Rotatable communication pole convenient to overhaul

By designing a combined structure of a rotatable communication pole, the safety risks of high-altitude maintenance of digital equipment at well sites were solved, reducing equipment height and improving maintenance safety and efficiency.

CN121992987APending Publication Date: 2026-05-08CHANGQING ENGINEERING DESIGN CO LTD +1
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
CHANGQING ENGINEERING DESIGN CO LTD
Filing Date
2024-11-04
Publication Date
2026-05-08

AI Technical Summary

Technical Problem

The existing equipment boxes mounted on the communication poles of the digital equipment at the well site are independently installed at a high position above the ground, which requires maintenance personnel to perform high-altitude operations, increasing safety risks.

Method used

Design a rotatable communication pole that is easy to maintain. The height of the equipment can be reduced by rotating the pole. It adopts a combination structure of base plate, stiffening plate, clamping channel steel, hollow square steel column, rotating shaft, rotating shaft sleeve and support module to realize flexible rotation and fixation of the equipment on the pole, making it convenient for maintenance personnel to access the equipment.

Benefits of technology

This reduces the number of times maintenance personnel need to climb or move communication poles, improves safety, saves time and labor costs, and increases maintenance efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the field of oil and gas field well site erecting devices, in particular to a rotatable communication pole convenient to overhaul, which comprises a bottom plate, a ribbed plate, an anti-theft bolt, hoop channel steel, a hollow square steel upright post, a rotating shaft, a rotating shaft sleeve and a supporting module, hoop channel steel used for supporting the hollow square steel stand column is installed at the upper end of the bottom plate, the hollow square steel stand column used for supporting the communication pole is arranged on the inner side of the hoop channel steel, and a rotating shaft used for being rotationally connected with the hollow square steel stand column and the hoop channel steel is arranged above the hoop channel steel in a penetrating mode. According to the invention, the hoop channel steel and the bottom plate are welded and connected, and are reinforced and fixed by arranging the rib plates, and then the hollow square steel stand column rotates along the rotating shaft and the hoop channel steel through the rotating shaft sleeve, so that the maintenance is convenient; the hollow square steel stand column is in positioning connection with the hoop channel steel through the anti-theft bolt, the height of carrying equipment on the rod is reduced by rotating the rod body, and therefore personnel can conveniently conduct overhaul and maintenance.
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Description

Technical Field

[0001] This invention relates to the field of oil and gas field well site installation equipment, and in particular to a rotatable communication pole that is easy to maintain. Background Technology

[0002] In oil and gas field production and operation, communication poles are required. These are important infrastructure facilities used to lay fiber optic cables and fix communication equipment. These communication poles are mainly laid in the open air in oil and gas field areas, such as mountainous areas, farmland, or other open areas, to ensure stable transmission of communication signals. Communication poles are usually composed of components such as pole body, flange, and platform. They are characterized by structural stability and resistance to deformation. Their height and strength are designed according to actual needs to support fiber optic cables and communication equipment, while withstanding adverse factors such as wind, rain, and lightning in the natural environment. The main functions of communication poles include communication transmission, signal coverage, and security monitoring.

[0003] The existing floodlights, video surveillance cameras, voice speakers, and well site digital equipment boxes mounted on the communication poles of the well site digital equipment are all independently installed at a high position above the ground. Since these devices may need to be inspected or replaced after long-term operation, maintenance personnel may need to work at heights to inspect the equipment on the communication poles. As a result, maintenance personnel may need to adopt more dangerous postures or methods to approach the equipment, which increases safety risks.

[0004] Therefore, since the various equipment boxes mounted on the existing well site digital equipment communication poles are all independently installed at a high position above the ground, and these devices may need to be inspected or replaced after long-term operation, maintenance personnel may need to perform high-altitude operations, which increases safety risks. A rotatable communication pole that is easy to maintain can be designed. By rotating the pole, the height of the equipment mounted on the pole can be lowered, enabling ground maintenance. Summary of the Invention

[0005] To address the issue that the various equipment boxes mounted on the existing well site digital equipment communication poles are all independently installed at a high position above the ground, and that these devices may need to be inspected or replaced after long-term operation, maintenance personnel may need to perform high-altitude operations, which increases safety risks.

[0006] The technical solution of this invention is as follows: a rotatable communication pole that is easy to maintain, comprising a base plate, stiffening plates, anti-theft bolts, clamping channel steel, hollow square steel column, rotating shaft, rotating shaft sleeve, and support module; the upper end of the base plate is equipped with clamping channel steel for supporting the hollow square steel column, the clamping channel steel is welded to the base plate, the lower end of the clamping channel steel is symmetrically equipped with stiffening plates for reinforcing the clamping channel steel and the base plate, and the inner side of the clamping channel steel is provided with hollow square steel column for supporting the communication pole. The lower end of the column is fitted with an anti-theft bolt for limiting the position of the hollow square steel column. The hollow square steel column is positioned and connected to the clamping channel steel through the anti-theft bolt. A rotating shaft is fitted above the clamping channel steel for rotating the hollow square steel column and the clamping channel steel. A rotating shaft sleeve is fitted on the outside of the rotating shaft for driving the hollow square steel column to rotate. The rotating shaft sleeve is welded to the hollow square steel column. Support modules are symmetrically provided on both sides of the clamping channel steel to further fix the position of the hollow square steel column when it is set vertically.

[0007] Preferably, the clamping channel steel and the base plate are first welded together and reinforced with stiffening plates. Then, the hollow square steel column rotates along the shaft and clamping channel steel via a rotating shaft sleeve for easy maintenance. It is then supported and fixed by a support module. When the hollow square steel column needs to be returned to its vertical position, it is positioned and connected to the clamping channel steel with anti-theft bolts. By rotating the pole, the height of the equipment mounted on it is lowered, making it easier for maintenance personnel to directly access the communication equipment for maintenance. This flexibility reduces the number of times maintenance personnel need to climb or move the communication pole, improves safety, and greatly saves time and labor costs, thus improving maintenance efficiency.

[0008] Preferably, a pole is installed above the hollow square steel column, and a lightning rod is installed above the pole. A pole flange is installed at the connection between the hollow square steel column and the pole, and between the pole and the lightning rod. A network bridge support is symmetrically installed on both sides of the upper end of the pole.

[0009] As a preferred option, each side of the clamping channel steel is provided with anchor bolts that pass through the base plate, and the anchor bolts drive the base plate to be fixedly connected to the ground.

[0010] Preferably, positioning pins are provided on both sides of the lower end of the clamping channel steel, corresponding to the stiffening plate. The positioning pins pass through the clamping channel steel and are fixedly connected to the stiffening plate. The clamping channel steel has a first fixing hole in a rectangular array at both sides of its edge.

[0011] As a preferred embodiment, the lower end of the hollow square steel column is provided with a limit hole corresponding to the anti-theft bolt, and the upper part of the hollow square steel column is provided with a connection hole corresponding to the rotating shaft sleeve.

[0012] Preferably, the support module includes a fixed plate, a second fixed hole, a fixed pin, a rectangular slide rail, a rectangular slide groove, a threaded rod, a handle, a rectangular threaded sleeve, and a limiting rod. The fixed plate has a second fixed hole at each corner, and a fixed pin passes through the middle of the second fixed hole. Rectangular slide rails are symmetrically installed on one side of the fixed plate.

[0013] Preferably, a rectangular slide rail has a rectangular groove on its inner side, and a threaded rod is longitudinally inserted through the rectangular groove on the rectangular slide rail. A handle is installed at one end of the threaded rod, and a rectangular threaded sleeve is fitted on the outside of the threaded rod. A limiting rod is provided between the two sets of rectangular slide rails and is fixedly connected to the rectangular threaded sleeve.

[0014] The beneficial effects of this invention are: 1. First, weld the clamping channel steel and the base plate together and reinforce the fixation by setting stiffeners. Then, the hollow square steel column rotates along the shaft and clamping channel steel via a rotating shaft sleeve for easy maintenance. It is then supported and fixed by a support module. When the hollow square steel column needs to be returned to its vertical position, it is positioned and connected to the clamping channel steel by anti-theft bolts. By rotating the pole, the height of the equipment mounted on the pole is lowered, making it easier for maintenance personnel to directly access the communication equipment for maintenance. This flexibility reduces the number of times maintenance personnel need to climb or move the communication pole, improves safety, and greatly saves time and labor costs, thus improving maintenance efficiency. Attached Figure Description

[0015] Figure 1 The diagram shown is a schematic representation of the overall structure of the rotatable communication pole of the present invention. Figure 2 The diagram shown is a schematic of the clamping channel steel structure of the rotatable communication pole of the present invention. Figure 3 The diagram shown is a schematic representation of the lightning rod structure of the rotatable communication pole of the present invention. Figure 4 The diagram shown is a schematic of the limiting rod structure of the rotatable communication rod of the present invention.

[0016] Explanation of reference numerals in the attached drawings: 1. Base plate; 2. Rib plate; 3. Anti-theft bolt; 4. Clamping channel steel; 5. Hollow square steel column; 6. Rotating shaft; 7. Rotating shaft bushing; 8. Upright flange; 9. Upright; 10. Network bridge bracket; 11. Lightning rod; 101. Anchor bolt; 401. Positioning pin; 402. First fixing hole; 501. Limiting hole; 502. Connecting hole; 1201. Fixing plate; 1202. Second fixing hole; 1203. Fixing pin; 1204. Rectangular slide rail; 1205. Rectangular slide groove; 1206. Threaded rod; 1207. Handle rod; 1208. Rectangular threaded sleeve; 1209. Limiting rod. Detailed Implementation

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

[0018] Example 1 Please see Figures 1-4 In this embodiment, the system includes a base plate 1, stiffening plates 2, anti-theft bolts 3, clamping channel steel 4, hollow square steel columns 5, a rotating shaft 6, a rotating shaft sleeve 7, and a support module. The upper end of the base plate 1 is equipped with clamping channel steel 4 for supporting the hollow square steel columns 5. The clamping channel steel 4 is welded to the base plate 1. The lower inner side of the clamping channel steel 4 is symmetrically equipped with stiffening plates 2 for reinforcing the clamping channel steel 4 and the base plate 1. The inner side of the clamping channel steel 4 is provided with hollow square steel columns 5 for supporting the communication pole. The lower end of the hollow square steel columns 5 is provided with... Anti-theft bolts 3 limit the position of the hollow square steel column 5. The hollow square steel column 5 is positioned and connected to the clamping channel steel 4 through the anti-theft bolts 3. A rotating shaft 6 is installed on the top of the clamping channel steel 4 for rotating connection between the hollow square steel column 5 and the clamping channel steel 4. A rotating shaft sleeve 7 is sleeved on the outside of the rotating shaft 6 for driving the hollow square steel column 5 to rotate. The rotating shaft sleeve 7 is welded to the hollow square steel column 5. Support modules are symmetrically provided on both sides of the clamping channel steel 4 for further fixing the position of the hollow square steel column 5 when it is vertically set.

[0019] Example 2 Please see Figures 2-3 In this embodiment, a pole 9 is provided above the hollow square steel column 5, and a lightning rod 11 is provided above the pole 9. A pole flange 8 is provided at the connection between the hollow square steel column 5 and the pole 9, and between the pole 9 and the lightning rod 11. A network bridge bracket 10 is symmetrically installed on both sides of the upper end of the pole 9. The pole 9 is positioned and connected to the hollow square steel column 5 through the pole flange 8. Then, the lightning rod 11 is positioned and connected to the pole 9 through the pole flange 8. When transportation is required, the pole flange 8 can be loosened in sequence for disassembly, which can achieve the function of convenient transportation and installation. During the use of the communication pole, the network bridge bracket 10 can support and fix the network bridge equipment to ensure its stability and safety on the communication pole.

[0020] Example 3 Please see Figures 2-3 In this embodiment, anchor bolts 101 passing through the base plate 1 are provided on both sides of the clamping channel steel 4. The anchor bolts 101 drive the base plate 1 to be fixedly connected to the ground. The anchor bolts 101 first drive the base plate 1 to be fixedly connected to the ground, which improves the stability of the communication pole during operation. Positioning pins 401 are provided on both sides of the lower end of the clamping channel steel 4 corresponding to the stiffening plate 2. The positioning pins 401 pass through the clamping channel steel 4 and are fixedly connected to the stiffening plate 2. The clamping channel steel 4 has a rectangular array of first fixing holes 402 at both sides of the edge. After the stiffening plate 2 is reinforced, the positioning pin 401 is picked up and passed through the clamping channel steel 4 to fix it to the stiffening plate 2 for further reinforcement to improve the stability of the communication pole during operation. The lower end of the hollow square steel column 5 is provided with a limiting hole 501 corresponding to the anti-theft bolt 3, and the upper part of the hollow square steel column 5 is provided with a connecting hole 502 corresponding to the rotating shaft sleeve 7. The limiting hole 501 facilitates the passage of the anti-theft bolt 3, and the connecting hole 502 facilitates welding connection with the rotating shaft sleeve 7.

[0021] Example 4 Please see Figure 4 In this embodiment, the support module includes a fixing plate 1201, second fixing holes 1202, fixing pins 1203, rectangular slide rails 1204, rectangular slide grooves 1205, threaded rods 1206, gripping rods 1207, rectangular threaded sleeves 1208, and limiting rods 1209. Second fixing holes 1202 are provided at each corner of the fixing plate 1201, and fixing pins 1203 pass through the middle of the second fixing holes 1202 in the fixing plate 1201. 01 A rectangular slide rail 1204 is symmetrically installed on one side. A rectangular slide rail 1204 has a rectangular slide groove 1205 on its inner side. A threaded rod 1206 is longitudinally inserted through the rectangular slide rail 1204 with the rectangular slide groove 1205 on its inner side. A handle 1207 is installed at one end of the threaded rod 1206. A rectangular threaded sleeve 1208 is sleeved on the outside of the threaded rod 1206. A limiting rod 1209 is provided between the two sets of rectangular slide rails 1204 and is fixedly connected to the rectangular threaded sleeve 1208. After the clamping channel steel 4 and the hollow square steel column 5 have rotated, according to the rotation direction, pick up the fixing plate 1201 and place it on the corresponding side of the clamping channel steel 4. Then, the fixing pin 1203 passes through the second fixing hole 1202 and the first fixing hole 402, so that the fixing plate 1201 and the clamping channel steel 4 are positioned and connected. Then, according to the rotation position of the hollow square steel column 5, the threaded rod 1206 is rotated by rotating the handle 1207, so that the rectangular threaded sleeve 1208 drives the limiting rod 1209 to move longitudinally along the rectangular slide groove 1205 on the rectangular slide rail 1204. Thus, the limiting rod 1209 supports and fixes the rotation position of the hollow square steel column 5.

[0022] During operation, the pole 9 is positioned and connected to the hollow square steel column 5 via the pole flange 8. Then, the lightning rod 11 is positioned and connected to the pole 9 via the pole flange 8. Next, the base plate 1 is fixed to the ground via the anchor bolt 101. Then, the clamping channel steel 4 and the base plate 1 are welded together and initially reinforced by the stiffening plate 2. Then, the positioning pin 401 is picked up and passed through the clamping channel steel 4 to fix it to the stiffening plate 2 for further reinforcement. Finally, the anti-theft bolt 3 passes through the clamping channel steel 4 and is positioned and connected to the hollow square steel column 5 via the limiting hole 501. During the use of the communication pole, the network bridge bracket 10 can support and fix the network bridge equipment to ensure its stability and safety on the communication pole. When maintenance is required, first remove the anti-theft bolt 3. Then, the hollow square steel column 5 rotates along the rotating shaft 6 and the clamping channel steel 4 through the rotating shaft sleeve 7. By rotating the hollow square steel column 5, the height of the equipment mounted on the pole 9 is reduced, making it easier for maintenance personnel to directly access the communication equipment for maintenance. When transportation is required, loosen the pole flange 8 in sequence for disassembly, thus achieving the function of convenient transportation and installation. After the clamping channel steel 4 and the hollow square steel column 5 have rotated, according to the rotation direction, pick up the fixing plate 1201 and place it on the corresponding side of the clamping channel steel 4. Then, the fixing pin 1203 passes through the second fixing hole 1202 and the first fixing hole 402, so that the fixing plate 1201 and the clamping channel steel 4 are positioned and connected. Then, according to the rotation position of the hollow square steel column 5, the threaded rod 1206 is rotated by rotating the handle 1207, so that the rectangular threaded sleeve 1208 drives the limiting rod 1209 to move longitudinally along the rectangular slide groove 1205 on the rectangular slide rail 1204. Thus, the limiting rod 1209 supports and fixes the rotation position of the hollow square steel column 5.

[0023] Through the above steps, the clamping channel steel 4 and the base plate 1 are first welded together and reinforced by setting the stiffening plate 2. Then, the hollow square steel column 5 rotates along the rotating shaft 6 with the clamping channel steel 4 through the rotating shaft sleeve 7 for easy maintenance. Then, it is supported and fixed by the support module. When the hollow square steel column 5 needs to be returned to the vertical position, the hollow square steel column 5 is positioned and connected to the clamping channel steel 4 through the anti-theft bolt 3. By rotating the rod, the height of the equipment mounted on the rod is lowered, making it easier for maintenance personnel to directly access the communication equipment for maintenance. This flexibility reduces the number of times maintenance personnel need to climb or move the communication pole, improves safety, and greatly saves time and labor costs, improving maintenance efficiency. This solves the problem that the various equipment boxes mounted on the existing well site digital equipment communication poles are independently installed at a high position above the ground. Since these devices may need to be maintained or replaced after long-term operation, maintenance personnel may need to perform high-altitude operations, increasing safety risks.

Claims

1. A rotatable communication pole that is easy to maintain, comprising a base plate (1); characterized in that: It also includes stiffening plates (2), anti-theft bolts (3), clamping channel steel (4), hollow square steel columns (5), rotating shafts (6), rotating shaft bushings (7), and support modules; the upper end of the base plate (1) is equipped with clamping channel steel (4) for supporting hollow square steel columns (5), the clamping channel steel (4) is welded to the base plate (1), the lower inner side of the clamping channel steel (4) is symmetrically equipped with stiffening plates (2) for reinforcing the clamping channel steel (4) and the base plate (1), the inner side of the clamping channel steel (4) is provided with hollow square steel columns (5) for supporting communication poles, and the lower end of the hollow square steel columns (5) is provided with hollow square steel columns (5) for supporting communication poles. The square steel column (5) is limited by anti-theft bolts (3). The hollow square steel column (5) is positioned and connected to the clamping channel steel (4) through the anti-theft bolts (3). A rotating shaft (6) is provided on the top of the clamping channel steel (4) for rotating connection between the hollow square steel column (5) and the clamping channel steel (4). A rotating shaft sleeve (7) is provided on the outside of the rotating shaft (6) for driving the hollow square steel column (5) to rotate. The rotating shaft sleeve (7) is welded to the hollow square steel column (5). Support modules are symmetrically provided on both sides of the clamping channel steel (4) for further fixing the position of the hollow square steel column (5) when it is vertically set.

2. The rotatable communication pole for easy maintenance according to claim 1, characterized in that: A pole (9) is provided above the hollow square steel column (5), and a lightning rod (11) is provided above the pole (9). A pole flange (8) is provided at the connection between the hollow square steel column (5) and the pole (9) and the pole (9) and the lightning rod (11). A net bridge bracket (10) is symmetrically installed on both sides of the upper end of the pole (9).

3. The rotatable communication pole for easy maintenance according to claim 1, characterized in that: Anchor bolts (101) are provided on both sides of the clamping channel steel (4) and pass through the base plate (1). The anchor bolts (101) drive the base plate (1) to be fixedly connected to the ground.

4. The rotatable communication pole for easy maintenance according to claim 1, characterized in that: Positioning pins (401) are provided on both sides of the lower end of the clamping channel steel (4) corresponding to the stiffening plate (2). The positioning pins (401) pass through the clamping channel steel (4) and are fixedly connected to the stiffening plate (2). The first fixing holes (402) are provided in a rectangular array at both sides of the clamping channel steel (4).

5. A rotatable communication pole for easy maintenance according to claim 1, characterized in that: A limit hole (501) is opened at the lower end of the hollow square steel column (5) corresponding to the anti-theft bolt (3), and a connection hole (502) is opened at the upper part of the hollow square steel column (5) corresponding to the rotating shaft sleeve (7).

6. A rotatable communication pole for easy maintenance according to claim 1, characterized in that: The support module includes a fixed plate (1201), a second fixed hole (1202), a fixed pin (1203), a rectangular slide rail (1204), a rectangular slide groove (1205), a threaded rod (1206), a handle (1207), a rectangular threaded sleeve (1208), and a limiting rod (1209). The fixed plate (1201) has a second fixed hole (1202) at each corner. The fixed plate (1201) has a fixed pin (1203) passing through the middle of the second fixed hole (1202). The fixed plate (1201) has rectangular slide rails (1204) installed symmetrically on one side.

7. A rotatable communication pole for easy maintenance according to claim 6, characterized in that: A rectangular slide rail (1204) has a rectangular groove (1205) on its inner side. A threaded rod (1206) is longitudinally inserted through the rectangular groove (1205) on the rectangular slide rail (1204). A handle (1207) is installed at one end of the threaded rod (1206). A rectangular threaded sleeve (1208) is fitted on the outside of the threaded rod (1206). A limiting rod (1209) is provided between the two sets of rectangular slide rails (1204) and is fixedly connected to the rectangular threaded sleeve (1208).