Water lamp structure with dynamic light and shadow pattern effect
Patent Information
- Application Number
- CN202522521847.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-11-27
- Publication Date
- 2026-09-18
- Estimated Expiration
- 2035-11-27
AI Technical Summary
[0003]而为了提高水灯工艺品的视觉效果,现有技术中水灯工艺品内部的装饰件可发出光亮,以体现独特的立体造型装饰件,具体是在立体造型装饰件的表面贴上若干灯珠,再在灯珠表面涂覆透光密封胶;然而,因灯珠常时间处于水灯工艺品内部的液体之中浸泡,久而久之会导致部分灯珠出现损坏情况,使得装饰件在发光时无法显现出完整的灯效,针对于上述问题,有必要对内部装饰件的防水问题做出改进
[0015] 1. By installing the light-emitting component inside the sealing frame, the light-emitting component can be sealed and waterproofed through the sealing frame, avoiding short circuits and thus improving the waterproof performance of the light-emitting component and ensuring its service life.
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Figure CN224771488U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of water lantern crafts, and in particular to a water lantern structure with dynamic light and shadow pattern effects. Background Technology
[0002] In daily life, decorative items commonly placed on tabletops are nothing more than picture frames, toy ornaments, etc., and these ornaments are merely static items that are aesthetically pleasing and for viewing. Therefore, there is a water lantern design with sequins, glitter, or decorations inside. It uses electricity to drive the sequins, glitter, or decorations inside to create a fluid visual effect. The visual effect varies depending on the object inside the water lantern, giving it expandable space and the ability to extend into a variety of visual changes, or to develop in a multifunctional and interesting way.
[0003] To enhance the visual appeal of water lantern crafts, existing technologies allow the internal decorative elements to emit light, showcasing unique three-dimensional designs. This is achieved by attaching numerous LED beads to the surface of the decorative elements and then coating the beads with a translucent sealant. However, because the LED beads are constantly immersed in the liquid inside the water lantern, some beads eventually become damaged, preventing the decorative elements from displaying a complete lighting effect. Therefore, it is necessary to improve the waterproofing of the internal decorative elements to address this issue. Utility Model Content
[0004] The purpose of this invention is to provide a water lantern structure with good waterproof performance, ensuring service life, and enhancing visual appeal by creating dynamic light and shadow patterns.
[0005] To solve the above technical problems, the present invention can be implemented using the following technical solutions: A water lantern structure with dynamic light and shadow pattern effects includes: a base containing an electronic control module; a water lantern body, which is a hollow, light-transmitting, sealed cavity fixedly mounted on the base, the sealed cavity being filled with a transparent liquid; a bridge structure disposed inside the water lantern body, on which a sealing frame is mounted, the sealing frame containing at least one light-emitting component, the wiring terminal of the light-emitting component being electrically connected to the electronic control module of the base through a wire path extending through the sealing frame and the bridge structure; the electronic control module is configured to drive the light-emitting component in various lighting modes to produce various light and shadow effects within the water lantern body.
[0006] In one embodiment, the bottom of the bridging structure is provided with a plurality of legs, the bridging structure is installed on the inner bottom of the water lamp body through the legs, and one of the legs has a wire through hole that passes through the bottom of the water lamp body.
[0007] In one embodiment, the bottom of the sealing frame is provided with a mounting base, the sealing frame is connected to the top of the bridging structure through the mounting base, and a sealant is applied at the connection between the mounting base and the top of the bridging structure. The wiring terminals of the light-emitting component can be led out from the mounting base and the wire through hole in sequence to be electrically connected to the electronic control module.
[0008] In one embodiment, the sealing frame includes a main frame, a first mirror body, and a second mirror body. The first mirror body and the second mirror body are respectively installed on the front and back of the main frame. The light-emitting component is an LED light strip, which is arranged along the inner wall of the main frame and located between the first mirror body and the second mirror body.
[0009] In one embodiment, the first mirror body is a two-way mirror, and the second mirror body is a one-way mirror.
[0010] In one embodiment, the sealing frame has a three-dimensional shape, and the light-emitting component is a string of LED beads. The light-emitting component is arranged according to the three-dimensional shape of the sealing frame and is arranged inside the sealing frame.
[0011] In one embodiment, the light-emitting component includes a carrier board and multiple sets of LED beads arranged on the carrier board and electrically connected to each other in series and parallel to form a light-emitting matrix with multiple controllable areas. The electronic control module is electrically connected to the carrier board and is configured to drive the multiple sets of LED beads according to a default program or sensing signal to produce various lighting modes and pattern changes.
[0012] In one embodiment, the water lantern structure with dynamic light and shadow pattern effects also includes a water-spraying module for agitating the transparent liquid inside the water lantern body to make it flow, and reflective suspended matter is suspended in the transparent liquid inside the water lantern body.
[0013] In one embodiment, the water-spraying module includes a drive motor and a water-spraying component. The water-spraying component is located inside the main body of the water lamp and below the bridging structure. The drive motor is installed in the base and is electrically connected to the electronic control module. A magnetic shaft that magnetically engages with the water-spraying component is provided at the output end of the drive motor.
[0014] In one embodiment, the water lamp body has a hollow body with an opening and a bottom cover that closes the opening, and the bridging structure is mounted on the bottom cover. Beneficial effects
[0015] 1. By installing the light-emitting component inside the sealing frame, the light-emitting component can be sealed and waterproofed through the sealing frame, avoiding short circuits and thus improving the waterproof performance of the light-emitting component and ensuring its service life.
[0016] 2. The light-emitting components are driven by the electronic control module to generate light, so that the light-emitting components can form an infinite tunnel light and shadow effect; or present a three-dimensional light and shadow effect according to the three-dimensional shape of the sealed frame; and through the control of the electronic control module, the light-emitting components can also form a variety of lighting modes, such as flashing, running light, and dynamic switching, thereby improving the visual experience for consumers. Attached Figure Description
[0017] Figure 1 This is a schematic diagram of the water lantern structure with dynamic light and shadow pattern effects according to this utility model. Figure 1 ; Figure 2 This is a schematic diagram of the bridge structure of the water lantern structure with dynamic light and shadow pattern effect of this utility model; Figure 3 This is a schematic diagram of the sealing frame of the water lantern structure with dynamic light and shadow pattern effect of this utility model. Figure 1 ; Figure 4 This is a schematic diagram of the sealing frame of the water lantern structure with dynamic light and shadow pattern effect of this utility model. Figure 2 ; Figure 5 This is a schematic diagram of the water lantern structure with dynamic light and shadow pattern effects according to this utility model. Figure 2 ; Figure 6 This is a schematic diagram of the water lantern structure with dynamic light and shadow pattern effects according to this utility model. Figure 3 ; Figure 7 This is a schematic diagram of the water-spraying module of the water lantern structure with dynamic light and shadow pattern effects of this utility model.
[0018] As shown in the attached diagram: 100. Base; 110. Electronic control module; 200. Main body of the water lantern; 210. Reflective suspended object; 220. Body; 230. Bottom cover; 300. Bridge structure; 310. Support leg; 320. Conductor through hole; 400, Sealing frame; 410, Mounting base; 420, Main frame; 430, First mirror body; 440, Second mirror body; 500. Light-emitting component; 510. Carrier board; 520. LED beads; 600, Water spraying module; 610, Drive motor; 620, Water spraying component; 630, Magnetic shaft. Detailed Implementation
[0019] To make the above-mentioned objects, features, and advantages of this utility model more apparent and understandable, the specific embodiments of this utility model will be described in detail below with reference to the accompanying drawings. Many specific details are set forth in the following description to provide a full understanding of this utility model. However, this utility model can be implemented in many other ways different from those described herein, and those skilled in the art can make similar modifications without departing from the spirit of this utility model. Therefore, this utility model is not limited to the specific embodiments disclosed below.
[0020] It should be noted that when an element is said to be "fixed to" another element, it can be directly on the other element or there may be an intervening element. When an element is said to be "connected to" another element, it can be directly connected to the other element or there may be an intervening element. Conversely, when an element is said to be "directly on" another element, there is no intervening element. The terms "vertical," "horizontal," "left," "right," and similar expressions used in this document are for illustrative purposes only.
[0021] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this invention pertains. The terminology used herein is for the purpose of describing particular embodiments only and is not intended to be limiting of the invention. The term "and / or" as used herein includes any and all combinations of one or more of the associated listed items.
[0022] Please see Figures 1 to 7 The structure of the water lantern with dynamic light and shadow pattern effects includes: a base 100, in which an electronic control module 110 is provided; a water lantern body 200, which is a hollow, light-transmitting, sealed cavity and is fixedly installed on the base 100, the sealed cavity being filled with a transparent liquid; a bridge structure 300 disposed inside the water lantern body 200, and a sealing frame 400 installed on the bridge structure 300, the sealing frame 400 containing at least one light-emitting component 500, the wiring terminal of the light-emitting component 500 being electrically connected to the electronic control module 110 of the base 100 through a wire path extending through the sealing frame 400 and the bridge structure 300; the electronic control module 110 is configured to drive the light-emitting component 500 in various lighting modes to produce various light and shadow effects within the water lantern body 200.
[0023] Specifically, in this embodiment, the electronic control unit 110 inside the base 100 is existing technology, including a microcontroller (MCU), a power module, and a drive circuit, and is connected to an external power source or battery. The electronic control unit 110 can generate different output signals according to a default program to control the light-emitting component 500 to produce different light and shadow effects. The main body 200 of the water lantern is a transparent sphere, cylinder, or irregular shape, made of translucent resin, acrylic, or glass, with a sealed inner cavity filled with a transparent liquid. A bridging structure 300 is set inside the main body 200 of the water lantern, and a sealing frame 400 is installed on the bridging structure 300. The light-emitting component 500 is installed inside the sealing frame 400, which can be assembled from two shells. The light-emitting component 500 is first clamped between two housings and then fixed by sealing, bonding, welding, or other methods. The housings are made of light-transmitting material. The wiring terminals of the light-emitting component 500 pass through the bottom of the sealing frame 400, and sealant can be applied to the exit point. Then, it passes through the bridge structure 300, from inside the water lamp body 200 to the base 100 to connect with the electronic control module 110. The sealing frame 400 seals the light-emitting component 500, preventing it from contacting the liquid inside the water lamp body 200. This avoids short circuits in the light-emitting component 500, thereby improving its waterproof effect and extending its service life, and ensuring the lighting effect of the light-emitting component 500 in conjunction with the sealing frame 400.
[0024] To achieve the assembly connection between the sealing frame 400 and the bridging structure 300, in this embodiment, a plurality of support legs 310 are provided at the bottom of the bridging structure 300. The bridging structure 300 is installed on the inner bottom of the water lamp body 200 via the support legs 310. Sealant can be applied to the mounting points of the support legs 310, and one of the support legs 310 also has a wire through hole 320 penetrating the bottom of the water lamp body 200. Simultaneously, a mounting base 410 is provided at the bottom of the sealing frame 400, allowing the sealing frame 400 to connect to the top of the bridging structure 300 via the mounting base 410. Sealant can also be applied to the connection point between the mounting base 410 and the top of the bridging structure 300, thereby achieving the assembly connection between the sealing frame 400 and the bridging structure 300 and ensuring proper connection between them. To achieve a seal and improve waterproofing, the wiring terminals of the light-emitting component 500 inside the sealing frame 400 can be led out sequentially from the mounting base 410 at the bottom of the sealing frame 400 and the wire through-hole 320 of the support leg 310, and connected to the electronic control module 110 inside the base 100 via wires. Alternatively, the wiring terminals can be led out directly from the mounting base 410 at the bottom of the sealing frame 400, and the wires can be passed through the wire through-hole 320 of the support leg 310, with both ends connected to the wiring terminals of the light-emitting component 500 and the electronic control module 110 inside the base 100, respectively. The specific configuration is not limited and can be set according to actual needs. Ultimately, through the sealing frame 400 and the wire through-hole 320, the light-emitting component 500 as a whole can be prevented from contacting the liquid inside the water lamp body 200, thereby ensuring the waterproof performance of the light-emitting component 500.
[0025] Please see Figure 1 and 3 In one embodiment, in order to improve the visual experience for consumers, the sealing frame 400 in this embodiment includes a main frame 420, a first mirror body 430 and a second mirror body 440. The first mirror body 430 and the second mirror body 440 are respectively sealed on the front and back of the main frame 420 to form a seal inside the main frame 420. The light-emitting component 500 is an LED light strip, which is arranged along the inner wall of the main frame 420 and located between the first mirror body 430 and the second mirror body 440. The first mirror body 430 is a double-sided mirror and the second mirror body 440 is a single-sided mirror. The main frame 420 can be of various shapes, such as a heart. The shapes of the first mirror 430 and the second mirror 440 are matched with the shape of the main frame 420. The specific shape is not limited. When the electronic control module 110 drives the LED light strip to emit light, the emitted light, through the cooperation between the first mirror 430 and the second mirror 440, forms a light and shadow depth effect of "infinite extension (tunnel)". Combined with the shape of the sealing frame 400, the water lantern structure can simultaneously have both shape effect and light effect function, thereby improving the overall visual perception of consumers, meeting market demand and promoting consumption.
[0026] Please see Figure 5 In another embodiment, the sealing frame 400 has a three-dimensional shape, which can be a snowflake shape, apple shape, peach shape, pear shape, antler shape, angel wing shape, flower or petal shape, leaf shape, square shape, circle shape, triangle shape, five-pointed star shape, etc. The sealing frame 400 is made of a light-transmitting material, and the light-emitting component 500 is a string of LED beads. According to the three-dimensional shape of the sealing frame 400, the snowflake shape is preferred in this embodiment. The light-emitting component 500 is arranged inside the sealing frame 400 to achieve sealing of the light-emitting component 500. When the electronic control module 110 drives the light-emitting component 500 to emit light, its light will present a three-dimensional light and shadow effect according to the three-dimensional shape of the sealing frame 400, thereby improving the overall visual appeal of the water lantern structure.
[0027] Please see Figure 6 In another embodiment, the light-emitting component 500 includes a carrier plate 510 and multiple sets of LED beads 520. The multiple sets of LED beads 520 are arranged on the carrier plate 510 and electrically connected to each other in series and parallel to form a light-emitting matrix with multiple controllable areas. The electronic control module 110 is electrically connected to the carrier plate 510 and is configured to drive the multiple sets of LED beads 520 according to a default program or sensing signal to produce various lighting modes and pattern changes. The multiple groups of LED beads 520 can contain 64 or more, with no specific limit on the number. These multiple groups of LED beads 520 are connected in series and parallel to form a multi-region controllable matrix. The electronic control module 110 can drive the LED beads 520 to emit light of different wavelengths, such as white light, blue light, or amber light. Furthermore, the electronic control module 110 can also control the carrier board 510, causing the LED beads 520 to emit light sources with different rhythms, brightness, and shape changes according to a default program, such as petal shapes, leaf shapes, square shapes, circular shapes, triangular shapes, or five-pointed star shapes. Furthermore, multiple LED beads 520 can present dynamic light and shadow patterns, such as star-shaped radial light patterns, petal-shaped or rotating light rings, slowly flashing flowing light effects, animal blinking effects, etc.; and when the electronic control module 110 changes the output frequency or brightness ratio, the multi-area controllable matrix formed can be turned on or off in sequence, such as strobe, running horse, etc., thereby forming a cyclic scanning or gradual light and shadow effect, visually like a "flowing flower of light" effect. Finally, through the cooperation of the electronic control module 110 and the light-emitting component 500, a variety of light and shadow effects can be achieved, thereby meeting the personalized needs of consumers and improving their visual experience.
[0028] Please see Figure 7The water lantern structure with dynamic light and shadow pattern effects in this embodiment also includes a water-spraying module 600 for agitating the transparent liquid inside the water lantern body 200 to create flow, and reflective suspended particles 210 are suspended in the transparent liquid inside the water lantern body 200. Specifically, the water-spraying module 600 includes a drive motor 610 and a water-spraying component 620. The water-spraying component 620 is disposed inside the water lantern body 200 and located below the bridging structure 300. The drive motor 610 is installed inside the base 100 and is electrically connected to the electronic control module 110. A magnetic rotating shaft 630 that magnetically engages with the water-spraying component 620 is provided at the output end of the drive motor 610. The water-spraying component 620 is installed below the bridging structure 300 to limit its movement. The drive motor 610 is controlled by the electronic control module 110 so that the drive motor 610 drives the magnetic shaft 630 to rotate. When the magnetic shaft 630 rotates, it drives the water-spraying component 620 inside the water lamp body 200 to rotate through the magnetic principle. When the water-spraying component 620 rotates, it will agitate the liquid inside the water lamp body 200 to improve the visual appeal of the water lamp structure.
[0029] Meanwhile, a reflective suspended object 210 is suspended in the transparent liquid of the main body 200 of the water lamp. The reflective suspended object can be a metal sheet, mica powder or reflective particles. It can float slowly in the transparent liquid. When the light-emitting component 500 emits light, it will penetrate the liquid, and the light will be scattered and reflected by the reflective suspended object, so that the light emitted by the light-emitting component presents a flickering, floating and depth-layered effect.
[0030] Finally, to facilitate the assembly of the water lantern structure with dynamic light and shadow pattern effects, the main body 200 of the water lantern has a hollow body 220 with an opening and a bottom cover 230 that closes the opening. The bridging structure 300 is mounted on the bottom cover 230. The water-filling component 620 is first assembled with the bottom cover 230, and then the bridging structure 300 and the sealing frame 400 are assembled in sequence. Subsequently, the bottom cover 230 is sealed to the main body 220, and transparent liquid and reflective suspended matter 210 are injected through the water inlet of the bottom cover 230. This facilitates the assembly of the water lantern structure and makes the assembly simple and convenient. Since this structure is existing technology, it will not be described in detail here.
[0031] In summary, this utility model has the following technical effects: 1. Good waterproof performance: placing the light-emitting component 500 inside the sealing frame 400 can effectively prevent liquid infiltration, ensuring long-term stable light emission of the light-emitting component 500; 2. Three-dimensional light effect: through the cooperation of the electronic control module 110 and the light-emitting component 500, a three-dimensional light and shadow with depth can be formed, rather than the traditional monotonous flat light; 3. Programmable light pattern: the electronic control module 110 can adjust the lighting sequence and brightness ratio of the LED beads 520 of the light-emitting component 500 to achieve diverse light and shadow patterns and rhythmic effects, improving decoration and interactivity; 4. Liquid optical interactivity: when the light-emitting component 500 emits light, the reflective suspended particles 210 will produce a flashing and floating effect under the liquid flow, so that the static light source presents a dynamic light field change. Ultimately, based on the aforementioned effects, the water lantern structure of this utility model with dynamic light and shadow pattern effects can be widely used in indoor ambient lighting, festive decorations, crystal ball-style night lights, and smart home decorative devices (which can be linked with APP control). It can also be used in the fields of gifts and display decorations to provide an artistic and technological lighting experience.
[0032] The foregoing has shown and described the basic principles, main features, and advantages of this utility model. Those skilled in the art can readily implement this utility model based on the accompanying drawings and the above description; however, any modifications, alterations, or variations made by those skilled in the art without departing from the scope of the utility model's technical solution, utilizing the disclosed technical content, are equivalent embodiments of this utility model; furthermore, any equivalent changes, alterations, or variations made to the above embodiments based on the essential technology of this utility model are still within the protection scope of this utility model's technical solution.
Claims
1. A water lantern structure with dynamic light and shadow pattern effects, characterized in that, include: A base, which contains an electronic control module; The main body of the water lamp is a hollow, light-transmitting, sealed cavity, which is fixedly installed on the base. The sealed cavity is filled with a transparent liquid. A bridging structure is installed inside the main body of the water lamp, and a sealing frame is installed on the bridging structure. At least one light-emitting component is provided inside the sealing frame. The wiring terminal of the light-emitting component is electrically connected to the electronic control module of the base through a wire passage extending through the sealing frame and the bridging structure. The electronic control module is configured to drive the light-emitting component in various lighting modes to produce a variety of light and shadow effects within the main body of the water lantern.
2. The water lantern structure with dynamic light and shadow pattern effect according to claim 1, characterized in that: The bottom of the bridging structure is provided with a plurality of legs. The bridging structure is installed on the inner bottom of the main body of the water lantern through the legs, and one of the legs has a through hole for a wire that runs through the bottom of the main body of the water lantern.
3. The water lantern structure with dynamic light and shadow pattern effect according to claim 2, characterized in that: The bottom of the sealing frame is equipped with a mounting base. The sealing frame is connected to the top of the bridging structure through the mounting base. Sealant is applied at the connection between the mounting base and the top of the bridging structure. The wiring terminals of the light-emitting component can be led out from the mounting base and the wire through hole in sequence to be electrically connected to the electronic control module.
4. The water lantern structure with dynamic light and shadow pattern effect according to claim 1, characterized in that: The sealing frame includes a main frame, a first mirror body, and a second mirror body. The first mirror body and the second mirror body are respectively installed on the front and back of the main frame. The light-emitting component is an LED light strip, which is arranged along the inner wall of the main frame and located between the first mirror body and the second mirror body.
5. The water lantern structure with dynamic light and shadow pattern effect according to claim 4, characterized in that: The first mirror is a two-way mirror, and the second mirror is a one-way mirror.
6. The water lantern structure with dynamic light and shadow pattern effect according to claim 1, characterized in that: The sealing frame has a three-dimensional shape, and the light-emitting component is a string of LED beads. The light-emitting component is arranged according to the three-dimensional shape of the sealing frame and is located inside the sealing frame.
7. The water lantern structure with dynamic light and shadow pattern effect according to claim 1, characterized in that: The light-emitting component includes a carrier board and multiple sets of LED beads. The multiple sets of LED beads are arranged on the carrier board and electrically connected to each other in series and parallel to form a light-emitting matrix with multiple controllable areas. The electronic control module is electrically connected to the carrier board and is configured to drive the multiple sets of LED beads according to a default program or sensing signal to produce various lighting modes and pattern changes.
8. The water lantern structure with dynamic light and shadow pattern effect according to claim 1, characterized in that: It also includes a water-spraying module for agitating the transparent liquid inside the main body of the water lamp, and reflective suspended matter is suspended in the transparent liquid inside the main body of the water lamp.
9. The water lantern structure with dynamic light and shadow pattern effect according to claim 8, characterized in that: The water-spraying module includes a drive motor and a water-spraying component. The water-spraying component is located inside the main body of the water lamp and below the bridge structure. The drive motor is installed in the base and is electrically connected to the electronic control module. A magnetic shaft that magnetically engages with the water-spraying component is provided at the output end of the drive motor.
10. The water lantern structure with dynamic light and shadow pattern effect according to claim 1, characterized in that: The main body of the water lantern has a hollow body with an opening and a bottom cover that closes the opening, and the bridging structure is mounted on the bottom cover.