Breathable tile clamped in two directions

By designing a two-way interlocking breathable tile, utilizing the plate-shaped breathable tile body, hollow protrusions, and connecting structure, the problem of tiles falling off in strong winds is solved, achieving a stable connection and breathability, and improving the safety and comfort of the building.

CN224016634UActive Publication Date: 2026-03-20EAST CHINA UNIV OF TECH
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-15
Publication Date
2026-03-20

AI Technical Summary

Technical Problem

Most of the existing tiles are individual pieces, lacking a connecting structure, making them prone to falling off in strong winds and posing a safety hazard.

Method used

A two-way interlocking breathable tile is designed. By setting up a plate-shaped breathable tile body, hollow protrusions, reinforcing support strips, anti-collision protective layer, waterproof protective layer, upper and lower connecting strips and toothed strips, the tile can achieve a stable connection and breathable function.

Benefits of technology

It improves the stability and ease of installation of the tiles, reduces the risk of tiles falling off due to natural factors such as wind, and ensures the safety and breathability of the building.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the field of breathable tiles, in particular to a two-way clamped breathable tile. According to the technical scheme, an upper-end rack is arranged on an upper-end connecting strip, a lower-end connecting strip is arranged on the other side of a plate-shaped breathable tile body, a lower-end rack is arranged on the lower-end connecting strip, open holes are formed in the upper-end connecting strip and the lower-end connecting strip, the upper-end rack is connected with a strip-shaped lower-end breathable tile body in a wedge-shaped mode, and the lower-end rack is connected with a strip-shaped upper-end breathable tile body in a wedge-shaped mode. The plate-shaped breathable tile body is arranged to provide a covering main body, the reinforcing supporting strips are arranged in the hollow protruding blocks to enhance the reinforcing and supporting effects, the anti-collision protection layer performs anti-collision buffering protection work, and the waterproof protection layer performs waterproof protection. The upper end rack is fixed by the upper end connecting strip, the lower end rack is fixed by the lower end connecting strip, wedge-shaped connection can be carried out, bidirectional clamping connection can be realized, the strip-shaped upper end breathable tile body and the strip-shaped lower end breathable tile body can be independently connected, and the whole structure is prepared by adopting a microporous material based on a foaming process.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the field of ventilated tile, especially bidirectional clamping's ventilated tile. BACKGROUND

[0002] Bidirectional clamping's ventilated tile is a kind of building material with unique connecting mode and ventilating function.

[0003] Existing tiles are mostly individual, and lack connecting structure between individual tiles, which may cause individual tiles to fall off and cause safety hazards when used in windy conditions.

[0004] Therefore, in view of the above-mentioned existing tiles are mostly individual, and lack connecting structure between individual tiles, which may cause individual tiles to fall off, a bidirectional clamping's ventilated tile can be designed to solve the above-mentioned problems. SUMMARY

[0005] In order to overcome the shortcomings of the existing tiles being mostly individual, and lacking connecting structure between individual tiles, which may cause individual tiles to fall off and cause safety hazards when used in windy conditions.

[0006] The technical scheme of the utility model is: bidirectional clamping's ventilated tile, including plate-shaped ventilated tile body, hollow convex block, reinforcing support bar, anti-collision protective layer, waterproof protective layer, upper end connecting strip, upper end rack, lower end connecting strip, lower end rack, opening, strip-shaped upper end ventilated tile body, strip-shaped lower end ventilated tile body, hollow convex block is arranged on plate-shaped ventilated tile body, reinforcing support bar is arranged in the inside of hollow convex block, anti-collision protective layer is arranged on the outside of plate-shaped ventilated tile body, waterproof protective layer is arranged on the outside of anti-collision protective layer, one side of plate-shaped ventilated tile body is provided with upper end connecting strip, upper end rack is arranged on upper end connecting strip, the other side of plate-shaped ventilated tile body is provided with lower end connecting strip, lower end rack is arranged on lower end connecting strip, opening is arranged on upper end connecting strip and lower end connecting strip, strip-shaped lower end ventilated tile body is connected with wedge-shaped upper end rack, strip-shaped upper end ventilated tile body is connected with wedge-shaped lower end rack.

[0007] Preferably, the plate-shaped ventilated tile body is square plate-shaped structure, three hollow convex blocks are evenly distributed on the plate-shaped ventilated tile body.

[0008] Preferably, nine reinforcing support bars are arranged in each hollow convex block, and the reinforcing support bars are evenly distributed in the hollow convex block.

[0009] Preferably, the anti-collision protective layer and the waterproof protective layer are arranged on the upper and lower ends of the plate-shaped ventilated tile body, the anti-collision protective layer is arranged on the outside of the plate-shaped ventilated tile body, and the waterproof protective layer is arranged on the outside of the anti-collision protective layer.

[0010] Preferably, the upper connecting strip and the upper toothed rack are set as one set and fixed on one side of the plate-shaped breathable tile body, and the lower connecting strip and the lower toothed rack are set as another set and fixed on the other side of the plate-shaped breathable tile body. The upper toothed rack and the lower toothed rack are connected by a wedge-shaped groove.

[0011] Preferably, the openings are respectively penetrated by the upper connecting strip and the upper toothed rack, the lower connecting strip and the lower toothed rack, and the strip-shaped upper and lower breathable tile bodies.

[0012] Preferably, the upper and lower strip-shaped breathable tiles are separate entities, with the upper strip-shaped toothed rack wedge-connected to the lower strip-shaped breathable tile and the lower strip-shaped toothed rack wedge-connected to the upper strip-shaped breathable tile. The overall structure of the plate-shaped breathable tile is made of microporous material using a foaming process.

[0013] The beneficial effects of this utility model are:

[0014] 1. The main body of the roof is provided by a plate-shaped breathable tile, with reinforcing support strips inside the hollow protrusions to enhance the reinforcement and support effect. An anti-collision protective layer provides impact cushioning protection, and a waterproof protective layer provides waterproof protection. The upper connecting strip fixes the upper toothed rack, and the lower connecting strip fixes the lower toothed rack, allowing for a wedge-shaped connection and bidirectional snap-fit. Through-holes facilitate ventilation. The strip-shaped upper and lower breathable tiles can be connected individually or connected to the upper and lower toothed racks. This design overcomes the shortcomings of existing tiles, which are mostly individual units lacking connecting structures, potentially causing individual tiles to fall off in strong winds and creating safety hazards. The overall structure is made of microporous material using a foaming process. Attached Figure Description

[0015] Figure 1 The diagram shown is a three-dimensional structural schematic of the two-way snap-fit ​​breathable tile of this utility model.

[0016] Figure 2 The diagram shown is a schematic of the upper toothed rack of the bidirectional snap-fit ​​breathable tile of this utility model.

[0017] Figure 3 The diagram shown is a schematic of the upper end of the bidirectional snap-fit ​​breathable tile strip of this utility model.

[0018] Figure 4 The diagram shown is a schematic of the bidirectional snap-fit ​​breathable tile reinforcement support strip of this utility model;

[0019] Explanation of reference signs: 1, plate-shaped breathable tile body; 2, hollow protrusion; 3, reinforcing support strip; 4, anti-collision protective layer; 5, waterproof protective layer; 6, upper end connecting strip; 7, upper end rack; 8, lower end connecting strip; 9, lower end rack; 10, opening; 11, strip-shaped upper end breathable tile body; 12, strip-shaped lower end breathable tile body. DETAILED DESCRIPTION

[0020] The utility model will be further explained in connection with the drawings and examples.

[0021] Among the existing technologies that have been found to be implemented, the bidirectional clamping breathable tile is a building material with a unique connection method and ventilation function. Here is an introduction to its related features:

[0022] Structural features

[0023] Clamping structure: The bidirectional clamping breathable tile is designed with a matching clamping structure at the edge or a specific part, usually including a protrusion and a groove. This structure allows the tile to be clamped in one direction and securely connected in the other direction when installed, forming a stable laying structure.

[0024] Ventilation design: The breathable tile is equipped with a special ventilation channel or ventilation hole. These ventilation channels can be small holes that pass through the tile body, or hollow structures or gaps formed inside the tile to ensure that air can flow between the tiles and between the tiles and the interior space of the building.

[0025] Working principle

[0026] Air circulation: Because the breathable tile has a ventilation channel, when the external air temperature, humidity, and other conditions differ from the interior of the building, air will flow through the ventilation channel of the breathable tile under the action of pressure difference. For example, in hot weather, the hot air inside the building can be discharged through the breathable tile, while the cold air outside can enter, achieving natural convection of air, which helps to reduce indoor temperature and improve the thermal environment indoors.

[0027] Waterproof and ventilation balance: While achieving the ventilation function, the breathable tile also needs to ensure certain waterproof performance. Special materials or designs are usually used to prevent liquid water such as rainwater from entering the building interior through the ventilation channel. For example, using materials with hydrophobic properties to make the breathable tile, or setting up a waterproof film inside the ventilation channel.

[0028] Advantages

[0029] Good ventilation: It can effectively improve the air circulation in the building interior, regulate indoor humidity and temperature, reduce problems such as dampness and stuffiness, and improve the comfort of living or using.

[0030] Convenient installation: The two-way clamping structure makes the installation of tiles more convenient and fast, without the need for complex tools and techniques, reducing construction costs and difficulty. At the same time, this connection method also improves the stability and firmness of tile paving, reducing the possibility of tile falling off due to wind, rain and other natural factors.

[0031] Aesthetically pleasing and practical: It not only has the functions of ventilation and waterproofing, but also has a certain decorative appearance, which can match various architectural styles and improve the overall aesthetics of the building.

[0032] Application scenarios

[0033] Residential buildings: Commonly used in roof, wall and other parts, especially in some rooms that require good ventilation, such as bedrooms, kitchens, bathrooms, etc., which can effectively improve indoor air quality and prevent mold growth.

[0034] Industrial buildings: For some industrial plants that require high ventilation, such as electronics factories, food factories, etc., breathable tiles can help to exhaust indoor heat, humidity and harmful gases, keeping the air in the plant fresh, which is beneficial to the improvement of production environment and the normal operation of equipment.

[0035] Agricultural buildings: In greenhouses, breeding farms and other agricultural buildings, breathable tiles can adjust the indoor temperature and humidity, providing suitable environmental conditions for crop growth or poultry and livestock breeding.

[0036] Please refer to Figures 1-4The utility model provides a kind of embodiment: two-way clamping's ventilated tile, including plate-shaped ventilated tile body 1, hollow boss 2, reinforcing support 3, anti-collision protective layer 4, waterproof protective layer 5, upper end connecting strip 6, upper end rack 7, lower end connecting strip 8, lower end rack 9, aperture 10, strip-shaped upper end ventilated tile body 11, strip-shaped lower end ventilated tile body 12, plate-shaped ventilated tile body 1 is provided with hollow boss 2, the inside of hollow boss 2 is provided with reinforcing support 3, the outside of plate-shaped ventilated tile body 1 is provided with anti-collision protective layer 4, the outside of anti-collision protective layer 4 is provided with waterproof protective layer 5, one side of plate-shaped ventilated tile body 1 is provided with upper end connecting strip 6, and upper end connecting strip 6 is provided with upper end rack 7, the other side of plate-shaped ventilated tile body 1 is provided with lower end connecting strip 8, and lower end connecting strip 8 is provided with lower end rack 9, and aperture 10 is provided on upper end connecting strip 6 and lower end connecting strip 8, and strip-shaped lower end ventilated tile body 12 is wedge-shapedly connected with upper end rack 7, and strip-shaped upper end ventilated tile body 11 is wedge-shapedly connected with lower end rack 9.The plate-shaped ventilated tile body 1 provides cover main body, and hollow boss 2 is provided with reinforcing support 3 inside to strengthen reinforcement and support effect.Anti-collision protective layer 4 carries out anti-collision buffering protection work, and waterproof protective layer 5 carries out waterproof protection.The plate-shaped ventilated tile body 1 is provided as square plate structure, hollow boss 2 is provided with three, and evenly distributed and arranged on plate-shaped ventilated tile body 1.Each hollow boss 2 is provided with nine reinforcing supports 3, and reinforcing support 3 is evenly distributed and arranged in hollow boss 2.Anti-collision protective layer 4 and waterproof protective layer 5 are respectively arranged on the upper and lower ends of plate-shaped ventilated tile body 1, and anti-collision protective layer 4 is arranged on the outside of plate-shaped ventilated tile body 1, and waterproof protective layer 5 is arranged on the outside of anti-collision protective layer 4.Upper end connecting strip 6 and upper end rack 7 are provided as a group, and are fixed on one side of plate-shaped ventilated tile body 1, and lower end connecting strip 8 and lower end rack 9 are another group, and are fixed on the other side of plate-shaped ventilated tile body 1, and upper end rack 7 and lower end rack 9 are provided as wedge-shaped slot connection.Aperture 10 is respectively penetrated with upper end connecting strip 6 and upper end rack 7, lower end connecting strip 8 and lower end rack 9 and strip-shaped upper end ventilated tile body 11 and strip-shaped lower end ventilated tile body 12.Strip-shaped upper end ventilated tile body 11 and strip-shaped lower end ventilated tile body 12 are provided as separate individuals, and upper end rack 7 is wedge-shapedly connected with strip-shaped lower end ventilated tile body 12, and lower end rack 9 is wedge-shapedly connected with strip-shaped upper end ventilated tile body 11.Upper end connecting strip 6 fixes upper end rack 7, and lower end connecting strip 8 fixes lower end rack 9, can carry out wedge-shaped connection, realize two-way clamping, aperture 10 is penetrated to facilitate ventilation, and strip-shaped upper end ventilated tile body 11 and strip-shaped lower end ventilated tile body 12 can be connected separately, and also can be connected with upper end rack 7 and lower end rack 9 for use.

[0037] In the process of working, the plate-shaped breathable tile body 1 provides a covering main body, the hollow convex block 2 is provided with the reinforcing support strip 3 to strengthen the reinforcing and supporting effect. The anti-collision protection layer 4 performs the anti-collision buffering protection work, and the waterproof protection layer 5 performs the waterproof protection. The upper end connecting strip 6 fixes the upper end rack 7, the lower end connecting strip 8 fixes the lower end rack 9, wedge-shaped connection can be performed, bidirectional clamping is realized, the hole 10 is penetrated through to facilitate ventilation, the strip-shaped upper end breathable tile body 11 and the strip-shaped lower end breathable tile body 12 can be connected separately or can be connected with the upper end rack 7 and the lower end rack 9 for use, and all the work is completed.

[0038] Through the above steps, by setting the plate-shaped breathable tile body 1 to provide a covering main body, the hollow convex block 2 is provided with the reinforcing support strip 3 to strengthen the reinforcing and supporting effect. The anti-collision protection layer 4 performs the anti-collision buffering protection work, and the waterproof protection layer 5 performs the waterproof protection. The upper end connecting strip 6 fixes the upper end rack 7, the lower end connecting strip 8 fixes the lower end rack 9, wedge-shaped connection can be performed, bidirectional clamping is realized, the hole 10 is penetrated through to facilitate ventilation, the strip-shaped upper end breathable tile body 11 and the strip-shaped lower end breathable tile body 12 can be connected separately or can be connected with the upper end rack 7 and the lower end rack 9 for use. The defects that most of the existing tiles are separate individuals, and there is a lack of connecting structure between the separate tiles, and the separate tiles may fall off and cause safety hazards when used in a strong wind, are overcome, and the overall structure is made of microporous material based on a foaming method process.

[0039] The embodiments of the utility model are described in detail above in combination with the drawings, but the utility model is not limited to the above-mentioned embodiments, and various changes can be made within the knowledge range of the person skilled in the art without departing from the purpose of the utility model.

Claims

1. A bidirectional snap-fit ​​breathable tile, comprising a plate-shaped breathable tile body (1), characterized in that: It also includes hollow protrusions (2), reinforcing support strips (3), anti-collision protective layers (4), waterproof protective layers (5), upper connecting strips (6), upper toothed strips (7), lower connecting strips (8), lower toothed strips (9), openings (10), strip-shaped upper breathable tile bodies (11), and strip-shaped lower breathable tile bodies (12). Hollow protrusions (2) are provided on the plate-shaped breathable tile bodies (1). Reinforcing support strips (3) are provided inside the hollow protrusions (2). Anti-collision protective layers (4) are provided on the outside of the plate-shaped breathable tile bodies (1). The exterior is provided with a waterproof protective layer (5). One side of the plate-shaped breathable tile body (1) is provided with an upper connecting strip (6) and an upper toothed strip (7). The other side of the plate-shaped breathable tile body (1) is provided with a lower connecting strip (8) and a lower toothed strip (9). The upper connecting strip (6) and the lower connecting strip (8) are provided with openings (10). The upper toothed strip (7) is wedge-connected to the strip-shaped lower breathable tile body (12), and the lower toothed strip (9) is wedge-connected to the strip-shaped upper breathable tile body (11).

2. The bidirectional snap-fit ​​breathable tile according to claim 1, characterized in that: The plate-shaped breathable tile body (1) is set as a square plate structure, and three hollow protrusions (2) are set and evenly distributed on the plate-shaped breathable tile body (1).

3. The bidirectional snap-fit ​​breathable tile according to claim 1, characterized in that: Each hollow protrusion (2) is provided with nine reinforcing support bars (3), which are evenly distributed within the hollow protrusion (2).

4. The bidirectional snap-fit ​​breathable tile according to claim 1, characterized in that: The anti-collision protective layer (4) and the waterproof protective layer (5) are respectively set at the upper and lower ends of the plate-shaped breathable tile body (1). The anti-collision protective layer (4) is set on the outside of the plate-shaped breathable tile body (1), and the waterproof protective layer (5) is set on the outside of the anti-collision protective layer (4).

5. The bidirectional snap-fit ​​breathable tile according to claim 1, characterized in that: The upper connecting strip (6) and the upper toothed rack (7) are set as one set and fixed on one side of the plate-shaped breathable tile body (1). The lower connecting strip (8) and the lower toothed rack (9) are another set and fixed on the other side of the plate-shaped breathable tile body (1). The upper toothed rack (7) and the lower toothed rack (9) are set as wedge-shaped groove connections.

6. The bidirectional snap-fit ​​breathable tile according to claim 1, characterized in that: The opening (10) is respectively penetrated by the upper connecting strip (6) and the upper toothed rack (7), the lower connecting strip (8) and the lower toothed rack (9), the upper strip-shaped breathable tile (11) and the lower strip-shaped breathable tile (12).

7. The bidirectional snap-fit ​​breathable tile according to claim 1, characterized in that: The upper strip-shaped breathable tile (11) and the lower strip-shaped breathable tile (12) are set as separate individuals, and the upper toothed rack (7) is wedge-connected to the lower strip-shaped breathable tile (12), and the lower toothed rack (9) is wedge-connected to the upper strip-shaped breathable tile (11). The overall structure of the plate-shaped breathable tile (1) is made of microporous material based on the foaming process.