Split mounting structure of ceiling lamp and ceiling lamp

The ceiling light design with a split installation structure, using a combination of a detachable mounting plate, a rotating shaft, and a locking mechanism, solves the problem of difficult installation for a single person in existing ceiling lights, achieving a fast, stable, and aesthetically pleasing installation process.

CN224593178UActive Publication Date: 2026-08-04DONGGUAN JIASHENG LIGHTING TECHNOLOGY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
DONGGUAN JIASHENG LIGHTING TECHNOLOGY CO LTD
Filing Date
2025-09-03
Publication Date
2026-08-04

AI Technical Summary

Technical Problem

When installing existing ceiling lights, it is difficult for a single person to install large or heavy fixtures, and the existing installation structure requires wiring and installation at the same time, making the installation process cumbersome and inconvenient.

Method used

It adopts a split installation structure, including a mounting groove, a rotating shaft, a clamping part, and a detachable mounting plate. The hook part is rotatably hinged to the rotating shaft, and the buckle part is detachably clamped to the clamping part. The mounting plate is suspended first, the wiring is completed, and then the ceiling light is fixed, which reduces the installation difficulty.

Benefits of technology

It enables a single person to quickly install ceiling lights, reducing installation difficulty, improving user experience, and ensuring the aesthetics and stability of the installed product.

✦ Generated by Eureka AI based on patent content.

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Abstract

This utility model provides a split-type mounting structure for a ceiling light and the ceiling light itself. The ceiling light is fixed to the mounting surface via the split-type mounting structure, which includes: a mounting groove located at the top of the ceiling light; a rotating shaft fixed to one end of the mounting groove; a retaining part located at the other end of the mounting groove; and a mounting plate detachably connected to the mounting groove. The mounting plate includes: a body adapted to the width of the mounting groove; a hook located at one end of the body, detachably connected to the rotating shaft, and the mounting plate is rotatably hinged to the rotating shaft via the hook; and a snap-fit ​​part located at the other end of the body, detachably snap-fitted to the retaining part. By using the split-type mounting structure, after fixing the mounting plate to the mounting surface, the ceiling light can be suspended on the mounting plate first, and wiring can be completed before installing the ceiling light, reducing installation difficulty and facilitating single-person operation.
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Description

Technical Field

[0001] This utility model relates to the field of ceiling light technology, and in particular to a split installation structure for a ceiling light and a ceiling light itself. Background Technology

[0002] Ceiling lights are a common type of lighting fixture. Because their top surface is flat, they can be completely flush with the mounting surface (ceiling or roof) during installation. This results in a larger lighting space after installation, ensuring both brightness and energy saving, making them widely used in production and daily life.

[0003] In existing technologies, ceiling lights are typically installed by fixing them to the mounting surface using a mounting structure on the top of the light fixture. Therefore, for larger ceiling lights, a larger mounting structure is often required to ensure installation stability. However, this type of installation requires wiring and installation to be done simultaneously, necessitating the user to hold the light in one hand and connect the wires in the other. This makes installation difficult and inconvenient for heavy and large ceiling lights, especially for single-person installation.

[0004] Therefore, existing technologies still need to be improved and developed. Utility Model Content

[0005] In view of the shortcomings of the prior art, the purpose of this utility model is to provide a split installation structure for a ceiling light and a ceiling light, so as to solve the problem that the installation of large-sized or heavy ceiling lights is difficult and inconvenient for a single person to install.

[0006] The technical solution of this utility model is as follows:

[0007] The first aspect of this utility model provides a split-type mounting structure for a ceiling light, wherein the ceiling light is fixed to a mounting surface by the split-type mounting structure, and the split-type mounting structure includes:

[0008] The mounting slot is located on the top of the ceiling light;

[0009] A rotating shaft is fixed to one end of the mounting groove;

[0010] A retaining part is disposed at the other end of the mounting slot;

[0011] A mounting plate, detachably connected to the mounting slot, wherein the mounting plate comprises:

[0012] The body is adapted to the width of the mounting slot;

[0013] The hook portion is disposed at one end of the main body, the hook portion is detachably connected to the rotating shaft portion, and the mounting plate is rotatably hinged to the rotating shaft portion through the hook portion;

[0014] A latching part is provided at the other end of the main body, and the latching part is detachably latched to the holding part.

[0015] In one embodiment, the hook portion includes:

[0016] The hook is detachably connected to the rotating shaft, and the mounting plate is rotatably hinged to the rotating shaft via the hook.

[0017] A connecting segment extends along the length of the body and connects the hook and the body;

[0018] A limiting plate is provided perpendicular to the connecting section to limit the rotation angle of the mounting plate when the mounting plate rotates relative to the rotating shaft.

[0019] In one embodiment, the hook portion is provided with two hooks in parallel, and the two hooks are respectively connected to the body through two connecting sections.

[0020] In one embodiment, the rotating shaft includes:

[0021] A groove, which is provided at one end of the mounting groove corresponding to the hook, and the extending direction of the groove is perpendicular to the extending direction of the mounting groove;

[0022] A rotating shaft is fixed in the groove and is arranged perpendicular to the extension direction of the groove and the mounting groove. The rotating shaft is detachably connected to the hook, and the hook and the rotating shaft cooperate to realize the rotatable hinge between the mounting plate and the rotating shaft.

[0023] In one embodiment, the hook includes:

[0024] An arc segment, the arc segment being matched to the arc setting of the rotating shaft, to ensure a rotatable hinge between the mounting plate and the rotating shaft after the hook is hooked onto the rotating shaft;

[0025] An extension section, which is tangent to the arc segment, is provided to prevent the hook from separating from the pivot when the mounting plate rotates relative to the pivot.

[0026] In one embodiment, the holding part includes:

[0027] The movable body is adapted to the mounting slot and can slide along the mounting slot between a first position and a second position;

[0028] A latch is provided on the side of the movable body facing the mounting plate, and the holding part is detachably connected to the mounting plate through the latch;

[0029] A return spring is disposed between the retaining portion and the mounting groove, providing an elastic force to move the retaining portion from the second position to the first position;

[0030] An operating part is disposed on the movable body and extends in a direction away from the mounting plate. The operating part extends out of the mounting groove to facilitate moving the holding part from the first position to the second position.

[0031] In one embodiment, the mounting slot includes:

[0032] A limiting block is provided at the second position perpendicular to the bottom surface of the mounting groove. When the holding part moves to the second position, the limiting block abuts against the holding part, preventing the holding part from moving further.

[0033] A sliding groove is provided on the inner side wall of the mounting groove corresponding to the movable body, and the extending direction of the sliding groove is parallel to the extending direction of the mounting groove. The two side edges of the movable body are engaged in the sliding groove to realize the free sliding of the movable body along the mounting groove.

[0034] A notch is provided at the other end of the mounting groove corresponding to the operation part, and the operation part extends out from the notch when the holding part is in the first position.

[0035] In one embodiment, the mounting plate further includes baffles, which are disposed perpendicularly to both ends of the body, so that after the mounting plate is fixed to the mounting surface, a gap is left between the mounting plate and the mounting surface for the ceiling light to be suspended.

[0036] In one embodiment, the mounting plate has a through hole at the center of the ceiling light to allow wires to pass through and power the ceiling light after it is mounted on the mounting surface.

[0037] The second aspect of this utility model provides a ceiling light, including a split mounting structure for the ceiling light as described in any of the preceding claims.

[0038] This utility model provides a split-type mounting structure for a ceiling light and the ceiling light itself. The ceiling light is fixed to a mounting surface via the split-type mounting structure. The split-type mounting structure includes: a mounting groove located at the top of the ceiling light; a rotating shaft fixed to one end of the mounting groove; a retaining part located at the other end of the mounting groove; and a mounting plate detachably connected to the mounting groove. The mounting plate includes: a body adapted to the width of the mounting groove; a hook located at one end of the body, detachably connected to the rotating shaft, and the mounting plate is rotatably hinged to the rotating shaft via the hook; and a latching part located at the other end of the body, detachably latching to the retaining part. By using the split-type mounting structure, after fixing the mounting plate to the mounting surface, the ceiling light can be suspended on the mounting plate first, and wiring completed before installation, thus reducing installation difficulty and allowing a single person to complete the installation. Attached Figure Description

[0039] Figure 1 This is a three-dimensional schematic diagram of a ceiling light with a split-type installation structure that fixes the mounting plate in the mounting groove.

[0040] Figure 2 This utility model provides a three-dimensional schematic diagram of a ceiling light with a split-type installation structure in which the mounting plate is rotated to form an angle with the ceiling light.

[0041] Figure 3 This is a three-dimensional schematic diagram of a ceiling light with the mounting plate rotated to an angle with the ceiling light, representing another angle of the split installation structure in this utility model.

[0042] Figure 4 An exploded view of the ceiling light with a split mounting structure as described in this utility model;

[0043] Figure 5 This is a front sectional view of the present invention when the holding part is in the first position;

[0044] Figure 6 This is a front sectional view of the present invention when the holding part is in the second position;

[0045] Figure 7 This is a three-dimensional schematic diagram of the mounting plate in this utility model;

[0046] Figure 8 for Figure 7 Enlarged schematic diagram of part A in the middle. Detailed Implementation

[0047] This utility model provides a split-type installation structure for a ceiling light. To make the purpose, technical solution, and effects of this utility model clearer and more explicit, the following provides a more detailed description of this utility model. It should be understood that the specific embodiments described herein are merely illustrative of this utility model and are not intended to limit this utility model.

[0048] It should be noted that the terms "center", "upper", "lower", "left", "right", "inner", "outer", "vertical", "horizontal", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the structure referred to must have a specific orientation or must be constructed in a specific orientation. They should not be construed as limitations on this utility model.

[0049] Furthermore, unless otherwise specified in the text, "a" and "described" can refer to a single or multiple entities. If the embodiments of this utility model involve descriptions such as "first," "second," etc., these descriptions are for descriptive purposes only and should not be construed as indicating or implying their relative importance or implicitly specifying the number of indicated technical features. Therefore, a feature defined with "first" or "second" can explicitly or implicitly include at least one of those features. Additionally, the technical solutions of various embodiments can be combined with each other, but this must be based on the ability of those skilled in the art to implement them. When the combination of technical solutions is contradictory or impossible to implement, it should be considered that such a combination of technical solutions does not exist and is not within the scope of protection claimed by this utility model.

[0050] For ceiling lights that are large in size and weight, a larger mounting structure is needed to ensure installation stability. However, this design results in a further increase in weight, making transportation and storage more difficult. Furthermore, existing mounting structures require users to perform both installation and wiring simultaneously. Therefore, for large or heavy ceiling lights, it's generally necessary for one person to hold the light while another completes the wiring before installing it. This process is cumbersome and difficult for a single person to perform. If forced to do so, the light may not be held securely, causing it to fall during wiring, breaking wires, or even damaging the fixture. Therefore, this utility model discloses a split-type installation structure for a ceiling light and a ceiling light itself. The split-type installation structure includes an installation groove on the top surface of the ceiling light and an installation plate detachably connected to the ceiling light. One end of the installation plate is detachably connected to the ceiling light and rotatably hinged, while the other end is detachably snap-fitted to the ceiling light. When not in use, the installation plate and the ceiling light can be separated for storage and transportation. When the ceiling light needs to be installed, the installation plate can be first installed on the mounting surface, and then the ceiling light can be rotatably hinged to the installation plate to suspend it. This allows for hands-free wiring of the ceiling light before pushing the other end of the installation plate to snap-fit, thus quickly completing the installation of the ceiling light to the mounting surface. Furthermore, the installation process can be completed by a single person, reducing installation difficulty and improving the user experience.

[0051] Specifically, this utility model discloses a split-type installation structure for a ceiling light and a ceiling light itself, such as... Figure 1 and Figure 2 As shown, the ceiling light 500 disclosed in this utility model has a split-type mounting structure on its top. The split-type mounting structure includes a mounting groove 100 on the surface of the ceiling light 500, a pivot portion 300 and a retaining portion 400 at opposite ends of the mounting groove, and a mounting plate 200 that can be detachably and rotatably hinged to the ceiling light 500 via the pivot portion 300 and the retaining portion 400. The split-type mounting structure is mounted on the top of the ceiling light 500 via the mounting groove 100, the mounting plate 200, the pivot portion 300, and the retaining portion 400, thereby fixing the ceiling light 500 to the mounting surface and completing the installation of the ceiling light 500. All components of the split-type mounting structure are hidden inside the top of the ceiling light 500, and are not exposed to the outside of the ceiling light 500 after installation, ensuring the overall aesthetics and preventing damage during use.

[0052] Furthermore, such as Figure 4 and Figure 5As shown, one end of the mounting plate 200 is detachably connected to and rotatably hinged to the rotating shaft 300. That is, when the mounting plate 200 and the rotating shaft 300 are connected to each other, the ceiling light 500 can rotate relative to the mounting plate 200 through the rotating shaft 300. This ensures that after the mounting plate 200 is fixed on the mounting surface, the ceiling light 500 can be suspended on the mounting plate 200 through the rotating shaft 300, freeing the user's hands to complete the wiring of the ceiling light. Furthermore, the other end of the mounting plate 200 is detachably connected to the retaining part 400. That is, when one end of the mounting plate 200 is hinged to the rotating shaft part 300, and the ceiling light 500 is rotated until its top surface is connected to the mounting plate 200, the other end of the mounting plate 200 can be retained and connected to the retaining part 400, so that the surface of the ceiling light 500 forms a flat surface without protrusions, ensuring that there is no gap between the ceiling light 500 and the mounting surface after it is fixed on the mounting surface, and the mounting plate 200 is completely hidden inside the ceiling light 500.

[0053] Furthermore, such as Figure 4 and Figure 7 As shown, the mounting plate 200 includes a body 210, a hook portion 220, and a snap-fit ​​portion 230. The body 210 forms an integral plate structure of the mounting plate 200, and a through hole 211 is provided at the center of the body 210 corresponding to the ceiling light 500. After the ceiling light 500 is fixed to the mounting surface through the split mounting structure, the wire is connected to the ceiling light 500 and an external power source through the through hole 211, thereby ensuring the power supply of the ceiling light 500. Specifically, after the mounting plate 200 is fixed to the mounting surface, the ceiling light 500 is suspended from one end of the mounting plate 200, and then the wire is passed through the through hole 211 and connected to the ceiling light 500. The connection process is simple and quick, and convenient for single-person operation. Optionally, the mounting groove 100 forms a clearance notch at the middle position of the body 210 to facilitate the user to grasp the body 210 and rotate the mounting plate 200.

[0054] Furthermore, such as Figure 7As shown, the hook portion 220 is disposed at one end of the body 210, and the latch portion 230 is disposed at the other end of the body 210. That is, the latch portion 230 and the hook portion 220 are disposed at opposite ends of the body 210, ensuring that the mounting plate 200 can be detachably hinged to the body 210 and the ceiling light 500 through the hook portion 220. At the same time, after the mounting plate 200 and the ceiling light 500 are hinged, the mounting plate 200 can be held and connected to the ceiling light through the latch portion 230. After fixing the mounting plate 200 to the mounting surface, the ceiling light 500 is first hinged to the mounting plate 200 and suspended on the mounting plate 200. After completing the wiring, the ceiling light 500 is pushed to a position parallel to the mounting plate 200 by rotating the ceiling light 500 relative to the mounting plate 200. Then, the mounting plate 200 is completely hidden inside the top of the ceiling light 500 by the snap-fit ​​connection between the mounting plate 200 and the ceiling light 500 to complete the installation. This ensures the overall aesthetics of the ceiling light 500 and avoids damage to the split installation structure during use.

[0055] Furthermore, such as Figure 1 and Figure 3 As shown, the hook portion 220 is disposed at one end of the body 210 facing the pivot portion 300 to form a detachable hinge structure with the pivot portion 300, providing a detachable connection and rotatable hinge between the mounting plate 200 and the ceiling light. The hook portion 220 includes a connecting section 222 connected to the body 210, a limiting plate 223 disposed perpendicular to the connecting section 222, and a hook 221 disposed at the end of the connecting section 222 away from the body 210. Specifically, the connecting section 222 extends along the length direction of the body 210 to extend the hook 221 toward the pivot portion 300; the limiting plate 223 is disposed at the position where the connecting section 222 is connected to the body 210 and is disposed perpendicular to the connecting section 222 and the body 210, so as to limit the rotation angle of the ceiling light 500 when the ceiling light 500 rotates relative to the mounting plate 200, and prevent the ceiling light 500 from falling off the mounting plate 200. Specifically, the limiting plate 223 cooperates with the top of the ceiling light 500 to limit the rotation angle between the mounting plate 200 and the top surface of the ceiling light 500 to 0-90°. Further, as... Figure 6 and Figure 8As shown, the hook 221 includes an arc segment 2211 connected to the connecting segment 222, and an extension segment 2212 disposed at the other end of the arc segment 2211 opposite to the connecting segment 222 and tangent to the arc segment 2211. The arc of the arc segment 2211 is adapted to the rotating shaft 320 in the rotating shaft portion 300 to ensure that the hook 221 can hook the rotating shaft 320 through the arc segment 2211 and rotate smoothly around the rotating shaft 320. The extension segment 2212 extends from the arc segment 2211 into the gap between the rotating shaft 320 and the mounting groove 100. Thus, during the rotation of the hook 221 relative to the rotating shaft 320, the extension segment 2212 remains on the other side of the rotating shaft 320 opposite to the mounting plate 200, preventing the mounting plate 200 from detaching from the rotating shaft portion 300 during rotation and ensuring the stability of the split-type mounting structure. Furthermore, when wiring the ceiling light 500, the ceiling light 500 is suspended on the hook 221 to free the user's hands to complete the wiring work, making it convenient for single-person operation.

[0056] Optionally, in one embodiment, the hook portion 220 includes two parallel connecting segments 222, and hooks 221 are respectively provided at the ends of the two connecting segments 222 away from the mounting plate 200. The distance between the two connecting segments 222 is equal to the width of the mounting plate 200, and they can be matched with the rotating shaft 320 in the rotating shaft portion 300 to form a hinge structure, so that the mounting plate 200 and the rotating shaft portion 300 are stably hinged, preventing the ceiling light 500 from tilting when suspended on the mounting plate 200, and preventing the ceiling light 500 from deflecting when rotating relative to the mounting plate 200, thereby improving the stability of the split mounting structure.

[0057] Furthermore, such as Figure 2 and Figure 3 As shown, the mounting plate 200 also includes a pair of baffles 240, which extend upward perpendicularly to both ends of the body 210 to ensure that after the mounting plate 200 is fixed on the mounting surface, there is a gap between the hook portion 220 of the mounting plate 200 and the mounting surface, so as to facilitate hanging the ceiling light 500 on the hook portion 220.

[0058] Furthermore, such as Figure 3 and Figure 5As shown, the latching part 230 is disposed at one end of the body 210 facing the holding part 400. After the hook part 220 and the rotating shaft part 300 form a stable hinged connection, when the mounting plate 200 is rotated relative to the rotating shaft part 300 into the mounting groove 100, the latching part 230 can form a latching connection with the holding part 400 to fix the mounting plate, completely concealing the mounting plate 200 in the mounting groove 100. This prevents the mounting plate 200 from being exposed on the outside of the ceiling light 500, improving safety during use. Specifically, the latching part 230 is a bayonet structure that penetrates the mounting plate 200 to fit with the hook 420 inside the holding part 400, forming a stable latching connection. Furthermore, during the process of engaging the ceiling light 500 with the mounting plate 200, the latching part 230 presses against the top of the hook 420, pushing the holding part 400 to move and complete the engagement of the ceiling light 500 with the mounting plate 200.

[0059] Furthermore, such as Figure 3 and Figure 4 As shown, the mounting groove 100 is a strip-shaped groove, and the pivot portion 300 and the retaining portion 400 are respectively disposed at opposite ends of the mounting groove 100. In one embodiment, the ceiling light is a circular ceiling light, the mounting groove is disposed at the diameter position of the top surface of the ceiling light, and the pivot portion 300 and the retaining portion 400 are disposed inside the ceiling light to ensure that when the mounting plate 200 is stored in the mounting groove 100, the mounting plate 200 is completely hidden inside the top surface of the ceiling light, avoiding the structure being exposed on the outside of the ceiling light, improving the overall aesthetics and the stability of use.

[0060] Specifically, such as Figure 5 and Figure 6As shown, the pivot portion 300 includes a groove 310 and a pivot 320, wherein the groove 310 is disposed at one end of the mounting groove 100 corresponding to the hook 221, and the extending direction of the groove 310 is perpendicular to the extending direction of the mounting groove 100. In one embodiment, the mounting groove 100 extends along the top surface of the ceiling light, while the groove 310 extends perpendicular to the top surface of the ceiling light. Further, a pivot 320 parallel to the top surface of the ceiling light is provided in the groove 310, that is, the pivot 320 is perpendicular to the extending direction of the groove 310 and the extending direction of the mounting groove 100, to form a pivot structure adapted to the hook portion 220 on the mounting plate 200. In one embodiment, the mounting groove 100 is provided with a plurality of grooves 310 corresponding to the number and position of the connecting section 222 and the hook 221 in the hook portion 220. During the connection of the mounting plate 200 and the ceiling light, the hook 221 is inserted into the corresponding groove 310 and engaged with the rotating shaft 320 to form a stable hinge structure, realizing the rotatable hinge between the mounting plate 200 and the ceiling light, and suspending the ceiling light on the mounting plate 200 through the cooperation of the rotating shaft 320 and the hook 221. Through the cooperation of multiple rotating shafts 320 and multiple hooks 221, it is ensured that the ceiling light will not tilt when suspended on the mounting plate 200, and will not deflect during rotation, thereby improving the stability of the split mounting structure during use.

[0061] Specifically, such as Figure 5 and Figure 6 As shown, the retaining part 400 can move between the first position 101 and the second position 102 of the mounting groove 100. When the mounting plate 200 is rotated to be accommodated in the mounting groove 100, if the retaining part 400 is in the first position 101, the retaining part 400 engages with the latching part 230 of the mounting plate 200, fixing the mounting plate 200 in the mounting groove 100; if the retaining part 400 is in the second position 102, the retaining part 400 separates from the latching part 230 of the mounting plate 200, and the ceiling light rotates relative to the mounting plate 200 under the action of gravity, thereby forming sufficient space to quickly complete the disconnection of the ceiling light and its separation from the mounting plate 200. In one embodiment, the mounting groove 100 is provided with a protruding limiting block 120 at the second position 102. When the holding part 400 moves to the second position 102, the limiting block 120 can abut against the holding part 400 to prevent the holding part 400 from moving further and falling out of the mounting groove 100.

[0062] Furthermore, such as Figure 4 and Figure 5As shown, the holding part 400 includes a movable body 410, a hook 420, a return spring 430, and an operating part 440. The movable body 410 is adapted to the mounting groove 100 and can slide along the mounting groove 100 between the first position 101 and the second position 102. The hook 420 is disposed on the side of the movable body 410 facing the mounting plate 200, and the holding part 400 is detachably connected to the mounting plate 200 via the hook 420. The return spring 430 is disposed between the holding part 400 and the mounting groove 100, providing a spring force to move the holding part 400 from the second position 102 to the first position 101. The operating part 440 is disposed on the movable body 410 and extends in a direction away from the mounting plate 200. The operating part 440 extends from the mounting groove 100 to facilitate moving the holding part 400 from the first position 101 to the second position 102. Specifically, the top of the hook 420 is provided with an inclined surface. When the ceiling light is rotated to accommodate the mounting plate 200 in the mounting groove 100, the buckle portion 230 of the mounting plate 200 presses against the top inclined surface of the hook 420, pushing the holding portion 400 from the first position 101 to the second position 102. After the buckle is in place, the holding portion 400 is returned to the first position 101 under the action of the return spring 430, thus completing the holding connection between the holding portion 400 and the mounting plate 200.

[0063] Specifically, such as Figure 4 As shown, at one end of the mounting groove 100 corresponding to the holding part 400, the mounting groove 100 forms sliding grooves 110 on both sides of the movable body 410. The sliding grooves 110 extend in the same direction as the mounting groove 100 and their width is slightly greater than the height of both sides of the movable body 410. This allows the movable body 410 to be inserted into the sliding grooves 110 and to slide freely along the sliding grooves 110. This ensures that the holding part 400 can move between the first position 101 and the second position 102, while preventing the holding part 400 from falling out of the mounting groove 100, thus improving the safety and stability of use.

[0064] Specifically, such as Figure 4 and Figure 6As shown, the mounting groove 100 forms a notch 130 on the side wall corresponding to the operating part 440. When no external force is applied to the holding part 400, the return spring 430 provides a restoring force to fix the movable body 410 in the first position 101. At this time, the operating part 440 extends from the notch 130 to form a structure on the side wall of the ceiling light that can push the holding part 400 to move. When the user presses the operating part 440 in the notch 130, the holding part 400 can be pushed from the first position 101 to the second position 102, thereby realizing the separation between the holding part 400 and the mounting plate 200. After the operating part 440 is released, the return spring pushes the holding part 400 back to the first position 101, and the operating part 440 extends out from the notch 130 again for the convenience of the user's subsequent use.

[0065] In conjunction with the aforementioned split-type installation structure, this utility model also provides a ceiling light, wherein the ceiling light is provided with the split-type installation structure as described above, thereby enabling quick installation and disassembly of the ceiling light and the split-type installation structure, facilitating transportation and storage; at the same time, the connection part between the split-type installation structure and the ceiling light is hidden in the mounting groove on the inner side of the top of the ceiling light, preventing the connection part from being exposed outside the ceiling light, thus ensuring the overall visual effect and preventing damage to the connection part during use.

[0066] The following is a brief description of the use of the ceiling light with the split-type installation structure described in this utility model:

[0067] During transportation and storage, the ceiling light and the mounting plate in the split installation structure are separate structures. The mounting groove, rotating shaft and holding part in the split installation structure are all located in the top surface of the ceiling light. When installing a ceiling light, first fix the mounting plate to the mounting surface. Then, insert the hook of the hook part into the groove of the rotating shaft part and engage with the rotating shaft in the groove to form a hinge structure. Suspend the ceiling light on the mounting plate, and the ceiling light can then rotate relative to the mounting plate. After suspending the ceiling light on the mounting plate, pass the wire through the through hole on the body of the mounting plate and connect it to the ceiling light to provide power. Then rotate the ceiling light relative to the mounting plate until the mounting plate is completely accommodated in the mounting groove. At this time, the snap-fit ​​part of the mounting plate engages with the hook in the holding part, and the ceiling light is installed on the mounting surface. The split installation structure is completely hidden inside the top of the ceiling light, with no structure exposed on the outside of the ceiling light, thus ensuring the overall aesthetics of the ceiling light. At the same time, the installation process is simple and quick, and a single person can complete the installation and wiring work.

[0068] When the ceiling light needs to be removed, locate the notch on the top side wall of the ceiling light and press the operating part inside the notch to push the locking part away from the latching part of the mounting plate. Since the hook part of the mounting plate remains engaged with the rotating shaft, the ceiling light rotates relative to the mounting plate under gravity. At this time, limited by the limiting plate on the hook part of the mounting plate, the ceiling light rotates to a suitable angle with the mounting plate, preventing the ceiling light from completely detaching from the mounting plate. The ceiling light is now suspended on the mounting plate. After disconnecting the ceiling light from the power cord, disengage the hook inside the hook part from the rotating shaft inside the rotating shaft part, and remove the ceiling light from the mounting plate for easy replacement and reinstallation. Finally, remove the mounting plate from the mounting surface, completing the disassembly process. The mounting plate and the ceiling light can then be stored or transported separately.

[0069] In summary, this utility model provides a split-type mounting structure for a ceiling light and a ceiling light itself. The ceiling light is fixed to a mounting surface via the split-type mounting structure. The split-type mounting structure includes: a mounting groove disposed on the top of the ceiling light; a rotating shaft fixed to one end of the mounting groove; a retaining part disposed at the other end of the mounting groove; and a mounting plate detachably connected to the mounting groove. The mounting plate includes: a body adapted to the width of the mounting groove; a hook disposed at one end of the body, detachably connected to the rotating shaft, and the mounting plate rotatably hinged to the rotating shaft via the hook; and a latching part disposed at the other end of the body, detachably latched to the retaining part. By setting up a split installation structure, after fixing the mounting plate to the mounting surface, the ceiling light can be suspended on the mounting plate first, and the wiring can be completed before the ceiling light is installed, thus reducing the installation difficulty and allowing a single person to complete the installation.

[0070] It should be understood that the application of this utility model is not limited to the examples above. Those skilled in the art can make improvements or modifications based on the above description, and all such improvements and modifications should fall within the protection scope of the appended claims.

Claims

1. A split-type mounting structure for a ceiling light, wherein the ceiling light is fixed to a mounting surface via the split-type mounting structure, characterized in that, The split-type installation structure includes: The mounting slot is located on the top of the ceiling light; A rotating shaft is fixed to one end of the mounting groove; A retaining part is disposed at the other end of the mounting slot; Mounting plate, which is detachably connected to mounting groove, wherein the mounting plate includes: a body, the width of which is adapted to the width of the mounting groove; The hook portion is disposed at one end of the main body, the hook portion is detachably connected to the rotating shaft portion, and the mounting plate is rotatably hinged to the rotating shaft portion through the hook portion; A latching part is provided at the other end of the main body, and the latching part is detachably latched to the holding part.

2. The split-type installation structure of the ceiling light according to claim 1, characterized in that, The hook portion includes: The hook is detachably connected to the rotating shaft, and the mounting plate is rotatably hinged to the rotating shaft via the hook. A connecting segment extends along the length of the body and connects the hook and the body; A limiting plate is provided perpendicular to the connecting section to limit the rotation angle of the mounting plate when the mounting plate rotates relative to the rotating shaft.

3. The split-type installation structure of the ceiling light according to claim 2, characterized in that, The hook portion is provided with two hooks in parallel, and the two hooks are respectively connected to the body through two connecting sections.

4. The split-type installation structure of the ceiling light according to claim 2, characterized in that, The rotating shaft includes: A groove, which is provided at one end of the mounting groove corresponding to the hook, and the extending direction of the groove is perpendicular to the extending direction of the mounting groove; A rotating shaft is fixed in the groove and is arranged perpendicular to the extension direction of the groove and the mounting groove. The rotating shaft is detachably connected to the hook, and the hook and the rotating shaft cooperate to realize the rotatable hinge between the mounting plate and the rotating shaft.

5. The split-type installation structure of the ceiling light according to claim 4, characterized in that, The hook includes: An arc segment, the arc segment being matched to the arc setting of the rotating shaft, to ensure a rotatable hinge between the mounting plate and the rotating shaft after the hook is hooked onto the rotating shaft; An extension section, which is tangent to the arc segment, is provided to prevent the hook from separating from the pivot when the mounting plate rotates relative to the pivot.

6. The split-type installation structure of the ceiling light according to claim 1, characterized in that, The holding part includes: The movable body is adapted to the mounting slot and can slide along the mounting slot between a first position and a second position; A latch is provided on the side of the movable body facing the mounting plate, and the holding part is detachably connected to the mounting plate through the latch; A return spring is disposed between the retaining portion and the mounting groove, providing an elastic force to move the retaining portion from the second position to the first position; An operating part is disposed on the movable body and extends in a direction away from the mounting plate. The operating part extends out of the mounting groove to facilitate moving the holding part from the first position to the second position.

7. The split-type installation structure of the ceiling light according to claim 6, characterized in that, The mounting slot includes: A limiting block is provided at the second position perpendicular to the bottom surface of the mounting groove. When the holding part moves to the second position, the limiting block abuts against the holding part, preventing the holding part from moving further. A sliding groove is provided on the inner side wall of the mounting groove corresponding to the movable body, and the extension direction of the sliding groove is parallel to the extension direction of the mounting groove. The two side edges of the movable body are engaged in the sliding groove to realize the free sliding of the movable body along the mounting groove. A notch is provided at the other end of the mounting groove corresponding to the operating part. When the engaging part is in the first position, the operating part extends out from the notch.

8. The split-type installation structure of the ceiling light according to claim 6, characterized in that, The mounting plate also includes baffles, which are perpendicular to the body and disposed at both ends of the body, so that after the mounting plate is fixed on the mounting surface, a gap is left between the mounting plate and the mounting surface for the ceiling light to be suspended.

9. The split-type installation structure of the ceiling light according to claim 1, characterized in that, The mounting plate has a through hole at the center of the ceiling light to allow wires to pass through and power the ceiling light after it is installed on the mounting surface.

10. A ceiling light, characterized in that, Includes the split mounting structure of the ceiling light as described in any one of claims 1-9.