Communication iron tower with windproof and anti-seismic functions
By introducing inclined blocks, elastic components, and buffer assemblies into communication towers, the problem of insufficient earthquake resistance of traditional towers during earthquakes has been solved, achieving higher stability and communication signal stability.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-01
- Publication Date
- 2026-04-10
AI Technical Summary
Traditional communication towers are weakly earthquake-resistant and easily damaged, resulting in large fluctuations in communication signals.
Design a communication tower with wind and earthquake resistance. By combining inclined blocks, elastic components, buffer components and driving components, the elastic components and buffer components buffer vibration, and the scissor arm group buffers impact force, thereby improving stability and protection effect.
It effectively buffers the impact force during vibration, improves the stability and protection capability of communication towers, and reduces fluctuations in communication signals.
Smart Images

Figure CN224107010U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a communication iron tower, concretely a communication iron tower with windproof and shock resistance. BACKGROUND
[0002] The communication iron tower is mainly used for microwave, ultrashort wave, wireless network signal transmission and emission, in order to ensure the normal operation of the wireless communication system, generally places the communication antenna to the highest point to increase the service radius, reaches the ideal communication effect, however, the traditional communication iron tower is fixed on the ground through the concrete pedestal, when the earthquake occurs, the shock resistance is very weak, and the communication iron tower is easily damaged, thereby leading to the large communication signal fluctuation, therefore, the communication iron tower with windproof and shock resistance needs to be designed to solve the problem. SUMMARY
[0003] The utility model discloses a communication iron tower with windproof and shock resistance to solve the problem in the background art.
[0004] To achieve the above object, the utility model provides the following technical scheme:
[0005] A communication iron tower with windproof and shock resistance, including base, the base is opened with the sliding slot, and the inclined block is symmetrically installed in the sliding slot and slides, the elastic part is installed on one side of the inclined block, the elastic part is connected with the side wall of the sliding slot away from the inclined block, the support plate is slidably connected with one side of the inclined block, the iron tower is installed on the support plate, and the buffer assembly is installed at the bottom of the support plate.
[0006] As a further scheme of the utility model: the positioning assembly includes a driving piece, the driving piece is installed on the installation cavity, the driving piece output end is installed with the driving shaft, the driving shaft is installed with the threaded rod away from the driving piece one end, and the threaded rod is connected with the sliding plate through the thread.
[0007] As a further scheme of the utility model: the buffer assembly includes a connecting groove, and the connecting groove is slidably installed with the connecting block, the elastic unit is arranged on one side of the connecting block, the elastic unit is rotatably connected with the side wall of the connecting groove away from the connecting block, the scissor lever group is arranged on one side of the connecting block, the scissor lever group is used for connecting the connecting block, the scissor lever group is connected with the connecting block on one side, and the scissor lever group is used for connecting the adjacent connecting block.
[0008] As a further scheme of the utility model: the elastic component is a spring.
[0009] As a further scheme of the utility model: the driving part is a stepping motor.
[0010] Compared with the prior art, the utility model has the beneficial effects that: when the device is used, the device is installed at the required position, the driving part connected with the driving shaft is driven to rotate, the driving shaft connected with the threaded rod is driven to rotate, the threaded rod connected with the sliding plate is driven to move, the sliding plate connected with the positioning bolt on one side is driven to move downward and is inserted into the positioning hole in the ground, thereby the device can be positioned, the stability of the device is improved, the device is well protected, when the device is vibrated, the support plate is pressed downward, the inclined block drives the elastic component on one side to be extruded, the elastic component is compressed to generate elastic force to buffer the impact force generated by vibration, in the process, the buffer rod is pulled to compress the elastic part to further buffer the vibration generated by vibration, the support plate is further pressed downward by the pressure generated by vibration, in the process, the scissor lever set is rotated, the connection block connected with the scissor lever set is driven to slide and compress the elastic unit on one side, the elastic unit is further compressed to buffer the impact force generated by vibration, the device is well protected. BRIEF DESCRIPTION OF DRAWINGS
[0011] Figure 1 It is a structural schematic view of a communication iron tower with windproof and anti-vibration functions.
[0012] Figure 2 It is a structural schematic view of a communication iron tower with windproof and anti-vibration functions. Figure 1 It is an enlarged view of A in the middle.
[0013] Figure 3 It is a structural schematic view of a threaded rod in a communication iron tower with windproof and anti-vibration functions.
[0014] In the drawing: 1, base; 2, installation cavity; 3, driving shaft; 4, driving part; 5, threaded rod; 6, elastic component; 7, inclined block; 8, buffer block; 9, elastic part; 10, buffer rod; 11, support plate; 12, scissor lever set; 13, elastic unit; 14, connection block; 15, iron tower; 16, sliding plate; 17, positioning bolt. DETAILED DESCRIPTION
[0015] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments of the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of the utility model.
[0016] Please refer to Figures 1 to 3 As an embodiment of the utility model, a communication iron tower 15 with windproof and shockproof functions comprises a base 1, a sliding groove is formed in the base 1, an inclined block 7 is symmetrically and slidably installed in the sliding groove, an elastic component 6 is installed on one side of the inclined block 7, one end of the elastic component 6 away from the inclined block 7 is connected with the side wall of the sliding groove, a supporting plate 11 is slidably connected with one side of the inclined block 7, the iron tower 15 is installed on the supporting plate 11, a buffer assembly is installed at the bottom of the supporting plate 11, an installation cavity 2 is formed in the base 1, a sliding plate 16 is slidably installed in the installation cavity 2, a positioning bolt 17 is installed at the bottom of the sliding plate 16, a positioning assembly is installed on the base 1 and connected with the sliding plate 16, a buffer groove is formed in the side wall of the inclined block 7, a buffer block 8 is slidably installed in the buffer groove, an elastic piece 9 is installed at the bottom of the buffer block 8, one end of the elastic piece 9 away from the buffer block 8 is connected with the bottom wall of the buffer groove, and a buffer rod 10 is hingedly connected with one side of the buffer block 8 and hingedly connected with the supporting plate 11 at one end away from the buffer block 8.
[0017] In the embodiment, when the device is used, the device is installed at a required position, the positioning assembly is driven to slide the sliding plate 16 connected therewith, the sliding plate 16 is moved to drive the positioning bolt 17 on one side to move downward and be inserted into a positioning hole in the ground, so that the device can be positioned and the stability of the device is improved, and the device is well protected. When the device is subjected to vibration, the supporting plate 11 is subjected to pressure and moves downward, at this time, the supporting plate 11 drives the inclined block 7 to press the elastic component 6 on one side, the elastic component 6 is compressed to generate elastic force, so that the impact force generated by the vibration can be buffered, at the same time, in the process, the buffer rod 10 is installed to pull the buffer block 8 to compress the elastic piece 9 to further buffer the vibration generated by the vibration, and the buffer assembly is installed to further buffer the pressure generated by the vibration in the process of generating the vibration, so that the device is well protected.
[0018] Further, the elastic component 6 and the elastic piece 9 can be spring shock absorbers or rubber shock absorbers, which are not specifically described herein.
[0019] As an embodiment of the utility model, the positioning assembly comprises a driving piece 4, the driving piece 4 is installed on the installation cavity 2, a driving shaft 3 is installed at the output end of the driving piece 4, a threaded rod 5 is installed at one end of the driving shaft 3 away from the driving piece 4, and the threaded rod 5 is connected with the sliding plate 16 through threads.
[0020] In the embodiment, the installed driving member 4 drives the driving shaft 3 connected thereto to rotate, the driving shaft 3 drives the threaded rod 5 connected thereto to rotate, the threaded rod 5 drives the sliding plate 16 connected thereto to move, the sliding plate 16 drives the positioning bolt 17 on one side to move downward and insert into the positioning hole in the ground, thereby the device can be positioned, the stability of the device is improved, and the device is well protected.
[0021] Further, the driving member 4 can be a stepping motor or a servo motor, which is not specifically described herein.
[0022] As an embodiment of the utility model, the buffer assembly comprises a connecting groove, the base 1 and the supporting plate 11 are both provided with the connecting groove, the connecting groove is slidably provided with a connecting block 14, the connecting block 14 is provided with an elastic unit 13 on one side, the elastic unit 13 is rotatably connected to the side wall of the connecting groove away from one end of the connecting block 14, the connecting block 14 is provided with a scissor lever set 12 on one side, the scissor lever set 12 is used for connecting the connecting block 14, the connecting block 14 is connected with the scissor lever set 12 on one side, and the scissor lever set 12 is used for connecting the adjacent connecting block 14.
[0023] In the embodiment, when vibration occurs, the supporting plate 11 is moved downward under the pressure generated by the vibration, in the process, the scissor lever set 12 is rotated, the rotation of the scissor lever set 12 drives the connected connecting block 14 to slide and compress the elastic unit 13 on one side, the elastic unit 13 is further compressed, thereby the impact force generated by the vibration can be buffered, and the device is well protected.
[0024] Further, the elastic unit 13 can be a spring or an elastic film, which is not specifically described herein.
[0025] The working principle of the utility model is: when the device is used, the device is installed at the required position, the driving piece 4 drives the driving shaft 3 connected therewith to rotate, the driving shaft 3 drives the threaded rod 5 connected therewith to rotate, the threaded rod 5 drives the sliding plate 16 connected therewith to move, the sliding plate 16 drives the positioning bolt 17 on one side to move downward and insert into the positioning hole preset in the ground, thereby the device can be positioned, the stability of the device is improved, the device is well protected, when the device is vibrated, the support plate 11 arranged is pressed downward, at this time the support plate 11 drives the inclined block 7 to extrude the elastic component 6 on one side, the elastic component 6 is compressed to generate elastic force, which can buffer the impact force generated by vibration, at the same time in the process, the buffer rod 10 arranged is pulled to compress the elastic piece 9 to further buffer the vibration generated by vibration, the support plate 11 further receives the pressure generated by vibration and moves downward, in the process, the scissor lever set 12 rotates, the scissor lever set 12 rotates to drive the connecting block 14 connected therewith to slide and compress the elastic unit 13 on one side, the elastic unit 13 is further compressed, thereby the impact force generated by vibration can be buffered, the device is well protected.
[0026] It is apparent for those skilled in the art that the utility model is not limited to the details of the above-mentioned exemplary embodiments, and the utility model can be realized in other specific forms without departing from the spirit or essential characteristics of the utility model. Therefore, the embodiments should be regarded as exemplary and non-restrictive from any point of view, and the scope of the utility model is defined by the appended claims rather than the above description, and it is intended to include all changes falling within the meaning and scope of the equivalent elements of the claims in the utility model. Any figure mark in the claims should not be regarded as limiting the involved claims.
[0027] In addition, it should be understood that, although the present specification is described in terms of embodiments, not every embodiment contains only one independent technical solution, and the specification is described in this way only for the sake of clarity, and those skilled in the art should regard the specification as a whole, and the technical solutions in each embodiment can also be properly combined to form other embodiments that those skilled in the art can understand.
Claims
1. A communication tower with windproof and shockproof functions, comprising a base, characterized in that, The base is provided with a sliding groove, and an inclined block is symmetrically and slidably installed in the sliding groove. An elastic component is installed on one side of the inclined block, and the end of the elastic component away from the inclined block is connected with the side wall of the sliding groove. A supporting plate is slidably connected on one side of the inclined block, and a tower is installed on the supporting plate. A buffer assembly is installed at the bottom of the supporting plate. The base is provided with an installation cavity, and a sliding plate is slidably installed in the installation cavity. A positioning bolt is installed at the bottom of the sliding plate. A positioning assembly is installed on the base and connected with the sliding plate. A buffer groove is formed in the side wall of the inclined block, and a buffer block is slidably installed in the buffer groove. An elastic piece is installed at the bottom of the buffer block, and the end of the elastic piece away from the buffer block is connected with the bottom wall of the buffer groove. A buffer rod is hingedly connected on one side of the buffer block, and the end of the buffer rod away from the buffer block is hingedly connected with the supporting plate.
2. The communication tower with windproof and shockproof functions according to claim 1, characterized in that, The positioning assembly comprises a driving piece, which is installed on the installation cavity. A driving shaft is installed at the output end of the driving piece, and a threaded rod is installed at the end of the driving shaft away from the driving piece. The threaded rod is connected with the sliding plate through threads.
3. The communication tower with windproof and shockproof functions according to claim 1, characterized in that, The buffer assembly comprises a connecting groove, which is formed in the base and the supporting plate. A connecting block is slidably installed in the connecting groove. An elastic unit is arranged on one side of the connecting block, and the end of the elastic unit away from the connecting block is rotatably connected with the side wall of the connecting groove. A scissor lever group is arranged on one side of the connecting block, and the scissor lever group is used for connecting the connecting block. The connecting block is connected with a scissor lever group on one side, and the scissor lever group is used for connecting adjacent connecting blocks.
4. The communication tower with windproof and shockproof functions according to claim 1, characterized in that, The elastic component is a spring.
5. The communication tower with windproof and shockproof functions according to claim 2, characterized in that, The driving piece is a stepping motor.