Metal composite tile
By adopting a combination design of oblique insert blocks and connecting chutes in metal composite tiles, the water leakage problems caused by loose tiles and gap formation are solved, and better waterproofing is achieved.
Patent Information
- Application Number
- CN202422248769.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-13
- Publication Date
- 2025-06-24
- Estimated Expiration
- 2034-09-13
AI Technical Summary
After the existing metal composite tiles are used for too long, the screws are prone to rust, causing loose tiles and gaps to form, which in turn leads to water leakage on the roof.
A combination design of oblique insertion block and connecting chute is adopted. The oblique insertion block is inserted into the connection oblique chute to form an oblique barrier groove to prevent rainwater from flowing in, and a sealing flange is provided to prevent the formation of tile gaps.
It effectively improves the waterproof effect of metal composite tiles, ensuring that rainwater does not enter the house, and this design will not fail due to long-term use.
Smart Images

Figure CN223018001U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the technical field of tiles, in particular to a metal composite tile. Background Art
[0002] The metal composite tile is a new type of environmentally friendly roofing material, which is formed by high-temperature and high-pressure compounding of 3003 series aluminum-manganese alloy and modified asphalt base. This material is not only durable and has a long service life, so it has a good reputation in the construction industry.
[0003] For the installation of metal composite tiles, the method adopted in the prior art is to install the metal composite tiles on the roof in an inclined manner, one on top of the other, and then fix each metal composite tile with screws so that each metal composite tile fits together to ensure the waterproof effect of the metal composite tile.
[0004] However, after being used for a period of time, since the screws often come into contact with rainwater, the screws rust, so that when the metal composite tile is vibrated, the screws are likely to become loose, and the loose screws will cause gaps between each metal composite tile, resulting in roof leakage for users. Therefore, a metal composite tile with better waterproof effect is needed. Summary of the Utility Model
[0005] Aiming at the deficiencies of the prior art, the purpose of this application is to provide a metal composite tile to solve the technical problem of poor waterproof effect of the metal composite tile in the prior art after being used for too long.
[0006] The above purpose of this application is achieved through the following technical solutions: A metal composite tile includes a first tile, a connecting tile, and a last tile. One end of the first tile is installed at the uppermost end of the roof, and the other end is connected to the connecting tile. The other end of the connecting tile is connected to the last tile. Connecting inclined grooves are provided on the upper surfaces of the end of the last tile close to the connecting tile and the end of the connecting tile close to the first tile. Oblique insertion blocks for inserting into the connecting inclined grooves are fixedly provided on the lower surfaces of the end of the first tile close to the connecting tile and the end of the connecting tile close to the last tile.
[0007] By adopting the above technical solutions, first install the last tile on the lowermost end of the roof in an inclined manner, then align the oblique insertion block of the connecting tile with the connecting inclined groove and insert it so that the connecting tile is installed on the last tile, and then keep laying. When approaching the uppermost end of the roof, align the oblique insertion block of the first tile with the connecting inclined groove of the connecting tile and insert it, and then fix the first tile. Through the cooperation of the connecting inclined groove and the oblique insertion block, an inclined blocking groove appears between each front and rear tile. When rainwater flows to the inclined blocking groove, it will be blocked by the oblique insertion block, thus preventing rainwater from flowing into the house, and the cooperation of the connecting inclined groove and the oblique insertion block will not change due to long-term use, improving the waterproof effect of the metal composite tile.
[0008] Furthermore, sealing flanges extend from both sides of the inclined insertion block of the tail tile near the end of the tail tile and both sides of the inclined insertion block of the connecting tile near the end of the connecting tile. The sealing flanges are integrally connected to the inclined insertion blocks.
[0009] By adopting the above technical solution, although the connection chute and the inclined insertion block improve the waterproof effect of the metal composite tile, the connection chute is opened on the tile, which results in that the connection chute cannot completely penetrate both sides of the tile. If it penetrates, there will be gaps causing water leakage. If it does not penetrate, when the inclined insertion block is inserted into the connection chute, the upper surface of the non-fully penetrated part is not blocked, resulting in gaps between two adjacent tiles on the left and right. The setting of the sealing flange solves this technical problem. The sealing flange is arranged on both sides of the inclined insertion block, so that when the inclined insertion block is inserted into the connection chute, the sealing flange blocks the upper surface of the non-fully penetrated part, and gaps between two adjacent tiles on the left and right will not occur, further improving the waterproof effect of the metal composite tile.
[0010] Furthermore, a fixing structure for fixing the tail tile is provided at one end of the tail tile away from the connecting tile.
[0011] Furthermore, the fixing structure includes a fixing inclined piece fixedly connected to the tail tile and a fixing screw horizontally passing through the fixing inclined piece. The fixing inclined piece is arranged on the lower surface of the tail tile and extends downward.
[0012] By adopting the above technical solution, although the connection chute and the inclined insertion block improve the waterproof effect of the metal composite tile, during installation, the connecting tile is installed on the tail tile through the connection chute and the inclined insertion block, resulting in that the pressure of the entire connecting tile acts on the tail tile, causing the tail tile to tilt towards the connecting tile under excessive pressure during installation, and the installation position changes, making it very inconvenient for construction workers to always press the tail tile for construction. The setting of the fixing structure solves this technical problem. When installing the tail tile, by buckling the fixing inclined piece at the eaves and then driving in the fixing screw to fix the tail tile, the tail tile will not move, making it more convenient for construction workers to construct.
[0013] Furthermore, a connecting structure for fixing the first tile is provided at one end of the first tile away from the connecting tile.
[0014] Furthermore, the connecting structure includes a connecting piece fixedly connected to the first tile and a connecting screw horizontally passing through the connecting piece. The connecting piece is arranged on the upper surface of the first tile and extends upward.
[0015] By adopting the above technical solution, although the setting of the fixed structure makes it more convenient for construction workers to construct, since the pressure exerted on the end tile by the fixed connecting tile will not cause the end tile to move, but will cause the end tile to bear too much pressure and break, the setting of the connecting structure solves this technical problem. After installing the end tile, by attaching the connecting piece to the top beam of the roof and then driving in the connecting screw to fix the first tile, construction workers can install from both the head and tail ends, reducing the pressure on the end tile and preventing the end tile from breaking.
[0016] Furthermore, plug-in structures for enhancing the connection of tiles on both left and right sides are provided on both sides of the first tile, both sides of the connecting tile, and both sides of the end tile.
[0017] Furthermore, the plug-in structure includes plug-in openings formed on one side of the first tile, one side of the connecting tile, and one side of the end tile, and plug-in blocks fixedly arranged on the other side of the first tile, the other side of the connecting tile, and the other side of the end tile.
[0018] By adopting the above technical solution, construction workers can start installing tiles from both sides of the roof, making it more convenient for construction workers to install tiles as the subsequent installation of tiles can refer to the plug-in structure. Moreover, by inserting the plug-in block into the plug-in opening, the connection between each tile can be strengthened, preventing the tiles from slipping.
[0019] In summary, the present application includes at least one of the following beneficial technical effects:
[0020] 1. Through the setting of the inclined insertion block and the connecting inclined groove, the end tile is installed obliquely at the lowest end of the roof. Then, the inclined insertion block of the connecting tile is aligned with the connecting inclined groove and inserted, so that the connecting tile is installed on the end tile. Then, continue to lay. When approaching the uppermost end of the roof, the inclined insertion block of the first tile is aligned with the connecting inclined groove of the connecting tile and inserted, and then the first tile is fixed. Through the cooperation of the connecting inclined groove and the inclined insertion block, an inclined water retaining groove appears between each front and rear tile. When rainwater flows to the inclined water retaining groove, it will be blocked by the inclined insertion block, thus preventing rainwater from flowing into the house. Moreover, the cooperation of the connecting inclined groove and the inclined insertion block will not change due to long-term use, achieving the purpose of improving the waterproof effect of the metal composite tile.
[0021] 2. Through the setting of the fixed structure, when installing the end tile, by buckling the fixed inclined piece at the eaves and then driving in the fixed screw to fix the end tile, the end tile will not move, achieving the purpose of making it more convenient for construction workers to construct.
[0022] 3. Through the setting of the connecting structure, after installing the end tile, by attaching the connecting piece to the top beam of the roof and then driving in the connecting screw to fix the first tile, construction workers can install from both the head and tail ends, reducing the pressure on the end tile and preventing the end tile from breaking. BRIEF DESCRIPTION OF THE DRAWINGS
[0023] Figure 1 It is a schematic diagram of the overall structure of the embodiment;
[0024] Figure 2 is Figure 1 an enlarged view of part A in
[0025] Reference numerals: 1, first tile; 10, connecting tile; 11, last tile; 12, connecting chute; 13, inclined insertion block; 14, sealing flange; 2, fixing structure; 20, fixing inclined piece; 21, fixing screw; 3, connecting structure; 30, connecting piece; 31, connecting screw; 4, plugging structure; 40, plugging port; 41, plugging block. Specific embodiments
[0026] The present application will be further described in detail below with reference to the accompanying drawings.
[0027] Embodiment, referring to Figure 1 , Figure 2 , a metal composite tile, including a first tile 1, a connecting tile 10 and a last tile 11. One end of the first tile 1 is installed at the uppermost end of the roof, and the other end is connected to the connecting tile 10. The other end of the connecting tile 10 is connected to the last tile 11. Connecting chutes 12 are provided on the upper surfaces of the end of the last tile 11 close to the connecting tile 10 and the end of the connecting tile 10 close to the first tile 1. Inclined insertion blocks 13 for inserting into the connecting chutes 12 are fixedly provided on the lower surfaces of the end of the first tile 1 close to the connecting tile 10 and the end of the connecting tile 10 close to the last tile 11. First, the last tile 11 is inclined and installed at the lowermost end of the roof, then the inclined insertion block 13 of the connecting tile 10 is aligned with the connecting chute 12 and inserted, so that the connecting tile 10 is installed on the last tile 11, and then it is continuously laid. When it is laid close to the uppermost end of the roof, the inclined insertion block 13 of the first tile 1 is aligned with the connecting chute 12 of the connecting tile 10 and inserted, and then the first tile 1 is fixed. Through the cooperation of the connecting chute 12 and the inclined insertion block 13, an inclined blocking groove appears between each adjacent tile. When rainwater flows to the inclined blocking groove, it will be blocked by the inclined insertion block 13, thereby preventing rainwater from flowing into the house, and the cooperation of the connecting chute 12 and the inclined insertion block 13 will not change due to long-term use, improving the waterproof effect of the metal composite tile.
[0028] Although the provision of the connecting chute 12 and the inclined insertion block 13 enhances the waterproof effect of the metal composite tile, the connecting chute 12 is opened on the tile, which results in the fact that the connecting chute 12 cannot completely penetrate both sides of the tile. If it penetrates, there will be gaps causing water leakage. If it does not penetrate, when the inclined insertion block 13 is inserted into the connecting chute 12, the upper surface of the non-completely penetrated part is not blocked, resulting in gaps between two adjacent tiles on the left and right. To solve this technical problem, in this embodiment, sealing flanges 14 extend from both sides of the inclined insertion block 13 of the end tile 11 near one end of the end tile 11 and from both sides of the inclined insertion block 13 of the connecting tile 10 near one end of the connecting tile 10. The sealing flanges 14 are integrally connected to the inclined insertion block 13 and are arranged on both sides of the inclined insertion block 13. When the inclined insertion block 13 is inserted into the connecting chute 12, the sealing flanges 14 block the upper surface of the non-completely penetrated part, preventing gaps from occurring between two adjacent tiles on the left and right and further enhancing the waterproof effect of the metal composite tile.
[0029] Although the provision of the connecting chute 12 and the inclined insertion block 13 enhances the waterproof effect of the metal composite tile, during installation, the connecting tile 10 is installed on the end tile 11 through the connecting chute 12 and the inclined insertion block 13, resulting in the entire pressure of the connecting tile 10 acting on the end tile 11, causing the pressure borne by the end tile 11 during installation to be too large, resulting in the end tile 11 tilting towards the connecting tile 10 and the installation position changing, making it very inconvenient for construction workers to need to keep pressing the end tile 11 for construction. To solve this technical problem, in this embodiment, a fixing structure 2 for fixing the end tile 11 is provided at one end of the end tile 11 away from the connecting tile 10. The fixing structure 2 includes a fixing inclined piece 20 fixedly connected to the end tile 11 and a fixing screw 21 horizontally passing through the fixing inclined piece 20. The fixing inclined piece 20 is arranged on the lower surface of the end tile 11 and extends downward. The provision of the fixing structure 2 solves this technical problem. When installing the end tile 11, by buckling the fixing inclined piece 20 at the eaves and then driving in the fixing screw 21 to fix the end tile 11 in this way, the end tile 11 will not move, making it more convenient for construction workers to construct.
[0030] Although the setting of the fixed structure 2 makes it more convenient for construction workers to construct, since the pressure exerted by the fixed connecting tile 10 on the end tile 11 will not cause the end tile 11 to move, but will cause the end tile 11 to bear too much pressure and break. To solve this technical problem, in this embodiment, a connecting structure 3 for fixing the first tile 1 is provided at one end of the first tile 1 away from the connecting tile 10. The connecting structure 3 includes a connecting piece 30 fixedly connected to the first tile 1 and a connecting screw 31 horizontally passing through the connecting piece 30. The connecting piece 30 is arranged on the upper surface of the first tile 1 and extends upward. After installing the end tile 11, by attaching the connecting piece 30 to the top beam of the roof and then driving in the connecting screw 31 to fix the first tile 1, construction workers can install from both the head and tail ends, reducing the pressure on the end tile 11 and preventing the end tile 11 from breaking.
[0031] To enhance the connection between each tile, in this embodiment, plug-in structures 4 for enhancing the connection of tiles on both left and right sides are provided on both sides of the first tile 1, both sides of the connecting tile 10, and both sides of the end tile 11. The plug-in structure 4 includes plug-in openings 40 opened on one side of the first tile 1, one side of the connecting tile 10, and one side of the end tile 11, and plug-in blocks 41 fixedly arranged on the other side of the first tile 1, the other side of the connecting tile 10, and the other side of the end tile 11. Construction workers can start installing tiles from both sides of the roof, making it more convenient for construction workers to install tiles with the reference of the plug-in structure 4 for subsequent tile installation. Moreover, by inserting the plug-in block 41 into the plug-in opening 40, the connection between each tile can be strengthened to prevent the tiles from slipping.
[0032] Specific implementation process: First, install on both sides of the roof. Buckle the fixed inclined piece 20 at the eaves and then drive in the fixed screw 21 to fix the end tile 11. Then attach the connecting piece 30 to the top beam of the roof and drive in the connecting screw 31 to fix the first tile 1. Then align the inclined insertion block 13 of the connecting tile 10 with the connecting inclined groove 12 of the end tile 11 and insert it. Incline the connecting tile 10 and extend it into the bottom end of the first tile 1 so that the connecting inclined groove 12 catches the inclined insertion block 13 of the first tile 1. Then continue to lay the connecting tile 10 to make the head and tail connected. Then install other end tiles 11, first tiles 1, and connecting tiles 10 on the roof. When installing, insert the plug-in block 41 into the plug-in opening 40.
[0033] The embodiments of this specific implementation manner are all preferred embodiments of this application, and do not limit the protection scope of the application accordingly. Therefore, all equivalent changes made according to the structure, shape, and principle of this application should be covered within the protection scope of this application.
Claims
1. A metal composite tile, characterized in that: The invention comprises a head tile (1), a connecting tile (10) and a tail tile (11); one end of the head tile (1) is installed at the top of the roof, and the other end is connected to the connecting tile (10); the other end of the connecting tile (10) is connected to the tail tile (11); the upper surface of the tail tile (11) close to the connecting tile (10) and the upper surface of the connecting tile (10) close to the head tile (1) are both provided with a connecting inclined groove (12); the lower surface of the head tile (1) close to the connecting tile (10) and the lower surface of the connecting tile (10) close to the tail tile (11) are both fixed with an inclined insertion block (13) for inserting into the connecting inclined groove (12).
2. A metal composite tile according to claim 1, characterized in that: Both sides of the oblique insertion block (13) of the tail tile (11) close to one end of the tail tile (11) and both sides of the oblique insertion block (13) of the connecting tile (10) close to one end of the connecting tile (10) are extended with blocking flanges (14), and the blocking flanges (14) are integrally connected to the oblique insertion block (13).
3. A metal composite tile according to claim 1, characterized in that: A fixing structure (2) for fixing the tail tile (11) is provided at one end of the tail tile (11) away from the connecting tile (10).
4. A metal composite tile according to claim 3, characterized in that: The fixing structure (2) comprises a fixing bevel plate (20) fixedly connected to the tail tile (11) and a fixing screw (21) transversely passing through the fixing bevel plate (20); the fixing bevel plate (20) is arranged on the lower surface of the tail tile (11) and extends downward.
5. The metal composite tile according to claim 1, characterized in that: A connection structure (3) for fixing the first tile (1) is provided at one end of the first tile (1) away from the connection tile (10).
6. A metal composite tile according to claim 5, characterized in that: The connection structure (3) comprises a connection piece (30) fixedly connected to the head tile (1) and a connection screw (31) passing through the connection piece (30) transversely. The connection piece (30) is arranged on the upper surface of the head tile (1) and extends upward.
7. The metal composite tile according to claim 1, characterized in that: Both sides of the first tile (1), both sides of the connecting tile (10) and both sides of the tail tile (11) are provided with plug-in structures (4) for strengthening the connection between the tiles on the left and right sides.
8. A metal composite tile according to claim 7, characterized in that: The plug-in structure (4) comprises a plug-in interface (40) provided on one side of the first tile (1), one side of the connection tile (10) and one side of the tail tile (11), and a plug-in block (41) fixedly arranged on the other side of the first tile (1), the other side of the connection tile (10) and the other side of the tail tile (11).