Reinforced single-pipe tower

The clamping frame, composed of arc-shaped fixing blocks and reinforcing rods, solves the problem of inconvenient installation of single-tube communication tower reinforcement structures, achieving efficient and safe reinforcement and reducing the load-bearing requirements of the tower body.

CN223661436UActive Publication Date: 2025-12-12FOSHAN NANHAI GUANHENG STEEL STRUCTURE
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Patent Information

Application Number
CN202423065918.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-11
Publication Date
2025-12-12
Estimated Expiration
2034-12-11

AI Technical Summary

Technical Problem

The existing reinforcement structure for single-tube communication towers is inconvenient to install and has high labor costs, making it impossible to achieve effective reinforcement without drilling or welding.

Method used

A clamping frame consisting of arc-shaped fixing blocks and reinforcing rods is used to fix the support rod to the tower body by bolts, forming a stable connection structure. The arc-shaped fixing blocks and reinforcing blocks are spliced ​​together to form a fixing ring, which enhances the fixing effect of the support rod.

Benefits of technology

This technology enables convenient reinforcement of single-tube communication towers, improving structural strength and stability while reducing the structural load-bearing requirements of the tower body, simplifying the installation process, and enhancing safety.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a reinforced single-pipe tower which comprises a tower body, at least two supporting rods and at least two connecting frames, the connecting frames correspond to the supporting rods in a one-to-one mode, at least four arc-shaped fixing blocks matched with the tower body are arranged at one end of each connecting frame, and the at least two arc-shaped fixing blocks are arranged at intervals up and down. At least two arc-shaped fixing blocks located at the same height are spliced into a fixing circular ring, the fixing circular ring is matched with the tower body, connecting blocks are arranged at the two ends of each arc-shaped fixing block, reinforcing rods are arranged between the connecting blocks which are arranged in an up-down spaced mode, and an arc-shaped reinforcing block matched with the tower body is arranged between every two adjacent reinforcing rods. Every two adjacent connecting blocks are fixed through a first bolt, and every two adjacent reinforcing rods are fixed through a plurality of second bolts. A supporting rod is fixed to the other end of the connecting frame. The whole structure plays a role in forming a clamping frame to clamp the tower body and play a role in reinforcing, and meanwhile, the clamping frame is light in weight, so that the structural load-bearing requirement on the tower body is reduced.
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Description

TECHNICAL FIELD

[0001] The utility model relates to communication equipment technical field, especially a kind of reinforced single-pipe tower. BACKGROUND

[0002] Communication tower belongs to signal transmitting tower, also called signal transmitting tower or signal tower, and is composed of tower body, platform, lightning rod, ladder, antenna holding pole and other components, mainly used for microwave, ultrashort wave, wireless network signal transmission and emission, etc., and antenna is fixed on antenna holding pole by antenna support. Single-pipe communication tower is a commonly used communication tower, and it often needs to be reinforced in actual use. The existing reinforcing structure generally adopts bolt connection, which is inconvenient to install and connect, and the labor cost is high. Therefore, a single-pipe communication tower reinforcing device is needed, which can reinforce the existing single-pipe communication tower, and does not need to punch or weld the single-pipe communication tower during reinforcement, so as to facilitate installation. SUMMARY

[0003] The utility model aims at providing a kind of reinforced single-pipe tower to solve one or more technical problems existing in the prior art, and at least provide a beneficial choice or create conditions.

[0004] To solve the above technical problems, the technical scheme adopted is:

[0005] The utility model provides a kind of reinforced single-pipe tower, including tower body, at least two support rods and at least two connecting frames, the connecting frame is one-to-one corresponding with support rod, one end of the connecting frame is equipped with at least four arc fixed blocks compatible with tower body, at least two arc fixed blocks are arranged at intervals, and at least two arc fixed blocks at the same height are spliced into a fixed ring, the fixed ring is compatible with tower body, and the both ends of the arc fixed block are provided with connecting block, and the connecting block arranged at intervals is provided with reinforcing bar between, arc reinforcing block compatible with tower body is arranged between adjacent two reinforcing bars, adjacent two connecting blocks are fixed by first bolt, and adjacent two reinforcing bars are fixed by multiple second bolts;The other end of the connecting frame is fixed with support rod.

[0006] The utility model has the beneficial effects that:

[0007] The fixed ring spliced by arc fixed block can clamp the tower body, and the two arc reinforcing blocks also form a fixed ring to clamp the tower body. The reinforcing bars are connected to the arc reinforcing blocks and the arc fixed blocks, respectively, to further clamp and reinforce. The reinforcing bars are connected by screws to enhance the reinforcing effect, so that the support rod can be more firmly fixed on the tower body, and the structural strength is improved. The entire structure forms a clamping frame to clamp the tower body, and plays a reinforcing role. At the same time, the clamping frame itself is relatively light in weight, which reduces the structural load requirement of the tower body.

[0008] As a further improvement to the above technical solution, the connecting frame and the support rod are fixed by a clamp.

[0009] As a further improvement to the above technical solution, the connecting frame and the support rod are fixed by two clamps.

[0010] As a further improvement to the above technical solution, the support rod is provided with a fixing screw that extends radially, and the fixing screw passes sequentially between the two clamps, the support rod and the connecting frame.

[0011] As a further improvement to the above technical solution, the connecting frame is provided with a connecting plate, the connecting plate is provided with a fixing hole, and the fixing screw is threadedly connected to the fixing hole.

[0012] As a further improvement to the above technical solution, the number of support rods is three, the number of connecting frames is three, and the support rods are evenly arranged along the circumference of the single-tube communication tower body.

[0013] As a further improvement to the above technical solution, the side of the reinforcing rod abuts against the tower body.

[0014] As a further improvement to the above technical solution, the arc-shaped fixing block and the two reinforcing rods connected to its corresponding connecting block are integrally set.

[0015] As a further improvement to the above technical solution, the contact surface between the side of the reinforcing rod and the tower body is an arc-shaped surface.

[0016] As a further improvement to the above technical solution, the side wall of the arc-shaped fixing block is provided with a grounding wire thread hole. Attached Figure Description

[0017] The present invention will be further described below with reference to the accompanying drawings and embodiments;

[0018] Fig. 1 This utility model provides a reinforced single-tube tower, and a structural schematic diagram of one embodiment thereof, wherein the two arrows indicate upward and downward directions respectively;

[0019] Fig. 2 This is a top view schematic diagram of an embodiment of a reinforced single-tube tower provided by this utility model. Detailed Implementation

[0020] This section will describe in detail the specific embodiments of the present utility model. The preferred embodiments of the present utility model are shown in the accompanying drawings. The purpose of the drawings is to supplement the textual description with graphics, so that people can intuitively and vividly understand each technical feature and the overall technical solution of the present utility model, but they should not be construed as limiting the scope of protection of the present utility model.

[0021] In the description of this utility model, it should be understood that the directional descriptions, such as up, down, front, back, left, right, etc., indicate the directional or positional relationship based on the directional or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this utility model.

[0022] In the description of this utility model, if there are words such as "several", they mean one or more, "multiple" means two or more, "greater than", "less than", "exceeding" etc. are understood to exclude the number itself, and "above", "below", "within" etc. are understood to include the number itself.

[0023] In the description of this utility model, unless otherwise explicitly defined, terms such as "setting," "installation," and "connection" should be interpreted broadly, and those skilled in the art can reasonably determine the specific meaning of the above terms in this utility model in conjunction with the specific content of the technical solution.

[0024] Reference Figs. 1-2 The present invention provides a method for reinforcing a single-tube tower, and the following embodiments are provided:

[0025] In some embodiments, a reinforced single-tube tower includes a tower body 100, three support rods 200 and three connecting frames 300;

[0026] The connecting frame 300 corresponds one-to-one with the support rod 200. The three connecting frames 300 are arranged in a ring around the tower body 100. One end of the connecting frame 300 is provided with six arc-shaped fixing blocks 310 that are adapted to the tower body 100. The six arc-shaped fixing blocks 310 are divided into two groups. The three arc-shaped fixing blocks 310 in the same group are spliced ​​together to form a fixing ring. The fixing ring is adapted to the tower body 100.

[0027] The arc-shaped fixing block 310 has connecting blocks 311 at both ends. Two adjacent arc-shaped fixing blocks 310 are connected by first bolts 312 to form a clamping force on the tower body 100. A reinforcing rod 320 is provided between the connecting blocks 311 arranged at vertical intervals. An arc-shaped reinforcing block 330 adapted to the tower body 100 is provided between two adjacent reinforcing rods 320. Two adjacent reinforcing rods 320 are fixed by multiple second bolts 313 to further increase the clamping force on the tower body 100.

[0028] The other end of the connecting frame 300 is fixed with a support rod 200. The connecting frame 300 and the support rod 200 are fixed by two clamps 340 and are fixed by tightening the clamps 340.

[0029] The number of three support rods 200 and three connecting frames 300 can be set according to the specific situation. The number of arc-shaped reinforcing blocks 330 can be set in multiples. The rings formed by multiple arc-shaped reinforcing blocks 330 are arranged at intervals between the upper and lower parts to further improve the reinforcement effect.

[0030] For example, the number of arc-shaped fixing blocks 310 can be set to eight, with the eight arc-shaped fixing blocks 310 divided into two groups. The four arc-shaped fixing blocks 310 in the same group are spliced ​​together to form a fixing ring, which is adapted to the tower body 100. The number of arc-shaped reinforcing blocks 330 is also eight, with the eight arc-shaped reinforcing blocks 330 divided into two groups. The four arc-shaped reinforcing blocks 330 in the same group are spliced ​​together to form a fixing ring, which is adapted to the tower body 100.

[0031] To better secure the support rod 200, the connecting frame 300 is further improved by providing a connecting plate 360. The side of the support rod 200 is abutted against the connecting plate 360 ​​by clamps 340. The support rod 200 is equipped with radially extending fixing screws 350, which pass sequentially between two clamps 340, the support rod 200, and the connecting plate 360. The connecting plate 360 ​​has fixing holes, and the fixing screws 350 are threaded into these holes. The screws connect to the connecting plate 360, providing further support and fixation. When the support rod 200 slides down, one end of the screw can abut against the clamps 340, thus securing it.

[0032] Further improvements include the side of the reinforcing rod 320 abutting against the tower body 100, which enhances the stability and load-bearing capacity of the entire structure. The contact surface between the side of the reinforcing rod 320 and the tower body 100 is an arc-shaped surface, which can increase the contact area.

[0033] Further improvements include the integration of the arc-shaped fixing block 310 and the two reinforcing rods 320 connected to its corresponding connecting block 311 into a single unit. This design not only enhances the overall structural strength, simplifies the assembly process, and improves connection reliability, but also optimizes stress distribution and enhances aesthetics and harmony, bringing numerous beneficial effects to the design and application of related structures.

[0034] The arc-shaped fixing block 310 has a grounding wire threaded hole on its side wall. This offers the following advantages: Convenient grounding connection: The threaded hole design allows the grounding wire to be easily fixed to the arc-shaped fixing block 310 via a threaded connection, eliminating the need for additional fixing devices or tools and simplifying the grounding process; the threaded connection is robust and reliable, ensuring a stable connection between the grounding wire and the arc-shaped fixing block 310, preventing loosening or detachment; Improved safety: In applications requiring grounding, such as electrical equipment and buildings, the threaded hole design ensures the effectiveness and reliability of the grounding system, thereby improving overall safety. By firmly connecting the grounding wire to the arc-shaped fixing block 310, the grounding potential of the electrical equipment can be effectively equalized to the ground potential, preventing electrical accidents; Strong adaptability: The threaded hole design has a certain degree of versatility, adapting to different specifications and types of grounding wires, allowing the design to be applied in various situations; Easy maintenance and inspection: The threaded grounding wire can be easily disassembled and reinstalled, making maintenance and inspection easier. When it is necessary to inspect or replace the grounding wire, simply unscrew the original grounding wire and install the new one; there is no need to make large-scale changes to the entire grounding system.

[0035] This invention uses interlocking arc-shaped fixing blocks 310 to form a fixed ring, which tightly fits and hugs the tower body 100. Simultaneously, there are two arc-shaped reinforcing blocks 330, which also combine to form a fixed ring, tightly wrapping around the tower body 100 and further enhancing stability.

[0036] Between these arc-shaped blocks, the reinforcing rod 320 is not only firmly connected to the arc-shaped reinforcing block 330 and the arc-shaped fixing block 310 respectively through connectors (such as screws), forming a more robust overall frame, but also provides additional support and reinforcement to the entire structure through its own rigidity. This design allows the support rod 200 to be more firmly attached to the tower body 100, thereby significantly improving the strength of the entire structure.

[0037] Despite providing strong support, this reinforced frame is relatively lightweight. This feature greatly reduces the additional structural weight that the tower 100 needs to bear, lowers the requirements on the tower's structural load-bearing capacity, and makes the entire design more efficient and practical.

[0038] In summary, this utility model, through its innovative arc-shaped block design and the connection method of the reinforcing rod, constructs a lightweight and efficient clamping frame that can tightly wrap around and reinforce the tower body, thereby improving the stability and safety of the overall structure.

[0039] The preferred embodiments of the present invention have been described in detail above. However, the present invention is not limited to the embodiments. Those skilled in the art can make various equivalent modifications or substitutions without departing from the spirit of the present invention. All such equivalent modifications or substitutions are included within the scope defined by the claims of this application.

Claims

1. A reinforced single-tube tower, characterized in that, include: Tower body; The tower has at least two support rods and at least two connecting frames, each corresponding to one of the support rods. One end of each connecting frame has at least four arc-shaped fixing blocks adapted to the tower body. At least two arc-shaped fixing blocks are spaced vertically, and at least two arc-shaped fixing blocks at the same height are joined to form a fixing ring adapted to the tower body. Connecting blocks are located at both ends of each arc-shaped fixing block. Reinforcing rods are positioned between the vertically spaced connecting blocks, and arc-shaped reinforcing blocks adapted to the tower body are positioned between adjacent reinforcing rods. Adjacent connecting blocks are secured by a first bolt, and adjacent reinforcing rods are secured by multiple second bolts. A support rod is fixed to the other end of the connecting frame.

2. The reinforced single-tube tower according to claim 1, characterized in that: The connecting frame and the support rod are fixed together by clamps.

3. A reinforced single-tube tower according to claim 2, characterized in that: The connecting frame and the support rod are fixed together by two clamps.

4. A reinforced single-tube tower according to claim 3, characterized in that: The support rod is provided with a fixing screw that extends radially, and the fixing screw passes sequentially between the two clamps, the support rod and the connecting frame.

5. A reinforced single-tube tower according to claim 4, characterized in that: The connecting frame is provided with a connecting plate that abuts against the support rod. The connecting plate is provided with a fixing hole, and the fixing screw is threadedly connected to the fixing hole.

6. A reinforced single-tube tower according to claim 1, characterized in that: The number of support rods is three, the number of connecting frames is three, and the support rods are evenly arranged along the circumference of the single-tube communication tower body.

7. A reinforced single-tube tower according to claim 1, characterized in that: The side of the reinforcing rod abuts against the tower body.

8. A reinforced single-tube tower according to claim 7, characterized in that: The arc-shaped fixing block and the two reinforcing rods connected to its corresponding connecting block are integrally set.

9. A reinforced single-tube tower according to claim 7, characterized in that: The contact surface between the side of the reinforcing rod and the tower body is an arc-shaped surface.

10. A reinforced single-tube tower according to claim 1, characterized in that: The side wall of the arc-shaped fixing block is provided with a grounding wire thread hole.