A battery universal lamp
Patent Information
- Application Number
- CN202611068010.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2026-07-17
- Publication Date
- 2026-09-25
AI Technical Summary
[0002]传统灯具的光源和透光面板多为固定式一体结构,透光面板通常通过胶粘固定于灯体上,无法拆卸更换
[0006]本发明主要具有以下有益效果:通过第一安装壳体表面开设安装槽位,透光面板可拆卸安装于安装槽位中,用户可根据使用场景或个人喜好随时更换不同颜色、不同透光率或不同材质的透光面板,实现多样化的光效输出和装饰效果;通过三种不同的安装实施例(滑动卡合、按压卡合、螺丝锁紧),提供了多样化的拆装方式,用户可根据实际需求选择最合适的安装方式;通过拆装推部、拆装凹位、提拉凹位和面板提拉部等结构,使透光面板的拆装方便,使用灵活便捷。
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Figure CN122813162A_ABST
Abstract
Description
Technical Field
[0001] This invention belongs to the field of lighting equipment technology, and specifically relates to a battery-powered universal lamp. Background Technology
[0002] Traditional lighting fixtures typically have a fixed, integrated structure for the light source and the light-transmitting panel. The light-transmitting panel is usually glued to the lamp body and cannot be disassembled or replaced.
[0003] Users cannot change the light-transmitting panel to different colors, light transmittance, or materials according to actual usage scenarios or personal preferences, resulting in a single and fixed light output and decorative effect of the lamp, and poor flexibility in use. Summary of the Invention
[0004] In view of the technical problems mentioned in the background art, the purpose of this invention is to provide a universal battery lamp to solve the technical problems mentioned in the background art.
[0005] To achieve the above objectives, the present invention provides the following technical solution: a battery-powered universal lamp, comprising a first mounting housing and a second mounting housing, wherein the first mounting housing and the second mounting housing are connected relative to each other, and a light source board is installed between the first mounting housing and the second mounting housing, wherein a plurality of LED beads are uniformly arranged on the light source board, and a mounting groove is formed on the surface of the first mounting housing, wherein a light-transmitting panel is detachably installed in the mounting groove, wherein the light-transmitting panel is correspondingly arranged with the light source board, and the light-transmitting panel is a detachable and replaceable structure.
[0006] The present invention has the following main advantages: by opening an installation slot on the surface of the first mounting housing, the light-transmitting panel can be detachably installed in the installation slot. Users can change the light-transmitting panel with different colors, light transmittance or materials at any time according to the usage scenario or personal preference, so as to achieve diversified light output and decorative effects; through three different installation embodiments (sliding engagement, pressing engagement, screw locking), diversified disassembly and assembly methods are provided, and users can choose the most suitable installation method according to actual needs; through the disassembly and assembly push part, disassembly and assembly recess, lifting recess and panel lifting part and other structures, the light-transmitting panel is easy to disassemble and assemble, and is flexible and convenient to use. Attached Figure Description
[0007] Figure 1 This is a schematic diagram of the overall front structure of the present invention.
[0008] Figure 2 This is a schematic diagram of the overall exploded structure of the present invention.
[0009] Figure 3 This is an exploded view of the first and second mounting housings of the present invention.
[0010] Figure 4 This is a schematic diagram of the first embodiment of the light-transmitting panel installation according to the present invention.
[0011] Figure 5 This is an exploded structural diagram of the first embodiment of the light-transmitting panel installation according to the present invention.
[0012] Figure 6 This is a schematic diagram of the second embodiment of the light-transmitting panel installation according to the present invention.
[0013] Figure 7 This is an exploded structural diagram of the second embodiment of the light-transmitting panel installation of the present invention.
[0014] Figure 8 This is a schematic diagram of the light-transmitting panel structure according to a second embodiment of the present invention.
[0015] Figure 9 This is a schematic diagram of the third embodiment of the light-transmitting panel installation according to the present invention.
[0016] Figure 10 This is an exploded structural diagram of the third embodiment of the light-transmitting panel installation of the present invention.
[0017] Figure 11 This is a schematic diagram of the light-transmitting panel structure according to the third embodiment of the present invention.
[0018] Reference numerals: First mounting housing 10; Second mounting housing 20; Light source board 30; LED bead 31; Mounting slot 11; Light-transmitting panel 40; Sliding slot 111; Sliding opening 112; Panel retaining edge 41; Disassembly push part 42; Partition protrusion 421; Disassembly recess 422; Panel retaining groove 113; Retaining groove protrusion 114; Protrusion groove 43; Lifting recess 115; Panel lifting part 44; Panel groove 116; Screw through post 117; Screw through hole 45; Positioning mating groove 118; Positioning protrusion 46; Positioning groove 12; Positioning protrusion 21. Detailed Implementation
[0019] like Figures 1 to 3 As shown, a battery-powered universal lamp includes a first mounting housing 10 and a second mounting housing 20, which are connected to each other. A light source board 30 is installed between the first mounting housing 10 and the second mounting housing 20. A plurality of LED beads 31 are evenly arranged on the light source board 30. A mounting groove 11 is formed on the surface of the first mounting housing 10. A light-transmitting panel 40 is detachably installed in the mounting groove 11. The light-transmitting panel 40 is correspondingly arranged with the light source board 30. The light-transmitting panel 40 is a detachable and replaceable structure, and users can replace it with a light-transmitting panel 40 of different colors, different light transmittances, or different materials according to their needs.
[0020] like Figures 4 to 5 As shown, the first embodiment of the light-transmitting panel 40 of the present invention is as follows:
[0021] The inner edge of the mounting slot 11 is recessed with a sliding groove 111, which extends circumferentially along the inner edge of the mounting slot 11. A sliding opening 112 is provided at the front end of the sliding groove 111, located on one side of the edge of the mounting slot 11, allowing the light-transmitting panel 40 to slide in or out. The light-transmitting panel 40 is a square panel, and its outer edge is provided with a panel retaining edge 41 that matches the sliding groove 111. The panel retaining edge 41 is provided along the circumferential edge of the light-transmitting panel 40. The light-transmitting panel 40 slides into the mounting slot 11 through the sliding opening 112. The panel retaining edge 41 is slidably engaged in the sliding groove 111, allowing the light-transmitting panel 40 to slide and be mounted on the surface of the first mounting housing 10 along the plane of the mounting slot 11. The panel retaining edge 41 and the sliding groove 111 work together to achieve sliding limit fixation, preventing the light-transmitting panel 40 from falling off in the direction perpendicular to the mounting slot 11. When it is necessary to remove the light-transmitting panel 40, push the light-transmitting panel 40 in the opposite direction so that its panel retaining edge 41 slides along the sliding groove 111 to the sliding opening 112, and the light-transmitting panel 40 can be removed from the mounting slot 11 to complete the replacement.
[0022] The end of the light-transmitting panel 40 is provided with a disassembly push part 42. The disassembly push part 42 protrudes from one end edge of the light-transmitting panel 40 and extends outward, making it easy for the user to push with their fingers. The inner end of the disassembly push part 42 is provided with a partition strip 421. The partition strip 421 is provided along the inner end edge of the disassembly push part 42 and forms a partition with the panel retaining edge 41. It is used to abut against the outer edge of the mounting groove 11 after the light-transmitting panel 40 slides into the mounting groove 11, so as to play a limiting and positioning role.
[0023] The surface of the disassembly push part 42 is symmetrically recessed with disassembly recesses 422 on both sides. The disassembly recesses 422 are long arc-shaped grooves and are symmetrically arranged on both sides of the surface of the disassembly push part 42, which makes it easy for users to pinch and apply force with their fingers, and to push and pull the light-transmitting panel 40 along the mounting groove 11 for easy disassembly and assembly.
[0024] like Figures 6 to 8 As shown, the second embodiment of the light-transmitting panel 40 of the present invention is as follows:
[0025] The mounting slot 11 has a recessed panel slot 113 on its surface edge. The panel slot 113 has an annular groove structure for accommodating the light-transmitting panel 40. The size of the panel slot 113 is larger than the size of the light-transmitting panel 40. The inner sidewall of the panel slot 113 is uniformly provided with a plurality of slot protrusions 114. The outer sidewall of the light-transmitting panel 40 is uniformly provided with a plurality of protrusion slots 43 that are adapted to the slot protrusions 114. The cross-sectional shape of the protrusion slots 43 is similar to that of the slot protrusions 114. The cross-sectional shape of the panel 4 is compatible. During installation, the light-transmitting panel 40 is aligned with the panel slot 113 and pressed down, so that the slot protrusion 114 is inserted into the protrusion slot 43. Through the engagement between the slot protrusion 114 and the protrusion slot 43, the light-transmitting panel 40 is detachably fixed in the panel slot 113. During disassembly, the light-transmitting panel 40 is pulled outward to disengage the slot protrusion 114 from the protrusion slot 43, and the light-transmitting panel 40 can be removed, achieving quick disassembly and replacement.
[0026] The upper end of the panel slot 113 has symmetrically recessed lifting recesses 115 on both sides for the user's fingers to insert. The upper end of the light-transmitting panel 40 has symmetrically recessed panel lifting portions 44 on both sides. The lifting recesses 115 and the panel lifting portions 44 are vertically corresponding. When the light-transmitting panel 40 is inserted into the panel slot 113, the panel lifting portion 44 is located below the lifting recesses 115. The user's fingers can be inserted from the lifting recesses 115 and pressed against the panel lifting portion 44 to pull outward, thereby removing the light-transmitting panel 40 from the panel slot 113. The disassembly is convenient and quick.
[0027] like Figures 9 to 11 As shown, the third embodiment of the light-transmitting panel 40 of the present invention is as follows:
[0028] The mounting slot 11 has a recessed panel groove 116 on its surface edge. The panel groove 116 is a rectangular groove structure used to accommodate the light-transmitting panel 40. The size of the light-transmitting panel 40 is smaller than the size of the panel groove 116, so that the light-transmitting panel 40 can be completely embedded in the panel groove 116. The inner surface of the panel groove 116 is evenly provided with a plurality of screw through posts 117. The surface edge of the light-transmitting panel 40 is evenly provided with a plurality of screw through holes 45. The positions of the screw through holes 45 correspond one-to-one with the positions of the screw through posts 117. The light-transmitting panel 40 is embedded in the panel groove 116, and the plurality of screw through posts 117 are correspondingly inserted into the plurality of screw through holes 45. The light-transmitting panel 40 is detachably locked and fixed in the panel groove 116 by screws passing through the screw through holes 45 and threadedly connected to the screw through posts 117. When disassembling, the light-transmitting panel 40 can be removed by unscrewing the screws.
[0029] The inner side of the panel groove 116 is provided with a positioning docking groove 118, which has an annular groove structure. The inner surface of the light-transmitting panel 40 is provided with a positioning protrusion 46, the shape of which is adapted to the cross-sectional shape of the positioning docking groove 118. The positioning protrusion 46 is positioned and embedded in the positioning docking groove 118, so that the light-transmitting panel 40 automatically aligns when it is inserted into the panel groove 116, ensuring accurate alignment between the screw through hole 45 and the screw through post 117, and facilitating screw insertion and installation.
[0030] like Figures 1 to 11 As shown, in specific implementation, the light-transmitting panel 40 is made of transparent material. Users can replace it with different colors (such as white, warm colors, and colored), different light transmittance (such as transparent, frosted, and semi-transparent), or different materials (such as glass, acrylic, and PC plastic) according to their needs, so as to achieve different light output and decorative effects and meet the lighting needs of various usage scenarios.
[0031] In a specific implementation, the inner edge of the first mounting housing 10 is recessed with a positioning groove 12, which extends circumferentially along the inner edge of the first mounting housing 10. The inner edge of the second mounting housing 20 is protruded with a positioning protrusion 21, which protrudes circumferentially along the inner edge of the second mounting housing 20. The positioning protrusion 21 is correspondingly embedded in the positioning groove 12 to achieve positioning and engagement between the first mounting housing 10 and the second mounting housing 20.
[0032] In practice, both the first mounting housing 10 and the second mounting housing 20 are injection molded as a single unit, which has good integrity, high structural strength, and stable dimensional accuracy, making it easy to mass-produce and manufacture. At the same time, it can effectively reduce production costs and ensure product consistency.
[0033] When using the product, users should first select the appropriate type of light-transmitting panel 40 based on their actual lighting needs. If a bright and clear lighting effect is required, a transparent or high-transmittance panel can be selected; if soft and non-glaring light is required, a frosted or semi-transparent panel can be selected; if a specific atmosphere needs to be created, panels of different colors can be selected for matching.
[0034] After selecting the panel, the user installs the light-transmitting panel 40 into the mounting slot 11 of the first mounting housing 10 according to the specific installation embodiment adopted. In the first sliding installation embodiment, the panel retaining edge 41 of the light-transmitting panel 40 is aligned with the sliding opening 112, and the light-transmitting panel 40 is pushed horizontally along the plane of the mounting slot 11, causing the panel retaining edge 41 to slide into the sliding groove 111 and slide to a predetermined position. The partition protrusion 421 abuts against the outer edge of the mounting slot 11 for positioning. The disassembly push part 42 and disassembly recess 722 facilitate the user's push-pull operation. In the second snap-fit installation embodiment, the light-transmitting panel 40 is aligned with the panel retaining groove 113 and pressed downwards, causing the groove protrusion 114 to correspondingly engage with the protrusion groove 43, fixing the light-transmitting panel 40 in the panel retaining groove 113. The lifting recess 115 and the panel lifting part 44 cooperate to facilitate the user's outward lifting during disassembly. When using the third screw installation embodiment, the light-transmitting panel 40 is embedded in the panel groove 116, so that the positioning protrusion 46 is embedded in the positioning docking groove 118 to achieve automatic alignment, the screw through hole 45 and the screw through post 117 are aligned one by one, and then the screw is inserted to lock and fix it.
[0035] After the light-transmitting panel 40 is installed, the power is turned on, and the LED beads 31 on the light source panel 30 emit light, which passes through the light-transmitting panel 40 and shines outward evenly. When the user needs to replace the panel with a different effect, the original panel is removed according to the corresponding installation method, and then the new panel is installed according to the above steps. The whole replacement process is simple and quick.
Claims
1. A battery-powered universal lamp, characterized in that: It includes a first mounting housing (10) and a second mounting housing (20), the first mounting housing (10) and the second mounting housing (20) are connected to each other, a light source plate (30) is installed between the first mounting housing (10) and the second mounting housing (20), a plurality of LED beads (31) are evenly arranged on the light source plate (30), the surface of the first mounting housing (10) is provided with a mounting groove (11), a light-transmitting panel (40) is detachably installed in the mounting groove (11), the light-transmitting panel (40) is correspondingly arranged with the light source plate (30), and the light-transmitting panel (40) is a detachable and replaceable structure.
2. The universal battery lamp according to claim 1, characterized in that: The inner edge of the mounting slot (11) is recessed with a sliding groove (111). The sliding groove (111) extends circumferentially along the inner edge of the mounting slot (11). The front end of the sliding groove (111) is provided with a sliding opening (112). The sliding opening (112) is located on one side of the edge of the mounting slot (11). The light-transmitting panel (40) is a square panel. The outer edge of the light-transmitting panel (40) is provided with a panel retaining edge (41) that is adapted to the sliding groove (111). The light-transmitting panel (40) slides into the mounting slot (11) through the sliding opening (112). The panel retaining edge (41) is slidably engaged in the sliding groove (111).
3. A battery-powered universal lamp according to claim 2, characterized in that: The end of the light-transmitting panel (40) is provided with a disassembly push part (42), which protrudes from one end edge of the light-transmitting panel (40) and extends outward. The inner end of the disassembly push part (42) is provided with a partition strip (421).
4. A battery-powered universal lamp according to claim 3, characterized in that: The surface of the disassembly push part (42) is symmetrically recessed on both sides, and the disassembly recess (422) is a long strip-shaped arc groove structure.
5. A battery-powered universal lamp according to claim 1, characterized in that: The mounting slot (11) has a recessed panel slot (113) on its surface edge. The panel slot (113) has an annular groove structure. The size of the panel slot (113) is larger than the size of the light-transmitting panel (40). The inner sidewall of the panel slot (113) is uniformly provided with a plurality of slot protrusions (114). The outer sidewall of the light-transmitting panel (40) is uniformly provided with a plurality of protrusion slots (43) that are adapted to the slot protrusions (114). The light-transmitting panel (40) can be detachably installed in the panel slot (113) by the engagement of the slot protrusions (114) and the protrusion slots (43).
6. A battery-powered universal lamp according to claim 5, characterized in that: The upper sides of the panel slot (113) are symmetrically recessed with lifting recesses (115), and the upper sides of the light-transmitting panel (40) are symmetrically recessed with panel lifting parts (44). The lifting recesses (115) and the panel lifting parts (44) are arranged vertically in correspondence.
7. A battery-powered universal lamp according to claim 1, characterized in that: The mounting slot (11) has a recessed panel groove (116) on its surface edge. The panel groove (116) has a rectangular groove structure. The size of the light-transmitting panel (40) is smaller than the size of the panel groove (116). The inner surface of the panel groove (116) is uniformly provided with a plurality of screw through posts (117). The surface edge of the light-transmitting panel (40) is uniformly provided with a plurality of screw through holes (45). The position of the screw through holes (45) corresponds one-to-one with the position of the screw through posts (117). The light-transmitting panel (40) is embedded in the panel groove (116). The screw through posts (117) are correspondingly inserted into the screw through holes (45) and are threadedly connected and fixed by screws passing through the screw through holes (45) and screw through posts (117) in sequence.
8. A battery-powered universal lamp according to claim 7, characterized in that: The inner side of the panel groove (116) is provided with a positioning docking groove (118), which is an annular groove structure. The inner surface of the light-transmitting panel (40) is provided with a positioning protrusion (46), the shape of which is adapted to the cross-sectional shape of the positioning docking groove (118), and the positioning protrusion (46) is positioned and embedded in the positioning docking groove (118).
9. A battery-powered universal lamp according to claim 1, characterized in that: The first mounting housing (10) has a positioning groove (12) recessed on its inner edge. The positioning groove (12) extends circumferentially along the inner edge of the first mounting housing (10). The second mounting housing (20) has a positioning protrusion (21) protruding on its inner edge. The positioning protrusion (21) protrudes circumferentially along the inner edge of the second mounting housing (20). The positioning protrusion (21) is correspondingly embedded in the positioning groove (12).
10. A battery-powered universal lamp according to claim 1, characterized in that: The light-transmitting panel (40) is made of a transparent material.