Track lamp set with quick-connection conductive structure
By adopting a quick-connected conductive structure in the track light, and using the clamping and fixing and driving the conductive strips and the driving device to drive the conductive sheet to move, the existing track lights are solved, and the rapid disassembly and smooth sliding of the track lights is achieved.
Patent Information
- Application Number
- CN202421675909.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-15
- Publication Date
- 2025-05-27
- Estimated Expiration
- 2034-07-15
AI Technical Summary
The magnetically absorbed and fixed structure of existing track lamps causes large friction when the lamp body slides on the track, and the slippage is not smooth, and insufficient adsorption force may cause the lamp body to fall.
The quick-connected conductive structure is adopted, including the track and the lamp body, which is fixed by the clamping and fixing of the conductive strip and the conductive sheet, and the driving device is used to drive the conductive sheet to move quickly or unlock, so as to achieve stable fixation and position adjustment of the lamp body.
It realizes rapid disassembly and assembly and smooth slip of track lights, reduces friction and wear, and ensures stable fixation and safe operation of the lamp body.
Smart Images

Figure CN222911546U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of track lights, in particular to a track light group with a quick-connection conductive structure. Background Art
[0002] With the development of LED technology, the advantages of LED lamps are becoming increasingly prominent, and gradually traditional lamps are being replaced by LED lamps. Among the lamps for building decoration, track lights are a relatively outstanding type. Because track lights can be used as the main light in a small area and can also cooperate with other light sources. Track lights have a simple appearance and can also become a high-end small accessory. Track lights are generally used as a specific type of spotlight, mostly for commercial use, such as in shopping malls, car exhibitions, jewelry, star hotels, brand clothing stores, high-end clubs, museums, chain shopping malls, brand business halls, professional display windows, counters and other key lighting places. Currently, the common fixing method of track lights is magnetic attraction. When the track light slides on the track, the adsorption force of the magnetic attraction fixation is too large, which will increase the friction of the track light sliding on the track, making the track light slide smoothly; if the magnetic attraction force of the magnet is too small, when the track light slides on the track, the track light may fall off.
[0003] It can be seen that the existing technology still needs to be improved. Content of the Utility Model
[0004] In view of the deficiencies of the above-mentioned existing technology, the purpose of the present utility model is to provide a track light group with a quick-connection conductive structure to solve the problem that it is difficult for the lamp body of the existing track light magnetic attraction fixation structure to slide on the track.
[0005] In order to achieve the above purpose, the present utility model adopts the following technical solutions:
[0006] A track light group with a quick-connection conductive structure, comprising:
[0007] A track, the track includes a track body, two first clamping grooves and two conductive strips. The two first clamping grooves are respectively arranged on both sides inside the track body along the length direction of the track, and the two conductive strips are respectively arranged in the two first clamping grooves in a one-to-one correspondence;
[0008] Lamp body, the lamp body includes a lamp base, a lamp head, a circuit board, a driving device, two clamping components and two conductive sheets. The lamp head is hinged to the lamp base. The circuit board is arranged inside the lamp base. The two clamping components are respectively arranged on both sides of one end of the lamp base. The two clamping components are respectively clamped into the two first clamping grooves in a one-to-one correspondence. The driving device is arranged on the other end of the lamp base. The two conductive sheets are respectively arranged on both sides of the driving device. The two conductive sheets are respectively abutted against the two conductive bars in a one-to-one correspondence. The two sides of the lamp base are respectively provided with a first communication port and a second communication port. The first communication port is arranged corresponding to any one of the conductive sheets. The second communication port is arranged corresponding to the other conductive sheet. The two conductive sheets and the lamp head are respectively electrically connected to the circuit board.
[0009] For an orbital lamp set with a quick-connect conductive structure as described above, the driving device includes a driving member and a rotating column. The driving member is arranged inside the lamp base. The rotating column is connected to the driving member. The two conductive sheets are respectively arranged on both sides of the outer surface of the rotating column.
[0010] For an orbital lamp set with a quick-connect conductive structure as described above, the driving member includes a rotating disk and a plurality of protruding portions. The rotating disk is coaxially arranged with the rotating column. The rotating disk is connected to one end of the rotating column. The plurality of protruding portions are arranged around the circumferential side of the rotating disk. The two sides of the lamp base are respectively provided with a first communication groove and a second communication groove corresponding to the rotating disk. The diameter of the rotating disk is greater than the distance between the first communication groove and the second communication groove.
[0011] For an orbital lamp set with a quick-connect conductive structure as described above, the structures of the first communication port and the second communication port are the same. The first communication port and the second communication port are symmetrically arranged along the central axis of the rotating column. The first communication port includes a through hole and a communication groove. The through hole is arranged corresponding to the rotating column. The communication groove is arranged on one side of the through hole. The communication groove is communicated with the through hole.
[0012] For an orbital lamp set with a quick-connect conductive structure as described above, the track body includes a housing and two insulating strips. The two sides inside the housing are respectively provided with connection grooves. The two insulating strips are respectively clamped into the two connection grooves in a one-to-one correspondence. The two first clamping grooves are respectively arranged on the two insulating strips in a one-to-one correspondence.
[0013] An orbital lamp set with a quick-connect conductive structure as described above, the rail body further includes two second clamping grooves, the two second clamping grooves are respectively arranged on the two insulating strips in a one-to-one correspondence, the second clamping grooves and the first clamping grooves are arranged adjacent to each other along the height direction of the insulating strip, the rotating column is further provided with a first clamping block and a second clamping block, the first clamping block and any one of the conductive sheets are arranged adjacent to each other along the height direction of the rotating column, and the second clamping block and the other conductive sheet are arranged adjacent to each other along the height direction of the rotating column.
[0014] An orbital lamp set with a quick-connect conductive structure as described above, the clamping assembly includes a communication hole, a spring piece and a clamping member, the communication hole is arranged on the lamp holder, the spring piece is arranged in the communication hole, one end of the spring piece is connected to the edge of one side of the communication hole, and the clamping member is arranged on the side of the spring piece facing away from the lamp holder.
[0015] An orbital lamp set with a quick-connect conductive structure as described above, the clamping member is in a quadrangular pyramid shape, and the tip side of the clamping member faces away from the spring piece.
[0016] An orbital lamp set with a quick-connect conductive structure as described above, the conductive sheet is provided with an arc portion and two chamfers, the arc portion is arranged on the side of the conductive sheet away from the driving device, and the two chamfers are respectively arranged at both ends of the arc portion.
[0017] Beneficial effects:
[0018] The utility model discloses an orbital lamp set with a quick-connect conductive structure, including the rail and the lamp body, the two conductive strips are respectively clamped and fixed through the two first clamping grooves in the rail body, the lamp holder is embedded into the rail body, the two clamping assemblies are respectively clamped into the two first clamping grooves in a one-to-one correspondence to fix one end of the lamp holder; the driving device drives the two conductive sheets to respectively pass through the first communication port and the second communication port and move towards the two first clamping grooves, so as to clamp and fix the other end of the lamp holder, and the two conductive sheets are respectively in contact with the two conductive strips to form a closed circuit, realizing the conductive effect. An orbital lamp set with a quick-connect conductive structure disclosed in this application, one end of the lamp body is clamped and connected through the clamping assembly, and the other end drives the two conductive sheets to move through the driving device to realize quick locking or unlocking, and the disassembly and assembly are convenient and fast. Further, the lamp body slides on the rail through the clamping of the clamping assembly, and the position adjustment of the lamp body along the rail can be realized without separating the lamp body and the rail, reducing the wear caused by disassembly and assembly. Description of the drawings
[0019] Figure 1Schematic diagram of the structure of the track lamp provided by the present utility model;
[0020] Figure 2 Schematic diagram of the structure of the lamp body provided by the present utility model;
[0021] Figure 3 Schematic diagram of the structure of the lamp body from another angle provided by the present utility model;
[0022] Reference numerals: 1, track; 11, track body; 12, first clamping groove; 13, conductive strip; 14, housing; 15, insulating strip; 16, connecting groove; 17, second clamping groove; 2, lamp body; 21, lamp socket; 22, lamp head; 23, driving device; 231, driving member; 232, rotating column; 233, rotating disc; 234, protruding portion; 235, first clamping block; 236, second clamping block; 24, clamping assembly; 241, communication hole; 242, elastic sheet; 243, clamping member; 25, conductive sheet; 251, arc portion; 252, chamfer; 26, first communication port; 261, through hole; 262, communication groove; 27, second communication port; 28, first communication groove; 29, second communication groove. Detailed implementation manners
[0023] The present utility model provides a track lamp group with a quick-connection conductive structure. To make the purpose, technical solutions and effects of the present utility model clearer and more definite, the following further describes the present utility model in detail with reference to the accompanying drawings and by way of examples.
[0024] In the description of the present utility model, it should be understood that the orientation or positional relationship indicated by terms such as "top", "bottom", etc. is based on the orientation or positional relationship shown in the drawings, and is only for the convenience of describing the present utility model and simplifying the description, and should not be construed as a limitation to the present utility model; in addition, terms such as "installation", "connection", etc. should be understood in a broad sense, and for those of ordinary skill in the art, the specific meanings of the above terms in the present utility model can be understood according to specific circumstances.
[0025] As Figures 1-3 shown, an embodiment of the present application provides a track lamp group with a quick-connection conductive structure, including:
[0026] A track 1, the track 1 includes a track body 11, two first clamping grooves 12 and two conductive strips 13. The two first clamping grooves 12 are respectively arranged on both sides inside the track body 11 along the length direction of the track 1, and the two conductive strips 13 are respectively arranged in the two first clamping grooves 12 in a one-to-one correspondence;
[0027] The lamp body 2, the lamp body 2 includes a lamp base 21, a lamp head 22, a circuit board, a driving device 23, two clamping components 24 and two conductive sheets 25. The lamp head 22 is hinged to the lamp base 21. The circuit board is arranged inside the lamp base 21. The two clamping components 24 are respectively arranged on both sides of one end of the lamp base 21. The two clamping components 24 are respectively clamped into the two first clamping grooves 12 one by one. The driving device 23 is arranged on the other end of the lamp base 21. The two conductive sheets 25 are respectively arranged on both sides of the driving device 23. The two conductive sheets 25 are respectively in contact with the two conductive bars 13 one by one. First communication ports 26 and second communication ports 27 are respectively arranged on both sides of the lamp base 21. The first communication port 26 is arranged corresponding to any one of the conductive sheets 25. The second communication port 27 is arranged corresponding to the other conductive sheet 25. The two conductive sheets 25 and the lamp head 22 are respectively electrically connected to the circuit board.
[0028] The utility model discloses a track lamp group with a quick-connection conductive structure, including the track 1 and the lamp body 2. The two conductive bars 13 are respectively clamped and fixed through the two first clamping grooves 12 inside the track body 11. The lamp base 21 is embedded into the track body 11. The two clamping components 24 are respectively clamped into the two first clamping grooves 12 one by one to fix one end of the lamp base 21. The driving device 23 drives the two conductive sheets 25 to respectively pass through the first communication port 26 and the second communication port 27 and move towards the two first clamping grooves 12, so as to clamp and fix the other end of the lamp base 21. And the two conductive sheets 25 are respectively in contact with the two conductive bars 13 to form a closed circuit, achieving the effect of conduction. For a track lamp group with a quick-connection conductive structure disclosed in this application, one end of the lamp body 2 is connected by clamping through the clamping component 24, and the other end realizes quick locking or unlocking by driving the two conductive sheets 25 to move through the driving device 23. The disassembly and assembly are convenient and fast. Further, the lamp body 2 slides on the track 1 by clamping through the clamping component 42, and the position adjustment of the lamp body 2 along the track 1 can be realized without separating the lamp body 2 and the track 1, reducing the wear caused by disassembly and assembly.
[0029] Wherein, the circuit board is a control circuit board of an existing track lamp group, which is the prior art.
[0030] The driving device 23 includes a driving member 231 and a rotating column 232. The driving member 231 is disposed within the lamp socket 21. The rotating column 232 is connected to the driving member 231. Two of the conductive sheets 25 are respectively disposed on two sides of the outer surface of the rotating column 232. The driving member 231 drives the rotating column 232 to rotate, and the two conductive sheets 25 rotate following the rotating column 232. The structure is simple, reducing the cost of later maintenance and replacement.
[0031] The driving member 231 includes a rotating disk 233 and a plurality of protruding portions 234. The rotating disk 233 is coaxially arranged with the rotating column 232. The rotating disk 233 is connected to one end of the rotating column 232. The plurality of protruding portions 234 are arranged around the circumferential side of the rotating disk 233. First communication grooves 28 and second communication grooves 29 are respectively provided on two sides of the lamp socket 21 corresponding to the rotating disk 233. The diameter of the rotating disk 233 is greater than the distance between the first communication groove 28 and the second communication groove 29. Two sides of the rotating disk 233 respectively pass through the first communication groove 28 and the second communication groove 29 and are exposed outside the lamp socket 21. The outside of the rotating disk 233 can be directly toggled. The protruding portions 234 are provided to prevent slipping when toggling the rotating disk 233.
[0032] The structures of the first communication port 26 and the second communication port 27 are the same. The first communication port 26 and the second communication port 27 are symmetrically arranged along the central axis of the rotating column 232. The first communication port 26 includes a through hole 261 and a communication groove 262. The through hole 261 corresponds to the rotating column 232. The communication groove 262 is disposed on one side of the through hole 261. The communication groove 262 communicates with the through hole 261. Due to the radius of the rotating column 232 and the required rotation range of the conductive sheet 25, the opening size required to avoid the rotation radius is relatively large. By providing the through hole 261 and the communication groove 262, the communication groove 262 independently allows the conductive sheet 25 to rotate through, which can greatly reduce the size of the first communication port 26 or the second communication port 27, prevent sundries and debris from entering the interior of the lamp socket 21, and ensure the normal operation of the track lamp.
[0033] The track body 11 includes a housing 14 and two insulating strips 15. Connection grooves 16 are respectively provided on two sides inside the housing 14. The two insulating strips 15 are respectively snap-fitted into the two connection grooves 16. Two of the first snap-fit grooves 12 are respectively provided on the two insulating strips 15, isolating the conductive strip 13 from the track body 11, avoiding electric leakage, and having higher safety.
[0034] The rail body 11 further includes two second clamping grooves 17, and the two second clamping grooves 17 are respectively and correspondingly arranged on the two insulating strips 15. The second clamping grooves 17 and the first clamping grooves 12 are arranged adjacent to each other along the height direction of the insulating strip 15. The rotating column 232 is further provided with a first clamping block 235 and a second clamping block 236. The first clamping block 235 and any one of the conductive sheets 25 are arranged adjacent to each other along the height direction of the rotating column 232, and the second clamping block 236 and the other conductive sheet 25 are arranged adjacent to each other along the height direction of the rotating column 232. When the conductive sheet 25 moves to be clamped in the first clamping groove 12, due to the limited hardness of the conductive sheet 25, the first clamping block 235 and the second clamping block 236 are provided to rotate synchronously with the conductive sheet 25. The first clamping block 235 and the second clamping block 236 are respectively clamped in the second clamping grooves 17, so as to improve the connection stability of the lamp body 1, and avoid the conductive sheet 25 being broken under weight, resulting in the open circuit of the track lamp and affecting the normal operation of the track lamp.
[0035] The clamping assembly 24 includes a communication hole 241, a spring piece 242 and a clamping member 243. The communication hole 241 is arranged on the lamp base 21, the spring piece 242 is arranged in the communication hole 241, one end of the spring piece 242 is connected to the edge on one side of the communication hole 241, the clamping member 243 is arranged on the side of the spring piece 242 facing away from the lamp base 21, the clamping member 243 is in a quadrangular pyramid shape, and the tip side of the clamping member 243 faces away from the spring piece 242. The elastic swing of the spring piece 242 drives the clamping member 243 to move in the front-rear direction, and the shape of the clamping member 243 is a quadrangular pyramid structure. When the lamp body 2 is disassembled and assembled relative to the track 1 or the lamp body 2 moves along the track 1, the force received can be dispersed along the inclined plane, avoiding structural jamming and making the movement of the lamp body 2 more smooth.
[0036] The conductive sheet 25 is provided with an arc portion 251 and two chamfers 252. The arc portion 251 is arranged on the side of the conductive sheet 25 away from the driving device 23, and the two chamfers 252 are respectively arranged at both ends of the arc portion 251. Since the conductive sheet 25 rotates and gradually contacts the conductive strip 13, the two ends of the conductive sheet 25 first contact the conductive strip 13. The chamfers 252 can effectively avoid scratching the conductive strip 13 and avoid the breakage of the conductive strip 13. And by providing the arc portion 251, the position of the center of the conductive sheet 25 has the longest distance. When the conductive sheet 25 and the conductive strip 13 are relatively perpendicular, the extrusion force between them is the largest. Avoiding the excessive extrusion force when the end of the conductive sheet 25 contacts the conductive strip 13, which requires a large rotational force to overcome and reduces the difficulty of disassembly and assembly.
[0037] It will be understood that those of ordinary skill in the art can make equivalent substitutions or changes according to the technical solution of the present utility model and its inventive concept, and all such changes or substitutions should fall within the protection scope of the present utility model.
Claims
1. A track light assembly with a quick-connect conductive structure, characterized in that: include: A track (1), the track (1) comprising a track body (11), two first clamping grooves (12) and two conductive strips (13), the two first clamping grooves (12) being respectively arranged on two sides of the track body (11) along the length direction of the track (1), and the two conductive strips (13) being respectively arranged in the two first clamping grooves (12) in a one-to-one correspondence; A lamp body (2), the lamp body (2) comprising a lamp holder (21), a lamp head (22), a circuit board, a driving device (23), two clamping components (24) and two conductive sheets (25), the lamp head (22) being hinged to the lamp holder (21), the circuit board being arranged in the lamp holder (21), the two clamping components (24) being respectively arranged on both sides of one end of the lamp holder (21), the two clamping components (24) being respectively clamped in the two first clamping grooves (12) in a one-to-one correspondence, the driving device (23) being arranged at the other end of the lamp holder (21), and the two clamping components (24) being respectively clamped in the two first clamping grooves (12) in a one-to-one correspondence. On one end, the two conductive sheets (25) are respectively arranged on both sides of the driving device (23), and the two conductive sheets (25) are respectively in one-to-one contact with the two conductive strips (13). The two sides of the lamp holder (21) are respectively provided with a first connecting port (26) and a second connecting port (27), the first connecting port (26) is arranged corresponding to any one of the conductive sheets (25), and the second connecting port (27) is arranged corresponding to the other conductive sheet (25), and the two conductive sheets (25) and the lamp holder (22) are respectively electrically connected to the circuit board.
2. A track light assembly with a quick-connect conductive structure according to claim 1, characterized in that: The driving device (23) comprises a driving member (231) and a rotating column (232); the driving member (231) is arranged in the lamp holder (21); the rotating column (232) is connected to the driving member (231); and the two conductive sheets (25) are respectively arranged on two sides of the outer surface of the rotating column (232).
3. A track light assembly with a quick-connect conductive structure according to claim 2, characterized in that: The driving member (231) comprises a rotating disk (233) and a plurality of protrusions (234); the rotating disk (233) is coaxially arranged with the rotating column (232); the rotating disk (233) is connected to one end of the rotating column (232); the plurality of protrusions (234) are arranged around the circumference of the rotating disk (233); the first connecting groove (28) and the second connecting groove (29) are respectively arranged on both sides of the lamp holder (21) corresponding to the rotating disk (233); the diameter of the rotating disk (233) is greater than the distance between the first connecting groove (28) and the second connecting groove (29).
4. The track light assembly with a quick-connect conductive structure according to claim 2, characterized in that: The structures of the first communicating port (26) and the second communicating port (27) are consistent. The first communicating port (26) and the second communicating port (27) are symmetrically arranged along the central axis of the rotating column (232). The first communicating port (26) includes a through hole (261) and a communicating groove (262). The through hole (261) is arranged corresponding to the rotating column (232), and the communicating groove (262) is arranged on one side of the through hole (261). The communicating groove (262) is connected to the through hole (261).
5. The track light assembly with a quick-connect conductive structure according to claim 2, characterized in that: The rail body (11) comprises a shell (14) and two insulating strips (15), connecting grooves (16) are respectively provided on both sides of the shell (14), the two insulating strips (15) are respectively connected to the two connecting grooves (16) in a one-to-one correspondence, and the two first connecting grooves (12) are respectively provided on the two insulating strips (15) in a one-to-one correspondence.
6. A track light assembly with a quick-connect conductive structure according to claim 5, characterized in that: The rail body (11) further comprises two second clamping grooves (17), the two second clamping grooves (17) are respectively arranged on the two insulating strips (15) in a one-to-one correspondence, the second clamping groove (17) and the first clamping groove (12) are arranged adjacent to each other along the height direction of the insulating strip (15), the rotating column (232) is further provided with a first clamping block (235) and a second clamping block (236), the first clamping block (235) and any one of the conductive sheets (25) are arranged adjacent to each other along the height direction of the rotating column (232), and the second clamping block (236) and the other conductive sheet (25) are arranged adjacent to each other along the height direction of the rotating column (232).
7. The track light assembly with a quick-connect conductive structure according to claim 1, characterized in that: The snap-on assembly (24) comprises a connecting hole (241), a spring sheet (242) and a snap-on component (243); the connecting hole (241) is arranged on the lamp holder (21); the spring sheet (242) is arranged in the connecting hole (241); one end of the spring sheet (242) is connected to an edge of one side of the connecting hole (241); and the snap-on component (243) is arranged on a side of the spring sheet (242) facing away from the lamp holder (21).
8. The track light assembly with a quick-connect conductive structure according to claim 7, characterized in that: The clamping member (243) is in the shape of a quadrangular pyramid, and a tip of the clamping member (243) is disposed away from the spring sheet (242).
9. The track light assembly with a quick-connect conductive structure according to claim 1, characterized in that: The conductive sheet (25) is provided with an arc portion (251) and two chamfers (252); the arc portion (251) is provided on a side of the conductive sheet (25) away from the driving device (23); and the two chamfers (252) are respectively provided on two ends of the arc portion (251).