Rotary table with light control assembly
By incorporating decorative cavities A and B into the tabletop assembly of the electric rotating dining table and equipping them with lighting elements, the problems of unclear three-dimensional visual effects and easy wear and tear on sculptures in existing technologies are solved, thereby improving both aesthetics and protection.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- ZHEJIANG PANAN JINMAO FUSHI ARTS & CRAFTS
- Filing Date
- 2025-05-26
- Publication Date
- 2026-05-01
AI Technical Summary
Existing electric rotating dining tables have simple table and turntable structures, lack a distinct three-dimensional visual effect, and the paintings are prone to wear and tear after prolonged use, affecting the decorative effect.
Decorative cavities A and B are set in the tabletop assembly to embed three-dimensional sculptures, and lighting components are provided for illumination. Combined with the design of the lower and upper glass plates, the aesthetics and protection are enhanced.
It improves the visual extensibility and aesthetic appeal of the tabletop components, prevents damage to the sculpture, extends its service life, facilitates cleaning, and enhances the dining experience.
Smart Images

Figure CN224179359U_ABST
Abstract
Description
A rotating table with lighting control components Technical Field
[0001] This utility model relates to the field of electric rotating dining table technology, specifically a rotating table with a lighting control component. Background Technology
[0002] An electric rotating dining table features a large round tabletop with an electric turntable. During use, the turntable rotates automatically at a low speed according to settings, making it convenient for diners to reach food. Electric rotating dining tables are typically equipped with a remote control for the convenience of waiters. They are often used in high-end hotel private rooms and are made of solid wood, MDF, or multi-layered particleboard.
[0003] Patent document CN214483748U discloses an electric rotating dining table, including a support base and a fixing rod. A table is mounted on top of the support base, and a rotating seat is connected through the center of the top of the table. An electric turntable is fixed to the top of the rotating seat. The bottom of the support base is inserted into the fixing seat, causing the groove on the outer edge of the support base to engage with the limiting block, thus allowing the electric rotating dining table to be placed in a designated position. Conversely, by stepping on a pedal, the pedal drives a second gear and a first gear to mesh, causing the first gear to disengage the limiting block from the groove. Then, with the combined effort of four people, the table can be lifted and moved, facilitating stable installation or disassembly of the electric rotating dining table.
[0004] While the aforementioned electric rotating dining table can solve the corresponding technical problems, its table and electric turntable structure is relatively simple. To improve the aesthetics of the electric rotating dining table, flat pictures are usually set on the surface of the table and electric turntable. However, the three-dimensional visual effect displayed by flat pictures is not vivid enough and lacks visual extension. Moreover, after the electric rotating dining table has been used for a long time, some of the pictures on its surface will be worn and damaged, thus affecting the overall decorative effect.
[0005] Therefore, a rotating table with a lighting control component is proposed. Summary of the Invention
[0006] The purpose of this invention is to provide a rotating table with a lighting control component to solve the problems of electric rotating dining tables in the background art.
[0007] To achieve the above objectives, this utility model provides the following technical solution:
[0008] A rotating table with a lighting control component includes a tabletop assembly and a support assembly. The support assembly is located at the bottom of the tabletop assembly, and its inner cavity is provided with a drive component for rotating the tabletop assembly.
[0009] The table assembly includes a lower table and an upper table. The center of the top of the lower table has a receiving groove that matches the upper table. The bottom of the upper table is placed in the receiving groove. The top of the lower table has a decorative cavity A, and the top of the upper table has a decorative cavity B. Both decorative cavities A and B are used to embed three-dimensional sculptures. The top of the outer surface of the upper table has an integrally formed annular flange. The top of the lower table is fixedly connected to a lower glass plate, and the top of the upper table is fixedly connected to an upper glass plate. The bottom of the upper table has multiple rolling elements to improve its rotation flexibility. The upper part of the inner cavity of decorative cavity A and decorative cavity B is respectively provided with lighting elements to illuminate the three-dimensional sculptures.
[0010] Preferably, the lower table panel, decorative cavity A, upper table panel, decorative cavity B, lower glass panel, and upper glass panel are all concentrically arranged, and the multiple rolling elements are distributed in a ring at equal intervals about the central axis of the upper table panel.
[0011] Preferably, the rolling element includes a groove formed at the bottom of the upper tabletop, wherein a ball is movably fitted into the inner cavity of the groove, and the bottom of the ball contacts the bottom of the inner wall of the receiving groove.
[0012] Preferably, the bottom dimension of the groove cross-section is smaller than the diameter dimension of the ball cross-section.
[0013] Preferably, the lighting element includes a light strip, one of which is embedded in the upper part of the inner ring of the inner cavity of decorative cavity A and the upper part of the inner cavity of decorative cavity B. A set of LED beads is provided above the light strip, and the two sets of LED beads are respectively embedded in the upper part of the inner ring of the inner cavity of decorative cavity A and the upper part of the inner cavity of decorative cavity B. Each set of LED beads has several beads distributed in a ring at equal intervals.
[0014] Preferably, the upper part of the inner ring of the decorative cavity A and the upper part of the inner cavity of the decorative cavity B are both provided with inclined surfaces, and the lamp beads are installed at an angle on the inclined surfaces.
[0015] Preferably, a sealing ring is fixedly connected to the outer surface of the upper table, and the sealing ring is in contact with both the lower glass plate and the inner wall of the receiving groove.
[0016] Preferably, the support assembly includes a support fixedly connected to the center of the bottom of the lower tabletop, an inspection door is hinged to the upper part of the support surface, and the drive assembly is located in the inner cavity of the support.
[0017] Preferably, the drive assembly includes a geared motor installed in the inner cavity of the support, the output shaft of the geared motor is fixedly connected to a rotating rod, the top end of the rotating rod extends into the receiving groove and is fixedly connected to a limiting block, and the bottom of the upper table is provided with a slot adapted to the limiting block, the limiting block being engaged in the slot.
[0018] Preferably, a conductive slip ring is fitted on the surface of the rotating rod, the stator of the conductive slip ring is fixedly connected to the lower table plate, the rotor of the conductive slip ring is fixedly connected to the rotating rod, the wires of the light strip and the light beads in the decorative cavity B are electrically connected to the rotor wires of the rotating rod, and the wires of the light strip, the light beads and the geared motor in the decorative cavity A, as well as the stator wires of the conductive slip ring, are all connected to the power supply line.
[0019] Compared with the prior art, the beneficial effects of this utility model are as follows: When in use, by adding a decorative cavity A to the lower tabletop and a decorative cavity B to the upper tabletop, and embedding a three-dimensional sculpture (such as a wood carving) in the decorative cavities A and B, the visual extension is achieved, and the overall three-dimensional effect is strong, which can enhance the aesthetic effect of the tabletop assembly; the setting of the lower and upper glass plates ensures that diners can directly observe the carved artwork, while also preventing the lower and upper tabletops from being damaged by tableware bumps, and making it less likely for the three-dimensional sculpture to be soiled or dislodged, thus helping to extend the service life of the tabletop assembly, and also facilitating the cleaning of the surfaces of the lower and upper tabletops; the lighting enhances the atmosphere while making it easier for diners to observe the three-dimensional sculpture more clearly. Attached Figure Description
[0020] Figure 1 is a schematic diagram of the structure of this utility model;
[0021] Figure 2 is a schematic diagram of the structure of this utility model;
[0022] Figure 3 is a partial cross-sectional view of the present invention;
[0023] Figure 4 is an enlarged structural schematic diagram of point A in Figure 4 of this utility model.
[0024] In the diagram: 100, Tabletop assembly; 110, Lower tabletop; 111, Decorative cavity A; 120, Upper tabletop; 121, Decorative cavity B; 122, Slot; 130, Lower glass plate; 140, Upper glass plate; 150, Rolling element; 151, Groove; 152, Ball bearing; 160, Lighting element; 161, Light strip; 162, LED bead; 170, Sealing ring; 200, Support assembly; 210, Support; 220, Inspection door; 230, Bracket; 240, Ventilation hole; 250, Edge retainer; 260, Handle; 270, Storage box; 300, Drive assembly; 310, Gear motor; 320, Rotating rod; 330, Limiting block; 340, Conductive slip ring. Detailed Implementation
[0025] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0026] Example 1
[0027] Please refer to Figures 1-4. This embodiment provides a rotating table with a lighting control component, including a tabletop assembly 100, a support assembly 200, and a drive assembly 300 for rotating the tabletop assembly 100. The support assembly 200 is located at the bottom of the tabletop assembly 100, and the drive assembly 300 is located in the inner cavity of the support assembly 200. The tabletop assembly 100 includes a lower tabletop 110 and an upper tabletop 120. A receiving groove adapted to the upper tabletop 120 is formed at the center of the top of the lower tabletop 110. The bottom of the upper tabletop 120 is placed in the receiving groove. A decorative cavity A111 with an annular structure is formed at the top of the lower tabletop 110, and a decorative cavity B121 with a circular structure is formed at the top of the upper tabletop 120. Decorative cavities A111 and B121... Both are used for embedding three-dimensional sculptures. The top of the outer surface of the upper table 120 is integrally formed with an annular flange. The outer diameter of the annular flange is larger than the diameter of the receiving groove. The top of the lower table 110 is fixedly connected to a lower glass plate 130 with an annular structure. The inner diameter of the lower glass plate 130 is the same as the diameter of the receiving groove, and the outer diameter of the lower glass plate 130 is the same as the diameter of the lower table 110. The top of the upper table 120 is fixedly connected to an upper glass plate 140 with a circular structure. The diameter of the upper glass plate 140 is the same as the top diameter of the upper table 120. The bottom of the upper table 120 is provided with multiple rolling elements 150 to improve its rotation flexibility. The upper part of the inner cavity of decorative cavity A111 and decorative cavity B121 is respectively provided with lighting elements 160 to illuminate the three-dimensional sculpture.
[0028] Working principle: When the power cord is connected, the geared motor 310 is started using a remote control. The output shaft of the geared motor 310 drives the rotor of the rotating rod 320, the limiting block 330, and the conductive slip ring 340 to rotate. Under the action of the slot 122, the limiting block 330 drives the upper table plate 120, the decorative cavity B121, the upper glass plate 140, and the corresponding light strip 161 and light beads 162 to rotate synchronously. The upper table plate 120 drives the groove 151 and the ball 152 to rotate, so that the ball 152 rolls in the inner cavity of the groove 151 and the receiving groove. This allows the food and dishes on the top of the upper glass plate 140 to rotate at a low speed around the output shaft of the geared motor 310, making it convenient for diners to pick up the food and dishes. The heat generated by the geared motor 310 and the conductive slip ring 340 during operation is dissipated through the ventilation hole 240. The table assembly 100 can be illuminated by using a remote control to turn on the light strip 161 and the light beads 162, thereby enhancing the overall aesthetic effect of the three-dimensional sculptures in the decorative cavities A111 and B121. When not in use, the remote control can be stored in the storage box 270 for future use. The access door 220 can be flipped open using the handle 260 to inspect and maintain the drive assembly 300. When deep cleaning of the table assembly 100 is required, the upper table 120 can be lifted from the receiving slot to separate the upper table 120 from the lower table 110, allowing for deep cleaning of the gap between the upper table 120 and the lower glass plate 130.
[0029] Beneficial effects: By adding decorative cavity A111 to the lower tabletop 110 and decorative cavity B121 to the upper tabletop 120, and embedding three-dimensional sculptures in decorative cavities A111 and B121, the visual extension is achieved, and the overall three-dimensional effect is strong, which can enhance the aesthetic effect of the tabletop assembly 100. The setting of lower glass plate 130 and upper glass plate 140 ensures that diners can directly observe the sculpted artwork, while also preventing damage to the lower tabletop 110 and upper tabletop 120 from tableware bumps and collisions, and making it less likely for the three-dimensional sculpture to be soiled or dislodged, which helps to extend the service life of the tabletop assembly 100. At the same time, it also facilitates the cleaning of the surfaces of the lower tabletop 110 and upper tabletop 120. The lighting component 160 enhances the atmosphere while making it easier for diners to observe the three-dimensional sculpture more clearly.
[0030] It should be noted that the aforementioned rotating table can be a mahogany table, and the three-dimensional sculptures inside are also art carvings made of mahogany or other woods, such as peonies, birds, and other artworks. Lighting can enhance the dynamism of the sculptures. Such tables can also be collected and appreciated as works of art.
[0031] Example 2
[0032] Please refer to Figures 1-4. This embodiment provides a rotating table with a lighting control component, which differs from Embodiment 1 in that:
[0033] The lower table 110, decorative cavity A111, upper table 120, decorative cavity B121, lower glass plate 130, and upper glass plate 140 are all concentrically arranged, and multiple rolling elements 150 are distributed in a ring at equal intervals about the central axis of the upper table 120.
[0034] The rolling element 150 includes a groove 151 formed in the bottom of the upper tabletop 120. A ball bearing 152 is movably fitted into the inner cavity of the groove 151, and the bottom of the ball bearing 152 contacts the bottom of the inner wall of the receiving groove. This design can reduce the friction between the bottom of the upper tabletop 120 and the receiving groove, thereby improving the flexibility of the upper tabletop 120 during rotation and preventing jamming. To reduce the noise when the ball bearing 152 rolls, a rubber sleeve can be wrapped around the surface of the ball bearing 152 to achieve the effects of shock absorption and noise reduction.
[0035] The bottom dimension of the groove 151 is smaller than the diameter dimension of the ball 152. This design effectively prevents the ball 152 from slipping out of the groove 151, ensuring that the ball 152 remains within the cavity of the groove 151.
[0036] The lighting element 160 includes a light strip 161, one of which is embedded in the upper part of the inner ring of the decorative cavity A111 and the upper part of the inner cavity of the decorative cavity B121. Above the light strip 161 is a set of LED beads 162. The two sets of LED beads 162 are respectively embedded in the upper part of the inner ring of the decorative cavity A111 and the upper part of the inner cavity of the decorative cavity B121, with several LED beads 162 evenly distributed in a ring shape in each set. This design illuminates the three-dimensional sculptures within the decorative cavities A111 and B121, enhancing the ambiance and allowing diners to observe the sculptures more clearly.
[0037] Both the upper part of the inner ring of decorative cavity A111 and the upper part of the inner cavity of decorative cavity B121 are provided with inclined surfaces, and the lamp beads 162 are installed at an angle on the inclined surfaces. The above design, by changing the illumination angle of the lighting element 160, not only improves the lighting effect of the lighting element 160, but also avoids the lighting element 160 shining directly into the eyes of diners, thereby improving the dining experience.
[0038] A sealing ring 170 is fixedly connected to the outer surface of the upper tabletop 120, and the sealing ring 170 is in contact with both the lower glass plate 130 and the inner wall of the receiving groove. This design improves the sealing performance between the upper tabletop 120 and the lower tabletop 110, effectively preventing food residue or liquid from leaking into the receiving groove through the gap between the upper tabletop 120 and the lower tabletop 110. This not only helps improve the cleanliness of the tabletop assembly 100 but also facilitates subsequent cleaning operations for staff.
[0039] The support assembly 200 includes a support 210 fixedly connected to the center of the bottom of the lower tabletop 110. An access door 220 is hinged to the upper part of the surface of the support 210, and the drive assembly 300 is disposed in the inner cavity of the support 210. The above design provides an installation base for the tabletop assembly 100 and the drive assembly 300.
[0040] At least two brackets 230 are fixedly connected to the top of both the support 210 and the access door 220. The top of the bracket 230 on the support 210 is fixedly connected to the lower table 110, and the top of the bracket 230 on the access door 220 is slidably connected to the lower table 110. This design increases the contact area between the support assembly 200 and the lower table 110, which helps to improve the support stability of the support assembly 200.
[0041] The surface of the access door 220 is provided with several brackets 230 arranged vertically, and the outer side of the access door 220 is fixedly connected with ventilation holes 240 that cooperate with the brackets 230. The above design can provide ventilation and heat dissipation for the drive assembly 300, which helps to improve the safety of the drive assembly 300 during operation.
[0042] A handle 260 and a storage box 270 are fixedly connected to the outer surface of the access door 220 from bottom to top. This design allows staff to easily open the access door 220 for inspection and maintenance of the drive assembly 300 via the handle 260. The handle 260 also serves as a handle for winding the power cord of the drive assembly 300, preventing excessively long power cords from dragging on the ground. The storage box 270 provides convenient access to the remote control for storing the drive assembly 300.
[0043] The drive assembly 300 includes a geared motor 310 installed inside the support 210. The output shaft of the geared motor 310 is fixedly connected to a rotating rod 320. The top end of the rotating rod 320 extends into a receiving groove and is fixedly connected to a limiting block 330. The bottom of the upper table 120 has a slot 122 that matches the limiting block 330. The limiting block 330 is engaged in the slot 122. The cross-sections of both the limiting block 330 and the slot 122 are polygonal, including triangles, rectangles, rhombuses, and other equilateral or scalene polygons. With this design, by connecting the power cord and starting the geared motor 310 with a remote control, the rotating rod 320, the limiting block 330, and the slot 122 can drive the upper table 120 and the upper glass plate 140 to rotate, making it convenient for diners to pick up food.
[0044] A conductive slip ring 340 is fitted onto the surface of the rotating rod 320. The stator of the conductive slip ring 340 is fixedly connected to the lower table plate 110, and the rotor of the conductive slip ring 340 is fixedly connected to the rotating rod 320. The wires of the LED strip 161 and LED beads 162 in the decorative cavity B121 are electrically connected to the rotor wires of the rotating rod 320. The wires of the LED strip 161 and LED beads 162 in the decorative cavity A111, the wires of the geared motor 310, and the stator wires of the conductive slip ring 340 are all connected to the power supply. This design solves the problem of the wires of the LED strip 161 and LED beads 162 in the decorative cavity B121 becoming entangled during rotation, thereby preventing the wires from breaking due to twisting and ensuring the normal rotation of the upper table plate 120.
[0045] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A rotating table with a lighting control component, characterized in that: The system includes a tabletop assembly and a support assembly. The support assembly is located at the bottom of the tabletop assembly, and its inner cavity contains a drive assembly for rotating the tabletop assembly. The tabletop assembly includes a lower tabletop and an upper tabletop. The center of the top of the lower tabletop has a receiving groove adapted to the upper tabletop, and the bottom of the upper tabletop is placed in the receiving groove. The top of the lower tabletop has a decorative cavity A, and the top of the upper tabletop has a decorative cavity B. Both decorative cavities A and B are used to embed three-dimensional sculptures. The top of the outer surface of the upper tabletop has an integrally formed annular flange. The top of the lower tabletop is fixedly connected to a lower glass plate, and the top of the upper tabletop is fixedly connected to an upper glass plate. The bottom of the upper tabletop has multiple rolling elements to improve its rotational flexibility. The upper part of the inner cavity of decorative cavity A and decorative cavity B is respectively provided with lighting elements to illuminate the three-dimensional sculpture.
2. The rotating table with lighting control assembly according to claim 1, characterized in that: The lower table, decorative cavity A, upper table, decorative cavity B, lower glass plate, and upper glass plate are all concentrically arranged, and multiple rolling elements are distributed in a ring at equal intervals about the central axis of the upper table.
3. The rotating table with lighting control assembly according to claim 2, characterized in that: The rolling element includes a groove formed at the bottom of the upper tabletop, and a ball is movably fitted into the inner cavity of the groove, with the bottom of the ball contacting the bottom of the inner wall of the receiving groove.
4. The rotating table with lighting control assembly according to claim 3, characterized in that: The bottom dimension of the groove cross-section is smaller than the diameter dimension of the ball cross-section.
5. The rotating table with lighting control assembly according to claim 1, characterized in that: The lighting component includes a light strip, one of which is embedded in the upper part of the inner ring of the inner cavity of decorative cavity A and the upper part of the inner cavity of decorative cavity B. A set of LED beads is provided above the light strip. The two sets of LED beads are respectively embedded in the upper part of the inner ring of the inner cavity of decorative cavity A and the upper part of the inner cavity of decorative cavity B. Each set of LED beads has several beads distributed in a ring at equal intervals.
6. The rotating table with lighting control assembly according to claim 5, characterized in that: The upper part of the inner ring of the decorative cavity A and the upper part of the inner cavity of the decorative cavity B are both provided with inclined surfaces, and the lamp beads are installed at an angle on the inclined surfaces.
7. The rotating table with lighting control assembly according to claim 1, characterized in that: A sealing ring is fixedly connected to the outer surface of the upper table, and the sealing ring is in contact with both the lower glass plate and the inner wall of the receiving groove.
8. The rotating table with lighting control assembly according to claim 1, characterized in that: The support assembly includes a support fixedly connected to the center of the bottom of the lower tabletop, an inspection door is hinged to the upper part of the support surface, and the drive assembly is located in the inner cavity of the support.
9. The rotating table with lighting control assembly according to claim 1, characterized in that: The drive assembly includes a geared motor installed in the inner cavity of the support. The output shaft of the geared motor is fixedly connected to a rotating rod. The top end of the rotating rod extends into the receiving groove and is fixedly connected to a limiting block. The bottom of the upper table is provided with a slot that matches the limiting block, and the limiting block is engaged in the slot.
10. The rotating table with lighting control assembly according to claim 9, characterized in that: A conductive slip ring is fitted on the surface of the rotating rod. The stator of the conductive slip ring is fixedly connected to the lower table plate, and the rotor of the conductive slip ring is fixedly connected to the rotating rod. The wires of the light strip and the LED beads in the decorative cavity B are electrically connected to the rotor wires of the rotating rod. The wires of the light strip, LED beads, and the geared motor in the decorative cavity A, as well as the stator wires of the conductive slip ring, are all connected to the power supply line.
Citation Information
Patent Citations
Electric rotating dining table
CN214483748U