Disclosure of Invention
The invention provides a solar intelligent energy-saving environment-friendly lamp, which aims to overcome the defect that the illumination effect of the lamp is poor when the illumination range of the existing solar lamp is a vertical area at the lower side of the lamp and is far away from the vertical area of the lamp.
The technical scheme is that the solar intelligent energy-saving environment-friendly lamp comprises a mounting shell and a lamp shade, wherein two lamp shades used for illumination are arranged on the mounting shell, the lamp shade is arc-shaped, a plurality of first radiating holes are formed in the mounting shell, a plurality of second radiating holes corresponding to the first radiating holes are formed in the lamp shade, each lamp shade is divided into a light guide plate and a reflecting plate, the solar intelligent energy-saving environment-friendly lamp further comprises a fixing plate, a driver, a first rotating shaft and a second rotating shaft, the mounting shell is provided with a plurality of drivers, each driver is fixedly connected with one first rotating shaft, each first rotating shaft is fixedly connected with one fixing plate, a DD motor is arranged in the center of each fixing plate, each DD motor output end is fixedly connected with one second rotating shaft, and each second rotating shaft is fixedly connected with one corresponding lamp shade.
The lamp shade fixing device is characterized by further comprising a clamping block and a first elastic piece, wherein the first elastic piece is arranged on the left side and the right side of the mounting shell, the clamping block for fixing the lamp shade is fixedly connected to the output end of the first elastic piece, a plurality of first sliding grooves are formed in the mounting shell, the clamping block slides in the first sliding grooves, clamping grooves are formed in each lamp shade, and each clamping groove corresponds to one adjacent sliding groove.
The lamp shade is characterized by further comprising an air pump, wherein the air pump is arranged in the installation shell, the second rotating shaft is in a hollow state, the air pump is rotationally connected with the second rotating shaft through a connecting pipe, and the second rotating shaft is communicated with the inside of the lamp shade.
Further stated, the first radiating hole and the second radiating hole are respectively provided with a filter screen.
The device further comprises a first sponge, and the first sponge is arranged at the opening of the lower side of the installation shell.
The lampshade is provided with a sliding groove II, a plurality of second elastic pieces are fixedly connected in the sliding groove II, and sponge II for wiping the surface of the lampshade is fixedly connected to the output ends of all the second elastic pieces.
Further, a blowing hole is formed in the lampshade, and the blowing hole is obliquely arranged.
Further, all the fixing plates together form a cavity for being placed in a pipeline for communicating the air pump with the second rotating shaft.
Further, the surface of the reflecting plate arranged on the lampshade is smooth.
Further, the side edges of the lampshade are made of transparent materials.
The LED lamp has the beneficial effects that in the technical scheme, the two symmetrical and reversible lamp covers are arranged, the first rotating shaft, the first arc-shaped lamp and the fixing plate are driven by the driver to be turned downwards by 90 degrees, so that the first arc-shaped lamp is in a vertical state, then the second rotating shaft and the first arc-shaped lamp are driven by the DD motor to horizontally rotate by 180 degrees, the reflecting plate is close to the horizontal lamp cover, the light source can be efficiently reflected by the reflecting plate, and the light can be guided to the movable area of a user, so that the illumination brightness is remarkably increased, and the illumination effect is improved.
In the process of horizontally rotating the arc lamp I by 180 degrees, the second elastic piece drives the sponge to pop up upwards, at the moment, the sponge II contacts with the light guide plate of the arc lamp II, the arc lamp drives the sponge II to rotate along the light guide plate of the arc lamp II, the light guide plate of the arc lamp II is wiped, and excessive dust accumulation of the light guide plate of the arc lamp II is avoided, so that illumination brightness is influenced.
When the light guide plate of the arc lamp II is cleaned through the sponge II, air is blown into the second rotating shaft on the arc lamp I through the air pump, gas enters the arc lamp I through the second rotating shaft, a part of gas is blown out through the air blowing hole, and the air port is arranged in an inclined mode, so that dust on the surface of the light guide plate of the arc lamp II is blown away from the sponge II, the surface of the arc lamp is kept away from in the falling process, the dust is prevented from falling onto the surface of the arc lamp, and the other part of gas is discharged through the heat dissipation hole II.
Drawings
FIG. 1 is a schematic diagram of a three-dimensional structure of a solar intelligent energy-saving environment-friendly lamp;
FIG. 2 is an exploded view of the mounting housing, lamp housing, mounting plate, driver and first rotating shaft of the present invention;
FIG. 3 is a schematic diagram of an arc lamp according to the present invention;
fig. 4 is a schematic perspective view showing a combination of a lampshade, a fixing plate and a second rotating shaft;
FIG. 5 is a schematic view showing a combined three-dimensional structure of a lampshade, a blowing hole, a second sliding groove, a second elastic piece and a second sponge;
FIG. 6 is a schematic perspective view of the combination of the mounting shell, the lamp cover, the air pump and the fixing plate;
Fig. 7 is an enlarged view of the area a of fig. 6 in accordance with the present invention.
In the figure, the names and serial numbers of the parts are 1-mounting shell, 2-lampshade, 21-arc lamp I, 22-arc lamp II, 3-air pump, 4-fixing plate, 101-driver, 102-first rotating shaft, 103-clamping block, 104-first elastic piece, 105-sponge I, 107-second rotating shaft, 201-second elastic piece, 202-sponge II, 1001-radiating hole I, 1002-sliding groove I, 2001-radiating hole II, 2002-light guide plate, 2003-reflecting plate, 2004-blowing hole, 2005-sliding groove II and 2007-clamping groove.
Detailed Description
The technical scheme of the invention is further described below with reference to the accompanying drawings.
Example 1
1-7, The solar intelligent energy-saving environment-friendly lamp comprises a mounting shell 1 and lamp covers 2, wherein the mounting shell 1 is provided with two lamp covers 2, the lamp covers 2 are arc-shaped, the mounting shell 1 is provided with a plurality of first radiating holes 1001, the lamp covers 2 are provided with a plurality of second radiating holes 2001 corresponding to the first radiating holes 1001, and each lamp cover 2 is divided into a light guide plate 2002 and a reflecting plate 2003;
The device further comprises a fixing plate 4, drivers 101, first rotating shafts 102 and second rotating shafts 107, wherein two drivers 101 which are symmetrical in front and back are arranged on the mounting shell 1, each driver 101 is fixedly connected with one first rotating shaft 102, each first rotating shaft 102 is fixedly connected with one fixing plate 4, the center of each fixing plate 4 is provided with a DD motor, the output end of each DD motor is fixedly connected with one second rotating shaft 107, and each second rotating shaft 107 is fixedly connected with a corresponding lampshade 2.
The device also comprises a clamping block 103 and a first elastic piece 104; the left side and the right side of the installation shell 1 are respectively provided with a first elastic piece 104, the first elastic piece 104 is a spring rod, the output end of the first elastic piece 104 is fixedly connected with a clamping block 103, the installation shell 1 is provided with two laterally symmetrical sliding grooves 1002, the clamping block 103 slides in the sliding grooves 1002, each lampshade 2 is provided with a clamping groove 2007, each clamping groove 2007 corresponds to the adjacent sliding groove 1002, and when the lampshade 2 is in a state shown in fig. 1, the clamping block 103 is driven to enter the clamping groove 2007 through the first elastic piece 104 to fix the lampshade 2.
The air pump is characterized by further comprising an air pump 3, the air pump 3 is arranged in the installation shell 1, the second rotating shaft 107 is in a hollow state, the air pump 3 is rotationally connected with the second rotating shaft 107 through a connecting pipe, and the second rotating shaft 107 is communicated with the inside of the lampshade 2.
The first 1001 and second 2001 radiating holes are provided with the filter screen for intercepting mosquitoes, so that the mosquitoes are prevented from entering the lamp shade 2, and black spots exist in the lamp shade 2 during illumination, and the attractiveness of the lamp is affected.
The lamp shade 2 is convenient to scrape dust and mosquitoes on the side edge of the lamp shade 2 when the lamp shade 2 is turned upwards for 90 degrees to retract into the installation shell 1, and the influence on the attractiveness of the lamp due to the fact that the mosquitoes are clamped between the installation shell 1 and the lamp shade 2 is avoided.
The lampshade comprises a lampshade body, and is characterized by further comprising a second elastic piece 201 and a second sponge 202, wherein a second sliding groove 2005 is formed in the lampshade body 2, two second elastic pieces 201 are fixedly connected in the second sliding groove 2005, the second elastic pieces 201 are spring rods, and the output ends of all the second elastic pieces 201 are fixedly connected with the second sponge 202.
The lamp shade 2 is provided with the blowing hole 2004, and the opening of the blowing hole 2004 is obliquely arranged, so that dust is prevented from falling onto the surface of the arc-shaped lamp I21 when the sponge II 202 cleans the surface of the arc-shaped lamp II 22.
All the fixing plates 4 together form a cavity for placing a pipeline communicated with the second rotating shaft 107 of the air pump 3.
The surface of the reflecting plate 2003 arranged on the lampshade 2 is smooth, so that the scattering of light is reduced, the reflection efficiency is improved, and the lighting effect is further improved.
The side edges of the lampshade 2 are made of transparent materials, so that the illumination brightness and the illumination range of the arc lamp I21 serving as an illumination lamp are increased.
In the prior art, the solar lamp is used for illumination indoors, the lamp is installed indoors by workers, the solar panel is placed in a place which can be irradiated by the sun for a long time by workers, the lamp is communicated with the solar panel by an electric wire, solar energy is converted into electric energy by the solar panel, and the electric energy is stored in a battery for illumination of the lamp.
However, the existing lamp has a poor lighting effect when the lighting range is a vertical area at the lower side of the lamp and the vertical area of the lamp is far away.
Therefore, the invention provides the solar intelligent energy-saving environment-friendly lamp.
For convenience of description, the two lamp covers 2 are divided into a first arc lamp 21 and a second arc lamp 22.
When the invention is used, the invention is illuminated in the state shown in the figure 1, and a user can control the light emitting diodes in the two lamp covers 2 to be fully turned on by remote control to illuminate. When the invention is used, taking the arc lamp I21 as an example, a user controls the driver 101 to rotate through the remote controller to drive the first rotating shaft 102 connected with the arc lamp I21 to rotate, further drives the arc lamp I21 to downwards turn over 90 degrees through the first rotating shaft 102 to be in a state shown in figure 3, then drives the second rotating shaft 107 to rotate through controlling the DD motor, at the moment, the light guide plate 2002 of the arc lamp I21 is at right angle with the light guide plate 2002 of the horizontal arc lamp II 22, then drives the second rotating shaft 107 to rotate through the DD motor, drives the arc lamp I21 to rotate clockwise by 180 degrees through the second rotating shaft 107, so that the light reflecting plate 2003 of the arc lamp I21 is at right angle with the light guide plate 2002 on the arc lamp II 22, at the moment, the user turns on the light emitting diode inside the lamp shade 2 in the horizontal state through the remote control, at the moment, the light reflecting plate 2003 of the lamp shade 2 in the vertical state can efficiently reflect the light source, the light is guided to the movable area of the user, and the illumination brightness is remarkably increased.
Further, when the user moves in the range of motion, and the arc lamp two 22 is diagonally opposite, the arc lamp two 21 and the arc lamp two 22 cannot form a vertical state, and the user adjusts the angle of the arc lamp one 21 by controlling the rotation of the arc lamp one 21 in the vertical state, so that the light guide plate 2002 of the arc lamp one 21 is vertical to the user moving area, and light is poured into the user moving area, thereby increasing the illumination brightness.
Furthermore, during the long-time use of the lamp, dust can be accumulated on the surface of the light guide plate 2002, and the dust not only affects the aesthetic property of the lamp, but also can shield part of light rays, thereby further affecting the lighting effect of the lamp.
Therefore, in the use process of the invention, when the arc lamp I21 rotates to be in a state shown in fig. 3, the DD motor drives the arc lamp I21 to rotate, the upper side of the arc lamp I21 is separated from the limit of the fixed plate 4 in the rotation process, and because a gap exists between the upper side of the vertical lampshade 2 and the horizontal lampshade 2, the second elastic piece 201 limited and contracted by the fixed plate 4 is outwards popped up, and the second elastic piece 201 has elasticity, so that the second sponge 202 is driven by the second elastic piece 201 to upwards pop up, and at the moment, the second sponge 202 is contacted with the light guide plate 2002 of the arc lamp II 22, the first sponge 21 drives the second sponge 202 to rotate along the light guide plate 2002 of the arc lamp II 22, so that the light guide plate 2002 of the arc lamp II 22 is wiped, and the large dust accumulation of the light guide plate 2002 of the arc lamp II 22 is avoided, and the illumination brightness is influenced.
Further, because the first arc lamp 21 and the second arc lamp 22 are in a vertical state, when the light guide plate 2002 of the second arc lamp 22 is cleaned by the second sponge 202 on the first arc lamp 21, the problem that dust on the light guide plate 2002 of the second arc lamp 22 falls onto the first arc lamp 21 exists, so when the light guide plate 2002 of the second arc lamp 22 is cleaned by the second sponge 202 on the first arc lamp 21, air is blown into the second rotating shaft 107 on the first arc lamp 21 by the air pump 3, air enters the first arc lamp 21 through the second rotating shaft 107, a part of air is blown out through the air blowing hole 2004, and the air port is far away from the second sponge 202 due to the inclined arrangement of the air blowing hole 2004, so that dust on the surface of the light guide plate 2002 of the second arc lamp 22 is blown away from the surface of the first arc lamp 21 in the falling process, and the dust is prevented from falling onto the surface of the first arc lamp 21, and the other part of air is discharged through the air blowing hole 2001.
In the use process of the existing lamp, electronic elements in the lamp can generate heat, so that heat is prevented from accumulating in the lamp to affect the use of the lamp, a heat dissipation opening is formed in the lamp, but dust in the use process of the lamp can accumulate in the heat dissipation opening, so that the heat dissipation opening is blocked, and the heat dissipation effect of the lamp is reduced.
Therefore, in the using process of the invention, air is blown into the second rotating shaft 107 through the air pump 3, air enters the lamp shade 2 through the second rotating shaft 107, the air of the vertical arc-shaped lamp I21 is directly discharged through the second radiating hole 2001, and the air of the horizontal arc-shaped lamp II 22 is blown out through the first radiating hole 1001 through the second radiating hole 2001, so that the air circulation is quickened, and the temperature of the lamp is reduced.
Furthermore, due to the phototactic behavior of the mosquitoes, the mosquitoes in the room can gather around the lamp in summer and the problem of dead mosquitoes adhering to the light guide plate 2002 exists, so the air blown out from the second heat dissipation hole 2001 and the first heat dissipation hole 1001 can blow out the questioning objects adhering to the surfaces of the second heat dissipation hole 2001 and the first heat dissipation hole 1001, and the mosquitoes are prevented from blocking the second heat dissipation hole 2001 and the first heat dissipation hole 1001.
Further, the sponge one 105 is arranged on the lower side of the installation shell 1, when the arc lamp one 21 is turned upwards by 90 degrees to be in the state shown in fig. 1, when the arc lamp one 21 passes through the sponge one 105, the arc side of the arc lamp one 21 can be wiped and cleaned through the sponge one 105.
The embodiments described above are intended to provide those skilled in the art with a full range of modifications and variations to the embodiments described above without departing from the inventive concept thereof, and therefore the scope of the invention is not limited by the embodiments described above, but is to be accorded the broadest scope consistent with the innovative features recited in the claims.