High-efficiency energy-saving LED three-proofing lamp structure

By designing the housing and linkage mechanism of the LED tri-proof light structure, the lifespan problem of LED tri-proof lights in extreme environments has been solved, achieving protection and multi-functional use, providing emergency evacuation guidance, and enhancing installation adaptability and energy-saving effect.

CN119412658BActive Publication Date: 2025-11-11SHENZHEN IRIS OPTOELECTRONICS CO LTD
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Patent Information

Application Number
CN202411668933.8
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-11-21
Publication Date
2025-11-11
Estimated Expiration
2044-11-21

AI Technical Summary

Technical Problem

Existing LED tri-proof lights have a reduced lifespan in extreme or harsh environments, the transparent cover ages and discolors, and their functions are limited, failing to meet diverse life needs.

Method used

An LED tri-proof light structure was designed, which includes a housing, a linkage mechanism, and a cylinder. The housing protects the LED tri-proof light, the linkage mechanism enables the LED tri-proof light to extend and retract, and it can be converted into an evacuation indicator in an emergency, reducing the need for additional equipment installation.

Benefits of technology

It improves the lifespan of LED tri-proof lights, prevents dust and sunlight damage, saves energy and reduces costs, provides evacuation guidance in emergency situations, and enhances installation adaptability.

✦ Generated by Eureka AI based on patent content.

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Abstract

This invention discloses a high-efficiency and energy-saving LED tri-proof lamp structure, including a housing and multiple LED tri-proof lamps. The housing has inlets and outlets at both ends, and the LED tri-proof lamps are all housed inside the housing. A light-transmitting opening is located in the middle of the housing. Inside the housing, in the center of the LED tri-proof lamps, is a linkage mechanism that pushes the LED tri-proof lamps outward and blocks the light-transmitting opening. A housing cover is installed on the housing, with an arched center forming an arc-shaped tube. Inside the arc-shaped tube is a cylinder that drives the linkage mechanism to rise and fall. A fixing component is installed outside the arc-shaped tube. This invention has a simple structure. The housing and housing cover can cover the LED tri-proof lamps for protection. The linkage mechanism can change the usage state of the LED tri-proof lamps, increasing versatility. The fixing component can fix the device to different walls and positions, increasing installation adaptability.
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Description

Technical Field

[0001] This invention relates to the field of tri-proof lamp technology, specifically to a high-efficiency and energy-saving LED tri-proof lamp structure. Background Technology

[0002] LED tri-proof lights are special LED lighting lamps made of special protective materials, which have dustproof, waterproof and explosion-proof (corrosion-proof) functions. They are widely used in various areas and places that require moisture-proof, dustproof and corrosion-proof protection, such as bathrooms, saunas, hospitals, canteens, shopping malls, military barracks, bakeries, various material warehouses, assembly workshops and production workshops.

[0003] However, current LED tri-proof lights have a simple structure. Whether in use or not, they are always exposed to the external environment. Long-term exposure to the external environment, especially under extreme or harsh conditions, reduces the lifespan of LED tri-proof lights and causes the transparent cover to age and discolor, affecting light transmission. They also lack other features, and their help to human life is limited to lighting. With the increasing demands of modern life, more functions are needed to assist us. Summary of the Invention

[0004] The technical problem to be solved by the present invention is to provide a high-efficiency and energy-saving LED tri-proof lamp structure, which can protect the LED tri-proof lamp through the shell, and the LED tri-proof lamp has the functions of extending outward and closing inward, so as to change the use function of the LED tri-proof lamp and solve the problems mentioned in the background art.

[0005] This invention is achieved through the following technical solution: a high-efficiency and energy-saving LED tri-proof lamp structure, including a housing and multiple LED tri-proof lamps. Both ends of the housing are provided with inlets and outlets. The LED tri-proof lamps are all set inside the housing, and the opposite end faces of the LED tri-proof lamps are inserted into the inlets and outlets, which are sealed. A light-transmitting opening is provided in the middle of the housing. Inside the housing, in the middle of the LED tri-proof lamps, there is a linkage mechanism that pushes out the LED tri-proof lamps and blocks the light-transmitting opening. A housing cover is installed on the housing. The middle of the housing cover is arched to form an arc-shaped tube. A cylinder that drives the linkage mechanism to lift and lower is installed inside the arc-shaped tube. A fixing component is installed outside the arc-shaped tube.

[0006] As a preferred technical solution, the linkage mechanism includes a lifting plate and a rotating plate. A strip-shaped opening is provided on one side of the housing. The lifting plate is located inside the housing. One end of the lifting plate extends through the strip-shaped opening to the outside and is fitted with a fixing plate. The piston rod of the cylinder is installed on the inner side of the fixing plate. Multiple rotating plates are provided, and each is installed on the other end of the lifting plate through a hinge. The light-transmitting opening is sealed by the lifting plate and the multiple rotating plates.

[0007] As a preferred technical solution, a first guide portion is provided on the opposite side of the rotating plate, and a second guide portion is provided on the opposite side of the rotating plate. An arc-shaped guide block is installed on the inner side of the shell at the middle of the two second guide portions.

[0008] As a preferred technical solution, grooves are provided on both sides of the inner surface of the housing, and slide bars are installed at both ends of the LED tri-proof light. The slide bars are slidably set in the grooves, and a fixing bar is installed in the middle of the grooves. Compression springs are installed at both ends of the fixing bar, and the other end of the compression spring is installed on the end face of the slide bar.

[0009] As a preferred technical solution, both the slide groove and the slide bar have trapezoidal cross-sections, the slide bar has a groove on its bottom surface, and limit blocks are installed at both ends of the slide groove opening.

[0010] As a preferred technical solution, the fixing component includes multiple fixing plates and connecting blocks. The fixing plates are inclinedly arranged on the outside of the arc-shaped tube. The arc-shaped tube is provided with multiple arc-shaped connecting grooves. The connecting blocks are all slidably arranged in the connecting grooves. The outside of the connecting blocks are all installed on the corresponding fixing plates. Multiple positioning posts are installed on the inner side of the fixing plates. The inside of each positioning post is provided with screw holes that penetrate the positioning post and the fixing plate.

[0011] As a preferred technical solution, the light-transmitting opening is arranged in an arrow-shaped structure.

[0012] As a preferred technical solution, the cylinder is installed at a height higher than the LED tri-proof light housing.

[0013] As a preferred technical solution, one end of the LED tri-proof light forms a third guide section with an arc-shaped structure.

[0014] As a preferred technical solution, the light-transmitting cover on the LED tri-proof light is retracted into the outer shell of the LED tri-proof light.

[0015] The beneficial effects of this invention are:

[0016] 1. The housing and cover can cover the LED tri-proof light to protect it and block external dust and sunlight, thus ensuring the lifespan of the LED tri-proof light;

[0017] 2. The cylinder drives the lifting plate and rotating plate to descend. The compression between the second guide section and the guide block on the rotating plate causes the rotating plate to open outward and push the LED tri-proof light outward to provide illumination. After the lifting plate and rotating plate rise, they can be removed from the housing and the return of the compression spring can pull the LED tri-proof light inward, so that the LED tri-proof light is close to the light-transmitting hole. The light generated by the LED tri-proof light will form an emergency indicator arrow after passing through the light-transmitting hole, thus converting it into an evacuation indicator light. There is no need to install a separate evacuation indicator light, which can save energy and reduce costs.

[0018] 3. The device can be fixed to a parallel wall or a corner of a wall by means of a rotatable fixing plate, which increases the adaptability of the installation. Attached Figure Description

[0019] To more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0020] Figure 1 This is a schematic diagram of the overall structure of the present invention.

[0021] Figure 2 This is a bottom view of the present invention;

[0022] Figure 3 This is a schematic diagram of the structure of the present invention after removing the shell cover and fixing components;

[0023] Figure 4 This is a schematic diagram of the structure of the guide block, lifting plate, and rotating plate in this invention;

[0024] Figure 5 This is a schematic diagram of the installation structure of the slider in this invention;

[0025] Figure 6 This is a schematic diagram of the structure of the present invention after the shell is removed;

[0026] Figure 7 This is a schematic diagram of the structure of the present invention after the LED tri-proof lamp has been moved.

[0027] The components are as follows: 1. Shell; 2. Shell cover; 3. LED tri-proof light; 4. Arc tube; 5. Connecting groove; 6. Connecting block; 7. Fixing plate; 8. Positioning post; 9. Cylinder; 10. Fixing plate; 12. Sliding bar; 13. Limiting block; 14. Light-transmitting opening; 15. Lifting plate; 16. Rotating plate; 17. Compression spring; 18. Fixing strip; 19. Third guide section; 20. First guide section; 21. Second guide section; 22. Guide block; 23. Inlet and outlet; 24. Sliding bar; 25. Groove. Detailed Implementation

[0028] Embodiments of the present invention are described in detail below. Examples of these embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below with reference to the accompanying drawings are exemplary and are only used to explain the present invention, and should not be construed as limiting the present invention.

[0029] All features disclosed in this specification, or steps in all methods or processes disclosed herein, may be combined in any way, except for mutually exclusive features and / or steps.

[0030] Any feature disclosed in this specification (including any appended claims, abstract, and drawings) may be replaced by other equivalent or similar features, unless specifically stated otherwise. That is, unless specifically stated otherwise, each feature is merely one example of a series of equivalent or similar features.

[0031] like Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figure 5 and Figure 6 As shown, the present invention provides a high-efficiency and energy-saving LED tri-proof lamp structure, including a housing 1 and multiple LED tri-proof lamps 3. Both ends of the housing 1 are provided with inlets and outlets 23. The LED tri-proof lamps 3 are all disposed inside the housing 1. The opposite end faces of the LED tri-proof lamps 3 are inserted into the inlets and outlets 23 and the inlets and outlets 23 are sealed. A light-transmitting opening 14 is provided in the middle of the housing 1. Inside the housing 1, in the middle of the LED tri-proof lamps 3, there is a linkage mechanism that pushes out the LED tri-proof lamps 3 and blocks the light-transmitting opening 14. A housing cover 2 is installed on the housing 1. The middle of the housing cover 2 is arched to form an arc-shaped tube 4. A cylinder 9 that drives the linkage mechanism to lift and lower is installed inside the arc-shaped tube 4. A fixing component is installed outside the arc-shaped tube 4.

[0032] Each of the LED tri-proof lights has a built-in battery. External power first enters the battery, which then powers the LED tri-proof lights and the cylinder. Therefore, the LED tri-proof lights and cylinder can continue to be used even after a power outage.

[0033] In this embodiment, the linkage mechanism includes a lifting plate 15 and a rotating plate. A strip-shaped opening is provided on one side of the housing 1. The lifting plate 15 is disposed inside the housing 1. One end of the lifting plate 15 extends through the strip-shaped opening to the outside and is mounted with a fixing plate 10. The piston rod of the cylinder 9 is mounted on the inner side of the fixing plate 10. Multiple rotating plates are provided and are all mounted on the other end of the lifting plate 15 through hinges. The light-transmitting opening 14 is blocked and sealed by the lifting plate 15 and the multiple rotating plates.

[0034] In this embodiment, a first guide portion 20 is provided on the opposite side of the rotating plate, and a second guide portion 21 is provided on the opposite side of the rotating plate. An arc-shaped guide block 22 is installed on the inner side of the housing 1 at the middle of the two second guide portions 21.

[0035] In this embodiment, sliding grooves are provided on both sides of the inner side of the housing 1. Sliding strips 24 are installed at both ends of the LED tri-proof light 3. The sliding strips 24 are slidably disposed in the sliding grooves. A fixing strip 18 is installed in the middle of the sliding grooves. Compression springs 17 are installed at both ends of the fixing strips 18. The other end of the compression springs 17 is installed on the end face of the sliding strips 24.

[0036] In this embodiment, the cross-sections of the slide groove and the slide bar 24 are both trapezoidal, the bottom surface of the slide bar 24 is provided with a groove 25, and the two ends of the slide groove opening are both equipped with limit blocks 13.

[0037] In this system, after the LED tri-proof light moves outward, the slider can move outward along the slide groove. As the slider moves, it eventually comes into contact with the limit block, thereby limiting the distance the LED tri-proof light moves and preventing it from falling out of the inlet and outlet.

[0038] In this embodiment, the fixing component includes multiple fixing plates 10 and connecting blocks 6. The fixing plates 10 are inclinedly disposed on the outside of the arc-shaped tube 4. The arc-shaped tube 4 is provided with multiple arc-shaped connecting grooves 5. The connecting blocks 6 are all slidably disposed in the connecting grooves 5. The outer sides of the connecting blocks 6 are all installed on the corresponding fixing plates 10. Multiple positioning posts 8 are installed on the inner side of the fixing plates 10. The inside of the positioning posts 8 is provided with screw holes that penetrate the positioning posts 8 and the fixing plates 10.

[0039] The connecting groove and the connecting block are both designed with trapezoidal cross-sections, which allows the connecting block to move only along the connecting groove in a ring shape, thus preventing the fixing plate from detaching from the arc-shaped tube.

[0040] In this embodiment, the light-transmitting opening 14 is arranged in an arrow-shaped structure to match the arrow on the evacuation emergency light, so as to ensure the range of use.

[0041] In this embodiment, the installation height of the cylinder 9 is higher than the height of the LED tri-proof lamp 3 housing, so as not to obstruct the LED tri-proof lamp from moving inward.

[0042] In this embodiment, one end of the LED tri-proof lamp 3 forms a third guide portion 19 with an arc-shaped structure. After the rotating plate and the lifting plate are removed from the housing, the LED tri-proof lamps can come together. When it is necessary to push the LED tri-proof lamps outward again, the lifting plate is moved downward so that the first guide portion on the rotating plate can contact the third guide portion on the LED tri-proof lamp and be squeezed, so that the third guide portion can be pushed outward until the LED tri-proof lamps are opened and moved back to their original positions.

[0043] In this embodiment, the light-transmitting cover on the LED tri-proof lamp 3 is retracted into the housing of the LED tri-proof lamp 3, so that the light-transmitting cover does not come into contact with the inner side of the housing during the process of the LED tri-proof lamp being moved out of the housing, thus avoiding wear.

[0044] During installation, the rotation angle of the fixing plate can be adjusted according to the installation location. For example, if it is installed at a corner of a wall, then as shown in the attached diagram. Figure 1 As shown, the fixing plate is in an inclined state, so that the fixing plates on both sides contact the two side walls of the corner. When it is necessary to fix the fixing plate to the parallel wall, the fixing plate can rotate outward along the connecting groove until the fixing plates are set horizontally.

[0045] After the above is completed, holes need to be drilled in the wall. During installation, the positioning column can be partially inserted into the hole for pre-positioning. After completion, it is fixed to the wall by bolts, screws and other fasteners passing through the screw holes to ensure the installation versatility of this device.

[0046] As attached Figure 7 As shown, during normal use, the cylinder can be activated, causing the piston rod of the cylinder to retract. The movement of the piston rod drives the fixed plate and the lifting plate, causing the lifting plate to move downward along the strip-shaped opening. The movement of the lifting plate drives the rotating plate, causing the second guide section on the rotating plate to tilt outward along the guide block. As the lifting plate continues to move, the rotating plate can contact the inner side of the housing and continue to open outward along the inner side. The opened rotating plate can push the LED tri-proof light outward, causing the LED tri-proof light to move outward along the slide groove along the inlet and outlet, so that the LED tri-proof light can be exposed and illuminate the surface.

[0047] When not in use, the lifting plate can be moved upward by extending the piston rod on the cylinder. The return of the compression spring can pull the LED tri-proof light inward. The inward squeezing force of the LED tri-proof light can push the rotating plate inward, causing the rotating plate to move closer together. The LED tri-proof light can then enter the interior of the housing. The housing protects the LED tri-proof light by blocking external dust and sunlight, thus ensuring the lifespan of the LED tri-proof light.

[0048] In an emergency, such as in the event of smoke or fire, the cylinder can be restarted, causing the piston rod to extend a long distance. The extended piston rod can directly move the lifting plate out of the slot, while the rotating plate moves out of the housing. However, the rotating plate does not move out of the slot, thus preventing it from detaching from the housing.

[0049] After the linkage mechanism is removed, the rebound of the compression spring pulls the LED tri-proof light inward, causing it to come closer to the light-transmitting opening. The light generated by the LED tri-proof light will form an emergency indicator arrow after passing through the light-transmitting opening, thus converting it into an evacuation indicator light. There is no need to install a separate evacuation indicator light, which achieves the effect of energy saving and cost reduction.

[0050] The above description is merely a specific embodiment of the present invention, but the scope of protection of the present invention is not limited thereto. Any changes or substitutions conceived without inventive effort should be included within the scope of protection of the present invention. Therefore, the scope of protection of the present invention should be determined by the scope defined in the claims.

Claims

1. A high-efficiency and energy-saving LED tri-proof lamp structure, characterized in that: The device includes a housing (1) and two LED tri-proof lights (3). Both ends of the housing (1) are provided with inlets and outlets (23). The two LED tri-proof lights (3) are both located inside the housing (1). The opposite end faces of the two LED tri-proof lights (3) are inserted into the inlets and outlets (23) and the inlets and outlets (23) are sealed. The housing (1) is provided with a light-transmitting opening (14) in the middle. The housing (1) is provided with a linkage mechanism that pushes out the two LED tri-proof lights (3) and blocks the light-transmitting opening (14) in the middle. The housing (1) is provided with a cover (2). The cover (2) is arched in the middle to form an arc tube (4). The arc tube (4) is provided with a cylinder (9) that drives the linkage mechanism to lift and lower. The arc tube (4) is provided with a fixing component on the outside. The linkage mechanism includes a lifting plate (15) and a rotating plate. A strip-shaped opening is provided on one side of the housing (1). The lifting plate (15) is located inside the housing (1). One end of the lifting plate (15) extends through the strip-shaped opening to the outside and is fitted with a fixing plate (10). The piston rod of the cylinder (9) is installed on the inner side of the fixing plate (10). Two rotating plates are provided and are installed on the other end of the lifting plate (15) through hinges. The light-transmitting opening (14) is sealed by the lifting plate (15) and the two rotating plates. The two rotating plates are provided with a first guide part (20) on opposite sides and a second guide part (21) on opposite sides. An arc-shaped guide block (22) is installed on the inner side of the shell (1) at the middle of the two second guide parts (21). The housing (1) has grooves on both sides inside. The LED tri-proof lamp (3) has slide bars (24) installed at both ends. The slide bars (24) are slidably set in the grooves. The middle of the grooves is equipped with a fixing bar (18). The two ends of the fixing bar (18) are equipped with compression springs (17). The other end of the compression springs (17) is installed on the end face of the slide bar (24). One end of the LED tri-proof lamp (3) forms a third guide section (19) with an arc-shaped structure.

2. The high-efficiency energy-saving LED tri-proof lamp structure according to claim 1, characterized in that: The cross-sections of the chute and the slide bar (24) are both trapezoidal. The bottom surface of the slide bar (24) is provided with a groove (25). Limiting blocks (13) are installed at both ends of the chute opening.

3. The high-efficiency energy-saving LED tri-proof lamp structure according to claim 1, characterized in that: The fixing assembly includes multiple fixing plates (7) and connecting blocks (6). The fixing plates (7) of the fixing assembly are inclinedly arranged on the outside of the arc tube (4). The arc tube (4) is provided with multiple arc-shaped connecting grooves (5). The connecting blocks (6) are all slidably arranged in the connecting grooves (5). The outside of the connecting blocks (6) are all installed on the corresponding fixing plates (7) of the fixing assembly. Multiple positioning posts (8) are installed on the inner side of the fixing plates (7) of the fixing assembly. The inside of the positioning posts (8) is provided with screw holes that penetrate the positioning posts (8) and the fixing plates (7) of the fixing assembly.

4. The high-efficiency energy-saving LED tri-proof lamp structure according to claim 1, characterized in that: The light-transmitting opening (14) is set in an arrow-shaped structure.

5. The high-efficiency energy-saving LED tri-proof lamp structure according to claim 1, characterized in that: The cylinder (9) is installed at a height higher than the housing of the LED tri-proof lamp (3).

6. The high-efficiency energy-saving LED tri-proof lamp structure according to claim 1, characterized in that: The light-transmitting cover on the LED tri-proof lamp (3) is retracted into the housing of the LED tri-proof lamp (3).

Citation Information

Patent Citations

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