Simple splicing panel light and panel light assembly
By setting splicing surfaces and connecting holes on the frame of the LED panel light, and using locking pins to achieve splicing and disassembly of the frame, the problems of limited lighting effect and inconvenient transportation in the existing technology are solved, and flexible splicing and disassembly of the panel light are realized.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- DONGGUAN LEIXINGXING LIGHTING TECH CO LTD
- Filing Date
- 2022-07-21
- Publication Date
- 2026-04-28
AI Technical Summary
Existing LED panel lights are usually used alone, with limited lighting effects, and their size cannot be adjusted according to the application scenario. Furthermore, large light fixtures are inconvenient to transport and are easily damaged.
A simple splicing panel light was designed. First and second splicing surfaces were set on the outer side of the frame, and connecting pins and connecting holes were set therein. The frame can be spliced and disassembled by using locking pins. The connecting pins can be inserted into the connecting holes and locked by locking pins. The frame can be spliced sequentially in the horizontal or vertical direction.
It enables panel lights to be spliced and detached, adapting to different application scenarios with varying sizes, and is simple and convenient to assemble and disassemble, solving the problems of limited lighting effects and inconvenient transportation in existing technologies.
Smart Images

Figure CN115199961B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of panel light technology, and in particular to a simple splicing panel light and panel light assembly. Background Technology
[0002] LED panel lights are high-end indoor lighting fixtures. Their outer frame is made of anodized aluminum alloy, and the light source is LED. The overall design is beautiful, simple, and luxurious, providing both excellent lighting effects and aesthetic appeal. Currently, existing LED panel lights are typically installed individually. However, the lighting effect of a single LED panel light is limited, and its size cannot be changed to suit different application scenarios. Furthermore, larger LED panel lights are inconvenient to transport and are easily damaged.
[0003] Therefore, it is necessary to provide a simple splicing panel light that is easy to assemble and disassemble, as well as a panel light assembly. Summary of the Invention
[0004] The primary objective of this invention is to provide a simple, modular panel light that is easy to assemble and disassemble.
[0005] The second objective of this invention is to provide a panel light assembly that is variable in size and adaptable to different application scenarios.
[0006] To achieve the aforementioned first objective, the present invention provides a simple splicing panel light, comprising a frame, a connecting pin, and a locking pin. The outer side of the frame includes a first splicing surface and a second splicing surface along the same circumferential direction. The connecting pin is disposed on the first splicing surface and has a first arc-shaped groove. The second splicing surface has a connecting hole. The frame also has a mounting hole intersecting the connecting hole. The locking pin is rotatably and adjustablely disposed in the mounting hole and has a second arc-shaped groove. By rotating and adjusting the locking pin, the locking pin can avoid the connecting hole through the second arc-shaped groove, so that the connecting pin can be inserted into the connecting hole. Alternatively, a portion of the locking pin can be inserted into the connecting hole and the first arc-shaped groove of the connecting pin located in the connecting hole, so as to lock the connecting pin in the connecting hole.
[0007] Compared with existing technologies, the simplified splicing panel light of the present invention provides a first splicing surface and a second splicing surface for splicing on the outer side of the frame. A connecting pin is provided on the first splicing surface, and a connecting hole is provided on the second splicing surface. This allows one of two adjacent frames to be spliced with the second splicing surface of the other through the first splicing surface. One of the two adjacent frames is inserted into the connecting hole of the other through the connecting pin. A portion of the locking pin can be inserted into the connecting hole and the first arc-shaped groove of the connecting pin located within the connecting hole, thereby locking the connecting pin in the connecting hole. This allows the frames of two simplified splicing panel lights to be assembled together. When disassembly is required, rotating the adjusting locking pin causes it to pass through the second arc-shaped groove, avoid the connecting hole, and disengage from the first arc-shaped groove, thus releasing the connecting pin and allowing it to exit the connecting hole, thereby separating the two adjacent frames. Therefore, the simplified splicing panel light of the present invention is splicable and easy to assemble and disassemble.
[0008] Preferably, the connecting pin is rotatably and adjustably disposed on the first splicing surface.
[0009] Preferably, the first splicing surface is provided with a receiving groove, and one end of the connecting pin is rotatably disposed in the receiving groove. By driving the connecting pin to rotate, the connecting pin is stored in the receiving groove.
[0010] Preferably, the simple splicing panel light also includes an adjusting member, which is rotatably and adjustablely inserted into the frame and connected to one end of the connecting pin. By driving the adjusting member to rotate, the connecting pin is driven to rotate.
[0011] Preferably, the simple splicing panel light also includes a positioning component. The frame is provided with a positioning hole communicating with the receiving groove. The positioning component is movably and adjustablely disposed in the positioning hole. The connecting pin is provided with a positioning groove. The positioning component moves into the receiving groove and is locked in the positioning groove to lock the position of the connecting pin.
[0012] Preferably, the simple splicing panel light also includes a cover plate, which is disposed on the frame and covers the locking pin, and the cover plate is provided with a through hole for exposing the locking pin.
[0013] Preferably, the top of the locking pin is provided with a limiting protrusion, the bottom of the cover plate is provided with a limiting groove along the rotation direction of the locking pin, and the limiting groove communicates with the through hole, and the limiting protrusion is inserted into the limiting groove.
[0014] Preferably, one of the first splicing surface and the second splicing surface is provided with a splicing protrusion, and the other of the first splicing surface and the second splicing surface is provided with a splicing locking hole for engaging with the splicing protrusion.
[0015] Preferably, the simple splicing panel light also includes a lamp body assembly, which is disposed within the frame.
[0016] To achieve the second objective mentioned above, the present invention provides a panel light assembly, comprising a plurality of the aforementioned simple splicing panel lights, wherein each frame is sequentially spliced along a horizontal and / or vertical direction, the first splicing surface of one of two adjacent frames is arranged opposite to the second splicing surface of the other, one of two adjacent frames is inserted into the connecting hole of the other by a connecting pin, and a portion of the locking pin is inserted into the connecting hole and the first arc-shaped groove of the connecting pin located in the connecting hole, so as to lock the connecting pin in the connecting hole.
[0017] Compared with the prior art, the panel light assembly of the present invention has several simple splicing panel lights, each frame being sequentially spliced horizontally or vertically. The simple splicing panel light uses a first splicing surface and a second splicing surface on the outer side of the frame for splicing. A connecting pin is provided on the first splicing surface, and a connecting hole is provided on the second splicing surface. This allows one of two adjacent frames to be spliced with the second splicing surface of the other through the first splicing surface. One of the two adjacent frames is inserted into the connecting hole of the other through the connecting pin. A portion of the locking pin can be inserted into the connecting hole and the first arc-shaped groove of the connecting pin located within the connecting hole, thereby locking the connecting pin in the connecting hole. This allows two simple splicing panel lights to be assembled together. When disassembly is required, rotating the adjusting locking pin causes it to pass through the second arc-shaped groove to avoid the connecting hole and disengage from the first arc-shaped groove, thus releasing the connecting pin and allowing it to exit the connecting hole. This allows the two adjacent frames to be separated, and consequently, the two adjacent simple splicing panel lights to be separated. Therefore, the simple splicing panel lights of the panel light assembly of the present invention can be spliced or disassembled, making the panel light assembly of the present invention variable in size, adaptable to different application scenarios, and simple and convenient to assemble and disassemble. Attached Figure Description
[0018] Figure 1 This is a three-dimensional structural diagram of the panel light assembly of the present invention.
[0019] Figure 2 This is a structural diagram of two simple splicing panel lights of the present invention after disassembly.
[0020] Figure 3 This is a three-dimensional structural diagram of the simplified splicing panel light of the present invention.
[0021] Figure 4 yes Figure 3 Enlarged view of point A in the middle.
[0022] Figure 5 yes Figure 3 Enlarged view of point B in the middle.
[0023] Figure 6 This is a structural diagram of the locking pin of the present invention when it avoids the connecting pin through the second arc-shaped groove.
[0024] Figure 7 This is a structural diagram of the invention when the locking pin is inserted into the first arc-shaped groove of the connecting pin.
[0025] Figure 8 This is an exploded view of the locking pin and cover plate of the present invention.
[0026] Figure 9 This is a three-dimensional structural diagram of the positioning component of the present invention.
[0027] Figure 10 This is a three-dimensional structural diagram of the frame of the present invention. Detailed Implementation
[0028] To illustrate the technical content and structural features of the present invention in detail, the following description is provided in conjunction with the embodiments and accompanying drawings.
[0029] Please see Figures 1 to 3 The panel light assembly 200 of the present invention includes a plurality of easily assembled panel lights 100. Please refer to... Figures 3 to 7 ,as well as Figure 10The simple splicing panel light 100 includes a frame 1, a light body assembly 7, a connecting pin 2, and a locking pin 3. The light body assembly 7 is disposed inside the frame 1. The outer side of the frame 1 includes a first splicing surface 11 and a second splicing surface 12 along the same circumferential direction. The connecting pin 2 is disposed on the first splicing surface 11 and has a first arc-shaped groove 21. The second splicing surface 12 has a connecting hole 121. The frame 1 also has a mounting hole 13 intersecting with the connecting hole 121. The locking pin 3 is rotatably and adjustablely disposed in the mounting hole 13 and has a second arc-shaped groove 31. By rotating and adjusting the locking pin 3, the locking pin 3 can pass through the second arc-shaped groove 31 to avoid the connecting hole 121, so that the connecting pin 2 can be inserted into the connecting hole 121. Alternatively, a part of the structure of the locking pin 3 can be inserted into the connecting hole 121 and the first arc-shaped groove 21 of the connecting pin 2 located in the connecting hole 121, so as to lock the connecting pin 2 in the connecting hole 121. In this embodiment, the frame 1 has a rectangular structure, and there are two first splicing surfaces 11 and two second splicing surfaces 12. However, the shape of the frame 1 and the number of first splicing surfaces 11 and second splicing surfaces 12 are not limited to this. Specifically, the upper end of the locking pin 3 is provided with an internal hexagonal groove. A hexagonal wrench is used to engage in the internal hexagonal groove. By driving the hexagonal wrench to rotate, the locking pin 3 is driven to rotate. However, the method of driving the locking pin 3 to rotate is not limited to this. For example, the upper end of the locking pin 3 may also be provided with an operating handle, which is used to drive the locking pin 3 to rotate. The specific structure and principle of the lamp body assembly 7 are well known to those skilled in the art, and therefore will not be described in detail here.
[0030] Please see Figure 1 and Figure 2 The frames 1 of each simple splicing panel light 100 are sequentially spliced along the horizontal and / or vertical directions. The first splicing surface 11 of one of two adjacent frames 1 and the second splicing surface 12 of the other are arranged opposite to each other. One of two adjacent frames 1 is inserted into the connecting hole 121 of the other by a connecting pin 2, and a portion of the locking pin 3 is inserted into the connecting hole 121 and the first arc-shaped groove 21 of the connecting pin 2 located in the connecting hole 121 to lock the connecting pin 2 in the connecting hole 121. In this embodiment, there are four simple splicing panel lights 100, and the frames 1 of the four simple splicing panel lights 100 are sequentially spliced along the horizontal and vertical directions. However, the number of simple splicing panel lights 100 and the splicing direction of the frames 1 are not limited to this. For example, the number of simple splicing panel lights 100 may also be two or three, etc. The frames 1 of each simple splicing panel light 100 may also be sequentially spliced along only the horizontal or vertical direction.
[0031] Please see Figure 3 and Figure 4The connecting pin 2 is rotatably and adjustablely disposed on the first splicing surface 11. Specifically, the first splicing surface 11 is provided with a receiving groove 111, and one end of the connecting pin 2 is rotatably disposed in the receiving groove 111. By driving the connecting pin 2 to rotate, the connecting pin 2 is retracted into the receiving groove 111. When the simple splicing panel light 100 needs to be spliced, by driving the connecting pin 2 to rotate, the free end of the connecting pin 2 extends to the outside of the frame 1; when the simple splicing panel light 100 does not need to be spliced, by driving the connecting pin 2 to rotate, the connecting pin 2 is retracted into the receiving groove 111. On the one hand, the connecting pin 2 can be protected, and on the other hand, the free end of the connecting pin 2 protruding out will not affect the installation of the simple splicing panel light 100. Furthermore, the simple splicing panel light 100 also includes an adjusting member 4, which is rotatably and adjustablely disposed inside the frame 1, and the adjusting member 4 is connected to one end of the connecting pin 2. By driving the adjusting member 4 to rotate, the connecting pin 2 is driven to rotate. Specifically, the upper end of the adjusting component 4 is provided with an internal hexagonal groove. A hexagonal wrench is engaged in this internal hexagonal groove, and by driving the hexagonal wrench to rotate, the adjusting component 4 is driven to rotate. However, the method of driving the adjusting component 4 to rotate is not limited to this. The adjusting component 4 can be an existing pin or bolt.
[0032] Please see Figure 4 and Figure 9 The simple splicing panel light 100 also includes a positioning element 5. The frame 1 has a positioning hole 14 communicating with the receiving groove 111. The positioning element 5 is movably and adjustablely disposed within the positioning hole 14. The connecting pin 2 has a positioning groove 22. The positioning element 5 moves into the receiving groove 111 and engages within the positioning groove 22 to lock the position of the connecting pin 2. When the connecting pin 2 is retracted into the receiving groove 111, the positioning element 5 is driven to move into the receiving groove 111 and engage within the positioning groove 22, thereby locking the connecting pin 2 in its retracted position. However, this is not a limitation. For example, in other embodiments, the positioning element 5 can also be used to lock the connecting pin 2 in its free end protruding position. Specifically, the upper end of the positioning element 5 has an internal hexagonal groove. A hexagonal wrench is engaged within this internal hexagonal groove. By driving the hexagonal wrench to rotate, the positioning element 5 is rotated. However, the method of driving the positioning element 5 to rotate is not limited to this. The positioning element 5 can be an existing pin or bolt.
[0033] Please see Figure 5 and Figure 8The simple splicing panel light 100 also includes a cover plate 6, which is disposed on the frame 1 and covers the locking pin 3. The cover plate 6 has a through hole 61 for exposing the locking pin 3. Further, the top of the locking pin 3 has a limiting protrusion 32, and the bottom of the cover plate 6 has a limiting groove 62 along the rotation direction of the locking pin 3. The limiting groove 62 communicates with the through hole 61, and the limiting protrusion 32 is inserted into the limiting groove 62. When the locking pin 3 is driven to rotate through the through hole 61, the limiting protrusion 32 moves along the limiting groove 62. The limiting groove 62 can limit the locking pin 3 from rotating forward to a position where it completely avoids the connecting hole 121 through the second arc groove 31, and can also limit the locking pin 3 from rotating backward to a position where part of its structure is inserted into the first arc groove 21 of the connecting pin 2, but is not limited thereto.
[0034] Please see Figure 3 One of the first splicing surface 11 and the second splicing surface 12 is provided with a splicing protrusion 112, and the other of the first splicing surface 11 and the second splicing surface 12 is provided with a splicing locking hole 122 for engaging with the splicing protrusion 112. In this embodiment, the first splicing surface 11 is provided with a splicing protrusion 112, and the second splicing surface 12 is provided with a splicing locking hole 122 for engaging with the splicing protrusion 112, but this is not a limitation. When two simple splicing panel lights 100 are spliced, the splicing protrusion 112 engages in the splicing locking hole 122. By providing the splicing protrusion 112 and the splicing locking hole 122, the two simple splicing panel lights 100 can be quickly aligned and spliced. The splicing protrusion 112 can adopt an existing bolt structure, but this is not a limitation.
[0035] Combination Figures 1 to 10 The specific working principle of the panel light assembly 200 of the present invention is as follows:
[0036] When two simple splicing panel lights 100 need to be spliced together, the first splicing surface 11 of the first simple splicing panel light 100 and the second splicing surface 12 of the second simple splicing panel light 100 are arranged opposite each other. Then, the locking pin 3 of the second simple splicing panel light 100 is rotated and adjusted so that the locking pin 3 passes through the second arc groove 31 to avoid the connecting hole 121. The connecting pin 2 of the first simple splicing panel light 100 is inserted into the connecting hole 121 of the second simple splicing panel light 100. Then, the locking pin 3 of the second simple splicing panel light 100 is rotated and adjusted so that part of the structure of the locking pin 3 is inserted into the connecting hole 121 and the first arc groove 21 of the connecting pin 2 located in the connecting hole 121, so as to lock the connecting pin 2 in the connecting hole 121, thereby splicing the two simple splicing panel lights 100 together.
[0037] When the two simple splicing panel lights 100 need to be disassembled, the locking pin 3 of the second simple splicing panel light 100 is rotated and adjusted so that the locking pin 3 passes through the second arc groove 31 to avoid the connecting hole 121 and exits the engagement with the first arc groove 21 of the connecting pin 2, thereby releasing the connecting pin 2. This allows the connecting pin 2 of the first simple splicing panel light 100 to exit the connecting hole 121 of the second simple splicing panel light 100, thus disassembling the two simple splicing panel lights 100.
[0038] In summary, the panel light assembly 200 of the present invention has a plurality of simple splicing panel lights 100, each frame 1 being spliced sequentially along a horizontal or vertical direction. The simple splicing panel light 100 has a first splicing surface 11 and a second splicing surface 12 for splicing on the outer side of the frame 1, and a connecting pin 2 is provided on the first splicing surface 11, and a connecting hole 121 is provided on the second splicing surface 12. This allows one of two adjacent frames 1 to be spliced with the second splicing surface 12 of the other through the first splicing surface 11, and one of two adjacent frames 1 to be inserted into the connecting hole 121 of the other through the connecting pin 2. A portion of the locking pin 3 can be inserted into the connecting hole 121 and the first arc-shaped groove 21 of the connecting pin 2 located in the connecting hole 121, thereby locking the connecting pin 2 in the connecting hole 121, and thus assembling two simple splicing panel lights 100 together. When disassembly is required, the locking pin 3 is rotated to allow it to pass through the second arc-shaped groove 31, avoid the connecting hole 121, and disengage from the first arc-shaped groove 21. This releases the connecting pin 2, allowing it to exit the connecting hole 121, thereby separating the two adjacent frames 1 and subsequently the two adjacent simple splicing panel lights 100. Therefore, the simple splicing panel lights 100 of the panel light assembly 200 of the present invention can be spliced or disassembled, making the panel light assembly 200 of the present invention variable in size, adaptable to different application scenarios, and simple and convenient to assemble and disassemble.
[0039] The above-disclosed examples are merely preferred embodiments of the present invention and should not be construed as limiting the scope of the present invention. Therefore, any equivalent variations made in accordance with the claims of the present invention are within the scope of the present invention.
Claims
1. A simple splicing panel light, characterized in that, The device includes a frame, a connecting pin, a locking pin, and a cover plate. The outer surface of the frame includes a first splicing surface and a second splicing surface along the same circumferential direction. The connecting pin is disposed on the first splicing surface and has a first arc-shaped groove. The second splicing surface has a connecting hole. The frame also has a mounting hole intersecting the connecting hole. The locking pin is rotatably and adjustably disposed within the mounting hole and has a second arc-shaped groove. By rotating and adjusting the locking pin, the locking pin can pass through the second arc-shaped groove to avoid the connecting hole, allowing the connecting pin to be inserted into the connecting hole. Alternatively, a portion of the locking pin can be inserted into the connecting hole and the first arc-shaped groove of the connecting pin located within the connecting hole, thereby locking the connecting pin in place. The connecting pin is rotatably and adjustably disposed on the first splicing surface; the cover plate is disposed on the frame and covers the locking pin, the cover plate is provided with a through hole for exposing the locking pin, the top of the locking pin is provided with a limiting protrusion, the bottom of the cover plate is provided with a limiting groove along the rotation direction of the locking pin, and the limiting groove communicates with the through hole, the limiting protrusion is inserted into the limiting groove; when passing through the through hole and driving the locking pin to rotate, the limiting protrusion moves along the limiting groove, the limiting groove is used to limit the locking pin to rotate forward to a position where it completely avoids the connecting hole through the second arc groove and to limit the locking pin to rotate backward to a position where part of its structure is inserted into the first arc groove of the connecting pin.
2. The simplified splicing panel light according to claim 1, characterized in that, The first splicing surface is provided with a receiving groove, and one end of the connecting pin is rotatably disposed in the receiving groove. By driving the connecting pin to rotate, the connecting pin is stored in the receiving groove.
3. The simplified splicing panel light according to claim 1, characterized in that, It also includes an adjusting member, which is rotatably and adjustablely inserted into the frame and connected to one end of the connecting pin. By driving the adjusting member to rotate, the connecting pin is driven to rotate.
4. The simplified splicing panel light according to claim 2, characterized in that, It also includes a positioning component. The frame has a positioning hole that communicates with the receiving groove. The positioning component is movably and adjustablely disposed in the positioning hole. The connecting pin has a positioning groove. The positioning component moves into the receiving groove and is locked in the positioning groove to lock the position of the connecting pin.
5. The simplified splicing panel light according to claim 1, characterized in that, One of the first splicing surface and the second splicing surface is provided with a splicing protrusion, and the other of the first splicing surface and the second splicing surface is provided with a splicing locking hole for engaging with the splicing protrusion.
6. The simplified splicing panel light according to claim 1, characterized in that, It also includes a lamp body assembly, which is disposed within the frame.
7. A panel light assembly, characterized in that, The device includes several simple splicing panel lights as described in any one of claims 1 to 6. Each frame is spliced sequentially along the horizontal and / or vertical direction. The first splicing surface of one of two adjacent frames is arranged opposite to the second splicing surface of the other. One of two adjacent frames is inserted into the connecting hole of the other through the connecting pin. A portion of the locking pin is inserted into the connecting hole and the first arc-shaped groove of the connecting pin located in the connecting hole to lock the connecting pin in the connecting hole.
Citation Information
Patent Citations
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