Magnetic wall surface splicing lamp
By designing magnetic wall splicing lamps, using the combined structure of frame and connectors, the free splicing and convenient installation of lamps are achieved, meeting personalized needs, solving the problem that existing lamps cannot be expanded, and providing flexible combination and convenient maintenance effects.
Patent Information
- Application Number
- CN202422427210.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-09
- Publication Date
- 2025-09-05
- Estimated Expiration
- 2034-10-09
AI Technical Summary
The existing lamps are fixed on the wall with a single product, and cannot be expanded and spliced according to the needs of the scene, and cannot meet the personalized needs of consumers.
A magnetic wall splicing lamp is designed, consisting of several splicing units, each unit includes a frame and a light emitting member. Splicing is achieved by connecting half-slots and connectors. A connecting groove and an adjoining groove are provided on the frame to fix adjacent units. The line pipe is fixed by a card slot, and the light emitting member is installed through a magnetic connector, supporting a variety of fixing methods.
It realizes the free splicing of lamps, supports combinations of any shape and size, has an orderly line structure, is convenient to install and disassemble, and is easy to maintain, creating a personalized atmosphere.
Smart Images

Figure CN223306793U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of lamps, and in particular relates to a magnetic wall splicing lamp. Background Art
[0002] Lamps are a general term for lighting tools. They not only illuminate but also, through diverse designs and materials, add ambiance and beauty to homes and commercial spaces. As a crucial component of the lighting system, lamps play an indispensable role in our daily lives. With technological advancements and evolving market demands, the types, functions, and designs of lamps will continue to innovate and improve.
[0003] The current diversification of consumer demand, with personalization and customization becoming key trends in the lighting market, allows consumers to customize unique lighting products based on their preferences and needs. However, wall-mounted lamps are generally small and monolithic, and cannot be expanded or spliced to suit specific scenarios. Therefore, modifications within this range are necessary. Summary of the Invention
[0004] In order to solve the technical problem in the background art that the existing lamps are fixed on the wall with a single product and cannot be spliced, the purpose of the utility model is to provide a magnetic wall splicing lamp that can solve the above problem.
[0005] The technical solution for achieving the purpose of the utility model is: a magnetic wall splicing lamp, composed of several splicing units, the splicing unit includes a frame, a first connecting part and a light-emitting part, the light-emitting part is installed in the frame, the frame is provided with a connecting half-groove, the corresponding connecting half-grooves in adjacent splicing units are spliced into a connecting groove, and the first connecting part is installed in the connecting groove.
[0006] The lamp in this solution is made up of several splicing units. Specifically, each splicing unit includes a frame and a light-emitting component. The light-emitting component is installed in the frame and is used as a light source. Adjacent splicing units are connected and fixed by a first connecting member. Specifically, a connecting half-groove is set on the frame. The connecting half-grooves between adjacent frames are spliced into a connecting groove corresponding to the first connecting member. After the first connecting member is installed in the connecting groove, it plays the role of connecting adjacent splicing units. As needed, it can be spliced into wall splicing lamps of any shape and size. The connecting half-grooves can be arranged on all four sides of the frame, which is convenient for splicing with other frames, that is, it can be spliced in the X and Y directions of the same horizontal plane to form a personalized splicing lamp. Furthermore, the light-emitting components in each splicing unit can also emit different colors of light to create a better atmosphere. Fixing holes can also be set on the frame to fix it to the wall by screws, or by bonding and other fixing methods. Bolt holes can also be set on the first connecting member for bolt fixing. The spliced lamp in this solution has a simple structure and can be spliced to form spliced lamps of different shapes as needed, making the product more diverse. The simple splicing structure also facilitates faster assembly.
[0007] Furthermore, the width of the first connector at both ends is greater than the width of its center, and the size and shape of the connecting groove correspond to the first connector. In other words, the width of the connecting groove at both ends is greater than the width of its center, allowing the first connector to fit snugly within the groove. The groove also acts as a position limiter, preventing it from dislodging when the two frames move in opposite directions. Chamfered corners are provided between the ends and center of the first connector, and between the ends and center of the connecting groove, respectively, to facilitate quick, snug installation.
[0008] Furthermore, the spliced lamp also includes a second connecting piece, and an outward-opening adjacent half-groove is provided at the corner of the outer wall of the frame, and the adjacent half-grooves in at least three splicing units enclose an adjacent groove, and the second connecting piece is installed in the adjacent groove. In this solution, a square second connecting piece is adopted, and four adjacent frames are spliced together to form a complete adjacent groove. The second connecting piece is installed in the adjacent groove, which plays a further connecting and fixing role between adjacent frames, preventing the Z-direction sliding from causing the separation of the splicing units of the spliced lamp. Of course, the shape of the frame and the number of adjacent half-grooves that form the adjacent groove can be freely set as needed. Threaded holes can also be provided on the second connecting piece for fixing by bolts.
[0009] Furthermore, the spliced light also includes a wiring tube that connects the light-emitting components within the multiple spliced units in series. The frame is provided with a slot into which the wiring tube snaps. The wiring tube provides unified and integrated wiring for the light-emitting components within each spliced unit, and the frame is provided with a slot for mounting and securing the components, making the wiring structure of the spliced light appear more organized and regular. The light-emitting components and the wiring within the wiring tube can be quickly connected using male and female connectors.
[0010] Furthermore, the splicing unit further includes a clamping block, and the sidewalls of the slot are provided with corresponding limiting grooves. The clamping block is installed in the limiting grooves and thereby limits the position of the circuit tube within the slot. To prevent the circuit tube from slipping out of the slot, limiting grooves are provided on the sidewalls of the slot. When the clamping block is installed in the limiting grooves, it limits and fixes the circuit tube, thereby preventing it from slipping out of the slot.
[0011] Furthermore, the splicing unit also includes a magnetic connector, comprising an upper body and a lower body, each of which is composed of a threaded rod and a magnetic head. The upper body is mounted on the frame via its threaded rod, and the lower body is mounted on the light-emitting element via its threaded rod. The light-emitting element is magnetically fixed to the frame via the magnetic heads of the upper and lower bodies. If the circuits within the frame need to be repaired or the light-emitting element needs to be replaced, the light-emitting element can be directly removed, making installation and removal quick and convenient, and facilitating maintenance.
[0012] Furthermore, the light-emitting element includes a light-transmitting cover and a light source. The light-transmitting cover has a mounting slot, and the light source is mounted within the mounting slot. Light generated by the light source is directed into the light-transmitting cover and then emitted through the light-transmitting cover to illuminate the light. The mounting slot facilitates the installation of the light source. The light source can take various forms, such as a light bar.
[0013] Furthermore, the light-emitting component also includes a translucent mounting component, the translucent mounting component is provided with a first mounting hole, the translucent cover is provided with a second mounting hole corresponding to the first mounting hole, and fixing bolts are installed in the first mounting hole and the second mounting hole respectively; the translucent mounting component has a mounting cavity, and the light source is installed in the mounting cavity; one end of the light source has a bending portion, and one end of the mounting cavity has a corresponding bending groove, and the bending portion is installed in the bending groove. The translucent mounting component facilitates the fixed installation of the light source, and by providing a bending groove corresponding to the bending portion of the light source, the position of the light source can be limited to prevent it from shaking in the mounting cavity and causing damage. The translucent mounting component is installed in the mounting groove, and the lower body is installed on the translucent cover through its threaded rod.
[0014] Furthermore, the light emitting element further includes a support block, which is mounted at the opening of the mounting cavity and supports the light source within the mounting cavity. The support block not only supports the light source but also seals the opening of the mounting cavity to prevent other objects from entering and damaging the light source.
[0015] Furthermore, the central portion of the light-transmitting cover is convex to one side, and the convex portion and the side have inclined surfaces at a certain angle, which can create special effects and atmosphere after the light source is turned on.
[0016] By adopting the above technical solution, the utility model has the following beneficial effects:
[0017] (1) The splicing lamp is composed of multiple splicing units, each of which is fixed by a connecting groove composed of a first connecting piece and a connecting half groove on the frame. It can be freely spliced and combined according to the needs of the scene, which is more personalized;
[0018] (2) The shapes of the first connecting member and the connecting groove are both such that the widths at both ends are larger than the width in the middle, so that when the spliced light slides horizontally, the first connecting member will not slide out of the connecting groove, thereby playing a role of fixed connection;
[0019] (3) When the spliced lamp is composed of more than three splicing units, an adjacent half-groove is set at the corner of the outer wall of each frame, and the second connecting member is installed in the adjacent groove composed of multiple adjacent half-grooves. When the spliced lamp slides in the vertical direction, that is, the Z direction, the second connecting member plays a role in connecting and fixing, thereby preventing the multiple splicing units from dispersing;
[0020] (4) Add a unified line pipe in the frame and fix it by setting a slot on the frame;
[0021] (5) The light-emitting parts are installed and fixed by magnetic connectors, which makes disassembly more convenient and quick without the need to tighten bolts, etc.
[0022] (6) The light-emitting component includes a light-transmitting mounting component that is convenient for installing the light source, and a mounting cavity, a bending groove, and a support block are provided inside the light-transmitting mounting component to better install and fix the light source. BRIEF DESCRIPTION OF THE DRAWINGS
[0023] In order to make the content of the present invention more clearly understood, the present invention is further described in detail below based on specific embodiments and in conjunction with the accompanying drawings, wherein
[0024] Figure 1 This is a schematic diagram of the overall structure of the spliced lamp in this utility model;
[0025] Figure 2 This is a schematic diagram of the frame structure of the present utility model;
[0026] Figure 3 This is a schematic structural diagram of the first connecting member in the present utility model;
[0027] Figure 4 This is a schematic structural diagram of the second connecting member in the present utility model;
[0028] Figure 5 This is a schematic diagram of the card block structure in the utility model;
[0029] Figure 6 This is a schematic diagram of the structure of the magnetic connector in the utility model;
[0030] Figure 7 This is a schematic diagram of the upper body structure of the utility model;
[0031] Figure 8 This is a schematic diagram of the light-transmitting cover structure in the utility model;
[0032] Figure 9 This is an exploded view of the light-transmitting mounting structure in the utility model.
[0033] The numbers in the accompanying drawings are: 1 splicing unit; 2 frame; 3 first connecting part; 3-1 bolt hole; 4 light-emitting part; 5 connecting half groove; 6 connecting groove; 7 fixing hole; 8 second connecting part; 8-1 threaded hole; 9 adjacent half groove; 10 line tube; 11 card slot; 12 male and female heads; 13 card block; 14 limit slot; 15 magnetic connecting part; 16 upper body; 17 lower body; 18 threaded rod; 19 magnetic head; 20 light-transmitting cover; 21 light source; 22 mounting groove; 23 light-transmitting mounting part; 24 first mounting hole; 25 second mounting hole; 26 mounting cavity; 27 bending part; 28 bending groove; 29 support block; 30 protrusion; 31 inclined surface. DETAILED DESCRIPTION
[0034] Example:
[0035] like Figure 1As shown, the utility model provides a magnetic wall splicing lamp, which is composed of a number of splicing units 1. The splicing unit 1 includes a frame 2, a first connecting member 3 and a light-emitting member 4. The light-emitting member 4 is installed in the frame 2. The frame 2 is provided with a connecting half-groove 5. The corresponding connecting half-grooves 5 in adjacent splicing units 1 are spliced into a connecting groove 6. The first connecting member 3 is installed in the connecting groove 6. The lamp in this solution is spliced together by a number of splicing units 1. Specifically, each splicing unit 1 includes a frame 2 and a light-emitting member 4. The light-emitting member 4 is installed in the frame 2 and is used for the light source 21 to emit light. Adjacent splicing units 1 are connected and fixed by the first connecting member 3. Specifically, a connecting half-groove 5 is provided on the frame 2. The connecting half-grooves 5 between adjacent frames 2 are spliced into a connecting groove 6 corresponding to the first connecting member 3. After the first connecting member 3 is installed in the connecting groove 6, it plays the role of connecting adjacent splicing units 1. According to needs, it can be spliced into wall splicing lamps of any shape and size. The connecting half grooves 5 can be arranged on all four sides of the frame 2, which is convenient for splicing with other frames 2, that is, it can be spliced in the X and Y directions of the same horizontal plane to form a personalized splicing lamp. Furthermore, the light-emitting parts 4 in each splicing unit 1 can also emit lights of different colors to create a better atmosphere. Fixing holes 7 can also be provided on the frame 2, which can be fixed to the wall by screws, or by various fixing methods such as bonding. Bolt holes 3-1 can also be provided on the first connecting member 3 for bolt fixing. The splicing lamp in this solution has a simple structure and can be spliced to form splicing lamps of different shapes as needed, making the product more diverse, and the simple splicing structure also facilitates faster assembly.
[0036] like Figure 2 and Figure 3 As shown, the width of the ends of the first connector 3 is greater than the width of its middle portion, and the size and shape of the connecting groove 6 correspond to the first connector 3. In other words, the width of the ends of the connecting groove 6 is greater than the width of its middle portion, so that the first connector 3 can be inserted into the connecting groove 6. The connecting groove 6 also acts as a limiter for the first connector 3, preventing it from disengaging from the connecting groove 6 when the two frames 2 move in opposite directions. Corresponding chamfers are provided between the ends and middle portion of the first connector 3 and between the ends and middle portion of the connecting groove 6, respectively, to facilitate quick and snug installation.
[0037] like Figure 2 and Figure 4As shown, the spliced lamp also includes a second connecting member 8, and an outward-opening adjacent half-groove 9 is provided at the corner of the outer wall of the frame 2. The adjacent half-grooves 9 in at least three splicing units 1 enclose an adjacent groove, and the second connecting member 8 is installed in the adjacent groove. In this solution, a square second connecting member 8 is adopted, and four adjacent frames 2 are spliced together to form a complete adjacent groove. The second connecting member 8 is installed in the adjacent groove, which plays a further connecting and fixing role between adjacent frames 2, preventing the Z-direction sliding from causing the separation of the splicing units 1 of the spliced lamp. Of course, the shape of the frame 2 and the number of adjacent half-grooves 9 that form the adjacent groove can be freely set as needed. A threaded hole 8-1 can also be provided on the second connecting member 8 for fixing with bolts.
[0038] like Figure 1 and Figure 2 As shown, the spliced light also includes a wiring tube 10, which connects the light-emitting components 4 within the multiple spliced units 1 in series. The frame 2 is provided with a slot 11, into which the wiring tube 10 snaps. The wiring tube 10 provides unified and integrated wiring for the light-emitting components 4 within each spliced unit 1. The slots 11 provided on the frame 2 facilitate installation and securement, making the wiring structure of the spliced light more organized and regular. The light-emitting components 4 and the wiring within the wiring tube 10 can be quickly connected using male and female connectors 12.
[0039] like Figure 2 and Figure 5 As shown, the splicing unit 1 further includes a clamping block 13. The sidewalls of the slot 11 are provided with corresponding limiting grooves 14. The clamping block 13 is installed in the limiting grooves 14 and limits the position of the circuit tube 10 within the slot 11. To prevent the circuit tube 10 from slipping out of the slot 11, the limiting grooves 14 are provided on the sidewalls of the slot 11. When the clamping block 13 is installed in the limiting grooves 14, it limits and fixes the circuit tube 10, preventing it from slipping out of the slot 11.
[0040] like Figure 6 and Figure 7 As shown, the splicing unit 1 also includes a magnetic connector 15, which includes an upper body 16 and a lower body 17. The upper body 16 and the lower body 17 are each composed of a threaded rod 18 and a magnetic head 19. The upper body 16 is mounted on the frame 2 via its threaded rod 18, and the lower body 17 is mounted on the light-emitting element 4 via its threaded rod 18. The light-emitting element 4 is magnetically fixed within the frame 2 via the magnetic heads 19 of the upper body 16 and the lower body 17. If the circuit within the frame 2 needs to be repaired or the light-emitting element 4 needs to be replaced, the light-emitting element 4 can be directly removed. Both installation and removal are convenient and quick, and easy to maintain.
[0041] like Figure 8and Figure 9 As shown, the light-emitting element 4 includes a light-transmitting cover 20 and a light source 21. The light-transmitting cover 20 has a mounting slot 22, and the light source 21 is mounted within the mounting slot 22. The light generated by the light source 21 is directed into the light-transmitting cover 20 and then emitted from the light-transmitting cover 20 to illuminate the light. The mounting slot 22 facilitates the installation of the light source 21. The light source 21 can take various forms, such as a light bar.
[0042] Preferably, the light-emitting element 4 further includes a translucent mounting member 23, which is provided with a first mounting hole 24. The translucent cover 20 is provided with a second mounting hole 25 corresponding to the first mounting hole 24. Fixing bolts are installed in the first mounting hole 24 and the second mounting hole 25, respectively. The translucent mounting member 23 has a mounting cavity 26, and the light source 21 is mounted in the mounting cavity 26. One end of the light source 21 has a bent portion 27, and one end of the mounting cavity 26 has a corresponding bent groove 28, and the bent portion 27 is mounted in the bent groove 28. The translucent mounting member 23 facilitates the fixed installation of the light source 21, and the provision of the bent groove 28 corresponding to the bent portion 27 of the light source 21 can limit the position of the light source 21, preventing it from shaking and causing damage within the mounting cavity 26. The translucent mounting member 23 is installed in the mounting groove 22, and the lower body 17 is mounted on the translucent cover 20 via its threaded rod 18.
[0043] Preferably, the light emitting element 4 further includes a support block 29, which is installed at the opening of the mounting cavity 26 to support the light source 21 within the mounting cavity 26. The support block 29 not only supports the light source 21 but also seals the opening of the mounting cavity 26 to prevent other objects from entering and damaging the light source 21.
[0044] Preferably, the center portion of the light-transmitting cover 20 is convex to one side, and the convex portion 30 and the side have inclined surfaces 31 at a certain angle, which can create special effects and atmosphere after the light source 21 is turned on.
[0045] Working principle: During installation, first fix the frame 2 of the two splicing units 1 through the first connecting piece 3. If there are third or more splicing units 1, install the second connecting piece 8 in the adjacent groove at the middle position; then clamp the line tube 10 in the clamping groove 11, and arrange the lines in the spliced lamp; when installing the light-emitting part 4, the light source 21 is installed in the light-transmitting mounting part 23, and the light-transmitting mounting part 23 is installed in the mounting groove 22, and the light-transmitting cover 20 is installed on the frame 2 through the magnetic connecting piece 15; finally, after the installation is completed, fix the spliced lamp composed of multiple splicing units 1 on the wall to complete the assembly and installation of the lamp.
[0046] The specific embodiments described above further illustrate the purpose, technical solutions and beneficial effects of the present invention in detail. It should be understood that the above description is only a specific embodiment of the present invention and is not intended to limit the present invention. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principles of the present invention should be included in the scope of protection of the present invention.
Claims
1. A magnetic wall mounted light, characterized in that: The invention is composed of a plurality of splicing units (1), wherein the splicing units (1) include a frame (2), a first connecting member (3) and a light-emitting member (4), wherein the light-emitting member (4) is installed in the frame (2), and a connecting half-groove (5) is provided on the frame (2). The corresponding connecting half-grooves (5) in adjacent splicing units (1) are spliced to form a connecting groove (6), and the first connecting member (3) is installed in the connecting groove (6).
2. The magnetic wall mounted light according to claim 1, characterized in that: The widths of both ends of the first connecting member (3) are greater than the width of the middle portion thereof, and the size and shape of the connecting groove (6) correspond to those of the first connecting member (3).
3. The magnetic wall mounted light according to claim 1, characterized in that: The spliced lamp further comprises a second connecting member (8); an outwardly opening adjacent half groove (9) is provided at an edge corner of an outer side wall of the frame (2); the adjacent half grooves (9) in at least three splicing units (1) are enclosed to form an adjacent groove; and the second connecting member (8) is installed in the adjacent groove.
4. The magnetic wall mounted light according to claim 1, characterized in that: The spliced lamp further comprises a line tube (10), wherein the line tube (10) is connected in series to the light-emitting components (4) in the plurality of spliced units (1); a card slot (11) is provided on the frame (2), and the line tube (10) is card-engaged in the card slot (11).
5. The magnetic wall mounted light according to claim 4, characterized in that: The splicing unit (1) further comprises a card block (13), a side wall of the card slot (11) is provided with a corresponding limiting slot (14), the card block (13) is installed in the limiting slot (14), and the line pipe (10) is limitedly installed in the card slot (11).
6. The magnetic wall mounted light according to claim 1, characterized in that: The splicing unit (1) further includes a magnetic connector (15), the magnetic connector (15) including an upper body (16) and a lower body (17), the upper body (16) and the lower body (17) both consisting of a threaded rod (18) and a magnetic head (19), the upper body (16) being mounted on the frame (2), the lower body (17) being mounted on the light-emitting component (4), and the light-emitting component (4) being magnetically fixed in the frame (2) via the magnetic heads (19) of the upper body (16) and the lower body (17).
7. The magnetic wall mounted light according to claim 1, characterized in that: The light-emitting element (4) comprises a light-transmitting cover (20) and a light source (21); the light-transmitting cover (20) is provided with a mounting groove (22); and the light source (21) is mounted in the mounting groove (22).
8. The magnetic wall mounted light according to claim 7, characterized in that: The light-emitting component (4) further comprises a light-transmitting mounting component (23), wherein a first mounting hole (24) is provided on the light-transmitting mounting component (23), and a second mounting hole (25) corresponding to the first mounting hole (24) is provided on the light-transmitting cover (20), and fixing bolts are correspondingly installed in the first mounting hole (24) and the second mounting hole (25); a mounting cavity (26) is provided in the light-transmitting mounting component (23), and the light source (21) is installed in the mounting cavity (26); one end of the light source (21) has a bending portion (27), and one end of the mounting cavity (26) has a corresponding bending groove (28), and the bending portion (27) is installed in the bending groove (28).
9. The magnetic wall mounted light according to claim 8, characterized in that: The light-emitting element (4) further comprises a support block (29), wherein the support block (29) is installed at the opening of the installation cavity (26) and supports the light source (21) in the installation cavity (26).
10. The magnetic wall mounted light according to claim 7, characterized in that: The central portion of the light-transmitting cover (20) is convex toward one side, and the convex portion (30) and the side edge both form an inclined surface (31).