Seamlessly spliced line lamp
Through the design of the mounting base and splicing components, seamless splicing of line lights is achieved, solving the problem of splicing gaps affecting visual coherence and disassembly complexity, and achieving a simple appearance and convenient disassembly and assembly.
Patent Information
- Application Number
- CN202422093866.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-27
- Publication Date
- 2025-07-04
- Estimated Expiration
- 2034-08-27
AI Technical Summary
There are gaps in existing line lights when splicing, which affects visual coherence, and the traditional fixed splicing method is complex and difficult to disassemble or adjust.
The mounting base, a light-transmitting cover plate and splicing components, including the first snap fastener and the second snap fastener, realize seamless splicing of the line lights, and simplify disassembly and adjustment through snap connection.
It realizes seamless splicing of line lights, with a simpler appearance, and a simpler disassembly and adjustment process.
Smart Images

Figure CN223063725U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the technical field of linear lights, and particularly relates to a seamlessly spliced linear light. Background Art
[0002] A linear light is a flexible decorative light that combines an LED light source and a linear element, and has the characteristics of soft light, convenient installation, low energy consumption, etc. At the same time, the linear light supports flexible splicing design. However, when multiple linear lights are spliced, a certain gap will be formed between the linear lights, affecting the overall visual coherence. In addition, although the traditional fixed splicing method ensures the structural stability, it also brings certain limitations. Once the splicing is completed, it is relatively complicated to disassemble or adjust. Utility Model Content
[0003] The embodiment of this application discloses a seamlessly spliced linear light, which can realize the seamless splicing of multiple linear lights, making the overall appearance of the spliced linear light more concise.
[0004] To achieve the above object, in the first aspect, the embodiment of this application discloses a seamlessly spliced linear light, including:
[0005] A mounting base, the mounting base includes a first end and a second end in the length direction, the mounting base further includes a mounting cavity with an opening, and the mounting cavity extends along the direction from the first end to the second end;
[0006] A lamp body, the lamp body is installed in the mounting cavity, and the light-emitting direction of the lamp body faces the opening of the mounting cavity;
[0007] A light-transmitting cover plate, the light-transmitting cover plate is connected to the mounting base to cover the opening of the mounting cavity; and
[0008] A splicing component, the splicing component includes a first buckle and a second buckle, the first buckle is arranged at the first end, and the second buckle is arranged at the second end;
[0009] During splicing, the second buckle is configured to be buckled and connected with the first buckle of another adjacent linear light to realize the splicing of two adjacent linear lights in the length direction of the mounting base.
[0010] As an optional implementation manner, the first buckle is arranged near the end of the first end, and the second buckle is arranged near the end of the second end.
[0011] As an optional implementation manner, the first buckle includes a first fixing part and a first buckling part, the first fixing part is fixedly arranged on the bottom surface of the mounting cavity, and the first buckling part is formed at one end of the first fixing part;
[0012] The second fastener includes a second fixing portion and a second buckle portion extending along the length direction of the mounting base, the second fixing portion is fixedly arranged on the bottom surface of the mounting cavity, the second buckle portion is connected to one end of the second fixing portion, and the second buckle portion is configured to be buckled and connected with the first buckle portion of another adjacent linear light to achieve splicing of the two linear lights in the length direction of the mounting base.
[0013] As an optional embodiment, one end of the first fixing portion is bent toward the opening direction of the installation cavity to form the first buckle portion, and the second buckle portion can be rotatably connected to the second fixing portion to rotate relative to the second fixing portion to buckle with the first buckle portion of another adjacent linear light.
[0014] As an optional embodiment, the second buckle portion includes a rotating portion and a ring buckle, and the rotating portion and the ring buckle can be rotatably connected to the second fixed portion, the ring buckle is configured to be buckled and connected with the first buckle portion of another adjacent line light, and the rotating portion is configured to rotate relative to the second fixed portion to release the buckled connection between the ring buckle and the first buckle portion.
[0015] As an optional embodiment, the second fastener further includes a fastening portion, and the fastening portion is detachably disposed on the second end;
[0016] When the fastening portion is arranged at the second end, the fastening portion at least partially extends out of the second end and extends to the first end of another adjacent line light, and the portion of the fastening portion extending to another adjacent line light forms a mounting position, and the first clip of another adjacent line light is located on the mounting position.
[0017] As an optional implementation, the installation cavity runs through the first end and the second end, and the linear light further includes two end covers, and the two end covers are detachably connected to the openings of the first end and the second end, respectively.
[0018] As an optional embodiment, the lamp body includes a lamp board and a heat sink, the light emitting direction of the lamp board is toward the opening of the installation cavity, the heat sink is arranged on a side of the lamp board away from the light emitting direction, and the heat sink extends along the length direction of the installation cavity;
[0019] The linear light also includes two supporting structures, both of which are arranged in the installation cavity and located at two ends of the installation cavity. The two supporting structures are configured to support the heat sink so that there is a distance between the heat sink and the bottom of the installation cavity.
[0020] As an optional embodiment, the support structure includes a bottom bracket and a support plate, the bottom bracket is arranged in the installation cavity, and a recessed portion is formed on a side of the bottom bracket close to the bottom surface of the installation cavity, the recessed portion is connected to the installation cavity, and the support plate is arranged on a side of the bottom bracket away from the recessed portion, and the support plate is configured to support the heat sink.
[0021] As an optional embodiment, the light-transmitting cover plate is provided with a first protrusion, an end of the first protrusion facing away from the light-transmitting cover plate is formed as a clamping portion, the first protrusion is further provided with a first step extending toward the middle of the mounting cavity, and the first step is located between the clamping portion and the light-transmitting cover plate;
[0022] A second step and a limiting portion are provided on the side wall surface of the installation cavity. In the direction from the light-transmitting cover plate to the bottom surface of the installation cavity, the second step and the limiting portion are sequentially arranged at intervals. The clamping portion is supported on the second step, and the limiting portion is configured to limit the position of the clamping portion on the second step.
[0023] The seamlessly spliced linear light further includes a diffusion plate, which is located in the installation cavity and supported by the first step.
[0024] Compared with the related art, the embodiments of the present application include at least the following beneficial effects:
[0025] The seamlessly spliced linear light provided in the embodiment of the present application effectively protects the lamp body by providing a mounting seat and installing the lamp body in the mounting seat. An open mounting cavity is provided in the mounting seat, and the light emitting direction of the lamp body is directly opposite to the opening of the mounting cavity. A light-transmitting cover is provided and the light-transmitting cover is covered on the opening of the mounting cavity, ensuring that the light emitted by the lamp body can be transmitted evenly. A splicing assembly is also provided, and the splicing assembly includes a first fastener and a second fastener. When splicing, the second fastener is configured to be snap-fitted and connected with the first fastener of another adjacent linear light, thereby achieving seamless splicing between the linear lights, making the appearance of the spliced linear lights smooth, and adopting a snap-fit connection method is also conducive to simplifying the disassembly and adjustment process. BRIEF DESCRIPTION OF THE DRAWINGS
[0026] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the drawings required for use in the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the present application. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying creative work.
[0027] Figure 1 is a structural schematic diagram of a linear light provided in an embodiment of the present application from one viewing angle;
[0028] Figure 2 is a partial structural decomposition schematic diagram of the linear light provided by the embodiment of the present application;
[0029] Figure 3 is a partial structural decomposition schematic diagram of the linear light from another perspective provided by the embodiment of the present application;
[0030] Figure 4 is a structural schematic diagram of the splicing component provided by the embodiment of the present application;
[0031] Figure 5 is Figure 1 a cross-sectional view taken along the A-A direction in
[0032] Figure 6 is Figure 5 a partial enlarged view of the support structure in
[0033] Figure 7 is a structural schematic diagram of the linear light from another perspective provided by the embodiment of the present application;
[0034] Figure 8 is a structural decomposition schematic diagram of the mounting base and the light-transmitting cover plate provided by the embodiment of the present application.
[0035] Icons: 1, linear light; 11, mounting base; 11a, first end; 11b, second end; 11c, mounting cavity; 12, lamp body; 12a, lamp board; 12b, heat dissipation board; 13, end cap; 14, hanging ring; 15, hanging wire; 16, light-transmitting cover plate; 17, splicing component; 170, first buckle; 1701, first fixing part; 1702, first buckling part; 171, second buckle; 1711, second fixing part; 1712, second buckling part; 1712a, annular buckle; 1712b, rotating part; 1713, fastening part; 18, support structure; 180, support plate; 181, bottom bracket; 19, splicing structure; 190, first protrusion; 190a, clamping part; 190b, first step; 191, diffusion plate; 192, second step; 193, limiting part. Detailed implementation manners
[0036] Next, the technical solutions in the embodiments of the present application will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present application. Obviously, the described embodiments are only a part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present application.
[0037] It should be noted that the terms "including" and "having" and any variations thereof in the embodiments and accompanying drawings of the present application are intended to cover non-exclusive inclusion. For example, a process, method, system, product, or device that includes a series of steps or units is not limited to the listed steps or units, but may optionally further include steps or units not listed, or may optionally further include other steps or units inherent to these processes, methods, products, or devices.
[0038] An embodiment of the present utility model discloses a seamless splicing linear light, which can achieve seamless splicing of multiple linear lights, making the overall appearance of the spliced linear light more concise.
[0039] Please refer to Figures 1 to 3 , in the first aspect of the embodiments of the present application, a seamless splicing linear light 1 is provided. The linear light 1 includes a mounting base 11, a lamp body 12, a light-transmitting cover plate 16, and a splicing assembly 17. Among them, the mounting base 11 is a long strip-shaped seat body, including a first end 11a and a second end 11b along the length direction. The mounting base 11 further includes a mounting cavity 11c with an opening, and the mounting cavity 11c also extends along the direction from the first end 11a to the second end 11b. That is, the mounting cavity 11c is also a long strip-shaped cavity. The lamp body 12 is installed in the mounting cavity 11c, and the light-emitting direction of the lamp body 12 faces the opening of the mounting cavity 11c. The light-transmitting cover plate 16 is connected to the mounting base 11 to cover the opening of the mounting cavity 11c, so that the lamp body 12 can emit light through the light-transmitting cover plate 16. The splicing assembly 17 includes a first buckle 170 and a second buckle 171. The first buckle 170 is arranged at the first end 11a, and the second buckle 171 is arranged at the second end 11b. During splicing, the second buckle 171 is configured to be snap-connected with the first buckle 170 of another adjacent linear light 1 to achieve splicing of two adjacent linear lights 1 in the length direction of the mounting base 11.
[0040] For the seamless splicing linear light 1 of the present application, by providing the mounting base 11 and installing the lamp body 12 in the mounting base 11, the lamp body 12 is effectively protected. And there is a mounting cavity 11c with an opening in the mounting base 11, and the light-emitting direction of the lamp body 12 is directly opposite to the opening of the mounting cavity 11c. The light-transmitting cover plate 16 is provided and covered on the opening of the mounting cavity 11c, so that the light emitted by the lamp body can be emitted through the light-transmitting cover plate 16. At the same time, the splicing assembly 17 is provided. The splicing assembly 17 includes a first buckle 170 and a second buckle 171. During splicing, the second buckle 171 is configured to be snap-connected with the first buckle 170 of another adjacent linear light 1, achieving seamless splicing between the linear lights 1, making the appearance between the spliced linear lights 1 flat. At the same time, the snap-connection method is adopted, which is also beneficial to simplifying the disassembly and adjustment process.
[0041] In some possible embodiments, the mounting base 11 can be made of, for example, a metal or alloy base body or a plastic base body. For example, when the mounting base 11 is made of an alloy base body, the mounting base 11 can be an aluminum alloy base body or a stainless steel base body, so that the mounting base 11 can have good structural strength. When the mounting base 11 is made of a plastic base body, since the plastic base body is relatively light and the molding process is mature, it is beneficial to reduce the production cost of the linear lamp 1.
[0042] Optionally, the mounting base 11 can be configured to be hoisted to, for example, a ceiling, a wall, etc., so as to realize the hoisting of the linear lamp 1. For example, a hanging ring 14 can be provided on the side of the mounting base 11 facing away from the light-transmitting cover plate 16, and then the mounting base 11 can be hoisted at a position such as a ceiling or a wall by passing a suspension wire 15 through the hanging ring 14. It should be noted that, in order to realize the stable hoisting of the linear lamp 1, two hanging rings 14 of the mounting base 11 can be provided and respectively arranged at the first end 11a and the second end 11b of the mounting base along the length direction of the mounting base, so that the two suspension wires 15 respectively pass through the corresponding hanging rings 14 to hoist the mounting base 11 to the ceiling or the wall.
[0043] Please refer to Figure 2 and Figure 3 , the splicing assembly 17 includes a first buckle member 170 and a second buckle member 171. The first buckle member 170 is disposed adjacent to the first end 11a of the mounting base 11, and the second buckle member 171 is disposed adjacent to the second end 11b of the mounting base 11. By arranging them at both ends, it is convenient for the first buckle member 170 and the second buckle member 171 to be snap-connected during splicing.
[0044] In some possible embodiments, the first buckle member 170 and the second buckle member 171 can be made of, for example, a metal or alloy buckle member. For example, when the first buckle member 170 and the second buckle member 171 are made of alloy fasteners, the first buckle member 170 and the second buckle member 171 can be an aluminum alloy base body or a stainless steel base body, so that the first buckle member 170 and the second buckle member 171 have good structural strength.
[0045] Please combine Figure 4 , Figure 4 is a schematic structural diagram of the splicing assembly 17 provided by the embodiment of the present application, where Figure 4 in (a) is a schematic structural diagram of the first buckle member 170, Figure 4 in (b) is a schematic structural diagram of the second buckle member 171. In some embodiments, the first buckle member 170 includes a first fixing portion 1701 and a first buckling portion 1702. The first fixing portion 1701 is fixedly disposed on the bottom surface of the installation cavity 11c, and the first buckling portion 1702 is formed at one end of the first fixing portion 1701. Thus, the first buckling portion 1702 is formed on the first fixing portion 1701, and the structure of the first buckle member 170 is simple and convenient for molding.
[0046] Exemplarily, the first fixing part 1701 can be, for example, a stainless steel sheet or an iron sheet. The first fixing part 1701 can be fixed to the bottom surface of the installation cavity 11c by fasteners such as screws or bolts. The first buckling part 1702 can be formed, for example, by bending at one end of the first fixing part 1701.
[0047] Exemplarily, one end of the first fixing part 1701 is bent towards the opening direction of the installation cavity 11c to form the first buckling part 1702. The first buckling part 1702 can be, for example, a snap hook, a snap fastener, etc.
[0048] Optionally, the second snap member 171 includes a second fixing part 1711 and a second buckling part 1712 extending along the length direction of the mounting base 11. The second fixing part 1711 is fixedly arranged on the bottom surface of the installation cavity 11c. The second buckling part 1712 is connected to one end of the second fixing part 1711. The second buckling part 1712 is configured to be snap-connected with the first buckling part 1702 of another adjacent strip light 1 to realize the splicing of two strip lights 1 in the length direction of the mounting base 11.
[0049] Optionally, the second buckling part 1712 can be rotatably connected to the second fixing part 1711 to rotate relative to the second fixing part 1711 to be buckled to the first buckling part 1702 of another adjacent strip light 1. By rotatably connecting the second buckling part 1712 to the second fixing part 1711, on the one hand, it can facilitate the mating connection between the second buckling part 1712 and the first buckling part 1702 to realize the splicing of two adjacent strip lights 1. On the other hand, by rotating, it can also facilitate the disengagement of the second buckling part 1712 from the first buckling part 1702 when disassembly and assembly are required.
[0050] Exemplarily, the second fixing part 1711 can be, for example, a steel sheet, a stainless steel sheet or a patch, etc. The second fixing part 1711 can be fixed to the bottom surface of the installation cavity 11c by fasteners such as screws and bolts.
[0051] In some embodiments, the second buckling part 1712 includes a rotating part 1712b and an annular buckle 1712a. The rotating part 1712b and the annular buckle 1712a can both be rotatably connected to the second fixing part 1711. The annular buckle 1712a is configured to be snap-connected with the first buckling part 1702 of another adjacent strip light 1. The rotating part 1712b is configured to rotate relative to the second fixing part 1711 to release the snap connection between the annular buckle 1712a and the first buckling part 1702. By providing that the second buckling part 1712 includes the rotating part 1712b and the annular buckle 1712a, it can facilitate rotating the rotating part 1712b when the annular buckle 1712a is buckled to the first buckling part 1702, so that the annular buckle 1712a can be separated from the first buckling part 1702, thus facilitating the disassembly and assembly of two adjacent strip lights 1.
[0052] Optionally, the rotating part 1712b can also be a stainless steel sheet, an iron sheet, etc., and can be specifically selected according to the actual situation, and is not specifically limited in this embodiment.
[0053] It can be understood that the rotating part 1712b can make the annular buckle 1712a engage with the first buckle part 1702 or release the engagement between the annular buckle 1712a and the first buckle part 1702 by rotating the angle of the annular buckle 1712a. For example, through the rotation operation of the rotating part 1712b, after the annular 1712a buckle rotates to the first position, the annular buckle 1712a can be engaged with the first buckle part 1702. After the annular buckle 1712a rotates to the second position, the annular buckle 1712a can be disengaged from the first buckle part 1702.
[0054] In some embodiments, the second buckle member 171 further includes a fastening part 1713, and the fastening part 1713 is detachably arranged at the second end 11b; when the fastening part 1713 is arranged at the second end 11b, at least part of the fastening part 1713 extends out of the second end 11b and extends to the first end 11a of an adjacent another strip light 1, and the part of the fastening part 1713 extending to the adjacent another strip light 1 forms an installation position, and the first buckle member 170 of the adjacent another strip light 1 is located at the installation position.
[0055] It can be understood that part of the structure of the fastening part 1713 needs to exceed the edge of the mounting seat 11 to perform its connection function, so in the application scenario of a single strip light 1, the fastening part 1713 is not configured. When multiple strip lights 1 need to be spliced, the fastening part 1713 can be installed at a specified position, and by using its design that can extend to the first end 11a of the mounting seat 11 of the adjacent strip light 1, a stable connection between adjacent strip lights 1 is achieved.
[0056] It can be understood that the fastening part 1713 can also be a stainless steel sheet, an iron sheet, etc., and the fastening part 1713 can be fixed to the bottom surface of the installation cavity 11c by, for example, screws, bolts, etc.
[0057] Please refer to Figure 5 , Figure 5 is Figure 1 a cross-sectional view taken along the A-A direction in, the installation cavity 11c penetrates through the first end 11a and the second end 11b, and the strip light 1 further includes two end caps 13, and the two end caps 13 are respectively detachably connected to the openings of the first end 11a and the second end 11b. By designing the end caps 13 at both ends of the strip light 1, the installation cavity 11c is closed, ensuring the integrity of the structure of the strip light 1.
[0058] Optionally, the end cap 13 can be a metal or alloy end cap, or a plastic end cap, which is not limited herein.
[0059] In some embodiments, when the linear lights 1 are spliced, the two end covers 13 can be detached from the openings of the first end 11a and the second end 11b, and a fastening portion 1713 is disposed at the opening of the second end 11b to achieve a stable connection between adjacent linear lights 1.
[0060] In some embodiments, the lamp body 12 includes a lamp board 12a and a heat sink 12b, the light emitting direction of the lamp board 12a is toward the opening of the installation cavity 11c, the heat sink 12b is arranged on the side of the lamp board 12a away from the light emitting direction, and the heat sink 12b extends along the length direction of the installation cavity 11c; the linear lamp 1 also includes two supporting structures 18, both of which are arranged in the installation cavity 11c and located at both ends of the installation cavity 11c, and the two supporting structures 18 are configured to support the heat sink 12b so that there is a gap between the heat sink 12b and the bottom of the installation cavity 11c. Through this design, the heat generated by the lamp body 12 can be quickly and effectively dissipated through the gap, avoiding a large amount of heat accumulation, thereby maintaining the stable working state of the lamp body 12, extending the service life, and improving the overall performance of the linear lamp 1.
[0061] See also Figure 6 , Figure 6 yes Figure 5 A partial enlarged view of the support structure in FIG. 18 , the support structure 18 includes a bottom bracket 181 and a support plate 180. The bottom bracket 181 is disposed in the installation cavity 11c, and a concave portion is formed on one side of the bottom bracket 181 close to the bottom surface of the installation cavity 11c, and the concave portion is connected to the installation cavity 11c. The support plate 180 is disposed on the side of the bottom bracket 181 away from the concave portion, and the support plate 180 is configured to support the heat sink 12b. By providing the support structure 18 including the bottom bracket 181 and the support plate 180, the concave at the bottom of the bottom bracket 181 is utilized to achieve heat dissipation and avoid heat accumulation.
[0062] It is understandable that the design of the bottom bracket 181 can be designed based on strength, stability and heat dissipation requirements.
[0063] Optionally, the material of the support plate 180 can be a high-strength, high-thermal conductivity material. For example, the support plate 180 can be a metal (such as an aluminum plate, a copper plate, etc.) or an alloy material (such as a stainless steel plate), which can have sufficient structural strength while also assisting in heat dissipation.
[0064] See also Figure 7 , Figure 7 is a schematic diagram of the structure of the linear light 1 provided in the embodiment of the present application from another perspective, such as Figure 7As shown in the enlarged structure in FIG, in some possible implementations, the light-transmitting cover plate 16 may be a glass cover plate or a polycarbonate cover plate. For example, when the light-transmitting cover plate 16 is a glass cover plate, the light-transmitting cover plate 16 may be a transparent organic glass, so that the light-transmitting cover plate 16 has high light transmittance. When the light-transmitting cover plate 16 is a polycarbonate cover plate, the light-transmitting cover plate 16 has the characteristics of being light, having strong impact resistance, and being bendable.
[0065] Optionally, a first protrusion 190 is provided on the light-transmitting cover plate 16, and an end of the first protrusion 190 facing away from the light-transmitting cover plate 16 is formed as a clamping portion 190a. The first protrusion 190 is also provided with a first step 190b extending toward the middle of the mounting cavity 11c, and the first step 190b is located between the clamping portion 190a and the light-transmitting cover plate 16; a second step 192 and a limiting portion 193 are provided on the side wall surface of the mounting cavity 11c, and the second step 192 and the limiting portion 193 are arranged in sequence at intervals in the direction of the bottom surface of the mounting cavity 11c pointed to by the light-transmitting cover plate 16, and the clamping portion 190a is supported on the second step 192, and the limiting portion 193 is configured to limit the position of the clamping portion 190a on the second step 192. By cooperating with the first protrusion 190 on the light-transmitting cover plate 16 and the second step 192 and the limiting portion 193 of the side wall of the mounting cavity 11c, the light-transmitting cover plate 16 can be stably installed without the need for fasteners such as screws and bolts, and it is also convenient to remove the light-transmitting cover plate 16 from the mounting base 11 during maintenance.
[0066] Optionally, the first protrusion 190 may be, for example, a circular protrusion, and a clamping portion 190a and a first step 190b are designed at both ends of the first protrusion 190. The clamping portion 190a has a clamping function, and optionally, the clamping portion 190a may be a cylindrical structure or a square column structure, which is not specifically limited here.
[0067] Optionally, the limiting portion 193 may be a block structure or a columnar structure, etc., which can be selected according to actual conditions and is not specifically limited here.
[0068] See also Figure 8 , Figure 8 1 is a schematic diagram of the structure of the mounting base 11 and the light-transmitting cover plate 16 provided in the embodiment of the present application. Figure 8As shown in the figure, the structural decomposition schematic diagram includes a mounting base 11, a light-transmitting cover plate 16, and a diffuser plate 191 located between the mounting base 11 and the light-transmitting cover plate 16. The diffuser plate 191 is located in the mounting cavity 11c and the diffuser plate 191 is carried on the first step 190b. The diffuser plate 191 is mainly used to improve the light distribution, make the light more uniform and soft, and enhance the lighting effect. The first step 190b on the light-transmitting cover plate 16 provides stable support for the diffuser plate 191, enabling the diffuser plate 191 to be accurately placed in the predetermined position, which not only ensures the aesthetics of the linear light 1, but also ensures its good lighting effect and stability.
[0069] The seamless splicing linear light disclosed in the embodiments of the present application has been introduced in detail above. Specific examples are used in this article to elaborate on the principle and implementation manner of the present application. The description of the above embodiments is only used to help understand the seamless splicing linear light of the present application and its core idea; at the same time, for those of ordinary skill in the art, according to the idea of the present application, there will be changes in the specific implementation manner and application scope. In summary, the content of this specification should not be construed as a limitation to the present application.
Claims
1. A seamless spliced strip light, characterized in that, Comprising: A mounting base, the mounting base including a first end and a second end in the length direction, the mounting base further including a mounting cavity having an opening, the mounting cavity extending in the direction from the first end to the second end; A lamp body, the lamp body being mounted in the mounting cavity, and the light-emitting direction of the lamp body facing the opening of the mounting cavity; A light-transmitting cover plate, the light-transmitting cover plate being connected to the mounting base to cover the opening of the mounting cavity; And A splicing assembly, the splicing assembly including a first buckle and a second buckle, the first buckle being provided at the first end, and the second buckle being provided at the second end; During splicing, the second buckle is configured to be snap-connected to the first buckle of another adjacent linear lamp to achieve splicing of two adjacent linear lamps in the length direction of the mounting base.
2. The seamless splicing linear lamp according to claim 1, wherein The first buckle is provided at an end portion close to the first end, and the second buckle is provided at an end portion close to the second end.
3. The seamless splicing strip light according to claim 1, wherein, The first buckle includes a first fixing portion and a first buckling portion, the first fixing portion being fixedly provided on the bottom surface of the mounting cavity, and the first buckling portion being formed at one end of the first fixing portion; The second buckle includes a second fixing portion and a second buckling portion extending in the length direction of the mounting base, the second fixing portion being fixedly provided on the bottom surface of the mounting cavity, the second buckling portion being connected to one end of the second fixing portion, and the second buckling portion being configured to be snap-connected to the first buckling portion of another adjacent linear lamp to achieve splicing of two linear lamps in the length direction of the mounting base.
4. The seamless splicing strip light according to claim 3, wherein, One end of the first fixing portion is bent towards the opening direction of the mounting cavity to form the first buckling portion, and the second buckling portion is rotatably connected to the second fixing portion to rotate relative to the second fixing portion to be buckled to the first buckling portion of another adjacent linear lamp.
5. The seamless splicing strip light according to claim 3, characterized in that, The second buckling portion includes a rotating portion and an annular buckle, the rotating portion and the annular buckle are both rotatably connected to the second fixing portion, the annular buckle is configured to be snap-connected to the first buckling portion of another adjacent linear lamp, and the rotating portion is configured to rotate relative to the second fixing portion to release the snap connection between the annular buckle and the first buckling portion.
6. The seamless splicing strip light according to claim 3, wherein The second buckle further includes a fastening portion, the fastening portion being detachably provided at the second end; When the fastening portion is provided at the second end, the fastening portion at least partially extends outside the second end and extends to the first end of another adjacent linear lamp, a portion of the fastening portion extending to another adjacent linear lamp forms a mounting position, and the first buckle of another adjacent linear lamp is located on the mounting position.
7. The seamless splicing linear lamp according to any one of claims 1-6, characterized in that, The mounting cavity penetrates through the first end and the second end, and the linear lamp further includes two end caps, the two end caps being respectively detachably connected to the openings at the first end and the second end.
8. The seamless splicing linear lamp according to any one of claims 1-6, characterized in that The lamp body comprises a lamp board and a heat sink, the light emitting direction of the lamp board is toward the opening of the installation cavity, the heat sink is arranged on a side of the lamp board away from the light emitting direction, and the heat sink extends along the length direction of the installation cavity; The linear light also includes two supporting structures, both of which are arranged in the installation cavity and located at two ends of the installation cavity. The two supporting structures are configured to support the heat sink so that there is a distance between the heat sink and the bottom of the installation cavity.
9. The seamless splicing strip light according to claim 8, characterized in that, The supporting structure includes a bottom bracket and a supporting plate. The bottom bracket is arranged in the installation cavity, and a recessed portion is formed on a side of the bottom bracket close to the bottom surface of the installation cavity, and the recessed portion is communicated with the installation cavity. The supporting plate is arranged on a side of the bottom bracket away from the recessed portion, and the supporting plate is configured to support the heat sink.
10. The seamless splicing strip light according to any one of claims 1-6, characterized in that, The light-transmitting cover plate is provided with a first protrusion, an end of the first protrusion facing away from the light-transmitting cover plate is formed as a clamping portion, and the first protrusion is also provided with a first step extending toward the middle of the mounting cavity, and the first step is located between the clamping portion and the light-transmitting cover plate; A second step and a limiting portion are provided on the side wall surface of the installation cavity. In the direction from the light-transmitting cover plate to the bottom surface of the installation cavity, the second step and the limiting portion are sequentially arranged at intervals. The clamping portion is supported on the second step, and the limiting portion is configured to limit the position of the clamping portion on the second step. The seamlessly spliced linear light further includes a diffusion plate, which is located in the installation cavity and supported by the first step.