Lamp module
By using profile modules and splicing accessories formed through roll bending, combined with ceiling and hanging accessories, the design problems of splicing and shaping of neon light products have been solved, realizing the aesthetics, stability and diversified installation of the light modules, and improving their applicability.
Patent Information
- Application Number
- CN202520418576.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-11
- Publication Date
- 2026-02-06
- Estimated Expiration
- 2035-03-11
AI Technical Summary
Existing neon light products suffer from problems such as unreasonable design in splicing and styling, insufficient structural strength, poor stability, and limited installation methods, making it difficult to meet diverse installation needs and affecting flexibility and applicability.
The long strip-shaped profile modules formed by roll bending are connected by splicing accessories. Combined with ceiling-mounted and hanging accessories, they can achieve diversified design and stability of lighting modules, while supporting both ceiling-mounted and hanging installation.
It achieves aesthetic appeal, structural stability, and diverse installation methods for lighting modules, enhances the strength and flexibility of splicing parts, and meets the installation needs of different application scenarios.
Smart Images

Figure CN223882244U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of LED lighting, especially relates to a lamp module. BACKGROUND
[0002] The current market neon lamp product has the problem in realizing free splicing and modeling, especially for the large size and heavy neon lamp product, the design and implementation of splicing and modeling are particularly difficult, for example, the existing solution on the market generally has the problem of unreasonable design of splicing part, these parts often appear too bulky and lack of aesthetic feeling, or the splicing structure itself is insufficient in strength, poor in stability, and difficult to meet the requirement of safety in actual application, more importantly, these solutions often limit the diversity of installation mode, so that the lamp module is often single in installation mode, cannot meet the requirements of ceiling mounting and hoisting installation, thereby affecting the flexibility and applicability of neon lamp product in various application scenarios. SUMMARY
[0003] The utility model aims at providing a lamp module, which aims to solve the problem of lack of aesthetic feeling and structural strength in profile splicing of the lamp module in the prior art and the problem of inability of the lamp module to simultaneously meet the installation requirements of ceiling mounting and hoisting installation.
[0004] The utility model provides a lamp module, which comprises:
[0005] A plurality of profile modules are provided and are in the shape of a long strip, and the profile modules are formed by a roll bending processing mode.
[0006] A splicing accessory is used to splice one end of one profile module with the other end of an adjacent profile module.
[0007] A lamp body is in the shape of a long strip and is arranged along one side of the spliced profile modules, and the lamp body is fixed to the profile modules by a plurality of fixed members arranged at intervals.
[0008] A ceiling mounting accessory is used to fix part of the profile modules to a ceiling, and a hoisting accessory is used to suspend part of the profile modules in the air.
[0009] Further, each of the profile modules is internally provided with a cavity, two ends of the cavity are provided with openings, a connecting plate is arranged in the cavity, the connecting plate divides the cavity into a first cavity and a second cavity, a part of the splicing accessory is inserted into the first cavity of one of the profile modules from the corresponding opening and is fixed with the corresponding connecting plate, another part is inserted into the first cavity of the adjacent another profile module from the corresponding opening and is fixed with the corresponding connecting plate, and the second cavity is arranged close to the lamp body.
[0010] Further, the splicing accessory includes a splicing plate body and a bending part connected to two sides of the splicing plate body, the bending part is bent towards the direction of the connecting plate relative to the splicing plate body, so that the mounting space is formed between the splicing plate body and the connecting plate.
[0011] Further, the other side of the profile module is provided with a mounting port in the axial direction, the mounting port is communicated with the first cavity, and the fixing part is fixed on the profile module through the mounting port.
[0012] Further, the cross-sectional shape of the profile module is rectangular, circular or elliptical.
[0013] Further, the ceiling suction accessory includes a ceiling suction fixing plate, and the ceiling suction fixing plate is fixed on the ceiling by screws.
[0014] Further, the ceiling suction fixing plate includes a ceiling suction main body, a ceiling suction rotating shaft and a ceiling suction rotating part, a rotating space is formed in the middle of the ceiling suction main body, the ceiling suction rotating part includes a rotating part and clamping parts connected to opposite sides of the rotating part, the ceiling suction rotating shaft is installed in the rotating space, the rotating part is rotatably installed on the ceiling suction rotating shaft, the clamping parts extend to the outside of the ceiling suction main body, first limiting parts are arranged on both sides of the rotating space, and second limiting parts are arranged on one side of the rotating part, one side of the first limiting parts is limited in a first direction by the second limiting parts, and the other side of the first limiting parts is limited in a second direction opposite to the first direction by the clamping parts.
[0015] Further, the other side of the profile module is provided with a fixing plate along both sides of the mounting port, the hoisting accessory includes a hoisting buckle, the hoisting buckle includes a hoisting buckle main body, a mounting plate and a reverse buckle plate connected in sequence, the hoisting buckle main body is fixed on the ceiling by a hoisting line, the reverse buckle plate has a gap with the mounting plate, the mounting plate is provided with a mounting hole, the reverse buckle plate is shorter than the mounting plate to avoid the mounting hole, the reverse buckle plate is installed in the first cavity in the profile module from the opening, and the mounting plate is located outside the first cavity and is connected with the fixing plate.
[0016] Furthermore, an insulating gasket is provided between the lamp body and the profile module.
[0017] Furthermore, the lamp body is a neon tube.
[0018] This utility model discloses a lighting module. The module's profile modules are formed through a roll bending process, allowing them to be bent into specific shapes according to design requirements, thus enabling diverse design possibilities. The profile modules are connected by splicing fittings, ensuring not only the flatness and aesthetics of the joints but also enhancing structural stability. Simultaneously, multiple spaced fasteners are installed on the profile modules, ensuring the lamp body's stability while allowing for flexible changes in the lamp body's shape depending on the splicing configuration of the profile modules. Furthermore, the inclusion of ceiling-mounted and hanging fittings in the lighting module allows it to be installed on the ceiling or suspended in the air, increasing its installation methods and application scenarios, and broadening its applicability. Attached Figure Description
[0019] To more clearly illustrate the technical solutions of the embodiments of this utility model, the drawings used in the description of the embodiments will be briefly introduced below. Obviously, the drawings described below are some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0020] Figure 1 This is an exploded structural diagram of the lighting module provided in an embodiment of the present utility model;
[0021] Figure 2 for Figure 1 A magnified structural diagram of part A in the middle;
[0022] Figure 3 This is a structural schematic diagram of the ceiling mounting plate provided in an embodiment of the present utility model;
[0023] Figure 4 This is a schematic diagram of the structure of the suspension hook provided in an embodiment of the present utility model;
[0024] Figure 5 for Figure 4 A magnified structural diagram of part B in the middle;
[0025] Figure 6 This is a structural schematic diagram of the ceiling-mounted and suspended-ceiling-mounted lighting module provided in the embodiments of this utility model.
[0026] Explanation of the markings in the image:
[0027] 10, lamp module; 100, profile module; 1001, cavity; 10011, opening; 10012, connecting plate; 10013, first cavity; 10014, second cavity; 1002, mounting port; 1003, fixing plate; 101, splicing accessory; 1011, splicing plate body; 1012, bending part; 102, lamp body; 103, fixing piece; 104, ceiling accessory; 1041, ceiling fixing plate; 10411, ceiling main body; 104111, rotating space; 1041111, first limiting part; 10412, ceiling rotating shaft; 10413, ceiling rotating piece; 104131, rotating part; 1041311, second limiting part; 104132, clamping part; 105, hoisting accessory; 1051, wire hanging buckle; 10511, wire hanging buckle main body; 10512, mounting plate; 105121, mounting hole; 10513, reverse buckle plate. DETAILED DESCRIPTION
[0028] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only some 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 skilled in the art without creative work are within the scope of protection of the present application.
[0029] It should be understood that the terms "comprising" and "including" as used in the specification and the appended claims indicate the presence of the recited features, integers, steps, operations, elements, and / or components but do not preclude the presence or addition of one or more other features, integers, steps, operations, elements, components, and / or groups thereof.
[0030] It should also be understood that the terms used in the present application specification are only for the purpose of describing specific embodiments and are not intended to limit the present application. As used in the present application specification and the appended claims, the singular forms "a", "an" and "the" are intended to include the plural forms unless the context clearly indicates otherwise.
[0031] It should be further understood that the term "and / or" as used in the present application specification and the appended claims means any combination of one or more of the associated listed items and all possible combinations, and includes these combinations.
[0032] Please refer to Figure 1The lamp module 10 provided by the embodiment of the present application comprises: profile modules 100, which are multiple and long strip-shaped, and are formed by a roll bending processing mode; a splicing accessory 101, one end of one of the profile modules 100 and the other end of another adjacent profile module 100 are spliced by the splicing accessory 101; a lamp body 102, which is long strip-shaped and arranged along one side of the spliced profile modules 100, and is fixed on the profile modules 100 by multiple fixed accessories 103 arranged at intervals; a ceiling suction accessory 104 and a hanging accessory 105, the ceiling suction accessory 104 is used for fixing part of the profile modules 100 on a ceiling, and the hanging accessory 105 is used for suspending part of the profile modules 100 in the air.
[0033] In the embodiment, the profile modules 100 of the module are formed by a roll bending processing mode, can be bent into a specific shape according to design requirements, so as to realize diversified design of the lamp module 10. The profile modules 100 are connected by the splicing accessory 101, which not only ensures the flatness and beauty of the splicing part, but also enhances the stability of the structure. Meanwhile, multiple fixed accessories 103 arranged at intervals are installed on the profile modules 100, which not only ensure the stability of the lamp body 102, but also allow the lamp body 102 to change flexibly with the splicing mode of the profile modules 100. In addition, the ceiling suction accessory 104 and the hanging accessory 105 in the lamp module 10 can be installed on the ceiling, and can also be suspended in the air, which increases the installation mode and application scene of the lamp module 10, and improves the application range of the lamp module 10.
[0034] It should be noted that the fixed accessories 103 can be uniformly distributed on the profile modules 100 at certain intervals, or can be arranged in a non-uniform manner according to requirements. Especially in some application scenarios with specific requirements, in order to ensure the convenience and beauty of installation, the fixed accessories 103 are usually arranged uniformly and at intervals on the profile modules 100. However, in other cases, the arrangement of the fixed accessories 103 can also be non-uniform according to actual requirements.
[0035] Further, as shown in FIG. 2, the profile modules 100 are connected by the splicing accessory 101, and the lamp body 102 is fixed on the profile modules 100 by the fixed accessories 103 arranged at intervals. Figure 2As shown, each profile module 100 is internally provided with a cavity 1001 having openings 10011 at both ends, and a connecting plate 10012 is arranged in the cavity 1001, which divides the cavity 1001 into a first cavity 10013 and a second cavity 10014. A part of the splicing accessory 101 is inserted into the first cavity 10013 of one of the profile modules 100 from the corresponding opening 10011 and fixed with the corresponding connecting plate 10012, and another part is inserted into the first cavity 10013 of the adjacent profile module 100 from the corresponding opening 10011 and fixed with the corresponding connecting plate 10012. The second cavity 10014 is arranged close to the lamp body 102.
[0036] In this embodiment, each profile module 100 is internally provided with a cavity 1001 having openings 10011 at both ends, which provides space for the installation and splicing of the splicing accessory 101 and the lamp body 102. A connecting plate 10012 is arranged in the cavity 1001, which divides the cavity 1001 into a first cavity 10013 and a second cavity 10014. The first cavity 10013 provides an installation area for the splicing accessory 101, and the second cavity 10014 provides an installation area for the lamp body 102. The splicing method of the splicing accessory 101 ensures the connection strength and stability between the profile modules 100 through the fixing effect of the connecting plate 10012, and at the same time, the splicing accessory 101 is hidden inside, ensuring the neatness and beauty of the appearance of the lamp module 10.
[0037] In summary, the cavity 1001 is divided into two cavities by the connecting plate 10012, and the connection strength between the profile modules 100 is significantly enhanced by the fixing method of the splicing accessory 101 and the connecting plate 10012. This design makes the lamp module 10 able to withstand greater external force after splicing, thereby improving the stability and reliability of the overall structure. The splicing accessory 101 is hidden in the first cavity 10013, avoiding the exposure of external connecting parts, making the appearance of the lamp module 10 more simple and beautiful. At the same time, this internal splicing method simplifies the assembly steps and improves the assembly efficiency.
[0038] Further, the splicing accessory 101 includes a splicing plate body 1011 and a bending part 1012 connected to both sides of the splicing plate body 1011, which is bent towards the direction of the connecting plate 10012 relative to the splicing plate body 1011, forming an installation space between the splicing plate body 1011 and the connecting plate 10012.
[0039] In the embodiment, the splicing accessory 101 comprises a splicing plate body 1011 and a bending part 1012 connected to both sides of the splicing plate body 1011. This design makes the splicing accessory 101 have a certain three-dimensional structure, which can better cooperate with the connecting plate 10012 inside the profile module 100. The bending part 1012 is bent towards the connecting plate 10012 relative to the splicing plate body 1011. This design makes the splicing accessory 101 be able to closely cooperate with the connecting plate 10012 when inserted into the first cavity 10013 of the profile module 100, and form an installation space between the two.
[0040] Specifically, when the splicing accessory 101 is installed between two adjacent profile modules 100, the bending part 1012 will be bent towards the connecting plate 10012, thereby forming an installation space between the splicing plate body 1011 and the connecting plate 10012. This installation space can be used to accommodate a fixing member 103 (such as a screw, etc.) to firmly fix the splicing accessory 101 and the lamp body 102 on the profile module 100. During installation, the fixing member 103 passes through the reserved hole on the connecting plate 10012 corresponding to the installation port 1002, enters the installation space and matches the threaded hole on the splicing plate body 1011. By tightening the fastener, the splicing accessory 101 and the profile module 100 can be connected together to form a stable splicing structure.
[0041] Further, the other side of the profile module 100 is provided with an installation port 1002 along the axial direction, the installation port 1002 communicates with the first cavity 10013, and the fixing member 103 is fixed on the profile module 100 through the installation port 1002. In the embodiment, by providing the installation port 1002 on the profile module 100 and fixing the lamp body 102 on the profile module 100 by the fixing member 103, the structural stability of the lamp module 10 is enhanced. The design of the installation port 1002 makes the installation of the fixing member 103 more convenient. The staff does not need to make additional adjustments to the profile module 100, and can easily install the fixing member 103 to the designated position. In addition, the installation port 1002 and the fixing member 103 take the aesthetic factor into account. They are hidden inside or at the edge of the profile module 100, and will not affect the overall appearance of the lamp module 10. This makes the lamp module 10 not only realize free splicing, but also does not affect its aesthetic degree.
[0042] In specific embodiments, the profile module 100 has a rectangular, circular or elliptical cross-sectional shape. Different cross-sectional shapes of the profile module 100 can be selected according to the installation environment (such as ceiling, suspension, etc.) to optimize the structure of the overall lamp. For example, circular and elliptical cross-sectional profile modules 100 are more suitable for scenarios that require aesthetics and torsional performance. By selecting a rectangular, circular or elliptical cross-sectional profile module 100, the lamp module 10 can achieve optimization in structural stability, appearance design and application scenario adaptability, etc., to meet the needs of different users.
[0043] Further, as shown in Figure 3 The ceiling fitting 104 includes a ceiling fixing plate 1041 that is fixed to the ceiling by screws. In this embodiment, the ceiling fixing plate 1041 connects the lamp module 10 to the ceiling, and can be fixed to the ceiling by screws. In addition, the connection between the ceiling fixing plate 1041 and the lamp module 10 can also be achieved by other various means, such as welding or buckle connection, etc.
[0044] It should be noted that the ceiling fixing plate 1041 is usually made of metal or high-strength material, which has sufficient strength and stability to ensure that the lamp module 10 can be firmly fixed to the ceiling after installation.
[0045] Further, the ceiling fixing plate 1041 includes a ceiling body 10411, a ceiling shaft 10412 and a ceiling rotating piece 10413. The ceiling body 10411 has a rotating space 104111 in the middle. The ceiling rotating piece 10413 includes a rotating part 104131 and a clamping part 104132 connected to the opposite sides of the rotating part 104131. The ceiling shaft 10412 is installed in the rotating space 104111. The rotating part 104131 is rotatably installed on the ceiling shaft 10412. The clamping part 104132 extends to the outside of the ceiling body 10411. The two sides of the rotating space 104111 are provided with first limiting parts 1041111. One side of the rotating part 104131 is provided with a second limiting part 1041311. One side of the first limiting part 1041111 is limited in a first direction by the second limiting part 1041311. The other side of the first limiting part 1041111 is limited in a second direction opposite to the first direction by the clamping part 104132.
[0046] In the embodiment, the ceiling body 10411 is a plate with sufficient strength and rigidity, which is installed on both sides of the installation opening 1002. The rotation space 104111 is provided on the ceiling body 10411, so that the ceiling rotating part 10413 can rotate. The ceiling rotating part 10413 is composed of a rotating part 104131 and a clamping part 104132 connected to the opposite sides of the rotating part 104131. The ceiling rotating shaft 10412 is installed in the rotation space 104111, allowing the ceiling rotating part 10413 to rotate at a certain angle relative to the ceiling body 10411.
[0047] During installation, first, the ceiling body 10411 is fixed on the installation opening 1002, ensuring that the installation position is stable, so that the subsequent operation can be smoothly carried out. Then, the ceiling rotating part 10413 is installed in the rotation space 104111 by screws (or other hardware that can achieve fixed connection). After the ceiling rotating part 10413 is installed, it can rotate in the rotation space 104111. With the rotation of the rotating part 104131, the clamping part 104132 extends to both sides of the installation opening 1002. At this time, the first limiting part 1041111 on one side of the rotation space 104111 is limited in the first direction (clockwise) by the second limiting part 1041311, and the first limiting part 1041111 on the other side is limited in the second direction (counterclockwise) opposite to the first direction by the clamping part 104132.
[0048] Further, as shown in Figure 4 and Figure 5 , the other side of the profile module 100 is provided with a fixed plate 1003 along both sides of the installation opening 1002. The hoisting assembly 105 includes a hoisting buckle 1051, which includes a hoisting buckle body 10511, a mounting plate 10512, and a reverse buckle plate 10513 connected in sequence. The hoisting buckle body 10511 is fixed to the ceiling by a hoisting line. The reverse buckle plate 10513 has a gap between the mounting plate 10512. The mounting plate 10512 is provided with a mounting hole 105121. The reverse buckle plate 10513 is shorter than the mounting plate 10512 to avoid the mounting hole 105121. The reverse buckle plate 10513 is installed in the first cavity 10013 in the profile module 100 from the opening 10011. The mounting plate 10512 is located outside the first cavity 10013 and is connected with the fixed plate 1003.
[0049] In the embodiment, on the other side of the profile module 100, that is, the position opposite to the installation opening 1002, the fixed plate 1003 is additionally provided. The function of these fixed plates 1003 is to provide a stable connection point for the hoisting assembly 105, ensuring that the lamp module 10 can be firmly suspended on the ceiling.
[0050] During installation, first, the wire hook main body 10511 is fixed to the ceiling by a wire, ensuring accurate and stable positioning. Then, the reverse buckle plate 10513 is inserted into the first cavity 10013 from the opening 10011 of the profile module 100. The reverse buckle plate 10513 has a certain elastic deformation ability, so it can easily enter the cavity. After the reverse buckle plate 10513 enters the cavity, the mounting plate 10512 can be placed on the outside of the profile module 100 and aligned with the fixed plate 1003. At this time, the mounting plate 10512 and the fixed plate 1003 are firmly connected by bolts or other fasteners, completing the installation of the suspension assembly 105.
[0051] Further, an insulating gasket is provided between the lamp body 102 and the profile module 100. In this embodiment, the main function of the insulating gasket is to prevent electrical short circuit between the lamp body 102 and the profile module 100. Since the profile module 100 is usually made of metal and has conductivity, and the lamp body 102 may have live parts inside, the insulating gasket can effectively prevent current from being conducted from the lamp body 102 to the profile module 100, ensuring the safe use of the lamp.
[0052] In a specific embodiment, the lamp body 102 is a neon tube. A neon tube is a light source that emits light through gas discharge. It is usually made of glass tube and filled with low-pressure inert gas such as neon, argon, etc. When current passes through the gas, gas atoms are excited and emit light of a specific wavelength, producing bright and colorful light. The neon tube is installed on one side of the profile module 100. The installation method of the neon tube can be adjusted according to the overall design of the lamp module 10. For example, when the lamp module 10 is installed by suction, the neon tube can be arranged along the edge of the ceiling to form a decorative lighting effect; when installed by suspension, the neon tube can be suspended in the air to form a unique light and shadow effect.
[0053] It should be noted that the neon tube can be customized in different colors and shapes according to design requirements. By changing the shape of the glass tube and the type of filling gas, various lighting effects can be achieved to meet different decorative and functional requirements.
[0054] In this embodiment, as shown in FIG. 6, the lamp module 10 is installed by suspension. The suspension assembly 105 is installed on the profile module 100, and the mounting plate 10512 is connected to the fixed plate 1003 by bolts or other fasteners. The reverse buckle plate 10513 is inserted into the first cavity 10013 from the opening 10011 of the profile module 100, and the mounting plate 10512 is placed on the outside of the profile module 100 and aligned with the fixed plate 1003. At this time, the mounting plate 10512 and the fixed plate 1003 are firmly connected by bolts or other fasteners, completing the installation of the suspension assembly 105. Figure 6As shown, the installation steps of the mixed combination of the ceiling mounting and the pendant mounting of the lamp module 10 are specifically described. First, the profile modules 100 which are roll-bent are spliced, a plurality of profile holes are punched on the connecting plate 10012 of the profile module 100, then one end of one of the profile modules 100 is spliced with the other end of the adjacent other profile module 100 using the splicing accessory 101, and the profile module 100 is spliced. Then, the lamp body 102 is installed in the second cavity 10014, and the lamp body 102 and the profile module 100 are fixed by using a cable tie. Then, a part of the profile modules 100 which need to be ceiling-mounted are prepared before ceiling mounting, the hole positions of the profile holes are marked on the ceiling by punching holes, after the marking is completed, the ceiling body 10411 is installed on the installation port 1002 of the profile module 100, then the ceiling rotating part 10413 is installed in the rotating space 104111, after the installation is completed, the rotating part 104131 is just clamped in the two end openings of the ceiling body 10411 on both sides of the fixed plate 1003, which are provided with corresponding openings of the profile holes, so that the screws and other connecting parts are fixed through the openings and the marks on the ceiling, thereby completing the preparation work before ceiling mounting.
[0055] Further, the other part of the profile modules 100 which need to be ceiling-mounted are prepared before ceiling mounting, first, the position where the wire hanging buckle 1051 needs to be installed is determined on the profile module 100, then the corresponding size is marked on the ceiling, one end of the wire hanging buckle 1051 is fixed on the ceiling, thereby completing the preparation work before ceiling mounting.
[0056] Finally, the part of the lamp module 10 which needs to be ceiling-mounted is fixed on the ceiling by using the screws and other connecting parts to pass through the openings at both ends of the ceiling body 10411 and corresponding to the marks made on the ceiling, then the other part of the lamp module 10 which needs to be ceiling-mounted is hung on the ceiling, specifically, the other end of the plurality of wire hanging buckles 1051 is fixed on the installation port 1002 of the profile module 100, and the electric wires are connected; finally, the cable tie is cut off, and the power supply is connected, thereby completing the installation of the part of the lamp module 10 which is ceiling-mounted.
[0057] The embodiments in the specification are described in a progressive manner, and each embodiment focuses on the difference from other embodiments. The same or similar parts of each embodiment can be referred to each other. For the device disclosed in the embodiments, since it corresponds to the method disclosed in the embodiments, the description is relatively simple, and the related parts can be referred to the method part. It should be pointed out that, for ordinary skilled in the art, without departing from the principle of the present application, the present application can be improved and modified, and these improvements and modifications also fall within the protection scope of the claims of the present application.
[0058] It is also noted that, in this specification, relational terms such as first and second and the like can be used solely to distinguish one entity or action from another entity or action without necessarily requiring or implying any actual such relationship or order between such entities or actions. Moreover, the terms "comprises," "comprising," or any other variation thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but can include other elements not expressly listed or inherent to such process, method, article, or apparatus.
[0059] Without further limitation, an element preceded by "comprises"... "comprising" does not, without more limitations, preclude the existence of... another of the same element in the process, method, article, or apparatus including the recited element or a limitation inherent in such process, method, article or apparatus.
Claims
1. A luminaire module, characterized by The application relates to a type of modularized lighting system. The application comprises: a profile module, which is provided with a plurality of long strips and is formed by a roll bending process; a splicing accessory, one end of one profile module and the other end of another profile module are spliced by the splicing accessory; a lamp body, which is long and is arranged along one side of the spliced profile module, and is fixed on the profile module by a plurality of interval arranged fixing members; a ceiling suction accessory and a hanging accessory, the ceiling suction accessory is used for fixing part of the profile modules on a ceiling, and the hanging accessory is used for suspending part of the profile modules in the air; 2. The luminaire module of claim 1, wherein, a cavity is arranged in each profile module, both ends of the cavity are provided with openings, a connecting plate is arranged in the cavity, the connecting plate divides the cavity into a first cavity and a second cavity, one part of the splicing accessory is inserted into the first cavity of one profile module from the corresponding opening and is fixed with the corresponding connecting plate, another part of the splicing accessory is inserted into the first cavity of another profile module from the corresponding opening and is fixed with the corresponding connecting plate, and the second cavity is arranged close to the lamp body.
3. The luminaire module of claim 1, wherein, The splicing accessory comprises a splicing plate body and bending parts connected to both sides of the splicing plate body, the bending parts are bent towards the connecting plate relative to the splicing plate body, and an installation space is formed between the splicing plate body and the connecting plate.
4. The luminaire module of claim 1, wherein, An installation port is arranged on the other side of the profile module along the axial direction, the installation port is communicated with the first cavity, and the fixing member is fixed on the profile module through the installation port.
5. The luminaire module of claim 3, wherein, The cross section shape of the profile module is rectangular, circular or elliptical.
6. The luminaire module of claim 5, wherein, The ceiling suction accessory comprises a ceiling suction fixing plate, and the ceiling suction fixing plate is fixed on the ceiling through screws.
7. The luminaire module of claim 3, wherein, The ceiling suction fixing plate comprises a ceiling suction main body, a ceiling suction rotating shaft and a ceiling suction rotating member, a rotating space is arranged in the middle part of the ceiling suction main body, the ceiling suction rotating member comprises a rotating part and clamping parts connected to the opposite sides of the rotating part, the ceiling suction rotating shaft is installed in the rotating space, the rotating part is rotationally installed on the ceiling suction rotating shaft, the clamping parts extend to the outside of the ceiling suction main body, first limiting parts are arranged on both sides of the rotating space, and second limiting parts are arranged on one side of the rotating part, one side of the first limiting parts is limited in a first direction through the second limiting parts, and the other side of the first limiting parts is limited in a second direction opposite to the first direction through the clamping parts.
8. The luminaire module of claim 1, wherein, A fixing plate is arranged on the other side of the profile module along both sides of the installation port, the hanging accessory comprises a hanging line buckle, the hanging line buckle comprises a hanging line buckle main body, an installation plate and a reverse buckle plate which are connected in sequence, the hanging line buckle main body is fixed on the ceiling through a hanging line, the reverse buckle plate has a gap with the installation plate, the installation plate is provided with an installation hole, the reverse buckle plate is shorter than the installation plate to avoid the installation hole, the reverse buckle plate is installed in the first cavity in the profile module from the opening, and the installation plate is located outside the first cavity and is connected with the fixing plate.
9. The luminaire module of claim 1, wherein, An insulating gasket is arranged between the lamp body and the profile module. The lamp body is a neon lamp tube.