Wind-resistant stabilizing and reinforcing device for steel structure tower and reinforcing method of wind-resistant stabilizing and reinforcing device

By designing a steel structure tower reinforcement device that works in a collaborative manner, the problem that traditional reinforcement devices are difficult to match the tower's stress point is solved, efficient reinforcement and convenient maintenance are achieved, and the tower's wind resistance and service life are improved.

CN120350852AInactive Publication Date: 2025-07-22北京弘石嘉业建筑设计有限公司
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Patent Information

Application Number
CN202510770195.6
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-06-10
Publication Date
2025-07-22
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

When installing, traditional steel structure tower reinforcement devices are difficult to effectively match according to the stress point of the tower itself, resulting in poor reinforcement effect and difficult to adjust the height, which increases maintenance costs and workload.

Method used

A steel structure tower wind-resistant and stable reinforcement device including a base, support, buffer, adjustment component, moving component, vibration-absorbing component, disassembly and assembly component and anti-loosening component is designed. The adjustment component and moving component achieve accurate matching of the reinforcement position. The buffering component reduces the shaking of the tower through the vibration-absorbing component, and disassembly and assembly components are convenient for maintenance, and the anti-loosening component improves stability.

Benefits of technology

Improves reinforcement efficiency and effect, reduces maintenance costs and workload, extends the service life of the tower, and reduces the risk of structural failure caused by fatigue damage.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of steel structure towers, and discloses a steel structure tower wind-resistant stabilizing and reinforcing device which comprises a base, a tower body is mounted at the top of the base, and reinforcing rods are mounted at the four corners of the tower body; a supporting part is further included. The adjusting assembly is arranged, specifically, an adjusting sleeve is rotated clockwise to drive a pull rod to push an angle wrapping block to move, the angle wrapping block can move conveniently through the action of a roller and a sliding rail, the reinforcing position is adjusted, the reinforcing position can be better matched with a key stress part of a tower body, and the reinforcing effect is improved. Therefore, the reinforcing efficiency and effect are improved, the wind resistance of the tower body at the key parts is enhanced, the situation of excessive reinforcing or insufficient reinforcing is avoided, meanwhile, in the subsequent maintenance process, if the reinforcing device needs to be checked and maintained or parts need to be replaced, the characteristic of height adjustability is also convenient for an operator to operate, and the maintenance cost is reduced. And the maintenance cost and the workload are reduced.
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Description

Technical Field

[0001] The present invention relates to the technical field of steel structure tower equipment, and particularly to a wind-resistant and stability reinforcement device for a steel structure tower and a reinforcement method thereof. Background Art

[0002] A steel structure is a structure mainly composed of steel materials and is one of the main types of building structures. The structure is mainly composed of steel beams, steel columns and other components made of section steel and steel plates. Because of its light self-weight and simple construction, it is widely used in large factories, stadiums, super high-rise buildings and other fields. In the engineering practice of steel structure towers, wind-resistant stability is the key issue to ensure their safe operation. Most traditional reinforcement devices are fixedly installed during installation and are difficult to adjust in height during subsequent use, and it is difficult to effectively match the stress points of the tower itself, thus reducing the reinforcement effect on the tower. At the same time, during subsequent maintenance, due to the difficulty of adjusting the height, it is not convenient for workers to carry out maintenance, increasing the maintenance cost and workload. Therefore, a wind-resistant and stability reinforcement device for a steel structure tower is specifically proposed. Summary of the Invention

[0003] The purpose of the present invention is to provide a wind-resistant and stability reinforcement device for a steel structure tower and a reinforcement method thereof to solve the problems raised in the above background art.

[0004] To solve the above technical problems, the present invention is realized through the following technical solutions: The present invention is a wind-resistant and stability reinforcement device for a steel structure tower, including a base, a tower body is installed on the top of the base, and reinforcement rods are installed at the four corners of the tower body; further including: A support part, the support part is installed outside the reinforcement rod, and the support part plays a role in stabilizing and reinforcing the tower body; A buffer part, the buffer part is connected and installed with the support part, and the buffer part plays a role in buffering the force generated by the equipment; Wherein, the base is installed and connected to the ground through a plurality of bolts and nuts, and at the same time, several reinforcement rods are also installed and connected to the base through bolts and nuts.

[0005] Further, the support part includes an adjustment component, one end of the adjustment component away from the reinforcement rod is connected and installed to the ground, and the adjustment component adjusts the reinforcement device according to the height of the stress part of the tower body; A moving component, the moving component is connected to the adjustment component, and the moving component plays a role in assisting the adjustment component; Wherein, the reinforcement device is adjusted through the adjustment component and the moving component, thereby improving the efficiency and effect of reinforcement. Further, the buffer part includes a shock absorption component, which is connected and installed with the moving component, and the shock absorption component functions to buffer the shaking of the tower body; a disassembly and assembly component, which is connected to the shock absorption component, and the disassembly and assembly component is used for quickly disassembling and assembling the shock absorption component; a limiting component, which is connected to the moving component and the shock absorption component, and the limiting component functions to limit the movement of the components in the equipment; and an anti-loosening component, which is installed outside the moving component, and the anti-loosening component functions to reinforce the equipment and reduce the loosening of the joints of the equipment; Among them, through the mutual cooperation of each structural member, the reinforcement effect of the reinforcement setting on the tower body is improved, thereby improving the service life of the tower body. Further, the adjusting component includes a support base, a threaded rod is connected inside the support base through a pin shaft, an adjusting sleeve is threadedly connected to the outer surface of the threaded rod, and a pull rod is rotatably connected to one end of the adjusting sleeve away from the threaded rod; Among them, the support base is connected to the ground through a plurality of bolts and nuts, and at the same time, the number of the support bases is four, and the components connected by the four support bases are the same. Further, the moving component includes a corner block, the corner block is arranged in a W shape, rollers are connected to both sides inside the corner block through pin shafts, a slide rail is opened on one side of the reinforcing rod close to the corner block, and the outer surfaces of the two rollers are in contact with the inner wall of the slide rail, and a limiting bracket is welded on the side of the corner block away from the reinforcing rod; Among them, one side of the limiting bracket away from the corner block is connected to one side of the pull rod away from the adjusting sleeve through a pin shaft, the number of the corner blocks is four, and the components connected by the four corner blocks are the same.

[0006] Further, the shock absorption component includes a damping rod, and a first spring is sleeved on the outer surface of the damping rod; Among them, the number of the damping rods is four, and the components connected by the four damping rods are the same.

[0007] Further, the disassembly and assembly component includes a bidirectional threaded rod, the outer surface of the bidirectional threaded rod is rotatably connected to the corner block, moving rods are connected to the top and bottom of the outer surface of the bidirectional threaded rod, a first limiting rod is welded on one side of the two moving rods corresponding to each other, and a knob is welded at the center of the outer surface of the bidirectional threaded rod; Among them, a fixed collar is arranged at the bottom of the knob, the inner part of the fixed collar is welded to the outer surface of the bidirectional threaded rod, a plurality of first limiting holes are opened on the outer ring of the fixed collar, the number of the bidirectional threaded rods is several, and the components connected by the several bidirectional threaded rods are the same.

[0008] Furthermore, for the limiting component, the limiting component includes a mounting base, the mounting base is connected to one end of the first spring and the damping rod, a second limiting hole is formed at one end of the mounting base away from the damping rod, two sliding rods are welded to the top and bottom of the corner wrapping block, cavities are formed on both sides inside the corner wrapping block, one side of the mounting base away from the damping rod is inserted into the inside of the cavity, and a hole is formed on one side of the moving rod away from the bidirectional threaded rod; Wherein, the inside of the hole is adapted to the outer surface of the sliding rod, the moving rod is slidably connected to the sliding rod through the hole, the outer surface of the first limiting rod is inserted into the inside of the second limiting hole, and the number of the limiting components is several groups.

[0009] Furthermore, the anti-loosening component includes a fixed bracket, the fixed bracket is L-shaped, the fixed bracket is welded to the corner wrapping block, a limiting frame is welded to one side of the fixed bracket away from the corner wrapping block, a second limiting rod is slidably connected inside the limiting frame, the second limiting rod penetrates through the fixed bracket and the limiting frame and extends to the side of the limiting frame away from the corner wrapping block, a second spring is sleeved on the outer surface of the second limiting rod, one side of the second spring away from the fixed bracket is connected to the inner wall of the limiting frame, and a limiting ring is connected to one side of the second spring away from the limiting frame; Wherein, the outer surface of the second limiting rod is inserted into the inside of the first limiting hole, a pull button is welded to one end of the second limiting rod away from the first limiting hole, and the limiting ring is welded to the outer surface of the second limiting rod.

[0010] The present invention has the following beneficial effects: (1) By providing an adjusting component in the present invention, specifically, when the adjusting sleeve is rotated clockwise, the pull rod is driven to push the corner wrapping block to move. Through the action of the roller and the slide rail, it is convenient for the corner wrapping block to move. By adjusting the reinforcement position, it can better match the key stress parts of the tower body, thereby improving the reinforcement efficiency and effect, enhancing the wind resistance of the tower body at these key parts, avoiding over-reinforcement or under-reinforcement, and at the same time, in the subsequent maintenance process, if it is necessary to inspect, repair or replace components of the reinforcement device, the height-adjustable characteristic is also convenient for the operator to operate, reducing the maintenance cost and workload.

[0011] (2) By providing a damping component in the present invention, specifically, when the tower body is stressed and shakes or vibrates, at this time, the reinforcement rod will act on the mounting base through the corner wrapping block. During the movement of each mounting base, through the action of the first spring and the damping rod, the force received by the mounting base is buffered, thereby achieving a certain damping effect on the tower body, reducing the wind-induced vibration response of the tower body, reducing the vibration amplitude and acceleration, thereby prolonging the service life of the tower body, reducing the risk of structural failure caused by fatigue damage, and at the same time, also reducing the maintenance cost and failure rate of the equipment.

[0012] (3) By providing a disassembly and assembly component and an anti-loosening component, specifically, by rotating the bidirectional threaded rod clockwise to drive the limiting rod to limit and fix the pair of limiting holes two, the rapid disassembly and assembly of the mounting seat are completed. At the same time, after the mounting seat is installed and fixed, by inserting the limiting rod two into the limiting hole one, the limiting and fixing of the fixed collar are realized, reducing the rotation of the bidirectional threaded rod and achieving the strengthening effect on the mounting seat. To sum up, not only the time for the staff to repair or install the equipment is reduced, but also by the detachable setting of the mounting seat, it is convenient for the subsequent recycling of the equipment, reducing the waste of resources, and strengthening the mounting seat during the use process, further improving the stability of the equipment.

[0013] Of course, it is not necessary for any product implementing the present invention to achieve all the above-mentioned advantages simultaneously. BRIEF DESCRIPTION OF THE DRAWINGS

[0014] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the drawings required for the description of the embodiments will be briefly introduced below. Obviously, the drawings in the following description are only some embodiments of the present invention. For those of ordinary skill in the art, without creative efforts, other drawings can be obtained based on these drawings.

[0015] Figure 1 is a schematic structural diagram of the present invention; Figure 2 is a schematic cross-sectional structural diagram of the tower body of the present invention; Figure 3 is of the present invention Figure 2 enlarged structural diagram of A in; Figure 4 is a schematic cross-sectional structural diagram of the adjusting sleeve of the present invention; Figure 5 is a schematic structural diagram of the damping rod of the present invention; Figure 6 is a schematic structural diagram of the mounting seat of the present invention; Figure 7 is of the present invention Figure 6 enlarged structural diagram of B in; Figure 8 is a schematic structural diagram of the corner block of the present invention; In the drawings, the list of components represented by each reference numeral is as follows: In the figure: 111, base; 112, tower body; 113, reinforcement rod; 2, support part; 21, adjustment component; 211, adjustment sleeve; 212, pull rod; 213, threaded rod; 214, support base; 22, moving component; 221, corner block; 222, roller; 223, slide rail; 224, limit bracket; 3, buffer part; 31, damping component; 311, first spring; 312, damping rod; 32, disassembly and assembly component; 321, bidirectional threaded rod; 322, knob; 323, moving rod; 324, first limit rod; 325, fixed collar; 326, first limit hole; 33, limit component; 331, mounting seat; 332, second limit hole; 333, slide rod; 334, cavity; 335, hole; 34, anti-loosening component; 341, fixed bracket; 342, pull button; 343, limit frame; 344, second spring; 345, second limit rod; 346, limit ring. Detailed implementation manners

[0016] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.

[0017] Please refer to Figures 1-8 As shown, the present invention is a wind-resistant and stability reinforcement device for a steel structure tower, including a base 111, a tower body 112 is installed on the top of the base 111, and reinforcement rods 113 are installed at the four corners of the tower body 112; further including: A support part 2, the support part 2 is installed outside the reinforcement rod 113, and the support part 2 plays a role in stably reinforcing the tower body 112; A buffer part 3, the buffer part 3 is connected and installed with the support part 2, and the buffer part 3 plays a role in buffering the force generated by the equipment; Among them, the base 111 is installed and connected to the ground through a plurality of bolts and nuts, and at the same time, several reinforcement rods 113 are also installed and connected to the base 111 through bolts and nuts.

[0018] The support part 2 includes an adjustment component 21, one end of the adjustment component 21 far from the reinforcement rod 113 is connected and installed to the ground, and the adjustment component 21 adjusts the reinforcement device according to the height of the force-bearing part of the tower body 112; A moving component 22, the moving component 22 is connected to the adjustment component 21, and the moving component 22 plays a role in assisting the adjustment component 21; Among them, the reinforcement device is adjusted through the adjustment component 21 and the moving component 22, so as to improve the efficiency and effect of reinforcement. The buffer part 3 includes a shock absorption component 31, the shock absorption component 31 is connected and installed with the moving component 22, and the shock absorption component 31 functions to buffer the shaking of the tower body 112; a disassembly and assembly component 32, the disassembly and assembly component 32 is connected to the shock absorption component 31, and the disassembly and assembly component 32 is used for quickly disassembling and assembling the shock absorption component 31; a limit component 33, the limit component 33 is connected to the moving component 22 and the shock absorption component 31, and the limit component 33 functions to limit the movement of the components in the equipment; and an anti-loosening component 34, the anti-loosening component 34 is installed outside the moving component 22, and the anti-loosening component 34 functions to reinforce the equipment and reduce the loosening at the connection of the equipment; Among them, through the mutual cooperation of each structural member, the reinforcement effect of the reinforcement device on the tower body 112 is improved, thereby enhancing the service life of the tower body 112. The adjustment component 21 includes a support base 214, a threaded rod 213 is connected inside the support base 214 through a pin shaft, an adjustment sleeve 211 is threadedly connected to the outer surface of the threaded rod 213, and a pull rod 212 is rotatably connected to one end of the adjustment sleeve 211 far from the threaded rod 213; Among them, the support base 214 is connected to the ground through a plurality of bolts and nuts. At the same time, the number of support bases 214 is four, and the components connected by the four support bases 214 are the same. Rotating the adjustment sleeve 211 clockwise drives the pull rod 212 to push the corner block 221 to move. Through the action of the roller 222 and the slide rail 223, it is convenient for the corner block 221 to move. By adjusting the reinforcement position, it can better match the key stress parts of the tower body 112, thereby improving the reinforcement efficiency and effect, enhancing the wind resistance of the tower body 112 at these key parts, and avoiding the occurrence of over-reinforcement or under-reinforcement. At the same time, during subsequent maintenance, if it is necessary to inspect, repair or replace components of the reinforcement device, the height-adjustable characteristic is also convenient for operators to operate, reducing the maintenance cost and workload. The moving component 22 includes a corner block 221, the corner block 221 is of a W-shaped setting, rollers 222 are connected to both sides inside the corner block 221 through pin shafts, and a slide rail 223 is provided on the side of the reinforcement rod 113 close to the corner block 221. The outer surfaces of the two rollers 222 are in contact with the inner wall of the slide rail 223, and a limit bracket 224 is welded to the side of the corner block 221 far from the reinforcement rod 113; Among them, one side of the limit bracket 224 far from the corner block 221 is connected to one side of the pull rod 212 far from the adjustment sleeve 211 through a pin shaft. The number of corner blocks 221 is four, and the components connected by the four corner blocks 221 are the same.

[0019] The vibration damping assembly 31 includes a damping rod 312, and a first spring 311 is sleeved on the outer surface of the damping rod 312; Among them, the number of damping rods 312 is four, and the components connected by the four damping rods 312 are the same. When the tower body 112 is stressed and shakes or vibrates, at this time, the reinforcing rod 113 will act on the mounting seat 331 through the corner block 221. During the movement of each mounting seat 331, through the action of the first spring 311 and the damping rod 312, the force received by the mounting seat 331 is buffered, thereby achieving a certain vibration damping effect on the tower body 112, reducing the wind vibration response of the tower body 112, reducing the vibration amplitude and acceleration, thereby prolonging the service life of the tower body 112, reducing the risk of structural failure caused by fatigue damage, and at the same time reducing the maintenance cost and failure rate of the equipment.

[0020] The disassembly and assembly component 32 includes a bidirectional threaded rod 321. The outer surface of the bidirectional threaded rod 321 is rotatably connected to the corner block 221. The top and bottom of the outer surface of the bidirectional threaded rod 321 are both connected with moving rods 323. One side of the two moving rods 323 corresponding to each other is welded with a first limiting rod 324. A knob 322 is welded at the center of the outer surface of the bidirectional threaded rod 321; Among them, a fixed collar 325 is arranged at the bottom of the knob 322. The inside of the fixed collar 325 is welded to the outer surface of the bidirectional threaded rod 321. A number of first limiting holes 326 are opened on the outer ring of the fixed collar 325. The number of bidirectional threaded rods 321 is several, and the components connected by the several bidirectional threaded rods 321 are the same.

[0021] The limiting component 33 includes a mounting seat 331. The mounting seat 331 is connected to one end of the first spring 311 and the damping rod 312. A second limiting hole 332 is opened at one end of the mounting seat 331 away from the damping rod 312. Two sliding rods 333 are welded to the top and bottom of the corner block 221. Cavities 334 are opened on both sides inside the corner block 221. One side of the mounting seat 331 away from the damping rod 312 is inserted into the inside of the cavity 334. A hole 335 is opened on one side of the moving rod 323 away from the bidirectional threaded rod 321; Among them, the inside of the hole 335 is adapted to the outer surface of the sliding rod 333. The moving rod 323 is slidably connected to the sliding rod 333 through the hole 335. The outer surface of the first limiting rod 324 is inserted into the inside of the second limiting hole 332. The number of limiting components 33 is several groups.

[0022] The anti-loosening component 34 includes a fixing bracket 341 which is L-shaped. The fixing bracket 341 is welded to the corner wrapping block 221. A limiting frame 343 is welded to the side of the fixing bracket 341 away from the corner wrapping block 221. A second limiting rod 345 is slidably connected inside the limiting frame 343. The second limiting rod 345 penetrates through the fixing bracket 341 and the limiting frame 343 and extends to the side of the limiting frame 343 away from the corner wrapping block 221. A second spring 344 is sleeved on the outer surface of the second limiting rod 345. One side of the second spring 344 away from the fixing bracket 341 is connected to the inner wall of the limiting frame 343. A limiting ring 346 is connected to the side of the second spring 344 away from the limiting frame 343. Wherein, the outer surface of the second limiting rod 345 is inserted into the first limiting hole 326. A pull button 342 is welded to one end of the second limiting rod 345 away from the first limiting hole 326. The limiting ring 346 is welded to the outer surface of the second limiting rod 345. By clockwise rotating the bidirectional threaded rod 321, the first limiting rod 324 is driven to limit and fix the second limiting hole 332, completing the quick disassembly and assembly of the mounting seat 331. At the same time, after the mounting seat 331 is installed and fixed, by inserting the second limiting rod 345 into the first limiting hole 326, the limiting and fixing of the fixing collar 325 is realized, reducing the situation that the bidirectional threaded rod 321 rotates, and realizing the strengthening effect on the mounting seat 331. To sum up, not only the time for the staff to repair or install the equipment is reduced, but also the mounting seat 331 is detachably arranged, facilitating the subsequent recycling of the equipment, reducing the waste of resources, and strengthening the mounting seat 331 during use, further improving the stability of the equipment.

[0023] During use, first, the staff can adjust the reinforcement position according to the height of the tower body 112. Specifically, rotate the adjustment sleeve 211 clockwise to move. Since the inside of the adjustment sleeve 211 is threadedly connected to the outside of the threaded rod 213, when the adjustment sleeve 211 rotates clockwise, the adjustment sleeve 211 will move closer to the tower body 112. At the same time, when the adjustment sleeve 211 rotates, it will rotate outside the pull rod 212. When the adjustment sleeve 211 moves, it will drive the pull rod 212 to move together. At this time, the pull rod 212 will push the corner wrapping block 221 to move through the limit bracket 224. At this time, when the corner wrapping block 221 moves, it will drive the roller 222 to move inside the slide rail 223. Through the interaction between the roller 222 and the slide rail 223, it is convenient for the corner wrapping block 221 to move. At this time, the corner wrapping block 221 will move upward. By adjusting the reinforcement position, it can better match the key stress parts of the tower body 112, thereby improving the efficiency and effect of reinforcement, enhancing the wind resistance of the tower body 112 at these key parts, and avoiding the occurrence of over-reinforcement or under-reinforcement. At the same time, during subsequent maintenance, if it is necessary to inspect, repair or replace components of the reinforcement device, the height-adjustable feature also facilitates the operation of the operator, reducing the maintenance cost and workload; During the subsequent use of the equipment, when the tower body 112 is stressed and shakes or vibrates, at this time, the reinforcement rod 113 will drive the mounting seat 331 to move through the corner wrapping block 221. At this time, each mounting seat 331 will move relative to each other. During the movement of each mounting seat 331, the first spring 311 will be compressed or stretched. At this time, the first spring 311 will buffer the force received by the first spring 311 through its own elastic action. At the same time, during the movement of each first spring 311, each damping rod 312 will also be compressed or stretched. Through the action of the damping rod 312, the force received by the mounting seat 331 is further buffered, thereby achieving a certain vibration damping effect on the tower body 112, reducing the wind vibration response of the tower body 112, reducing the vibration amplitude and acceleration, thereby prolonging the service life of the tower body 112, reducing the risk of structural failure caused by fatigue damage, and at the same time reducing the maintenance cost and failure rate of the equipment; When installing the mounting base 331 at the initial stage of equipment use, first insert the first spring 311 into the interior of the cavity 334, and then rotate the knob 322 clockwise to drive the double-threaded rod 321 to rotate. When the double-threaded rod 321 rotates, it will drive the two moving rods 323 to approach each other. While the two moving rods 323 approach each other, they will slide on the outer surface of the sliding rod 333 through the action of the hole 335. By setting the sliding rod 333 and the hole 335, a certain limit is provided for the movement track of the moving rod 323. When the moving rods 323 approach each other, they will drive the first limiting rod 324 to insert into the second limiting hole 332. At this time, the moving rod 323 realizes the limiting and fixing of the mounting base 331 through the action of the first limiting rod 324 and the second limiting hole 332. When disassembling the mounting base 331, the above reverse operations can be carried out comprehensively. The simple and convenient disassembly method greatly reduces the time for the staff to repair or install the equipment, thereby improving work efficiency; At the same time, when rotating the knob 322, pull the pull button 342 to drive the second limiting rod 345 to move. During the movement of the second limiting rod 345, it will slide inside the limiting frame 343. At the same time, during the movement of the second limiting rod 345, it will drive the limiting ring 346 to squeeze the second spring 344. Then, due to the limiting effect of the inner wall of the limiting frame 343, the second spring 344 will contract and store energy. After the double-threaded rod 321 stops rotating, release the pull button 342. At this time, the limiting ring 346 will drive the second limiting rod 345 to reset through the resilience of the second spring 344. During the reset process of the second limiting rod 345, it will insert into the first limiting hole 326. At this time, the second limiting rod 345 limits and fixes the fixed collar 325 through the action of the first limiting hole 326, thereby reducing the situation of the double-threaded rod 321 rotating, realizing the reinforcement effect on the mounting base 331, reducing the situation of loosening during the use of the mounting base 331. At the same time, through the detachable setting of the mounting base 331, it is convenient for the subsequent recycling of the equipment and reduces the waste of resources.

[0024] The above-described preferred embodiments of the present invention disclosed are only used to help illustrate the present invention. The preferred embodiments do not describe all the details in detail, nor do they limit the invention to the specific embodiments described. Obviously, many modifications and changes can be made according to the content of this specification. These embodiments are selected and specifically described in this specification to better explain the principle and practical application of the present invention, so that those skilled in the relevant technical field can understand and utilize the present invention well. The present invention is only limited by the claims and their full scope and equivalents.

Claims

1. A wind-resistant and stability reinforcement device for a steel structure tower, characterized in that, It includes a base (111), on the top of which a tower body (112) is installed, and reinforcing rods (113) are installed at the four corners of the tower body (112); it also includes: A support part (2), which is installed outside the reinforcing rod (113), and the support part (2) plays a role in stabilizing and reinforcing the tower body (112); A buffer part (3), which is connected and installed with the support part (2), and the buffer part (3) plays a role in buffering the force generated by the equipment; Among them, the base (111) is installed and connected to the ground through a plurality of bolts and nuts, and at the same time, several reinforcing rods (113) are also installed and connected to the base (111) through bolts and nuts.

2. A wind-resistant and stability reinforcement device for a steel structure tower, characterized in that: The support part (2) includes an adjustment component (21), one end of the adjustment component (21) away from the reinforcing rod (113) is connected and installed to the ground, and the adjustment component (21) adjusts the reinforcing device according to the height of the stressed part of the tower body (112); A moving component (22), which is connected to the adjustment component (21), and the moving component (22) plays a role in assisting the adjustment component (21); Among them, the reinforcing device is adjusted through the adjustment component (21) and the moving component (22), so as to improve the efficiency and effect of reinforcement.

3. A wind-resistant and stability reinforcement device for a steel structure tower according to claim 2, characterized in that: The buffer part (3) includes a damping component (31), which is connected and installed with the moving component (22), and the damping component (31) plays a role in buffering the shaking of the tower body (112); a disassembly and assembly component (32), which is connected to the damping component (31), and the disassembly and assembly component (32) is used for quickly disassembling and assembling the damping component (31); A limiting component (33), which is connected to the moving component (22) and the damping component (31), and the limiting component (33) is used for limiting the movement of the parts in the equipment; and An anti-loosening component (34), which is installed outside the moving component (22), and the anti-loosening component (34) plays a role in strengthening the equipment and reducing the loosening of the connections of the equipment; Among them, through the cooperation of each structural member, the reinforcement effect of the reinforcement setting on the tower body (112) is improved, thereby improving the service life of the tower body (112).

4. A wind-resistant and stability reinforcement device for a steel structure tower, characterized in that: The adjustment component (21) includes a support base (214), inside which a threaded rod (213) is connected by a pin shaft, an adjustment sleeve (211) is threadedly connected to the outer surface of the threaded rod (213), and one end of the adjustment sleeve (211) away from the threaded rod (213) is rotatably connected to a pull rod (212); Among them, the support base (214) is connected to the ground through a plurality of bolts and nuts, and at the same time, the number of the support bases (214) is four, and the parts connected by the four support bases (214) are the same.

5. A wind-resistant and stability reinforcement device for a steel structure tower according to claim 4, characterized in that: The moving component (22) includes a corner wrapping block (221), the corner wrapping block (221) is arranged in a W shape, both sides inside the corner wrapping block (221) are connected with rollers (222) through pin shafts, a slide rail (223) is formed on one side of the reinforcing rod (113) close to the corner wrapping block (221), the outer surfaces of the two rollers (222) are in contact with the inner wall of the slide rail (223), and a limiting bracket (224) is welded on one side of the corner wrapping block (221) away from the reinforcing rod (113); Wherein, one side of the limiting bracket (224) away from the corner wrapping block (221) is connected with one side of a pull rod (212) away from an adjusting sleeve (211) through a pin shaft, the number of the corner wrapping blocks (221) is four, and the components connected by the four corner wrapping blocks (221) are the same.

6. The wind-resistant and stability reinforcement device for a steel structure tower according to claim 5, wherein: The damping component (31) includes a damping rod (312), and a first spring (311) is sleeved on the outer surface of the damping rod (312); Wherein, the number of the damping rods (312) is four, and the components connected by the four damping rods (312) are the same.

7. A wind-resistant and stability reinforcement device for a steel structure tower according to claim 6, characterized in that: The disassembly and assembly component (32) includes a bidirectional threaded rod (321), the outer surface of the bidirectional threaded rod (321) is rotatably connected with the corner wrapping block (221), moving rods (323) are connected to the top and bottom of the outer surface of the bidirectional threaded rod (321), a first limiting rod (324) is welded on one side corresponding to the two moving rods (323), and a knob (322) is welded at the center of the outer surface of the bidirectional threaded rod (321); Wherein, a fixed collar (325) is arranged at the bottom of the knob (322), the inside of the fixed collar (325) is welded with the outer surface of the bidirectional threaded rod (321), a plurality of first limiting holes (326) are formed in the outer ring of the fixed collar (325), the number of the bidirectional threaded rods (321) is several, and the components connected by the several bidirectional threaded rods (321) are the same.

8. The wind-resistant and stability reinforcement device for a steel structure tower according to claim 7, characterized in that: The limiting component (33), the limiting component (33) includes a mounting seat (331), the mounting seat (331) is connected with one end of the first spring (311) and the damping rod (312), a second limiting hole (332) is formed at one end of the mounting seat (331) away from the damping rod (312), two sliding rods (333) are welded to the top and bottom of the corner wrapping block (221), cavities (334) are formed on both sides inside the corner wrapping block (221), one side of the mounting seat (331) away from the damping rod (312) is inserted into the inside of the cavity (334), and a hole (335) is formed on one side of the moving rod (323) away from the bidirectional threaded rod (321); Wherein, the inside of the hole (335) is adapted to the outer surface of the sliding rod (333), the moving rod (323) is slidably connected with the sliding rod (333) through the hole (335), the outer surface of the first limiting rod (324) is inserted into the inside of the second limiting hole (332), and the number of the limiting components (33) is several groups.

9. The wind-resistant and stability reinforcement device for a steel structure tower according to claim 8, wherein: The anti-loosening component (34) includes a fixed bracket (341). The fixed bracket (341) is arranged in an L shape. The fixed bracket (341) is welded to the corner wrapping block (221). A limiting frame (343) is welded to the side of the fixed bracket (341) away from the corner wrapping block (221). A second limiting rod (345) is slidably connected inside the limiting frame (343). The second limiting rod (345) penetrates through the fixed bracket (341) and the limiting frame (343) and extends to the side of the limiting frame (343) away from the corner wrapping block (221). A second spring (344) is sleeved on the outer surface of the second limiting rod (345). One side of the second spring (344) away from the fixed bracket (341) is connected to the inner wall of the limiting frame (343). A limiting ring (346) is connected to the side of the second spring (344) away from the limiting frame (343). Among them, the outer surface of the second limiting rod (345) is inserted into the first limiting hole (326). A pull button (342) is welded to the end of the second limiting rod (345) away from the first limiting hole (326). The inner part of the limiting ring (346) is welded to the outer surface of the second limiting rod (345).

10. A reinforcement method for a wind-resistant and stability reinforcement device of a steel structure tower, characterized in that: Adopt a wind-resistant stability reinforcement device for a steel structure tower as described in claim 9. The method includes the following steps: Step 1: During use, first, the staff can adjust the reinforcement position according to the height of the tower body (112). Specifically, rotate the adjusting sleeve (211) clockwise to move. Since the inner part of the adjusting sleeve (211) is threadedly connected to the outer part of the threaded rod (213), when the adjusting sleeve (211) rotates clockwise, the adjusting sleeve (211) will move closer to the tower body (112). At the same time, when the adjusting sleeve (211) rotates, it will rotate outside the pull rod (212). When the adjusting sleeve (211) moves, it will drive the pull rod (212) to move together. At this time, the pull rod (212) will push the corner wrapping block (221) to move through the limiting bracket (224). At this time, when the corner wrapping block (221) moves, it will drive the roller (222) to move inside the slide rail (223). Through the action of the roller (222) and the slide rail (223), it is convenient for the corner wrapping block (221) to move. At this time, the corner wrapping block (221) will move upward. By adjusting the reinforcement position, it can better match the key stress-bearing parts of the tower body (112), thereby improving the reinforcement efficiency and effect, enhancing the wind resistance of the tower body (112) at these key parts, and avoiding the occurrence of over-reinforcement or under-reinforcement. At the same time, during subsequent maintenance, if it is necessary to inspect, repair or replace components of the reinforcement device, the height-adjustable characteristic is also convenient for operators to operate, reducing the maintenance cost and workload; Step 2: During the subsequent use of the equipment, when the tower body (112) shakes or vibrates under force, the reinforcement rod (113) will drive the mounting seat (331) to move through the corner block (221). At this time, each mounting seat (331) will move relative to each other. During the movement of each mounting seat (331), the first spring (311) will be compressed or stretched. At this time, the first spring (311) will buffer the force received by the first spring (311) through its own elastic action. At the same time, during the movement of each first spring (311), each damping rod (312) will also be compressed or stretched. Through the action of the damping rod (312), the force received by the mounting seat (331) is further buffered, thereby achieving a certain vibration reduction effect on the tower body (112), reducing the wind vibration response of the tower body (112), reducing the vibration amplitude and acceleration, thereby extending the service life of the tower body (112), reducing the risk of structural failure caused by fatigue damage, and at the same time reducing the maintenance cost and failure rate of the equipment; Step 3: When installing the mounting seat (331) at the initial stage of equipment use, first insert the first spring (311) into the cavity (334), and then rotate the knob (322) clockwise to drive the bidirectional threaded rod (321) to rotate. When the bidirectional threaded rod (321) rotates, it will drive the two moving rods (323) to approach each other. While the two moving rods (323) approach each other, they will slide on the outer surface of the sliding rod (333) through the hole (335). By setting the sliding rod (333) and the hole (335), a certain limit is provided for the movement track of the moving rod (323). When the moving rods (323) approach each other, they will drive the first limiting rod (324) to insert into the second limiting hole (332). At this time, the moving rod (323) realizes the limiting and fixing of the mounting seat (331) through the action of the first limiting rod (324) and the second limiting hole (332). When disassembling the mounting seat (331), the above reverse operation can be performed. The simple and convenient disassembly method greatly reduces the time for the staff to repair or install the equipment, thereby improving work efficiency; Step 4: While turning the knob (322), pull the pull button (342) at this time to drive the second limiting rod (345) to move. During the movement of the second limiting rod (345), it will slide inside the limiting frame (343). At the same time, during the movement of the second limiting rod (345), it will drive the limiting ring (346) to squeeze the second spring (344). Then, due to the limitation of the inner wall of the limiting frame (343), the second spring (344) will contract and store energy. After the bidirectional threaded rod (321) stops rotating, release the pull button (342). At this time, the limiting ring (346) will drive the second limiting rod (345) to reset under the action of the resilience of the second spring (344). During the reset process of the second limiting rod (345), it will insert into the first limiting hole (326). At this time, the second limiting rod (345) will limit and fix the fixed collar (325) through the first limiting hole (326), thereby reducing the rotation of the bidirectional threaded rod (321), realizing the reinforcement effect on the mounting seat (331), and reducing the looseness of the mounting seat (331) during use. At the same time, through the detachable setting of the mounting seat (331), it is convenient for the subsequent recycling of the equipment and reduces the waste of resources.