High-rise building waterproof material coating device
By introducing a guide structure with a telescopic tube and telescopic sleeve into the waterproof material coating device, combined with a locking structure, flexible adjustment of the coating roller brush and efficient spraying of waterproof material are achieved, solving the problems of inconvenient handle adjustment and material waste.
Patent Information
- Application Number
- CN202520416452.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-11
- Publication Date
- 2026-01-27
- Estimated Expiration
- 2035-03-11
AI Technical Summary
Existing waterproofing material coating devices have handles that cannot be adjusted when used on high-rise buildings, making it inconvenient to coat nearby areas. Furthermore, the coating roller needs to be repeatedly inserted into the material, which easily leads to material waste.
The system employs a telescopic tube and telescopic sleeve structure, combined with a guiding structure and a locking structure, to achieve flexible adjustment of the coating roller and efficient spraying of waterproof materials. Through the cooperation of the inner and outer sealing gaskets of the telescopic sleeve, negative pressure suction and spraying of materials are achieved.
This solves the problems of inconvenient handle adjustment and material waste, and enables flexible operation of the coating roller and efficient use of materials.
Smart Images

Figure CN223838501U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of waterproof material coating technology, and in particular to a waterproof material coating device for high-rise buildings. Background Technology
[0002] Waterproofing materials are used in building envelopes to prevent the penetration of rainwater, snowmelt, and groundwater; to prevent the erosion of moisture, steam, and other harmful gases and liquids in the air; and to prevent water and water leakage in partition structures. Waterproofing material coating devices are equipment used to uniformly coat waterproofing materials on various surfaces, mainly used in fields such as construction, automobile manufacturing, and electronics manufacturing.
[0003] When applying existing waterproofing materials to high-rise buildings, an extended handle is required. However, this handle is not adjustable, which makes it difficult to apply to closer areas. Applying existing waterproofing materials to high-rise buildings requires repeatedly inserting the application roller into the waterproofing material, which can easily cause the waterproofing material to fall to the ground, resulting in waste. Utility Model Content
[0004] The technical problem this invention aims to solve is that when applying existing waterproofing materials to high-rise buildings, an extended handle is required. However, this handle is not adjustable, which makes it difficult to apply to closer areas. Furthermore, when applying existing waterproofing materials to high-rise buildings, the application roller needs to be repeatedly inserted into the waterproofing material, which can easily cause the waterproofing material to fall to the ground, resulting in waste.
[0005] To solve the above-mentioned technical problems, the technical solution of this utility model is a waterproof material coating device for high-rise buildings, including a telescopic pipe and a telescopic sleeve. The telescopic sleeve is fitted onto the outer wall of the telescopic pipe. A guide pipe is connected to the rear end face of the telescopic pipe. A first guide structure is installed inside the telescopic pipe, and a second guide structure is installed inside the telescopic sleeve. A limiting structure is fitted onto the outer wall of the telescopic sleeve. A coating structure is connected to the limiting structure, and a locking structure is connected to the coating structure. The first guide structure includes: a first cross-shaped limiting frame, a first sealing gasket, and a sealing ring. The first cross-shaped limiting frame is installed on the inner wall of the telescopic pipe, the first sealing gasket is installed on the first cross-shaped limiting frame, and the sealing ring is fitted onto the outer wall of the telescopic pipe.
[0006] As a further embodiment of this utility model: the second guide structure includes: a second cross-shaped limiting frame, a second sealing gasket, and a guide tube; the second cross-shaped limiting frame is installed on the inner wall surface of the telescopic sleeve, the second sealing gasket is installed on the second cross-shaped limiting frame, and the guide tube is connected to the telescopic sleeve.
[0007] As a further embodiment of this utility model: the limiting structure includes: a limiting plate, two guide screw holes and a limiting screw hole; the limiting plate is fitted onto the outer wall of the telescopic sleeve, the two guide screw holes are respectively opened on the limiting plate, and the limiting screw hole is opened on the front end face of the telescopic sleeve.
[0008] As a further embodiment of this utility model: the coating structure includes: a support handle, a coating fixing frame, and a coating roller brush; the support handle is installed in a limiting screw hole, the coating fixing frame is installed on the front end face of the support handle, and the coating roller brush is installed inside the coating fixing frame.
[0009] As a further embodiment of this utility model: the locking structure includes: two locking limiting holes, two locking screws, and two locking rotating blocks; the two locking limiting holes are respectively opened on the rear wall surface of the coating fixing frame, the two locking screws respectively pass through two guide screw holes and are connected to the two locking limiting holes, and the two locking rotating blocks are respectively installed on the rear wall surface of the two locking screws.
[0010] As a further embodiment of this utility model, the support handle is threaded.
[0011] As a further embodiment of this utility model, the two locking rotating blocks are each provided with a number of anti-slip grooves.
[0012] The present invention adopts the above technical solution and has the following advantages compared with the prior art:
[0013] The operator holds the support handle and screws it in around the limiting screw holes until the coating roller reaches below the guide tube and the two guide screw holes are aligned with the two locking limiting holes. Then, the operator holds the two locking blocks and drives the two locking screws to rotate around the two guide screw holes until the two locking screws are locked in the two locking limiting holes, restricting the rotation of the coating fixture. This solves the problem that when applying waterproof materials to high-rise buildings, it is necessary to connect an extended handle, but this handle cannot be adjusted, which makes it more troublesome when coating nearby areas.
[0014] The operator holds the telescopic tube and telescopic sleeve with both hands, and then moves the telescopic sleeve along the telescopic tube. During the first movement, the first sealing gasket is restrained on the first cross-shaped limit frame, blocking the telescopic tube. At this time, the air inside the telescopic tube does not circulate, and the second sealing gasket disengages from the second cross-shaped limit frame. The air inside the telescopic sleeve is discharged through the second cross-shaped limit frame, along the second sealing gasket, and through the guide tube. Then, the telescopic sleeve is moved in the opposite direction along the telescopic tube, creating a negative pressure inside the telescopic sleeve. This pressure pushes the second sealing gasket against the second cross-shaped limit frame, blocking the telescopic sleeve. At the same time, the first sealing gasket disengages from the first cross-shaped limit frame, and the waterproof material is drawn into the telescopic sleeve through the guide tube. At this point, the operator compresses the telescopic tube and telescopic sleeve again, which sprays the waterproof material onto the coating roller along the guide tube. This solves the problem that existing methods of applying waterproof material to high-rise buildings require repeatedly inserting the coating roller into the waterproof material, which easily leads to the waterproof material falling to the ground and causing waste. Attached Figure Description
[0015] Figure 1 This is a schematic diagram of the overall structure of a waterproofing material coating device for high-rise buildings according to an embodiment of the present invention;
[0016] Figure 2 This is a schematic diagram of the first guide structure of a waterproof material coating device for high-rise buildings in an embodiment of this utility model;
[0017] Figure 3 This is a partial enlarged view of point A in the schematic diagram of the first guide structure of a waterproof material coating device for high-rise buildings in an embodiment of this utility model;
[0018] Figure 4 This is a schematic diagram of the limiting structure of a waterproof material coating device for high-rise buildings in an embodiment of this utility model;
[0019] Figure 5 This is a schematic diagram of the coating structure of a waterproof material coating device for high-rise buildings according to an embodiment of this utility model.
[0020] In the diagram: 1. Telescopic tube; 2. Telescopic sleeve; 3. Guide tube; 4. First cross-shaped limiting frame; 5. First sealing gasket; 6. Sealing ring; 7. Second cross-shaped limiting frame; 8. Second sealing gasket; 9. Guide tube; 10. Limiting plate; 11. Guide screw hole; 12. Limiting screw hole; 13. Support handle; 14. Coating fixing frame; 15. Coating roller brush; 16. Locking limiting hole; 17. Locking screw; 18. Locking rotating block. Detailed Implementation
[0021] The specific embodiments of this utility model will be further described below with reference to the accompanying drawings. It should be noted that these descriptions are for the purpose of aiding understanding of this utility model, but do not constitute a limitation thereof. Furthermore, the technical features involved in the various embodiments of this utility model described below can be combined with each other as long as they do not conflict with each other.
[0022] Please see Figures 1-5 A waterproofing material coating device for high-rise buildings includes a telescopic pipe 1 and a telescopic sleeve 2. The telescopic sleeve 2 is fitted onto the outer wall of the telescopic pipe 1. A guide pipe 3 is connected to the rear end of the telescopic pipe 1. A first guide structure is installed inside the telescopic pipe 1, and a second guide structure is installed inside the telescopic sleeve 2. A limiting structure is fitted onto the outer wall of the telescopic sleeve 2. A coating structure is connected to the limiting structure, and a locking structure is connected to the coating structure. The first guide structure includes a first cross-shaped limiting frame 4, a first sealing gasket 5, and a sealing ring 6. The first cross-shaped limiting frame 4 is installed on the inner wall of the telescopic pipe 1, the first sealing gasket 5 is installed on the first cross-shaped limiting frame 4, and the sealing ring 6 is fitted onto the outer wall of the telescopic pipe 1.
[0023] Please see Figure 4 The second guide structure includes: a second cross limit frame 7, a second sealing gasket 8, and a guide tube 9; the second cross limit frame 7 is installed on the inner wall of the telescopic sleeve 2, the second sealing gasket 8 is installed on the second cross limit frame 7, and the guide tube 9 is connected to the telescopic sleeve 2.
[0024] Please see Figure 4 The limiting structure includes: a limiting plate 10, two guide screw holes 11 and a limiting screw hole 12; the limiting plate 10 is fitted onto the outer wall of the telescopic sleeve 2, the two guide screw holes 11 are respectively opened on the limiting plate 10, and the limiting screw hole 12 is opened on the front end face of the telescopic sleeve 2.
[0025] Please see Figure 5 The coating structure includes: a support handle 13, a coating fixing frame 14, and a coating roller brush 15; the support handle 13 is installed in the limiting screw hole 12, the coating fixing frame 14 is installed on the front end face of the support handle 13, and the coating roller brush 15 is installed in the coating fixing frame 14.
[0026] Please see Figure 5 The locking structure includes: two locking limit holes 16, two locking screws 17, and two locking rotating blocks 18; the two locking limit holes 16 are respectively opened on the rear wall surface of the coating fixing frame 14, the two locking screws 17 respectively pass through two guide screw holes 11 and are connected to the two locking limit holes 16, and the two locking rotating blocks 18 are respectively installed on the rear wall surface of the two locking screws 17.
[0027] Please see Figure 5The support handle 13 is threaded. When in use, the operator holds the support handle 13 and screws it in around the limiting screw hole 12.
[0028] Please see Figure 5 Each of the two locking rotating blocks 18 has several anti-slip grooves, which make it convenient for the operator to hold the two locking rotating blocks 18 and drive the two locking screws 17 to rotate around the two guide screw holes 11.
[0029] In Example 1, the operator holds the support handle 13 and screws it in around the limiting screw hole 12 until the coating roller brush 15 is below the guide tube 9 and the two guide screw holes 11 are aligned with the two locking limiting holes 16 respectively. Then the operator holds the two locking rotating blocks 18 and drives the two locking screws 17 to rotate around the two guide screw holes 11 until the two locking screws 17 are stuck in the two locking limiting holes 16, restricting the rotation of the coating fixing frame 14.
[0030] Specifically, during installation, the operator holds the support handle 13 and screws it in around the limiting screw hole 12 until the coating roller brush 15 is below the guide tube 9, and the two guide screw holes 11 are aligned with the two locking limiting holes 16 respectively. Then, the operator holds the two locking rotating blocks 18 and drives the two locking screws 17 to rotate around the two guide screw holes 11 until the two locking screws 17 are stuck in the two locking limiting holes 16, restricting the rotation of the coating fixing frame 14. After that, the operator inserts the guide tube 3 into the waterproof material, ready to apply it.
[0031] In Example 2, the operator holds the telescopic tube 1 and the telescopic sleeve 2 with both hands, and then moves the telescopic sleeve 2 along the telescopic tube 1. During the first movement, the first sealing gasket 5 is restricted on the first cross-shaped limiting frame 4, blocking the telescopic tube 1. At this time, the air inside the telescopic tube 1 does not circulate, and the second sealing gasket 8 is released from the second cross-shaped limiting frame 7. The air inside the telescopic sleeve 2 is discharged through the second cross-shaped limiting frame 7, along the second sealing gasket 8, and through the guide tube 9. Then, the telescopic sleeve 2 is moved in the opposite direction along the telescopic tube 1, and a negative pressure is generated inside the telescopic sleeve 2, which pushes the second sealing gasket 8 against the second cross-shaped limiting frame 7, blocking the telescopic sleeve 2. At the same time, the first sealing gasket 5 is released from the first cross-shaped limiting frame 4, and the waterproof material is sucked into the telescopic sleeve 2 through the guide tube 3. At this time, the operator compresses the telescopic tube 1 and the telescopic sleeve 2 again, and the waterproof material can be sprayed onto the coating roller brush 15 along the guide tube 9.
[0032] Specifically, during use, if the coating distance is long, the operator holds the telescopic tube 1 and the telescopic sleeve 2 with both hands respectively, and then moves the telescopic sleeve 2 along the telescopic tube 1. During the first movement, the first sealing gasket 5 is restricted on the first cross limit frame 4, blocking the telescopic tube 1. At this time, the air inside the telescopic tube 1 does not circulate, and the second sealing gasket 8 is disengaged from the second cross limit frame 7. The air inside the telescopic sleeve 2 is discharged through the second cross limit frame 7, along the second sealing gasket 8, and through the guide tube 9. Then, the telescopic sleeve 2 is moved in the opposite direction along the telescopic tube 1, and a negative pressure is generated inside the telescopic sleeve 2, which pushes the second sealing gasket 8 against the second cross limit frame 7, blocking the telescopic sleeve 2. At the same time, the first sealing gasket 5 is disengaged from the first cross limit frame 4, and the waterproof material is sucked into the telescopic sleeve 2 through the guide tube 3. At this time, the operator compresses the telescopic tube 1 and the telescopic sleeve 2 again, and the waterproof material can be sprayed onto the coating roller brush 15 along the guide tube 9. This process is repeated to perform coating. If the coating distance is short, the operator can disengage the support handle 13 from the limit screw hole 12 and directly hold the support handle 13 to perform coating.
[0033] The embodiments of this utility model have been described in detail above with reference to the accompanying drawings, but this utility model is not limited to the described embodiments. For those skilled in the art, various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principles and spirit of this utility model, and these variations still fall within the protection scope of this utility model.
Claims
1. A waterproofing material coating device for high-rise buildings, comprising a telescopic pipe (1) and a telescopic sleeve (2), characterized in that, The telescopic sleeve (2) is fitted onto the outer wall of the telescopic tube (1). The rear end face of the telescopic tube (1) is connected to a guide tube (3). A first guide structure is installed inside the telescopic tube (1). A second guide structure is installed inside the telescopic sleeve (2). A limiting structure is fitted onto the outer wall of the telescopic sleeve (2). A coating structure is connected to the limiting structure. A locking structure is connected to the coating structure. The first guide structure includes: a first cross-shaped limiting frame (4), a first sealing gasket (5), and a sealing ring (6); The first cross-shaped limiting frame (4) is installed on the inner wall of the telescopic tube (1), the first sealing gasket (5) is installed on the first cross-shaped limiting frame (4), and the sealing ring (6) is fitted on the outer wall of the telescopic tube (1).
2. The waterproofing material coating device for high-rise buildings according to claim 1, characterized in that, The second guide structure includes: a second cross-shaped limiting frame (7), a second sealing gasket (8), and a guide tube (9); The second cross-shaped limiting frame (7) is installed on the inner wall of the telescopic sleeve (2), the second sealing gasket (8) is installed on the second cross-shaped limiting frame (7), and the guide tube (9) is connected to the telescopic sleeve (2).
3. The waterproofing material coating device for high-rise buildings according to claim 1, characterized in that, The limiting structure includes: a limiting plate (10), two guide screw holes (11), and a limiting screw hole (12); The limiting plate (10) is fitted onto the outer wall of the telescopic sleeve (2), and the two guide screw holes (11) are respectively opened on the limiting plate (10), and the limiting screw hole (12) is opened on the front end face of the telescopic sleeve (2).
4. The waterproofing material coating device for high-rise buildings according to claim 3, characterized in that, The coating structure includes: a support handle (13), a coating holder (14), and a coating roller (15). The support handle (13) is installed in the limiting screw hole (12), the coating fixing frame (14) is installed on the front end face of the support handle (13), and the coating roller brush (15) is installed in the coating fixing frame (14).
5. A waterproofing material coating device for high-rise buildings according to claim 4, characterized in that, The locking structure includes: two locking limiting holes (16), two locking screws (17), and two locking rotating blocks (18). The two locking limit holes (16) are respectively opened on the rear wall surface of the coating fixing frame (14), the two locking screws (17) are respectively connected to the two locking limit holes (16) through the two guide screw holes (11), and the two locking rotating blocks (18) are respectively installed on the rear wall surface of the two locking screws (17).
6. A waterproofing material coating device for high-rise buildings according to claim 4, characterized in that, The support handle (13) is threaded.
7. A waterproofing material coating device for high-rise buildings according to claim 5, characterized in that, The two locking blocks (18) are each provided with a number of anti-slip grooves.