LED lamp group structure

By designing the protective cover and brush cleaning mechanism in the LED lamp group structure, the problem of poor light penetration effect caused by dust adhesion is solved, and efficient dust cleaning and brightness improvement is achieved.

CN120027382BActive Publication Date: 2025-08-19SHENZHEN DA KE DISPLAY TECH CO LTD
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Patent Information

Application Number
CN202510517611.1
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-04-24
Publication Date
2025-08-19
Estimated Expiration
2045-04-24

AI Technical Summary

Technical Problem

The strip LED light group lacks protective measures when installing, resulting in easy attachment of dust and affecting the light penetration effect and lighting effect.

Method used

An LED light group structure is designed, including a base plate, a protective cover, a dust removal mechanism and a positioning mechanism. The motor drives the protective cover to rotate and brush cleaning to achieve effective dust cleaning and light adjustment.

Benefits of technology

Effectively avoid dust adhesion, improve the lighting brightness and effect of LED wicks, and solve the problem of dust affecting light penetration.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention belongs to the technical field of LED lamps and discloses an LED lamp group structure, the technical key points of which are: it includes a base plate, the bottom wall of the base plate is provided with multiple groups of evenly distributed LED wicks, the left and right sides of the base plate are respectively provided with positioning grooves, the front and rear ends of the base plate are respectively provided with end plates, a cylindrical protective cover is rotatably installed on the outer side of the base plate, the surface of the protective cover is provided with an opening, the surface of the base plate is provided with a dust removal mechanism that cooperates with the LED wicks, the dust removal mechanism includes a brush, a support assembly, a rotation assembly and a transverse movement assembly, the top wall of the base plate is provided with a positioning mechanism that cooperates with the protective cover, the positioning mechanism includes a rotating assembly and a driving assembly, which solves the current problem that dust is easily attached to the surface of the lamp group, affecting the light penetration effect, and resulting in poor lighting effect of the LED wicks.
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Description

Technical Field

[0001] The present invention relates to the technical field of LED lamps, and in particular to an LED lamp group structure. Background Art

[0002] Strip-shaped LED light sets are often installed directly in wall troughs. These lack protective measures, allowing dust to adhere to the LED core. As the dust builds up, the LED core's lighting performance decreases. When a sealing cover is installed, the position of the cover cannot be adjusted, and dust adheres to the surface, similarly affecting light penetration and resulting in poor lighting performance. Summary of the Invention

[0003] The object of the present invention is to provide an LED lamp group structure to solve the problems raised in the above background technology.

[0004] To achieve the above object, the present invention provides the following technical solutions:

[0005] An LED lamp group structure includes a base plate, wherein the bottom wall of the base plate is provided with multiple groups of evenly distributed LED wicks, the left and right sides of the base plate are respectively provided with positioning grooves, the front and rear ends of the base plate are respectively provided with end plates, a cylindrical protective cover is rotatably installed on the outer side of the base plate, the protective cover passes through the two groups of positioning grooves, an opening is provided on the surface of the protective cover, a dual-axis motor is fixedly installed on the top wall of the base plate, the output shafts at both ends of the dual-axis motor are respectively fixedly installed with rotating columns, a dust removal mechanism that cooperates with the LED wicks is provided on the surface of the base plate, and the dust removal mechanism includes a brush, a support assembly, a rotation assembly and a transverse movement assembly, the support assembly is located between the two groups of end plates and is connected to the brush, and the support assembly is used to control The brush is located at the bottom wall of the base plate, and the transverse movement component is located on the top wall of the base plate and is connected to the support component. The transverse movement component controls the brush to move back and forth in the horizontal direction under the LED wick by cooperating with the support component. The rotation component is connected to the support component, and the rotation component controls the brush to move horizontally while rotating synchronously in the vertical plane by cooperating with the support component. The top wall of the base plate is provided with a positioning mechanism that cooperates with the protective cover, and the positioning mechanism includes a rotating assembly and a driving assembly. The rotating assembly is located on the top wall of the base plate and is connected to the protective cover, and the driving assembly is connected to the rotating assembly. The driving assembly controls the protective cover to rotate on the outside of the base plate by cooperating with the rotating assembly.

[0006] As a further solution of the present invention: the support assembly includes two groups of guide grooves respectively opened on the two side walls opposite to each other of the end plates, and arc-shaped structures are provided at both ends of the guide grooves. The bottom wall of the base plate is provided with two groups of relatively distributed storage grooves, and the two ends of the storage grooves are respectively connected to the guide grooves on the surface of the end plates. A sliding block is slidably installed in the guide groove, and a cleaning rod is installed on the two groups of sliding blocks for rotation together, and multiple groups of brushes are evenly distributed on the surface of the cleaning rod.

[0007] As a further solution of the present invention: the transverse movement assembly includes two groups of relatively distributed wire grooves opened downwardly from the top wall of the end plate, and the two groups of wire grooves are respectively connected to the two ends of the guide groove, and a first winding roller is fixedly installed on the surface of the rotating column, and a second winding roller located on the outside of the first winding roller is fixedly installed on the surface of the rotating column, a first pulling rope is wound on the surface of the first winding roller, and a second pulling rope is wound on the surface of the second winding roller, and the winding directions of the first pulling rope and the second pulling rope are opposite, and one end of the first pulling rope away from the first winding roller passes through a group of wire grooves to extend into the guide groove and is connected to one side of the sliding block, and one end of the second pulling rope away from the second winding roller passes through another group of wire grooves to extend into the guide groove and is connected to the other side of the sliding block.

[0008] As a further solution of the present invention: the self-rotating assembly includes a fixed toothed disc fixedly mounted on the surface of the cleaning rod, and a rack located outside the guide groove is fixedly mounted on the side wall of the end plate, and the fixed toothed disc is engaged with the rack.

[0009] As a further solution of the present invention: the rotating assembly includes an annular gear ring opened on the inner wall of the protective cover, two groups of relatively distributed vertical plates are fixedly installed on the top wall of the bottom plate, and the two groups of vertical plates are jointly rotatably installed with a horizontal column, and a positioning gear disk is fixedly installed on the surface of the horizontal column, and the positioning gear disk is meshed with the gear ring.

[0010] As a further solution of the present invention: the driving assembly includes synchronous gear plates fixedly mounted on the surfaces of the rotating column and the transverse column respectively, and the two sets of synchronous gear plates are commonly connected with a synchronous belt.

[0011] As a further solution of the present invention: a side plate is fixedly mounted on the top wall of the bottom plate, and the side plate is rotatably connected to the rotating column.

[0012] Compared with the prior art, the beneficial effect of the present invention is that by setting the rotating component and the driving component to cooperate with each other, the relative position of the opening on the surface of the protective cover and the LED wick can be conveniently adjusted. When the lamp group is not in use, the protective cover can seal the LED wick to prevent dust. When in use, the opening on the surface of the protective cover can effectively increase the lighting brightness.

[0013] By arranging the lateral movement component, the self-rotation component and the support component to cooperate with each other, the position of the brush can be easily adjusted under the base plate. The brush can effectively clean the dust and impurities adhering to the surface of the LED wick, effectively improving the lighting intensity of the LED wick. This solves the current problem of dust easily adhering to the surface of the lamp, affecting the light penetration effect and resulting in poor lighting effect of the LED wick. BRIEF DESCRIPTION OF THE DRAWINGS

[0014] Figure 1 A schematic diagram of the three-dimensional structure of an LED lamp group structure provided in an embodiment of the present invention Figure 1 .

[0015] Figure 2 A schematic diagram of the three-dimensional structure of an LED lamp group structure provided in an embodiment of the present invention Figure 2 .

[0016] Figure 3 A schematic diagram of the three-dimensional structure of an LED lamp group structure provided in an embodiment of the present invention Figure 3 .

[0017] Figure 4 This is a schematic diagram of the three-dimensional structure of a base plate in an LED lamp group structure provided in an embodiment of the present invention.

[0018] Figure 5 This is a schematic diagram of the main structure of an LED lamp group structure provided in an embodiment of the present invention.

[0019] Figure 6 for Figure 1 Schematic diagram of the enlarged structure of A in the middle.

[0020] Figure 7 for Figure 1 Schematic diagram of the enlarged structure of B.

[0021] Figure 8 for Figure 3 Schematic diagram of the enlarged structure of C in the middle.

[0022] Figure 9 for Figure 5 Schematic diagram of the enlarged structure of D in the middle.

[0023] Among them: 1- bottom plate, 11-LED wick, 12-positioning groove, 2-end plate, 3-protective cover, 31-opening, 4-dual-axis motor, 41-rotating column, 5-dust removal mechanism, 51-brush, 52-support assembly, 521-guide groove, 522-storage groove, 523-sliding block, 524-cleaning rod, 53-rotation assembly, 531-fixed gear disc, 532-rack, 54-transverse movement assembly, 541-wire trough, 542-first winding roller, 543-second winding roller, 544-first pulling rope, 545-second pulling rope, 6-positioning mechanism, 61-rotating assembly, 611-gear ring, 612-vertical plate, 613-horizontal column, 614-positioning gear disc, 62-driving assembly, 621-synchronous gear disc, 622-synchronous belt, 7-side plate. DETAILED DESCRIPTION

[0024] It should be noted that, in the absence of conflict, the embodiments of the present invention and the features in the embodiments may be combined with each other.

[0025] The specific implementation of the present invention is described in detail below with reference to specific embodiments.

[0026] like Figure 1 、 Figure 2 、 Figure 3 、 Figure 4 、 Figure 7 、 Figure 9As shown, a structural diagram of an LED lamp group structure provided by an embodiment of the present invention includes a base plate 1, the bottom wall of the base plate 1 is provided with multiple groups of evenly distributed LED wicks 11, the left and right sides of the base plate 1 are respectively provided with positioning grooves 12, the front and rear ends of the base plate 1 are respectively provided with end plates 2, a cylindrical protective cover 3 is rotatably installed on the outside of the base plate 1, the protective cover 3 passes through the two groups of positioning grooves 12, and an opening 31 is provided on the surface of the protective cover 3, a dual-axis motor 4 is fixedly installed on the top wall of the base plate 1, and the output shafts at both ends of the dual-axis motor 4 are respectively fixedly installed with rotating columns 41, and a dust removal mechanism 5 that cooperates with the LED wicks 11 is provided on the surface of the base plate 1, and the dust removal mechanism 5 includes a brush 51, a support assembly 52, a rotation assembly 53 and a transverse movement assembly 54, and the support assembly 52 is located between the two groups of end plates 2 and is connected to the brush 51, and the support assembly Component 52 is used to control the brush 51 to be at the bottom wall of the base plate 1. The transverse movement component 54 is located on the top wall of the base plate 1 and is connected to the support component 52. The transverse movement component 54 controls the brush 51 to move back and forth in the horizontal direction below the LED wick 11 by cooperating with the support component 52. The rotation component 53 is connected to the support component 52. The rotation component 53 controls the brush 51 to move horizontally while rotating synchronously in the vertical plane by cooperating with the support component 52. The top wall of the base plate 1 is provided with a positioning mechanism 6 that cooperates with the protective cover 3. The positioning mechanism 6 includes a rotating component 61 and a driving component 62. The rotating component 61 is located on the top wall of the base plate 1 and is connected to the protective cover 3. The driving component 62 is connected to the rotating component 61. The driving component 62 controls the protective cover 3 to rotate on the outside of the base plate 1 by cooperating with the rotating component 61.

[0027] The base plate 1 cooperates with the positioning groove 12 to support and position the protective cover 3. When the lamp set is not in use, the opening 31 on the surface of the protective cover 3 is located above the base plate 1. At this time, the protective cover 3 cooperates with the two sets of end plates 2 to seal and protect the LED wick 11 on the bottom wall of the base plate 1, effectively preventing dust in the air from adhering to the surface of the LED wick 11. When the lamp set is used for lighting, the dual-axis motor 4 drives the rotating column 41 to rotate, and the driving component 62 cooperates with the rotating component 61 to drive the protective cover 3 to rotate 180 degrees on the surface of the base plate 1. The opening 31 on the surface of the protective cover 3 rotates to the bottom of the base plate 1. When the LED wick 11 is illuminated, light passes through the opening 31, which can effectively increase the brightness of the lighting. The support component 52 supports and positions the brush 51 at the bottom wall of the base plate 1. Initially, the brush 51 is located on one side of the LED wick 11. When the dual-axis motor 4 drives the rotating column 41 to rotate, the transverse movement component 54 cooperates with the support component 52 to control the brush 51 to move from under the base plate 1 to the other side of the LED wick 11. When the brush 51 is translated, the rotation component 53 cooperates with the support component 52 to control the brush 51 to rotate under the LED wick 11. When the brush 51 rotates and moves, it can efficiently clean the dust and impurities attached to the surface of the LED wick 11, thereby effectively improving the use effect of the LED wick 11.

[0028] like Figure 5 、 Figure 8 、 Figure 9 As shown, as a preferred embodiment of the present invention, the support assembly 52 includes two groups of guide grooves 521 respectively opened on the opposite side walls of the end plates 2, and arc-shaped structures are provided at both ends of the guide grooves 521. The bottom wall of the base plate 1 is provided with two groups of relatively distributed receiving grooves 522, and the two ends of the receiving grooves 522 are respectively connected to the guide grooves 521 on the surface of the end plate 2. A sliding block 523 is slidably installed in the guide groove 521, and a cleaning rod 524 is installed to rotate together with the two groups of sliding blocks 523, and multiple groups of brushes 51 are evenly distributed on the surface of the cleaning rod 524.

[0029] The guide groove 521 supports and positions the sliding block 523, and the transverse movement assembly 54 pulls and positions the sliding block 523 within the guide groove 521. Initially, the sliding block 523 is located at one end of the guide groove 521. The two sets of sliding blocks 523 support and position the cleaning rod 524. Initially, the cleaning rod 524 and the brush 51 are located within the receiving groove 522. When the dual-axis motor 4 drives the rotating column 41 to rotate, the transverse movement assembly 54 applies a pulling force to the sliding block 523, causing the sliding block 523 to move toward the other end within the guide groove 521. The sliding blocks 523 on both sides cooperate with each other to drive the cleaning rod 524 to translate synchronously under the LED wick 11. The cleaning rod 524 drives the brush 51 to move synchronously. The rotation assembly 53 drives the cleaning rod 524 to rotate while translating. The cleaning rod 524 drives the brush 51 to rotate synchronously. The brush 51 can effectively clean dust and impurities attached to the surface of the LED wick 11.

[0030] like Figure 1 、 Figure 7 、 Figure 8 、 Figure 9 As shown, as a preferred embodiment of the present invention, the transverse movement assembly 54 includes two groups of relatively distributed wire grooves 541 opened downwardly on the top wall of the end plate 2, and the two groups of wire grooves 541 are respectively connected to the two ends of the guide groove 521, and a first winding roller 542 is fixedly installed on the surface of the rotating column 41, and a second winding roller 543 located on the outside of the first winding roller 542 is fixedly installed on the surface of the rotating column 41. The first winding roller 542 is wound with a first pulling rope 544, and the second winding roller 543 is wound with a second pulling rope 545. The winding directions of the first pulling rope 544 and the second pulling rope 545 are opposite, and the end of the first pulling rope 544 away from the first winding roller 542 passes through a group of wire grooves 541 and extends into the guide groove 521 and is connected to one side of the sliding block 523, and the end of the second pulling rope 545 away from the second winding roller 543 passes through another group of wire grooves 541 and extends into the guide groove 521 and is connected to the other side of the sliding block 523.

[0031] The dual-axis motor 4 drives the rotating column 41 to rotate, and the rotating column 41 drives the first take-up roller 542 and the second take-up roller 543 to rotate synchronously. The first take-up roller 542 unwinds the first traction rope 544, and the second take-up roller 543 rewinds the second traction rope 545. During the rewinding process, the second traction rope 545 pulls the sliding block 523 to move within the guide groove 521. When the sliding block 523 moves to the other end of the guide groove 521, the dual-axis motor 4 stops rotating. When restarted, the dual-axis motor 4 drives the rotating column 41 to rotate in the opposite direction. At this time, the first take-up roller 542 rewinds the first traction rope 544, and the second take-up roller 543 unwinds the second traction rope 545. During the rewinding process, the first traction rope 544 pulls the sliding block 523 to move toward the other side within the guide groove 521.

[0032] like Figure 5 、 Figure 8 、 Figure 9 As shown, as a preferred embodiment of the present invention, the self-rotating assembly 53 includes a fixed toothed disc 531 fixedly mounted on the surface of the cleaning rod 524, and a rack 532 located on the outside of the guide groove 521 is fixedly mounted on the side wall of the end plate 2, and the fixed toothed disc 531 is engaged with the rack 532.

[0033] When the cleaning rod 524 translates under the LED wick 11, it drives the fixed toothed disc 531 to move synchronously. The fixed toothed disc 531 rolls along the surface of the rack 532. The fixed toothed disc 531 drives the cleaning rod 524 to rotate while translating. The cleaning rod 524 drives the brush 51 to rotate synchronously. The brush 51 can efficiently clean the dust and impurities attached to the surface of the LED wick 11.

[0034] like Figure 1 、 Figure 5 、 Figure 6 As shown, as a preferred embodiment of the present invention, the rotating assembly 61 includes an annular gear ring 611 opened on the inner wall of the protective cover 3, and two groups of relatively distributed vertical plates 612 are fixedly installed on the top wall of the base plate 1. The two groups of vertical plates 612 are jointly rotatably installed with a horizontal column 613, and a positioning gear disc 614 is fixedly installed on the surface of the horizontal column 613, and the positioning gear disc 614 is meshed with the gear ring 611.

[0035] During use, the dual-axis motor 4 drives the rotating column 41 to rotate, and the drive assembly 62 controls the horizontal column 613 to rotate between the two sets of vertical plates 612. The horizontal column 613 drives the positioning gear plate 614 to rotate synchronously. The positioning gear plate 614 engages with the ring gear 611 to drive the protective cover 3 to rotate on the surface of the base plate 1. After the protective cover 3 rotates 180 degrees, the dual-axis motor 4 stops running, and the drive assembly 62 also stops running. This allows the position of the opening 31 on the surface of the protective cover 3 to be easily adjusted.

[0036] like Figure 1 、 Figure 5 、 Figure 6 As shown, as a preferred embodiment of the present invention, the driving assembly 62 includes synchronous gear plates 621 fixedly mounted on the surfaces of the rotating column 41 and the horizontal column 613 respectively, and the two sets of synchronous gear plates 621 are commonly connected to a synchronous belt 622.

[0037] The dual-axis motor 4 drives the rotating column 41 to rotate, and the rotating column 41 drives the synchronous gear plate 621 to rotate. The two sets of synchronous gear plates 621 cooperate with the synchronous belt 622 to drive the horizontal column 613 to rotate synchronously.

[0038] like Figure 1 、 Figure 7As shown in FIG. 1 , as a preferred embodiment of the present invention, a side plate 7 is fixedly mounted on the top wall of the base plate 1 , and the side plate 7 is rotatably connected to the rotating column 41 . The side plate 7 can effectively improve the stability of the rotating column 41 during rotation.

[0039] The working principle of the present invention is: the base plate 1 and the positioning groove 12 cooperate with each other to support and position the protective cover 3. When the lamp group is not in use, the opening 31 on the surface of the protective cover 3 is located above the base plate 1. At this time, the protective cover 3 cooperates with the two groups of end plates 2 to seal and protect the LED wick 11 on the bottom wall of the base plate 1, effectively preventing dust in the air from adhering to the surface of the LED wick 11.

[0040] During operation, the dual-axis motor 4 drives the rotating column 41 to rotate, which in turn drives the synchronous gear plate 621 to rotate. The two sets of synchronous gear plates 621 cooperate with the timing belt 622 to drive the synchronous rotation of the cross column 613. The cross column 613 drives the positioning gear plate 614 to rotate synchronously. The positioning gear plate 614 engages with the ring gear 611 to drive the protective cover 3 to rotate on the surface of the base plate 1. After the protective cover 3 rotates 180 degrees, the dual-axis motor 4 stops, and the opening 31 on the surface of the protective cover 3 rotates below the base plate 1. When the LED wick 11 is illuminated, light passes through the opening 31, effectively increasing the brightness of the illumination.

[0041] The rotating column 41 drives the first and second winding rollers 542 and 543 to rotate synchronously. The first winding roller 542 unwinds the first traction rope 544, and the second winding roller 543 rewinds the second traction rope 545. During the rewinding process, the second traction rope 545 pulls the sliding block 523 to move within the guide groove 521. When the sliding block 523 moves to the other end of the guide groove 521, the dual-axis motor 4 stops rotating. When the cleaning rod 524 translates below the LED wick 11, it drives the fixed gear disc 531 to move synchronously. The fixed gear disc 531 rolls along the surface of the rack 532. The fixed gear disc 531 drives the cleaning rod 524 to rotate while translating. The cleaning rod 524 drives the brush 51 to rotate synchronously. The brush 51 can effectively clean dust and impurities attached to the surface of the LED wick 11.

[0042] Upon restart, the dual-axis motor 4 drives the rotating column 41 to rotate in the opposite direction. The first reel 542 reels the first traction rope 544, while the second reel 543 unwinds the second traction rope 545. During the reeling process, the first traction rope 544 pulls the sliding block 523 toward the other side within the guide slot 521. The protective cover 3 simultaneously rotates 180 degrees in the opposite direction.

[0043] The preferred embodiments of the present invention are described in detail above, but the present invention is not limited to the above embodiments. Various changes can be made within the knowledge of ordinary technicians in this field without departing from the purpose of the present invention.

Claims

1. An LED lamp assembly structure, comprising a base plate, wherein the bottom wall of the base plate is provided with a plurality of evenly distributed LED wicks, the left and right sides of the base plate are respectively provided with positioning grooves, and the front and rear ends of the base plate are respectively provided with end plates, characterized in that: A cylindrical protective cover is rotatably mounted on the outer side of the base plate. The protective cover passes through two sets of positioning slots. An opening is opened on the surface of the protective cover. A dual-axis motor is fixedly mounted on the top wall of the base plate. The output shafts at both ends of the dual-axis motor are respectively fixedly mounted with rotating columns. The surface of the bottom plate is provided with a dust removal mechanism that cooperates with the LED wick. The dust removal mechanism includes a brush, a support assembly, a rotation assembly and a transverse movement assembly. The support assembly is located between the two sets of end plates and is connected to the brush. The support assembly is used to control the brush to be located at the bottom wall of the bottom plate. The transverse moving assembly is located on the top wall of the bottom plate and is connected to the support assembly. The transverse moving assembly is connected to the rotating column. The transverse moving assembly controls the brush to move back and forth in the horizontal direction below the LED lamp core by cooperating with the support assembly. The self-rotating assembly is connected to the supporting assembly, and the self-rotating assembly cooperates with the supporting assembly to control the brush to move horizontally while rotating synchronously in the vertical plane; The top wall of the base plate is provided with a positioning mechanism that cooperates with the protective cover. The positioning mechanism includes a rotating assembly and a driving assembly. The rotating assembly is located on the top wall of the base plate and is connected to the protective cover. The driving assembly is connected to the rotating assembly, and the driving assembly is connected to the rotating column. The driving assembly controls the protective cover to rotate on the outside of the base plate by cooperating with the rotating assembly.

2. The LED lamp group structure according to claim 1, characterized in that: The support assembly includes two groups of guide grooves respectively opened on the two side walls opposite to each other of the end plates, and arc-shaped structures are provided at both ends of the guide grooves. The bottom wall of the base plate is provided with two groups of relatively distributed storage grooves, and the two ends of the storage grooves are respectively connected to the guide grooves on the surface of the end plates. A sliding block is slidably installed in the guide groove, and a cleaning rod is installed on the two groups of sliding blocks for rotation together, and multiple groups of brushes are evenly distributed on the surface of the cleaning rod.

3. The LED lamp group structure according to claim 2, characterized in that: The traverse assembly includes two groups of relatively distributed wire grooves opened downwardly from the top wall of the end plate, and the two groups of wire grooves are respectively connected to the two ends of the guide groove, and the first winding roller is fixedly installed on the surface of the rotating column, and the second winding roller is fixedly installed on the surface of the rotating column, and the first pulling rope is wound on the surface of the first winding roller, and the second pulling rope is wound on the surface of the second winding roller. The winding directions of the first traction rope and the second traction rope are opposite, and one end of the first traction rope away from the first winding roller passes through a group of wire grooves and extends into the guide groove and is connected to one side of the sliding block, and one end of the second traction rope away from the second winding roller passes through another group of wire grooves and extends into the guide groove and is connected to the other side of the sliding block.

4. The LED lamp group structure according to claim 2, characterized in that: The self-rotating assembly includes a fixed toothed disc fixedly mounted on the surface of the cleaning rod, a rack located outside the guide groove is fixedly mounted on the side wall of the end plate, and the fixed toothed disc is meshed with the rack.

5. The LED lamp group structure according to claim 1, characterized in that: The rotating assembly includes an annular gear ring opened on the inner wall of the protective cover, two groups of relatively distributed vertical plates are fixedly installed on the top wall of the bottom plate, and the two groups of vertical plates are jointly rotatably installed with a horizontal column. A positioning gear disk is fixedly installed on the surface of the horizontal column, and the positioning gear disk is meshed with the gear ring.

6. The LED lamp group structure according to claim 5, characterized in that: The driving assembly includes four synchronous gear discs, which are fixedly installed on the rotating column and the surface of the transverse column in pairs. The two synchronous gear discs distributed relatively on the rotating column and the surface of the transverse column are commonly connected with a synchronous belt.

7. The LED lamp group structure according to claim 1, characterized in that: The top wall of the bottom plate is fixedly mounted with a side plate, and the side plate is rotatably connected to the rotating column.

Citation Information

Patent Citations

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