All-weather high-voltage transmission line channel floating object removing equipment

By designing a 24/7 high-voltage transmission line channel floating object removal equipment, using a rubber friction cylinder and cutter combination, the problems of low efficiency and safety risks of reflective film removal are solved, and efficient and safe reflective film removal and stable operation of the equipment are achieved.

CN120262249APending Publication Date: 2025-07-04STATE GRID SHAANXI ELECTRIC POWER CO LTD YANCHANG COUNTY POWER SUPPLY BRANCH
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Patent Information

Application Number
CN202510507056.4
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-22
Publication Date
2025-07-04

AI Technical Summary

Technical Problem

The removal of existing reflective films depends on manual operation efficiency and has low altitude operation risks. After removal, it is easy to drift due to wind force, causing repeated pollution and safety hazards.

Method used

A suitable all-weather and suitable equipment for floating objects removal of high-voltage transmission line channels is designed. It uses a rubber friction cylinder and a cutting knife to pull the reflective film through the friction cylinder and cut it with a cutting knife. It is then collected by an electric rotary roller and stored in the storage box. It is combined with a removable high-strength alloy steel friction cylinder to remove the ice layer under freezing conditions to ensure the stable operation of the equipment.

Benefits of technology

It realizes efficient and safe removal of reflective film to avoid secondary drifting, ensures that the equipment operates stably in bad weather and has all-weather operation capabilities.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of high-voltage line cleaning equipment, in particular to all-weather applicable high-voltage transmission line channel floating object removing equipment which comprises a first connecting plate, a connecting cover and the like. A horn-shaped connecting cover is fixedly connected to the first connecting plate, and one side, in contact with the electric wire, of the connecting cover is in a fillet design and has a smooth surface; the connecting cover is further provided with a detachable arc plate. The reflective film is pulled backwards through rotation of the friction cylinder, and meanwhile the reflective film wrapping the wire is cut open through the cutter so that the reflective film can be separated from the wire; then, the electric rotating roller pulls the reflective film into the storage box, so that the reflective film is prevented from falling onto other electric wires; when the reflective film is hung on a plurality of electric wires at the same time, the reflective film is pulled backwards along with the friction cylinder until the reflective film is straightened and cannot be pulled backwards by the friction cylinder, so that the first cutting sawteeth and the second cutting sawteeth rotate in opposite directions, and after the reflective film is straightened, the reflective film enters the tooth grooves and is clamped and cut off.
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Description

Technical Field

[0001] The present invention relates to the technical field of high-voltage line cleaning equipment, and particularly to a floating object removal device applicable to high-voltage transmission line channels all-weather. Background Art

[0002] The laying of reflective film can enhance the color of fruits, but after use, it is often discarded by fruit farmers at will in the fields. These discarded reflective films not only pollute the soil environment, but are also extremely easy to be blown up in severe windy weather and float onto the high-voltage transmission lines along the orchard. This not only interferes with the normal operation of the power grid, but may also cause safety accidents such as short circuits and fires. Such behavior has become a major hidden danger threatening the stability of the power grid and public safety.

[0003] Currently, the removal of reflective film relies on manual operation, which is inefficient and has a relatively high risk for high-altitude operations. In addition, during the removal process, when the reflective film is peeled off from the transmission line, it is easy to be scattered again due to the action of wind, causing repeated pollution, and may even fall onto the lower-layer transmission line, further increasing the safety risk. Summary of the Invention

[0004] In order to overcome the disadvantages that the existing reflective film removal technology relies on inefficient and dangerous manual operations, and is prone to secondary scattering due to wind after removal, causing repeated pollution and safety risks, the present invention provides a floating object removal device applicable to high-voltage transmission line channels all-weather.

[0005] The technical solution is: A floating object removal device applicable to high-voltage transmission line channels all-weather, including a first connecting plate, a connecting cover, a storage box, and a connecting frame; a connecting cover is fixedly connected to the first connecting plate, the connecting cover is in a horn shape, the side in contact with the wire is designed with a rounded corner and has a smooth surface, and an arc plate is detachably connected to the connecting cover; a storage box is fixedly connected to the first connecting plate; the connecting cover is communicated with the storage box; a connecting frame is fixedly connected to the connecting cover; further includes a guiding rod, a cutting knife, a second connecting plate, an electric rotating rod, a friction cylinder, and a walking component; a guiding rod is fixedly connected to the connecting frame; several cutting knives are fixedly connected to the connecting frame; two second connecting plates are fixedly connected to the connecting frame; an electric rotating rod is fixedly connected to each second connecting plate; a friction cylinder is fixedly connected to the output end of each electric rotating rod; a walking component for driving the device to walk on the wire is connected to the first connecting plate.

[0006] Further, the friction cylinder is made of rubber material.

[0007] Further, the walking component includes a first fixing plate, a second fixing plate, and an electric rotating wheel; a first fixing plate is fixedly connected to the first connecting plate; a second fixing plate is detachably connected to the first connecting plate; two electric rotating wheels that are symmetrically arranged up and down are jointly connected by the first fixing plate and the second fixing plate.

[0008] Furthermore, it also includes an electric roller and a scraper; two electric rollers are fixedly connected in a storage box and are symmetrical on the left and right; the electric roller is located at the connecting port between the connecting cover and the storage box; two scrapers are fixedly connected in the storage box, and the two scrapers are distributed on the left and right sides of the electric roller, and each scraper is in close contact with a corresponding electric roller.

[0009] Furthermore, the surface of the electric roller is configured to be toothed.

[0010] Furthermore, it also includes a connecting ring, a rotating outer ring and a rotating inner ring; the connecting ring is fixedly connected to the front side of the connecting cover; the rotating outer ring is slidably connected to the outer side of the connecting ring; a first toothed ring is provided on the inner side of the rotating outer ring, and a first cutting saw tooth is fixedly connected to the inner side of the rotating outer ring through a connecting rod; the rotating inner ring is slidably connected to the inner side of the connecting ring; a second toothed ring is provided on the outer side of the rotating inner ring; the second cutting saw tooth is fixedly connected to the outer side of the rotating inner ring through a connecting rod; a number of gears are connected to the connecting ring; a motor is fixedly connected to the side of the connecting ring away from the gear, and the output end of the motor is fixedly connected to one of the gears; the first toothed ring and the second toothed ring are both meshed with the gears, and the first cutting saw tooth is tightly attached to the second cutting saw tooth.

[0011] Furthermore, notches are provided on the right sides of the connecting cover, the connecting ring, the rotating outer ring and the rotating inner ring, and the second connecting plate located on the right side is rotatably connected to the connecting frame.

[0012] Furthermore, the cutter is installed tilted forward toward the electric wire, and its cutting edge is located at the side facing away from the electric wire.

[0013] Furthermore, a battery is also included; the battery is fixedly connected to the bottom of the storage box, and the battery is designed to have a large capacity.

[0014] Furthermore, the electric rotating rod is detachably connected to the friction cylinder, and a friction cylinder made of high-strength alloy steel can be used to replace a friction cylinder made of rubber.

[0015] The beneficial effects are as follows: the present invention pulls the reflective film backward by rotating the friction cylinder, and at the same time uses a cutter to cut the reflective film wrapped around the wire to separate it from the wire; then, the electric roller pulls the reflective film into the storage box to prevent it from falling onto other wires; When the reflective film is hung on multiple wires, the friction cylinder continues to pull until the reflective film is straightened, and then it can no longer be pulled backward by the friction cylinder, and then the electric wheel continues to drive the present invention to move forward, so that the first cutting saw tooth and the second cutting saw tooth rotate in opposite directions. When the reflective film is straightened, it enters the tooth groove and is clamped and cut off. No matter how the reflective film is entangled with the surrounding wires, it can be effectively cut off, effectively ensuring universality; When the surface of the wire is frozen, a friction cylinder made of high-strength alloy steel can be used to replace the friction cylinder made of rubber. When the equipment moves along the wire 111, the ice layer on the wire can be crushed through the friction cylinder, ensuring that the present invention can move stably on the high-voltage transmission line, enabling the equipment to operate normally in cold climates and achieving all-weather operation. Brief Description of the Drawings

[0016] Figure 1 It is a perspective structure diagram of the first perspective of the floating object removal equipment for all-weather applicable high-voltage transmission line channels of the present invention; Figure 2 It is a perspective structure diagram of the second perspective of the floating object removal equipment for all-weather applicable high-voltage transmission line channels of the present invention; Figure 3 It is a combined perspective structure diagram of the connecting frame, guiding rod and cutter of the present invention; Figure 4 It is a side view of the present invention; Figure 5 It is a combined sectional view of the connecting cover and storage box of the present invention; Figure 6 It is a combined perspective structure diagram of the electric roller and the scraper of the present invention; Figure 7 It is a state diagram of the present invention installed on the wire; Figure 8 It is a combined perspective structure diagram of the connecting ring, rotating outer ring and rotating inner ring of the present invention; Figure 9 It is an exploded view of the connecting ring, rotating outer ring and rotating inner ring of the present invention.

[0017] Names and serial numbers of components in the figure: 111 - wire, 1 - first connecting plate, 2 - connecting cover, 2001 - arc plate, 3 - storage box, 4 - connecting frame, 5 - guiding rod, 6 - cutter, 7 - electric roller, 8 - scraper, 9 - storage battery, 101 - second connecting plate, 102 - electric rotating rod, 103 - friction cylinder, 201 - first fixing plate, 202 - second fixing plate, 203 - electric rotating wheel, 301 - connecting ring, 30101 - gear, 302 - rotating outer ring, 30201 - first toothed ring, 30202 - first cutting saw teeth, 303 - rotating inner ring, 30301 - second toothed ring, 30302 - second cutting saw teeth. Detailed Embodiments

[0018] The technical solutions of the present invention will be further described below with reference to the accompanying drawings.

[0019] Embodiment 1 A floating object removal equipment for all-weather applicable high-voltage transmission line channels, as Figures 1-9As shown in the figure, it includes a first connecting plate 1, a connecting cover 2, a storage box 3 and a connecting frame 4; a connecting cover 2 is fixedly connected to the first connecting plate 1. The connecting cover 2 is trumpet-shaped. The side of the connecting cover 2 in contact with the electric wire 111 is provided with a rounded corner, and the surface is smooth. And an arc plate 2001 is detachably connected to the right side of the connecting cover 2; a storage box 3 is fixedly connected to the lower side of the first connecting plate 1; the connecting cover 2 is communicated with the storage box 3; a connecting frame 4 is fixedly connected to the connecting cover 2; It further includes a guiding rod 5, a cutting knife 6, a second connecting plate 101, an electric rotating rod 102, a friction cylinder 103 and a traveling assembly; a guiding rod 5 is fixedly connected to the connecting frame 4; two cutting knives 6 which are symmetrically arranged up and down are fixedly connected to the connecting frame 4; two second connecting plates 101 are fixedly connected to the connecting frame 4; an electric rotating rod 102 is fixedly connected to each second connecting plate 101. The electric rotating rod 102 is composed of a motor and a rotating rod. The motor drives the rotating rod to rotate, and the rotating rod is the output end; a friction cylinder 103 is fixedly connected to the output end of each electric rotating rod 102. The friction cylinder 103 is 0.2 - 0.5 cm away from the electric wire 111. The guiding rod 5 is located in front of and below the friction cylinder 103; a traveling assembly is connected to the first connecting plate 1.

[0020] The friction cylinder 103 is made of rubber material.

[0021] The traveling assembly includes a first fixing plate 201, a second fixing plate 202 and an electric rotating wheel 203; a first fixing plate 201 is fixedly connected to the first connecting plate 1; a second fixing plate 202 is detachably connected to the first connecting plate 1; two electric rotating wheels 203 which are symmetrically arranged up and down are jointly connected by the first fixing plate 201 and the second fixing plate 202. The electric rotating wheel 203 is composed of a motor and a rotating wheel. The motor drives the rotating wheel to rotate.

[0022] It further includes an electric rotating roller 7 and a scraping plate 8; two electric rotating rollers 7 which are symmetrically arranged left and right are fixedly connected in the storage box 3; the electric rotating rollers 7 are located at the communication port of the connecting cover 2 and the storage box 3; two scraping plates 8 are fixedly connected in the storage box 3. The two scraping plates 8 are distributed on the left side and the right side of the electric rotating roller 7, and each scraping plate 8 is in close contact with the corresponding electric rotating roller 7.

[0023] The surface of the electric rotating roller 7 is set to be tooth-shaped.

[0024] It also includes a connecting ring 301, a rotating outer ring 302 and a rotating inner ring 303; the connecting ring 301 is fixedly connected to the front side of the connecting cover 2; the rotating outer ring 302 is slidably connected to the outer side of the connecting ring 301; the first toothed ring 30201 is arranged on the inner side of the rotating outer ring 302, and the first cutting sawtooth 30202 is fixedly connected to the inner side of the rotating outer ring 302 through a connecting rod; the rotating inner ring 303 is slidably connected to the inner side of the connecting ring 301; the second toothed ring 30301 is arranged on the outer side of the rotating inner ring 303; the second cutting sawtooth 30202 is fixedly connected to the outer side of the rotating inner ring 303 through a connecting rod Sawtooth 30302; two gears 30101 are connected to the connecting ring 301; a motor is fixedly connected to the side of the connecting ring 301 away from the gear 30101, and the output end of the motor is fixedly connected to one of the gears 30101; the first gear ring 30201 and the second gear ring 30301 are both engaged with the gear 30101, and the first cutting saw tooth 30202 is tightly attached to the second cutting saw tooth 30302, and the gear 30101 is driven by the motor to rotate, thereby driving the first cutting saw tooth 30202 and the second cutting saw tooth 30302 to rotate towards each other.

[0025] The right sides of the connecting cover 2 , the connecting ring 301 , the rotating outer ring 302 and the rotating inner ring 303 are all provided with notches for the power line 111 to pass through, and the second connecting plate 101 on the right side is rotatably connected to the connecting frame 4 .

[0026] The cutter 6 is installed to be inclined forward toward the electric wire 111 , and its cutting edge is located at the side facing away from the electric wire 111 .

[0027] The storage box 3 also includes a battery 9; the battery 9 is fixedly connected to the bottom of the storage box 3, and the battery 9 is designed with a large capacity to enhance its endurance while maintaining the center of gravity of the device stable.

[0028] The working process of the floating object removal device for high-voltage power transmission line channel applicable to all weather conditions of the present invention is as follows: The following description is based on Figure 1 is a viewing angle reference, wherein the side where the friction cylinder 103 is located is the front side; like Figure 1 , Figure 2 and Figure 7As shown in the figure, in the initial state, the notches of the rotating inner ring 303 and the rotating outer ring 302 are aligned with the notch of the connecting ring 301. Remove the second fixing plate 202 from the first connecting plate 1 and remove the arc plate 2001 from the connecting cover 2. Manually push the right friction cylinder 103 to drive the second connecting plate 101 and the electric rotating rod 102 to rotate upward. Then, pass the wire 111 through the notches of the connecting cover 2, the connecting ring 301, the rotating outer ring 302, and the rotating inner ring 303. Then, manually push the right friction cylinder 103 to rotate downward and reset it, and lock it with bolts. The two friction cylinders 103 are respectively located on the left and right sides of the wire 111. Install the second fixing plate 202 on the first connecting plate 1 and install the arc plate 2001 on the connecting cover 2. The wire 111 is clamped by the electric rotating wheel 203 and the connecting cover 2 together to realize clamping and limiting the present invention on the wire 111.

[0029] When it is necessary to remove the reflective film mounted on the wire 111, control the motor to drive the electric rotating wheel 203 to rotate, driving the present invention to move forward on the wire 111. The side of the connecting cover 2 in contact with the wire 111 is rounded and the surface is smooth, which can avoid scratching the wire during sliding. Control the motor to drive the corresponding electric rotating rod 102 to rotate. Based on the top view perspective, drive the left friction cylinder 103 to rotate counterclockwise and the right friction cylinder 103 to rotate clockwise respectively, and make the rotation speed of the friction cylinder 103 greater than that of the electric rotating wheel 203. The friction cylinder 103 is made of rubber material, so that there is a large friction force between the friction cylinder 103 and the reflective film. When there is a reflective film in front, through the continuous rotation of the friction cylinder 103, the reflective film on the wire 111 is continuously pulled to move backward rapidly relative to the friction cylinder 103. The cutter 6 cuts open the reflective film wrapping the power transmission wire 111 to make it detached. The connecting cover 2 is in a trumpet shape. Under the guidance of its inner side surface, the reflective film gathers towards the center of the connecting cover 2 and enters the storage box 3 through the communication port between the connecting cover 2 and the storage box 3 for collection, so as to avoid the fallen reflective film falling on the lower wire 111. It should be noted that the cutter 6 is installed with a forward inclination towards the wire 111, and its cutting edge is located on the side facing away from the wire 111. Thus, the cutter 6 is in close contact with the wire 111, ensuring that the reflective film wrapped on the wire 111 can gradually contact the inclined cutter 6 and be cut open, and avoiding the cutter 6 from damaging the wire 111.

[0030] Furthermore, since the reflective film usually has a certain length, the drooping part of the reflective film on the wire 111 is usually lower than the communication port between the storage box 3 and the connecting cover 2. To ensure that the reflective film can smoothly enter the storage box 3, a guiding rod 5 is arranged below the front of the friction cylinder 103, so that the reflective film in front of it can be guided and abutted by the guiding rod 5, so that all parts of the reflective film can be pulled by the friction cylinder 103 to move upward between the two friction cylinders 103 and then be cut open by the cutter 6.

[0031] Since there may be a situation where some reflective films are simultaneously hung on multiple wires 111, during the process of pulling the reflective film by the friction cylinder 103, the motor is controlled to drive the gear 30101 on the connecting ring 301 to rotate. Since the first toothed ring 30201 and the second toothed ring 30301 are engaged with the gear 30101, the rotating outer ring 302 and the rotating inner ring 303 rotate in opposite directions on the connecting ring 301 under the drive of the gear 30101, thereby driving the first cutting serrations 30202 and the second cutting serrations 30302 to rotate in opposite directions. Thus, when the reflective film on the wire 111 clamped by the present invention is simultaneously wound around another wire 111, as the friction cylinder 103 pulls it backward until the reflective film is straightened and cannot be pulled backward by the friction cylinder 103 anymore, then the electric rotating wheel 203 continues to drive the present invention to move forward. When the straightened reflective film enters the tooth grooves of the first cutting serrations 30202 and the second cutting serrations 30302, the first cutting serrations 30202 and the second cutting serrations 30302 can clamp the reflective film and apply a shearing force, thereby gradually cutting the reflective film. And because it is uncertain in which direction around the wire 111 the reflective film is wound, and the continuously rotating first cutting serrations 30202 and the second cutting serrations 30302 are in an overall annular shape and can cover all directions, no matter in which direction around the wire 111 the reflective film is wound, it can contact the first cutting serrations 30202 and the second cutting serrations 30302 and be cut, effectively ensuring its universality.

[0032] It should be noted that after the reflective film falls into the storage box 3 from the communication port of the storage box 3 and the connecting cover 2, the reflective film will continuously accumulate below the communication port, affecting the subsequent collection of the reflective film. And there is a situation where some reflective films are still hung on the wire 111 after being cut by the cutter 6 under the action of friction. Thus, the motor is driven to rotate the electric roller 7, so as to timely pull the reflective film falling to the communication port into the storage box 3 through the electric roller 7 with a toothed surface, avoiding its influence on the subsequent entry of the reflective film. At the same time, the reflective film still hung on the wire 111 can be pulled into the storage box 3 by the electric roller 7. During this process, the surface of the electric roller 7 is scraped by the scraper 8 to prevent the continuously rotating electric roller 7 from taking the reflective film in the storage box 3 outwards again.

[0033] According to the above working process, we can know that the present invention has the following effects: When there is a reflective film in front, with the continuous rotation of the friction cylinder 103, the reflective film on the wire 111 is continuously pulled and moves rapidly backward relative to the friction cylinder 103. Then, the cutter 6 slides on the reflective film wrapped around the wire 111, enabling it to detach from the wire 111, and under the guidance of the connecting cover 2, it falls downward into the storage box 3 for storage, so as to prevent the detached reflective film from falling on the lower wire 111.

[0034] During the process of pulling the reflective film by the friction cylinder 103, the first cutting serrations 30202 and the second cutting serrations 30302 rotate in opposite directions. When the reflective film on the wire 111 clamped by the present invention is wound around another wire 111 at the same time, as the friction cylinder 103 pulls it backward, until the reflective film is straightened and cannot be pulled backward by the friction cylinder 103 anymore, then the electric rotating wheel 203 continues to drive the present invention forward. When the straightened reflective film enters the tooth grooves of the first cutting serrations 30202 and the second cutting serrations 30302, the first cutting serrations 30202 and the second cutting serrations 30302 can clamp the reflective film and apply a shearing force, thereby gradually cutting the reflective film. Moreover, the annularly arranged first cutting serrations 30202 and second cutting serrations 30302 can handle the wound reflective film at any angle, so that no matter which direction of the surrounding wire 111 the reflective film is wound around, it can contact the first cutting serrations 30202 and the second cutting serrations 30302 and be cut off, effectively ensuring its universality.

[0035] The additional technical effects of the present invention are as follows: Among them, as Figure 1 shown, by arranging a large-capacity storage battery 9 at the bottom of the storage box 3, while ensuring the endurance ability, the center of gravity of the present invention can be effectively maintained stable, ensuring that the present invention can still move stably on the wire 111 under bad weather conditions such as strong winds.

[0036] Embodiment 2 On the basis of Embodiment 1, as Figures 2-5 shown, to achieve the ice-breaking operation, the electric rotating rod 102 is detachably connected to the friction cylinder 103, and the friction cylinder 103 made of high-strength alloy steel can be used to replace the friction cylinder 103 made of rubber.

[0037] The working process of the above embodiment is as follows: When the surface of the wire 111 freezes, the original friction cylinder 103 made of rubber can be removed from the electric rotating rod 102, and the friction cylinder 103 made of high-strength alloy steel is installed on the electric rotating rod 102. When the device moves along the wire 111, the ice layer on the surface of the wire 111 is broken and removed by the friction cylinder 103, ensuring that the present invention can move stably on the wire 111, enabling the device to operate normally in cold climates and achieving all-weather operation.

[0038] Although the present invention has been described with reference to exemplary embodiments, it should be understood that the present invention is not limited to the disclosed exemplary embodiments. The scope of the following claims should be given the broadest interpretation so as to cover all modifications and equivalent structures and functions.

Claims

1. An all-weather applicable floating object clearing device for high-voltage transmission line channels, comprising a first connecting plate (1); a connecting cover (2) is fixedly connected to the first connecting plate (1), the connecting cover (2) is in a horn shape, the side thereof in contact with the electric wire (111) is designed with a rounded corner and has a smooth surface, and an arc plate (2001) is detachably connected to the connecting cover (2); a storage box (3) is fixedly connected to the first connecting plate (1); the connecting cover (2) is communicated with the storage box (3); a connecting frame (4) is fixedly connected to the connecting cover (2); and the feature is that: A guide rod (5) is fixedly connected to the connecting frame (4); a plurality of cutters (6) are fixedly connected to the connecting frame (4); two second connecting plates (101) are fixedly connected to the connecting frame (4); an electric rotating rod (102) is fixedly connected to each second connecting plate (101); a friction cylinder (103) is fixedly connected to the output end of each electric rotating rod (102); and a walking assembly for driving the device to walk on the electric wire (111) is connected to the first connecting plate (1).

2. The all-weather applicable high-voltage transmission line corridor floating object removal device according to claim 1, characterized in that: The friction cylinder (103) is made of rubber.

3. An all-weather applicable floating object removal device for high-voltage transmission line channels according to claim 1, characterized in that: The walking assembly comprises a first fixing plate (201); the first connecting plate (1) is fixedly connected to the first fixing plate (201); the first connecting plate (1) is detachably connected to the second fixing plate (202); the first fixing plate (201) and the second fixing plate (202) are jointly connected to two vertically symmetrical electric rotating wheels (203).

4. An all-weather applicable floating object clearing device for high-voltage transmission line channels according to claim 1, characterized in that: It also includes an electric roller (7); two electric rollers (7) that are symmetrical on the left and right are fixedly connected to the storage box (3); the electric roller (7) is located at the communication port between the connection cover (2) and the storage box (3); and two scrapers (8) are fixedly connected to the storage box (3), and the two scrapers (8) are respectively closely attached to the left and right sides of the electric roller (7).

5. An all-weather applicable floating object removal device for high-voltage transmission line channels according to claim 4, characterized in that: The surface of the electric rotating roller (7) is arranged in a toothed shape.

6. The all-weather applicable high-voltage transmission line corridor floating object removal device according to claim 1, characterized in that: The invention also comprises a connecting ring (301); the connecting ring (301) is fixedly connected to the front side of the connecting cover (2); the outer side of the connecting ring (301) is slidably connected to a rotating outer ring (302); the inner side of the rotating outer ring (302) is provided with a first toothed ring (30201); the inner side of the rotating outer ring (302) is fixedly connected with a first cutting saw tooth (30202) via a connecting rod; the inner side of the connecting ring (301) is slidably connected to a rotating inner ring (303); the outer side of the rotating inner ring (303) is provided with a second toothed ring (30301); the rotating inner ring ( A second cutting saw tooth (30302) is fixedly connected to the outer side of the connecting ring (303) via a connecting rod; a plurality of gears (30101) are rotatably connected to the connecting ring (301); a motor is fixedly connected to the side of the connecting ring (301) away from the gear (30101), and the output end of the motor is fixedly connected to one of the gears (30101); the first gear ring (30201) and the second gear ring (30301) are both meshed with the gear (30101), and the first cutting saw tooth (30202) and the second cutting saw tooth (30302) are in close contact.

7. An all-weather applicable floating object clearing device for high-voltage transmission line channels according to claim 6, characterized in that: The right sides of the connecting cover (2), the connecting ring (301), the rotating outer ring (302) and the rotating inner ring (303) are all provided with notches, and the second connecting plate (101) on one side is rotatably connected to the connecting frame (4).

8. The all-weather applicable high-voltage transmission line channel floating object removal device according to claim 1, wherein: The cutter (6) is installed in a forward tilted direction toward the electric wire (111), and its cutting edge is located on the side facing away from the electric wire (111).

9. An all-weather applicable floating object clearing device for high-voltage transmission line channels according to claim 1, characterized in that: It also includes a storage battery (9); the storage battery (9) is fixedly connected to the bottom of the storage box (3), and the storage battery (9) is designed to have a large capacity.

10. The all-weather applicable high-voltage transmission line corridor floating object removal device according to claim 1, wherein: The electric rotating rod (102) is detachably connected to the friction cylinder (103), and the friction cylinder (103) made of high-strength alloy steel can be used to replace the friction cylinder (103) made of rubber.