A splicable strip light panel

CN224718683UActive Publication Date: 2026-09-04HUANGSHAN SENHU NEW MATERIAL TECHNOLOGY CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202522502190.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-11-25
Publication Date
2026-09-04
Estimated Expiration
2035-11-25

AI Technical Summary

Technical Problem

1、现有的拼接结构多采用卡扣式、插槽式或螺钉式连接方式,其拼接精度与稳定性受限,常出现拼接间隙过大、定位偏移、锁紧不牢固等问题,导致整体照明效果不连续或使用寿命缩短,同时,一些结构在拼接后难以进行快速拆卸,不利于安装维护

Benefits of technology

1、本可拼接的条形发光板通过设置在条形发光板本体顶部的拼接机构,实现了高效、稳定且重复性良好的拼接效果,通过第一锁定柱、第二锁定柱与锁定环之间的协同作用,使两个条形发光板本体在插设锁定块与锁定杆后即可获得初步定位,再利用调节螺纹件、调节螺杆及偏心球的偏心增力结构,使锁定环在锁定把手的驱动下产生可靠的夹紧效果,从而使拼接部位具备较高的机械稳定性,不易松脱,偏心球结构进一步降低了使用者操作锁定把手的力矩,使得拼接动作轻便且具有明显的夹紧反馈,避免传统拼接结构存在操作繁琐、锁紧不牢或受力不均的问题,本拼接机构整体结构紧凑、可靠性高,可显著提升条形发光板本体的模块化扩展能力,使其适用于多段组合照明场景。

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN224718683U_ABST
    Figure CN224718683U_ABST
Patent Text Reader

Abstract

The utility model discloses a strip light emitting panel of splicing, including strip light emitting panel body, the top of strip light emitting panel body is equipped with splicing mechanism, the back of strip light emitting panel body is equipped with mounting mechanism, this strip light emitting panel of splicing through the splicing mechanism of setting in the top of strip light emitting panel body, has realized efficient, stable and the good splicing effect of repeatability, through the synergies between first locking post, second locking post and locking ring, makes two strip light emitting panel body after inserting and setting locking block and locking rod can obtain preliminary positioning, and then utilizes the eccentric force increasing structure of adjusting screw part, adjusting screw rod and eccentric ball, makes locking ring produce reliable clamping effect under the drive of locking handle, thereby makes the splicing part have higher mechanical stability.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This utility model relates to the field of light-emitting panel technology, specifically to a splicable strip light-emitting panel. Background Technology

[0002] As lighting equipment develops towards modularity, scalability, and low maintenance, strip light panels are widely used in commercial lighting, display lighting, and architectural contour lighting due to their simple structure, uniform illumination, and flexible installation. In existing technologies, in order to meet different length requirements or achieve multi-segment continuous lighting, strip light panels usually need to be combined and used by splicing.

[0003] In practice, some problems still exist: 1. Existing splicing structures mostly use snap-on, slot-type, or screw-type connection methods, which limit the splicing accuracy and stability. Problems such as excessive splicing gaps, positioning misalignment, and insecure locking often occur, resulting in discontinuous overall lighting effects or shortened service life. At the same time, some structures are difficult to disassemble quickly after splicing, which is not conducive to installation and maintenance.

[0004] 2. Strip-shaped light panels often need to be adapted to different wall, bracket, or equipment shapes for varying applications. However, existing installation structures are mostly fixed mounting plates or single screw hole structures, which cannot meet the diverse needs of the mounting surface. When the mounting surface structure is incompatible, users often need to make additional transition parts or perform secondary processing, increasing installation costs and construction difficulty. In addition, some strip-shaped light panels lack auxiliary stabilizing structures during installation and fixing, leading to loosening and swaying under long-term use or vibration environments, affecting the safety and stability of the lighting device. Utility Model Content

[0005] Therefore, this utility model provides a splicable strip light-emitting panel to solve the problems mentioned in the background art.

[0006] To achieve the above objectives, this utility model provides the following technical solution: A splicable strip light-emitting panel includes a strip light-emitting panel body, a splicing mechanism on the top of the strip light-emitting panel body, and an installation mechanism on the back of the strip light-emitting panel body; The splicing mechanism includes a first locking post, a second locking post, a locking ring, an adjusting threaded component, an adjusting screw, and an eccentric ball. The second locking post is provided on one side of the first locking post. The locking ring is connected to the outer side of the first locking post. The adjusting threaded component is rotatably connected to the outer side of the locking ring. The adjusting screw is connected to the inner side of the adjusting threaded component. One end of the adjusting screw passes through the outer side of the locking ring and is connected to the eccentric ball. A locking handle is connected to the outer side of the eccentric ball. The mounting mechanism includes a first mounting plate, a reinforcing screw, and a nut. A second mounting plate is attached to the outer side of the first mounting plate. The nut is rotatably connected to the inner side of the first mounting plate. One end of the reinforcing screw passes through the second mounting plate and the first mounting plate and is threadedly connected to the inner side of the nut.

[0007] Furthermore, both the first locking post and the second locking post are fixedly connected to the outside of the strip-shaped light-emitting panel body.

[0008] Furthermore, a protective cover is snapped onto the outer side of the strip-shaped light-emitting panel body.

[0009] Furthermore, a locking block and a locking rod are fixedly connected to one side of the strip-shaped light-emitting panel body.

[0010] Furthermore, a first locking groove and a second locking groove are respectively provided on the other side of the strip-shaped light-emitting plate body.

[0011] Furthermore: the locking block is inserted into the inner side of the first locking groove, and the locking rod is inserted into the inner side of the second locking groove.

[0012] Furthermore, the back side of the strip-shaped light-emitting panel body is rotatably connected to two locking screws, and the two locking screws are threadedly connected to the back side of the first mounting plate.

[0013] This utility model has the following advantages: 1. This modular strip-shaped light-emitting panel achieves efficient, stable, and highly repeatable splicing through a splicing mechanism located on the top of the panel body. The synergistic action of the first locking post, the second locking post, and the locking ring allows the two strip-shaped light-emitting panels to achieve initial positioning after the locking blocks and locking rods are inserted. Furthermore, the eccentric force-increasing structure of the adjusting threaded component, adjusting screw, and eccentric ball ensures reliable clamping of the locking ring under the drive of the locking handle. This results in high mechanical stability at the splicing point, preventing loosening. The eccentric ball structure further reduces the torque required for the user to operate the locking handle, making the splicing action easy and providing clear clamping feedback. This avoids the problems of cumbersome operation, insecure locking, or uneven force distribution inherent in traditional splicing structures. The overall structure of this splicing mechanism is compact and highly reliable, significantly enhancing the modular expansion capability of the strip-shaped light-emitting panel body, making it suitable for multi-segment combined lighting scenarios.

[0014] 2. This modular strip light-emitting panel, through its mounting mechanism located on the back of the panel body, allows the device to adapt to various installation environments. The first and second mounting plates adopt a fitted structure, allowing users to flexibly choose single-plate installation or double-plate combination installation according to the size and angle requirements of the installation surface. The reinforcing screws pass through the second and first mounting plates and are threadedly connected to the nuts, providing sufficient axial clamping force under different installation methods, ensuring that the strip light-emitting panel body will not loosen or vibrate after being fixed. At the same time, the two locking screws on the back side of the panel body can provide additional force points, improving the overall stability and torsional performance of the back structure. This makes the strip light-emitting panel body suitable for diverse installation methods such as hanging, embedding, and wall mounting. Through this mounting mechanism, the adaptability, reliability, and durability of the installation can be significantly improved, further enhancing the service life and structural stability of the strip light-emitting panel body in complex application environments.

[0015] Other features and advantages of this invention will be set forth in the description which follows, and will be apparent in part from the description, or may be learned by practicing the invention. Attached Figure Description

[0016] To more intuitively illustrate the prior art and this application, exemplary drawings are provided below. It should be understood that the specific shapes and structures shown in the drawings should not generally be regarded as limiting conditions for implementing this application; for example, based on the technical concept disclosed in this application and the exemplary drawings, those skilled in the art are able to easily make conventional adjustments or further optimizations to the addition / reduction / classification, specific shapes, positional relationships, connection methods, size ratios, etc. of certain units (components).

[0017] Figure 1 This is a three-dimensional structural diagram of a splicable strip-shaped light-emitting panel according to the present invention.

[0018] Figure 2 This is a partially exploded structural diagram of a splicable strip-shaped light-emitting panel according to the present invention.

[0019] Figure 3 This utility model relates to a splicable strip-shaped light-emitting panel. Figure 2 Enlarged view of point A in the middle.

[0020] Figure 4 This is a schematic diagram of the first mounting plate portion of a splicable strip-shaped light-emitting panel according to the present invention.

[0021] Figure 5 This utility model relates to a splicable strip-shaped light-emitting panel. Figure 4 Enlarged view of point B in the middle.

[0022] Explanation of reference numerals in the attached figures: 1. Protective cover; 2. Strip-shaped light-emitting panel body; 3. Splicing mechanism; 301. Second locking post; 302. Locking ring; 303. Locking block; 304. Locking rod; 305. First locking groove; 306. Second locking groove; 307. First locking post; 308. Locking handle; 309. Adjusting threaded part; 310. Adjusting screw; 311. Eccentric ball; 4. Mounting mechanism; 401. Second mounting plate; 402. First mounting plate; 403. Locking screw; 404. Reinforcing screw; 405. Nut. Detailed Implementation

[0023] The following specific embodiments illustrate the implementation of this utility model. Those skilled in the art can easily understand other advantages and effects of this utility model from the content disclosed in this specification. Obviously, the described embodiments are only some embodiments of this utility model, not all embodiments. It should be understood that these embodiments are merely for further explanation of this utility model and should not be construed as limiting the scope of protection of this utility model. Technical engineers in the field can make some non-essential improvements and adjustments to this utility model based on the above-described content. All other embodiments obtained by those skilled in the art based on the embodiments of this utility model without creative effort are within the scope of protection of this utility model.

[0024] Please see Figure 1 A splicable strip light-emitting panel includes a strip light-emitting panel body 2, a splicing mechanism 3 on the top of the strip light-emitting panel body 2, and an installation mechanism 4 on the back of the strip light-emitting panel body 2. The splicing mechanism 3 includes a first locking post 307, a second locking post 301, a locking ring 302, an adjusting threaded component 309, an adjusting screw 310, and an eccentric ball 311. The second locking post 301 is provided on one side of the first locking post 307. The locking ring 302 is connected to the outer side of the first locking post 307. The adjusting threaded component 309 is rotatably connected to the outer side of the locking ring 302. The adjusting screw 310 is connected to the inner side of the adjusting threaded component 309. One end of the adjusting screw 310 passes through the outer side of the locking ring 302 and is connected to the eccentric ball 311. The locking handle 308 is connected to the outer side of the eccentric ball 311. The mounting mechanism 4 includes a first mounting plate 402, a reinforcing screw 404, and a nut 405. The outer side of the first mounting plate 402 is fitted with a second mounting plate 401. The nut 405 is rotatably connected to the inner side of the first mounting plate 402. One end of the reinforcing screw 404 passes through the second mounting plate 401 and the first mounting plate 402 and is threadedly connected to the inner side of the nut 405.

[0025] In the aforementioned components, during actual use, the strip-shaped light-emitting panel body 2 achieves rapid connection between adjacent strip-shaped light-emitting panel bodies 2 through the splicing mechanism 3 set at the top. The splicing mechanism 3 is composed of a first locking post 307, a second locking post 301, a locking ring 302, an adjusting threaded part 309, an adjusting screw 310, and an eccentric ball 311. The second locking post 301 is provided on one side of the first locking post 307, so that the two are arranged in parallel in structure to facilitate a stable clamping effect. The locking ring 302 connected to the outside of the first locking post 307 is used to fit and limit the relative displacement of the locking post during splicing. The adjusting threaded part 309 connected to the outer side achieves the fastening adjustment of the locking ring 302 through the adjusting screw 310 on its inner side. One end of the adjusting screw 310 passes through the locking ring 302 and is connected to the eccentric ball 311. When the eccentric ball 311 rotates eccentrically under the drive of the locking handle 308, it can apply a clamping force to the locking ring 302 in the locking direction, thereby achieving a tight splicing of the two strip light-emitting panel bodies 2. The mounting mechanism 4 set on the back consists of a first mounting plate 402, a second mounting plate 401, a reinforcing screw 404 and a nut 405, which can meet the multi-mode installation requirements of the strip light-emitting panel body 2.

[0026] The first locking post 307 and the second locking post 301 are both fixedly connected to the outside of the strip light-emitting plate body 2.

[0027] In the above components, the first locking post 307 and the second locking post 301 are both fixedly connected to the outside of the strip light-emitting plate body 2. The fixed setting can ensure that the two locking posts maintain relatively stable rigid support throughout the use process and will not loosen due to frequent splicing. The fixing method can ensure that the locking posts have sufficient structural strength when bearing the radial clamping force of the locking ring 302, thereby ensuring the continuous effectiveness of the splicing strength.

[0028] A protective cover 1 is snapped onto the outer side of the strip-shaped light-emitting panel body 2.

[0029] Among the above components, the protective cover 1 is installed by a snap-fit ​​method, which can be easily disassembled and has good structural retention capabilities. When the user performs splicing or installation operations, the protective cover 1 can prevent external forces from directly contacting the light source components inside the strip light-emitting panel body 2, thereby reducing damage. The snap-fit ​​connection method allows the protective cover 1 to remain firmly attached even when subjected to slight external forces.

[0030] A locking block 303 and a locking rod 304 are fixedly connected to one side of the strip light-emitting panel body 2.

[0031] In the aforementioned components, the locking block 303, through its fixed setting, can preferentially enter the first locking groove 305 on the opposite side when the two strip light-emitting plate bodies 2 are close together, thereby quickly establishing initial positioning. The locking rod 304, through its fixed setting, enters the second locking groove 306 to form auxiliary positioning, so that the two strip light-emitting plate bodies 2 are constrained in both the horizontal and vertical directions, avoiding displacement during the splicing process. As the inserted components, the fixed connection of the locking block 303 and the locking rod 304 can ensure that they are not easily loosened during long-term use, ensuring the repeatability and accuracy of the insertion positioning.

[0032] The other side of the strip-shaped light-emitting panel body 2 is provided with a first locking groove 305 and a second locking groove 306.

[0033] In the above components, the first locking groove 305 enables the locking block 303 to provide the main positioning function when the two strip light-emitting plate bodies 2 are close together, and the second locking groove 306 enables the locking rod 304 to serve as an auxiliary insertion part to enhance the constraint effect of the overall splicing direction. The two locking grooves, with different spacing and depths, can ensure that the relative position is automatically guided during insertion.

[0034] The locking block 303 is inserted into the inner side of the first locking groove 305, and the locking rod 304 is inserted into the inner side of the second locking groove 306.

[0035] In the above components, the locking block 303, as the main positioning component, can immediately generate positional constraints after being inserted into the first locking groove 305 to prevent the front and rear displacement between the strip light-emitting plate bodies 2. After the locking rod 304 is inserted into the second locking groove 306, it can form lateral restraint to make the splicing process more stable. After the two strip light-emitting plate bodies 2 are inserted, a preliminary fixed connection can be formed to provide an accurate reference for the subsequent locking operation of the locking post and locking ring 302.

[0036] The back side of the strip light-emitting panel body 2 is rotatably connected to two locking screws 403, which are threadedly connected to the back side of the first mounting plate 402.

[0037] In the above components, the two locking screws 403 can be threadedly connected to the back side of the first mounting plate 402. When the two locking screws 403 enter the threaded hole on the back side of the first mounting plate 402 by rotation, they can form additional mechanical support points, making the mounting structure more stable when subjected to external forces. The setting of the locking screws 403 can effectively distribute the force on the reinforcing screws 404.

[0038] Working principle: During operation, the splicable strip light-emitting panel mainly achieves rapid connection and stable installation of multiple strip light-emitting panel bodies 2 through the splicing mechanism 3 on the top of the strip light-emitting panel body 2 and the mounting mechanism 4 on the back. When splicing two strip light-emitting panel bodies 2, the user first aligns the splicing ends of the two strip light-emitting panel bodies 2 and confirms that the positions of the locking block 303 and locking rod 304 on one side correspond to the first locking groove 305 and the second locking groove 306 on the other side. Then, the user inserts the locking block 303 into the inside of the first locking groove 305 and the locking rod 304 into the inside of the second locking groove 306, so that the two strip light-emitting panel bodies 2 form a preliminary mechanical positioning. Through this positioning, the center line between the two strip light-emitting panel bodies 2 can be ensured to be consistent, avoiding splicing offset and ensuring the reliability of subsequent locking actions. After completing the initial insertion and positioning, the user begins to operate the splicing mechanism 3 located on top of the strip-shaped light-emitting panel body 2. At this time, the first locking post 307 and the second locking post 301 are respectively located on the outer sides of the two strip-shaped light-emitting panel bodies 2. By pushing or rotating, the first locking post 307 and the second locking post 301 are brought closer to each other, so that they form a fitting reference. When they are close to a preset distance, the user can move the locking ring 302 located on the outside of the first locking post 307, so that the locking ring 302 gradually descends to the position where it covers the outside of the two locking posts. When the locking ring 302 slides into the designated limit area, the adjusting thread 309 rotatably connected to its outer side can be rotated by the user. The inner side of the adjusting thread 309 is connected to an adjusting... The screw 310, one end of which passes through the outer side of the locking ring 302 and is fixedly connected to the eccentric ball 311, allows the user to rotate the locking handle 308. This rotation causes the eccentric ball 311 to rotate eccentrically, which in turn drives the adjusting screw 310 to move axially, thereby causing the locking ring 302 to tighten radially. During the tightening process, the locking ring 302 firmly clamps the first locking post 307 and the second locking post 301, forming a tight and reliable splicing structure between the two strip-shaped light-emitting panels 2, thus achieving the splicing effect. This structure is not only easy to operate, but the eccentric ball 311 also provides a mechanical force-increasing effect, making the locking action easy but the locking effect reliable, and giving the spliced ​​part high load-bearing stability. After the strip-shaped light-emitting panel body 2 is assembled, it can be fixedly installed according to installation requirements. The back of the strip-shaped light-emitting panel body 2 is equipped with an installation mechanism 4, including a first mounting plate 402, a second mounting plate 401, a reinforcing screw 404, and a nut 405. Users can determine the installation direction based on the actual application scenario. When the structure of the first mounting plate 402 can directly match the target mounting surface, the first mounting plate 402 can be used directly for installation. At this time, the reinforcing screw 404 passes through the first mounting plate 402 and is internally threadedly connected to the nut 405, which is rotatably connected to the inner side of the first mounting plate 402, thereby achieving direct reinforcement of the strip-shaped light-emitting panel body 2. If the user determines... If the specifications or angle of the first mounting plate 402 cannot meet the installation requirements, the second mounting plate 401 can be attached to the outside of the first mounting plate 402. One end of the reinforcing screw 404 will pass through the second mounting plate 401 and the first mounting plate 402 in sequence. Through the threaded connection with the nut 405, the two mounting plates are subjected to axial clamping force at the same time, so that the strip light-emitting panel body 2 can be adapted to different mounting surfaces. When the user needs to strengthen the installation strength, two locking screws 403 are also provided on the back side of the strip light-emitting panel body 2. The two locking screws 403 can be threadedly connected to the back side of the first mounting plate 402. By adding additional mechanical support points, the overall installation stability is improved.

[0039] The above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Any modifications, equivalent substitutions and improvements made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.

Claims

1. A splicable strip-shaped light-emitting panel, characterized in that, It includes a strip light-emitting panel body (2), the top of which is provided with a splicing mechanism (3), and the back of which is provided with an installation mechanism (4). The splicing mechanism (3) includes a first locking post (307), a second locking post (301), a locking ring (302), an adjusting threaded component (309), an adjusting screw (310), and an eccentric ball (311). The second locking post (301) is provided on one side of the first locking post (307). The locking ring (302) is connected to the outer side of the first locking post (307). The adjusting threaded component (309) is rotatably connected to the outer side of the locking ring (302). The adjusting screw (310) is connected to the inner side of the adjusting threaded component (309). One end of the adjusting screw (310) passes through the outer side of the locking ring (302) and is connected to the eccentric ball (311). The locking handle (308) is connected to the outer side of the eccentric ball (311). The mounting mechanism (4) includes a first mounting plate (402), a reinforcing screw (404), and a nut (405). A second mounting plate (401) is attached to the outer side of the first mounting plate (402). The nut (405) is rotatably connected to the inner side of the first mounting plate (402). One end of the reinforcing screw (404) passes through the second mounting plate (401) and the first mounting plate (402) and is threaded to the inner side of the nut (405).

2. The splicable strip-shaped light-emitting panel according to claim 1, characterized in that, The first locking post (307) and the second locking post (301) are both fixedly connected to the outside of the strip light-emitting plate body (2).

3. The splicable strip light-emitting panel according to claim 2, characterized in that, The outer side of the strip-shaped light-emitting panel body (2) is fitted with a protective cover (1).

4. The splicable strip light-emitting panel according to claim 3, characterized in that, A locking block (303) and a locking rod (304) are fixedly connected to one side of the strip-shaped light-emitting panel body (2).

5. A splicable strip-shaped light-emitting panel according to claim 4, characterized in that, The other side of the strip-shaped light-emitting plate body (2) is provided with a first locking groove (305) and a second locking groove (306).

6. A splicable strip-shaped light-emitting panel according to claim 5, characterized in that, The locking block (303) is inserted into the inner side of the first locking groove (305), and the locking rod (304) is inserted into the inner side of the second locking groove (306).

7. A splicable strip-shaped light-emitting panel according to claim 6, characterized in that, The back side of the strip-shaped light-emitting plate body (2) is rotatably connected to two locking screws (403), and the two locking screws (403) are threadedly connected to the back side of the first mounting plate (402).