Electric power line mobile maintenance basket
By designing a motor-driven tool placement bucket rotating mechanism in the mobile maintenance basket of the power line, the problem of inconvenient tool placement in the prior art is solved, and the tool is conveniently picked up and placed and maintained construction progress is achieved.
Patent Information
- Application Number
- CN202421670672.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-16
- Publication Date
- 2025-06-03
- Estimated Expiration
- 2034-07-16
AI Technical Summary
The existing mobile power line maintenance basket lacks a tool placement structure, which makes it difficult for workers to pick up and place tools during maintenance.
A power line mobile maintenance basket is designed, which includes a tool placement bucket and a rotating mechanism driven by the motor. The tool placement bucket is located under the maintenance operation table under normal conditions. When it is necessary to pick up and place the tool, the tool placement bucket is rotated to the top of the maintenance operation table by starting the motor.
It realizes convenient access and placement of tools, improves workers' operating efficiency, and does not affect the construction progress of power lines.
Smart Images

Figure CN222940446U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of power lines, in particular to a mobile maintenance basket for power lines. Background Art
[0002] The existing patent (Announcement No.: CN203301055U) proposes a mobile maintenance basket for power lines. The mobile maintenance basket for power lines consists of a maintenance basket, a fixing clamp, and a trigger bell. The fixing clamps are set at the front and rear edges of the maintenance basket, and an insulating rod is installed on the fixing clamp. The other end of the insulating rod is set with a trigger bell. The maintenance basket of this device does not have a structure for holding maintenance tools, etc., which makes it inconvenient for workers to take and put tools during maintenance, and needs to be improved. Summary of the invention
[0003] The utility model aims at the above-mentioned deficiencies in the prior art and provides a mobile maintenance basket for electric power lines, which is convenient to use and does not affect the construction of workers. The utility model provides a tool placement bucket which is located below a maintenance workbench in a normal state, wherein the tool placement bucket contains tools, materials and other maintenance supplies used by workers. When it is necessary to take out items in the tool placement bucket, a motor is started to rotate the tool placement bucket to above the maintenance workbench, so that workers can perform the taking and placing operations.
[0004] The purpose of this utility model is achieved through the following technical solutions:
[0005] A mobile maintenance basket for power lines comprises a maintenance operation table, a vertical pole, a horizontal railing, a tool placement bucket, a rotating support plate, a rotating shaft rod, a No. 1 support plate, an active gear plate, a shaft rod socket, and a connecting plate. The lower part of the vertical pole is connected to the maintenance operation table, four vertical poles are distributed at the four corners of the upper part of the maintenance operation table, the two ends of the horizontal railing are connected to the vertical poles, and multiple horizontal railings are evenly distributed up and down. The upper part of the No. 1 support plate is connected to the maintenance operation table, the rotating shaft rod passes through the No. 1 support plate, the rotating shaft rod rotates in the No. 1 support plate, a group of No. 1 support plates are distributed on the rotating shaft rod, the rotating shaft rod has a group of rotating shaft rod convex rings, the side surface of the rotating shaft rod convex ring is in contact with the No. 1 support plate, the lower part of the rotating support plate has a shaft rod socket, the side surface of the rotating support plate is in contact with the No. 1 support plate, the rotating shaft rod is adapted to the shaft rod socket, the rotating shaft rod passes through the shaft rod socket, and the rotating shaft rod is connected to the shaft rod socket.
[0006] The connecting plate is connected to the rotating support plate, and the rotating support plates are symmetrically arranged at both ends of the connecting plate. An intermediate tooth column is provided in the middle position of the rotating shaft rod. The upper part of the No. 2 support plate is connected to the maintenance operating table. The side of the active gear disc is provided with a gear disc side shaft rod. The gear disc side shaft rod is symmetrically arranged on both sides of the active gear disc. The side of the active gear disc is fitted with the No. 2 support plate, and the No. 2 support plate is symmetrically arranged on both sides of the active gear disc.
[0007] The gear disc side shaft rod passes through the second support plate, and the gear disc side shaft rod rotates in the second support plate. The motor is installed at the bottom of the maintenance operation table, the motor shaft is connected to the gear disc side shaft rod, and the active gear disc is meshed with the middle gear column.
[0008] The tool placing bucket has side bosses at both ends, and the side bosses have positioning shaft sockets. The side of the rotating support plate fits with the side bosses, and the rotating support plate has a positioning shaft, which is adapted to the positioning shaft socket. The positioning shaft passes through the positioning shaft socket and rotates in the positioning shaft socket. The side of the maintenance operating table has a side groove for making way. Beneficial Effects
[0009] The utility model discloses a plurality of horizontal railings and four vertical poles form a fence, and the four sides of the maintenance operation platform are safely protected. When in use, workers can stand on the maintenance operation platform to carry out power line construction. The upper part of the No. 1 support plate is installed and fixed on the bottom of the maintenance operation platform. A group of No. 1 support plates supports and limits the rotating shaft rod, so that the rotating shaft rod is fixed at the position of the bottom of the maintenance operation platform without affecting the rotation of the rotating shaft rod. The two ends of the connecting plate are connected with the symmetrical rotating support plates, and the connecting plate and the symmetrical rotating support plates form a support frame body. The rotating shaft rod passes through and is connected to the shaft rod insertion hole. The rotating support plate is positioned by the No. 1 support plate as a support through the rotating shaft rod. At the same time, the rotating support plate rotates with the rotating shaft rod. The positioning shaft passes through the positioning shaft insertion hole, so that the rotating support plate is connected to the tool placement bucket through the positioning shaft. The symmetrical rotating support plates support and clamp the tool placement bucket, so that the tool placement bucket moves with the rotation of the rotating support plate. The No. 2 support plate is supported and fixed by the two ends of the active toothed disc through the symmetrical toothed disc side shaft rods, so that the side surface of the active toothed disc is meshed with the middle tooth column.
[0010] 2. The utility model installs and fixes the motor at the bottom of the maintenance operation table, and the motor shaft is connected to the side shaft rod of the gear disc. When the motor is working, it drives the active gear disc to rotate, so that the active gear disc drives the middle gear column to rotate, and then the rotating shaft rod drives the symmetrical rotating support plate to rotate. The position of the tool placement bucket of the symmetrical rotating support plate moves during the rotation process, and the tool placement bucket always remains vertical when moving with the rotating support plate. Since the positioning shaft socket is located at the upper position of the tool placement bucket, the tool placement bucket can be prevented from tilting as the rotating support plate rotates during mobile maintenance of the power line, so that the tool placement bucket only changes its position on the side of the maintenance operation table. Under normal conditions, the tool placement bucket is below the maintenance operation table, and the tool placement bucket contains tools, materials and other maintenance supplies used by workers. When it is necessary to take the items in the tool placement bucket, the motor is started to rotate the tool placement bucket to the top of the maintenance operation table, and the workers can perform the picking and placing operations. It is easy to use and does not affect the workers' construction. BRIEF DESCRIPTION OF THE DRAWINGS
[0011] Figure 1This is a first top view of a mobile maintenance basket for power lines described in the utility model.
[0012] Figure 2 This is a first bottom view of a mobile maintenance basket for electric power lines according to the utility model.
[0013] Figure 3 This is a second top view of a mobile maintenance basket for power lines described in the utility model.
[0014] Figure 4 This is a third top view of a mobile maintenance basket for power lines described in the utility model.
[0015] Figure 5 The utility model is a top view of a mobile maintenance basket for power lines. DETAILED DESCRIPTION
[0016] The utility model is further described in detail below according to the accompanying drawings and embodiments:
[0017] Embodiment 1:
[0018] A mobile maintenance basket for electric power lines comprises a maintenance operation platform 01, a vertical pole 02, a horizontal railing 03, a tool placement bucket 04, a rotating support plate 06, a rotating shaft rod 08, a No. 1 support plate 09, an active gear plate 12, a shaft rod insertion hole 15, and a connecting plate 19. The lower part of the vertical pole 02 is connected to the maintenance operation platform 01, four vertical poles 02 are distributed at the four corners of the upper part of the maintenance operation platform 01, both ends of the horizontal railing 03 are connected to the vertical poles 02, a plurality of horizontal railings 03 are evenly distributed up and down, and a plurality of horizontal railings 03 and the four vertical poles 02 form a fence to provide safety protection for the four sides of the maintenance operation platform 01. When in use, workers can stand on the maintenance operation platform 01 to carry out power line construction, the upper part of the No. 1 support plate 09 is connected to the maintenance operation platform 01, the rotating shaft rod 08 passes through the No. 1 support plate 09, and the rotating shaft rod 08 rotates in the No. 1 support plate 09, a group of one The No. 1 support plates 09 are distributed on the rotating shaft 08. The upper part of the No. 1 support plate 09 is installed and fixed at the bottom of the maintenance operation table 01. A group of No. 1 support plates 09 support and limit the rotating shaft 08 so that the rotating shaft 08 is fixed at the bottom of the maintenance operation table 01 without affecting the rotation of the rotating shaft 08. The rotating shaft 08 has a group of rotating shaft convex rings 10. The side of the rotating shaft convex ring 10 is in contact with the No. 1 support plate 09. The lower part of the rotating support plate 06 has a shaft plug hole 15. The side of the rotating support plate 06 is in contact with the No. 1 support plate 09. The rotating shaft 08 is adapted to the shaft plug hole 15. The rotating shaft 08 passes through the shaft plug hole 15. The rotating shaft 08 is connected to the shaft plug hole 15. The rotating shaft 08 is positioned by the No. 1 support plate 09 to support the rotating support plate 06, and the rotating support plate 06 rotates along with the rotating shaft 08.
[0019] Embodiment 2:
[0020] In the utility model, the connecting plate 19 is connected to the rotating support plate 06. The rotating support plates 06 are symmetrically arranged at both ends of the connecting plate 19. Both ends of the connecting plate 19 are connected to the symmetrically arranged rotating support plates 06. The connecting plate 19 and the symmetrically arranged rotating support plates 06 form a support frame. The middle position of the rotating shaft rod 08 has an intermediate tooth column 11. The upper part of the second support plate 13 is connected to the maintenance operation table 01. The side of the driving gear disc 12 has gear disc side shaft rods 14. The gear disc side shaft rods 14 are symmetrically arranged on both sides of the driving gear disc 12. The side of the driving gear disc 12 is in contact with the second support plate 13. The second support plates 13 are symmetrically arranged on both sides of the driving gear disc 12.
[0021] Embodiment 3:
[0022] In the utility model, the gear disc side shaft rod 14 passes through the second support plate 13 and rotates within the second support plate 13. The second support plate 13 is supported and fixed by the symmetrically arranged gear disc side shaft rods 14 at both ends of the driving gear disc 12, so that the side of the driving gear disc 12 meshes with the intermediate tooth column 11. The motor is installed at the bottom of the maintenance operation table 01. The motor shaft is connected to the gear disc side shaft rod 14. The driving gear disc 12 meshes with the intermediate tooth column 11.
[0023] Embodiment 4:
[0024] The tool placement bucket 04 of the present utility model has placement bucket side bosses 05 at both the front and rear ends. The placement bucket side bosses 05 have positioning shaft insertion holes 16. The side surface of the rotating support plate 06 is in contact with the placement bucket side bosses 05. The rotating support plate 06 has a positioning shaft 17. The positioning shaft 17 is adapted to the positioning shaft insertion hole 16. The positioning shaft 17 passes through the positioning shaft insertion hole 16, so that the rotating support plate 06 is connected to the tool placement bucket 04 through the positioning shaft 17. The positioning shaft 17 rotates within the positioning shaft insertion hole 16. The symmetric rotating support plates 06 support and clamp the tool placement bucket 04, so that the position of the tool placement bucket 04 moves as the rotating support plates 06 rotate. The side surface of the maintenance operation table 01 has a relief side groove 18. The motor is installed and fixed at the bottom of the maintenance operation table 01. The motor shaft is connected to the tooth disc side shaft rod 14. When the motor works, it drives the driving tooth disc 12 to rotate, so that the driving tooth disc 12 drives the intermediate tooth column 11 to rotate, and further drives the rotating shaft rod 08 to drive the symmetric rotating support plates 06 to rotate. During the rotation of the symmetric rotating support plates 06, the position of the tool placement bucket 04 moves accordingly. The tool placement bucket 04 always remains vertical when moving with the rotating support plates 06. Since the positioning shaft insertion hole 16 is located at the upper position of the tool placement bucket 04, it can prevent the tool placement bucket 04 from tilting as the rotating support plates 06 rotate during the mobile maintenance of the power line, so that the position of the tool placement bucket 04 only changes on the side surface of the maintenance operation table 01. Under normal conditions, the tool placement bucket 04 is located below the maintenance operation table 01. The tool placement bucket 04 contains maintenance supplies such as tools and materials used by workers. When it is necessary to take items from the tool placement bucket 04, the motor is started to rotate the tool placement bucket 04 above the maintenance operation table 01, and the worker can perform the pick-up and placement operations, which is convenient to use and does not affect the worker's construction.
[0025] Embodiment 5:
[0026] The installation steps of the present utility model are as follows: First, pass the rotating shaft rod 08 through the first support plate 09, make the side surface of the first support plate 09 in contact with the rotating shaft rod convex ring 10, connect the upper part of the first support plate 09 to the maintenance operation table 01, pass the tooth disc side shaft rod 14 through the second support plate 13, connect the upper part of the second support plate 13 to the maintenance operation table 01, install the motor below the maintenance operation table 01, connect the motor shaft to the tooth disc side shaft rod 14, insert the positioning shaft 17 into the positioning shaft insertion hole 16, pass the rotating shaft rod 08 through and connect to the shaft rod insertion hole 15, connect both ends of the connecting plate 19 to the symmetric rotating support plates 06, connect the lower part of the vertical upright rod 02 to the maintenance operation table 01, and connect both ends of the horizontal railing 03 to the vertical upright rod 02.
[0027] The above are only the preferred embodiments of the present utility model and are not used to limit the present utility model. It should be noted that for those of ordinary skill in the art in this technical field, without departing from the technical principle of the present utility model, several improvements and modifications can be made, and these improvements and modifications should also be regarded as the protection scope of the present utility model.
Claims
1. A mobile maintenance basket for power lines, characterized in that : It comprises a maintenance operation table (01), a vertical pole (02), a horizontal railing (03), a tool placement bucket (04), a rotating support plate (06), a rotating shaft rod (08), a No. 1 support plate (09), an active gear plate (12), a shaft rod socket (15), and a connecting plate (19), wherein the lower part of the vertical pole (02) is connected to the maintenance operation table (01), four vertical poles (02) are distributed at the four corners of the upper part of the maintenance operation table (01), the two ends of the horizontal railing (03) are connected to the vertical pole (02), and a plurality of horizontal railings (03) are evenly distributed up and down, the upper part of the No. 1 support plate (09) is connected to the maintenance operation table (01), and the rotating shaft rod (08) The rotating shaft (08) passes through the No. 1 support plate (09), and rotates in the No. 1 support plate (09). A group of No. 1 support plates (09) are distributed on the rotating shaft (08). The rotating shaft (08) has a group of rotating shaft convex rings (10). The side of the rotating shaft convex ring (10) is in contact with the No. 1 support plate (09). The lower part of the rotating support plate (06) has a shaft plug hole (15). The side of the rotating support plate (06) is in contact with the No. 1 support plate (09). The rotating shaft (08) is adapted to the shaft plug hole (15). The rotating shaft (08) passes through the shaft plug hole (15), and the rotating shaft (08) is connected to the shaft plug hole (15).
2. A mobile maintenance basket for electric power lines according to claim 1, characterized in that The connecting plate (19) is connected to the rotating support plate (06), the rotating support plate (06) is symmetrically arranged at both ends of the connecting plate (19), the middle position of the rotating shaft (08) has an intermediate tooth column (11), the upper part of the second support plate (13) is connected to the maintenance operation table (01), the side of the active gear disc (12) has a gear disc side shaft (14), the gear disc side shaft (14) is symmetrically arranged on both sides of the active gear disc (12), the side of the active gear disc (12) is in contact with the second support plate (13), and the second support plate (13) is symmetrically arranged on both sides of the active gear disc (12).
3. A mobile maintenance basket for electric power lines according to claim 2, characterized in that The toothed disc side shaft rod (14) passes through the second support plate (13), the toothed disc side shaft rod (14) rotates in the second support plate (13), the motor is installed at the bottom of the maintenance operation table (01), the motor shaft is connected to the toothed disc side shaft rod (14), and the active toothed disc (12) is meshed with the intermediate tooth column (11).
4. A mobile maintenance basket for electric power lines according to claim 3, characterized in that The tool placement bucket (04) has a placement bucket side boss (05) at both ends, the placement bucket side boss (05) has a positioning shaft insertion hole (16), and the side of the rotating support plate (06) is in contact with the placement bucket side boss (05); the rotating support plate (06) has a positioning shaft (17), the positioning shaft (17) is adapted to the positioning shaft insertion hole (16), the positioning shaft (17) passes through the positioning shaft insertion hole (16), and the positioning shaft (17) rotates in the positioning shaft insertion hole (16), and the side of the maintenance operation table (01) has a side groove (18) for making way.
Citation Information
Patent Citations
Mobile maintenance gabion for electric-power lines
CN203301055U
Cited By
Intelligent flow line with operation display
CN122650273A