Glass platform structure
By using mortise and tenon joints in the wooden structure and soft rubber strips for isolation, the complexity of installing steel structure supports and the risk of damage are solved, enabling convenient installation and efficient maintenance of the glass platform and adapting to personalized design needs.
Patent Information
- Application Number
- CN202422682356.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-04
- Publication Date
- 2026-02-17
- Estimated Expiration
- 2034-11-04
AI Technical Summary
In existing technologies, steel structure supports suffer from complex interference, high costs, easy damage, and cumbersome installation during manufacturing and on-site installation, making it difficult to meet the needs of personalized glass platforms.
The system employs a mortise and tenon joint method with a wooden structure, combining a wooden support frame and an inner frame. This mortise and tenon structure ensures a stable connection of the glass platform, while soft rubber strips are used to separate the glass panels, simplifying the installation process and reducing maintenance costs.
It enables convenient installation and disassembly of wooden structures, reduces costs, improves product quality and installation efficiency, extends service life, and adapts to personalized design needs.
Smart Images

Figure CN223922560U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to a glass platform structure, belonging to the advertising sign industry. Background Technology
[0002] With users' growing demand for personalization and convenience, the pursuit of spatial flexibility and individuality has become a mainstream trend in product design and development. The design concept of glass platforms combined with integrated luminous patterns at the bottom has emerged, breaking the limitations of traditional floor decoration and illuminating every corner of the space with technological light, bringing an unprecedented visual feast to commercial showrooms, public art installations, and other fields. However, complex installation and maintenance requirements are also a major challenge for market penetration. Most existing technologies use steel structures for the bottom support. When dealing with irregularly shaped or curved products, the adjustment process is cumbersome and complex when interference occurs during manufacturing and on-site installation, easily leading to delays and substandard quality. Furthermore, the steel structure is more prone to collisions with the glass during operation, increasing the likelihood of damage. Therefore, using a wooden structure instead of a steel support structure offers optimization opportunities in both manufacturing and on-site installation. Technological innovation can reduce costs, simplify the installation process, and further enhance product competitiveness. Summary of the Invention
[0003] The technical problem to be solved by this utility model is: how to use a wooden structure to replace the steel structure of the support frame, thereby reducing costs, simplifying the installation process and eliminating installation interference defects, improving product quality, and meeting the requirements of integrated light-emitting patterns, to create a glass platform with integrated light-emitting effects.
[0004] To solve the above-mentioned technical problems, the technical solution of this utility model is to provide a glass platform structure, characterized in that it includes a wooden support frame, which includes an outer frame and an inner frame. The outer frame is connected to the inner frame around the perimeter by mortise and tenon joints. The inner frame is composed of multiple crosses, and the inner frame cooperates with the outer frame to form multiple grid areas. A patterned plate is connected to each grid area on the inner frame. The patterned plate has a patterned groove, and an LED light is installed in the patterned groove. A piece of glass is installed in each grid area. The wooden support frame is provided with limiting baffle strips for restricting the position of each piece of glass. An edging plate is provided around the outer frame, and a transformer is installed below the edging plate. A grounding plug for connecting to a power source is provided on one of the pieces of glass. The transformer is connected to the grounding plug and each LED light through wires. Buffer pads are provided on the contact parts around each piece of glass.
[0005] Preferably, the buffer pad is a soft rubber strip; soft rubber strips are provided on both sides of all limiting baffle strips and on the surface of the wooden bracket; soft rubber strips are provided on the bottom and sides of the edge banding where it connects to the outer frame.
[0006] Preferably, any two adjacent pieces of glass are separated by a limiting baffle strip, and the glass and the limiting baffle strip are connected by a soft rubber strip.
[0007] Preferably, an adhesive layer is provided above the buffer pad and the limiting baffle strip between two adjacent glass panes; an adhesive layer is also provided at the connection between the inner frame and the pattern plate.
[0008] Preferably, one end of the edging plate is fixed to the outer frame, and the other end is fixed to the ground; the transformer is located in the space covered by the edging plate and is fixed to the ground.
[0009] Preferably, the edge banding board is provided with a first leg and a second leg at both ends, the first leg is connected to the outer frame of the wooden support, and the second leg is connected to the ground, so that the edge banding board forms a sloping surface from the wooden support to the ground.
[0010] Preferably, the ground insert is located in the bent component, which is situated at the corner where the glass is cut off; the bent component is provided with an adhesive layer on all four sides.
[0011] Preferably, the outer frame is composed of multiple interconnected wooden strips, each strip having a recess at one end and a protrusion at the other end; in any two adjacent wooden strips, the protrusion of one strip is inserted into the recess of the other strip for connection and fixation.
[0012] Preferably, the inner frame is composed of multiple cross-connected horizontal and vertical bars. Each horizontal bar has a first inclined surface at both ends and an inclined opening in the middle. Each vertical bar has a second inclined surface at both ends. The second inclined surface at one end of the vertical bar is inserted into the inclined opening of the horizontal bar. A groove is provided in the middle of the surface of both the horizontal and vertical bars, and a limiting baffle strip is inserted in the groove.
[0013] Preferably, the first inclined surface at one end of the horizontal bar and the second inclined surface at one end of the vertical bar of the inner frame are respectively connected to the inner groove of the outer frame by mortise and tenon joints; each mortise and tenon joint is provided with a connector, one end of which is fixedly connected to the outer frame by screws, and the other end is fixedly connected to the horizontal bar and the vertical bar by screws; each grid area of the inner frame is provided with a wiring hole at the bottom; corner brackets are connected around half of each grid area, and the pattern plate is placed on the corner brackets.
[0014] Compared with the prior art, the present invention has at least one of the following beneficial effects:
[0015] This invention utilizes the mortise and tenon joint principle to fix and connect the wooden frame, making it easy to disassemble and reassemble. It also easily handles interference when assembling irregularly shaped or curved parts of the product. (Steel frame structures are cumbersome to handle; wooden structures are superior to steel frame structures.) This facilitates on-site assembly and future maintenance, and makes transportation convenient. The mortise and tenon structure effectively resists external forces from different directions, making the product more stable and durable. Minor structural deformations in the wooden structure can be self-corrected through fine adjustments between the mortise and tenon joints, extending its service life. The platform module surface is covered with high-strength safety glass, and the bottom is laser-engraved with luminous patterns. LED lights are integrated into the luminous pattern layer within the engraved pattern grooves. The lighting effect is clearer and more eye-catching. The modules are connected by tenons, ensuring stability while facilitating disassembly and reassembly. No complex tools or professional skills are required, making installation easy and greatly improving installation efficiency. When a single module is damaged, only that module needs to be replaced, rather than the entire platform structure, reducing maintenance costs and saving time. The bottom and sides of the glass are insulated with soft rubber strips, effectively solving the problem of thermal expansion and contraction. The surfaces between the glass panes are finished with adhesive to create lines, providing both a seal and a decorative effect. The wooden support frame features limiting baffles for easy positioning and fixing of the side rubber strips, allowing for quick and easy installation. Patterns and lighting effects can be easily updated to adapt to changing design trends or user preferences, extending the decorative lifespan and keeping the space fresh. Utilizing low-energy LED light sources and environmentally friendly materials, combined with a light sensor, it automatically adjusts brightness and color, ensuring both aesthetics and environmental friendliness and economy. This invention significantly enhances brand image, attracts customers, and increases commercial value. Attached Figure Description
[0016] Figure 1 This is a front view of a glass platform structure.
[0017] Figure 2 for Figure 1 A sectional view of plane A1-A1;
[0018] Figure 3 for Figure 2 Enlarged view of section I;
[0019] Figure 4 for Figure 2 Enlarged view of Part II;
[0020] Figure 5 for Figure 1 A sectional view of plane A2-A2;
[0021] Figure 6 This is a schematic diagram of the wooden support structure;
[0022] Figure 7 for Figure 6 A sectional view of plane X1-X1;
[0023] Figure 8 for Figure 6 A sectional view of the X2-X2 plane;
[0024] Figure 9 for Figure 6 Enlarged view of Part III;
[0025] Figure 10 for Figure 9 Schematic diagram of the unfolded structure;
[0026] Figure 11 This is a schematic diagram of the outer frame structure;
[0027] Figure 12 for Figure 11 Enlarged view of section IV;
[0028] Figure 13 for Figure 12 Schematic diagram of the unfolded structure;
[0029] Figure 14 This is a schematic diagram of the internal frame structure;
[0030] Figure 15 for Figure 14 Enlarged view of the middle V section;
[0031] Figure 16 for Figure 15 Schematic diagram of the unfolded structure;
[0032] Figure 17 This is a structural schematic diagram of the edge banding panel. Detailed Implementation
[0033] To make this utility model more apparent and understandable, preferred embodiments are described in detail below with reference to the accompanying drawings.
[0034] This utility model provides a glass platform structure, such as Figures 1-17 As shown, it includes a wooden support 1, which consists of an outer frame 110 and an inner frame 120.
[0035] The wooden support 1 is surrounded by an outer frame 110, which is composed of multiple wooden strips. Each wooden strip has a recess 1101 at one end and a protrusion 1102 at the other end. The protrusion 1102 end of one wooden strip is inserted into the recess 1101 end of another wooden strip to connect and fix it. This process is repeated to connect and fix the strips, forming the outer frame 110.
[0036] The horizontal bars 1201 of the inner frame 120 have first inclined surfaces 1201-1 at both ends and an inclined opening 1201-2 at the middle connection. The vertical bars 1202 have second inclined surfaces 1202-1 at both ends. The horizontal bars 1201 and the vertical bars 1202 both have grooves 1203 in the middle of their surfaces. Limiting baffles 6 are installed. The second inclined surface 1202-1 at one end of the vertical bar 1202 is inserted into the inclined opening 1201-2 of the horizontal bar 1201. This process is repeated to fix and connect the inner frame 120 into multiple crosses.
[0037] Then, the outer frame 110 and the inner frame 120 are assembled and installed. The first inclined surface 1201-1 at one end of the horizontal bar 1201 and the second inclined surface 1202-1 at one end of the vertical bar 1202 of the inner frame 120 are fixedly connected to the inner groove 1103 of the outer frame 110, respectively. A connector 8 is installed at each connection point. One end of the connector 8 is fixedly connected to the outer frame 110 by screws 13, and the other end is fixedly connected to the horizontal bar 1201 and the vertical bar 1202 by screws 13. A wooden support 1 is formed. Multiple diamond-shaped frames are formed inside the wooden support 1. A wiring hole 1204 is opened at the bottom of the diamond-shaped frame. An angle bracket 2 is installed around the halfway point of the diamond-shaped frame. A pattern plate 3 is installed on the angle bracket 2. A pattern groove 301 is laser-engraved in the middle of the pattern plate 3. An LED light 4 is installed in the pattern groove 301. An adhesive layer 10 is applied around the pattern plate 3 for fixation.
[0038] A limiting baffle strip 6 is installed in the groove 1203 on the surface of the wooden support 1. Soft rubber strips 5 are installed on both sides of the limiting baffle strip 6 and on the surface of the wooden support 1. An edge banding plate 9 is installed around the wooden support 1. The first leg 901 at one end of the edge banding plate 9 is placed on the outer frame 110 of the wooden support 1 and fixed with screws 13. A transformer 14 is installed in the space covered by the edge banding plate 9 and fixed to the ground 16. The second leg 902 at the other end of the edge banding plate 9 is connected to the ground 16. The edge banding plate 9 forms a slope 903 from the wooden support 1 to the ground 16. Soft rubber strips 5 are installed on the bottom plane and sides of the first leg 901, and two soft rubber strips 5 are installed on the sides. A limiting baffle strip 6 is installed between the two soft rubber strips 5. Then, the... Figure 1 Middle ①- Glass 7 is placed on the soft rubber strip 5, and each glass 7 is separated by the soft rubber strip 5. One corner of glass 7 is cut off, and a stainless steel bending piece 11 is installed at the cut-off point. A ground plug 12 is installed in the middle of the bending piece 11. The adhesive layer 10 is also applied around the bending piece 11. Then, decorative lines are formed at the positions of the glass 7 and glass 7 on the soft rubber strip 5 and the adhesive layer 10 on the surrounding surface.
Claims
1. A glass hearth structure, characterized by, The wood support (1) comprises an outer frame (110) and an inner frame (120), the outer frame (110) is connected to the four sides of the inner frame (120) by tenon and mortise, the inner frame (120) is composed of a plurality of cross frames, the inner frame (120) cooperates with the outer frame (110) to form a plurality of grid areas, a pattern plate (3) is connected to each grid area on the inner frame (120), the pattern plate (3) is provided with a pattern groove (301), an LED lamp (4) is arranged in the pattern groove (301), a glass (7) is arranged on each grid area, a limiting baffle strip (6) is arranged on the wood support (1) to limit the position of each glass (7), a surrounding edge plate (9) is arranged around the outer frame (110), and a transformer (14) is arranged below the surrounding edge plate (9); one glass (7) is provided with a ground plug (12) for connecting a power supply, the transformer (14) is connected with the ground plug (12) and each LED lamp (4) through wires respectively, and a buffer pad is arranged on the contact part around each glass (7).
2. A hearth structure as claimed in claim 1, wherein, The buffer pad is a soft rubber strip (5), the soft rubber strips (5) are arranged on both sides of all the limiting baffle strips (6) and the surface of the wood support (1), and the bottom surface and the side surface of the surrounding edge plate (9) at the connecting position with the outer frame (110) are provided with the soft rubber strips (5).
3. A hearth structure as claimed in claim 2, wherein, Any two adjacent glasses (7) are spaced by the limiting baffle strips (6), and the glass (7) and the limiting baffle strip (6) are connected by the soft rubber strips (5).
4. A hearth structure as claimed in claim 1, wherein, A rubber layer (10) is arranged above the buffer pad and the limiting baffle strip (6) between the adjacent two glasses (7), and the rubber layer (10) is arranged at the connecting position of the inner frame (120) and the pattern plate (3).
5. A hearth structure as claimed in claim 1, wherein, One end of the surrounding edge plate (9) is fixed on the outer frame (110), and the other end is fixed on the ground (16); the transformer (14) is arranged in the space covered by the surrounding edge plate (9), and the transformer (14) is fixed on the ground (16).
6. A glass hearth structure as claimed in claim 5, wherein, The surrounding edge plate (9) is provided with a first supporting leg (901) and a second supporting leg (902) at two ends respectively, the first supporting leg (901) is connected to the outer frame (110) of the wood support (1), the second supporting leg (902) is connected to the ground (16), and the surrounding edge plate (9) forms an inclined surface (903) from the wood support (1) to the ground (16).
7. A hearth structure as claimed in claim 1, wherein, The ground plug (12) is arranged in a bent piece (11), and the bent piece (11) is located at the position of the cut corner of the glass (7); the bent piece (11) is provided with a rubber layer (10) around.
8. A hearth structure as claimed in claim 1, wherein, The outer frame (110) is composed of a plurality of wood strips connected to each other, one end of each wood strip is provided with a recess (1101), and the other end is provided with a protrusion (1102); in any two adjacent wood strips, the protrusion (1102) of one wood strip is inserted into the recess (1101) of the other wood strip and is fixedly connected.
9. A glass hearth structure as claimed in claim 8, characterised in that, The inner frame (120) is composed of a plurality of cross-connected crosspieces (1201) and vertical pieces (1202), each crosspiece (1201) is provided with a first inclined surface (1201-1) at both ends and an inclined opening (1201-2) at the middle position, each vertical piece (1202) is provided with a second inclined surface (1202-1) at both ends, the second inclined surface (1202-1) at one end of the vertical piece (1202) is clamped into the inclined opening (1201-2) of the crosspiece (1201); the middle of the surface of the crosspiece (1201) and the vertical piece (1202) is provided with a groove (1203), and a limiting baffle strip (6) is inserted in the groove (1203).
10. A glass hearth structure as claimed in claim 9, wherein, The first inclined surface (1201-1) at one end of the crosspiece (1201) and the second inclined surface (1202-1) at one end of the vertical piece (1202) of the inner frame (120) are connected with the inner groove (1103) of the outer frame (110) by a mortise and tenon method respectively; a connecting piece (8) is arranged at each mortise and tenon connection, one end of the connecting piece (8) is fixedly connected with the outer frame (110) by a screw (13), and the other end is fixedly connected with the crosspiece (1201) and the vertical piece (1202) by a screw (13); a wire hole (1204) is arranged at the bottom of each grid area of the inner frame (120); an angle code (2) is connected around one half of each grid area, and a pattern plate (3) is arranged on the angle code (2).