Wine cabinet with color adjusting structure

By combining a modular lampshade tube with a tri-color LED light strip, multiple lighting modes and color adjustments are achieved, solving the problems of monotonous lighting and insufficient display in traditional wine cabinets, and improving the display effect and user experience of the wine cabinet.

CN224234981UActive Publication Date: 2026-05-15YICHANG DIXIN INTELLIGENT FURNITURE CO LTD
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Patent Information

Application Number
CN202521072968.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-05-28
Publication Date
2026-05-15
Estimated Expiration
2035-05-28

AI Technical Summary

Technical Problem

Traditional wine cabinets have limitations in terms of lighting and display functions, failing to meet diverse display needs, highlight the characteristics of wines, lack a sense of layering and personalized display, and fail to meet the refined lighting requirements of high-end wines.

Method used

The combined lampshade tube consists of a first arc-shaped cover, a second arc-shaped cover, and a third arc-shaped cover. A micro motor drives its rotation and switching. Combined with a three-color LED light strip and an LED controller, it can realize multiple lighting modes and color adjustment. The light distribution is optimized through components such as a light-diffusing plate, a reflective film, and a condenser lens.

Benefits of technology

Achieve diverse lighting effects, highlight details of wine bottles, create unique lighting atmospheres, meet the display needs of different scenarios, enhance the aesthetics and practicality of wine cabinets, improve light utilization, facilitate maintenance, and extend equipment lifespan.

✦ Generated by Eureka AI based on patent content.

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    Figure CN224234981U_ABST
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Abstract

The utility model discloses a wine cabinet with a color adjusting structure, and relates to the technical field of wine cabinets. The wine cabinet with the color adjusting structure comprises a cabinet body, the cabinet body is provided with cuboid wine lattices and partition plates, and cabinet lamps are arranged below the partition plates; the cabinet lamp comprises a lamp tube, an LED controller, a micro motor, a three-color LED lamp strip and a combined lampshade tube; the three-color LED lamp strip is controlled through the LED controller, color adjustment is achieved, various light atmospheres can be created, and the requirements for display of different wine products and personalized aesthetic appreciation are met; the combined lampshade tube is driven by the micro motor to rotate, various lighting modes such as multi-point light condensation, uniform lighting and continuous light condensation irradiation are achieved through different arc-shaped covers, diversified display requirements are met, and wine characteristics are highlighted; unique mounting structures of all parts of the cabinet lamp are convenient to assemble, disassemble and maintain; the circular tube is provided with heat dissipation holes and one end is filled with a breathable light-proof material, so that stable operation of components is guaranteed, and heat dissipation and light control are balanced.
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Description

Technical Field

[0001] This utility model relates to the field of wine cabinet technology, and in particular to a wine cabinet with a color adjustment structure. Background Technology

[0002] Traditional wine cabinets have limitations in terms of lighting and display functions. Existing wine cabinet lighting typically only provides basic white light, which is insufficient to meet diverse display needs. When displaying different types of wines, it fails to highlight the characteristics and charm of the wines through lighting effects, cannot create an atmosphere that matches the wines, lacks appeal to consumers, and fails to meet today's consumers' pursuit of aesthetically pleasing and personalized wine cabinet displays. Moreover, most traditional wine cabinets cannot adjust the light intensity, and cannot provide targeted lighting based on the display focus of different areas within the cabinet. For example, for some wines with unique bottle designs or rare wines, it is impossible to highlight them by focusing the light. The light distribution throughout the wine cabinet space is uniform but lacks a sense of layering, affecting the overall display effect and failing to meet the refined lighting requirements for displaying high-end wines. In view of this, we propose a wine cabinet with a color adjustment structure. Utility Model Content

[0003] The main purpose of this utility model is to provide a wine cabinet with a color adjustment structure, which can effectively solve the problems in the background art.

[0004] To achieve the above objectives, the technical solution adopted by this utility model is as follows:

[0005] A wine cabinet with a color-adjusting structure includes a cabinet body, on which a plurality of cuboid wine compartments are provided. Each cuboid wine compartment in the cabinet body has a partition fixedly installed above it, and a cabinet light is provided in the lower center of the partition.

[0006] The cabinet light includes a cylindrical lamp tube, a cylindrical LED controller, a cylindrical micro motor, a tri-color LED strip, and a tubular combined lampshade tube. The combined lampshade tube is coaxially rotatably installed inside the lamp tube. The output end of the rotor of the micro motor is connected to one end of the combined lampshade tube. The tri-color LED strip is disposed in the combined lampshade tube. The LED controller is fixedly installed at one end of the lamp tube and is connected to the tri-color LED strip. The combined lampshade tube includes a first arc-shaped cover, a second arc-shaped cover, and a third arc-shaped cover. An arc-shaped illumination port is provided below the lamp tube. The chord length of the arc-shaped illumination port is not greater than the chord lengths of the first, second, and third arc-shaped covers, and the chord lengths of the first, second, and third arc-shaped covers are equal.

[0007] Preferably, a strip groove is provided in the middle of the partition, and a strip limiting hole is connected above the strip groove. The inner dimension of the strip limiting hole is larger than the inner dimension of the strip groove. A connecting block is fitted into the strip groove in the partition, and a sliding groove is provided below the connecting block. The cabinet light is slidably installed in the sliding groove. A limiting plate is fixedly installed above the connecting block, and the limiting plate is fitted into the strip limiting hole.

[0008] Preferably, the lamp tube, LED controller, and micro motor have the same outer diameter. The lamp tube has a first strip groove on both sides slightly below the bottom, the LED controller has a second strip groove on both sides slightly below the bottom, and the micro motor has a third strip groove on both sides slightly below the bottom. The two ends of the first strip groove are connected to the second and third strip grooves, respectively. The lamp tube, LED controller, and micro motor are slidably installed in the groove through the first and second strip grooves, respectively.

[0009] Preferably, a circular tube is provided between the lamp tube and the micro motor. One end of the circular tube is rotatably installed inside the lamp tube, and the circular tube is fixedly connected to the first arc-shaped cover, the second arc-shaped cover and the third arc-shaped cover in the combined lamp cover tube. A plurality of heat dissipation holes are provided on the outer wall of the circular tube, and the inner cavity of the end of the circular tube away from the micro motor is filled with a breathable and opaque material.

[0010] Preferably, the second arc-shaped cover is composed of a light-diffusing plate, and a first arc-shaped cavity is provided inside the second arc-shaped cover. A strip-shaped concave lens is fixedly installed on the inner side of the first arc-shaped cavity. A second arc-shaped cavity is provided inside the third arc-shaped cover. A reflective film is provided on the inner wall of the second arc-shaped cavity. A strip-shaped condenser lens is fixedly installed on the inner side of the second arc-shaped cavity. A strip-shaped perforation communicating with the second arc-shaped cavity is provided on the outer wall of the third arc-shaped cover.

[0011] Preferably, the inner side of the first arc-shaped cover is provided with a plurality of light-gathering slots at equal intervals, and the inner side of the first arc-shaped cover is provided with a plurality of cylindrical or frustum-shaped small holes at equal intervals, and the plurality of small holes are respectively connected to the plurality of light-gathering slots, and a leaf-shaped light-gathering lens is fixedly installed in each light-gathering slot.

[0012] Preferably, a semi-tubular reflector is coaxially disposed inside the combined lampshade tube, and the semi-tubular reflector is disposed around the periphery of the tri-color LED light strip.

[0013] Compared with the prior art, the present invention has the following beneficial effects:

[0014] 1. Diverse Lighting Effects: The combined lampshade consists of a first arc-shaped cover, a second arc-shaped cover, and a third arc-shaped cover. A micro motor drives its rotation and switching to achieve multiple lighting modes. The first arc-shaped cover uses a focusing groove, a leaf-shaped focusing lens, and small holes to form multi-point focusing light, highlighting the details of the wine bottle. The second arc-shaped cover's light-diffusing plate and strip concave lens ensure even light dispersion, preventing areas inside the wine cabinet from being too bright or too dark. The third arc-shaped cover uses a reflective film and a strip-shaped focusing lens to emit continuous focused light through strip perforations, creating a unique lighting atmosphere. Multiple lighting modes meet the needs of wine display in different scenarios, enhancing the aesthetics and practicality of the wine cabinet.

[0015] 2. Color adjustment function: The LED controller is connected to the three-color LED light strip. Through pulse width modulation technology, it controls the on / off state and brightness of the red, green and blue LED beads, changing the mixing ratio of light to produce a rich variety of colors. This can not only create a matching lighting atmosphere according to different types of wine or usage scenarios, but also meet the personalized aesthetic needs of users and enhance the display effect and attractiveness of the wine cabinet.

[0016] 3. Easy Installation and Maintenance: The partition is equipped with strip grooves and strip-shaped limiting holes. The connecting block is fitted into the strip groove, and the cabinet light is slidably installed with the connecting block through the slide groove. The lamp tube, LED controller, and micro motor are installed with the slide groove through the strip groove. This structural design facilitates the assembly and disassembly of the cabinet light components, making it convenient to repair and replace parts in case of failure, thus improving the maintainability of the wine cabinet. Furthermore, the lamp tube, LED controller, and micro motor have the same outer diameter and are installed with the slide groove through the strip groove, which restricts the rotation of the lamp tube, LED controller, and micro motor within the slide groove, ensuring the stability of each component during operation. This reduces poor lighting effects or equipment failure caused by component shaking or displacement, extending the service life of the wine cabinet.

[0017] 4. Improve light utilization: The semi-tubular reflector inside the combined lampshade tube is set around the tri-color LED light strip, which can reflect the light that was originally directed in other directions to the irradiated area, reduce light loss, improve light utilization, and achieve a brighter lighting effect with the same energy consumption, which is energy-saving and environmentally friendly.

[0018] 5. Excellent heat dissipation and light shielding performance: The outer wall of the round tube between the lamp tube and the micro motor is equipped with heat dissipation holes, which can dissipate the heat generated when the cabinet light is working, ensuring that each component operates normally in a suitable temperature environment and avoiding the impact of overheating on the performance and lifespan of the equipment; the inner cavity of one end of the round tube is filled with a breathable but opaque material, which can not only ensure air circulation to assist heat dissipation, but also prevent light from passing through from that end, avoiding interference with the lighting effect inside the wine cabinet and maintaining the consistency of the overall lighting atmosphere. Attached Figure Description

[0019] Figure 1 This is a schematic diagram of the overall structure of this utility model;

[0020] Figure 2 This is an exploded view showing the connection between the partition and the cabinet light of this utility model;

[0021] Figure 3 This is an exploded view of the cabinet light of this utility model;

[0022] Figure 4 This is a schematic diagram showing the connection between the lamp tube, the tri-color LED light strip, and the combined lampshade tube in this utility model;

[0023] Figure 5 This is a schematic diagram of the structure of the first arc-shaped cover in this utility model.

[0024] In the diagram: 1. Cabinet body; 11. Rectangular wine rack; 12. Shelf; 121. Strip groove; 122. Strip limiting hole; 123. Connecting block; 124. Slide groove; 125. Limiting plate; 2. Cabinet light; 21. Light tube; 211. First strip groove; 22. LED controller; 221. Second strip groove; 23. Micro motor; 231. Third strip groove; 24. Round tube; 241. Heat dissipation. 242. Perforated but opaque material; 25. Semi-tubular reflector; 26. Tricolor LED strip; 27. First arc-shaped cover; 271. Concentrating groove; 272. Concentrating lens; 273. Small hole; 28. Second arc-shaped cover; 281. First arc-shaped cavity; 282. Strip concave lens; 29. ​​Third arc-shaped cover; 291. Second arc-shaped cavity; 292. Strip concentrating lens; 293. Strip perforation. Detailed Implementation

[0025] To make the technical means, creative features, objectives and effects of this utility model easier to understand, the present utility model will be further described below in conjunction with specific embodiments.

[0026] like Figures 1-5 As shown, a wine cabinet with a color-adjustable structure includes a cabinet body 1. The cabinet body 1 has several rectangular wine compartments 11. Each rectangular wine compartment 11 has a partition 12 fixedly installed above it. A strip groove 121 is provided in the middle of the partition 12. A strip limiting hole 122 is connected above the strip groove 121, and the inner size of the strip limiting hole 122 is larger than the inner size of the strip groove 121. A connecting block 123 is fitted into the strip groove 121 of the partition 12. A sliding groove 124 is provided below the connecting block 123 for installing a cabinet light 2. A limiting plate 125 is fixedly installed above the connecting block 123. The limiting plate 125 is fitted into the strip limiting hole 122 to restrict the movement of the connecting block 123 in the strip groove 121 and ensure the stability of the cabinet light 2 installation.

[0027] refer to Figure 3 and Figure 4The cabinet light 2 is mainly installed inside the rectangular wine rack 11, directly above the wine bottles, and is placed horizontally. The cabinet light 2 includes a cylindrical light tube 21, a cylindrical LED controller 22, and a cylindrical micro motor 23. The outer diameters of the light tube 21, LED controller 22, and micro motor 23 are the same. The light tube 21 has a first strip groove 211 on both sides slightly below the bottom, the LED controller 22 has a second strip groove 221 on both sides slightly below the bottom, and the micro motor 23 has a third strip groove on both sides slightly below the bottom. The first strip groove 211 is connected to the second strip groove 221 and the third strip groove 231 at both ends. The lamp tube 21, LED controller 22 and micro motor 23 are slidably installed in the slide groove 124 through the first strip groove 211 and the second strip groove 221 respectively. This installation method facilitates the assembly and disassembly of each component of the cabinet lamp 2 and is used to restrict the lamp tube 21, LED controller 22 and micro motor 23 from rotating in the slide groove 124, while also ensuring the stability of each component during operation.

[0028] refer to Figure 4 A semi-tubular reflector 25 is coaxially arranged inside the combined lampshade tube. The inner wall of the semi-tubular reflector 25 is mainly used to reflect light. The semi-tubular reflector 25 is arranged around the tri-color LED light strip 26. When the light emitted by the tri-color LED light strip 26 shines on the inner wall of the semi-tubular reflector 25, the light is reflected and the propagation direction is changed. Some of the light that was originally directed to other directions of the lampshade tube is reflected to the irradiated area, which improves the utilization rate of light and enhances the lighting effect.

[0029] refer to Figure 4 A tubular combined lampshade tube is coaxially and rotatably installed inside the lamp tube 21. The combined lampshade tube is composed of a first arc-shaped cover 27, a second arc-shaped cover 28, and a third arc-shaped cover 29. An arc-shaped illumination port is provided below the lamp tube 21. The chord length of the arc-shaped illumination port is not greater than the chord length of the first arc-shaped cover 27, the second arc-shaped cover 28, and the third arc-shaped cover 29. The chord lengths of the first arc-shaped cover 27, the second arc-shaped cover 28, and the third arc-shaped cover 29 are equal. The output end of the rotor in the micro motor 23 is connected to one end of the combined lampshade tube. The rotation of the rotor in the micro motor 23 drives the combined lampshade tube to rotate and switch. Each rotation is 120 degrees, and the first arc-shaped cover 27, the second arc-shaped cover 28, and the third arc-shaped cover 29 rotate alternately in sequence.

[0030] refer to Figure 5The first arc-shaped cover 27 is mainly used for multi-point focused illumination. Several focusing slots 271 are equidistantly arranged on the inner side of the first arc-shaped cover 27, and several cylindrical or frustum-shaped small holes 273 are also equidistantly arranged on the inner side. The small holes 273 are connected to the several focusing slots 271 respectively. A leaf-shaped focusing lens 272 is fixedly installed in each focusing slot 271. When the light emitted by the tri-color LED light strip 26 enters the focusing slot 271, it is refracted by the leaf-shaped focusing lens 272. The light is reflected and converged multiple times in the focusing slot 271, and finally emitted through the small hole 273 to form a multi-point focused light effect, highlighting the local details of the wine bottles in the wine cabinet.

[0031] refer to Figure 3 The second arc-shaped cover 28 is used to uniformly illuminate the rectangular wine cellar 11. It is composed of a light-diffusing plate. The second arc-shaped cover 28 has a first arc-shaped cavity 281. A strip-shaped concave lens 282 is fixedly installed on the inner side of the first arc-shaped cavity 281. When the light passes through the second arc-shaped cover 28, the light-diffusing plate first diffuses the light initially, making the light distribution relatively uniform. Then the strip-shaped concave lens 282 further diffuses the light, finally achieving the effect of uniformly illuminating the rectangular wine cellar 11 and avoiding local over-brightness or under-brightness.

[0032] refer to Figure 3 The third arc-shaped cover 29 is also used for focused illumination. The difference between it and the first arc-shaped cover 27 is that it emits continuous light. The third arc-shaped cover 29 has a second arc-shaped cavity 291 inside. The inner wall of the second arc-shaped cavity 291 is provided with a reflective film to reflect light and enhance the focusing effect. A strip-shaped condenser lens 292 is fixedly installed on the inner side of the second arc-shaped cavity 291. The light is more concentrated after being converged by the strip-shaped condenser lens 292. The outer wall of the third arc-shaped cover 29 has a strip-shaped perforation 293 that communicates with the second arc-shaped cavity 291. The converged continuous light is emitted through the strip-shaped perforation 293 to continuously focus light on a specific area inside the wine cabinet, creating a unique lighting atmosphere.

[0033] It should be noted that the tri-color LED light strip 26 is set in the combined lamp cover tube, and the LED controller 22 is fixedly installed at one end of the lamp tube 21. The LED controller 22 is connected to the tri-color LED light strip 26. The LED controller 22 realizes the color adjustment function by controlling the on / off state and brightness of the red, green and blue LED beads in the tri-color LED light strip 26. For example, by using pulse width modulation technology, the LED controller 22 sends electrical signals with different duty cycles to the tri-color LED light strip 26, thereby changing the mixing ratio of the red, green and blue light and producing a rich variety of colors.

[0034] refer to Figure 3A circular tube 24 is provided between the lamp tube 21 and the micro motor 23. One end of the circular tube 24 is rotatably installed inside the lamp tube 21, and the circular tube 24 is fixedly connected to the first arc-shaped cover 27, the second arc-shaped cover 28 and the third arc-shaped cover 29 in the combined lamp cover tube to ensure that the combined lamp cover tube rotates stably under the drive of the micro motor 23. Several heat dissipation holes 241 are provided on the outer wall of the circular tube 24 to dissipate the heat generated when the cabinet lamp 2 is working and to ensure the normal operation of each component. The inner cavity of the end of the circular tube 24 away from the micro motor 23 is filled with a breathable and opaque material 242. In this embodiment, black sponge is specifically selected. The breathable and opaque material 242 can both ensure air circulation to assist heat dissipation and prevent light from passing through from this end and affecting the lighting effect.

[0035] 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 illustrative of the principles of this 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 claims. The scope of protection of this utility model is defined by the appended claims and their equivalents.

Claims

1. A wine cabinet with a color-adjusting structure, comprising a cabinet body (1), wherein the cabinet body (1) is provided with a plurality of cuboid wine compartments (11), and each cuboid wine compartment (11) in the cabinet body (1) is fixedly mounted with a partition (12) above it, characterized in that: A cabinet light (2) is provided at the lower center of the partition (12); The cabinet lamp (2) includes a cylindrical lamp tube (21), a cylindrical LED controller (22), a cylindrical micro motor (23), a tri-color LED light strip (26), and a tubular combined lampshade tube. The combined lampshade tube is coaxially and rotatably installed inside the lamp tube (21). The output end of the rotor of the micro motor (23) is connected to one end of the combined lampshade tube. The tri-color LED light strip (26) is disposed in the combined lampshade tube. The LED controller (22) is fixedly installed at one end of the lamp tube (21). The LED controller (22) is connected to the tri-color LED light strip (26). The combined lamp cover tube includes a first arc-shaped cover (27), a second arc-shaped cover (28), and a third arc-shaped cover (29). An arc-shaped illumination port is provided below the lamp tube (21). The chord length of the arc-shaped illumination port is not greater than the chord length of the first arc-shaped cover (27), the second arc-shaped cover (28), and the third arc-shaped cover (29), and the chord lengths of the first arc-shaped cover (27), the second arc-shaped cover (28), and the third arc-shaped cover (29) are equal.

2. The wine cabinet with a color-adjusting structure according to claim 1, characterized in that: The partition (12) has a strip groove (121) in the middle, and a strip limiting hole (122) is connected above the strip groove (121). The inner size of the strip limiting hole (122) is larger than the inner size of the strip groove (121). A connecting block (123) is fitted into the strip groove (121) in the partition (12). A sliding groove (124) is provided below the connecting block (123). The cabinet light (2) is slidably installed in the sliding groove (124). A limiting plate (125) is fixedly installed above the connecting block (123). The limiting plate (125) is fitted into the strip limiting hole (122).

3. The wine cabinet with a color-adjusting structure according to claim 1, characterized in that: The lamp tube (21), LED controller (22) and micro motor (23) have the same outer diameter. The lamp tube (21) is provided with a first strip groove (211) on both sides slightly below. The LED controller (22) is provided with a second strip groove (221) on both sides slightly below. The micro motor (23) is provided with a third strip groove (231) on both sides slightly below. The two ends of the first strip groove (211) are connected to the second strip groove (221) and the third strip groove (231) respectively. The lamp tube (21), LED controller (22) and micro motor (23) are slidably installed in the slide groove (124) through the first strip groove (211) and the second strip groove (221) respectively.

4. The wine cabinet with a color-adjusting structure according to claim 1, characterized in that: A circular tube (24) is provided between the lamp tube (21) and the micro motor (23). One end of the circular tube (24) is rotatably installed inside the lamp tube (21). The circular tube (24) is fixedly connected to the first arc-shaped cover (27), the second arc-shaped cover (28) and the third arc-shaped cover (29) in the combined lamp cover tube. Several heat dissipation holes (241) are provided on the outer wall of the circular tube (24). The inner cavity of the end of the circular tube (24) away from the micro motor (23) is filled with a breathable but opaque material (242).

5. The wine cabinet with a color-adjusting structure according to claim 1, characterized in that: The second arc-shaped cover (28) is composed of a light-diffusing plate. A first arc-shaped cavity (281) is provided inside the second arc-shaped cover (28). A strip-shaped concave lens (282) is fixedly installed on the inner side of the first arc-shaped cavity (281). A second arc-shaped cavity (291) is provided inside the third arc-shaped cover (29). A reflective film is provided on the inner wall of the second arc-shaped cavity (291). A strip-shaped condenser lens (292) is fixedly installed on the inner side of the second arc-shaped cavity (291). A strip-shaped perforation (293) communicating with the second arc-shaped cavity (291) is provided on the outer wall of the third arc-shaped cover (29).

6. The wine cabinet with a color-adjusting structure according to claim 1, characterized in that: The inner side of the first arc-shaped cover (27) is provided with a plurality of light-concentrating slots (271) at equal intervals. The inner side of the first arc-shaped cover (27) is provided with a plurality of cylindrical or frustum-shaped small holes (273) at equal intervals. The plurality of small holes (273) are respectively connected to the plurality of light-concentrating slots (271). Each light-concentrating slot (271) is fixedly installed with a leaf-shaped light-concentrating lens (272).

7. The wine cabinet with a color-adjusting structure according to claim 1, characterized in that: The combined lampshade tube is coaxially provided with a semi-tubular reflector (25), which is located around the tri-color LED light strip (26).