Windowsill board

By designing the side water barrier and inclined deflector structure on the windowsill sill sill sill sill sill sill sill sill sill sill sill sill sill sill sill sill sill sill sill sill sill sill sill sill sill sill sill sill sill sill sill sill sill sill sill sill sill sill sill sill sill sill sill sill sill sill sill sill sill sill sill sill sill sill sill sill sill sill sill sill sill sill sill sill sill sill s the walls.

CN223135936UActive Publication Date: 2025-07-22YONGDEXIN DOORS & WINDOWS TECH (TAIZHOU) CO LTD +1
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Patent Information

Application Number
CN202422131593.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-31
Publication Date
2025-07-22
Estimated Expiration
2034-08-31

AI Technical Summary

Technical Problem

The existing window sill design causes rainwater to penetrate into the wall easily, affecting the insulation effect of the wall.

Method used

A window sill panel is designed, including a window sill main board and a side water barrier folded upward to form a water connection area, and rainwater flows out along the side water barrier and is separated from the wall. Combined with the inclined deflector and the deflector channel, the distance between the rainwater and the wall is increased and the penetration is prevented.

Benefits of technology

Effectively prevent rainwater from seeping into the wall, improve the stability of the window sill sill sill sill and the insulation effect of the wall, and reduce the risk of rainwater being blown under the window sill sill sill.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223135936U_ABST
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Abstract

The utility model relates to a windowsill board, and relates to the field of windowsill building components, the windowsill board comprises a windowsill main board, the side edge of the windowsill main board is provided with a side water baffle folded upwards, and the side water baffle and the windowsill main board are spliced to form a water receiving area. Rainwater flows to the water receiving area of the window board along the window glass, then flows out of the water receiving area in the length direction of the side water baffles and flows to the ground, and water in the water receiving area is separated from the wall body through the side water baffles, so that the water in the water receiving area cannot permeate into the surrounding wall body, and wall surface protection is facilitated.
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Description

Technical Field

[0001] This application relates to the field of window sill building components, and particularly to a window sill board. Background Art

[0002] The window sill board is installed on the outer side of the window sill. After installation, items can be placed on the window sill board to decorate the window sill.

[0003] For example, the Chinese utility model patent with the patent announcement number CN210768373U discloses a hollow window sill board, which includes a base board installed on a wall, a window sill main board and a window sill side board. The window sill side board is vertically connected to the side of the window sill main board. An installation buckle strip is provided on the base board, and a connection card slot for snap connection with the installation buckle strip is provided on the window sill main board.

[0004] After the above window sill board is installed, rainwater is likely to penetrate into the wall along the window sill main board, affecting the heat preservation effect of the wall, and improvement is needed. Utility Model Content

[0005] In order to prevent rainwater on the window sill from easily penetrating into the wall, this application provides a window sill board.

[0006] The window sill board provided by this application adopts the following technical solutions:

[0007] A window sill board includes a window sill main board, and a side water retaining board is formed by folding upwards on the side of the window sill main board. A water receiving area is formed by splicing between the side water retaining board and the window sill main board.

[0008] By adopting the above technical solutions, during actual use, rainwater flows down the window glass to the water receiving area of the window sill board, and then flows out of the water receiving area along the length direction of the side water retaining board to the ground. The side water retaining board separates the water in the water receiving area from the wall, so that the water in the water receiving area will not seep into the surrounding walls, which is beneficial to protecting the wall surface.

[0009] Preferably, the side water retaining board includes a water separation board provided on the window sill main board and a supporting board provided on the water separation board. The included angle between the supporting board and the water separation board is a right angle, and the supporting board and the water separation board are embedded in the wall.

[0010] By adopting the above technical solutions, after the window sill board is installed, the supporting board and the water separation board are embedded in the wall. The weight of the wall above the supporting board partially acts on the supporting board to fix the supporting board, which is beneficial to improving the stability of the window sill board after installation.

[0011] Preferably, a rain shield is provided on the window sill main board, and the rain shield is located on the side of the window sill main board away from the window sill.

[0012] By adopting the above technical solution, by setting the rain shield, it is beneficial to reduce the rainwater at the lower end of the window sill main board, and further beneficial to reduce the movement of rainwater along the lower end surface of the window sill main board to below the window sill main board, which is convenient for protecting the wall below the window sill main board.

[0013] Preferably, the rain shield includes a baffle provided on the window sill main board and a first diversion board provided on the baffle, and the first diversion board is inclined downward away from the window sill main board.

[0014] By adopting the above technical solution, during actual use, the water in the water receiving area flows from the window sill main board to the baffle and then from the diversion board to the ground. By providing the inclined first diversion board on the baffle, when the rainwater drops from the first diversion board, the distance between the rainwater and the wall is increased, so that the rainwater is not easily blown below the window sill main board during the dripping process. And the falling rainwater is buffered by the first diversion board, which is beneficial to alleviating the falling speed of the raindrops.

[0015] Preferably, a second diversion board is provided on the rain shield, and the second diversion board and the rain shield are spliced to form a diversion channel, and the extending direction of the diversion channel is perpendicular to the length direction of the rain shield.

[0016] By adopting the above technical solution, during actual use, the rainwater in the water receiving area flows into the diversion channel from the water receiving area and flows out along the extending direction of the diversion channel. The water left on the window sill board is collected and dropped through the diversion channel, which is convenient for collecting and utilizing the water on the window sill board.

[0017] Preferably, the second diversion board is hingedly connected to the rain shield, and a damping member is provided on the second diversion board, and the damping member abuts against the rain shield to position the second diversion board.

[0018] By adopting the above technical solution, when the rain is heavy, the second diversion board is rotated away from the rain shield so that the second diversion board rotates below the rain shield, and the water in the water receiving area flows down along the rain shield from the second diversion board, which is beneficial to improving the drainage speed of the water in the water receiving area.

[0019] Preferably, the side rain shield is formed by folding up the side of the window sill main board.

[0020] By adopting the above technical solution, the side rain shield and the window sill main board are integrally provided. Compared with welding the side rain shield to the window sill main board, there is not likely to be a gap between the side rain shield and the window sill main board, and the water in the water receiving area is not likely to seep into the wall through the gap between the side rain shield and the window sill main board.

[0021] Preferably, the window sill main board is an aluminum alloy board.

[0022] By adopting the above technical solution, the window sill main board made of aluminum alloy plate is light in weight and high in strength. Compared with the window sill main board made of concrete or granite, it is beneficial to reduce the load on the wall after the installation of the window sill board.

[0023] In summary, the present application includes at least one of the following beneficial technical effects:

[0024] 1. The side water baffle separates the water in the water receiving area from the wall, so that the water in the water receiving area will not seep into the surrounding walls, which is beneficial to protecting the wall surface;

[0025] 2. The supporting plate and the water separating plate are embedded in the wall, and part of the weight of the wall above the supporting plate acts on the supporting plate to fix the supporting plate, which is beneficial to improving the stability of the window sill board after installation;

[0026] 3. By arranging an inclined diversion plate I on the baffle, when the rainwater drips from the diversion plate I, the distance between the rainwater and the wall is increased, so that the rainwater is not easily blown below the window sill main board during the dripping process. Description of the Drawings

[0027] Figure 1 It is a schematic diagram of the overall structure of this embodiment.

[0028] Figure 2 It is an exploded view of this embodiment, mainly showing the connecting steel structure between the diversion plate II and the diversion plate I.

[0029] Figure 3 It is a schematic diagram of the overall structure of this embodiment when the diversion plate II is below its hinge axis.

[0030] Description of the reference numerals: 1, window sill main board; 11, water receiving area; 2, side water baffle; 21, water separating plate; 22, supporting plate; 3, fixing part; 31, mounting hole; 4, rain shield; 41, baffle; 42, diversion plate I; 43, diversion channel; 5, diversion plate II; 51, damping part. Detailed Description of the Invention

[0031] The following further describes the present application in detail with reference to the drawings.

[0032] The embodiment of the present application discloses a window sill board. Refer to Figure 1 , a window sill board includes a window sill main board 1, the window sill main board 1 is an aluminum alloy plate, and the opposite ends of the window sill main board 1 are bent upward to form side water baffles 2. A water receiving area 11 is formed by splicing between the window sill main board 1 and the side water baffles 2. The accumulated water flowing out of the window sill and the rainwater falling on the window sill flow into the water receiving area 11.

[0033] Refer to Figure 1, the side water baffle 2 includes a water separation plate 21 and a supporting plate 22. Among them, the water separation plate 21 is located above the window sill main board 1, and the included angle between the water separation plate 21 and the window sill main board 1 is a right angle. The supporting plate 22 is bent from the upper end of the water separation plate 21 towards the water receiving area 11, and the included angle between the supporting plate 22 and the water separation plate 21 is a right angle. The supporting plate 22 and the water separation plate 21 are embedded in the wall and fixed to the wall. The supporting plate 22 and the water separation plate 21 separate the water in the water receiving area 11 from the wall, so that the water falling into the water receiving area 11 is not easily infiltrated into the wall from the periphery of the window sill main board 1.

[0034] Refer to Figure 1 , one end of the window sill main board 1 distributed perpendicular to the distribution direction of the water separation plate 21 is bent upward to form a fixing part 3. A plurality of mounting holes 31 are provided on the fixing part 3, and screws pass through the mounting holes 31 to fix the fixing part 3 to the window sill, which is convenient for fixing the window sill board to the window sill. The included angle between the fixing part 3 and the window sill main board 1 is a right angle.

[0035] Refer to Figure 1 , one end of the window sill main board 1 away from the fixing part 3 is turned down to form a rain shield 4. The rain shield 4 includes a baffle 41 and a first diversion plate 42. The baffle 41 is located below the water receiving area 11, and the included angle between the baffle 41 and the window sill main board 1 is a right angle. The first diversion plate 42 is bent from the lower end of the baffle 41, and the first diversion plate 42 is inclined. The first diversion plate 42 is inclined downward along the direction away from the window sill main board 1.

[0036] During actual use, the accumulated water flowing out of the window sill and the rainwater falling on the window sill main board 1 are both located in the water receiving area 11. The water in the water receiving area 11 flows out of the water receiving area 11 along the window sill main board 1, the baffle 41 and the first diversion plate 42 and falls on the ground, so that the water is not easily infiltrated into the wall around the window sill main board 1, which is beneficial to protecting the wall around the window sill main board 1.

[0037] Refer to Figure 1 , a second diversion plate 5 is hinged on the first diversion plate 42. The second diversion plate 5 is located on the side of the first diversion plate 42 away from the baffle 41. The hinge axis of the second diversion plate 5 is parallel to the length direction of the first diversion plate 42, and the second diversion plate 5 rotates close to or away from the first diversion plate 42.

[0038] Refer to Figure 1 and Figure 2 , a damping member 51 is fixed on the hinge shaft of the second diversion plate 5. The damping member 51 is arranged around the outer periphery of the hinge shaft of the second diversion plate 5, and the damping member 51 abuts against the first diversion plate 42 to position the second diversion plate 5. In this embodiment, the damping member 51 is a rubber ring.

[0039] Refer to Figure 1, when the second deflector 5 rotates above its hinge axis, a water diversion channel 43 is formed by splicing between the second deflector 5 and the first deflector 42. The extension direction of the water diversion channel 43 is parallel to the extension direction of the second deflector 5. The water diversion channel 43 is used to gather water and discharge it from both ends of the water diversion channel 43, facilitating the recycling of the water in the water receiving area 11.

[0040] Refer to Figure 3 , when the second deflector 5 rotates below its hinge axis, the water flowing out of the water receiving area 11 flows from the baffle 41 to the first deflector 42, then from the first deflector 42 to the second deflector 5, and drips from the lower end of the second deflector 5 to the ground, increasing the drainage speed in the water receiving area 11, increasing the distance between the water droplets and the window sill main board 1 when the water drips from the window sill board, and making it difficult for the water droplets to be blown to the upper end of the wall below the window sill main board 1, which is beneficial to protecting the wall.

[0041] On a rainy day, rotate the second deflector 5 above its hinge axis and fix it. The water falling into the water receiving area 11 enters the water diversion channel 43 along the baffle 41 and the first deflector 42, and flows out from both ends of the water diversion channel 43 along the water diversion channel 43. Water receiving tools can be placed at both ends of the water diversion channel 43 to collect rainwater for watering green plants.

[0042] When there is a heavy rainstorm, the wind is strong. Rotate the second deflector 5 below its hinge axis to increase the rain shielding area of the window sill board in the vertical direction, so that the water dripping from the second deflector 5 is not easily blown to the upper end of the wall below the window sill main board 1 to protect the wall.

[0043] The implementation principle of a window sill board in an embodiment of the present application is as follows: The side water baffle 2 separates the water in the water receiving area 11 from the wall, so that the water in the water receiving area 11 does not seep into the surrounding walls. The first deflector 42 and the second deflector 5 are used to guide the water in the water receiving area 11, increasing the distance between the water droplets and the wall when the water drops, which is beneficial to reducing the water dripping from the window sill board from being blown onto the wall below the window sill board. In summary, it is beneficial to protect the periphery of the window sill main board 1 and the wall below the window sill board, reduce rainwater seepage into the wall, and is beneficial to improving the heat preservation effect and service life of the wall.

[0044] The above are all preferred embodiments of the present application. The protection scope of the present application is not limited accordingly. Therefore, all equivalent changes made according to the structure, shape, and principle of the present application should be covered within the protection scope of the present application.

Claims

1. A window sill board, characterized in that: It includes a window sill main board (1), a side water baffle (2) is provided on the window sill main board (1), and a water receiving area (11) is formed by splicing between the side water baffle (2) and the window sill main board (1).

2. The window sill board according to claim 1, characterized in that: The side water baffle (2) includes a water separation board (21) provided on the window sill main board (1) and a supporting board (22) provided on the water separation board (21). The included angle between the supporting board (22) and the water separation board (21) is a right angle, and the supporting board (22) and the water separation board (21) are embedded in the wall body.

3. A windowsill board according to claim 1, characterized in that: A rain baffle (4) is provided on the window sill main board (1), and the rain baffle (4) is located on the side of the window sill main board (1) away from the window sill.

4. A window sill board according to claim 3, characterized in that: The rain baffle (4) includes a baffle (41) provided on the window sill main board (1) and a first diversion board (42) provided on the baffle (41). The first diversion board (42) slopes downward in a direction away from the window sill main board (1).

5. The window sill board according to claim 3, characterized in that: A second diversion board (5) is provided on the rain baffle (4), and a diversion channel (43) is formed by splicing between the second diversion board (5) and the rain baffle (4). The extending direction of the diversion channel (43) is perpendicular to the length direction of the rain baffle (4).

6. The window sill board according to claim 5, characterized in that: The second diversion board (5) is hingedly connected to the rain baffle (4), and a damping member (51) is provided on the second diversion board (5). The damping member (51) abuts against the rain baffle (4) to position the second diversion board (5).

7. A windowsill board according to claim 1, characterized in that: The side water baffle (2) is formed by folding up from the side of the window sill main board (1).

8. A windowsill board according to claim 1, characterized in that: The window sill main board (1) is an aluminum alloy board.

Citation Information

Patent Citations

  • Hollow windowsill plate

    CN210768373U