Line-shaped fixing support for flexible LED lamp
By simplifying the assembly design and using a magnetic snap-fit structure, the problem of cumbersome assembly of traditional flexible LED light strip fixing brackets is solved, enabling rapid installation, stable connection, and convenient cleaning, thereby improving the efficiency of flexible LED light strips and the reliability of the system.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-04
- Publication Date
- 2026-03-31
AI Technical Summary
Traditional flexible LED light fixtures have cumbersome linear support designs, numerous parts, and complex connections. Assembly is time-consuming, labor-intensive, and requires high levels of professional skills, which can easily lead to structural instability and affect normal use.
The design incorporates components such as a frame, transparent plate, first slot block, first magnet, and double-sided tape. Combining magnetic and snap-fit structures simplifies the assembly process. Flexible splicing and the combination of heat dissipation aluminum fins and heat-conducting pillars through adapter shafts and protrusions provide stable connection and heat dissipation.
It enables quick and easy assembly of the transparent panel and frame, ensuring a stable connection, enhancing the versatility and practicality of the fixing bracket, reducing usage costs, improving the reliability and stability of the lighting system, facilitating the cleaning of the transparent panel, and extending the lifespan of the flexible LED light wires.
Smart Images

Figure CN224065347U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of LED lighting technology, and in particular relates to a flexible LED lamp linear fixing bracket. Background Technology
[0002] Flexible LED light cables are LED lighting fixtures that use flexible materials as their substrate. With their unique physical properties and versatility, they play an increasingly important role in modern lighting design, providing designers with more creative possibilities. In lighting systems, strip-shaped fixing brackets can neatly secure the flexible LED light cables within the light cable box, ensuring the stability of the flexible LED light cables during operation.
[0003] However, the assembly method of traditional flexible LED light linear fixing brackets has many drawbacks. Its design is often cumbersome, with a large number of parts and complex connection methods. During the assembly process, a lot of time and effort are required for precise alignment and fixing. It also requires a high level of professional skills from the user. If any deviation occurs in any link, it may lead to instability of the entire fixing bracket structure, thereby affecting the normal use of the fixing bracket.
[0004] Therefore, a flexible linear fixing bracket for LED lights is particularly needed to solve the above problems. Utility Model Content
[0005] To overcome the shortcomings of traditional flexible LED light linear fixing brackets, such as cumbersome design, numerous parts and complex connections, time-consuming and labor-intensive assembly, high skill requirements for personnel, and structural instability caused by deviations in the process, this utility model provides a flexible LED light linear fixing bracket.
[0006] This utility model is achieved through the following technical means: a flexible LED light linear fixing bracket, including a frame, a transparent plate, a first slot block, a first magnet, double-sided tape, a first snap-fit block, and a second magnet. The frame is located at the bottom layer and serves as the supporting base for the entire fixing bracket. The transparent plate is attached to the frame and closes the frame from a top view. Multiple first slot blocks are equidistantly distributed in the form of two horizontal lines and fixed to the lower part of the transparent plate. Each first magnet is embedded and fixed to the upper part of each first slot block. Multiple double-sided tapes are evenly distributed horizontally and fixed to the inside of the frame. Multiple screw holes are distributed left and right at the inner bottom of the frame and directly connect to the external space of the frame. Every two screw holes are adjacent to each other on one side of the frame. Multiple first snap-fit blocks, the same number as the first slot blocks, are equidistantly distributed in the form of two horizontal lines and fixed to the upper part of the frame, and snap-fit with the multiple first slot blocks respectively. Each second magnet is embedded and fixed to the upper part of each first snap-fit block and magnetically attracted to the vertically aligned first magnet.
[0007] As a further preferred embodiment, it also includes an adapter shaft, a protrusion, a second slot block, and a second engaging block. The two adapter shafts are rotatably arranged at one end of the frame, with a protrusion arranged vertically at one end of each adapter shaft. The side of the two protrusions that are close to each other is a straight plane, and the distance between the two protrusions together forms a slot. Each second slot block is fixed to the inward end of each adapter shaft and forms a tight rotational contact with the frame. The two second engaging blocks are fixed to the other end of the frame, arranged in a front-to-back manner, and engage with the two second slot blocks respectively.
[0008] As a further preferred embodiment, it also includes heat dissipation aluminum fins and heat conduction pillars. Two heat dissipation aluminum fins are fixedly attached to the lower part of the frame in a front-to-back arrangement. Multiple heat conduction pillars arranged horizontally form a group, with a total of two groups. Each group of heat conduction pillars is fixed to each heat dissipation aluminum fin and passes through the frame and is kept on the same vertical plane as its inner sidewall.
[0009] As a further preferred embodiment, it also includes a slider, a paddle, and a sponge block. The slider is slidably mounted on the transparent plate, the paddle is fixed to the top of the slider, and the sponge block is fixed to the slider and forms a tight sliding contact with the top surface of the transparent plate.
[0010] As a further preferred embodiment, it also includes a baffle and a connecting plate. The baffle is placed at the other end of the frame, and the connecting plate is fixed to the left side of the baffle. The connecting plate has two mounting holes with the same structure as the screw holes, and these two mounting holes are aligned one-to-one with two adjacent screw holes.
[0011] As a further preferred option, it also includes deformable strips, with two deformable strips symmetrically fixed inside the frame.
[0012] Beneficial effects: 1. Through the ingenious cooperation of the first slot block and the first magnet, the transparent panel and the frame can be quickly and conveniently assembled without complicated tools and professional skills, which improves the installation efficiency. Moreover, the dual fixing method of snap-fit and magnetic attraction ensures the stability of the connection between the transparent panel and the frame, effectively preventing the transparent panel from loosening or falling off during use, and providing a guarantee for the long-term stable use of the fixed bracket.
[0013] 2. By utilizing the structural design of the adapter shaft, protrusion, second slot block, and second snap-fit block, multiple frames can be flexibly spliced according to the actual fixing requirements of flexible LED light wires, thereby enhancing the versatility and practicality of the fixing bracket. There is no need to specially customize fixing brackets for flexible LED light wires of different lengths, reducing the cost of use.
[0014] 3. The combination design of heat dissipation aluminum fins and heat-conducting columns provides an effective heat dissipation path for the inside of the frame, thereby ensuring stable internal temperature, extending the service life of flexible LED light lines, improving the reliability and stability of the entire lighting system, reducing the risk of failure due to overheating, and reducing maintenance and replacement costs.
[0015] 4. By setting sliders and sponge blocks on the transparent plate and equipping it with a paddle, cleaning the transparent plate becomes very convenient. Users only need to simply paddle the paddle to make the sponge block wipe the transparent plate, keeping it clean and transparent, and ensuring that the lighting effect of the flexible LED light line is not affected. Attached Figure Description
[0016] Figure 1 This is a three-dimensional structural diagram of the present invention.
[0017] Figure 2 This is a three-dimensional structural diagram of the frame, transparent plate, and heat dissipation aluminum fins of this utility model.
[0018] Figure 3 This is a first partial sectional view of the frame component of this utility model.
[0019] Figure 4 This is a second partial sectional view of the frame component of this utility model.
[0020] Figure 5 This is a partial cross-sectional view of the frame, transparent plate, and first slot block components of this utility model.
[0021] Figure 6 This is a third partial sectional view of the frame component of this utility model.
[0022] Figure 7 This is a three-dimensional structural diagram of the slider, push block, and sponge block components of this utility model.
[0023] Figure 8 This is a three-dimensional structural diagram of the frame, baffle, and connecting plate components of this utility model.
[0024] In the diagram: 1. Frame, 2. Transparent plate, 21. First slot block, 22. First magnet, 3. Double-sided tape, 4. Screw hole, 5. Heat sink aluminum fin, 6. Heat conduction column, 7. Deformation strip, 8. First snap-fit block, 9. Second magnet, 10. Adapter shaft, 11. Protrusion, 12. Second slot block, 13. Second snap-fit block, 14. Slider, 15. Toggle block, 16. Sponge block, 17. Baffle, 18. Connecting plate. Detailed Implementation
[0025] Example: A flexible LED light linear fixing bracket, such as Figures 1-8As shown, the system includes a frame 1, a transparent plate 2, first slot blocks 21, first magnets 22, double-sided tape 3, deformation strips 7, first snap-fit blocks 8, and second magnets 9. The frame 1 is located at the bottom and serves as the supporting base for the entire fixed bracket. The transparent plate 2 is attached to the upper part of the frame 1 and closes the frame 1 from a top-down view. Eight first slot blocks 21 are evenly distributed in the form of two horizontal lines and are respectively bonded to the front and rear sides of the lower part of the transparent plate 2. Each first magnet 22 is embedded and bonded to the upper part of each first slot block 21. Six double-sided tapes 3 are evenly distributed horizontally and bonded to the inner bottom end of the frame 1. Four screw holes 4 are distributed on the left and right sides of the inner bottom end of the frame 1 and directly connect to the external space of the frame 1. Every two screw holes 4 are adjacent to each other on one side of the frame 1 (i.e., the left or right side). Through these four screw holes 4, To facilitate quick installation of the frame 1 on the wall, two deformation strips 7 are symmetrically bonded to the inner bottom of the frame 1. The deformation strips 7 have good elastic deformation characteristics. When the frame 1 structure is subjected to external force, the deformation strips 7 can disperse the stress originally concentrated in a certain part of the structure to a larger area through their own bending, twisting and other deformation methods, so as to avoid excessive local stress leading to structural damage. The eight first locking blocks 8, which are the same number as the first locking slot blocks 21, are distributed at equal intervals in the form of two horizontal lines and are bonded to the front and rear sides of the upper part of the frame 1 respectively, and are locked to the eight first locking slot blocks 21 respectively. This allows the transparent plate 2 to be fixed to the frame 1 through the locking relationship between the first locking slot blocks 21 and the first locking blocks 8. Each second magnet 9 is bonded to the upper part of each first locking block 8 in an embedded form and is magnetically attracted to the vertically aligned first magnet 22.
[0026] like Figure 1 and Figure 6 As shown, it also includes a connecting shaft 10, a protrusion 11, a second slot block 12, and a second locking block 13. The two connecting shafts 10 are rotatably arranged at the left end of the frame 1, with the outer end of each connecting shaft 10 having a protrusion 11 distributed vertically. The side of the two protrusions 11 that are close to each other is a straight plane, and the distance between them forms a slot. Each second slot block 12 is attached to the inner end of each connecting shaft 10 and forms a tight rotational contact with the frame 1. The two second locking blocks 13 are attached to the right end of the frame 1, and respectively lock with the two second slot blocks 12, so that the two frames 1 are spliced together. When it is necessary to separate the two frames 1, the connecting shaft 10 is rotated clockwise to rotate the second slot block 12 to a suitable angle to disengage from the second locking block 13, thus realizing the separation of the two frames 1.
[0027] like Figures 1-4As shown, it also includes heat dissipation aluminum fins 5 and heat conduction pillars 6. Two heat dissipation aluminum fins 5 are distributed and bonded to the lower part of the frame 1. Multiple heat conduction pillars 6 arranged horizontally form a group, and there are two groups in total. Each group of heat conduction pillars 6 is bonded to each heat dissipation aluminum fin 5 and passes through the frame 1 and is kept on the same vertical plane as its inner sidewall, ensuring that the heat conduction pillars 6 can directly contact the internal space of the frame 1.
[0028] like Figure 1 , Figure 2 and Figure 7 As shown, it also includes a slider 14, a lever 15, and a sponge block 16. The slider 14 is slidably disposed on the transparent plate 2. The lever 15 is attached to the center of the top of the slider 14, providing the user's hand with the force point of the slider 14. The sponge block 16 is attached to the slider 14 and forms a tight sliding contact with the top surface of the transparent plate 2.
[0029] like Figure 1 , Figure 2 and Figure 8 As shown, it also includes a baffle 17 and a connecting plate 18. The baffle 17 is placed at the right end of the frame 1, and the connecting plate 18 is glued to the left side of the baffle 17. It has two mounting holes with the same structure as the screw holes 4. These two mounting holes are aligned with the two adjacent screw holes 4, so that the connecting plate 18 and the frame 1 can be installed on the wall together through the two mounting holes.
[0030] Initially, the first slot block 21 and the first snap-fit block 8 are snap-fitted together, so that the transparent plate 2 is connected to the frame 1. At the same time, the first magnet 22 and the second magnet 9 are magnetically attracted. The magnetic attraction between the two further enhances the connection strength between the transparent plate 2 and the frame 1, so that the transparent plate 2 is firmly fixed to the frame 1 and the internal space of the frame 1 is sealed.
[0031] When a fixed bracket is needed, the user first pushes the transparent plate 2 to the right with a steady and moderate force. During the pushing process, the locking structure between the first slot block 21 and the first locking block 8 gradually separates, and at the same time, the first magnet 22 gradually deviates from the second magnet 9. The magnetic attraction between the two begins to weaken. When it is obvious that the magnetic attraction between the first magnet 22 and the second magnet 9 has weakened significantly, and the transparent plate 2 can be easily loosened in the hand, the transparent plate 2 can be lifted directly upwards to completely detach it from the frame 1.
[0032] Next, vertically place the frame 1 (with the transparent panel 2 removed) on the wall at the pre-selected suitable position. Align the mounting holes on the connecting plate 18 with the screw holes 4 precisely. Use a flathead screwdriver to connect the prepared flathead bolts to the screw holes 4, thus fixing the frame 1 to the wall. Simultaneously, fix the connecting plate 18 to the frame 1, thereby fixing the baffle 17 to the frame 1 and sealing its right end. Then, fix the flexible LED light wire inside the frame 1 using double-sided tape 3. After fixing, align the transparent panel 2 with the frame 1 and push the transparent panel 2 to the left with a steady force. During the pushing process... The first slot block 21 gradually approaches and engages with the first latching block 8, while the first magnet 22 gradually aligns with the second magnet 9. The magnetic attraction between the two gradually increases. When significant resistance is encountered when pushing the transparent plate 2, and the first magnet 22 and the second magnet 9 are completely in contact, the magnetic attraction reaches its maximum, preventing the transparent plate 2 from moving further. When the transparent plate 2 can no longer be easily pushed, it indicates that the first slot block 21 and the first latching block 8 have been completely connected, and the transparent plate 2 has been firmly fixed to the frame 1. At this time, the transparent plate 2 once again seals the internal space of the frame 1, providing protection for the flexible LED light wire.
[0033] During the process of fixing flexible LED light wires, if the length of the flexible LED light wire can be accommodated by a single frame 1, the user first inserts the tip of a flathead screwdriver into the slot formed by two protrusions 11, and rotates the adapter shaft 10 clockwise through the slot until the second locking block 12 and the second locking block 13 disengage. Then, the second frame 1 (i.e., the left frame 1) is separated from the first frame 1 (i.e., the right frame 1). If the two frames 1 are not enough to accommodate the length of the flexible LED light wire, the third frame 1 is placed to the left of the second frame 1, with its right end close to the left end of the second frame 1. Finally, the above steps are repeated to fix the third frame 1 to the wall. In the same way, the third frame 1 is spliced onto the second frame 1 through the cooperation of the adapter shaft 10, protrusions 11, second locking block 12, and second locking block 13, thereby meeting the fixing requirements of flexible LED light wires of different lengths.
[0034] During the use of flexible LED light strips, a certain amount of heat will be generated inside the frame 1. At this time, the heat will be quickly transferred to the heat sink 5 through the heat conduction column 6. The heat sink 5 has good heat dissipation performance, which efficiently dissipates the heat to the surrounding environment, thereby ensuring that the internal temperature of the frame 1 is within a suitable range, avoiding the impact of excessive temperature on the performance and lifespan of the flexible LED light strips, and ensuring the stable operation of the entire lighting system.
[0035] When it is necessary to clean the transparent panel 2, simply pinch the lever 15 and move the slider 14 to the left and right. During the movement, the sponge block 16 fixed to the slider 14 will move left and right to wipe the top surface of the transparent panel 2. By repeatedly moving the slider 14, the sponge block 16 can fully wipe the transparent panel 2 until the transparent panel 2 is cleaned and its good light transmittance is restored.
[0036] It is worth noting that the baffle 17 and the connecting plate 18 can be installed at either end of the frame 1 according to the actual situation. This flexibility allows the fixing bracket to adapt to different installation environments and needs, ensuring that the frame 1 can achieve good sealing under any circumstances and provide reliable protection for the flexible LED light wire.
Claims
1. A flexible LED light wire linear fixture, characterized by: The utility model provides a kind of fixed support, including frame (1), transparent plate (2), first clamping groove block (21), first magnet (22), double-sided tape (3), first clamping block (8) and second magnet (9), frame (1) is located in the lowermost layer, as the support basis of entire fixed support, transparent plate (2) is connected on frame (1), and from the closed frame (1) of bird's-eye view direction, multiple first clamping groove blocks (21) are equidistantly distributed in the form of two horizontal lines, are fixedly connected in the lower part of transparent plate (2), every first magnet (22) is fixedly connected in the upper part of every first clamping groove block (21) in the form of embedding, multiple double-sided tapes (3) are fixedly connected in the inside of frame (1) and are uniformly distributed in horizontal direction, multiple screw holes (4) are left and right distributed and are provided in the inner bottom end position of frame (1), and directly communicate the outside space of frame (1), every two screw holes (4) are adjacently arranged in the side of frame (1), and the number of multiple first clamping blocks (8) of first clamping groove block (21) is consistent, and is equidistantly distributed in the form of two horizontal lines, is fixedly connected in the upper part of frame (1), and is respectively clamped with multiple first clamping groove blocks (21), every second magnet (9) is fixedly connected in the upper part of every first clamping block (8) in the form of embedding, and is mutually magnetically attracted with vertically aligned first magnet (22).
2. A flexible LED light wire strip linear fixture as claimed in claim 1, characterized in that: Still including adapter shaft (10), tab (11), second clamping groove block (12) and second clamping block (13), two adapter shafts (10) are forward and backward distributed and rotatably arranged in one end of frame (1), one end of every adapter shaft (10) is fixedly connected with up and down distribution tab (11), the side of two tabs (11) close to each other is a character plane, the distance between the two forms a character slot, every second clamping groove block (12) is fixedly connected to the inward one end of every adapter shaft (10), and forms the close rotary contact with frame (1), two second clamping blocks (13) are forward and backward distributed and fixedly connected in the other end of frame (1), and are respectively clamped with two second clamping groove blocks (12).
3. A flexible LED light wire strip linear fixture as defined in claim 2, wherein: Still including heat dissipation aluminum sheet (5) and heat conduction column (6), two heat dissipation aluminum sheets (5) are forward and backward distributed and fixedly connected in the lower part of frame (1), multiple heat conduction columns (6) distributed in horizontal direction form a group, and there are two groups, every group of heat conduction column (6) is fixedly connected on every heat dissipation aluminum sheet (5), and passes through frame (1) and keeps on the same vertical plane with its inner side wall.
4. A flexible LED light wire strip linear fixture as claimed in claim 3, characterized in that: Still including sliding block (14), push block (15) and sponge block (16), sliding block (14) is slidably arranged on transparent plate (2), push block (15) is fixedly connected in the top end position of sliding block (14), sponge block (16) is fixedly connected on sliding block (14), and forms the close sliding contact with the top surface of transparent plate (2).
5. A flexible LED light wire strip linear fixture as claimed in claim 4, characterized in that: Still including baffle (17) and connecting plate (18), baffle (17) is arranged in the other end of frame (1), connecting plate (18) is fixedly connected in the left part of baffle (17), and two mounting holes with the same structure of screw hole (4) are provided on it, the two mounting holes are one by one aligned and adjacently arranged two screw holes (4).
6. A flexible LED light wire strip linear fixture as defined in claim 5, wherein: Still including deformation strip (7), two deformation strips (7) are forward and backward symmetrical and fixedly connected in the inside of frame (1).