Solar floating lamp
Patent Information
- Application Number
- CN202522335921.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-11-04
- Publication Date
- 2026-09-08
- Estimated Expiration
- 2035-11-04
AI Technical Summary
该太阳能浮水灯包括可拆卸式固定连接的透明顶盖和透明底座,透明顶盖边缘底部设置有圆环槽,圆环槽内设置有密封胶圈,透明底座边缘设置有竖直向上的圆筒壁,圆筒壁的顶部穿入圆环槽并压接密封胶圈,以在圆筒壁内形成密封空间,密封空间内设置有太阳能发光组件;本太阳能浮水灯的上下壳体密封位置设置在圆筒壁的顶部,并通过密封胶圈防水密封,这样太阳能浮水灯浮在水上时,上下壳体顶部的密封位置保持露出水面状态,不会沉水而影响密封效果。
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Figure CN224730630U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of waterproof lighting fixtures, and more particularly to a solar-powered floating light. Background Technology
[0002] Most existing solar-powered floating lights have a split-shell structure with the upper and lower shells open, and the sealing point is in the middle of the whole. A sealing ring is placed in the middle half to seal against water, and the upper and lower shells are then fixed in place. When the solar-powered floating light floats on the water, the middle part where the sealing ring is located is prone to sinking underwater. The longer it is submerged, the more the sealing effect is affected. Utility Model Content
[0003] To overcome the above problems, this utility model provides a solar-powered floating light. The technical solution adopted by this utility model to solve its technical problems is as follows: A solar-powered floating light includes a detachable and fixedly connected transparent top cover and a transparent base. The bottom edge of the transparent top cover has a circular groove with a sealing ring inside. The edge of the transparent base has a vertically upward cylindrical wall. The top of the cylindrical wall passes through the circular groove and is pressed against the sealing ring to form a sealed space inside the cylindrical wall. A solar-powered light-emitting component is installed inside the sealed space.
[0004] Furthermore, the transparent top cover extends outward and downward along the edge of the transparent curved cover, and the transparent base extends outward and upward along the edge to form a transparent curved seat, with the edges of the transparent curved cover and the transparent curved seat joined together.
[0005] Furthermore, a waterproof rubber ring is provided between the edges of the transparent curved cover and the transparent curved seat.
[0006] Furthermore, the solar-powered light-emitting component includes a transparent bracket, a solar panel on top of the transparent bracket, a circuit board and a battery inside the transparent bracket, and a light-emitting panel at the bottom of the transparent bracket. The solar panel is electrically connected to the circuit board and the battery, and the light-emitting panel is electrically connected to the circuit board and the battery.
[0007] Furthermore, light-emitting elements are installed on both the top and bottom surfaces of the light-emitting panel.
[0008] Furthermore, a pointed cone-shaped insert is coaxially mounted on the bottom of the transparent base, which can be vertically inserted into the ground.
[0009] Furthermore, the bottom of the transparent base is equipped with a connecting lug, which is connected to the anchoring rope.
[0010] Furthermore, the transparent base has an installation component at the bottom, which allows the solar-powered floating light to be detachably fixed to the wall.
[0011] The beneficial effects of this utility model are as follows: This solar-powered floating light includes a detachable, fixedly connected transparent top cover and a transparent base. The bottom edge of the transparent top cover has a circular groove containing a sealing ring. The transparent base has a vertically upward-facing cylindrical wall along its edge. The top of the cylindrical wall passes through the circular groove and is pressed against the sealing ring to form a sealed space within the cylindrical wall. A solar-powered light-emitting component is housed within this sealed space. The sealing positions of the upper and lower housings of this solar-powered floating light are located at the top of the cylindrical wall and are waterproofed using sealing rings. This ensures that when the solar-powered floating light floats on water, the sealing positions at the top of the upper and lower housings remain above the water surface, preventing sinking and ensuring a proper seal. Attached Figure Description
[0012] The present invention will be further described below with reference to the accompanying drawings and specific embodiments, wherein: Figure 1 This is an exploded view of a solar-powered floating light; Figure 2 These are exploded cross-sectional views and enlarged partial views of a solar-powered floating light. Figure 3 This is an exploded view of a solar panel. Figure 4 This is an exploded view of an embodiment of a solar-powered floating light installation. Figure 5 This is an exploded view of the second embodiment of the solar-powered floating light installation. Figure 6 This is an exploded view of the third embodiment of the solar-powered floating light installation.
[0013] Figure number marking: 100. Transparent top cover; 101. Circular groove; 102. Sealing ring; 103. Transparent arc cover; 200. Transparent base; 201. Cylindrical wall; 202. Transparent curved seat; 203. Conical insert; 204. Connecting lug; 205. Mounting components; 300. Solar-powered light-emitting component; 301. Transparent bracket; 302. Solar panel; 303. Battery; 304. Light panel. Detailed Implementation
[0014] To better understand the purpose, structure, and function of this utility model, the following detailed description of a specific embodiment of the "Solar Floating Light" of this utility model is provided in conjunction with the accompanying drawings.
[0015] See Figure 1 and Figure 2In this embodiment, the solar-powered floating light includes a detachably fixed transparent top cover 100 and a transparent base 200. The bottom edge of the transparent top cover 100 has a downward-opening annular groove 101, within which a sealing ring 102 is installed. The edge of the transparent base 200 has a vertically upward-facing cylindrical wall 201. The top of the cylindrical wall 201 passes through the annular groove 101 and presses against the sealing ring 102, forming a sealed space within the cylindrical wall 201. A solar-powered light-emitting component 300 is installed within this sealed space. When in use, the solar-powered floating light floats on the water surface, and its wading depth only reaches the belly of the annular groove 101, not submerging the top of the cylindrical wall 201. This means the sealed position of the transparent top cover 100 and the cylindrical wall 201 will not be submerged. Therefore, even after prolonged use, the solar-powered floating light will not be at risk of water ingress, improving its sealing performance.
[0016] See further Figure 2 In this embodiment, the transparent top cover 100 extends outward and downward along the edge of the transparent arc cover 103, and the transparent base 200 extends outward and upward along the edge to form a transparent arc seat 202. When the top of the cylindrical wall 201 and the annular groove 101 of the transparent top cover 100 are sealed together, the edges of the transparent arc cover 103 and the transparent arc seat 202 are also connected, forming a sealing ring around the cylindrical wall 201. This improves the floating effect of the solar floating light and further enhances its sealing performance.
[0017] More specifically, in this embodiment, a waterproof rubber ring is provided between the edges of the transparent arc cover 103 and the transparent arc seat 202 to improve the sealing performance of the edge connection between the transparent arc cover 103 and the transparent arc seat 202.
[0018] See further Figure 3 In this embodiment, the solar-powered light-emitting component 300 includes a transparent bracket 301, a solar panel 302 disposed on the top of the transparent bracket 301, a circuit board and a battery 303 disposed inside the transparent bracket 301, and a light-emitting panel 304 disposed at the bottom of the transparent bracket 301. The solar panel 302 is electrically connected to the circuit board and the battery 303, and the light-emitting panel 304 is electrically connected to the circuit board and the battery 303. The battery 303 is a rechargeable battery that stores the electrical energy converted from the solar panel 302 and supplies it to the light-emitting panel 304 to emit light. Furthermore, in this embodiment, light-emitting elements are disposed on both the top and bottom surfaces of the light-emitting panel 304, thus enabling double-sided light emission and improving the overall brightness of the solar-powered floating light.
[0019] See further Figure 4 In some embodiments, a pointed cone-shaped insertion rod 203 is coaxially provided at the bottom of the transparent base 200. The pointed cone-shaped insertion rod 203 can be vertically inserted into the ground, which makes it convenient for the solar floating light to be directly inserted into the riverbed or other ground, increasing its application range and facilitating ground insertion.
[0020] See further Figure 5 In some embodiments, the bottom of the transparent base 200 is provided with a connecting lug 204, which is connected to the anchoring rope and anchored to the riverbed, so that the solar floating light floats in a fixed area.
[0021] See further Figure 6 In some embodiments, the transparent base 200 has an installation component 205 at its bottom, and the solar floating light is detachably fixed to the wall by the installation component 205, so that the floating light can be installed close to the wall, increasing its application range.
[0022] It is understood that this utility model has been described through some embodiments, and those skilled in the art will recognize that various changes or equivalent substitutions can be made to these features and embodiments without departing from the spirit and scope of this utility model. Furthermore, under the teachings of this utility model, these features and embodiments can be modified to adapt to specific situations and materials without departing from the spirit and scope of this utility model. Therefore, this utility model is not limited to the specific embodiments disclosed herein, and all embodiments falling within the scope of the claims of this application are within the protection scope of this utility model.
[0023] In the description of this utility model, it should be noted that the terms "center," "upper," "lower," "left," "right," "vertical," "horizontal," "inner," and "outer," etc., indicating the orientation or positional relationship, are based on the orientation or positional relationship shown in the accompanying drawings and are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation on this utility model. In the description of this application, "multiple" and "several" are understood as "at least two." "And / or" describes the relationship between related objects, indicating that there can be three relationships. For example, A and / or B can indicate three situations: A exists alone, A and B exist simultaneously, and B exists alone. A and B are connected, which can indicate two situations: A and B are directly connected and A and B are connected through C. In addition, the terms "first," "second," and "third" are used for descriptive purposes only and should not be construed as indicating or implying relative importance.
Claims
1. A solar-powered floating light, comprising a detachably fixedly connected transparent top cover (100) and a transparent base (200), characterized in that, The bottom edge of the transparent top cover (100) is provided with an annular groove (101), and a sealing ring (102) is provided inside the annular groove (101). The edge of the transparent base (200) is provided with a vertically upward cylindrical wall (201). The top of the cylindrical wall (201) passes through the annular groove (101) and presses against the sealing ring (102) to form a sealed space inside the cylindrical wall (201). A solar light-emitting component (300) is provided inside the sealed space.
2. A solar-powered floating light according to claim 1, characterized in that, The transparent top cover (100) extends outward and downward along the edge of the transparent arc cover (103), and the transparent base (200) extends outward and upward along the edge to form a transparent arc seat (202). The edges of the transparent arc cover (103) and the transparent arc seat (202) are joined together.
3. A solar-powered floating light according to claim 2, characterized in that, A waterproof rubber ring is provided between the edges of the transparent arc cover (103) and the transparent arc seat (202).
4. A solar-powered floating light according to claim 1, characterized in that, The solar light-emitting component (300) includes a transparent bracket (301), a solar panel (302) is disposed on the top of the transparent bracket (301), a circuit board and a battery (303) are disposed inside the transparent bracket (301), and a light-emitting panel (304) is disposed at the bottom of the transparent bracket (301). The solar panel (302) is electrically connected to the circuit board and the battery (303), and the light-emitting panel (304) is electrically connected to the circuit board and the battery (303).
5. A solar-powered floating light according to claim 4, characterized in that, The light-emitting lamp board (304) is provided with light-emitting elements on both the upper and lower surfaces.
6. A solar-powered floating light according to any one of claims 1-5, characterized in that, The bottom of the transparent base (200) is coaxially provided with a pointed cone rod (203), which can be vertically inserted into the ground.
7. A solar-powered floating light according to any one of claims 1-5, characterized in that, The bottom of the transparent base (200) is provided with a connecting lug (204), which is connected to the anchoring rope.
8. A solar-powered floating light according to any one of claims 1-5, characterized in that, The transparent base (200) has an installation component (205) at its bottom, and the solar floating light is detachably fixed to the wall via the installation component (205).