A solar intelligent energy-saving and environmental protection lamp

By designing a flip-up curved lampshade and reflector structure, combined with an air pump and sponge cleaning mechanism, the problems of limited lighting range and dust accumulation in solar lamps have been solved, achieving greater lighting brightness and cleaning effect.

CN119468122BActive Publication Date: 2025-08-01GUANGZHOU JINSHANXI LIGHTING CO LTD
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Patent Information

Application Number
CN202510020196.9
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-01-07
Publication Date
2025-08-01
Estimated Expiration
2045-01-07

AI Technical Summary

Technical Problem

Existing solar lamps have a limited illumination range, which is limited to the vertical area below the lamp. The lighting effect is poor when the lamp is far from the vertical area, and dust accumulation affects the brightness of the lamp after long-term use.

Method used

The lampshade and reflector structure are designed to be flipped. The lampshade can be flipped and rotated by a driver and a DD motor. Combined with the cleaning mechanism of air pump and sponge, the light is effectively reflected and guided, and the air pump blows air to remove dust and insects.

Benefits of technology

It significantly increases lighting brightness, improves lighting effect, avoids the impact of dust and insects on lamps, and improves the efficiency and aesthetics of lamps.

✦ Generated by Eureka AI based on patent content.

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    Figure CN119468122B_ABST
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Abstract

The present invention relates to the field of lighting devices, and particularly to a solar intelligent energy-saving and environmental protection lamp, which comprises an installation shell, a lampshade, a driver and a first rotating shaft; two lampshades for lighting are arranged on the installation shell; a plurality of drivers are installed on the installation shell; and a first rotating shaft is fixedly connected to each driver. By providing two symmetrically flipable lampshades, the driver drives the first rotating shaft, the first arc lamp and the fixing plate to flip downward by a certain degree, so that the two first arc lamps are in a vertical state, and then the DD motor drives the second rotating shaft and the first arc lamp to rotate horizontally by a certain degree, so that the reflector is close to the horizontal lampshade. The reflector can efficiently reflect the light source and direct the light to the area where the user is active, thereby significantly increasing the lighting brightness and improving the lighting effect.
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Description

Technical Field

[0001] The present invention relates to the field of lighting devices, and particularly to a solar intelligent energy-saving and environment-friendly lamp. Background Art

[0002] In existing life, for energy conservation and environmental protection, solar lamps are used for indoor lighting. After workers install the lamps indoors, they connect the wires of the lamps to the wires on the solar panel, place the solar panel in a place that can be irradiated by the sun for a long time, convert solar energy into electrical energy, and supply it for the lamps to use for lighting.

[0003] However, the existing lamps illuminate the vertical area below the lamps. When far away from the vertical area of the lamps, the lighting effect of the lamps is poor. Summary of the Invention

[0004] In order to overcome the defect that the existing solar lamps illuminate the vertical area below the lamps and the lighting effect of the lamps is poor when far away from the vertical area of the lamps, the present invention provides a solar intelligent energy-saving and environment-friendly lamp.

[0005] Technical Solution: A solar intelligent energy-saving and environment-friendly lamp includes an installation shell and a lampshade; two lampshades for lighting are arranged on the installation shell; the lampshades are arc-shaped; a plurality of first heat dissipation holes are formed in the installation shell; a plurality of second heat dissipation holes corresponding to the first heat dissipation holes are formed in the lampshades; each lampshade is divided into a light guide plate and a reflector; it further includes a fixing plate, a driver, a first rotating shaft and a second rotating shaft; a plurality of drivers are installed on the installation shell; a first rotating shaft is fixedly connected to each driver; a fixing plate is fixedly connected to each first rotating shaft; a DD motor is arranged at the center of each fixing plate; a second rotating shaft is fixedly connected to the output end of each DD motor; each second rotating shaft is fixedly connected to a corresponding lampshade.

[0006] Further explanation, it further includes a clamping block and a first elastic member; first elastic members are arranged on both the left side and the right side of the installation shell; a clamping block for fixing the lampshade is fixedly connected to the output end of the first elastic member; a plurality of first sliding grooves are formed in the installation shell; the clamping block slides in the first sliding grooves; a clamping groove is formed in each lampshade; each clamping groove corresponds to the adjacent first sliding groove.

[0007] Further explanation, it further includes an air pump; an air pump is arranged inside the installation shell; the second rotating shaft is in a hollow state; the air pump is rotationally connected to the second rotating shaft through a connecting pipe; the second rotating shaft is communicated with the inside of the lampshade.

[0008] Further explanation, filter meshes are arranged on both the first heat dissipation holes and the second heat dissipation holes.

[0009] Further explanation, it further includes a first sponge; a first sponge is arranged at the opening on the lower side of the installation shell.

[0010] Further description: It further includes a second elastic member and a second sponge; a second sliding groove is provided on the lamp cover; several second elastic members are fixedly connected in the second sliding groove; the output ends of all the second elastic members are commonly fixedly connected with a second sponge for wiping the surface of the lamp cover.

[0011] Further description: A blowing hole is provided on the lamp cover, and the orifice of the blowing hole is inclined.

[0012] Further description: All the fixing plates together form a cavity for placing a pipeline connecting the air pump and the second rotating shaft.

[0013] Further description: The surface of the reflector provided on the lamp cover is smooth.

[0014] Further description: The sides of the lamp cover are all made of transparent materials.

[0015] Beneficial effects: In the technical solution provided by the present invention: In the present invention, by providing two symmetrically rotatable lamp covers, the first rotating shaft, the first arc lamp and the fixing plate are driven by a driver to rotate downward by 90 degrees, so that the two first arc lamps are in a vertical state, and then the second rotating shaft and the first arc lamp are driven by a DD motor to rotate horizontally by 180 degrees, so that the reflector is close to the horizontal lamp cover. The reflector can efficiently reflect the light source and direct the light to the area where the user is active, thereby significantly increasing the illumination brightness and improving the illumination effect.

[0016] During the process of the first arc lamp rotating horizontally by 180 degrees, the second elastic member drives the second sponge to pop up upward. At this time, the second sponge contacts the light guide plate of the second arc lamp, and the first arc lamp drives the second sponge to rotate along the light guide plate of the second arc lamp to wipe the light guide plate of the second arc lamp, so as to avoid excessive dust accumulation on the light guide plate of the second arc lamp and affect the illumination brightness.

[0017] When the second sponge is used to clean the light guide plate of the second arc lamp, the air pump blows air into the second rotating shaft on the first arc lamp, and the gas enters the interior of the first arc lamp through the second rotating shaft. A part of the gas is blown out through the blowing hole. Since the blowing hole is inclined and the air outlet is far from the second sponge, the dust on the surface of the light guide plate of the second arc lamp is blown, and the dust is far from the surface of the first arc lamp during the falling process, so as to avoid the dust falling onto the surface of the first arc lamp. Another part of the gas is discharged through the second heat dissipation hole. Description of the drawings

[0018] Figure 1 It is a three-dimensional structural schematic diagram of the solar intelligent energy-saving and environmental protection lamp of the present invention;

[0019] Figure 2 It is an exploded view of the installation shell, the lamp cover, the fixing plate, the driver and the first rotating shaft of the present invention;

[0020] Figure 3 It is a schematic diagram of the flipping of the first arc lamp of the present invention;

[0021] Figure 4 Schematic three-dimensional structure diagram of the lampshade, fixed plate and second rotating shaft combination of the present invention;

[0022] Figure 5 Schematic three-dimensional structure diagram of the lampshade, air blowing hole, sliding groove two, second elastic member and sponge two combination of the present invention;

[0023] Figure 6 Schematic three-dimensional structure diagram of the installation shell, lampshade, air pump and fixed plate combination of the present invention;

[0024] Figure 7 For the present invention Figure 6 Enlarged view of area A in the figure.

[0025] Names and serial numbers of components in the figure: 1 - installation shell, 2 - lampshade, 21 - arc lamp one, 22 - arc lamp two, 3 - air pump, 4 - fixed plate, 101 - driver, 102 - first rotating shaft, 103 - clamping block, 104 - first elastic member, 105 - sponge one, 107 - second rotating shaft, 201 - second elastic member, 202 - sponge two, 1001 - heat dissipation hole one, 1002 - sliding groove one, 2001 - heat dissipation hole two, 2002 - light guide plate, 2003 - reflector, 2004 - air blowing hole, 2005 - sliding groove two, 2007 - clamping groove. Detailed implementation manners

[0026] The technical solution of the present invention will be further described below with reference to the accompanying drawings.

[0027] Embodiment 1

[0028] As Figures 1 - 7 shown, a solar intelligent energy-saving and environment-friendly lamp includes an installation shell 1 and a lampshade 2; two lampshades 2 are arranged on the installation shell 1; the lampshade 2 is arc-shaped; a plurality of heat dissipation holes one 1001 are opened on the installation shell 1; a plurality of heat dissipation holes two 2001 corresponding to the heat dissipation holes one 1001 are opened on the lampshade 2; each lampshade 2 is divided into a light guide plate 2002 and a reflector 2003;

[0029] It further includes a fixed plate 4, a driver 101, a first rotating shaft 102 and a second rotating shaft 107; two symmetrically arranged drivers 101 are installed on the installation shell 1; a first rotating shaft 102 is fixedly connected to each driver 101; a fixed plate 4 is fixedly connected to each first rotating shaft 102; a DD motor is arranged at the center of each fixed plate 4; a second rotating shaft 107 is fixedly connected to the output end of each DD motor; each second rotating shaft 107 is fixedly connected to a corresponding lampshade 2.

[0030] It also includes a clamping block 103 and a first elastic member 104; the left and right sides of the mounting shell 1 are both provided with the first elastic member 104, and the first elastic member 104 is a spring rod; the output end of the first elastic member 104 is fixedly connected with the clamping block 103; two symmetrically arranged left and right sliding grooves 1002 are formed on the mounting shell 1; the clamping block 103 slides in the sliding groove 1002; a clamping groove 2007 is formed on each lamp cover 2; each clamping groove 2007 corresponds to the adjacent sliding groove 1002; when the lamp cover 2 is in the state as shown in Figure 1 shown, the first elastic member 104 drives the clamping block 103 into the clamping groove 2007 to fix the lamp cover 2.

[0031] It also includes an air pump 3; the air pump 3 is arranged inside the mounting shell 1; the second rotating shaft 107 is in a hollow state; the air pump 3 is rotationally connected to the second rotating shaft 107 through a connecting pipe; the second rotating shaft 107 is communicated with the inside of the lamp cover 2.

[0032] Filter screens are arranged on both the first heat dissipation holes 1001 and the second heat dissipation holes 2001 to intercept mosquitoes and prevent mosquitoes from entering the inside of the lamp cover 2, resulting in black spots on the lamp cover 2 during lighting and affecting the aesthetics of the lamp.

[0033] It also includes a first sponge 105; the first sponge 105 is arranged at the lower opening of the mounting shell 1, which is convenient for scraping off the dust and mosquitoes on the side of the lamp cover 2 when the lamp cover 2 is turned up 90 degrees and retracted into the mounting shell 1, preventing mosquitoes from getting stuck between the mounting shell 1 and the lamp cover 2 and affecting the aesthetics of the lamp.

[0034] It also includes a second elastic member 201 and a second sponge 202; a sliding groove 2005 is formed on the lamp cover 2; two second elastic members 201 are fixedly connected in the sliding groove 2005, and the second elastic member 201 is a spring rod; the output ends of all the second elastic members 201 are commonly fixedly connected with the second sponge 202.

[0035] A blowing hole 2004 is formed on the lamp cover 2, and the mouth of the blowing hole 2004 is inclined to prevent dust from falling onto the surface of the first arc lamp 21 when the second sponge 202 cleans the surface of the second arc lamp 22.

[0036] A cavity is formed among all the fixing plates 4 for placing the pipeline connecting the air pump 3 and the second rotating shaft 107.

[0037] The surface of the reflector 2003 arranged on the lamp cover 2 is smooth, which reduces the scattering of light, improves the reflection efficiency, and further increases the lighting effect.

[0038] The sides of the lamp cover 2 are made of transparent materials, which increases the lighting brightness and lighting range when the first arc lamp 21 is used as a lighting fixture.

[0039] In current life, for energy conservation and environmental protection, solar lamps are used for indoor lighting. Workers install the lamps indoors, place the solar panels in areas that can be irradiated by the sun for a long time, connect the lamps and the solar panels through wires, convert solar energy into electrical energy through the solar panels, and store the electrical energy in the battery for the lamps to use for lighting.

[0040] However, the existing lighting range of the lamp is the vertical area below the lamp. When far away from the vertical area of the lamp, the lighting effect of the lamp is poor.

[0041] Therefore, the present invention provides a solar intelligent energy-saving and environmental protection lamp.

[0042] For the convenience of description, the two lamp shades 2 are divided into arc lamp one 21 and arc lamp two 22.

[0043] When the present invention is in use, the present invention illuminates in the state shown in Figure 1. At this time, the user can control all the light-emitting diodes in the two lamp shades 2 to be turned on through the remote control for lighting. When the present invention is in use, taking the arc lamp one 21 as an example, the user controls the driver 101 to rotate through the remote control, drives the first rotating shaft 102 connected to the arc lamp one 21 to rotate, and further drives the arc lamp one 21 to turn down 90 degrees through the first rotating shaft 102, presenting a state as shown in Figure 3 the figure. Then, control the DD motor to drive the second rotating shaft 107 to rotate. At this time, the light guide plate 2002 of the arc lamp one 21 is at a right angle to the light guide plate 2002 of the horizontal arc lamp two 22. Then, drive the second rotating shaft 107 to rotate through the DD motor, drive the arc lamp one 21 to rotate clockwise by 180 degrees through the second rotating shaft 107, so that the reflector 2003 of the arc lamp one 21 is at a right angle to the light guide plate 2002 on the arc lamp two 22. At this time, the user turns on the light-emitting diodes inside the horizontally placed lamp shade 2 through the remote control for lighting. At this time, the reflector 2003 of the vertically placed lamp shade 2 can efficiently reflect the light source and direct the light to the user's activity area, thereby significantly increasing the lighting brightness and improving the lighting effect.

[0044] Furthermore, when the user's activity range is at positions such as the diagonal of the arc lamp two 22, at this time, the arc lamp one 21 and the arc lamp two 22 cannot form a vertical state. At this time, the user controls the vertically placed arc lamp one 21 to rotate, adjusts the angle of the arc lamp one 21, so that the light guide plate 2002 of the arc lamp one 21 is perpendicular to the user's activity area, and pours the light into the user's activity area to increase the lighting brightness.

[0045] Furthermore, during the long-term use of the lamp, dust will accumulate on the surface of the light guide plate 2002. This layer of dust not only affects the aesthetics of the lamp but also blocks part of the light, further affecting the lighting effect of the lamp.

[0046] Therefore, during the use of the present invention, when the arc lamp 1-21 rotates to the state as shown in Figure 3 After that, when the arc lamp 1-21 is driven by the DD motor to rotate, during the rotation of the arc lamp 1-21, the upper side of the arc lamp 1-21 is disengaged from the limit of the fixing plate 4. Since there is a gap between the upper side of the vertical lamp shade 2 and the horizontal lamp shade 2, at this time, the second elastic member 201 that is limited and contracted by the fixing plate 4 pops out outward. Due to the elasticity of the second elastic member 201 itself, the second sponge 202 is driven by the second elastic member 201 to pop up upward. At this time, the second sponge 202 contacts the light guide plate 2002 of the arc lamp 2-22. The second sponge 202 is driven by the arc lamp 1-21 to rotate along the light guide plate 2002 of the arc lamp 2-22, so as to wipe the light plate of the light guide plate 2002 of the arc lamp 2-22, and avoid excessive dust accumulation on the light guide plate 2002 of the arc lamp 2-22, which affects the illumination brightness.

[0047] Furthermore, since the arc lamp 1-21 and the arc lamp 2-22 are in a vertical state, when the light guide plate 2002 of the arc lamp 2-22 is cleaned by the second sponge 202 on the arc lamp 1-21, there is a problem that the dust on the light guide plate 2002 of the arc lamp 2-22 falls onto the arc lamp 1-21. Therefore, when the light guide plate 2002 of the arc lamp 2-22 is cleaned by the second sponge 202 on the arc lamp 1-21, the air pump 3 blows air into the second rotating shaft 107 on the arc lamp 1-21. The gas enters the interior of the arc lamp 1-21 through the second rotating shaft 107. A part of the gas is blown out through the blowing holes 2004. Since the blowing holes 2004 are inclined and the air outlet is far from the second sponge 202, the dust on the surface of the light guide plate 2002 of the arc lamp 2-22 is blown, and during the falling process, it is far away from the surface of the arc lamp 1-21, so as to avoid the dust falling onto the surface of the arc lamp 1-21. Another part of the gas is discharged through the second heat dissipation holes 2001.

[0048] During the use of existing lamps, the electronic components inside the lamps will generate heat. To avoid heat accumulation inside the lamps and affect the use of the lamps, existing lamps will be provided with heat dissipation openings. However, during the use of the lamps, dust will accumulate at the heat dissipation openings, resulting in blockage of the heat dissipation openings and reduction of the heat dissipation effect of the lamps.

[0049] Therefore, during the use of the present invention, the air pump 3 blows air into the second rotating shaft 107. The gas enters the interior of the lamp shade 2 through the second rotating shaft 107. For the vertical arc lamp 1-21, the gas is directly discharged through the second heat dissipation holes 2001. For the horizontal arc lamp 2-22, the gas is discharged through the second heat dissipation holes 2001 and then blown out through the first heat dissipation holes 1001, so as to accelerate the gas flow and reduce the temperature of the lamp.

[0050] Furthermore, due to the phototactic behavior of mosquitoes, indoor mosquitoes will gather around the lamps at night in summer, and there is a problem that dead mosquitoes adhere to the light guide plate 2002. Therefore, the gas blown out from the second heat dissipation hole 2001 can blow away the mosquitoes adhering to the surfaces of the second heat dissipation hole 2001 and the first heat dissipation hole 1001, avoiding the blockage of the second heat dissipation hole 2001 and the first heat dissipation hole 1001 by mosquitoes.

[0051] Furthermore, the first sponge 105 is arranged on the lower side of the installation shell 1. When the first arc lamp 21 is turned upward by 90 degrees to the state as shown in Figure 1 the figure, when the first arc lamp 21 passes through the first sponge 105, the arc-shaped side of the first arc lamp 21 can be wiped and cleaned by the first sponge 105.

[0052] The above embodiments are provided for those skilled in the art to implement or use the present invention. Those skilled in the art can make various modifications or changes to the above embodiments without departing from the inventive concept of the present invention. Therefore, the protection scope of the present invention is not limited by the above embodiments, but should be the maximum scope that conforms to the innovative features mentioned in the claims.

Claims

1. A solar intelligent energy-saving and environmental protection lamp, comprising an installation shell (1) and a lampshade (2); two lampshades (2) for lighting are arranged on the installation shell (1); the lampshade (2) is in an arc shape; a plurality of first heat dissipation holes (1001) are formed in the installation shell (1); a plurality of second heat dissipation holes (2001) corresponding to the first heat dissipation holes (1001) are formed in the lampshade (2); each lampshade (2) is divided into a light guide plate (2002) and a reflector (2003); characterized in that: It further includes a fixing plate (4), a driver (101), a first rotating shaft (102) and a second rotating shaft (107); a plurality of drivers (101) are installed on the installation shell (1); a first rotating shaft (102) is fixedly connected to each driver (101); a fixing plate (4) is fixedly connected to each first rotating shaft (102); a DD motor is provided at the center of each fixing plate (4); a second rotating shaft (107) is fixedly connected to the output end of each DD motor; each second rotating shaft (107) is fixedly connected to a corresponding lamp cover (2); It further includes a first sponge (105); the first sponge (105) is provided at the lower opening of the installation shell (1); It further includes a second elastic member (201) and a second sponge (202); a second sliding groove (2005) is formed on the lamp cover (2); a plurality of second elastic members (201) are fixedly connected in the second sliding groove (2005); the output ends of all the second elastic members (201) are commonly fixedly connected to a second sponge (202) for wiping the surface of the lamp cover (2).

2. The solar intelligent energy-saving and environmental protection lamp according to claim 1, characterized in that: It further includes a clamping block (103) and a first elastic member (104); the first elastic members (104) are provided on both the left and right sides of the installation shell (1); the output end of the first elastic member (104) is fixedly connected to a clamping block (103) for fixing the lamp cover (2); a plurality of first sliding grooves (1002) are formed on the installation shell (1); the clamping block (103) slides in the first sliding groove (1002); a clamping groove (2007) is formed on each lamp cover (2); each clamping groove (2007) corresponds to the adjacent first sliding groove (1002).

3. The solar intelligent energy-saving and environmental protection lamp according to claim 2, characterized in that: It further includes an air pump (3); the air pump (3) is arranged inside the installation shell (1); the second rotating shaft (107) is in a hollow state; the air pump (3) is rotationally connected to the second rotating shaft (107) through a connecting pipe; the second rotating shaft (107) is communicated with the inside of the lamp cover (2).

4. A solar intelligent energy-saving and environmental protection lamp according to claim 1, characterized in that: Filters are provided on both the first heat dissipation holes (1001) and the second heat dissipation holes (2001).

5. The solar intelligent energy-saving and environmental protection lamp according to claim 1, characterized in that: A blowing hole (2004) is formed on the lamp cover (2), and the opening of the blowing hole (2004) is inclined.

6. A solar intelligent energy-saving and environmental protection lamp according to claim 1, characterized in that: A pipeline cavity for communicating the air pump (3) with the second rotating shaft (107) is formed jointly among all the fixing plates (4).

7. The solar intelligent energy-saving and environmental protection lamp according to claim 5, characterized in that: The surface of the reflecting plate (2003) provided on the lamp cover (2) is smooth.

8. The solar intelligent energy-saving and environmental protection lamp according to claim 7, characterized in that: The sides of the lamp cover (2) are made of transparent materials.

Citation Information

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