Quick-release waterproof ceiling lamp
The quick-release waterproof ceiling light design utilizes movable parts and a snap-fit structure to achieve rapid installation and disassembly, solving the problems of installation accuracy and stability of existing ceiling lights, improving waterproof performance and applicability, and providing a more efficient user experience.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- CIXI SUPLUX CO LTD
- Filing Date
- 2025-05-27
- Publication Date
- 2026-05-01
AI Technical Summary
The installation process of existing ceiling lights requires a high degree of precision from the user, and non-professionals are prone to operational errors. Furthermore, the stability of installation on uneven or special material surfaces is poor, making it difficult to meet diverse usage needs.
The ceiling light features a quick-release waterproof design, utilizing movable parts and a locking mechanism to achieve rapid connection and disassembly through leverage. Combined with rubber buffer pads and spring sleeve structures, it enhances robustness and adaptability. Waterproof sealing rings and electronic component shields further improve waterproof performance and durability.
It simplifies the installation process, reduces operational difficulty, improves installation efficiency and waterproof performance, adapts to different installation environments, extends service life, and reduces maintenance costs.
Smart Images

Figure CN224188478U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of ceiling light equipment, and more specifically, to a quick-release waterproof ceiling light. Background Technology
[0002] In the field of architectural lighting, ceiling lights have become a common choice for indoor and outdoor lighting due to their simple and beautiful appearance and high space utilization. As users' demands for convenient installation of lighting fixtures continue to increase, Chinese invention patent application number 202410011731.X discloses a ceiling light that uses a quick-installation assembly with snap-fit and press-fit components to achieve rapid assembly and disassembly of the lamp body and quick-installation tray, improving installation convenience and accuracy to some extent. However, this ceiling light still has many shortcomings and cannot meet diverse usage needs.
[0003] On the one hand, the current ceiling light's quick-installation structure relies on complex snap-fit and press-fit components, resulting in numerous parts and requiring a high degree of precision from the user during installation. For non-professionals, there is still a risk of operational errors during actual installation. Furthermore, the installation method demands a high degree of surface flatness. When installed on uneven or specially designed walls or ceilings, installation stability is difficult to guarantee, significantly limiting its applicability. Therefore, there is an urgent need to develop a ceiling light that allows for quick installation and disassembly, possesses good waterproof performance, and can adapt to various installation environments to address the shortcomings of existing technologies. Utility Model Content
[0004] The purpose of this utility model is to provide a quick-release waterproof ceiling light to solve the problem mentioned in the background art that the installation process requires a high degree of precision from the user, and that non-professionals may still have the risk of operational errors during actual installation.
[0005] To achieve the above objectives, this utility model provides a quick-release waterproof ceiling light, including a base shell, a top cover installed on the top of the base shell, and locking components installed on both sides of the bottom of the base shell. The locking components include an upper shell and a lower shell. A movable component is installed on one side of the upper shell. The movable component includes a movable block. A movable rod is installed at one end of the movable block. A handle is installed at the end of the movable rod. A locking block is installed at the other end of the movable block. The locking block is locked onto a mounting base on a wall or ceiling.
[0006] This design features a top cover mounted on the bottom shell, forming the main frame of the ceiling light. The locking components on both sides of the bottom consist of an upper shell and a lower shell. The movable component on one side of the upper shell uses a movable block, a movable rod, a handle, and a locking block to work together, utilizing the principles of leverage and locking. When the handle is operated, the movable rod moves the movable block, causing the locking block to engage or disengage with the mounting bracket on the wall or ceiling, thus enabling quick connection and disassembly of the ceiling light from the mounting surface.
[0007] Preferably, a buckle is installed on the inner top of the bottom shell, and a slot is provided on the side of the top cover, with the buckle engaging with the slot.
[0008] This design features a snap-fit mechanism where the buckle on the inner side of the bottom shell and the latch on the side of the top cover are engaged. The shape of the buckle matches the latch. During installation, the top cover is aligned with the bottom shell, and the buckle is inserted into the latch. The mechanical engagement between the two achieves a fixed connection between the top cover and the bottom shell.
[0009] Preferably, the snap-fit end of the buckle is provided with a rubber buffer pad. The surface of the rubber buffer pad has a grid-like anti-slip texture, which can prevent wear when the buckle and the snap-fit are engaged, and also increase the firmness of the engagement.
[0010] This feature incorporates a rubber buffer pad at the snap-fit end of the buckle. Utilizing the elastic deformation properties of rubber, when the buckle snaps into place, the rubber buffer pad is compressed and deformed, filling the tiny gap between the two. The grid-like anti-slip texture on the surface increases friction, further preventing the buckle from sliding within the snap-fit.
[0011] Preferably, an electronic component shield is bolted to the bottom of the base shell, and a starter element is disposed inside the electronic component shield.
[0012] This design uses bolts to secure the electronic component shield at the bottom of the casing, forming a closed space where the starter component and other electronic components are placed. The bolt connection ensures the stable installation of the electronic component shield, while the closed space prevents the external environment from affecting the electronic components.
[0013] Preferably, threaded holes are provided on both sides of the lower shell, and locking holes are provided on both sides of the upper shell. The locking holes and the threaded holes are fixed together by bolts.
[0014] This design connects the threaded hole of the lower shell to the locking hole of the upper shell with bolts. By utilizing the threaded engagement principle of the bolts and the threaded hole, the upper and lower shells are tightly fixed together to form a complete locking component. After the bolts are tightened, a large clamping force is generated between the upper and lower shells.
[0015] Preferably, spring sleeves are installed on both sides of the back of the movable block, and springs are sleeved on the spring sleeves, with one end of the springs abutting against the inner wall of the upper shell.
[0016] This design features springs mounted on spring sleeves on both sides of the back of the movable block. One end of each spring abuts against the inner wall of the upper housing. When the movable part is operated, the movable block is moved by force, compressing the spring and generating elastic potential energy. When the external force is removed, the spring releases the elastic potential energy, pushing the movable block back to its original position. This utilizes the elastic reset principle of the spring to achieve automatic return and stable holding of the movable block.
[0017] Preferably, the spring is made of stainless steel and has an anti-rust coating on its surface. The anti-rust coating is made of epoxy resin to extend the service life of the spring and ensure the normal use of the moving parts.
[0018] This design uses stainless steel to ensure its basic strength and toughness, and the surface is coated with an epoxy resin anti-rust coating. The density and chemical stability of the epoxy resin coating isolate the spring from external moisture and corrosive substances, preventing the stainless steel spring from rusting.
[0019] Compared with the prior art, the beneficial effects of this utility model are as follows:
[0020] This quick-release waterproof ceiling light, through its unique structural design, exhibits significant technical advantages compared to the ceiling light with prior art application number 202410011731.X.
[0021] In terms of quick assembly and disassembly, this utility model sets a movable part on the locking component. The user only needs to operate the handle at the end of the movable rod to drive the movable block and the locking block to move, so as to achieve engagement or disassembly with the locking seat. There is no need for complicated locking and pressing components, which simplifies the installation process and reduces the difficulty of operation. Even non-professionals can easily complete the installation and disassembly, which greatly improves the installation efficiency and reduces the risk of installation errors.
[0022] In terms of waterproof performance, the buckle on the inner side of the top of the bottom shell engages with the snap-fit on the side of the top cover, and the rubber buffer pad at the buckle engagement end has a grid-like anti-slip texture. This design not only enhances the firmness of the engagement but also effectively fills gaps. Combined with possible waterproof sealing rings and other structures, it forms multiple waterproof barriers, significantly improving waterproof performance. It can effectively prevent moisture from seeping into the lamp body, making it suitable for humid environments such as kitchens and bathrooms, as well as outdoor locations prone to rain, extending the lifespan of the lamp and ensuring safe use.
[0023] In terms of installation adaptability, the spring sleeve rod and spring structure in the moving parts enable the locking block to adapt to the installation surface with different flatness when it engages with the locking seat. The locking force is adjusted by the elastic deformation of the spring, ensuring stable installation on uneven or special materials of walls and roofs, greatly expanding the applicable scenarios.
[0024] In addition, the spring on the back of the moving block is made of stainless steel and coated with epoxy resin for rust prevention. The waterproof structure that may be set at the connection between the electronic component shield and the bottom shell are also designed to enhance the durability and reliability of each component, reduce the cost and frequency of later maintenance, and bring users a better user experience. Attached Figure Description
[0025] Figure 1 This is a schematic diagram of the overall structure of this utility model;
[0026] Figure 2 This is a schematic diagram of the exploded structure of this utility model;
[0027] Figure 3 This is an exploded structural diagram of the bottom shell of this utility model;
[0028] Figure 4 This is a schematic diagram of the locking component in this utility model;
[0029] Figure 5 This is a schematic diagram of the structure of the movable parts in this utility model;
[0030] The meanings of the labels in the diagram are as follows:
[0031] 1. Bottom shell; 11. Buckle; 2. Top cover; 21. Bayonet; 3. Locking component; 31. Upper shell; 311. Locking hole; 32. Lower shell; 321. Threaded hole; 33. Moving component; 331. Moving block; 332. Moving rod; 333. Handle; 334. Spring; 335. Locking block; 336. Spring sleeve rod; 4. Electronic component cover. Detailed Implementation
[0032] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0033] This utility model provides a quick-release waterproof ceiling light, such as... Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figure 5As shown, it includes a bottom shell 1, a top cover 2 installed on the top of the bottom shell 1, an LED light panel installed inside the bottom shell 1, and locking components 3 installed on both sides of the bottom of the bottom shell 1. The locking components 3 include an upper shell 31 and a lower shell 32. A movable component 33 is installed on one side of the upper shell 31. The movable component 33 includes a movable block 331. A movable rod 332 is installed at one end of the movable block 331. A handle 333 is installed at the end of the movable rod 332. A locking block 335 is installed at the other end of the movable block 331. The locking block 335 is locked onto a mounting base on a wall or roof.
[0034] The top cover 2, mounted on the top of the bottom shell 1, forms the main frame of the ceiling light. The locking components 3 on both sides of the bottom are composed of an upper shell 31 and a lower shell 32. In the movable component 33 on one side of the upper shell 31, one end of the movable block 331 is connected to the movable rod 332. The movable rod 332 has a handle 333 at one end and a locking block 335 at the other end. Utilizing the lever and locking principle, when the handle 333 is operated, the movable rod 332 drives the movable block 331 to move, causing the locking block 335 to engage or disengage with the mounting bracket on the wall or ceiling, completing the quick connection and disassembly of the ceiling light to the mounting surface. This enables quick installation and disassembly of the ceiling light without additional tools, reducing installation difficulty and time costs, and improving the convenience of installation and maintenance for users. The locking components 3 on both sides, in conjunction with the movable components 33, ensure good stability of the ceiling light after installation, adapting to various installation environments.
[0035] In this embodiment, as Figure 1 , Figure 2 As shown, a buckle 11 is installed on the inner top of the bottom shell 1, and a slot 21 is opened on the side of the top cover 2. The buckle 11 and the slot 21 are engaged.
[0036] The buckle 11 on the inner top of the base shell 1 is shaped to match the snap-fit 21 on the side of the top cover 2. During installation, align the top cover 2 with the base shell 1 so that the buckle 11 engages with the snap-fit 21, and the top cover 2 and the base shell 1 are fixedly connected through mechanical engagement. This simplifies the connection between the top cover 2 and the base shell 1, making it more convenient and faster than screw connections. The snap-fit mechanism prevents relative displacement between the two, enhances the overall structural stability of the ceiling light, and facilitates the disassembly of the top cover 2 for internal inspection or cleaning.
[0037] Specifically, the snap-fit end of the buckle 11 is provided with a rubber buffer pad. The surface of the rubber buffer pad has a grid-like anti-slip texture, which can prevent wear when the buckle 11 and the snap-fit 21 are engaged, and also increase the firmness of the engagement.
[0038] The snap-fit end of the buckle 11 is equipped with a rubber buffer pad. When the buckle 11 is engaged with the latch 21, the rubber buffer pad is compressed and deformed, filling the tiny gaps. The grid-like anti-slip texture on its surface increases friction and prevents the buckle 11 from sliding within the latch 21. This reduces rigid collisions when the buckle 11 and latch 21 are engaged, reduces wear, and extends the service life of both the buckle 11 and latch 21. The grid-like anti-slip texture also enhances the secure engagement, preventing the top cover 2 from loosening due to vibration and ensuring the safe and reliable use of the ceiling light.
[0039] Furthermore, such as Figure 3 As shown, an electronic component shield 4 is bolted to the bottom of the base shell 1, and a starter component is installed inside the electronic component shield 4.
[0040] The bottom of the base shell 1 is secured to the electronic component shield 4 with bolts, forming a closed space within which the starter components and other electronic components are placed. The bolted connection ensures the secure installation of the electronic component shield 4, and the enclosed space isolates the electronic components from external environmental influences. This effectively protects the electronic components, preventing dust and moisture corrosion, reducing the risk of damage, and extending the overall lifespan of the ceiling light. It also facilitates centralized installation and management of the electronic components, allowing for quick disassembly and replacement of the electronic component shield 4 in case of malfunction.
[0041] Furthermore, such as Figure 4 As shown, threaded holes 321 are provided on both sides of the lower shell 32, and locking holes 311 are provided on both sides of the upper shell 31. The locking holes 311 and the threaded holes 321 are fixed together by bolts.
[0042] The threaded hole 321 of the lower shell 32 is connected to the locking hole 311 of the upper shell 31 by bolts. The upper shell 31 and the lower shell 32 are tightly fixed by the threaded engagement of the bolts with the threaded hole 321, forming a complete locking component 3. After the bolts are tightened, a large tightening force is generated. This makes the locking component 3 structurally robust, ensuring that the moving part 33 operates stably after being installed on the upper shell 31, preventing the upper shell 31 and the lower shell 32 from separating or loosening during use, enhancing the stability of the connection between the ceiling light and the mounting surface, and ensuring safe use.
[0043] Furthermore, such as Figure 5 As shown, spring sleeve rods 336 are installed on both sides of the back of the movable block 331, and springs 334 are sleeved on the spring sleeve rods 336. One end of the springs 334 abuts against the inner wall of the upper shell 31.
[0044] Springs 334 are fitted onto the spring rods 336 on both sides of the back of the movable block 331, with one end of the spring 334 abutting against the inner wall of the upper shell 31. When the movable part 33 is operated, the movable block 331 moves under force, compressing the spring 334 and generating elastic potential energy; after the external force is removed, the spring 334 releases the elastic potential energy, pushing the movable block 331 to reset, realizing the automatic return and stable holding of the movable block 331. This provides the reset power for the movable part 33, allowing the locking block 335 to automatically return to its original position after locking or disengaging operations, ensuring accurate and smooth operation in the next operation; the buffering effect of the spring 334 reduces the impact force of the movable part 33's movement, reduces component wear, and improves the service life and operational reliability of the movable part 33.
[0045] Furthermore, the spring 334 is made of stainless steel and has an anti-rust coating on its surface. The anti-rust coating is made of epoxy resin to extend the service life of the spring 334 and ensure the normal use of the moving part 33.
[0046] Spring 334 is made of stainless steel to ensure strength and toughness, and its surface is coated with an epoxy resin anti-rust coating. The density and chemical stability of the epoxy resin coating isolate the spring 334 from external moisture and corrosive substances, preventing rust. This significantly extends the service life of spring 334, preventing weakened elasticity or breakage due to rust, ensuring the long-term stable operation of the spring sleeve 336 structure in the moving part 33, guaranteeing the continued effectiveness of the ceiling light's quick-release function, and reducing maintenance and replacement costs due to spring 334 failure.
[0047] When using this quick-release waterproof ceiling light, first, before installing the ceiling light, fix the mounting bracket in a suitable position on the wall or ceiling. The position of the mounting bracket needs to be accurately determined according to the size of the ceiling light and installation requirements to ensure the stability of the subsequent installation. At the same time, check whether all components of the ceiling light are intact, including the base shell 1, top cover 2, locking parts 3, moving parts 33, etc., and whether the starter components inside the electronic component cover 4 are installed in place.
[0048] Align the top cover 2 with the bottom shell 1. Since the buckle 11 on the inner side of the top of the bottom shell 1 matches the shape of the latch 21 on the side of the top cover 2, when the top cover 2 is gently pressed, the buckle 11 engages with the latch 21, achieving initial fixation between the top cover 2 and the bottom shell 1 using the mechanical locking principle. The rubber buffer pad at the snap-fit end of the buckle 11 is compressed and deformed, filling the tiny gap between the two. The grid-like anti-slip texture on its surface increases friction, further preventing the buckle 11 from sliding within the latch 21, ensuring a firm connection between the top cover 2 and the bottom shell 1, forming a complete ceiling light main frame. Hold the handle 333 of the movable part 33 and pull the movable rod 332 outward, causing the movable block 331 to move. At this time, the spring 334 is compressed, storing elastic potential energy. Align the locking block 335 with the pre-installed mounting base, release the handle 333, and the spring 334 releases its elastic potential energy, pushing the movable block 331 back to its original position, so that the locking block 335 is firmly locked onto the mounting base, completing the quick connection between the ceiling light and the mounting surface. The threaded hole 321 of the lower shell 32 and the locking hole 311 of the upper shell 31 are connected and fixed by bolts to form a stable locking component 3, further ensuring the stability of the movable component 33 after installation, and ensuring that the ceiling light will not easily loosen or fall off during use.
[0049] After the ceiling light is installed and the power is turned on, the electronic components, such as the starter, begin to work, providing power to the light fixture and enabling it to illuminate normally. Because the electronic components are enclosed within the electronic component shield 4, and the bottom of the base shell 1 is fixed to the electronic component shield 4 with bolts, a closed space is formed, effectively isolating external dust and moisture, protecting the electronic components from corrosion, and ensuring that the ceiling light can work stably and reliably in humid environments such as kitchens and bathrooms, or outdoors where it is susceptible to rain.
[0050] When the ceiling light needs maintenance or parts replacement, grasp handle 333 and pull the movable rod 332 outwards, causing the movable block 331 to move and separating the locking block 335 from the mounting base. At this time, the spring 334 is compressed again. After the locking block 335 is completely disengaged from the mounting base, the ceiling light can be removed from the mounting surface. If internal electronic components need to be inspected, unscrew the bolts fixing the electronic component cover 4, open the electronic component cover 4, and then inspect, repair, or replace the starter components, etc. After maintenance, in the reverse order of installation, fix the electronic component cover 4, install the ceiling light back into the mounting base, and engage the top cover 2 with the bottom shell 1 to complete the maintenance of the ceiling light.
[0051] Based on the above working principles and processes, this quick-release waterproof ceiling light achieves the functions of rapid installation, stable use, and convenient disassembly and maintenance, meeting the user's needs in different scenarios.
[0052] The foregoing has shown and described the basic principles, main features, and advantages of this utility model. Those skilled in the art should understand that this utility model is not limited to the above embodiments. The embodiments and descriptions in the specification are merely preferred examples and are not intended to limit the utility model. Various changes and modifications can be made to this utility model without departing from its spirit and scope, and all such changes and modifications fall within the scope of the claimed utility model. The scope of protection of this utility model is defined by the appended claims and their equivalents.
Claims
1. A quick-release waterproof ceiling light, comprising a base shell (1), characterized in that: The top of the bottom shell (1) is fitted with a top cover (2), and locking components (3) are fitted on both sides of the bottom of the bottom shell (1). The locking components (3) include an upper shell (31) and a lower shell (32). A movable component (33) is fitted on one side of the upper shell (31). The movable component (33) includes a movable block (331). A movable rod (332) is fitted on one end of the movable block (331). A handle (333) is fitted on the end of the movable rod (332). A locking block (335) is fitted on the other end of the movable block (331). The locking block (335) is locked onto a mounting bracket on a wall or roof.
2. The quick-release waterproof ceiling light according to claim 1, characterized in that: The bottom shell (1) has a buckle (11) installed on the inner side of the top, and the top cover (2) has a slot (21) on the side, and the buckle (11) and the slot (21) are engaged.
3. The quick release waterproof ceiling light of claim 2, wherein: The buckle (11) is provided with a rubber buffer pad at the snap-fit end. The surface of the rubber buffer pad has a grid-like anti-slip texture, which can prevent wear when the buckle (11) and the snap-fit (21) are snapped together, and can also increase the firmness of the snap-fit.
4. The quick release waterproof ceiling light of claim 1, wherein: The bottom of the base (1) is bolted to an electronic component shield (4), and a starter element is installed inside the electronic component shield (4).
5. The quick release waterproof ceiling light of claim 1, wherein: The lower shell (32) has threaded holes (321) on both sides, and the upper shell (31) has locking holes (311) on both sides. The locking holes (311) and the threaded holes (321) are fixed together by bolts.
6. The quick release waterproof ceiling light of claim 1, wherein: Spring sleeve rods (336) are installed on both sides of the back of the movable block (331), and springs (334) are sleeved on the spring sleeve rods (336). One end of the springs (334) abuts against the inner wall of the upper shell (31).
7. The quick-release waterproof ceiling light according to claim 6, characterized in that: The spring (334) is made of stainless steel and has an anti-rust coating on its surface. The anti-rust coating is made of epoxy resin to extend the service life of the spring (334) and ensure the normal use of the moving parts (33).
Citation Information
Patent Citations
Ceiling lamp
CN117781233A