High-strength supporting structure of wind power generation supporting PE pipe

By introducing a combination structure of pressure-resistant plates, support strips, and reinforcement components into the PE pipe, the problem of insufficient support of the PE pipe in wind power generation is solved, achieving high-strength support and anti-deformation effect, and enhancing the stability and durability of the PE pipe.

CN223540175UActive Publication Date: 2025-11-11YANCHENG CHIJINGCHENG RUBBER & PLASTIC PRODUCTS CO LTD
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Patent Information

Application Number
CN202422969236.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-03
Publication Date
2025-11-11
Estimated Expiration
2034-12-03

AI Technical Summary

Technical Problem

Existing PE pipes have limited supporting function in wind power generation and are prone to deformation or damage under external pressure, affecting their performance.

Method used

The system employs a combination structure of pressure-resistant plates, support bars, and reinforcing components, including support plates, support bars, clamping blocks, clamping grooves, limiting blocks, and reinforcing plates. Stable connection and reinforcement of PE pipes are achieved through clamping and connecting bolts, while external heat insulation coating and heat insulation mesh are added to improve temperature resistance.

Benefits of technology

It improves the supporting strength and stability of PE pipes, prevents deformation and damage, enhances the protection of joints, and improves the efficiency and durability of PE pipes.

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Abstract

The utility model relates to the technical field of wind power generation, and discloses a wind power generation supporting PE pipe high-strength supporting structure which comprises PE pipe bodies, the number of the PE pipes is two, a reinforcing assembly is arranged at the connecting position of the two PE pipe bodies, a plurality of pressure-resistant plates are fixedly arranged on the surfaces of the PE pipe bodies, supporting plates are fixedly arranged on the inner walls of the PE pipe bodies, and the supporting plates are fixedly arranged on the surfaces of the PE pipe bodies. A supporting strip is arranged on the inner wall of the supporting plate, a clamping block is arranged at one end of the supporting strip, a clamping groove is formed in the other end of the supporting strip, and a limiting block is arranged in the clamping groove in a sliding mode; the supporting effect of the PE pipes can be improved through the cooperation of the pressure-resistant plates and the supporting strips, the interiors of the PE pipes are stably supported, the PE pipes are prevented from being deformed due to pressure, the adjacent supporting strips can be connected into a whole, the supporting effect of the supporting strips on the PE pipes is further guaranteed, the reinforcing assemblies are arranged at the butt joint positions of the PE pipes, and therefore the supporting effect of the PE pipes is improved. And the joint of the PE pipe can be protected and prevented from being damaged.
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Description

Technical Field

[0001] This utility model relates to the field of wind power generation technology, specifically a high-strength support structure for wind power generation support PE pipes. Background Technology

[0002] Wind power generation converts the kinetic energy of wind into electrical energy; PE pipes are needed to transmit electricity during the wind power generation process.

[0003] A search revealed a high-strength supported PE pipe disclosed in application number 202420248897.9. This pipe includes a first PE pipe, a second PE pipe, a connecting pipe, and a connecting plate. The inner wall of the connecting pipe has a positioning groove, and a positioning block is disposed inside the positioning groove. The outer wall of the positioning block is respectively provided with the first PE pipe and the second PE pipe. This high-strength supported PE pipe features a connecting pipe at the connection point of the first and second PE pipes, which reinforces and stabilizes them. Furthermore, a reinforcing plate is installed on the outer wall of the first and second PE pipes, further reinforcing and stabilizing their internal structure. This improves the installation and utilization rate of the first and second PE pipes, solving the problem that general PE pipes, with their simple structure, are prone to surface deformation during long-term use in construction projects, leading to low utilization rates and affecting water supply and drainage projects or building construction. This high-strength supported PE pipe significantly improves efficiency.

[0004] However, the above method still has the following drawbacks in actual use: it strengthens and stabilizes the interior of the first and second PE pipes by setting up reinforcing plates, but its supporting effect is limited. When the surface of the PE pipe is subjected to external pressure, it and the joint are prone to deformation or even damage, affecting the practical effect of the PE pipe. Utility Model Content

[0005] The purpose of this utility model is to provide a high-strength support structure for PE pipes used in wind power generation, which has the effect of high support strength and the PE pipe is not easily deformed.

[0006] The above-mentioned technical objective of this utility model is achieved through the following technical solution: a high-strength support structure for wind power generation PE pipes, including PE pipe bodies, two PE pipe bodies are provided, a reinforcing component is provided at the connection of the two PE pipe bodies, multiple pressure-resistant plates are fixedly provided on the surface of the PE pipe bodies, a support plate is fixedly provided on the inner wall of the PE pipe bodies, a support strip is provided on the inner wall of the support plate, a locking block is provided at one end of the support strip, and a first inclined surface is provided at one end of the locking block, a locking groove is provided at the other end of the support strip, a limiting block is slidably provided inside the locking groove, a second inclined surface is provided on the side of the limiting block corresponding to the first inclined surface, and a limiting groove is provided on the surface of the locking block.

[0007] A further feature of this invention is that the outer wall of the PE pipe is provided with a heat insulation mesh and a heat insulation coating, the heat insulation coating is attached to the heat insulation mesh, and the heat insulation mesh is embedded in the PE pipe body.

[0008] A further feature of this invention is that an installation block is fixedly provided at the end of the support bar, and the installation block is fixedly connected to the inner wall of the support plate by installation screws.

[0009] A further feature of this invention is that the inner side of the support bar is provided with a telescopic groove, and the limiting block slides within the telescopic groove.

[0010] A further feature of this invention is that the inner side of the limiting block is connected to the inner side of the telescopic groove via a reset spring.

[0011] A further feature of this invention is that the reinforcing assembly includes two semi-annular reinforcing plates, the two reinforcing plates are installed at the joint of the two PE pipes, and the two reinforcing plates are connected by connecting bolts.

[0012] A further feature of this invention is that the reinforcing plate has a folded edge on its side, and the surface of the folded edge has a connecting hole, and the connecting bolt is installed between two adjacent connecting holes.

[0013] In summary, this utility model has the following beneficial effects: the cooperation between the anti-pressure plate and the support strip can improve the support effect of the PE pipe, provide stable support for the inside of the PE pipe, prevent it from being deformed by pressure, and the adjacent support strips can be connected as one unit to further ensure their support for the PE pipe. The reinforcement component set at the joint of the PE pipe can protect the joint of the PE pipe and prevent it from being damaged. Attached Figure Description

[0014] Figure 1 This is one of the three-dimensional structural schematic diagrams of this utility model;

[0015] Figure 2 This is the second three-dimensional structural schematic diagram of the present invention;

[0016] Figure 3 This is a cross-sectional structural diagram of the present invention;

[0017] Figure 4 This utility model Figure 3 A schematic diagram of the exploded structure;

[0018] Figure 5 This utility model Figure 2 A magnified structural diagram at point A;

[0019] Figure 6 This utility model Figure 2 A magnified structural diagram at point B;

[0020] Figure 7 This utility model Figure 3 A magnified structural diagram at point C;

[0021] Figure 8 This utility model Figure 4 A magnified structural diagram at point D.

[0022] In the diagram: 1. PE pipe body; 101. Pressure-resistant plate; 102. Support plate; 2. Support strip; 201. Mounting block; 202. Mounting screw; 203. Locking block; 204. Limiting groove; 205. Locking groove; 206. Expansion groove; 207. Limiting block; 208. Return spring; 3. Reinforcing assembly; 301. Reinforcing plate; 302. Folded edge; 303. Connecting hole; 304. Connecting bolt. Detailed Implementation

[0023] The present invention will be further described below with reference to the accompanying drawings of the embodiments thereof.

[0024] Please see Figures 1-8 In this embodiment of the invention, a high-strength support structure for a wind power generation PE pipe includes a PE pipe body 1. Two PE pipe bodies 1 are provided, and a reinforcing component 3 is provided at the connection point of the two PE pipe bodies 1. Multiple pressure-resistant plates 101 are fixedly provided on the surface of the PE pipe body 1, with equal spacing between adjacent pressure-resistant plates 101, providing pressure resistance to the surface of the PE pipe body 1 and preventing deformation or damage caused by external pressure. A support plate 102 is fixedly provided on the inner wall of the PE pipe body 1, and a support strip 2 is provided on the inner wall of the support plate 102 to provide stable support to the inner side of the PE pipe body 1. The support strip 2 is made of metal to ensure its supporting effect. One end of the support bar 2 is provided with a locking block 203, and one end of the locking block 203 is provided with a first inclined surface. The other end of the support bar 2 is provided with a locking groove 205. A limiting block 207 is slidably provided inside the locking groove 205. The side of the limiting block 207 is provided with a second inclined surface corresponding to the first inclined surface. When the locking block 203 is engaged in the locking groove 205, it can push the limiting block 207 to extend and retract inward without interfering with the engagement between the locking block 203 and the locking groove 205. The surface of the locking block 203 is provided with a limiting groove 204. After the locking block 203 and the locking groove 205 are engaged, the limiting block 207 can be engaged inside the limiting groove 204, so that the PE pipe body 1 can be stably connected after docking and will not fall off.

[0025] In this embodiment, preferably, the outer wall of the PE pipe body 1 is provided with a heat insulation mesh and a heat insulation coating. The heat insulation coating is attached to the heat insulation mesh, and the heat insulation mesh is embedded in the PE pipe body 1. The heat insulation effect of the PE pipe body 1 can be effectively improved by wrapping it with the heat insulation mesh and the heat insulation coating, and the PE pipe body 1 can be prevented from cracking due to temperature and external factors.

[0026] In this embodiment, preferably, an installation block 201 is fixedly provided at the end of the support bar 2. The installation block 201 is fixedly connected to the inner wall of the support plate 102 by the installation screw 202, which limits the position of the support bar 2 after installation and allows the support bar 2 to be quickly installed and removed.

[0027] In this embodiment, preferably, the inner side of the support bar 2 is provided with a telescopic groove 206, and the limiting block 207 slides inside the telescopic groove 206. When the limiting block 207 is squeezed, it can slide into the inside of the telescopic groove 206 without interfering with the engagement of the locking block 203 and the locking groove 205.

[0028] In this embodiment, preferably, the inner side of the limiting block 207 is connected to the inner side of the telescopic groove 206 through the reset spring 208. The reset spring 208 can automatically engage the limiting block 207 into the limiting groove 204 when the limiting groove 204 on the locking block 203 moves to the position corresponding to the limiting block 207, so that the adjacent support bars 2 are connected together, thereby strengthening the support strength of the PE pipe body 1.

[0029] In this embodiment, preferably, the reinforcement component 3 includes two semi-circular reinforcement plates 301. The two reinforcement plates 301 are installed at the joint of the two PE pipe bodies 1, and the two reinforcement plates 301 are connected by connecting bolts 304. The reinforcement plates 301 are fixedly installed at the joint of the two PE pipe bodies 1, thereby reinforcing and protecting the joint of the PE pipe bodies 1.

[0030] In this embodiment, preferably, the side of the reinforcing plate 301 is provided with a folded edge 302, and the surface of the folded edge 302 is provided with a connecting hole 303. The connecting bolt 304 is installed between two adjacent connecting holes 303, and the two reinforcing plates 301 are assembled using the connecting bolt 304 to fix them to the outer surface of the PE pipe body 1.

[0031] In use, firstly, the support strip 2 is installed on the inner wall of the PE pipe body 1 using the mounting block 201 and mounting screw 202. Then, the two PE pipe bodies 1 are joined together, so that the locking block 203 at one end of the support strip 2 engages with the locking groove 205 of the adjacent support strip 2. During the process of the locking block 203 engaging into the locking groove 205, the limiting block 207 is pushed to move into the interior of the telescopic groove 206 under the cooperation of the first and second inclined surfaces. When the limiting groove 204 on the locking block 203 moves to the position corresponding to the limiting block 207, the limiting block 207 is moved back to its original position under the action of the return spring 208. 07 automatically inserts into the limiting groove 204, connecting the adjacent support bars 2 together to complete the docking of the adjacent PE pipe bodies 1. Then, the connection is hot-melted welded to connect the two PE pipe bodies 1 together. Then, the reinforcement component 3 is installed at the docking point, and two semi-circular reinforcement plates 301 are installed at the docking point of the PE pipe bodies 1 to assemble the two reinforcement plates 301 together. Then, the two reinforcement plates 301 are installed on the surface of the PE pipe body 1 by installing connecting bolts 304 in the adjacent connection holes 303, thereby protecting the docking point of the PE pipe bodies 1.

[0032] The above description is only a preferred embodiment of the present utility model. Therefore, all equivalent changes or modifications made to the structure, features and principles described in the claims of the present utility model patent application are included in the scope of the present utility model patent application.

Claims

1. A high-strength support structure for a PE pipe used in wind power generation, comprising two PE pipe bodies (1), wherein a reinforcing component (3) is provided at the connection between the two PE pipe bodies (1), characterized in that, The surface of the PE pipe body (1) is fixedly provided with multiple pressure-resistant plates (101), the inner wall of the PE pipe body (1) is fixedly provided with a support plate (102), the inner wall of the support plate (102) is provided with a support strip (2), one end of the support strip (2) is provided with a locking block (203), and one end of the locking block (203) is provided with a first inclined surface, the other end of the support strip (2) is provided with a locking groove (205), the inside of the locking groove (205) is provided with a limiting block (207), the side of the limiting block (207) is provided with a second inclined surface corresponding to the first inclined surface, and the surface of the locking block (203) is provided with a limiting groove (204).

2. The high-strength support structure for wind power generation PE pipes according to claim 1, characterized in that: The outer wall of the PE pipe body (1) is provided with a heat insulation mesh and a heat insulation coating. The heat insulation coating is attached to the heat insulation mesh, and the heat insulation mesh is embedded in the PE pipe body (1).

3. The high-strength support structure for wind power generation PE pipes according to claim 1, characterized in that: The end of the support bar (2) is fixedly provided with a mounting block (201), and the mounting block (201) is fixedly connected to the inner wall of the support plate (102) by mounting screws (202).

4. The high-strength support structure for wind power generation PE pipes according to claim 1, characterized in that: The inner side of the support bar (2) is provided with a telescopic groove (206), and the limiting block (207) slides inside the telescopic groove (206).

5. The high-strength support structure for wind power generation PE pipes according to claim 4, characterized in that: The inner side of the limiting block (207) is connected to the inner side of the telescopic groove (206) via a reset spring (208).

6. The high-strength support structure for wind power generation PE pipes according to claim 1, characterized in that: The reinforcement component (3) includes two semi-annular reinforcement plates (301), which are installed at the joint of two PE pipe bodies (1) and are connected by connecting bolts (304).

7. The high-strength support structure for wind power generation PE pipes according to claim 6, characterized in that: The reinforcing plate (301) has a folded edge (302) on its side, and the surface of the folded edge (302) has a connecting hole (303). The connecting bolt (304) is installed between two adjacent connecting holes (303).

Citation Information

Patent Citations

  • High-strength supported PE pipe

    CN221323591U