Fire-fighting emergency lighting lamp

By designing the cross structure of protective frame, steel frame and rubber hose in fire emergency lighting, the problem of uneven pressure caused by the lights being vulnerable to damage during fire and battery explosion is solved, and higher stability and safety are achieved.

CN222895040UActive Publication Date: 2025-05-23SHENZHEN XIEYING SECURITY SERVICE CO LTD
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Patent Information

Application Number
CN202421998608.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-16
Publication Date
2025-05-23
Estimated Expiration
2034-08-16

AI Technical Summary

Technical Problem

Existing fire emergency lighting lights are prone to burn objects above the ceiling during a fire, causing damage to the lighting lights to fall. In the case of heat explosion of the battery, it may cause uneven internal pressure, causing potential harm.

Method used

A fire emergency lighting lamp is designed, adopting a structure of a base, a mount and a lamp body. The base edge is connected to the protective frame, and the surface of the protective frame is equipped with a steel frame and a rubber hose. The steel frame and the rubber hose are arranged in an intersecting shape to disperse pressure, and a plug-in interface is set on the surface of the base to facilitate connection of external power.

Benefits of technology

By dispersing pressure, the stability and deformation resistance of the lighting lamp are improved, the stress caused by temperature changes is reduced, and the lighting lamp can operate normally in the event of a fire is ensured, avoiding potential hazards.

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Abstract

The utility model relates to a fire-fighting emergency lighting lamp in the technical field of fire fighting, which comprises a base, a mounting seat and a lamp body, the surface of a protective frame is respectively connected with a steel frame and a rubber hose, the steel frame and the rubber hose are arranged in a cross shape, the surface of the base is connected with a connecting hole for placing an external photovoltaic panel, and the lamp body is connected with the mounting seat. A circuit board is mounted in the base, the circuit board is electrically connected with a plugging port, and the plugging port extends to the surface of the base; the design that the photovoltaic panel with the connecting wire and the illuminating lamp are separately mounted is adopted, so that the illuminating lamp can be conveniently mounted in the deep position of the building far away from a solar light source; the steel frame and the rubber hose are designed to be in an arc arch shape so that pressure can be better dispersed, the stability and deformation resistance of the whole structure can be improved, the arch design of the rubber hose increases the flexibility of the rubber hose, the rubber hose can better adapt to thermal expansion and cold contraction of the base, stress caused by temperature changes is reduced, and the service life of the base is prolonged. And the influence of the acting force on the fire-fighting emergency lighting lamp body is reduced.
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Description

Technical Field

[0001] The utility model relates to the technical field of fire fighting, in particular to a fire fighting emergency lighting lamp. Background Art

[0002] Fire emergency lighting is a fire emergency lighting fixture that provides lighting for personnel evacuation and firefighting operations. Emergency lighting is usually powered by an external power supply and automatically switches to battery power supply when power is off, so as to facilitate the role of emergency lighting.

[0003] The existing Chinese patent with reference announcement number CN221444036U discloses an oil depot fire emergency lighting lamp, with rollers installed on both sides of the bottom of the explosion-proof power base, a support leg welded to the front of the explosion-proof power base, and a foot pedal welded to the top of the front support leg of the explosion-proof power base; the top of the foot pedal is vertically welded with a bottom lighting pole, and the top of the bottom lighting pole is welded with a retractable extension pole, and multiple groups of explosion-proof lighting lamps are installed on the lamp stand; the wires of the explosion-proof lighting lamp are inserted into the extension pole and the bottom lighting pole, and the wires are connected to the explosion-proof power supply installed on the explosion-proof power base via an explosion-proof switch. When the oil pump room is on fire at night, lighting operations can be carried out quickly to reduce the impact of obstructed vision at night.

[0004] Although this patent has the effect of quickly performing lighting operations and reducing the impact of obstructed vision at night, it does not have the relevant structure to disperse the pressure. When a fire occurs, it is easy to burn objects on the ceiling above, causing the objects to fall and damage the lighting lamp. Since the above-mentioned lighting lamp does not have a structural setting for dispersing pressure, it may cause local damage when impacted by an object. In the case of thermal explosion of the battery, since the stress at the damaged part is relatively weak, the internal pressure may be unevenly sprayed toward the damaged part, causing the lighting lamp to become a potential source of harm. For this reason, the inventor has proposed a fire emergency lighting lamp to solve the above-mentioned technical problem of dispersing pressure when the lighting lamp is subjected to external pressure. Utility Model Content

[0005] The utility model aims to overcome the above-mentioned shortcomings and provide a technical solution to the above-mentioned problems.

[0006] A fire emergency lighting lamp comprises a base, a mounting base and a lamp body, wherein the mounting base is mounted on the surface of the base through a connecting frame, one end of the lamp body abuts against the mounting base, and a detachable structure is provided between the lamp body and the mounting base, a protective frame for reducing impact force is connected to the edge of the base, a steel frame and a rubber hose are respectively connected to the surface of the protective frame, the steel frame and the rubber hose are arranged in a cross shape, a connecting hole for arranging an external photovoltaic panel is connected to the surface of the base, a circuit board is installed inside the base, the circuit board is electrically connected to a plug interface, and the plug interface extends to the surface of the base;

[0007] The plug interface extends to the surface of the base to facilitate users to connect to an external power source, thereby improving the flexibility and convenience of the equipment. When installing the photovoltaic panel, a connecting screw or a screw matching the connecting hole can be installed at the bottom of the photovoltaic panel to facilitate the connection between the photovoltaic panel and the base. The photovoltaic panel is an installation model with a connecting wire. During the energy storage process of the photovoltaic panel, the connecting wire at one end of the photovoltaic panel can be connected to the plug interface to facilitate the photovoltaic panel to convert light energy into electrical energy for charging the lighting lamp. A battery is installed inside the base. In a daytime environment with light, the photovoltaic panel assists the battery in energy storage and charging. When a fire burns out the circuit and emergency lighting is required, the battery inside the base can be used to power the lamp body to complete the lighting process. The design of separately installing the photovoltaic panel with a connecting wire and the lighting lamp facilitates the installation of the lighting lamp deep in a building away from the sunlight source. When a fire burns out the circuit, the lighting lamp can still operate normally.

[0008] Furthermore, the steel frame and the rubber hose are both in the shape of an arc arch, the installation direction of the steel frame is located in the transverse direction of the base, and the installation direction of the rubber hose is located in the longitudinal direction of the base; the arc arch design can better disperse the pressure, improve the stability and deformation resistance of the overall structure, and the arch design of the rubber hose increases its flexibility, which can better adapt to the thermal expansion and contraction of the base and reduce the stress caused by temperature changes, while the steel frame provides rigid balanced stability. When the steel frame and the rubber hose are compressed by external forces, the steel frame plays a role of rigid protection, reducing the influence of the intensity of the external force on the fire emergency lighting body, while the rubber hose plays a role of buffering and dispersing the force, further reducing the influence of the steel frame and the external force on the fire emergency lighting body.

[0009] Furthermore, the base is in the shape of an arc runway, the protective frame has the same curvature as the outer side of the base, and the surface of the base is provided with a plurality of mounting holes for connecting external screws. The mounting holes are arranged in a rectangular shape and penetrate the surface of the protective frame and the base in sequence. This design can ensure a good stability effect between the base and the protective frame, while facilitating installation and disassembly. The rectangular arrangement of the mounting holes makes the installation position of the screws more flexible, and the position of the screws can be adjusted as needed to meet different installation requirements. In addition, the mounting holes penetrate the surface of the protective frame and the base in sequence, and the force of tightening the screws can be used to improve the stability and load-bearing capacity of the structure, thereby ensuring the safety and reliability of the equipment during use.

[0010] Furthermore, a magnetic sheet is provided at the bottom of the base for increasing the adsorption force of the base. The highest point of the magnetic sheet is flush with the bottom surface of the base. The magnetic sheet is rectangular and is installed at both ends of the base in a symmetrical structure. The magnetic sheets are symmetrically installed at both ends of the base. This design can ensure that the base can form a certain stability and balance when adsorbed to the metal surface. Since the highest point of the magnetic sheet is flush with the bottom surface of the base, this helps the base to fit closely with the metal surface during adsorption, thereby increasing the adsorption force. The rectangular design makes the magnetic sheets evenly distributed at both ends of the base, further enhancing the overall adsorption effect of the base. The use of this distribution design not only improves the adsorption performance of the base, but also ensures safety and reliability during use.

[0011] Furthermore, a lampshade is connected to the surface of the base, and the lampshade is located directly below the steel frame and the rubber hose. A sealing ring is provided at the edge of the lampshade close to the surface of the base, and the surface of the sealing ring abuts the surface of the protective frame; the abutment between the surface of the sealing ring and the surface of the protective frame can effectively prevent foreign matter such as water and dust from entering the interior of the lampshade, thereby protecting the lighting equipment in the lampshade from damage. In addition, the sealing design can also improve the overall waterproof performance of the lamp, ensuring that the lamp can work normally in a humid or harsh environment, and at the same time prevent smoke from entering the interior of the lampshade through the sealing ring in the event of a fire. In addition, the sealing ring can also play a certain shock-absorbing role, reduce damage caused by vibration or impact, and extend the service life of the lamp.

[0012] Furthermore, the lamp body is composed of one of a CFL bulb or a halogen bulb; CFL bulbs are compact fluorescent lamps with high energy efficiency, long service life, and relatively low heat generation, which makes them very advantageous in terms of energy saving and reducing maintenance costs; while halogen bulbs are known for their high brightness and excellent color rendering capabilities, and are suitable for occasions requiring high-quality light sources. Choosing CFL bulbs can reduce energy consumption and lower electricity bills, while halogen bulbs are suitable for application scenarios with special requirements for light quality. During a fire, a large amount of thick smoke may be generated, resulting in unclear light source signals. When the smoke concentration is low, the light source signal emitted by the CFL bulb can effectively avoid the occurrence of bulb short circuits. When the smoke concentration is high, the light source signal emitted by the halogen bulb can effectively avoid the occurrence of unclear light source signals.

[0013] Compared with the prior art, the utility model has the following beneficial effects: the plug interface is extended to the surface of the base to facilitate users to connect to an external power source, and the design improves the flexibility and convenience of the device, so that when installing the photovoltaic panel, a screw or a screw matching the connection hole can be installed at the bottom of the photovoltaic panel to facilitate the connection between the photovoltaic panel and the base. During the process of storing energy in the photovoltaic panel, the connection line at one end of the photovoltaic panel can be connected to the plug interface to facilitate the photovoltaic panel to convert light energy into electrical energy for charging the lighting lamp. When the fire burns out the circuit and emergency lighting is required, the battery inside the base can be used to power the lamp body to complete the lighting process.

[0014] The photovoltaic panels with connecting wires are installed separately from the lighting lamps, which makes it easy to install the lighting lamps deep in the building away from the sunlight source. When the fire burns out the circuit, the lighting lamps can still operate normally. At the same time, the separate installation design allows for repairs by replacing the local structure when a component is damaged, rather than replacing the entire component, which reduces maintenance costs.

[0015] The steel frame and the rubber hose are both in the shape of an arc. The installation direction of the steel frame is located in the horizontal direction of the base, and the installation direction of the rubber hose is located in the longitudinal direction of the base. This design can better disperse the pressure, improve the stability and anti-deformation ability of the overall structure, and the arched design of the rubber hose increases its flexibility, which can better adapt to the thermal expansion and contraction of the base and reduce the stress caused by temperature changes.

[0016] The steel frame provides rigid balanced stability. When the steel frame and the rubber hose are subjected to external force, the steel frame plays a role of rigid protection, reducing the impact of the strength of the external force on the fire emergency lighting body, while the rubber hose plays a role of buffering and dispersing the force, further reducing the impact of the steel frame and the external force on the fire emergency lighting body. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Figure 1 It is a stereogram of a fire emergency lighting lamp;

[0018] Figure 2 It is a diagram of the internal structure of a fire emergency lighting;

[0019] Figure 3 It is another internal structure diagram of a fire emergency lighting lamp;

[0020] Figure 4 This is another internal structure diagram of a fire emergency lighting lamp;

[0021] Figure 5 It is a diagram of the internal structure of a fire emergency lighting lamp from the main viewing angle;

[0022] Figure 6 It is a diagram of the internal structure of a fire emergency lighting lamp from a rear-view angle;

[0023] In the figure: base-1, mounting base-2, lamp body-3, connecting frame-4, protective frame-5, steel frame-6, rubber hose-7, connecting hole-8, circuit board-9, plug interface-10, mounting hole-11, magnetic sheet-12, lampshade-13, sealing ring-14. DETAILED DESCRIPTION

[0024] The present invention is further described in detail below in conjunction with the accompanying drawings and specific implementation methods.

[0025] For this example, please refer to Figure 1-Figure 6 A fire emergency lighting lamp specifically implemented therein comprises a base 1, a mounting base 2 and a lamp body 3, wherein the mounting base 2 is mounted on the surface of the base 1 through a connecting frame 4, one end of the lamp body 3 abuts against the mounting base 2, and a detachable structure is provided between the lamp body 3 and the mounting base 2, a protective frame 5 for reducing impact force is connected to the edge of the base 1, a steel frame 6 and a rubber hose 7 are respectively connected to the surface of the protective frame 5, the steel frame 6 and the rubber hose 7 are arranged in a cross shape, a connecting hole 8 for placing an external photovoltaic panel is connected to the surface of the base 1, a circuit board 9 is installed inside the base 1, the circuit board 9 is electrically connected to a plug interface 10, and the plug interface 10 extends to the surface of the base 1;

[0026] The plug port 10 extends to the surface of the base 1, which is convenient for users to connect to an external power source, thereby improving the flexibility and convenience of the device. When installing the photovoltaic panel, a connecting screw or a screw matching the connecting hole 8 can be installed at the bottom of the photovoltaic panel to facilitate the connection between the photovoltaic panel and the base 1. The photovoltaic panel is an installation model with a connecting wire. During the energy storage process of the photovoltaic panel, the connecting wire at one end of the photovoltaic panel can be connected to the plug port 10, so that the photovoltaic panel can convert light energy into electrical energy for charging the lighting lamp. A battery is installed inside the base 1. In a daytime environment with light, the photovoltaic panel assists the battery in energy storage and charging. When a fire burns out the circuit and emergency lighting is required, the battery inside the base 1 can be used to power the lamp body 3 to complete the lighting process. The design of separately installing the photovoltaic panel with a connecting wire and the lighting lamp facilitates the installation of the lighting lamp deep in a building away from the sunlight source. When a fire burns out the circuit, the lighting lamp can still operate normally.

[0027] The steel frame 6 and the rubber hose 7 are both in the shape of an arc. The installation direction of the steel frame 6 is located in the transverse direction of the base 1, and the installation direction of the rubber hose 7 is located in the longitudinal direction of the base 1. The arc-shaped design can better disperse the pressure and improve the stability and deformation resistance of the overall structure. The arch design of the rubber hose 7 increases its flexibility and can better adapt to the thermal expansion and contraction of the base 1 and reduce the stress caused by temperature changes. The steel frame 6 provides rigid balanced stability. When the steel frame 6 and the rubber hose 7 are compressed by external forces, the steel frame 6 plays a role of rigid protection, reducing the influence of the intensity of the external force on the fire emergency lighting body, and the rubber hose 7 plays a role of buffering and dispersing the force, further reducing the influence of the steel frame 6 and the external force on the fire emergency lighting body.

[0028] The base 1 is in the shape of an arc runway, and the curvature of the protective frame 5 is consistent with that of the outer side of the base 1. The surface of the base 1 is provided with a plurality of mounting holes 11 for connecting external screws. The mounting holes 11 are arranged in a rectangular shape and pass through the surfaces of the protective frame 5 and the base 1 in sequence. This design can ensure a good stability effect between the base 1 and the protective frame 5, and is easy to install and disassemble. The rectangular arrangement of the mounting holes 11 makes the installation position of the screws more flexible, and the position of the screws can be adjusted as needed to meet different installation requirements. In addition, the mounting holes 11 pass through the surfaces of the protective frame 5 and the base 1 in sequence, and the force of the screw tightening can be used to improve the stability and load-bearing capacity of the structure, thereby ensuring the safety and reliability of the equipment during use.

[0029] A magnetic sheet 12 for increasing the adsorption force of the base 1 is provided at the bottom of the base 1. The highest point of the magnetic sheet 12 is flush with the bottom surface of the base 1. The magnetic sheet 12 is rectangular. The magnetic sheet 12 is installed at both ends of the base 1 and has a symmetrical structure. The magnetic sheet 12 is symmetrically installed at both ends of the base 1. This design can ensure that the base 1 can form a certain stability and balance when adsorbed to the metal surface. Since the highest point of the magnetic sheet 12 is flush with the bottom surface of the base 1, this helps the base 1 to fit closely with the metal surface during adsorption, thereby increasing the adsorption force. The rectangular design makes the magnetic sheet 12 evenly distributed at both ends of the base, further enhancing the overall adsorption effect of the base 1. The use of this distribution design not only improves the adsorption performance of the base 1, but also ensures safety and reliability during use.

[0030] A lampshade 13 is connected to the surface of the base 1, and the lampshade 13 is located directly below the steel frame 6 and the rubber hose 7. A sealing ring 14 is provided on the edge of the lampshade 13 close to the surface of the base 1, and the surface of the sealing ring 14 abuts against the surface of the protective frame 5; the abutment between the surface of the sealing ring 14 and the surface of the protective frame 5 can effectively prevent foreign matter such as water and dust from entering the interior of the lampshade 13, thereby protecting the lighting equipment in the lampshade 13 from damage. In addition, the sealing design can also improve the overall waterproof performance of the lamp, ensuring that the lamp can work normally in a humid or harsh environment, and at the same time prevent smoke from entering the interior of the lampshade 13 through the sealing ring 14 in the event of a fire. In addition, the sealing ring 14 can also play a certain shock-absorbing role, reduce damage caused by vibration or impact, and extend the service life of the lamp.

[0031] The lamp body 3 is composed of one of a CFL bulb or a halogen bulb; CFL bulbs are compact fluorescent lamps with high energy efficiency, long service life, and relatively low heat generation, which makes them very advantageous in terms of energy saving and reducing maintenance costs; while halogen bulbs are known for their high brightness and excellent color rendering capabilities, and are suitable for occasions that require high-quality light sources. Choosing CFL bulbs can reduce energy consumption and lower electricity bills, while halogen bulbs are suitable for application scenarios with special requirements for light quality. During a fire, a large amount of thick smoke may be generated, resulting in unclear light source signals. When the smoke concentration is low, the light source signal emitted by the CFL bulb can effectively avoid the occurrence of a short circuit in the bulb. When the smoke concentration is high, the light source signal emitted by the halogen bulb can effectively avoid the occurrence of unclear light source signals.

[0032] The key points of the design of the utility model are: the plug interface 10 is extended to the surface of the base 1 to facilitate the user to connect the external power supply, and the design improves the flexibility and convenience of the device. When installing the photovoltaic panel, a screw or a screw matching with the connection hole 8 can be installed at the bottom of the photovoltaic panel to facilitate the connection between the photovoltaic panel and the base 1. During the process of storing energy in the photovoltaic panel, the connection line at one end of the photovoltaic panel can be connected to the plug interface 10, so that the photovoltaic panel can convert light energy into electrical energy for charging the lighting lamp. When the fire burns out the circuit and requires emergency lighting, the battery inside the base 1 can be used to supply energy to the lamp body 3 to complete the lighting process.

[0033] The photovoltaic panels with connecting wires are installed separately from the lighting lamps, which makes it easy to install the lighting lamps deep in the building away from the sunlight source. When the fire burns the circuit, the lighting lamps can still operate normally.

[0034] The steel frame 6 and the rubber hose 7 are both in an arc shape. The installation direction of the steel frame 6 is located in the transverse direction of the base 1, and the installation direction of the rubber hose 7 is located in the longitudinal direction of the base 1. The design can better disperse the pressure, improve the stability and anti-deformation ability of the overall structure, and the arched design of the rubber hose 7 increases its flexibility, which can better adapt to the thermal expansion and contraction of the base 1 and reduce the stress caused by temperature changes.

[0035] The steel frame 6 provides rigid balance and stability. When the steel frame 6 and the rubber hose 7 are subjected to external force, the steel frame 6 plays a role of rigid protection, reducing the influence of the strength of the external force on the fire emergency lighting body, while the rubber hose 7 plays a role of buffering and dispersing the force, further reducing the influence of the steel frame 6 and the external force on the fire emergency lighting body.

[0036] The above contents are further detailed descriptions of the present invention in combination with specific preferred embodiments, and the specific implementation of the present invention cannot be considered to be limited to these descriptions. For ordinary technicians in the technical field to which the present invention belongs, several simple deductions or substitutions can be made without departing from the concept of the present invention, which should be regarded as the protection scope of the present invention.

Claims

1. A fire emergency lighting lamp, comprising a base, a mounting base and a lamp body, characterized in that: The mounting base is installed on the surface of the base through a connecting frame, one end of the lamp body is abutted against the mounting base, and a detachable structure is provided between the lamp body and the mounting base. A protective frame for reducing impact force is connected to the edge of the base, and a steel frame and a rubber hose are respectively connected to the surface of the protective frame. The steel frame and the rubber hose are arranged in a cross shape. The surface of the base is connected with a connecting hole for placing an external photovoltaic panel, and a circuit board is installed inside the base. The circuit board is electrically connected to a plug interface, and the plug interface extends to the surface of the base.

2. A fire emergency lighting lamp according to claim 1, characterized in that: The steel frame and the rubber hose are both in an arc shape; the installation direction of the steel frame is located in the transverse direction of the base, and the installation direction of the rubber hose is located in the longitudinal direction of the base.

3. A fire emergency lighting lamp according to claim 2, characterized in that: The base is in the shape of an arc runway, the protective frame has the same curvature as the outer side of the base, and the surface of the base is provided with a plurality of mounting holes for connecting external screws. The mounting holes are arranged in a rectangular shape and penetrate the surface of the protective frame and the base in sequence.

4. A fire emergency lighting lamp according to any one of claims 1 to 3, characterized in that: The bottom of the base is provided with a magnetic sheet for increasing the adsorption force of the base, the highest point of the magnetic sheet is flush with the bottom surface of the base, the magnetic sheet is rectangular, and the magnetic sheet is installed at both ends of the base in a symmetrical structure.

5. A fire emergency lighting lamp according to any one of claims 1 to 3, characterized in that: The surface of the base is connected with a lampshade, which is located directly below the steel frame and the rubber hose. A sealing ring is provided at the edge of the lampshade close to the surface of the base, and the surface of the sealing ring abuts against the surface of the protective frame.

6. A fire emergency lighting lamp according to any one of claims 1 to 3, characterized in that: The lamp body is composed of a CFL bulb or a halogen bulb.

Citation Information

Patent Citations

  • Oil depot fire emergency lighting lamp

    CN221444036U