Reinforced electric power iron tower
Through the design of reinforced power towers, the use of structures such as positioning frames, embedded columns and compression components, the problem of insufficient stability and wind resistance of the power tower is solved, and higher stability and wind resistance are achieved to ensure safety.
Patent Information
- Application Number
- CN202422345044.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-25
- Publication Date
- 2025-07-18
- Estimated Expiration
- 2034-09-25
AI Technical Summary
The existing power towers have low stability and insufficient body strength. They have poor wind resistance when encountering strong winds, which poses safety hazards.
The reinforced power tower design is adopted, including base, tower body, compression assembly and fixed support assembly. Through the combination of positioning sleeves, embedded columns, press plates, screws and other structures, multi-stage fixing and compression are achieved, enhancing the stability of the connection between the base and the ground.
It improves the stability and wind resistance of the power tower, ensures that it is not easy to loosen and fall out in strong wind environments, and enhances the overall firmness and safety.
Smart Images

Figure CN223119660U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of power transmission towers, and particularly to a reinforced power transmission tower. Background Art
[0002] In recent years, with the rapid growth of the national economy, the power industry has developed rapidly, promoting the rapid development of the transmission line tower industry. Transmission line towers are tower structures used to support and overhead conductors, lightning conductors and other accessories, so that the conductors are kept at a specified safe distance from each other, from the tower, from the lightning conductors, and from the ground or crossing objects. However, the existing power transmission towers have low stability and low body strength. When encountering strong winds, their wind resistance is still insufficient, and the wind resistance strength is low, posing a danger.
[0003] Therefore, improvements are made to solve the above problems. Content of the Utility Model
[0004] The utility model provides a reinforced power transmission tower, which solves the problems in the related art that the existing power transmission towers have low stability and low body strength, and when encountering strong winds, their wind resistance is still insufficient, and the wind resistance strength is low, posing a danger.
[0005] The technical solution of the utility model is as follows: It includes
[0006] a base and a tower body, and the tower body is arranged on the surface of the base;
[0007] a pressing component, which is arranged on both sides of the base;
[0008] a fixed support component, which is arranged between the base and the tower body;
[0009] The fixed support component includes a plurality of positioning sleeve frames, which are respectively fixed at the relative four corners on the surface of the base. A plurality of bottom grooves are opened at the bottom of the base, and embedded columns are inserted and connected in the bottom grooves.
[0010] As a further technical solution, a plurality of dispersion frames are arranged at the bottom of the embedded column. The bottom of the tower body is inserted and connected into the positioning sleeve frame. A pressing plate is installed on the surface of the positioning sleeve frame. Round holes are opened at both ends of the surface of the pressing plate, at the bottom of the tower body and at the top of the inner part of the bottom groove.
[0011] As a further technical solution, a threaded groove is opened at the top of the embedded column. A screw rod is inserted and connected in the round hole, and the screw rod is screwed and connected with the threaded groove through threads. A pair of fixed seats are arranged on the surface of the base.
[0012] As a further technical solution, a pair of slideways are arranged between the fixed seats, a pair of round rods are arranged between the fixed seats, a fixed sleeve is slidably connected to the slideways and the round rods, and the fixed sleeve is sleeved outside the pressing plate.
[0013] As a further technical solution, a pair of connecting ears are arranged on the side end face of the fixed sleeve, the connecting ears are connected with support bolts through threaded fit, a fixed block is arranged at the bottom of the support bolt, and the bottom surface of the fixed block is an anti-slip structural surface.
[0014] As a further technical solution, the pressing assembly includes a pair of outer grooves, the outer grooves are opened on both sides of the surface of the base, a pressing frame is inserted and connected in the outer grooves, and a plug rod is arranged at the bottom of the pressing frame.
[0015] As a further technical solution, a plurality of the plug rods are arranged horizontally, and the bottom of the plug rod is a conical structure.
[0016] As a further technical solution, the cross section of the fixed sleeve is in a U-shaped structure, and the fixed sleeve is slidably attached to the pressing plate.
[0017] As a further technical solution, a plurality of the dispersion frames are distributed in an umbrella-shaped structure with a certain inclination angle.
[0018] As a further technical solution, the positioning sleeve is integrally in a U-shaped structure, and the positioning sleeve is closely attached to the bottom of the tower body.
[0019] The working principle and beneficial effects of the present utility model are as follows:
[0020] 1. In the present utility model, a fixed support assembly is provided. Through the interaction of structures such as the positioning sleeve, bottom groove, embedded column, pressing plate, threaded groove, screw rod, fixed seat, fixed sleeve and support bolt, the tower body can be fixed in the positioning sleeve through multiple levels of structures. The positioning sleeve can correct the position of the tower body, and the embedded column can penetrate into the soil layer to ensure that the base is firmly attached to the ground without loosening or coming off, having good firmness and stability.
[0021] 2. In the present utility model, a pressing assembly is provided. Through the interaction of structures such as the outer groove, pressing frame and plug rod, the two pressing frames can be pressed on both sides of the base, and the plug rod can further fixedly connect with the ground to increase the stability. Description of the Drawings
[0022] The following further describes the present utility model in detail in conjunction with the drawings and specific embodiments.
[0023] Figure 1 It is a schematic structural diagram of the present utility model;
[0024] Figure 2 Isometric view of the present utility model;
[0025] Figure 3 Cross-sectional view of the present utility model;
[0026] Figure 4 Attachment of the present utility model Figure 1 Partial enlarged view of part A in the figure;
[0027] In the figure: 1, base; 2, tower body; 3, fixed support assembly; 3-1, positioning sleeve; 3-2, bottom groove; 3-3, embedded column; 3-4, dispersion frame; 3-5, pressing plate; 3-6, round hole; 3-7, thread groove; 3-8, screw; 3-9, fixed seat; 3-10, slideway; 3-11, round rod; 3-12, fixed sleeve; 3-13, connecting ear; 3-14, support bolt; 3-15, fixed block; 4, pressing assembly; 4-1, outer groove; 4-2, pressing frame; 4-3, insertion rod. Specific implementation mode
[0028] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without making creative efforts fall within the scope of protection of the present utility model.
[0029] As Figures 1 to 4 shown, this embodiment proposes a reinforced power transmission tower, including
[0030] a base 1 and a tower body 2, and the tower body 2 is arranged on the surface of the base 1;
[0031] a pressing assembly 4, and the pressing assembly 4 is arranged on both sides of the base 1;
[0032] a fixed support assembly 3, and the fixed support assembly 3 is arranged between the base 1 and the tower body 2;
[0033] The fixed support assembly 3 includes a number of positioning sleeve frames 3-1, which are respectively fixed at the opposite four corners of the surface of the base 1. A number of bottom grooves 3-2 are provided at the bottom of the base 1, and embedded columns 3-3 are inserted and connected in the bottom grooves 3-2. A number of dispersion frames 3-4 are provided at the bottom of the embedded columns 3-3. The bottom of the tower body 2 is inserted and connected in the positioning sleeve frames 3-1. A pressing plate 3-5 is installed on the surface of the positioning sleeve frames 3-1. Circular holes 3-6 are provided at both ends of the surface of the pressing plate 3-5, at the bottom of the tower body 2 and at the top of the inner part of the bottom groove 3-2. A threaded groove 3-7 is provided at the top of the embedded column 3-3. A screw 3-8 is inserted and connected in the circular hole 3-6, and the screw 3-8 is screwed and connected with the threaded groove 3-7 through threads. A pair of fixed seats 3-9 are provided on the surface of the base 1. A pair of slideways 3-10 are provided between the fixed seats 3-9. A pair of round rods 3-11 are provided between the fixed seats 3-9. A fixed sleeve frame 3-12 is slidably connected on the slideways 3-10 and the round rods 3-11. The fixed sleeve frame 3-12 is sleeved outside the pressing plate 3-5. A pair of connecting ears 3-13 are provided on the side end face of the fixed sleeve frame 3-12. A support bolt 3-14 is connected with the connecting ears 3-13 through threads. A fixed block 3-15 is provided at the bottom of the support bolt 3-14, and the bottom surface of the fixed block 3-15 is an anti-slip structural surface.
[0034] In this embodiment, in order to achieve the stable fixing effect of the tower body 2, the fixed support assembly 3 is designed. Positioning sleeve frames 3-1 are provided at the four corners of the surface of the base 1. The tower body 2 is inserted into the positioning sleeve frames 3-1. Bottom grooves 3-2 corresponding to the positions of the positioning sleeve frames 3-1 are provided at the bottom. Embedded columns 3-3 are inserted into the bottom grooves 3-2 and a plurality of embedded columns 3-3 are provided on the surface. The embedded columns 3-3 are used to be inserted into the soil layer, which can enhance the stable effect. A pressing plate 3-5 is installed on the positioning sleeve frames 3-1. Circular holes 3-6 are provided on the surface of the pressing plate 3-5, inside the bottom groove 3-2 and at the bottom of the tower body 2. A threaded groove 3-7 is provided at the top of the embedded column 3-3. The threaded groove 3-7 and the circular hole 3-6 are located on the same axis. A screw 3-8 is inserted into the circular hole 3-6 and screwed into the threaded groove 3-7, which can fixedly connect the base 1 and the embedded column 3-3 and fix the tower body 2 on the base 1. Two fixed seats 3-9 are provided on the surface of the base 1. A pair of slideways 3-10 and a pair of round rods 3-11 are provided between the fixed seats 3-9. Two fixed sleeve frames 3-12 are slidably connected on the slideways 3-10 and the round rods 3-11. The fixed sleeve frames 3-12 can be sleeved on the pressing plate 3-5 to further fix the pressing plate 3-5. Two connecting ears 3-13 are provided on the side end face of the fixed sleeve frames 3-12. A support bolt 3-14 is connected with the connecting ears 3-13 through threads. A fixed block 3-15 is provided at the lower end of the support bolt 3-14. The support bolt 3-14 can be screwed to support the fixed block 3-15 on the base 1 to fix the fixed sleeve frames 3-12 on the base 1.
[0035] Further, the pressing assembly 4 includes a pair of outer grooves 4-1 which are opened on both sides of the surface of the base 1. A pressing frame 4-2 is inserted and connected in the outer groove 4-1, and a plug rod 4-3 is arranged at the bottom of the pressing frame 4-2.
[0036] In this embodiment, in order to further achieve the effect of pressing and fixing the base 1, the pressing assembly 4 is designed. Outer grooves 4-1 are opened on both sides of the base 1, and a pressing frame 4-2 is installed in the outer groove 4-1. A plug rod 4-3 is arranged at the bottom of the pressing frame 4-2 for inserting into the ground to further press the base 1 on the ground.
[0037] Further, a plurality of plug rods 4-3 are arranged horizontally, and the bottom of the plug rod 4-3 is of a conical structure.
[0038] In this embodiment, by providing a plurality of plug rods 4-3 and cooperating with the conical structure, it can be better inserted into the ground.
[0039] Further, the cross-section of the fixed sleeve 3-12 is in a U-shaped structure, and the fixed sleeve 3-12 is slidably fitted with the pressing plate 3-5.
[0040] In this embodiment, through the U-shaped structure, it is tightly sleeved and connected with the fixed sleeve 3-12, and the pressing plate 3-5 is fixed through the tight fit.
[0041] Further, a plurality of dispersing frames 3-4 are distributed in an umbrella-shaped structure with a certain inclination angle.
[0042] In this embodiment, through the umbrella-shaped distribution structure with an inclination angle, the firm effect between the embedded column 3-3 and the ground can be increased.
[0043] Further, the positioning sleeve 3-1 is integrally in a U-shaped structure, and the positioning sleeve 3-1 is tightly fitted with the bottom of the tower body 2.
[0044] In this embodiment, through the U-shaped opening structure, it is convenient to insert the tower body 2 and the position will not be deflected.
[0045] When installation is required, first determine the position, bury the embedded column 3-3 into the soil layer, tightly wrap it through the dispersing frame 3-4 and the convex layer, then sleeved the base 1 on the upper end of the embedded column 3-3 through the bottom groove 3-2, insert the tower body 2 into the positioning sleeve 3-1, then cover the pressing plate 3-5 on the positioning sleeve 3-1, insert the screw rod 3-8 into the round hole 3-6 and screw it into the thread groove 3-7. After fully tightening, push the fixed sleeve 3-12 to be sleeved on the pressing plate 3-5. After sleeving tightly, turn the support bolt 3-14 to support the fixed block 3-15 on the surface of the base 1. The fixed block 3-15 can be welded on the surface of the base 1. Finally, insert the pressing frame 4-2 into the outer groove 4-1 and insert the plug rod 4-3 into the ground at the same time.
[0046] The above are only the preferred embodiments of the present utility model, and are not intended to limit the present utility model. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present utility model shall be included within the protection scope of the present utility model.
Claims
1. A reinforced power transmission tower, characterized in that, including a base (1) and a tower body (2), wherein the tower body (2) is arranged on the surface of the base (1); a pressing component (4), which is arranged on both sides of the base (1); a fixed support component (3), which is arranged between the base (1) and the tower body (2); the fixed support component (3) includes a plurality of positioning sleeve frames (3-1), the positioning sleeve frames (3-1) are respectively fixed at the opposite four corners of the surface of the base (1), a plurality of bottom grooves (3-2) are formed at the bottom of the base (1), and embedded columns (3-3) are inserted and connected in the bottom grooves (3-2).
2. The reinforced power transmission tower according to claim 1, wherein, A plurality of dispersion frames (3-4) are arranged at the bottom of the embedded column (3-3), the bottom of the tower body (2) is inserted and connected in the positioning sleeve frame (3-1), a pressing plate (3-5) is installed on the surface of the positioning sleeve frame (3-1), and circular holes (3-6) are formed at both ends of the surface of the pressing plate (3-5), at the bottom of the tower body (2) and at the top of the inner part of the bottom groove (3-2).
3. The reinforced power transmission tower according to claim 2, wherein A threaded groove (3-7) is formed at the top of the embedded column (3-3), a screw rod (3-8) is inserted and connected in the circular hole (3-6), the screw rod (3-8) is screwed and connected with the threaded groove (3-7) through threads, and a pair of fixed seats (3-9) are arranged on the surface of the base (1).
4. The reinforced power transmission tower according to claim 3, wherein, A pair of sliding grooves (3-10) are arranged between the fixed seats (3-9), a pair of round rods (3-11) are arranged between the fixed seats (3-9), a fixed sleeve frame (3-12) is slidably connected on the sliding grooves (3-10) and the round rods (3-11), and the fixed sleeve frame (3-12) is sleeved outside the pressing plate (3-5).
5. The reinforced type electric power tower according to claim 4, characterized in that, A pair of connecting ears (3-13) are arranged on the side end face of the fixed sleeve frame (3-12), the connecting ears (3-13) are connected with a support bolt (3-14) through thread fit, a fixed block (3-15) is arranged at the bottom of the support bolt (3-14), and the bottom surface of the fixed block (3-15) is an anti-slip structural surface.
6. A reinforced power transmission tower according to claim 1, characterized in that, The pressing component (4) includes a pair of outer grooves (4-1), the outer grooves (4-1) are formed on both sides of the surface of the base (1), a pressing frame (4-2) is inserted and connected in the outer grooves (4-1), and a plug rod (4-3) is arranged at the bottom of the pressing frame (4-2).
7. The reinforced electric power tower according to claim 6, wherein, A plurality of the plug rods (4-3) are arranged horizontally, and the bottom of the plug rod (4-3) is of a conical structure.
8. The reinforced power transmission tower according to claim 4, wherein, The cross section of the fixed sleeve frame (3-12) is of a U-shaped structure, and the fixed sleeve frame (3-12) is slidably attached to the pressing plate (3-5).
9. The reinforced power transmission tower according to claim 2, wherein, A plurality of the dispersion frames (3-4) are distributed in an umbrella-shaped structure with a certain inclination angle.
10. A reinforced power transmission tower according to claim 1, characterized in that, The whole positioning sleeve frame (3-1) is of a U-shaped structure, and the positioning sleeve frame (3-1) is closely attached to the bottom of the tower body (2).