Line lamp splicing structure
By designing the rails and assembly components, and utilizing the "L"-shaped structure of the wrench and top support components, tool-free quick connection is achieved, solving the problem of cumbersome installation of existing ambient lights and improving installation efficiency and stability.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-02
- Publication Date
- 2026-03-24
AI Technical Summary
The existing fixed installation methods for ambient lights are cumbersome and cannot meet the needs of flexible layout. In addition, the track connection requires tools, which is inefficient.
The design employs a rail and assembly components, utilizing the "L"-shaped structure of the wrench and top support components to achieve tool-free quick connection. Combined with the positioning structure of the spring clips and side buckles, it ensures stable alignment and connection of the rail.
It enables quick installation without the need for tools, improving installation efficiency and connection stability, and meeting the flexible layout needs of ambient lighting.
Smart Images

Figure CN224033671U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to lamp technical field, specifically line lamp assembling structure of a kind of. BACKGROUND
[0002] Lighting lamps are usually fixedly installed on wall or ceiling, while desktop lamps can be moved within limited range, but are limited by power cord length and socket position. Ambient light products usually need to adjust the lighting area or range frequently to achieve the purpose of atmosphere creation. Traditional lamp fixed installation mode cannot meet the demand of flexible layout of ambient light.
[0003] Therefore, existing ambient light products have explored track installation mode, so that lamps can be installed at any position based on track. In order to better expand the installation range of lamps, the length of track needs to be extended as much as possible. Of course, in actual products, the length of track is fixed and can be infinitely connected.
[0004] As shown in the accompanying Figure 1 , the existing lamp track 100 is connected through splicing piece 200, and screw holes 210 for fixing are reserved on splicing piece 200. The two ends of splicing piece 200 are inserted into the ports of two tracks 100, and the splicing piece 200 is fixedly connected with the track 100 by the fastening force of screw. When installing, tools such as screwdriver are needed, which is complicated and low in efficiency.
[0005] Therefore, the prior art still needs to be improved and developed. CONTENT OF UTILITY MODEL
[0006] The utility model aims at the defects and deficiencies of prior art, and provides a line lamp assembling structure which is reasonable in structure and convenient to install.
[0007] In order to achieve the above purpose, the utility model adopts the following technical scheme:
[0008] The line lamp assembling structure comprises a profile rail and an assembling assembly. Two side vertical plates are symmetrically arranged on the upper end surface of the profile rail, and a sliding groove is arranged on each side vertical plate. The assembling assembly comprises a splicing buckle plate. The opposite ends of the two profile rails are arranged oppositely, and the two ends of the splicing buckle plate are respectively arranged on the upper end surfaces of the two profile rails, and the two side edges of the splicing buckle plate are arranged in the corresponding sliding grooves. Deflection notches are arranged at the two ends of the splicing buckle plate, a wrench is arranged in each deflection notch, and a jacking piece is arranged at the lower end of the wrench. The jacking piece and the wrench form an "L" shaped structure. The wrench can drive the jacking piece to stand between the splicing buckle plate and the upper end surface of the profile rail, so that the two side edges of the splicing buckle plate are buckled and connected with the corresponding side vertical plates.
[0009] According to the above scheme, the length of the top support piece is H, the length of the deflection notch is L, and the width of the wrench piece is K, and H>L>K.
[0010] According to the above scheme, the included angle between the wrench piece and the top support piece is a right angle.
[0011] According to the above scheme, the splicing buckle plate is provided with an elastic sheet, the elastic sheet is fixedly connected to the bottom surface of the splicing buckle plate through a rivet, both ends of the elastic sheet are provided with extension sections, and the two extension sections are arranged in pairs with the two top support pieces.
[0012] According to the above scheme, a transition section is arranged between the first end of the extension section and the elastic sheet, the elastic sheet, the transition section and the extension section form a 'Z' shaped bending structure, and a bending section is arranged on the second end of the extension section, and the transition section, the extension section and the bending section form a 'Z' shaped bending structure.
[0013] According to the above scheme, the assembling assembly further comprises side buckle plates, two side buckle plates are arranged between the two profiled rails, and the two side buckle plates are arranged on the two side inner walls of the lower end of the profiled rail respectively; limit grooves are arranged on the two side inner walls of the lower end of the profiled rail, and the side buckle plates are arranged in the limit grooves, so that the two profiled rails are arranged in alignment along the length direction.
[0014] According to the above scheme, the limit groove and the side buckle plate are both 'L' shaped paired structures.
[0015] According to the above scheme, the two ends of the side buckle plate are provided with stamping elastic buckles, and the stamping elastic buckles abut against the inner side walls of the profiled rail when the side buckle plate is inserted into the limit groove.
[0016] The utility model has the advantages that: the utility model has reasonable structure, the two ends of the splicing buckle plate are inserted into the sliding grooves on the two sides of the upper end surface of the two profiled rails, the wrench piece rotates the top support piece to make the top support piece abut against the upper end surface of the profiled rail and the splicing buckle plate, the splicing buckle plate is lifted to make the two side edges of the splicing buckle plate buckle the side vertical plates, so that the two profiled materials are connected in pairs along the length direction, other tools are not needed, and the utility model is quick to install and convenient to use. BRIEF DESCRIPTION OF DRAWINGS
[0017] Figure 1 is a structural schematic view of a lamp track and a splicing piece in the background art;
[0018] Figure 2 is a schematic view of the overall structure after splicing of the utility model;
[0019] Figure 3 is a schematic view of the split structure of the assembling assembly of the utility model;
[0020] Figure 4 is a schematic view of the overall structure before splicing of the utility model;
[0021] Figure 5It is the assembling mode schematic view of the assembling component and the profile rail of the utility model.
[0022] Figure 6 It is the whole cross section structure schematic view of the utility model.
[0023] In the drawing,
[0024] 1, profile rail;2, splice buckle plate;3, elastic sheet;4, side buckle plate;11, side stand plate;12, sliding groove;13, limiting groove;21, deflection notch;22, wrench;23, jacking piece;31, rivet;32, extension section;33, transition section;34, bending section;41, stamping elastic buckle. Specific implementation
[0025] The technical scheme of the utility model will be described below in combination with the drawings and embodiments.
[0026] As Figures 2-6 Indicated, a line lamp assembling structure of the utility model, including profile rail 1 and assembling component, the both sides symmetry of profile rail 1 upper end surface are equipped with two side stand plates 11, and two side stand plates 11 are all equipped with sliding groove 12;The assembling component includes splice buckle plate 2, and the matching end of two profile rails 1 is oppositely arranged, and the both ends of splice buckle plate 2 are respectively arranged on the upper end surface of two profile rails 1, and the two side edges of splice buckle plate 2 are arranged in the corresponding sliding groove 12;The both ends of splice buckle plate 2 are all equipped with deflection notch 21, and wrench 22 is arranged on deflection notch 21, and the lower end of wrench 22 is equipped with jacking piece 23, and jacking piece 23 and wrench 22 form "L" shape structure;Wrench 22 can drive jacking piece 23 to stand between splice buckle plate 2 and profile rail 1 upper end surface, to make the both side edges of splice buckle plate 2 buckle and connect corresponding side stand plate 11.
[0027] The profile rail 1 can be aluminum alloy stretch forming or use high-strength composite material injection molding, and then the side stand plate 11 and sliding groove 12 on the both sides of the upper end surface of profile rail 1 are integrally formed structure, and two side stand plates 11 and sliding groove 12 are symmetrically arranged, to form "concave" groove with the upper end surface of profile rail 1.
[0028] The splicing buckle plate 2 can be inserted into the upper end face of the profiled rail 1 along the length direction of the profiled rail 1, and the splicing buckle plate 2 is adapted to the "concave" groove in the transverse direction and forms a positioning fit. It can be understood that the top support 23 is inclined before installation, and then the wrench 22 is flipped to fit the upper surface of the splicing buckle plate 2, so that the top support 23 is erected between the splicing buckle plate 2 and the upper end face of the profiled rail 1, and the two top supports 23 support the two ends of the splicing buckle plate 2 and the two profiled rails 2, so that the two side edges of the splicing buckle plate 2 are buckled to the side stand 11, and the splicing buckle plate 2 forms a positioning fit in the vertical direction between the two profiled rails 1. It can be understood that the vertical support of the top support 23 can form a vertical supporting force, so that the splicing buckle plate 2 is tightly fitted between the two side stands 11, thereby enabling the two profiled rails 1 to be connected in pairs.
[0029] The length of the top support 23 is H, the length of the deflection slot 21 is L, and the width of the wrench 22 is K, and H>L>K. It can be understood that the wrench 22 and the top support 23 are an integral structure, which is made by stamping and bending process, the wrench 22 passes through the deflection slot 21 from below, and the bending part of the wrench 22 and the top support 23 has an arc transition, which can enable the wrench 22 and the top support 23 to rotate on the deflection slot 21.
[0030] Further, the angle between the wrench 22 and the top support 23 is a right angle, and when the wrench 22 fits the upper surface of the splicing buckle plate 2, the top support 23 is arranged on the splicing buckle plate 2 in the vertical direction. It can be understood that the length of the top support 23 is greater than the length of the deflection slot 21, so that after the top support 23 is erected, the upper end of the top support 23 touches the splicing buckle plate 2, and the lower end of the top support 23 touches the upper end face of the profiled rail 1.
[0031] The angle between the wrench 22 and the top support 23 is a right angle, so that the wrench 22 is not easy to loosen, and the top support 23 is prevented from sliding down between the splicing buckle plate 2 and the profiled rail 1.
[0032] The splicing buckle plate 2 is provided with a spring 3, and the spring 3 is fixedly connected to the bottom surface of the splicing buckle plate 2 by a rivet 31; both ends of the spring 3 are provided with an extension section 32, and the two extension sections 32 are arranged in pairs with the two top supports 23. The spring 3 and the splicing buckle plate 2 are assembled before leaving the factory, and the spring 3 is used to assemble the two wrenches 22 and the top supports 23 on the splicing buckle plate 2. Specifically, the two ends of the spring 3 are provided with the extension sections 32, and the top support 23 is arranged between the extension section 32 and the splicing buckle plate 2, thereby preventing the wrench 22 from sliding out of the deflection slot 21.
[0033] Furthermore, the spring piece 3 and the extension section 32 are thin sheet structures that can deform. When the wrench piece 22 drives the top support piece 23 to stand upright, the lower end of the top support piece 23 drives the extension end 32 to press against the upper surface of the guide rail 1 together.
[0034] In particular, when the two guide rails 1 slide slightly in the length direction, the extension end 32 slides with the upper surface of the guide rail 1, which will prevent the top support 23 from slipping and prevent the assembly component from failing.
[0035] As attached Figure 6 As shown, a transition section 33 is provided between the first end of the extension section 32 and the spring piece 3. The spring piece 3, the transition section 33, and the extension section 32 form a "Z"-shaped bending structure. A bending section 34 is provided on the second end of the extension section 32. The transition section 33, the extension section 32, and the bending section 34 form a "Z"-shaped bending structure. The spring piece 3, the transition section 33, the extension section 32, and the bending section 34 are an integral structure. Before the rail 1 is assembled, the spring piece 3 and the extension section 32 are mainly used to prevent the top support 23 from sliding off the splicing plate 2. After the top support 23 is erected and the splicing plate 2 is fixedly connected to the rail 1, the bending section 34 can provide friction to prevent the top support 23 from slipping due to sliding between the splicing plate 2 and the rail 1.
[0036] The assembly also includes side fasteners 4, with two side fasteners 4 positioned between the two guide rails 1. The two side fasteners 4 are respectively located on the inner walls of the lower ends of the guide rails 1 on both sides. Limiting grooves 13 are provided on the inner walls of the lower ends of the guide rails 1, and the side fasteners 4 pass through the limiting grooves 13 to align the two guide rails 1 along their length. The side fasteners 4 provide lateral positioning between the two guide rails 1. Both the limiting grooves 13 and the side fasteners 4 are L-shaped mating structures, which can strengthen the connection between the assembly and the guide rails 1.
[0037] Both ends of the side fastener 4 are provided with stamped spring clips 41. When the side fastener 4 is inserted into the limiting groove 13, the stamped spring clips 41 abut against the inner side wall of the connecting rail 1. The stamped spring clips 41 can increase the friction between the side fastener 4 and the rail 1, preventing the side fastener 4 from shifting on the rail 1. Simply put, during installation, one end of each of the two side fasteners 4 is first inserted into the limiting groove 13 of one rail 1. When the other rail 1 is inserted, it may cause the side fastener 4 to move. The stamped spring clips 41 can make the installation more accurate. In particular, the limiting groove 13 can be provided with protrusions, ribs, etc., which cooperate with the stamped spring clips 41 to make the side fastener 4 centrally positioned between the two rails 1.
[0038] The above merely describes preferred embodiments of the present application, and thus equivalent changes or modifications made in accordance with the structure, features and principles described in the patent application scope of the present application are included in the patent application scope of the present application.
Claims
1. A linear light assembly structure, comprising a profile rail (1) and an assembly component, two side vertical plates (11) are symmetrically arranged on the upper end surface of the profile rail (1), and a sliding groove (12) is arranged on each of the two side vertical plates (11); characterized in that: The assembling component comprises a splicing buckle plate (2), the opposite ends of the two profiled rails (1) are oppositely arranged, the two ends of the splicing buckle plate (2) are respectively arranged on the upper end faces of the two profiled rails (1), and the two side edges of the splicing buckle plate (2) are arranged in the corresponding sliding grooves (12); the two ends of the splicing buckle plate (2) are provided with deflection notches (21), the deflection notches (21) are provided with wrenches (22), the lower ends of the wrenches (22) are provided with supporting pieces (23), and the supporting pieces (23) and the wrenches (22) form an "L" shaped structure; the wrenches (22) can drive the supporting pieces (23) to stand between the splicing buckle plate (2) and the upper end faces of the profiled rails (1), so that the two side edges of the splicing buckle plate (2) are buckled and connected with the corresponding side standing plates (11).
2. The linear light assembly structure according to claim 1, characterized in that: The length of the supporting piece (23) is H, the length of the deflection notch (21) is L, and the width of the wrench (22) is K, so H>L>K.
3. The linear light assembly of claim 1, wherein: The included angle between the wrench (22) and the supporting piece (23) is a right angle.
4. The linear light assembly of claim 1, wherein: The splicing buckle plate (2) is provided with a spring sheet (3), the spring sheet (3) is fixedly connected to the bottom surface of the splicing buckle plate (2) through a rivet (31); the two ends of the spring sheet (3) are provided with extension sections (32), and the two extension sections (32) are oppositely arranged with the two supporting pieces (23).
5. The linear light assembly of claim 4, wherein: A transition section (33) is arranged between the first end of the extension section (32) and the spring sheet (3), the spring sheet (3), the transition section (33) and the extension section (32) form a "Z" shaped bending structure; a bending section (34) is arranged on the second end of the extension section (32), and the transition section (33), the extension section (32) and the bending section (34) form a "Z" shaped bending structure.
6. The linear light assembly of claim 1, wherein: The assembling component further comprises a side buckle plate (4), two side buckle plates (4) are arranged between the two profiled rails (1), and the two side buckle plates (4) are arranged on the two side inner walls of the lower ends of the profiled rails (1); limit grooves (13) are arranged on the two side inner walls of the lower ends of the profiled rails (1), and the side buckle plates (4) are arranged in the limit grooves (13), so that the two profiled rails (1) are arranged in alignment along the length direction.
7. The string light assembly structure according to claim 6, characterized in that: The limit groove (13) and the side buckle plate (4) are both "L" shaped opposite structures.
8. The linear light assembly of claim 6, wherein: The two ends of the side buckle plate (4) are provided with stamping spring buckles (41), and the stamping spring buckles (41) abut against the inner side walls of the profiled rails (1) when the side buckle plate (4) is inserted into the limit groove (13).