Humidifying and illuminating lamp with inclined surface water tank structure
By adopting a beveled water tank structure and layered water tank design in humidified lighting fixtures, the problems of high center of gravity, uneven water flow and short humidification time of existing humidified lighting fixtures are solved, and higher stability and humidification efficiency are achieved.
Patent Information
- Application Number
- CN202520707523.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-15
- Publication Date
- 2025-05-16
- Estimated Expiration
- 2035-04-15
AI Technical Summary
The existing humidified lighting fixtures have problems such as high center of gravity, easy to pour, uneven water flow distribution and short humidification time in structural design.
Humidified lighting fixtures with inclined water tank structure are adopted. Through layered water tank design and inclined structure, the center of gravity of the lamp is reduced, the water flow efficiency is improved, and the water storage capacity and auxiliary heat dissipation are increased through the water storage area design.
It effectively reduces the center of gravity of the lamp, enhances stability, improves humidification efficiency and continuous humidification time, and improves space utilization and safety through reasonable layout.
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Figure CN222881136U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of lighting fixtures, in particular to a humidifying lighting fixture with an inclined water tank structure. Background Art
[0002] In daily life, people's functional requirements for lamps are becoming more and more diverse. Traditional lamps usually only have lighting functions. However, in some dry environments, people hope that lamps can also have humidification functions to improve the humidity of the local environment. Although there are some lamps with both humidification and lighting functions on the market, there are still many deficiencies in structural design. For example, the center of gravity of the traditional top water tank design is too high, which is easy to tip over, the water flow of the straight-cylinder water tank is unevenly distributed, and the continuous humidification time is short. Therefore, it is necessary to design a humidifying lighting lamp with a sloped water tank structure that has a more reasonable structure and more complete functions.
[0003] In a desk lamp type humidifier disclosed in China Publication No. CN113375252A, the water tank is installed above the base, the center of gravity is too high, and there is an obvious risk of tipping during use. At the same time, the design does not adopt a layered diversion structure, the humidification amount fluctuates greatly, and the efficiency is low. Therefore, it is of great practical significance to develop a humidifying lighting fixture with a sloped water tank structure that has a more reasonable structure and more complete functions. Utility Model Content
[0004] The utility model overcomes the shortcomings of the above-mentioned technology and adopts the following technical solutions:
[0005] A humidifying lighting fixture with an inclined water tank structure comprises a lamp body 1, wherein the lamp body 1 comprises:
[0006] The lamp body 11 is a cylindrical structure, which is arranged below the lamp body 1, and a light-emitting component 111 is installed inside it. As the light-emitting part of the lamp, the cylindrical structure design of the lamp body not only conforms to the shape of common lamps, is easy to install and use, but also provides stable support and protection for the internal light-emitting component.
[0007] The layered water tank structure 12 is arranged above the lamp body 11 .
[0008] The cover 13 covers the stratified water tank structure 12, and the top surface is provided with a control module 131. The cover 13 plays the role of protecting the stratified water tank structure and providing a location for installing the control module. The control module 131 facilitates the user to operate and control the lighting and humidification functions of the lamp.
[0009] The layered water tank structure 12 includes an upper cavity 121 and a lower cavity 122. The center of the bottom of the upper cavity 121 is provided with a first opening 123 and a partition 124. The upper cavity 121 is divided into a first cavity 125 and a second cavity 126 by the partition 124. The lower cavity 122 is inserted into the inner cavity of the lamp body 11. By designing the water tank as a layered structure and using the partition 124 to separate the upper cavity 121, the water tank has different functional partitions. At the same time, the design of inserting the lower cavity 122 into the inner cavity of the lamp body effectively saves space and makes the overall structure of the lamp more compact.
[0010] A slope structure 127 is provided around the edge of the first opening 123 at the bottom of the first cavity 125; this slope design has many advantages. First, it is conducive to lowering the center of gravity of the lamp. When the lamp is in use, the lower the center of gravity, the higher its stability. The slope structure 127 causes the water in the first cavity 125 to converge toward the first opening 123 at the bottom center under the action of gravity, thereby effectively lowering the center of gravity of the lamp as a whole and enhancing the stability of the lamp when placed. Second, the slope structure 127 allows water to flow more smoothly through the first opening into the lower cavity 122, significantly improving the water flow efficiency, thereby improving the humidification efficiency.
[0011] Preferably, the inclination angle of the inclined surface structure 127 is 10°-30°.
[0012] Preferably, the first cavity 125 is connected to the lower cavity 122 through the first opening 123 to form a water storage area, and the second cavity 126 is equipped with a battery 128. This design not only greatly increases the water storage capacity of the lamp, but also realizes the rational use of space. On the one hand, a larger water storage capacity means that the lamp can be humidified for a longer time, reducing the inconvenience caused by frequent water addition. On the other hand, this structural layout makes full use of the internal space of the lamp and avoids the waste of space. In addition, the water storage area also has a positive effect on the heat dissipation of the lamp. Due to the large specific heat capacity of water, when the lamp generates heat during operation, the water in the water storage area can absorb part of the heat and take away the heat through heat transfer and water evaporation, thereby assisting the heat dissipation of the lamp and effectively extending the service life of the internal components of the lamp. The second cavity 126 is equipped with a battery 128, which realizes the rational layout of different functional components in the water tank structure, avoids the contact between water and the battery 128, and greatly improves the safety and stability of the lamp.
[0013] Preferably, the partition 124 is in a bow-shaped structure with a protruding middle part, including a curved part 124a protruding in the middle and straight parts 124b on both sides, wherein the curved part 124a is arranged at the edge of the first opening 123, and the straight parts 124b on both sides are offset toward the second cavity 126. This unique bow-shaped partition 124 structural design is of great significance. On the one hand, it helps to guide the water in the first cavity to flow toward the first opening 123, making the flow of water more directional and regular. On the other hand, by the straight part 124b offset toward the second cavity 126, while separating the cavities, a reasonable space is reserved for the second cavity 126 to adapt to the installation of components such as batteries, thereby further optimizing the internal space layout of the water tank. Moreover, since the partition is offset toward the second cavity 126, the spatial distribution of the water storage area is more concentrated, and while increasing the water storage space, the center of gravity is further urged to move closer to the inside of the lamp, thereby improving the overall stability of the lamp.
[0014] Preferably, a wire channel 129 is provided at the bottom of the second cavity 126 near the curved portion 124a, for the connection wires of the battery 128 and the light-emitting component 111 to pass through, thereby ensuring smooth circuit connection. Heat dissipation holes 120 are provided at the bottom of the second cavity 126 near the straight portions 124b on both sides. The heat generated by the battery during operation can be dissipated in time, effectively extending the service life of the battery, and further improving the overall stability and reliability of the lamp.
[0015] Preferably, a mounting groove 124c is provided on the inner side of the zigzag portion 124a, and a magnetic connector 124d connected to the battery 128 is provided in the mounting groove 124c. The provision of the magnetic connector 124d not only facilitates the connection between the battery 128 and other components, but also ensures the stability of the connection by being installed in the mounting groove 124c, and does not affect the overall layout of the water tank structure and the normal operation of other components.
[0016] Preferably, a first cover 201 and a second cover 202 are respectively disposed above the first cavity 125 and the second cavity 126, the first cover 201 is provided with a second opening 203 corresponding to the first opening 123, and a ring 204 with a diameter larger than the opening diameter is disposed on the second opening 203; a waterproof seal ring 205 is disposed between the second cavity 126 and the second cover 202. The arrangement of the cover facilitates maintenance and cleaning of the cavity interior, and on the other hand, the design of the second opening 203 and the ring 204 on the first cover 201, and the waterproof seal ring 205 between the second cover 202 and the second cavity 126 ensure the sealing of the water tank structure, effectively prevent water leakage, and effectively improve the safety of the lamp.
[0017] Preferably, a sleeve 200 for fixing a water-absorbing cotton swab is provided in the second opening 203, and a hollow circular frame 206 is connected to the outer side of the top of the sleeve 200 through a plurality of spokes extending outward, and the diameter of the circular frame 206 is larger than the diameter of the second opening 203 and smaller than the diameter of the ring 204, and the sleeve 200 is clamped on the second opening 203 through the circular frame 206 and suspended in the lower cavity 122. The design of the water-absorbing cotton swab sleeve and related structures facilitates the installation and fixation of the water-absorbing cotton swab, and the water-absorbing cotton swab can absorb water from the water storage area through the sleeve 200 to achieve the humidification function, and the clamping structure ensures the firmness of the installation of the sleeve 200.
[0018] Preferably, the first cover 201 and the second cover 202 are located in the same plane, a magnetic structure 207 is provided at the edge of the cover, and a magnetic member 208 is provided at a corresponding position at the bottom of the cover body 13, and the magnetic structure 207 and the magnetic member 208 are used to fix the cover. The use of the magnetic structure 207 for fixation not only makes the connection operation between the cover and the cover body more convenient and efficient, but also makes the separation process easier when the cover needs to be opened for maintenance or watering, and at the same time ensures the firmness and reliability of the connection.
[0019] Compared with the prior art, the beneficial effects of the utility model are:
[0020] 1. Structural optimization: Through the unique layered water tank structure design and the reasonable layout of various components, the overall structure of the lamp is compact and the space utilization is reasonable, which not only meets the needs of humidification and lighting functions, but also improves the stability and reliability of the lamp.
[0021] 2. Lower the center of gravity and assist heat dissipation: The inclined design of the first cavity lowers the center of gravity of the lamp, making the lamp more stable; the water storage area formed by the connection between the first cavity and the lower cavity not only increases the water storage capacity and makes rational use of space, but also assists the heat dissipation of the lamp and prolongs the service life of the internal components of the lamp.
[0022] 3. Optimize water storage and center of gravity distribution: The bow-shaped partition is offset toward the second cavity, which increases the water storage space and pushes the center of gravity closer to the inside of the lamp, thus improving the overall stability of the lamp.
[0023] 4. Improve humidification efficiency: The inclined structure at the bottom of the first cavity enables water to flow more smoothly into the lower cavity, providing sufficient and stable water source for humidification, thereby improving humidification efficiency. BRIEF DESCRIPTION OF THE DRAWINGS
[0024] FIG1 is a schematic diagram of the overall explosion structure of the utility model;
[0025] Figure 2 is a schematic diagram of the structure of the new stratified water tank;
[0026] FIG3 is a schematic diagram of the exploded structure of the layered water tank structure and the upper cover of the utility model water tank structure; DETAILED DESCRIPTION
[0027] The following examples further illustrate the features of the present invention and other related features to facilitate understanding by those skilled in the art:
[0028] 1. Assembly process
[0029] First, the light emitting assembly 111 is installed inside the lamp body 11. The lamp body 11 is a cylindrical structure and can provide a stable installation space for the light emitting assembly.
[0030] Then, the lower cavity 122 is inserted into the inner cavity of the lamp body 11 to connect the layered water tank structure with the lamp body.
[0031] A battery 128 is installed in the second cavity 126 , and the wires of the battery are connected to the light-emitting assembly 111 through the wire channel 129 .
[0032] The magnetic connector 124 d is installed in the installation groove 124 c of the bent portion 124 a and connected to the battery 128 .
[0033] The first cover 201 and the second cover 202 are respectively covered on the first cavity 125 and the second cavity 126. The second opening 203 on the first cover 201 corresponds to the first opening 123. The absorbent cotton swab sleeve 200 is installed in the second opening 203 and fixed by a circular frame 206. A waterproof sealing ring 205 is installed between the second cavity 126 and the second cover 202.
[0034] The cover body 13 is covered on the layered water tank structure 12 so that the magnetic member 208 at the bottom of the cover body 13 is matched and fixed with the magnetic attraction structure 207 at the edge of the cover.
[0035] (II) Usage process
[0036] Lighting function: The lighting function is turned on by the control module 131, and the light-emitting component 111 is powered on to emit light, providing lighting for the surrounding environment.
[0037] Humidification function: water is added to the first cavity 125, and the water flows into the lower cavity 122 through the first opening 123 under the guidance of the inclined structure 127 to form a water storage area. The absorbent cotton swab is inserted into the absorbent cotton swab sleeve 200, and the lower end is immersed in the water storage area. The water rises through the absorbent cotton swab, and the water evaporates to achieve the humidification function.
[0038] The above-described embodiments are merely descriptions of preferred implementations of the present invention, and are not intended to limit the concept and scope of the present invention. Without departing from the design concept of the present invention, various modifications and improvements made by ordinary personnel in the field to the technical solution of the present invention should fall within the protection scope of the present invention, and the technical contents of the present invention for protection have been fully recorded in the claims.
Claims
1. A humidifying lighting fixture with an inclined water tank structure, comprising a fixture body (1), characterized in that: The lamp body (1) comprises: A lamp body (11), arranged below the lamp body (1), and having a light-emitting component (111) installed therein; A layered water tank structure (12) is arranged above the lamp body (11); A cover body (13) covers the layered water tank structure (12), and a control module (131) is arranged on the top surface; The layered water tank structure (12) comprises an upper cavity (121) and a lower cavity (122); a first opening (123) and a partition (124) are provided at the center of the bottom of the upper cavity (121); the upper cavity (121) is divided into a first cavity (125) and a second cavity (126) by the partition (124); the lower cavity (122) is inserted into the inner cavity of the lamp body (11); a slope structure (127) is provided at the bottom of the first cavity (125) around the edge of the first opening (123); and a storage battery (128) is installed in the second cavity (126).
2. A humidifying lighting fixture with an inclined water tank structure according to claim 1, characterized in that: The inclination angle of the inclined surface structure (127) is 10°-30°.
3. The humidifying lighting fixture with an inclined water tank structure according to claim 1, characterized in that: The first cavity (125) is connected to the lower cavity (122) via the first opening (123) to form a water storage area.
4. The humidifying lighting fixture with an inclined water tank structure according to claim 1, characterized in that: The partition (124) is in the shape of a bow with a protruding middle portion, comprising a protruding curved portion (124a) in the middle and straight portions (124b) on both sides, the curved portion (124a) being arranged at the edge of the first opening (123), and the straight portions (124b) on both sides being offset towards the second cavity (126).
5. The humidifying lighting fixture with an inclined water tank structure according to claim 4, characterized in that: A wire channel (129) is provided at the bottom of the second cavity (126) near the curved portion (124a) for passing connecting wires of the storage battery (128) and the light-emitting component (111); and heat dissipation holes (120) are provided at the bottom of the second cavity (126) near the straight portions (124b) on both sides.
6. The humidifying lighting fixture with an inclined water tank structure according to claim 5, characterized in that: A mounting groove (124c) is provided on the inner side of the bending portion (124a), and a magnetic connector (124d) connected to the storage battery (128) is provided in the mounting groove (124c).
7. The humidifying lighting fixture with an inclined water tank structure according to claim 1, characterized in that: A first cover (201) and a second cover (202) are respectively arranged above the first cavity (125) and the second cavity (126); the first cover (201) is provided with a second opening (203) corresponding to the first opening (123); the second opening (203) is provided with a circular ring (204) having a diameter greater than the diameter of the opening; and a waterproof sealing ring (205) is provided between the second cavity (126) and the second cover (202).
8. The humidifying lighting fixture with an inclined water tank structure according to claim 7, characterized in that: A sleeve (200) for fixing a water-absorbing cotton swab is provided in the second opening (203); a hollow circular frame (206) is connected to the outer side of the top of the sleeve (200) via a plurality of spokes extending outwards; the diameter of the circular frame (206) is larger than the diameter of the second opening (203) and smaller than the diameter of the ring (204); the sleeve (200) is clamped on the second opening (203) via the circular frame (206) and is suspended in the lower cavity (122).
9. The humidifying lighting fixture with an inclined water tank structure according to claim 7, characterized in that: The first cover (201) and the second cover (202) are located in the same plane, and a magnetic attraction structure (207) is provided at the edge of the first cover (201). A magnetic component (208) is provided at a corresponding position on the bottom of the cover body (13), and the magnetic attraction structure (207) cooperates with the magnetic component (208) to fix the magnetic component (208).
Citation Information
Patent Citations
Table lamp type humidifier
CN113375252A