Module spliced illuminating lamp
Through the design of module splicing lamps, the angle of the lamp body is adjusted and combined with the radiator mounting bracket, which solves the problem of indisassembly of ceiling lights and inconvenient angles, and improves the convenience of cleaning and adaptability of illumination angles.
Patent Information
- Application Number
- CN202422806687.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-18
- Publication Date
- 2025-08-22
- Estimated Expiration
- 2034-11-18
AI Technical Summary
The existing ceiling light cannot be removed from the entire lamp, which is inconvenient to clean and replace, and the installation angle is inconvenient to adjust, resulting in a deviation in the illumination angle.
The module splicing lamp design is adopted, and the angle adjustment of the lamp body and the combined installation of multiple modules is achieved using the angle of the swing and angle parts and the radiator mounting frame. The irradiation angle of the lamp body is adjusted through the swing angle parts, and the combined installation of multiple lamp bodies is performed using the radiator mounting frame.
It realizes flexible adjustment of the illumination angle of the lamp body, adapts to different installation surfaces, improves the convenience of cleaning and replacement, and enhances the adaptability of user needs.
Smart Images

Figure CN223258070U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of lighting, in particular to a module splicing lighting. Background Art
[0002] Current ceiling lamps are formed by using a fixed plate embedded in the ceiling and a light source. Generally, the entire lamp cannot be disassembled, and only the light source can be disassembled, which is inconvenient to clean and replace. In addition, the installation angle of existing ceiling lamp products is not easy to adjust, resulting in installation differences on the installation surface at different angles, causing deviations in the illumination angle of the lamp body, affecting the use effect. Utility Model Content
[0003] To address the shortcomings of the prior art, the present invention provides a modular splicing lamp, which solves the problem that the installation angle of the existing lamp body is difficult to adjust, and that the installation differences on the installation surfaces at different angles cause deviations in the illumination angle of the lamp body.
[0004] To achieve the above-mentioned object, the present invention provides the following technical solution: a modular splicing headlight, comprising an integral injection-molded housing, a modular splicing unit mounted inside the integral injection-molded housing, the modular splicing unit extending toward one end of the integral injection-molded housing and having a fastener mounted on its cut-off end surface;
[0005] The modular splicing unit includes a telescopic sleeve and a heat dissipation cover connected to the telescopic sleeve, an anti-glare cover is installed inside the heat dissipation cover, a lens and a lens bracket connected to the lens are installed in the heat dissipation cover, a light transmission hole is provided at the center of the lens bracket, and a lamp body is installed at one end of the lens bracket away from the lens, extending through the light transmission hole into the interior of the lens bracket and establishing a light source foundation for the lens;
[0006] One end of the lamp body away from the lens bracket is connected with a swing angle piece, and the swing angle piece is arranged inside the heat dissipation cover.
[0007] In one embodiment, the swing angle member includes a mounting base and a connecting rod connected to the mounting base, a sleeve is sleeved on the connecting rod, and an outer shaft is mounted on the upper and lower ends of the sleeve. A preset bolt hole is opened on the structure of the outer shaft opposite to the lamp body, and the lamp body and the outer shaft are fixed by bolts;
[0008] The outer sleeve is provided with a movable groove, and a central shaft is installed through both ends of the structure of the movable groove. The central shaft is connected to the connecting rod, and the width of the movable groove is greater than the diameter of the connecting rod. An eaves plate is installed on the structure opposite to the outer sleeve and the installation base plate, and the outer shaft abuts against the eaves plate.
[0009] In one embodiment, a heat sink is installed between the mounting base and the fastener, and a heat dissipation hole is opened at the center of the heat sink.
[0010] In one embodiment, the fastener includes a radiator mounting plate and a through fastener. The radiator mounting plate is H-shaped and has a heat overflow port concentric with the heat dissipation hole at its center. Two straight plates symmetrically arranged in upper and lower directions are bent on the center line of the radiator mounting plate for connection with the through fastener.
[0011] In one embodiment, the radiator includes a radiator mounting frame for connecting to the mounting base, and two fixing clips are symmetrically installed at the rear end of the radiator mounting frame, and the radiator body is arranged between the two fixing clips.
[0012] In one embodiment, the fixing buckle is composed of a connecting plate and an inner plug-in plate. The inner plug-in plate is perpendicular to the connecting plate and has an end in a triangular shape for easy insertion into different mounting surfaces.
[0013] Compared with the existing technology, the present invention provides a modular splicing lamp with the following beneficial effects:
[0014] In the technical solution disclosed by the present invention, a swing angle piece is set in the module splicing unit, and the angle of the lamp body is adjusted through the structural setting of the swing angle piece, thereby generating the angle of the lamp body's illumination. On the other hand, after the lamp body's illumination angle is adjusted, its installation angle on the preset installation wall can also be adjusted according to the actual situation of the wall, so that the illumination positions of several lamps are placed on a predetermined surface.
[0015] The radiator mounting frame provided by the present invention and the fixing buckles on the radiator mounting frame can produce a combination installation of multiple module splicing units, thereby realizing the combination of multiple lamp bodies, thereby increasing the adaptability to user needs. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] The drawings described herein are used to provide a further understanding of the present application and constitute a part of the present application. The illustrative embodiments of the present application and their descriptions are used to explain the present application and do not constitute an improper limitation on the present application. In the drawings:
[0017] Figure 1 This is a schematic diagram of the overall structure of the utility model;
[0018] Figure 2 This is a schematic diagram of the internal structure of the integrated injection-molded housing of the utility model;
[0019] Figure 3 This is a schematic diagram of the exploded structure of the modular splicing unit of the present invention;
[0020] Figure 4 This is a schematic diagram of the structure of the swing angle member of the utility model;
[0021] Figure 5The figure is a schematic diagram of the fastening structure of the multi-headlight of the present utility model.
[0022] In the figure: 1. One-piece injection-molded shell; 2. Module splicing unit; 21. Telescopic sleeve; 22. Heat dissipation cover; 23. Anti-glare cover; 24. Lens; 25. Lens bracket; 26. Lamp body; 27. Swing angle piece; 271. Mounting base plate; 272. Connecting rod; 273. Outer sleeve; 274. Outer shaft; 275. Movable groove; 276. Center shaft; 277. Eaves board; 28. Radiator; 3. Fastener; 31. Radiator mounting plate; 32. Through fastener; 33. Radiator mounting frame; 34. Fixing clip; 341. Connecting plate; 342. Inner plug-in board; 35. Radiator body. DETAILED DESCRIPTION
[0023] The following will describe the implementation methods of the present application in detail with reference to the accompanying drawings and examples, so that the implementation process of how the present application applies technical means to solve technical problems and achieve technical effects can be fully understood and implemented accordingly.
[0024] In the description of the present invention, it should be understood that the terms "upper", "lower", "front", "back", "left", "right", "top", "bottom", "inside", "outside", etc., indicating directions or positional relationships, are based on the directions or positional relationships shown in the accompanying drawings. They are only for the convenience of describing the present invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific direction, be constructed and operated in a specific direction. Therefore, they cannot be understood as limitations on the present invention.
[0025] Figure 1-Figure 5 This is an embodiment of the present invention. The specific problem addressed by this embodiment is that ceiling lamps are formed by using a fixed plate embedded in the ceiling and a light source. Generally, the entire lamp cannot be disassembled, and only the light source can be disassembled, which is inconvenient for cleaning and replacement. In addition, in existing ceiling lamp products, the installation angle is difficult to adjust, resulting in installation differences on installation surfaces at different angles, causing deviations in the illumination angle of the lamp body 26, which affects the use effect. Based on the above problem that the installation angle of the existing lamp body 26 is difficult to adjust, that is, the installation differences on installation surfaces at different angles cause deviations in the illumination angle of the lamp body 26, the present solution proposes a modular splicing lamp. The modular splicing unit 2 is provided with a swinging angle piece 27. The structural arrangement of the swinging angle piece 27 adjusts the angle of the lamp body 26, thereby generating an angle of the illumination angle of the lamp body 26. On the other hand, after the illumination angle of the lamp body 26 is adjusted, its installation angle on the predetermined installation wall can also be adjusted according to the actual situation of the wall, so that the illumination positions of multiple lamps are placed on the predetermined surface.
[0026] The modular splicing lamp described in this scheme is specifically based on an integrated injection-molded shell 1, and a modular splicing unit 2 is installed inside the integrated injection-molded shell 1. The modular splicing unit 2 extends to one end of the integrated injection-molded shell 1 and is installed with a fastener 3 on its cut-off end face. The fastener 3 includes a radiator mounting plate 31 and a through fastener 32. The radiator mounting plate 31 is H-shaped and has a heat overflow port concentric with the heat dissipation hole at its center position. Two straight plates symmetrically arranged in upper and lower directions are bent on the midline of the radiator mounting plate 31 for connection with the through fastener 32. The fastener consists of a spring part and an extension structural part. The spring part is installed on the two straight plates, and the extension structure is connected to the spring part and extends toward the integrated injection-molded shell, and is bent at an angle on its extension structure.
[0027] The modular splicing unit 2 includes a telescopic sleeve 21 and a heat dissipation cover 22 connected to the inside of the telescopic sleeve 21. The telescopic sleeve 21 is annular and an inner plate adapted to the inner cavity of the one-piece injection-molded shell 1 is installed on its structure. The inner plate slides in the one-piece injection-molded shell 1. An anti-glare cover 23 is installed inside the heat dissipation cover 22. The lens 24 and a lens bracket 25 connected to the lens 24 are installed in the heat dissipation cover 22. A light-transmitting hole is opened at the center position of the lens bracket 25. A lamp body 26 is installed on the end of the lens bracket 25 facing away from the lens 24, extending into the interior of the lens bracket 25 through the light-transmitting hole and establishing a light source foundation for the lens 24.
[0028] The end of the lamp body 26 away from the lens bracket 25 is connected to the swing angle piece 27, which is arranged inside the heat dissipation cover 22. The swing angle piece 27 includes a mounting base 271 and a connecting rod 272 connected to the mounting base 271. A jacket 273 is sleeved on the connecting rod 272. The upper and lower ends of the jacket 273 are both equipped with an outer shaft 274. The jacket 273 is provided with a movable groove 275. The two ends of the structure of the movable groove 275 are penetrated by a central shaft 276. The central shaft 276 is connected to the connecting rod 272. The rod 272 moves relative to the outer sleeve 273 along the central axis 276, and the width of the movable slot 275 is greater than the diameter of the connecting rod 272. A preset bolt hole is opened on the structure of the outer shaft 274 opposite to the lamp body 26. The lamp body 26 and the outer shaft 274 are fixed by bolts. The structure of the outer sleeve 273 opposite to the mounting base 271 is installed with an eaves plate 277. The outer shaft 274 abuts against the eaves plate 277. A through slot with the same width as the movable slot 275 is opened on the heat dissipation cover 22 to avoid interference with the movement of the swing angle piece 27. In addition, when the modular splicing lamp provided by this solution does not need to use the swing angle piece 27 to produce angle adjustment, that is, Figure 1The state shown in the figure can be installed on the wall. However, if the angle adjustment is required by using the swing angle piece 27, the radiator 28 is pushed outward through the heat overflow port, and then the module splicing unit 2 is pushed outward as a whole. However, the telescopic sleeve 21 is stopped in the one-piece injection molded shell 1. After the heat dissipation cover 22 and other structures are pushed outward, they are separated from the one-piece injection molded shell 1, so that the swing angle piece 27 can be manually adjusted to avoid motion interference.
[0029] A heat sink 28 is mounted between the mounting base 271 and the fastener 3. A heat dissipation hole is provided at the center of the heat sink 28. The heat sink 28 includes a heat sink mounting bracket 33 for connection to the mounting base 271. Two symmetrical fixing clips 34 are mounted on the rear end of the heat sink mounting bracket 33, with a heat sink body 35 positioned between the two fixing clips 34. The heat sink mounting bracket 33 and the fixing clips 34 on the heat sink mounting bracket 33 enable the assembly of multiple modular units 2, thereby enabling the assembly of multiple lamp bodies 26, increasing adaptability to user needs. The fixing clips 34 comprise a connecting plate 341 and an inner insert 342. The inner insert 342 is perpendicular to the connecting plate 341 and has a triangular end that facilitates insertion into various mounting surfaces. During use, the inner insert 342 can be directly inserted into the mounting surface, and the triangular structure creates a secure connection with the mounting surface to prevent it from falling out.
[0030] The control method of the present invention is automatic control through a controller. The control circuit of the controller can be implemented by simple programming by technicians in this field. The provision of power is also common knowledge in this field. In addition, the present invention is mainly used to protect mechanical devices, so the control method and circuit connection are no longer explained in detail in the present invention.
[0031] It should be noted that, in this article, the terms "comprises", "includes" or any other variations thereof are intended to cover non-exclusive inclusion, so that a process, method, article or apparatus that includes a series of elements includes not only those elements, but also includes other elements not explicitly listed, or also includes elements that are inherent to such process, method, article or apparatus.
[0032] Although the embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and variations may be made to these embodiments without departing from the principles and spirit of the present invention, and the scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. A modular splicing light, comprising an integrated injection-molded housing (1), characterized in that: A module splicing unit (2) is installed inside the one-piece injection-molded housing (1), and the module splicing unit (2) extends toward one end of the one-piece injection-molded housing (1) and has a fastening member (3) installed on its cut-off end surface; The module splicing unit (2) comprises a telescopic sleeve (21) and a heat dissipation cover (22) connected to the interior of the telescopic sleeve (21); an anti-glare cover (23) is installed inside the heat dissipation cover (22); a lens (24) and a lens bracket (25) connected to the lens (24) are installed in the heat dissipation cover (22); a light transmission hole is provided at the center of the lens bracket (25); a lamp body (26) is installed at one end of the lens bracket (25) away from the lens (24), and extends into the interior of the lens bracket (25) through the light transmission hole and establishes a light source foundation for the lens (24); One end of the lamp body (26) facing away from the lens bracket (25) is connected to a swing angle piece (27), and the swing angle piece (27) is arranged inside the heat dissipation cover (22).
2. The modular splicing light according to claim 1, characterized in that: The swing angle member (27) includes a mounting base plate (271) and a connecting rod (272) connected to the mounting base plate (271); a jacket (273) is sleeved on the connecting rod (272); an outer shaft (274) is mounted on the upper and lower ends of the jacket (273); a preset bolt hole is provided on a structure of the outer shaft (274) opposite to the lamp body (26); and the lamp body (26) and the outer shaft (274) are fixed by bolts; The outer sleeve (273) is provided with a movable groove (275), and a central shaft (276) is installed through both ends of the structure of the movable groove (275). The central shaft (276) is connected to the connecting rod (272), and the opening width of the movable groove (275) is greater than the diameter of the connecting rod (272). An eaves plate (277) is installed on the structure of the outer sleeve (273) opposite to the installation base plate (271), and the outer shaft (274) abuts against the eaves plate (277).
3. The modular splicing light according to claim 2, characterized in that: A radiator (28) is installed between the installation base plate (271) and the fastening member (3), and a heat dissipation hole is provided at the center of the radiator (28).
4. The modular splicing light according to claim 3, characterized in that: The fastener (3) includes a radiator mounting plate (31) and a through fastener (32). The radiator mounting plate (31) is H-shaped and has a heat overflow port concentric with the heat dissipation hole at its center. Two straight plates symmetrical in upper and lower directions are bent on the center line of the radiator mounting plate (31) for connection with the through fastener (32).
5. The modular splicing light according to claim 3, characterized in that: The radiator (28) includes a radiator mounting frame (33) for connecting to the mounting base plate (271). Two fixing buckles (34) are symmetrically mounted on the rear end of the radiator mounting frame (33). A radiator body (35) is arranged between the two fixing buckles (34).
6. The modular splicing light according to claim 5, characterized in that: The fixing buckle (34) is composed of a connecting plate (341) and an inner insert plate (342). The inner insert plate (342) is perpendicular to the connecting plate (341) and has an end in a triangular shape for easy insertion into different installation surfaces.