Parapet wall coiled material vertical face protection structure
By setting grooves on the parapet wall and inserting hook components to form an interference fit, and setting a sealing lip at the connection, the problems of damage to the waterproof membrane and insufficient waterproof performance during the installation of the parapet wall membrane facade protection structure are solved, achieving stable installation and improved waterproof effect.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- CHINA CONSTR FIFTH ENG DIV CORP LTD
- Filing Date
- 2025-06-12
- Publication Date
- 2026-05-15
AI Technical Summary
Existing parapet wall membrane facade protection structures are prone to damage to the waterproof membrane during installation and lack effective waterproofing performance, affecting the waterproofing effect and service life.
The groove and hook assembly are connected by an interference fit. A sealing lip is set at the connection between the hook assembly and the groove to form a sealed structure, avoiding the need for drilling for fixing and enhancing the adhesion and waterproof performance of the mesh to the wall.
It enables convenient and stable installation, improves waterproof performance, extends the service life of the parapet wall, reduces maintenance frequency, and enhances the adhesion between concrete and the wall.
Smart Images

Figure CN224244257U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of parapet wall technology, specifically to a parapet wall roll facade protection structure. Background Technology
[0002] In the field of building construction, the parapet wall, as the low wall surrounding the roof of a building, plays a crucial role in waterproofing. Currently, parapet wall waterproofing membrane protection often employs traditional fixing methods, such as drilling holes in the wall or waterproof membrane and fixing it to the external structure with bolts or other components. Then, protective structures are installed on the wall surface, for example, by pouring concrete onto the wall or waterproof membrane and then attaching protective bricks to it. Concrete serves as the bonding material between the two. However, because concrete does not easily adhere to the wall or waterproof membrane, drilling holes in the wall or waterproof membrane is necessary. This method not only damages the wall and waterproof membrane, weakening their structural strength, but also easily creates seepage channels, reducing waterproofing effectiveness and increasing the cost and difficulty of later maintenance. Furthermore, the adhesion between concrete and the wall or waterproof membrane in existing protective structures is poor. Under external environmental conditions, the concrete layer is prone to detachment. During the installation of protective structures, it is difficult for concrete to provide lasting and effective protection to the waterproof membrane, thus shortening the service life of the parapet wall waterproofing system. Furthermore, those skilled in the art generally improve the adhesion of concrete by first laying a mesh on the wall and then pouring concrete onto the wall and the mesh. However, if the mesh is not fixed to the wall or waterproof membrane by drilling, it is difficult to fix it. If drilling is used, the drilled area does not have a waterproof sealing structure and cannot effectively resist the erosion of rainwater and moisture, leading to problems such as leakage in the parapet wall. If the work is carried out on a low parapet wall, the waterproofing problem is even more difficult to solve, affecting the normal use and durability of the building. Utility Model Content
[0003] In view of the shortcomings of the existing technology, the purpose of this utility model is to provide a parapet wall membrane facade protection structure to solve the problems mentioned in the background art, such as the lack of a waterproof structure at the parapet wall low wall mesh hanging position, the inconvenience of hanging the mesh, and the easy damage to the waterproof membrane by traditional mesh hanging methods.
[0004] To achieve the above objectives, this utility model provides the following technical solution: a parapet wall roll material facade protection structure, including a wall, a groove on the wall, a waterproof roll material laid on the wall, a hanging net, and at least one set of hook assemblies. The groove is arranged along the length of the wall, the hook assembly is inserted into the groove and forms an interference fit with each other, a sealing lip is provided on the side wall of the hook assembly connected to the groove, and a seal is formed at the connection between the hook assembly and the groove.
[0005] As a further improvement of this utility model, each set of hook assemblies includes a strip seat and at least one hook, wherein the hook is integrally formed with the strip seat and the strip seat is elastic.
[0006] As a further improvement of this utility model, the sealing lip has an inclined lip wall that slopes upward from the bottom wall of the groove toward the opening of the groove on the side facing the groove. The sealing lip is gradually increased in size from the bottom wall of the groove toward the opening of the groove, and the inclined lip wall is elastic.
[0007] As a further improvement of this utility model, the sealing lip has an arc-shaped lip wall, one end of which is connected to the strip seat and the other end is connected to the oblique lip wall, and the arc-shaped lip wall is elastic.
[0008] As a further improvement of this utility model, the hook is provided with a number of protrusions evenly distributed on it to prevent the net from falling off the hook. The protrusions are inclined upwards from the side of the hook away from the wall towards the wall.
[0009] As a further improvement of this utility model, a limiting notch for limiting the hanging net is formed between two adjacent protrusions.
[0010] Compared with existing technologies, this utility model provides a parapet wall membrane facade protection structure with the following advantages: The use of a groove on the wall and a hook assembly to form an interference fit makes installation more convenient and stable than traditional fixing methods. It eliminates the need to drill holes in the waterproof membrane to fix the hooks, thus preventing damage to the waterproof membrane. The sealing lip at the connection between the hook assembly and the groove creates a seal, preventing rainwater and moisture from seeping into the wall, significantly improving the waterproof performance at the connection point and extending the wall's service life. The combination of the mesh and the hook assembly makes it easier for those skilled in the art to adhere the waterproof membrane to the wall when applying concrete. The mesh improves the adhesion between the concrete and the wall, while also strengthening the protection of the waterproof membrane, reducing external damage, and lowering maintenance frequency. Attached Figure Description Attached Figure Description
[0012] Figure 1 This is a perspective view of the present utility model;
[0013] Figure 2 The accompanying drawings are for reference only. Figure 1 A cross-sectional view of the middle hook assembly along line A;
[0014] Figure 3 This is the front view of the wall structure of this utility model.
[0015] Reference numerals: 1. Wall; 2. Groove; 3. Waterproof membrane; 4. Netting; 5. Hook assembly; 6. Sealing lip; 51. Strip seat; 52. Hook; 521. Protruding hook; 522. Limiting notch; 61. Slanted lip wall; 62. Arc lip wall. Detailed Implementation
[0016] As shown in the figure, to achieve the above objectives, this utility model provides a parapet wall roll material facade protection structure, including a wall 1, a groove 2 on the wall 1, a waterproof roll material 3 laid on the wall 1, a hanging net 4, and at least one set of hook assemblies 5. The groove 2 is arranged along the length direction of the wall 1, and the hook assembly 5 is inserted into the groove 2 and forms an interference fit with each other. A sealing lip 6 is provided on the side wall of the hook assembly 5 connected to the groove 2, and a seal is formed at the connection between the hook assembly 5 and the groove 2.
[0017] In implementing this solution, firstly, a groove 2 is cut along the length of the parapet wall 1. The size of the groove 2 must be adapted to the hook assembly 5. The waterproof membrane 3 is laid on the surface of the wall 1, ensuring it is flat and wrinkle-free. Generally, part of the waterproof membrane 3 is laid in the groove 2, i.e., the lower side wall of the groove 2. Cutting the groove 2 on the parapet wall 1 is existing technology in this field. Align the side of the hook assembly 5 with the sealing lip 6 with the groove 2, and forcefully insert the hook assembly 5 into the groove 2. The interference fit is used to securely install the hook assembly 5 in the groove 2. At this time, the sealing lip 6 is tightly fitted with the groove 2 to form a sealing structure and prevent water seepage. The hanging net 4 is hung on the hook assembly 5 and laid along the position of the waterproof membrane 3 so that the hanging net 4 covers the area where concrete needs to be poured. In this solution, the sides of the hook assembly 5 are provided with sealing lips 6. The sealing lip 6 on the upper side seals the upper side of the groove 2, and the sealing lip 6 on the lower side seals the waterproof membrane 3 on the lower side of the groove 2. If the groove 2 is long, those skilled in the art can choose to install multiple sets of hook components 5 along the groove 2, and at the corners, the hook components 5 can be installed to form a seal at the corners. Finally, the position of the hanging mesh 4 is fixed by the hook components 5. Finally, concrete is poured on the hanging mesh 4. The presence of the hanging mesh 4 enhances the adhesion between the concrete and the wall 1 and the waterproof membrane 3. After the concrete solidifies, the installation of the parapet wall membrane facade protection structure is completed. The structure of this solution can effectively achieve waterproofing and protection functions. This solution does not require drilling holes in the wall 1, avoiding damage to the waterproof membrane 3, and facilitates the installation of the hanging mesh 4.
[0018] As an improved specific embodiment, each set of hook assemblies 5 includes a strip seat 51 and at least one hook 52, the hook 52 being integrally formed with the strip seat 51, and the strip seat 51 being elastic.
[0019] In the implementation of this solution, a strip base 51 and a hook 52 are used as the hook assembly 5. The strip base 51 in this solution is a strip-shaped base and is elastic. The hook 52 is integrally formed with the strip base 51 during the manufacturing process, which improves the connection stability and connection strength of the hook above the strip base 51. The elastic strip base 51 can be installed at the corner of the wall 1 and is suitable for different environments.
[0020] As an improved specific embodiment, the sealing lip 6 has an inclined lip wall 61 on the side facing the groove 2, which is inclined upward from the bottom wall of the groove 2 toward the opening of the groove 2. The sealing lip 6 is gradually increased in size from the bottom wall of the groove 2 toward the opening of the groove 2, and the inclined lip wall 61 is elastic.
[0021] In implementing this solution, the waterproof membrane 3 is first laid flat on the wall 1. When installing the hook assembly 5, the side with the sealing lip 6 is aligned with the groove 2. Because the sealing lip 6 gradually widens from the bottom wall of the groove 2 towards the opening, and the inclined lip wall 61 has good elasticity, the inclined lip wall 61 is deformed under pressure when inserted, and after insertion, it rebounds and fits tightly against the side wall and bottom wall of the groove 2, forming an effective seal. Moreover, the inclination angle of the inclined wall can guide the sealing lip 6 into the groove 2, making the connection between the two smoother. Then, the hanging net 4 is laid on the waterproof membrane 3, and the hanging net 4 is fixed by multiple sets of hook assemblies 5. Finally, concrete is poured on the hanging net 4, and the hanging net 4 is used to enhance the adhesion between the concrete and the wall 1 and the waterproof membrane 3, thus completing the installation.
[0022] As an improved specific embodiment, the sealing lip 6 has an arcuate lip wall 62, one end of which is connected to the strip seat 51 and the other end is connected to the oblique lip wall 61. The arcuate lip wall 62 is elastic.
[0023] When this solution is implemented, an arc-shaped lip wall 62 is used. When the oblique lip wall 61 comes into contact with and is squeezed into the groove 2, the arc-shaped lip wall 62 can also be compressed and deformed, so that the sealing lip 6 can form an interference fit with the inner wall of the groove 2, the connection is stable and it is not easy to fall out of the groove 2.
[0024] As an improved specific implementation, the hook 52 is evenly provided with a plurality of protrusions 521 for preventing the hanging net 4 from falling off the hook 52. The protrusions 521 are inclined upward from the side of the hook 52 away from the wall 1 toward the wall 1. A limiting notch 522 for limiting the hanging net 4 is formed between two adjacent protrusions 521.
[0025] In this implementation, the mesh 4 is laid on the waterproof membrane 3. During laying, the mesh 4 can be inserted into the limiting notch 522 between adjacent hooks 521. The limiting notch 522 effectively limits the mesh 4. After the mesh 4 is hung on the hook 52, the evenly distributed hooks 521 on the hook 52, which are inclined upwards towards the wall 1 from the side of the hook 52 away from the wall 1, can limit the mesh 4 and prevent it from coming off the hook against the direction of the hook 521. The hook 521, by means of its tilt angle and elastic deformation, prevents the mesh 4 from coming off. Finally, concrete is poured on the mesh 4 to enhance the overall adhesion. The connection between the mesh 4 and the hook 52 is stable, the concrete pouring will be smoother, and the installation will be more convenient.
[0026] The above description is merely a preferred embodiment of this utility model. The protection scope of this utility model is not limited to the above embodiments. All technical solutions falling within the scope of this utility model's concept are protected. It should be noted that for those skilled in the art, any improvements and modifications made without departing from the principle of this utility model should also be considered within the protection scope of this utility model.
Claims
1. A parapet wall roll material facade protection structure, characterized in that, The device includes a wall, a groove on the wall, a waterproof membrane laid on the wall, a mesh, and at least one set of hook assemblies. The groove is arranged along the length of the wall, and the hook assembly is inserted into the groove and forms an interference fit with each other. A sealing lip is provided on the side wall of the hook assembly connected to the groove, and a seal is formed at the connection between the hook assembly and the groove.
2. The parapet wall roll facade protection structure according to claim 1, characterized in that, Each hook assembly includes a strip seat and at least one hook, the hook being integrally formed with the strip seat, the strip seat being elastic.
3. The parapet wall roll facade protection structure according to claim 1, characterized in that, The sealing lip has an inclined lip wall that slopes upward from the bottom wall of the groove toward the opening of the groove on the side facing the groove. The sealing lip is gradually widened from the bottom wall of the groove toward the opening of the groove, and the inclined lip wall is elastic.
4. The parapet wall roll facade protection structure according to claim 3, characterized in that, The sealing lip has an arc-shaped lip wall, one end of which is connected to the strip seat and the other end is connected to the oblique lip wall. The arc-shaped lip wall is elastic.
5. The parapet wall roll facade protection structure according to claim 1, characterized in that, The hook is provided with several protruding hooks evenly distributed to prevent the netting from falling off the hook. The protruding hooks are inclined upwards from the side of the hook away from the wall towards the wall.
6. The parapet wall roll facade protection structure according to claim 5, characterized in that, A limiting notch is formed between two adjacent protrusions to limit the position of the hanging net.