Wiring structure of ultraviolet lamp tube

By designing a UV lamp terminal block with a reflective and transmission structure, the problem of the protective structure affecting light transmission is solved, the uniform transmission and full utilization of light are achieved, and the use effect of the UV lamp is improved.

CN120627009AActive Publication Date: 2025-09-12SOPHIE (JIANGSU) ELECTRONIC TECH CO LTD
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Patent Information

Application Number
CN202511128573.7
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-08-13
Publication Date
2025-09-12
Estimated Expiration
2045-08-13

AI Technical Summary

Technical Problem

The existing protective structure of the ultraviolet lamp socket affects light transmission, resulting in poor performance of the ultraviolet lamp.

Method used

A UV lamp wiring structure including upper and lower wiring sockets is designed. The reflective structure and transmission structure are adopted, and components such as diffuse reflection lenses, refraction mirror structures and light-transmitting plates are used to achieve uniform transmission and protection of light.

Benefits of technology

The uniform transmission and full utilization of the ultraviolet lamp light are achieved, and the use effect and efficiency of the ultraviolet lamp are improved.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses an ultraviolet lamp tube wiring structure, and relates to the technical field of wiring structures. The LED lamp tube comprises an upper wire holder and a lower wire holder distributed below the upper wire holder, a lamp tube body is clamped between the upper wire holder and the lower wire holder, a light reflecting structure is distributed between the upper wire holder and the lower wire holder, a transmission structure is detachably connected to the lower wire holder, and the light reflecting structure and the transmission structure are detachably connected. The reflective structure comprises a protective rod, a mounting plate is fixedly connected to the inner side of the protective rod, a diffuse reflection lens is fixedly connected to the inner side of the mounting plate, a light guide structure is inserted into the diffuse reflection lens, the light guide structure comprises a connecting pipe inserted into the protective rod, and a diffuse reflection glass shell is fixedly connected to one end of the connecting pipe. The other end of the connecting pipe is fixedly connected with a rectangular pipe. When the structure is actually used, light sources generated by the lamp tube body can be transmitted, and meanwhile the lamp tube body can be protected.
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Description

Technical Field

[0001] The invention belongs to the technical field of wiring structures, and in particular relates to a wiring structure for an ultraviolet lamp. Background Art

[0002] A UV lamp is a device that emits ultraviolet light. It's essential for observing the fluorescence and phosphorescence characteristics of samples and is also a physical method for sterilization and disinfection. When in use, the UV lamp socket transmits electrical energy to the UV lamp's tube. To prevent damage to the UV lamp's tube, the socket is equipped with a protective structure. This protective structure is typically made of opaque plastic sheets or strips. While this structure does protect the UV lamp's tube, it can affect the UV radiation's ability to reach the outside world, hindering personnel's ability to use the UV lamp.

[0003] Therefore, the existing wiring structure cannot meet the needs in actual use, so an improved technology is needed to solve the above problems. Summary of the Invention

[0004] The object of the present invention is to provide a wiring structure for an ultraviolet lamp to solve the above-mentioned problems.

[0005] To solve the above technical problems, the present invention is achieved through the following technical solutions: The present invention provides a wiring structure for an ultraviolet lamp tube, comprising an upper wiring seat and a lower wiring seat distributed below the upper wiring seat, wherein a lamp tube body is clamped between the upper wiring seat and the lower wiring seat, a reflective structure is distributed between the upper wiring seat and the lower wiring seat, a transmission structure is detachably connected to the lower wiring seat, and the reflective structure and the transmission structure are detachably connected; The reflective structure includes a protective rod, the inner side of the protective rod is fixedly connected to a mounting plate, the inner side of the mounting plate is fixedly connected to a diffuse reflection lens, and the diffuse reflection lens is plugged with a light guide structure; The light guide structure includes a connecting tube plugged into the protective rod, one end of the connecting tube is fixedly connected to the diffuse reflection glass shell, and the other end of the connecting tube is fixedly connected to the rectangular tube; When in use, the rectangular tube transmits the light emitted by the lamp body to the interior of the connecting tube, and at the same time, the light inside the connecting tube is transmitted to the interior of the diffuse reflection glass shell.

[0006] Furthermore, rectangular holes are provided in the middle of the protective rod, the mounting plate and the diffuse reflection lens, and clamping holes are provided on the top and bottom walls of the rectangular hole. The connecting tube is plugged into the protective rod through the rectangular hole, and the rectangular tube is plugged into the mounting plate and the diffuse reflection lens through the rectangular hole. The inner walls of the connecting tube and the rectangular tube are coated with a reflective coating, and the connecting tube is clamped into the protective rod through a second clamping block, and the rectangular tube is clamped into the mounting plate and the diffuse reflection lens through a first clamping block.

[0007] Furthermore, a second refractor structure is embedded in the interior of the diffuse reflection glass shell, and a first refractor structure is embedded in the interior of the rectangular tube. The structures of the first refractor structure and the second refractor structure are the same. The portion where the inner wall of the diffuse reflection glass shell is connected to the connecting tube is fixedly connected to a third light-transmitting plate, the portion where the inner wall of the rectangular tube is connected to the connecting tube is fixedly connected to the first light-transmitting plate, and the end of the inner wall of the rectangular tube facing away from the first light-transmitting plate is fixedly connected to the second light-transmitting plate, and the end face of the second light-transmitting plate is flush with the end face of the rectangular tube.

[0008] Furthermore, the top and bottom surfaces of the protective rod are detachably connected to a limiting structure, and the limiting structure includes a fixing plate, which is fixedly connected to the protective rod by fixing bolts, and the top surface of the fixing plate is fixedly connected to a connecting shell, and the inner wall of the connecting shell is fixedly connected to a limiting clip at equal intervals, and a rotating column is inserted into the connecting shell, and the rotating column is fixedly connected to a rotating clip at equal intervals inside the connecting shell, and the rotating clip is engaged with the limiting clip, and the upper end of the rotating column is fixedly connected to an arc-shaped clip.

[0009] Furthermore, the transmission structure includes a rotating ring inserted into the lower wiring seat, and a card interface is provided on the top surface of the rotating ring. The rotating ring is clamped with the arc-shaped clamping block through the card interface. The lower end of the rotating ring is fixedly connected to a transmission gear ring, and a transmission gear is engaged with the transmission gear ring. The bottom surface of the transmission gear is detachably connected to a transmission motor, and the fixed end of the transmission motor is fixedly connected to the bottom wall of the inner cavity of the lower wiring seat.

[0010] Furthermore, the inner wall of the rotating ring is in contact with the power socket, and the bottom wall of the inner cavity of the lower wiring socket is detachably connected to a power connection plate, the conductive end of the power connection plate is inserted into the interior of the power socket, and the bottom surface of the power socket is fixedly connected to a fixing column, and the lower end of the fixing column is fixedly connected to the bottom wall of the inner cavity of the lower wiring socket.

[0011] Furthermore, the power socket is sleeved with the lower part of the lamp tube body, the conductive end of the power plate is abutted against the lamp tube body through the power socket, the external circuit of the power plate passes through the lower terminal socket, the upper end of the lamp tube body is detachably connected to the upper terminal socket, the upper part of the protective rod is slidably connected to the upper terminal socket through an arc-shaped block, and the conductive end of the upper terminal socket is electrically connected to the power socket.

[0012] Furthermore, a support rod is detachably connected to the power socket, an ultraviolet light sensor is detachably connected to the power socket, an upper end of the support rod is detachably connected to a support ring, and the support ring is sleeved on the middle part of the lamp body.

[0013] The present invention has the following beneficial effects: When actually used, the structure can transmit the light source generated by the lamp tube body and protect the lamp tube body at the same time.

[0014] When the structure is actually used, the angle of light transmission can be adjusted to improve the use effect of the ultraviolet lamp.

[0015] When the structure is actually used, the ultraviolet rays generated by the lamp body can be evenly transmitted to the outside, thereby improving the utilization efficiency of the ultraviolet rays. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the following briefly introduces the drawings required for describing the embodiments. Obviously, the drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without creative work.

[0017] Figure 1 It is a structural schematic diagram of the present invention; Figure 2 This is a diagram showing the connection structure between the transmission motor and the lower terminal block in the present invention; Figure 3 This is a diagram showing the connection structure between the arc-shaped block and the protective rod in the present invention; Figure 4 This is a structural diagram of the connection between the diffuse reflection lens and the mounting plate in the present invention; Figure 5 This is a diagram of the connection structure of the connecting tube, the diffuse reflection glass shell and the rectangular tube in the present invention; Figure 6 is a cross-sectional view of the diffuse reflection glass shell, the connecting tube and the rectangular tube in the present invention; Figure 7 This is a diagram showing the connection structure between the rotating column and the arc-shaped clamping block in the present invention; Figure 8 This is a diagram of the connection structure of the limit clip and the rotation clip in the present invention.

[0018] In the accompanying drawings, the components represented by the reference numerals are as follows: 1. Upper terminal block; 2. Lamp body; 3. Support ring; 4. Protective rod; 5. Support rod; 6. Power socket; 7. Lower terminal block; 8. Rotating ring; 9. Diffuse reflector lens; 10. Power strip; 11. Fixing column; 12. Transmission motor; 13. Transmission gear; 14. Transmission gear ring; 15. Card interface; 16. Diffuse reflector glass shell; 17. Arc-shaped card block; 18. Connecting shell; 19. Rectangular tube; 20. Rectangular hole; 21. Mounting plate; 22. First refractor structure; 23. Rotating column; 24. Fixing plate; 25. Fixing bolt; 26. Rotating card strip; 27. Limiting card strip; 28. First light-transmitting plate; 29. ​​Second light-transmitting plate; 30. Connecting tube; 31. Reflective coating; 32. Third light-transmitting plate; 33. Second refractor structure; 34. First card block; 35. Second card block; 36. Card hole; 37. UV sensor. DETAILED DESCRIPTION

[0019] The technical solutions in the embodiments of the present invention will be described clearly and completely below with reference to the accompanying drawings in the embodiments of the present invention.

[0020] See also Figure 1-8 As shown, the present invention is a wiring structure for an ultraviolet lamp tube, comprising an upper wiring seat 1 and a lower wiring seat 7 distributed below the upper wiring seat 1, a lamp tube body 2 is clamped between the upper wiring seat 1 and the lower wiring seat 7, a reflective structure is distributed between the upper wiring seat 1 and the lower wiring seat 7, a transmission structure is detachably connected to the lower wiring seat 7, and the reflective structure and the transmission structure are detachably connected. When actually in use, the lamp tube body 2 can generate ultraviolet light, and the lamp tube body 2 can be a structure currently available on the market; The reflective structure includes a protective rod 4, the inner side of which is fixedly connected to a mounting plate 21, the inner side of which is fixedly connected to a diffuse reflection lens 9, the diffuse reflection lens 9 being plugged with a light guide structure. The diffuse reflection lens 9 is a lens structure with a relatively rough surface, which can reflect the light generated by the lamp body 2, thereby achieving uniform transmission of the light generated by the lamp body 2 to the outside, thereby achieving full utilization of the ultraviolet light generated by the lamp body 2; The light guide structure includes a connecting tube 30 plugged into the protective rod 4. One end of the connecting tube 30 is fixedly connected to the diffuse reflection glass shell 16, and the other end of the connecting tube 30 is fixedly connected to the rectangular tube 19. The diffuse reflection glass shell 16 is a rectangular shell structure made of glass. The outer wall of the diffuse reflection glass shell 16 has a frosted structure, which can diffusely reflect the light generated by the lamp body 2 to the outside, thereby achieving irregular transmission of the light generated by the lamp body 2 to the outside, thereby fully utilizing the ultraviolet light generated by the lamp body 2. When in use, the rectangular tube 19 transmits the light emitted by the lamp body 2 to the inside of the connecting tube 30, and at the same time, the light inside the connecting tube 30 is transmitted to the inside of the diffuse reflection glass shell 16, which can conduct and utilize the light generated by the lamp body 2, avoid the loss of ultraviolet light generated by the lamp body 2, and fully utilize the light generated by the lamp body 2.

[0021] A rectangular hole 20 is provided in the middle of the protective rod 4, the mounting plate 21 and the diffuse reflection lens 9, and a clamping hole 36 is provided on the top and bottom walls of the rectangular hole 20. The connecting tube 30 is plugged into the protective rod 4 through the rectangular hole 20, and the rectangular tube 19 is plugged into the mounting plate 21 and the diffuse reflection lens 9 through the rectangular hole 20. The inner walls of the connecting tube 30 and the rectangular tube 19 are coated with a reflective coating 31. The connecting tube 30 is clamped to the protective rod 4 through a second clamping block 35, and the rectangular tube 19 is clamped to the mounting plate 21 and the diffuse reflection lens 9 through a first clamping block 34. The material of the reflective coating 31 can be selected from existing materials on the market. In this document, it plays the role of reflecting the light generated by the lamp tube body 2, thereby realizing the transmission of the light generated by the lamp tube body 2 to the outside, avoiding the loss of ultraviolet light generated by the lamp tube body 2, and realizing the full utilization of the ultraviolet light generated by the lamp tube body 2.

[0022] A second refractor structure 33 is embedded in the interior of the diffuse reflection glass shell 16, and a first refractor structure 22 is embedded in the interior of the rectangular tube 19. The structures of the first refractor structure 22 and the second refractor structure 33 are the same. The portion where the inner wall of the diffuse reflection glass shell 16 is connected to the connecting tube 30 is fixedly connected to the third light-transmitting plate 32, and the portion where the inner wall of the rectangular tube 19 is connected to the connecting tube 30 is fixedly connected to the first light-transmitting plate 28. The end of the inner wall of the rectangular tube 19 facing away from the first light-transmitting plate 28 is fixedly connected to the second light-transmitting plate 29, and the end face of the second light-transmitting plate 29 is flush with the end face of the rectangular tube 19. The second refractor structure 33 and the first refractor structure 22 are composed of tilted mirrors, which are distributed in a matrix shape and have an inclination angle of thirty degrees. The arrangement of the second refractor structure 33 and the first refractor structure 22 can evenly transmit light to the diffuse reflection glass shell 16, reduce the loss of ultraviolet light generated by the lamp tube body 2, and thereby achieve sufficient transmission of light generated by the lamp tube body 2 to the outside, thereby achieving full utilization of the ultraviolet light generated by the lamp tube body 2.

[0023] The top and bottom surfaces of the protective rod 4 are detachably connected to the limiting structure, and the limiting structure includes a fixing plate 24, which is fixedly connected to the protective rod 4 by fixing bolts 25. The top surface of the fixing plate 24 is fixedly connected to the connecting shell 18, and the inner wall of the connecting shell 18 is fixedly connected to the limiting clamping strips 27 at equal intervals. A rotating column 23 is inserted into the connecting shell 18, and the rotating clamping strips 26 are fixedly connected to the inside of the connecting shell 18 at equal intervals on the rotating column 23. The rotating clamping strips 26 are clamped with the limiting clamping strips 27. The upper end of the rotating column 23 is fixedly connected to the arc clamping block 17. When the rotating column 23 drives the rotating clamping strips 26 to rotate, the rotating clamping strips 26 can be clamped between every two limiting clamping strips 27, thereby limiting the use angle of the protective rod 4, so that the ultraviolet light generated by the lamp tube body 2 can be transmitted to the outside through the diffuse reflection lens 9, so that the light generated by the lamp tube body 2 is irregularly transmitted to the outside, and the ultraviolet light generated by the lamp tube body 2 can be fully utilized.

[0024] The transmission structure includes a rotating ring 8 plugged into the lower wiring seat 7, and a card interface 15 is provided on the top surface of the rotating ring 8. The rotating ring 8 is clamped with the arc-shaped clamping block 17 through the card interface 15. The lower end of the rotating ring 8 is fixedly connected to a transmission gear ring 14, and a transmission gear 13 is engaged with the transmission gear ring 14. The bottom surface of the transmission gear 13 is detachably connected to a transmission motor 12. The fixed end of the transmission motor 12 is fixedly connected to the bottom wall of the inner cavity of the lower wiring seat 7. When the output shaft of the transmission motor 12 drives the transmission gear 13 to rotate, the rotating ring 8 can be rotated on the lower wiring seat 7, and the protective rod 4 can be rotated around the axis of the rotating ring 8, thereby driving the protective rod 4 to rotate around the axis of the lower wiring seat 7, so as to realize the irregular reflection of the light generated by the diffuse reflection lens 9 on the lamp tube body 2, and to fully utilize the ultraviolet light generated by the lamp tube body 2.

[0025] The inner wall of the rotating ring 8 is in contact with the power socket 6, and the bottom wall of the inner cavity of the lower wiring socket 7 is detachably connected to the power plate 10. The conductive end of the power plate 10 is inserted into the interior of the power socket 6. The bottom surface of the power socket 6 is fixedly connected with a fixing column 11. The lower end of the fixing column 11 is fixedly connected to the bottom wall of the inner cavity of the lower wiring socket 7. The power socket 6 is sleeved with the lower part of the lamp tube body 2. The conductive end of the power plate 10 is in contact with the lamp tube body 2 through the power socket 6. The external connection line of the power plate 10 passes through the lower wiring socket 7. The upper end of the lamp tube body 2 is detachably connected to the upper wiring socket 1. The upper part of the protective rod 4 is slidably connected to the upper wiring socket 1 through the arc-shaped block 17. The conductive end of the upper wiring socket 1 is electrically connected to the power plate 10, so that external electric energy can be supplied to the lamp tube body 2 through the power plate 10. The upper part of the protective rod 4 is slidably connected to the upper wiring seat 1 through the arc-shaped block 17, so that the protective rod 4 can be stably rotated between the upper wiring seat 1 and the lower wiring seat 7, so that the ultraviolet light generated by the lamp body 2 can be transmitted to the outside through the diffuse reflection lens 9, so that the light generated by the lamp body 2 is irregularly transmitted to the outside, and the ultraviolet light generated by the lamp body 2 can be fully utilized. At the same time, the ultraviolet light generated by the lamp body 2 can pass through the second light-transmitting plate 29 to be transmitted to the first refraction mirror structure 22, and the ultraviolet light generated by the lamp body 2 can be transmitted to the diffuse reflection glass shell 16, so that the light generated by the lamp body 2 is fully transmitted to the outside, and the ultraviolet light generated by the lamp body 2 is fully utilized.

[0026] The power socket 6 is detachably connected to a support rod 5, and the power socket 6 is detachably connected to a UV sensor 37. The upper end of the support rod 5 is detachably connected to a support ring 3, and the support ring 3 is sleeved on the middle part of the lamp tube body 2, so that the lamp tube body 2 can be firmly connected between the upper terminal block 1 and the lower terminal block 7. The UV sensor 37 is electrically connected to the transmission motor 12. When the UV sensor 37 detects that the lamp tube body 2 generates ultraviolet light, the UV sensor 37 can transmit a signal to the control end of the transmission motor 12, thereby realizing that the UV sensor 37 controls the transmission motor 12 to start and stop working.

[0027] When the wiring structure is actually used, the staff will place the lower wiring seat 7 in a suitable position in advance, and then connect the external wire of the terminal plate 10 to the external power socket. The terminal plate 10 can transmit external electrical energy to the lamp tube body 2. When the lamp tube body 2 generates ultraviolet light, the ultraviolet sensor 37 can detect the ultraviolet light generated by the lamp tube body 2, and the ultraviolet sensor 37 can transmit a signal to the control end of the transmission motor 12, thereby realizing that the ultraviolet sensor 37 controls the transmission motor 12 to turn on and off. When the transmission motor 12 is working, the output shaft of the transmission motor 12 can drive the transmission gear ring 14 to rotate through the transmission gear 13, so that the rotating ring 8 can rotate on the lower wiring seat 7, and the rotating ring 8 can drive the protective rod 4 to rotate around the center of the lower wiring seat 7, so that the second light-transmitting plate 29 can transmit the ultraviolet light to the inside of the rectangular tube 19, and the diffuse reflection glass shell 16 can transmit the ultraviolet light generated by the lamp tube body 2 to the outside. When the ultraviolet light generated by the lamp tube body 2 penetrates the second light-transmitting plate 29 to the first When the refractor structure 22 transmits, the first refractor structure 22 can transmit the ultraviolet light to the first light-transmitting plate 28, and then the first light-transmitting plate 28 transmits the ultraviolet light to the inside of the connecting tube 30, and the reflective coating 31 inside the connecting tube 30 can transmit the ultraviolet light to the third light-transmitting plate 32, and the third light-transmitting plate 32 can transmit the ultraviolet light to the second refractor structure 33. At this time, the second refractor structure 33 can transmit the ultraviolet light to the reflective glass shell 16, thereby realizing the diffuse reflection glass shell 16 to transmit the ultraviolet light to the outside. Before the lamp tube body 2 works, the staff can pull the protective rod 4. When the protective rod 4 is pulled, the protective rod 4 can drive the connecting shell 18 to rotate. At this time, the rotating clip 26 can be clamped between every two limit clips 27, thereby realizing the angle limit fixation of the protective rod 4, which can facilitate the staff to make the diffuse reflection lens 9 reflect the ultraviolet light generated by the lamp tube body 2 to the outside. At the same time, the ultraviolet light generated by the lamp tube body 2 can be transmitted to the outside through the diffuse reflection lens 9, so that the ultraviolet light generated by the lamp tube body 2 can be fully utilized.

[0028] The above are only preferred embodiments of the present invention and do not limit the present invention. Any modification to the technical solutions described in the aforementioned embodiments, any equivalent replacement of some of the technical features therein, and any modification, equivalent replacement, and improvement made are within the scope of protection of the present invention.

Claims

1. A wiring structure for an ultraviolet lamp tube, comprising an upper wiring seat (1) and a lower wiring seat (7) distributed below the upper wiring seat (1), wherein a lamp tube body (2) is clamped between the upper wiring seat (1) and the lower wiring seat (7), and characterized in that: A reflective structure is distributed between the upper wiring seat (1) and the lower wiring seat (7), a transmission structure is detachably connected to the lower wiring seat (7), and the reflective structure and the transmission structure are detachably connected; The reflective structure comprises a protective rod (4), a mounting plate (21) is fixedly connected to the inner side of the protective rod (4), a diffuse reflection lens (9) is fixedly connected to the inner side of the mounting plate (21), and a light guide structure is plugged into the diffuse reflection lens (9); The light-guiding structure comprises a connecting tube (30) plugged into the protective rod (4), one end of the connecting tube (30) being fixedly connected to a diffuse reflection glass shell (16), and the other end of the connecting tube (30) being fixedly connected to a rectangular tube (19); When in use, the rectangular tube (19) transmits the light emitted by the lamp body (2) to the interior of the connecting tube (30), and simultaneously transmits the light inside the connecting tube (30) to the interior of the diffuse reflection glass shell (16).

2. The ultraviolet lamp wiring structure according to claim 1, characterized in that: The protective rod (4), the mounting plate (21) and the diffuse reflection lens (9) are all provided with rectangular holes (20) in the middle, and the top and bottom walls of the rectangular hole (20) are both provided with clamping holes (36). The connecting tube (30) is plugged into the protective rod (4) through the rectangular hole (20), and the rectangular tube (19) is plugged into the mounting plate (21) and the diffuse reflection lens (9) through the rectangular hole (20). The inner walls of the connecting tube (30) and the rectangular tube (19) are both coated with a reflective coating (31). The connecting tube (30) is clamped into the protective rod (4) through a second clamping block (35), and the rectangular tube (19) is clamped into the mounting plate (21) and the diffuse reflection lens (9) through a first clamping block (34).

3. The ultraviolet lamp wiring structure according to claim 1, characterized in that: A second refractor structure (33) is embedded in the interior of the diffuse reflection glass shell (16), and a first refractor structure (22) is embedded in the interior of the rectangular tube (19). The first refractor structure (22) and the second refractor structure (33) have the same structure. A portion where the inner wall of the diffuse reflection glass shell (16) communicates with the connecting tube (30) is fixedly connected to a third light-transmitting plate (32). A portion where the inner wall of the rectangular tube (19) communicates with the connecting tube (30) is fixedly connected to a first light-transmitting plate (28). An end of the inner wall of the rectangular tube (19) facing away from the first light-transmitting plate (28) is fixedly connected to a second light-transmitting plate (29). An end surface of the second light-transmitting plate (29) is flush with an end surface of the rectangular tube (19).

4. The ultraviolet lamp wiring structure according to claim 1, characterized in that: The top and bottom surfaces of the protective rod (4) are detachably connected to a limiting structure, wherein the limiting structure comprises a fixing plate (24), wherein the fixing plate (24) is fixedly connected to the protective rod (4) via fixing bolts (25), wherein the top surface of the fixing plate (24) is fixedly connected to a connecting shell (18), wherein the inner wall of the connecting shell (18) is fixedly connected to a limiting clamping strip (27) at equal intervals, wherein a rotating column (23) is plugged into the connecting shell (18), wherein the rotating clamping strip (26) is fixedly connected to the rotating column (23) at equal intervals inside the connecting shell (18), wherein the rotating clamping strip (26) is clamped to the limiting clamping strip (27), and wherein the upper end of the rotating column (23) is fixedly connected to an arc-shaped clamping block (17).

5. The ultraviolet lamp wiring structure according to claim 1, characterized in that: The transmission structure comprises a rotating ring (8) plugged into the lower wiring seat (7), a card interface (15) is provided on the top surface of the rotating ring (8), the rotating ring (8) is card-engaged with the arc-shaped card block (17) through the card interface (15), the lower end of the rotating ring (8) is fixedly connected to a transmission gear ring (14), a transmission gear (13) is meshed on the transmission gear ring (14), the bottom surface of the transmission gear (13) is detachably connected to a transmission motor (12), and the fixed end of the transmission motor (12) is fixedly connected to the bottom wall of the inner cavity of the lower wiring seat (7).

6. The ultraviolet lamp wiring structure according to claim 5, characterized in that: The inner wall of the rotating ring (8) is in contact with the power receiving seat (6), the bottom wall of the inner cavity of the lower wiring seat (7) is detachably connected to the power receiving plate (10), the conductive end of the power receiving plate (10) is inserted into the interior of the power receiving seat (6), the bottom surface of the power receiving seat (6) is fixedly connected to a fixing column (11), and the lower end of the fixing column (11) is fixedly connected to the bottom wall of the inner cavity of the lower wiring seat (7).

7. The ultraviolet lamp wiring structure according to claim 6, characterized in that: The power connection base (6) is sleeved with the lower part of the lamp tube body (2), the conductive end of the power connection plate (10) is in contact with the lamp tube body (2) through the power connection base (6), the external connection circuit of the power connection plate (10) is passed through the lower wiring base (7), the upper end of the lamp tube body (2) is detachably connected to the upper wiring base (1), the upper part of the protective rod (4) is slidably connected to the upper wiring base (1) through the arc-shaped clamping block (17), and the conductive end of the upper wiring base (1) is electrically connected to the power connection plate (10).

8. The ultraviolet lamp wiring structure according to claim 6, characterized in that: The power socket (6) is detachably connected to a support rod (5), the power socket (6) is detachably connected to an ultraviolet light sensor (37), the upper end of the support rod (5) is detachably connected to a support ring (3), and the support ring (3) is sleeved on the middle part of the lamp body (2).

Citation Information

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