Plastic-coated roof net structure

By introducing convenient connecting components between coated roofing meshes, the problem of cumbersome connection operations for coated roofing meshes has been solved, achieving a fast and secure connection and improving construction efficiency and safety.

CN224213648UActive Publication Date: 2026-05-08HEBEI METEK TRADING CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
HEBEI METEK TRADING CO LTD
Filing Date
2025-05-19
Publication Date
2026-05-08

AI Technical Summary

Technical Problem

The existing plastic-coated roofing mesh has a complicated and time-consuming connection process between adjacent pieces, which affects construction efficiency and connection stability, and poses safety hazards.

Method used

It adopts convenient connection components, including a connector, T-shaped wire groove, rotating base plate, limiting pressure plate and limiting structure, and achieves quick and firm connection through simple rotation and tossing operation.

Benefits of technology

It simplifies the installation process of plastic-coated roofing mesh, reduces construction difficulty and cost, and improves the stability and durability of the connection.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a plastic-coated roof net structure which comprises two adjacent roof nets and a plurality of convenient connecting assemblies arranged between the two adjacent roof nets. The roof net is formed by weaving a plurality of transverse metal wires and vertical metal wires which are crisscrossed; the portable connecting assembly comprises a connecting base, two T-shaped screw grooves formed in the surface of the top of the connecting base, a shaft block fixed to the center of the top of the connecting base, and a rotating base plate rotationally arranged on the surface of the shaft block in a sleeving mode. According to the plastic-coated roof net, the structure of an existing plastic-coated roof net is improved, and the convenient connecting assembly is additionally arranged between every two adjacent plastic-coated roof nets, so that the two adjacent roof nets can be quickly and firmly connected easily, complex construction tools and technologies are not needed, and the construction efficiency is improved. The installation difficulty and cost of the plastic-coated roof net on site are greatly reduced, meanwhile, the stability and durability of the connecting position are guaranteed, and powerful technical support is provided for wide application of the plastic-coated roof net.
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Description

Technical Field

[0001] This utility model belongs to the field of roof mesh technology, specifically relating to a plastic-coated roof mesh structure. Background Technology

[0002] In the field of modern architecture, the roof, as an important component of a building, not only requires good waterproofing and thermal insulation performance, but also needs to have a certain structural strength and durability. Traditional roofing materials such as tiles and asphalt rolls, while performing well in some aspects, still have shortcomings in terms of construction efficiency, maintenance costs, and environmental performance. With the advancement of materials science and technology, plastic-coated roofing mesh, as an innovative roofing structural material, has gradually gained market favor due to its lightweight, high strength, corrosion resistance, and ease of installation and maintenance. Plastic-coated roofing mesh is usually made of vertical and horizontal metal wires through precision welding or weaving processes, forming a mesh structure with high flexibility and bendability. This structure can not only adapt to various complex roof shapes, but also effectively distribute roof loads, improve the stability and safety of the overall structure, and the plastic coating not only enhances the corrosion resistance of the metal mesh, but also gives it good waterproof and sun protection functions, extending its service life.

[0003] However, in practical applications, the installation process of plastic-coated roofing mesh still faces some challenges, especially when laying large areas. How to efficiently and stably connect two adjacent roofing meshes has become a key factor affecting construction efficiency and the overall performance of the roof. Traditional connection methods, such as direct welding or fixing with screws, are not only cumbersome and time-consuming, but also easily damage the plastic coating during construction, affecting the waterproofing effect, and may even lead to safety hazards due to weak connections. Therefore, this utility model proposes a plastic-coated roofing mesh structure. Utility Model Content

[0004] The purpose of this utility model is to provide a plastic-coated roofing mesh structure to solve the problem mentioned in the background art that the connection between two adjacent plastic-coated roofing meshes is cumbersome and time-consuming.

[0005] To achieve the above objectives, this utility model provides the following technical solution: a plastic-coated roofing mesh structure, comprising...

[0006] Two adjacent roof grids, and multiple convenient connection components set between the two adjacent roof grids;

[0007] The roof mesh is woven from multiple crisscrossing horizontal and vertical metal wires;

[0008] The convenient connection assembly includes a connector, two T-shaped wire grooves formed on the top surface of the connector, a shaft block fixed at the center of the top of the connector, a rotating base plate rotatably sleeved on the surface of the shaft block, and two limiting pressure plates fixed on the two end surfaces of the rotating base plate. The vertical and horizontal metal wires are embedded in the T-shaped wire grooves, and the limiting pressure plates press on the T-shaped wire grooves. The convenient connection assembly also includes a limiting structure disposed between the rotating base plate and the shaft block.

[0009] Preferably, the limiting structure includes two transverse sliding grooves formed inside the rotating base plate, a spring installed in the transverse sliding grooves, and a transverse inner slider. A transverse locking rod is fixed on one side of the transverse inner slider. Four side locking grooves corresponding to the transverse locking rods are evenly formed on the surface of the shaft block. The end of the transverse locking rod passes through one of the side locking grooves.

[0010] Preferably, a circular groove is formed on the other side surface of the transverse inner slider, and one end of the spring is inserted into the circular groove.

[0011] Preferably, a top slider is fixed to the top surface of the transverse inner slider, and a top slide rail for the top slider to slide is provided on the top surface of the rotating substrate. The top end of the top slider passes through the top slide rail to the top of the rotating substrate and is fixed with a top lever block.

[0012] Preferably, a rectangular notch is provided on the top surface of the top lever block.

[0013] Preferably, a circular central hole with a size matching the bottom end of the shaft block is provided through the center of the rotating substrate.

[0014] Preferably, the inner wall of one end of the transverse sliding groove has a through hole corresponding to the transverse locking rod, and the through hole communicates with the circular central hole.

[0015] Compared with the prior art, the beneficial effects of this utility model are as follows: By improving the existing plastic-coated roofing mesh structure, this utility model adds a convenient connecting component between two adjacent plastic-coated roofing meshes, which can easily achieve a quick and firm connection between two adjacent roofing meshes without the need for complicated construction tools and techniques. This greatly reduces the difficulty and cost of on-site installation of plastic-coated roofing meshes, while ensuring the stability and durability of the connection, providing strong technical support for the widespread application of plastic-coated roofing meshes. Attached Figure Description

[0016] Figure 1 This is a schematic diagram of the structure of this utility model;

[0017] Figure 2 This utility model Figure 1 A magnified view of a portion of region A in the middle;

[0018] Figure 3 This is a perspective view of the convenient connection component of this utility model;

[0019] Figure 4 This is a cross-sectional view of the convenient connection component of this utility model;

[0020] Figure 5 This utility model Figure 4 A magnified view of a portion of region B in the middle;

[0021] In the diagram: 11. Horizontal metal wire; 12. Vertical metal wire; 2. Convenient connecting assembly; 21. Connecting seat; 22. T-shaped wire groove; 23. Shaft block; 24. Rotating base plate; 25. Limiting pressure plate; 26. Limiting structure; 261. Horizontal slide groove; 262. Spring; 263. Horizontal inner slider; 264. Horizontal locking rod; 265. Side locking groove; 266. Top slider; 267. Top slide rail; 268. Top lever block. Detailed Implementation

[0022] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0023] Example

[0024] Please see Figures 1 to 5 This is an embodiment of the present utility model, which provides a technical solution: a plastic-coated roof mesh structure, including two adjacent roof meshes and a plurality of convenient connecting components 2 disposed between the two adjacent roof meshes;

[0025] The roof netting is woven from multiple intersecting horizontal metal wires 11 and vertical metal wires 12;

[0026] The convenient connection assembly 2 includes a connector 21, two T-shaped wire grooves 22 formed on the top surface of the connector 21, a shaft block 23 fixed at the top center of the connector 21, a rotating base plate 24 rotatably sleeved on the surface of the shaft block 23, and two limiting pressure plates 25 welded and fixed to the two end surfaces of the rotating base plate 24. The vertical metal wire 12 and the horizontal metal wire 11 are embedded in the T-shaped wire grooves 22, and the limiting pressure plates 25 press on the T-shaped wire grooves 22. The convenient connection assembly 2 also includes a limiting structure 26 disposed between the rotating base plate 24 and the shaft block 23.

[0027] In this embodiment, preferably, the limiting structure 26 includes two transverse sliding grooves 261 formed inside the rotating base plate 24, a spring 262 installed in the transverse sliding grooves 261, and a transverse inner slider 263. A transverse locking rod 264 is welded and fixed to one side of the transverse inner slider 263. Four side locking grooves 265 corresponding to the transverse locking rod 264 are evenly formed on the surface of the shaft block 23. The end of the transverse locking rod 264 passes through one of the side locking grooves 265, so as to realize the stable limiting of the rotating base plate 24 and the limiting pressure plate 25 during daily use, and ensure the limiting stability of the limiting pressure plate 25 on the transverse metal wire 11 and the vertical metal wire 12.

[0028] In this embodiment, preferably, a circular groove is provided on the other side surface of the transverse inner slider 263, and one end of the spring 262 is inserted into the circular groove, which can play a certain limiting role for the spring 262 and prevent the spring 262 from deviating.

[0029] In this embodiment, preferably, a top slider 266 is welded and fixed to the top surface of the transverse inner slider 263, and a top slide 267 for the top slider 266 to slide is provided on the top surface of the rotating substrate 24. The top end of the top slider 266 passes through the top slide 267 to the top of the rotating substrate 24 and is fixed with a top lever 268, so that the operator can move the transverse inner slider 263 and the transverse locking rod 264 to the side by moving the top lever 268, thereby releasing the restriction on the rotating substrate 24.

[0030] In this embodiment, preferably, a rectangular notch is provided on the top surface of the top lever block 268 to facilitate the subsequent side lever operation of the top lever block 268 by the operator.

[0031] In this embodiment, preferably, a circular central hole with a size matching the bottom end of the shaft block 23 is provided through the center of the rotating substrate 24, so that the rotating substrate 24 can rotate smoothly on the surface of the shaft block 23.

[0032] In this embodiment, preferably, a through hole corresponding to the horizontal locking rod 264 is provided through the inner wall of one end of the transverse sliding groove 261, and the through hole communicates with the circular central hole to allow the transverse locking rod 264 to pass smoothly through.

[0033] In summary, when splicing two adjacent plastic-coated roofing meshes, first, push the top lever 268 to the side, so that the end of the horizontal locking rod 264 moves out of the side locking groove 265. Then, rotate the rotating base plate 24 around the shaft block 23 by 90 degrees, so that the limiting pressure plate 25 no longer blocks the T-shaped wire groove 22. At this time, press the horizontal metal wire 11 and vertical metal wire 12 on the side of the plastic-coated roofing mesh into the T-shaped wire groove 22. Then, push the top lever 268 to the side and rotate the rotating base plate 24 back by 90 degrees, so that the limiting pressure plate 25 can press on the top of the T-shaped wire groove 22 to limit the horizontal metal wire 11 and vertical metal wire 12. Then, release the top lever 268. Under the pushing of the spring 262, the end of the horizontal locking rod 264 is inserted into the side locking groove 265, so that the rotating base plate 24 and the limiting pressure plate 25 are limited again. Thus, the splicing construction between two adjacent plastic-coated roofing meshes can be quickly completed through the convenient connection component 2.

[0034] Although embodiments of the present invention have been shown and described (see the detailed description above), it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A plastic-coated roofing mesh structure, characterized in that: include Two adjacent roof nets, and multiple convenient connection components set between the two adjacent roof nets (2); The roof mesh is woven from multiple intersecting horizontal metal wires (11) and vertical metal wires (12); The convenient connection assembly (2) includes a connector (21), two T-shaped wire grooves (22) formed on the top surface of the connector (21), a shaft block (23) fixed at the top center of the connector (21), a rotating base plate (24) rotatably sleeved on the surface of the shaft block (23), and two limiting pressure plates (25) fixed on the two end surfaces of the rotating base plate (24). The vertical metal wire (12) and the horizontal metal wire (11) are embedded in the T-shaped wire groove (22), and the limiting pressure plates (25) press on the T-shaped wire groove (22). The convenient connection assembly (2) also includes a limiting structure (26) disposed between the rotating base plate (24) and the shaft block (23).

2. The plastic-coated roof mesh structure according to claim 1, characterized in that: The limiting structure (26) includes two transverse sliding grooves (261) opened inside the rotating base plate (24), a spring (262) installed in the transverse sliding grooves (261) and a transverse inner slider (263). A transverse locking rod (264) is fixed on one side of the transverse inner slider (263). Four side locking grooves (265) corresponding to the transverse locking rod (264) are evenly opened on the surface of the shaft block (23). The end of the transverse locking rod (264) passes through one of the side locking grooves (265).

3. The plastic-coated roof mesh structure according to claim 2, characterized in that: A circular groove is provided on the other side surface of the transverse inner slider (263), and one end of the spring (262) is inserted into the circular groove.

4. A plastic-coated roof mesh structure according to claim 2, characterized in that: The top surface of the transverse inner slider (263) is fixed with a top slider (266), and the top surface of the rotating base plate (24) is provided with a top slide (267) for the top slider (266) to slide. The top end of the top slider (266) passes through the top slide (267) to the top of the rotating base plate (24) and is fixed with a top lever block (268).

5. A plastic-coated roof mesh structure according to claim 4, characterized in that: A rectangular notch is provided on the top surface of the top lever block (268).

6. The plastic-coated roof mesh structure according to claim 1, characterized in that: A circular central hole with a size matching the bottom end of the shaft block (23) is provided through the center of the rotating base plate (24).

7. A plastic-coated roof mesh structure according to claim 2, characterized in that: One end of the transverse sliding groove (261) has a through hole corresponding to the transverse locking rod (264) on its inner wall, and the through hole is connected to the circular central hole.