Splicing type ceiling lamp for billiard table
By using a modular frame structure and concealed connectors, the design solves the problems of versatility and stability in chandelier mounting frames, achieving uniform light coverage and aesthetics, and avoiding the shortcomings of existing technologies.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-20
- Publication Date
- 2026-04-21
AI Technical Summary
The existing chandelier mounting frames are limited in size and specifications, lack versatility, have unstable connections, insufficient overall load-bearing capacity, pose safety risks, and the connectors are easily damaged and exposed, resulting in uneven lighting.
The system adopts a modular frame structure, with the shell fixed by internal connectors hidden in the installation channel. The frame is connected by connectors to form perforated holes for uniform lighting. The force of the connectors is distributed to the shell, ensuring stability and aesthetics.
The chandelier is highly versatile, has a stable connection, strong load-bearing capacity, and provides even light coverage of the billiard table, avoiding uneven lighting and safety hazards, while also being aesthetically pleasing.
Smart Images

Figure CN224150772U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of chandeliers, and in particular to a modular chandelier for a billiard table. Background Technology
[0002] A chandelier is a lighting fixture suspended from the ceiling or roof. It consists of a hanging bracket, a mounting frame, and the light fixture itself. The mounting frame is suspended from the ceiling via the hanging bracket, and the light fixture is installed within the mounting frame. The size and specifications of the mounting frame and the light fixture are limited. For example, a chandelier designed for a billiard table may not provide enough light to cover the entire table, leading to uneven lighting.
[0003] In related technologies, connectors and housings mostly use snap-fit connections. However, this type of connection is structurally unstable, relying on the elastic deformation of the snaps for connection, resulting in insufficient load-bearing capacity. Disassembly may damage the snaps, rendering the light unusable and increasing maintenance costs. Exposed snaps after assembly detract from the overall appearance of the chandelier. Furthermore, when the chandelier's light source projects onto a table, this type of connector obstructs the light source, making the illuminated area relatively darker than other areas. Some chandeliers require complex assembly during installation. After assembly, the entire mounting frame needs to be lifted, which may lead to instability at the joints, causing loosening or wobbling and posing safety risks. Utility Model Content
[0004] To overcome the technical problems of existing chandelier mounting frames, such as limited size and specifications, lack of versatility, unstable connections, insufficient overall load-bearing capacity, safety risks, easy damage to connectors leading to unusability, and obtrusive connection nodes, this utility model provides a modular chandelier for billiard tables, including a frame. The frame includes multiple shells and multiple internal connectors. Each shell has multiple mounting channels arranged along its length, and the mounting channels are interconnected.
[0005] The internal connector includes a first connecting segment and a second connecting segment fixedly connected to the first connecting segment. The first connecting segment and the second connecting segment are respectively inserted and fixed in the mounting channels of two adjacent housings so as to connect and fix the two adjacent housings.
[0006] Furthermore, the frame is a square structural component with splicing inflection points, splicing extension nodes, and hollow holes. The hollow holes are located in the center of the square structural component, and the splicing inflection points and splicing extension nodes are located on the outer edges of the hollow holes.
[0007] Furthermore, the housing has positioning sections at both ends, each positioning section having a positioning surface, and the openings at both ends of the mounting channel are formed on the positioning surfaces; the first connecting section and the second connecting section extend from the openings into the positioning sections respectively, for fitting the positioning surfaces of two adjacent positioning sections.
[0008] Furthermore, the positioning segment is a right-angled triangular structure, the inclined surface of the right-angled triangular structure is the positioning surface, and the two right-angled triangular structures are arranged perpendicularly and the positioning surfaces are attached to each other to form the splicing inflection point.
[0009] Furthermore, the positioning surfaces of two adjacent positioning segments are fitted together in the horizontal direction to form the splicing extension node.
[0010] Furthermore, the housing also has a hidden channel, with at least one mounting channel located on the bottom wall of the hidden channel, the hidden channel being adapted to connect to a suspension cable; the mounting channel has a partition side, the partition side being used to separate the connector and the suspension cable.
[0011] Furthermore, the housing includes a first side and a second side, the first side and the second side being disposed opposite to each other, and the first side and the second side having at least one of the mounting channels.
[0012] Furthermore, the housing includes a connecting surface located at the bottom end of the housing. The connecting surface is used to connect with a lamp. The lamp is arranged along the length direction of the connecting surface and covers the splicing inflection point and the splicing extension node.
[0013] Furthermore, the first connecting segment and the second connecting segment are integrally formed.
[0014] Furthermore, the vertical height of the lamp from the billiard table is 95 cm to 115 cm, and the vertical extension line of the corner of the billiard table in the vertical direction forms an angle of 45 degrees to 55 degrees with the connecting line of the top corner of the lamp located at the splicing inflection point in the horizontal direction. Beneficial effects
[0015] The beneficial effects of adopting the technical solution of this utility model are as follows:
[0016] To facilitate transportation and save space, the shell specifications are fixed. Two shells are joined together using internal connectors to form a frame for mounting the chandelier. The shell has multiple mounting channels running along its length and interconnected. The first connecting section of the internal connector extends into the first shell and secures it to the shell. The second connecting section extends into the second shell and secures it to the shell as well. Depending on the lighting fixture or environmental requirements, another connector of the same type can be added to the other end of the shell to ensure the frame size meets the specifications. This type of mounting frame is highly versatile. All connection points within the frame are achieved using connectors that link the two shells. These connectors remain entirely within the mounting channels, making them virtually invisible to the user from the outer surface of the frame – they are not exposed or obtrusive. The overall frame design avoids highlighting unnecessary components. The number of connectors corresponds to the number of mounting channels, with each connector extending into and securing itself to the channel. The force on the connectors is distributed across the shell, resulting in strong load-bearing capacity and preventing loosening. This ensures the overall stability of the mounting frame, avoiding the instability and insufficient overall load-bearing capacity issues found in existing technologies. Furthermore, the splicing inflection points and extension nodes of the frame form the outer edges of the perforated holes, which correspond precisely to the perimeter of the entire billiard table. Lighting fixtures are installed around the outer edges of these perforated holes, concentrating the light source and illuminating the billiard table surface. This avoids the uneven lighting issues caused by chandeliers failing to cover the entire billiard table surface, a problem present in existing technologies. Attached Figure Description
[0017] To more clearly illustrate the technical solutions of the embodiments of this utility model, the drawings used in the embodiments will be briefly introduced below. It should be understood that the following drawings only show some embodiments of this utility model and should not be regarded as a limitation of the scope. For those skilled in the art, other related drawings can be obtained from these drawings without creative effort.
[0018] Figure 1 This utility model relates to an explosion of a modular pendant light for a billiard table. Figure 1 ;
[0019] Figure 2 This utility model relates to an explosion of a modular pendant light for a billiard table. Figure 2 ;
[0020] Figure 3 This is a utility model Figure 1 A magnified view of part A in the middle;
[0021] Figure 4This is a utility model Figure 1 A magnified view of part B in the middle section;
[0022] Figure 5 This is a structural schematic diagram of a modular pendant light connector for a billiard table according to the present invention (Embodiment 1);
[0023] Figure 6 This is a structural schematic diagram of a modular pendant light connector for a billiard table according to the present invention (Embodiment 2);
[0024] Figure 7 This is a structural schematic diagram of a modular pendant light housing for a billiard table according to the present invention (Embodiment 1);
[0025] Figure 8 This is a schematic diagram of the structure of a modular pendant light housing for a billiard table (Example 2) according to this utility model.
[0026] Explanation of the reference numerals in the figure:
[0027] 1. Shell; 11. Mounting channel; 110. Opening; 111. Separating edge; 12. Connecting surface; 13. Hidden channel; 14. First side; 15. Second side; 16. Positioning section; 161. Positioning surface; 2. Inner connector; 21. First connecting section; 22. Second connecting section; 101. Frame; 102. Splicing inflection point; 103. Splicing extension node; 104. Hole. Detailed Implementation
[0028] To make the objectives, technical solutions, and advantages of the embodiments of this utility model clearer, the technical solutions of the embodiments of this utility model will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only a part of the embodiments of this utility model, not all of them. Therefore, the following detailed description of the embodiments of this utility model provided in the accompanying drawings is not intended to limit the scope of the claimed utility model, but merely to represent selected embodiments of this utility model. All other embodiments obtained by those skilled in the art based on the embodiments of this utility model without inventive effort are within the scope of protection of this utility model.
[0029] Please refer to Figures 1 to 8 A modular pendant light for a billiard table includes a frame 101, which includes multiple housings 1 and multiple internal connectors 2. Each housing 1 has multiple mounting channels 11 arranged along its length, and the mounting channels 11 are connected end to end.
[0030] The inner connector 2 includes a first connecting segment 21 and a second connecting segment 22 fixedly connected to the first connecting segment 21. The first connecting segment 21 and the second connecting segment 22 are respectively inserted and fixed in the mounting channels 11 of two adjacent housings 1 so as to connect and fix the two adjacent housings 1.
[0031] In this technical solution, for ease of transportation and to avoid occupying space, the specifications of the housing 1 are fixed. Two housings 1 are joined together by an internal connector 2 to form a frame 101 for mounting the chandelier. The housing 1 has multiple mounting channels 11, which are arranged along the length of the housing 1 and are interconnected. When the two housings 1 are joined, the two mounting channels 11 are on the same horizontal plane. The first connecting section 21 of the internal connector 2 extends into the first housing 1 and fixes it together. The second connecting section 22 of the internal connector 2 extends into the second housing 1 and fixes it together. Depending on the requirements of the lighting fixture or environment, another connector 2 of this type can be fixedly connected to the other end of the housing 1 to ensure that the size and specifications of the frame 101 meet the requirements. This type of mounting frame is versatile. The frame 101 is strong; all the connection nodes are connected by connectors 2, which connect the two shells 1. The connectors 2 are always in the installation channel 11. The user can hardly see the connectors 2 from the outer surface of the frame 1. They are not exposed or obtrusive. The whole frame 1 is presented without highlighting any unnecessary parts. The number of connectors 2 is equal to the number of installation channels 11. The connectors 2 extend into and are fixed in the installation channel 11. The force on the connectors 2 is distributed to the shell 1. The load-bearing capacity is strong. The connectors 2 are not easy to loosen. The overall structure of the installation frame is stable, avoiding the defects of unstable installation frame connection and insufficient overall load-bearing capacity in the prior art.
[0032] For structural stability, the outer surface of the housing 1 is provided with multiple installation channels 11, and the first connecting section 21 and the second connecting section 22 of the connector 2 are fixedly installed on the wall of the installation channel 11 by bolts. The connector 2 is fixedly connected to the housing 1 and is not easy to fall off. Preferably, the inner connector 2 is made of metal material, which has a stronger load-bearing capacity.
[0033] The frame 101 is a square structural component, having splicing inflection points 102, splicing extension nodes 103, and floor openings 104. For example, in Embodiment 1, it is constructed from... Figures 1 to 3 As shown, splicing inflection points 102 refer to the four corners of the square structural component, and at this time, the first connecting segment 21 and the second connecting segment 22 of the connector 2 are vertically fixed; for example, in embodiment two, by Figure 4As shown, the size of the frame 101 can be installed according to requirements. However, when the length of the shell 1 cannot meet the installation requirements, another shell 1 can be spliced in the horizontal extension direction of the shell 1. At this time, the first connecting segment 21 and the second connecting segment 22 of the connector 2 are horizontally fixed. The two shells 1 are connected and fixed by the connector 2 to form the splicing extension node 103. It is worth noting that in this embodiment, the splicing inflection point 102 and the splicing extension node 103 form the outer edge of the hollow hole 104, which corresponds exactly to the perimeter of the entire billiard table. Lighting fixtures are installed around the outer edge of the hollow hole 104, and the light source is concentrated in the hollow hole 104. The light source illuminates the billiard table and covers the billiard table, avoiding the situation in the prior art where the light source under the chandelier cannot cover the entire billiard table, resulting in uneven lighting. Specific embodiments are described below. Figure 1 and Figure 2 As shown.
[0034] Depend on Figure 3 , Figure 4 , Figure 7 and Figure 8 As shown, the housing 1 has positioning sections 16 at both ends, and each positioning section 16 has a positioning surface 161. The openings 110 at both ends of the mounting channel 11 are formed on the positioning surface 161. The first connecting section 21 and the second connecting section 22 extend into the positioning section 16 from the openings 110 to fit the positioning surfaces 161 of two adjacent positioning sections 16. The openings 110 at both ends of the mounting channel 11 are the entrances for the connector 2 to enter the mounting channel 11. The opening 110 is made on the positioning surface 161. On the one hand, the accuracy of the positioning surface 161 can be used to ensure the accurate positioning of the opening 110. On the other hand, it can also ensure that the first connecting segment 21 and the second connecting segment 22 of the connector 2 can accurately extend into the entrance of the installation channel 11 of the positioning segment 16. The positioning surface 161 achieves tight contact, thereby ensuring the assembly accuracy and stability of the entire mounting frame, eliminating assembly gaps, ensuring that the two adjacent shells 1 can work together, and helping to improve the strength and reliability of the entire frame 101. Preferably, the first connecting segment 21 and the second connecting segment 22 are integrally set, and there is no welding seam between the first connecting segment 21 and the second connecting segment 22, which makes the structure stable and improves the strength and stability of the overall structure.
[0035] It should be noted that the positioning segment 16 in this technical solution has two implementation methods, namely... Figure 4 and Figure 6 As shown, the positioning surface 161 of the positioning segment 16 is set in a plane in the vertical direction, which facilitates the formation of the splicing extension node 103; by Figure 3 and Figure 5As shown, the positioning segment 16 is a right-angled triangular structure, and the inclined surface of the right-angled triangular structure is the positioning surface 161, which facilitates the formation of the splicing inflection point 102.
[0036] Specifically, the specific embodiment of splicing inflection point 102 is as follows: Figure 3 and Figure 8 As shown, the positioning segment 16 is a right-angled triangular structure, and the inclined surface of the right-angled triangular structure is the positioning surface 161. The two right-angled triangular structures are set perpendicularly and the positioning surfaces 161 are attached to each other to form the splicing inflection point 102. Through the mutual connection of the right-angled triangular structures, the structure is more stable.
[0037] Furthermore, by Figure 2As shown, the housing 1 also has a hidden channel 13, with at least one mounting channel 11 located on the bottom wall of the hidden channel 13. The hidden channel 13 is adapted to connect with a suspension cable. The mounting channel 11 has a separating edge 111, which is used to separate the connector 2 and the suspension cable. In this embodiment, the housing 1 includes a connecting surface 12, which is located at the bottom end of the housing 1 and at the outer edge of the hollow hole 104. The connecting surface 12 is used to connect with a lamp, wherein the lamp is an LED panel. Several LED panels of common sizes are arranged along the length of the connecting surface 12. The outer edge of the LED panel is snapped onto the connecting surface 12 along the outer edge of the connecting surface 12. The LED panel completely covers the connecting surface 12, which corresponds to the outer edge of the billiard table, thereby providing uniform illumination to the billiard table. The vertical height of the lamp (LED panel) from the billiard table is 95 cm to 115 cm. The size of this modular chandelier is slightly larger than the size of a billiard table. Specifically, the vertical extension line of the corner of the billiard table forms a 45-55 degree angle with the connecting line of the top corner of the chandelier located at the splicing inflection point 102. The light source of this modular chandelier shines vertically onto the billiard table, completely covering the area of the billiard table with the light source generated by the chandelier (LED panel). This avoids the limitation of the size of the chandelier installed in the frame 101 in the prior art, where the light source cannot cover the entire billiard table. Furthermore, since the inner connector 2 is located in the installation channel 11, when the chandelier (LED panel) completely covers the connecting surface 12, it means that the chandelier (LED panel) completely covers the surface. The connecting surface 12, where the splicing inflection point 102 and the splicing extension node 103 are joined, ensures that the light source generated by the lamp (LED panel) illuminates the billiard table completely, avoiding the uneven lighting caused by the light source in the area with connecting parts being relatively dim compared to other areas, as is the case in the prior art. When multiple housings 1 are spliced together to form a frame 101 by connecting parts 2, the end of the frame 101 away from the ceiling is the end where the lamp panel of the chandelier is installed. The lamp panel of the chandelier is snapped into the connecting surface 12 to form the chandelier. A hidden channel 13 is provided at the top of the housing 1 to hide and protect the wires of the chandelier installed at the bottom of the housing 1, eliminating the need to hide the wires by cutting grooves in the wall, thus facilitating organization. At least one installation channel 11 is provided on the bottom wall of the hidden channel 13, and a dividing edge 111 is provided on the side of the installation channel 11 facing the hidden channel 13 to separate the connecting parts 2 and the suspension cable, preventing the suspension cable from being scratched by the connecting parts 2.
[0038] To increase the stability of the structure, by Figures 1 to 6As shown, the housing 1 includes a first side 14 and a second side 15, which are arranged opposite to each other. Each side 14 and side 15 has at least one mounting channel 11. Several other sides of the housing 1 away from the connecting surface 12 also have at least one mounting channel 11. A first connecting segment 21 of a connector 2 is fixed in each mounting channel 11 of the other housing 1, while a second connecting segment 22 of the connector 2 is fixed in each mounting channel 11 of another housing 1. This achieves a stable connection between the two housings 1, increasing the stability of the connection and the overall load-bearing capacity. Since the connectors 2 are all located within the mounting channels 11, they are not easily visible, enhancing the aesthetics of the entire mounting frame.
[0039] Work process: First, the installation positions of the chandelier are preset on the ceiling. Four positions are located on the ceiling, which correspond to the positions of the splicing corner points 102. The four splicing corner points 102 are installed. The positioning sections 16 of the two shells 1 are right-angled triangular structural components, and one side is spliced and fixed by the connector 2. Specifically, the first connecting section 21 and the second connecting section 22 of the connector 2 are inserted into the installation channel 11 of the shell and fixed in the installation channel 11 of the shell by bolts. At this time, the positioning surfaces 161 of the two positioning sections 16 are attached and fixed together.
[0040] The suspension cable extends from the hidden channel 13 and is fixedly installed on the ceiling at a preset position corresponding to the ceiling, so that the four corner points can be suspended from the ceiling. According to the length requirements, another positioning segment 16 of one of the splicing corner points 102 is selected and connected to another shell 1 through the connector 2 to form a splicing extension node 103. Then, the shell 1 is connected to another splicing corner point 102 through the connector 2, so that the four splicing corner points 102 can be spliced together to form a frame 101. The light panel is snapped into the end of the frame 101 away from the ceiling to form the chandelier.
[0041] The above description is merely a preferred embodiment of this utility model and is not intended to limit the utility model. Various modifications and variations can be made to this utility model by those skilled in the art. Any modifications, equivalent substitutions, or improvements made within the spirit and principles of this utility model should be included within the protection scope of this utility model.
Claims
1. A modular ceiling light for a billiard table, characterized in that Includes a frame (101), the frame (101) includes multiple housings (1) and multiple internal connectors (2), the housings (1) have multiple mounting channels (11) arranged along their length direction, the mounting channels (11) are connected end to end; The inner connector (2) includes a first connecting segment (21) and a second connecting segment (22) fixedly connected to the first connecting segment (21). The first connecting segment (21) and the second connecting segment (22) are respectively inserted and fixed in the mounting channels (11) of two adjacent housings (1) so as to connect and fix the two adjacent housings (1).
2. A jointed ceiling light for a billiard table according to claim 1, characterized in that The frame (101) is a square structural component with splicing inflection point (102), splicing extension node (103) and hollow hole (104). The hollow hole (104) is located in the center of the square structural component, and the splicing inflection point (102) and the splicing extension node (103) are located on the outer edge of the hollow hole (104).
3. A jointed ceiling light for a billiard table according to claim 2, characterised in that The housing (1) has positioning sections (16) at both ends, and each positioning section (16) has a positioning surface (161). The openings (110) at both ends of the installation channel (11) are opened on the positioning surface (161). The first connecting section (21) and the second connecting section (22) extend from the opening (110) into the positioning section (16) respectively, for fitting the positioning surfaces (161) of two adjacent positioning sections (16).
4. A jointed ceiling light for a billiard table according to claim 3, characterised in that The positioning segment (16) is a right-angled triangular structure, and the inclined surface of the right-angled triangular structure is the positioning surface (161). The two right-angled triangular structures are set vertically and the positioning surfaces (161) are attached to each other to form the splicing inflection point (102).
5. A jointed ceiling light for a billiard table according to claim 3, characterised in that The positioning surfaces (161) of two adjacent positioning segments (16) are fitted together in the horizontal direction to form the splicing extension node (103).
6. A modular ceiling light for a billiard table according to claim 1, characterized in that The housing (1) also has a hidden channel (13), and at least one of the mounting channels (11) is located on the bottom wall of the hidden channel (13), the hidden channel (13) being adapted to be connected to the suspension cable; the mounting channel (11) is provided with a partition (111), the partition (111) being used to separate the connector (2) and the suspension cable.
7. A modular ceiling light for a billiard table according to claim 1, characterized in that The housing (1) includes a first side (14) and a second side (15), the first side (14) and the second side (15) are arranged opposite to each other, and the first side (14) and the second side (15) are provided with at least one of the installation channels (11).
8. A modular ceiling light for a billiard table according to claim 2, characterized in that The housing (1) includes a connecting surface (12) located at the bottom end of the housing (1). The connecting surface (12) is used to connect with a lamp. The lamp is arranged along the length direction of the connecting surface (12) and covers the splicing inflection point (102) and the splicing extension node (103).
9. A modular ceiling light for a billiard table according to claim 1 or 3, characterized in that The first connecting segment (21) and the second connecting segment (22) are integrally formed.
10. A modular ceiling light for a billiard table according to claim 8, characterized in that The vertical height of the lamp from the surface of the billiard table is 95-115 cm, and the vertical extension line of the corner of the surface of the billiard table in the vertical direction and the connecting line of the top corner of the lamp in the horizontal direction at the splicing inflection point (102) form an angle of 45-55 degrees.