire extinguisher, the problem of the fire extinguisher tipping over and exploding in a storm environment is solved, and a stable fire extinguishing effect is achieved under extreme weather conditions.

CN119818880BActive Publication Date: 2025-10-17GUANGDONG YITAI SECURITY TECHNOLOGY SERVICE CO LTD
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Patent Information

Application Number
CN202510068771.2
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-01-16
Publication Date
2025-10-17
Estimated Expiration
2045-01-16

AI Technical Summary

Technical Problem

Existing fire extinguishers are prone to tipping over, being blown away, or exploding due to flooding and lightning strikes in extreme weather conditions such as storms, posing safety hazards and affecting their fire extinguishing performance.

Method used

An outdoor storm fire extinguisher was designed, which uses components such as a counterweight ring, a protective shell, an electric propeller and a remote communicator. The counterweight ring is used to prevent the equipment from tipping over, and the electric propeller and remote communicator are used to control the fire extinguishing trajectory and air pressure to ensure that the fire extinguishing material is sprayed normally in a storm environment.

Benefits of technology

In stormy environments, it prevents fire extinguishers from being blown over, ensures the normal spraying of fire extinguishing materials, avoids hazards caused by shaking, and improves safety and fire extinguishing efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application provides an outdoor storm fire extinguisher, which comprises a fire extinguisher base, counterweight rings, a closed top plate, a protective shell and a fire extinguishing tank, a plurality of the counterweight rings are fixedly connected with four corners of the fire extinguisher base, the protective shell is installed at the top end of the fire extinguisher base, and the closed top plate is installed and connected with the top end of the protective shell. When the fire extinguisher needs to be started in a storm environment, the fire extinguisher base is moved to a fixed fire extinguishing position, and counterweight blocks are installed and connected in the counterweight rings on each side to prevent the device from being blown down by the storm. The application sets up a horizontal outward launching fire extinguishing trajectory through a launching trajectory frame, protects the sprayed fire extinguishing material from the influence of the storm through the formed fire extinguishing trajectory, can normally spray a distance, and can prevent the fire extinguishing material from being too close to the device when escaping in a storm, thereby causing subsequent other hazards.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of fire extinguishers, in particular to an outdoor storm fire extinguisher. BACKGROUND

[0002] As a portable fire extinguishing tool, fire extinguishers have been widely used in various places, especially in outdoor environments. However, there are some deficiencies in the design and use of existing fire extinguishers, especially in the face of severe outdoor environments such as storms, their performance and safety may be severely affected.

[0003] Especially in extreme weather conditions such as storms, fire extinguishers may be tipped over or blown away by strong winds, causing safety hazards. At the same time, since storms are often accompanied by lightning and heavy rain, if the fire extinguisher is not properly protected, it may also explode due to water immersion or lightning, causing serious threats to personnel and property. SUMMARY

[0004] (I) Technical problems solved

[0005] In view of the deficiencies of the prior art, the present application provides an outdoor storm fire extinguisher, which solves the problems raised in the background art.

[0006] (II) Technical solutions

[0007] To achieve the above purpose, the present application is realized by the following technical solutions: an outdoor storm fire extinguisher, comprising a fire extinguisher base, a counterweight ring, a closed top plate, a protective shell and a fire extinguishing tank, a plurality of counterweight rings are fixedly connected to the four corners of the fire extinguisher base, the protective shell is installed at the top end of the fire extinguisher base, the closed top plate is installed and connected with the top end of the protective shell, an element cavity is arranged in the protective shell, the fire extinguishing tank is arranged in the element cavity, a stabilizing base is installed at the top end of the fire extinguisher base, an electric propeller is installed at the top end of the stabilizing base, the fire extinguishing tank is installed at the top end of the electric propeller, the propelling head of the electric propeller extends into the fire extinguishing tank, an output conduit is connected to the top end of the fire extinguishing tank, a jet pipe is connected to one side of the outer end surface of the output conduit, the jet pipe extends outward and penetrates one side of the protective shell, a protective sleeve plate is fixedly arranged above the outer end surface of the protective shell, and the protective sleeve plate is arranged outside the protective shell to achieve protection effect.

[0008] Preferably, a stabilizing top plate is installed at the bottom of the closed top plate, the stabilizing top plate is arranged above the element cavity, and the stabilizing top plate abuts against the top end of the output conduit.

[0009] Preferably, an air pressure regulator is installed above one side wall of the element cavity, the air pressure regulator is arranged on the outer end surface of the jet pipe and achieves air pressure control effect.

[0010] Preferably, one end of the air pressure regulator is signal connected with a signal wire, the signal wire passes through a side wall of the protective shell and extends outward, and a line support plate is arranged at the connection position of the signal wire and the protective shell to play a supporting and stabilizing effect.

[0011] Preferably, an air pressure controller is arranged at the outer end face of the protective shell and located at the other side end face of the protective sleeve plate, and the signal wire is connected with the top end of the air pressure controller.

[0012] Preferably, a remote communicator is arranged at the outer end face of the protective shell and located below the air pressure controller, and a communication wire is connected between the remote communicator and the air pressure controller.

[0013] Preferably, two positioning modules are arranged at one side of the bottom of the closed top plate and one side of the top end of the fire extinguisher base respectively, and the air pressure regulator can only start to work when the two positioning modules are signal connected.

[0014] Preferably, two fixed support plates are fixedly arranged in front of the side end face of the protective sleeve plate, the fixed support plates on both sides are arranged in a symmetrical position, a turnover shaft is rotatably arranged between the fixed support plates on both sides, a turnover plate is fixedly connected to one side end face of the turnover shaft, and a circular annular long strip-shaped launching trajectory is arranged below the turnover plate.

[0015] (Three) beneficial effects

[0016] The present application provides an outdoor storm fire extinguisher. Has the following beneficial effects:

[0017] 1. When the fire extinguisher needs to be started in a storm environment, the fire extinguisher base is moved to a fixed fire extinguishing position, and the counterweight blocks are arranged in the counterweight rings on both sides to prevent the device from being blown down by the storm.

[0018] 2. The present application sets up a horizontal outward launching fire trajectory through the launching trajectory, and protects the sprayed fire extinguishing material from being affected by the storm, so that it can be normally sprayed for a distance, and can prevent the fire extinguishing material from being too close to the device in the storm, causing subsequent other hazards.

[0019] 3. When the protective shell is shaken due to a particularly severe storm environment, if the signal of the positioning modules on both sides is not successfully connected, the signal control can directly cut off the switch of the air pressure regulator, and the fire extinguisher continues to work, thereby preventing the shaking protective shell from causing the fire extinguishing material to be scattered in all directions and causing harm to the surrounding environment. BRIEF DESCRIPTION OF DRAWINGS

[0020] Figure 1 It is an appearance structure schematic view of the present application.

[0021] Figure 2 This is a rear view of the appearance structure of the present invention;

[0022] Figure 3 It is a schematic diagram of the working state of the present invention;

[0023] Figure 4 It is a cross-sectional view of the internal structure of the present invention;

[0024] Figure 5 It is a front view of the cross-sectional structure of the present invention;

[0025] Figure 6 Schematic diagram of the internal structure of the base component of the fire extinguisher of the present invention.

[0026] In the figure: 101, fire extinguisher base; 102, counterweight ring; 103, launch trajectory; 104, flip plate; 105, flip axis; 106, fixed support plate; 107, protective cover plate; 108, closed top plate; 109, protective shell; 110, air pressure controller; 112, communication wires; 113, remote communicator; 114, stable base; 115, electric thruster; 116, fire extinguisher tank; 117, component cavity; 118, stable top plate; 120, positioning module; 121, line support plate; 122, signal wires; 123, injection pipe; 124, air pressure regulator; 125, output duct. DETAILED DESCRIPTION

[0027] The embodiment of the present invention provides an outdoor storm fire extinguisher, such as Figures 1-6 As shown, it includes a fire extinguisher base 101, a counterweight ring 102, a closed top plate 108, a protective shell 109 and a fire extinguishing tank 116. Several counterweight rings 102 are fixedly connected to the four corners of the fire extinguisher base 101. The protective shell 109 is installed on the top of the fire extinguisher base 101. The closed top plate 108 is installed and connected to the top of the protective shell 109. An element cavity 117 is provided in the protective shell 109. The fire extinguishing tank 116 is provided in the element cavity 117. A stable base 114 is installed on the top of the fire extinguisher base 101. The stable base 114 is installed on the top of the fire extinguisher base 101. An electric propeller 115 is installed at the top, and a fire extinguishing tank 116 is installed at the top of the electric propeller 115. The propulsion head of the electric propeller 115 extends into the fire extinguishing tank 116. An output conduit 125 is connected to the top of the fire extinguishing tank 116. One side of the outer end surface of the output conduit 125 is connected to a spray pipe 123. The spray pipe 123 extends outward and passes through one side of the protective shell 109. A protective cover plate 107 is fixed above the outer end surface of the protective shell 109. The protective cover plate 107 is arranged on the outside of the protective shell 109 to provide protection.

[0028] It needs to be further explained that the counterweight ring 102 is annular, and the counterweight ring 102 can pass through the installation of the counterweight block to prevent being blown down in a storm environment.

[0029] It is worth further explaining that when the electric propeller 115 is started, the propeller head can be driven to move upwards, and the fire extinguishing material in the fire extinguishing tank 116 is pushed upwards to play an output effect.

[0030] Further, the bottom of the closed top plate 108 is provided with a stabilizing top plate 118, which is arranged above the element cavity 117 and abuts against the top end of the output conduit 125.

[0031] Further, the upper side wall of the element cavity 117 is provided with a gas pressure regulator 124, which is arranged on the outer end face of the injection pipeline 123 and plays a gas pressure control effect.

[0032] Further, one end of the gas pressure regulator 124 is signal-connected with a signal wire 122, which penetrates through the side wall of the protective shell 109 and extends outward, and the connection position between the signal wire 122 and the protective shell 109 is provided with a wire support plate 121 to play a supporting and stabilizing effect.

[0033] Further, the outer end face of the protective shell 109 and located on the other side end face of the protective sleeve plate 107 is provided with a gas pressure controller 110, and the signal wire 122 is connected with the top end of the gas pressure controller 110.

[0034] Further, the outer end face of the protective shell 109 and located below the gas pressure controller 110 is provided with a remote communicator 113, and the communication wire 112 is connected between the remote communicator 113 and the gas pressure controller 110.

[0035] It needs to be further explained that when the gas pressure controller 110 is started, the internal switch can be controlled, the adjustment signal can be input into the gas pressure regulator 124 through the signal wire 122, and the output gas pressure of the injection pipeline 123 can be controlled through the gas pressure regulator 124.

[0036] It is worth further explaining that the remote communicator 113 adopts a wireless communication module as an internal control device, such as Wi-Fi, LoRa, NB-IoT, Zigbee, etc., which is convenient for signal connection with a remote controller and convenient for remote control.

[0037] Further, two positioning modules 120 are respectively arranged on the bottom side of the closed top plate 108 and the top end of the fire extinguisher base 101, and the gas pressure regulator 124 can only start to work when the two positioning modules 120 are signal-connected.

[0038] Further, the fixed plate 107 is provided with two fixed support plates 106 in front of one side end face, the two fixed support plates 106 are symmetrically arranged, and the two fixed support plates 106 are rotatably provided with a turnover shaft 105, one side end face of the turnover shaft 105 is fixedly connected with a turnover plate 104, and a circular ring-shaped launching trajectory 103 is arranged below the turnover plate 104.

[0039] It is worth further explaining that the fixed plate 107 is provided with a rotating motor, the rotating motor is connected with one side of the turnover shaft 105, and the rotating motor is remotely controlled, and the control signal is connected with the remote communicator 113 to realize remote control.

[0040] It should be noted that the power supply of the electronic elements of the whole device is arranged in the stable top plate 118, and the stable top plate 118 plays a role in installation stability, and the battery arranged in the stable top plate 118 also plays a role in providing power supply for the device.

[0041] It needs to be further explained that when working in storm weather, the rotating motor can be started through remote signal control, at this time, the rotating motor can drive the turnover shaft 105 to rotate, and then drive the turnover plate 104 to overturn, and then drive the launching trajectory 103 to overturn, at this time, a horizontal outward launching trajectory of the fire extinguishing trajectory is set up through the launching trajectory 103, and the formed fire extinguishing trajectory can protect the sprayed fire extinguishing material from being affected by the storm, and can normally spray a distance, and can prevent the fire extinguishing material from being too close to the device when escaping in the storm, causing subsequent other hazards.

[0042] When using the scheme, first, the fire extinguisher base 101 is moved to the working position, and after the installation of various elements is completed, the fire extinguishing tank 116 storing the fire extinguishing material is arranged in the element cavity 117 and connected with the electric propeller 115, at this time, if the fire extinguisher needs to be started in the storm environment, the fire extinguisher base 101 is moved to the fixed point fire extinguishing position, and the counterweight blocks are installed and connected in the counterweight rings 102 on the sides to prevent the device from being blown down by the storm.

[0043] At the same time, the staff starts the rotating motor through remote signal control, at this time, the rotating motor can drive the turnover shaft 105 to rotate, and then drive the turnover plate 104 to overturn, and then drive the launching trajectory 103 to overturn, at this time, a horizontal outward launching trajectory of the fire extinguishing trajectory is set up through the launching trajectory 103, and the formed fire extinguishing trajectory can protect the sprayed fire extinguishing material from being affected by the storm, and can normally spray a distance, and can prevent the fire extinguishing material from being too close to the device when escaping in the storm, causing subsequent other hazards.

[0044] When the remote controller is controlled by the staff and the control signal is transmitted to the remote communicator 113, the control signal is output to the air pressure regulator 124 through the signal wire 122 and controls the air pressure regulator 124 to start. At this time, the electric propeller 115 starts and drives the propulsion head to move upward, and pushes the fire extinguishing material inside the fire extinguishing tank 116 upward to achieve an output effect. At this time, the fire extinguishing material is output to the output duct 125 and output through the injection pipe 123. At the same time, the front air pressure regulator 124 controls the air pressure level in the injection pipe 123, and facilitates the outward injection of the fire extinguishing material, and realizes the fire extinguishing work by setting up the formed fire extinguishing trajectory.

[0045] When the storm environment is particularly severe, if the protective shell 109 is blown and shaken, if the signals of the positioning modules 120 on both sides are not successfully connected, the signal control can directly cut off the switch of the air pressure regulator 124 and organize the fire extinguisher to continue the fire extinguishing work, thereby preventing the shaking protective shell 109 from causing the fire extinguishing material to be scattered and causing harm to the surrounding environment.

[0046] While embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions, and variations may be made to these embodiments without departing from the principles and spirit of the invention, and that the scope of the invention is defined by the appended claims and their equivalents.

Claims

1. An outdoor storm fire extinguisher comprising a fire extinguisher base (101), a counterweight ring (102), a closed top plate (108), a protective housing (109) and a fire extinguishing tank (116), characterized in that: Several counterweight rings (102) are fixedly connected to the four corners of the fire extinguisher base (101), the protective shell (109) is installed on the top of the fire extinguisher base (101), the closed top plate (108) is installed and connected to the top of the protective shell (109), the protective shell (109) is provided with an element cavity (117), the fire extinguishing tank (116) is provided in the element cavity (117), the top of the fire extinguisher base (101) is provided with a stable base (114), the top of the stable base (114) is provided with an electric propeller (115), The fire extinguishing tank (116) is installed on the top of the electric propeller (115), and the propulsion head of the electric propeller (115) extends into the fire extinguishing tank (116). The top of the fire extinguishing tank (116) is connected to an output conduit (125), and one side of the outer end surface of the output conduit (125) is connected to an injection pipe (123). The injection pipe (123) extends outward and passes through one side of the protective shell (109). A protective cover plate (107) is fixed above the outer end surface of the protective shell (109), and the protective cover plate (107) is arranged on the outside of the protective shell (109); An air pressure regulator (124) is installed above one side wall of the element cavity (117), and the air pressure regulator (124) is arranged on the outer end surface of the injection pipe (123); One end of the air pressure regulator (124) is connected to a signal wire (122), the signal wire (122) passes through a side wall of the protective shell (109) and extends outward, and a circuit support plate (121) is provided at the connection position between the signal wire (122) and the protective shell (109); Two positioning modules (120) are respectively installed on one side of the bottom of the closed top plate (108) and one side of the top of the fire extinguisher base (101). The air pressure regulator (124) can only start working when the signals of the two positioning modules (120) are connected. Two fixed support plates (106) are fixedly provided in front of one end face of the protective cover plate (107), and the fixed support plates (106) on both sides are symmetrically arranged. A turning shaft (105) is rotatably provided between the fixed support plates (106) on both sides, and a turning plate (104) is fixedly connected to one end face of the turning shaft (105), and a launching trajectory (103) is installed below the turning plate (104).

2. An outdoor storm fire extinguisher according to claim 1, characterized in that: A stabilizing top plate (118) is installed at the bottom of the closed top plate (108). The stabilizing top plate (118) is arranged above the element cavity (117). The stabilizing top plate (118) supports the top end of the output conduit (125).

3. An outdoor storm fire extinguisher according to claim 1, characterized in that: An air pressure controller (110) is installed on the outer end surface of the protective shell (109) and on the other end surface of the protective cover plate (107), and the signal wire (122) is installed and connected to the top end of the air pressure controller (110).

4. An outdoor storm fire extinguisher according to claim 3, characterized in that: A remote communicator (113) is installed on the outer end surface of the protective housing (109) and below the air pressure controller (110), and a communication wire (112) is connected between the remote communicator (113) and the air pressure controller (110).

Citation Information

Patent Citations

  • Vehicle-mounted fire extinguisher, in-vehicle vehicle-mounted fire extinguisher system and vehicle-mounted fire extinguisher management system

    CN113546351A

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    CN205759271U