Multifunctional distribution line anti-bird device

By designing a multifunctional bird-proof device for power distribution lines, and utilizing a combination of fixed plates, wind-driven vibration, and photovoltaic electric shock plates, the problems of low installation efficiency and insufficient safety of existing devices are solved, achieving efficient and safe bird-repelling and cleaning functions.

CN121242010APending Publication Date: 2026-01-02HUANTAI POWER SUPPLY CO OF STATE GRID SHANDONG ELECTRIC POWER CO
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Patent Information

Application Number
CN202511799675.1
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-12-02
Publication Date
2026-01-02

AI Technical Summary

Technical Problem

The existing bird-proofing devices for power distribution lines are inefficient and unsafe to install during high-altitude operations, and the safety of operators is not adequately guaranteed.

Method used

A multifunctional bird deterrent device for power distribution lines was designed. It uses a fixed plate to be connected to the outside of the angle iron, and uses wind power to drive the shock component to drive away birds. It also uses photovoltaic panels to generate electricity and electric shock plates to drive away birds, simplifying the installation process and improving safety.

Benefits of technology

It achieves fixation without the need for tightening bolts, and improves installation efficiency and safety by using wind power to drive away birds, photovoltaic power generation to clean the surface, and electric shock to drive away birds.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of distribution line anti-bird, in particular to a multifunctional distribution line anti-bird device, which comprises a trapezoidal table with a rotating shaft arranged at the upper end and connected with a jarring assembly; the electric shock assembly is installed on the upper surface of the trapezoidal table and comprises an electric shock plate, and electrode columns are installed at the positions, corresponding to the electric shock plate, of the trapezoidal table; the fixing assembly is installed at the lower end of the trapezoidal table and comprises a fixing plate, and a clamping assembly is arranged in the fixing plate; the bird repelling device has the beneficial effects that the bird repelling device is fixed through the fixing plate, during fixing, the fixing plate is clamped outside the angle iron, the angle iron abuts against the extrusion block and compresses the first air bag, air in the first air bag is discharged into the second air bag, the second air bag expands and clamps the angle iron, and meanwhile the angle iron extrudes the abutting block; the abutting block drives the inserting block to move out of the clamping groove through the pull rope, at the moment, the elastically-arranged limiting block rotates and pops up, the fixing plate is prevented from being separated from the angle iron, bolts are not needed, and the fixing plate is pushed to move towards the angle iron for fixing.
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Description

Technical Field

[0001] The present invention relates to the technical field of anti-bird protection for distribution lines, and particularly to a multifunctional anti-bird device for distribution lines. Background Art

[0002] A distribution line refers to a line that delivers electricity from a step-down substation to a distribution transformer or from a distribution substation to a power-consuming unit; In the prior art, Chinese Utility Model Patent No. CN213819553U discloses a novel length-adjustable anti-bird device for transmission and distribution lines, which includes a first trapezoidal platform and a second trapezoidal platform. A trapezoidal opening is provided on one side of the first trapezoidal platform. First sliders are fixedly installed on the front and back of the first trapezoidal platform, and a second slider is fixedly installed at the bottom of the first trapezoidal platform. A first threaded hole is provided at the top of the first trapezoidal platform. A socket is provided on one side of the second trapezoidal platform, and first chutes are provided on the side walls of the inner cavity of the second trapezoidal platform. By setting the first trapezoidal platform and the second trapezoidal platform, the advantage of adjustable length of the anti-bird device is realized. The first trapezoidal platform can be inserted into the second trapezoidal platform, and a reliable connection and length adjustment are achieved through an interference fit. A length fixing screw is provided to fix the length after adjustment. It is fixed on the cross-arm angle iron through a "plus" shaped bracket, meeting the use of cross-arms of various types of lines and achieving the purpose of preventing birds from building nests on transmission and distribution lines; In the above technology, it is fixed on the cross-arm angle iron through a "plus" shaped bracket, meeting the use of cross-arms of various types of lines. However, when the "plus" shaped bracket is installed on the cross-arm angle iron, manual screwing of the fixing bolts is required to achieve fixation. During high-altitude operations, one hand holds the "plus" shaped bracket and the other hand screws the bolts. For operators, safety is lacking protection, and screwing the bolts takes a certain amount of time, resulting in slow installation efficiency. Summary of the Invention

[0003] The purpose of the present invention is to provide a multifunctional anti-bird device for distribution lines to solve the problems raised in the above background art.

[0004] To achieve the above purpose, the present invention provides the following technical solutions: A multifunctional anti-bird device for distribution lines, comprising: A trapezoidal platform, a rotating shaft is rotatably provided at the upper end of the trapezoidal platform, and a shock component is connected to the lower end of the rotating shaft for shocking the trapezoidal platform. The shock component includes an extension rod; An electric shock component, installed on the upper surface of the trapezoidal platform. The electric shock component includes an electric shock plate, and an electrode column is installed at a position of the trapezoidal platform corresponding to the electric shock plate; A fixed assembly is installed at the lower end of the trapezoidal table, which comprises a fixed plate, the inside of which is provided with a clamping assembly comprising a clamping block.

[0005] Further, the fixed plate is in a "D" type structure, and a first receiving groove is formed in one side of the inside of the fixed plate, and a pressing block is inserted into the first receiving groove. A hole is formed in the position corresponding to the pressing block at the lower end of the fixed plate, the hole penetrates through the lower end plate of the fixed plate, and a pull rod is inserted into the hole, a first return spring is arranged between the pull rod and the lower end of the fixed plate, and a fixed groove is formed in the position corresponding to the end of the pull rod at the lower end of the pressing block.

[0006] Further, a second receiving groove is formed in the top end of the inside of the fixed plate, a clamping block is inserted into the second receiving groove, and a plurality of groups of fourth return springs are arranged between the upper end of the clamping block and the top end of the inside of the second receiving groove.

[0007] Further, a second air bag is arranged between the upper end of the clamping block and the top end of the inside of the second receiving groove. A first air bag is arranged between the end of the pressing block and the inner side wall of the first receiving groove, and a first exhaust pipe is formed between the first air bag and the second air bag. A gas storage cavity is formed in the position corresponding to the first exhaust pipe in the inside of the fixed plate, a sealing plate is slidably arranged in the inside of the gas storage cavity, a third return spring is arranged between the side wall of the sealing plate and the inner wall of the gas storage cavity, and the elastic force of the third return spring is greater than that of the second return spring. A second exhaust pipe is formed between the gas storage cavity and the first exhaust pipe.

[0008] Further, a fourth receiving groove is formed in the position close to one end of the opening of the fixed plate at the lower end of the clamping block, and a limiting block is elastically rotatably arranged in the inside of the fourth receiving groove. A fifth receiving groove is formed in the inner side wall of the fourth receiving groove, a plug is inserted into the fifth receiving groove, and a fifth return spring is arranged between the end of the plug and the inner side wall of the fifth receiving groove. A third receiving groove is formed in the position close to the pressing block at the lower end of the clamping block, a resisting block is inserted into the third receiving groove, a through hole is formed between the third receiving groove and the fifth receiving groove, a pull rope is arranged in the through hole, and the two ends of the pull rope are respectively connected to the end of the plug and the side wall of the resisting block.

[0009] Further, the upper end of the trapezoidal table is rotationally provided with a connecting rod, the rotating shaft is connected with the upper end of the connecting rod, and the upper end of the rotating shaft is connected with a plurality of circumferentially distributed wind direction plates; The lower end of the connecting rod is connected with a plurality of circumferentially distributed extension rods, the upper end of each extension rod is provided with a placing groove, each placing groove is insertedly provided with a percussion block, and a sixth reset spring is arranged between the lower end of each percussion block and the inner bottom end of the corresponding placing groove.

[0010] Further, the upper end of the trapezoidal table is rotationally provided with a connecting rod, the rotating shaft is connected with the upper end of the connecting rod, and the upper end of the rotating shaft is connected with a plurality of circumferentially distributed wind direction plates;

[0011] Further, the upper surface of the trapezoidal table is provided with a groove, and an electric shock plate is elastically arranged in the groove; A sharp is arranged at the inner bottom end of the groove corresponding to the position of each through groove; The electrode column is arranged at the inner bottom end of the groove corresponding to the position of the electric shock plate.

[0012] Further, the two side walls of the trapezoidal table are provided with a sink, and a photovoltaic panel is arranged in each sink; The photovoltaic panel is connected with a power storage device, and the power storage device is electrically connected with the electrode column.

[0013] Further, a motor is arranged at one end of the trapezoidal table, and the motor is electrically connected with the power storage device; A transmission shaft is rotationally arranged in the trapezoidal table corresponding to the position of the motor, and the end of the transmission shaft is connected with the output end of the motor; A second connecting plate is screwed on the transmission shaft, and a through groove is formed in the side wall of the trapezoidal table corresponding to the end position of the second connecting plate; A first connecting plate is arranged in the trapezoidal table corresponding to the position of the photovoltaic panel, one end of the first connecting plate passes through the through groove and is connected with the end of the second connecting plate; A seventh storage groove is formed in the side wall of the first connecting plate close to the photovoltaic panel, a cleaning plate is arranged in the seventh storage groove, and a plurality of seventh reset springs are arranged between the end of the cleaning plate and the inner top end of the seventh storage groove.

[0014] Compared with the prior art, the present application has the following advantages: 1. The present application is fixed to the bird repelling device by the fixed plate, when fixing, the fixed plate is clamped into the outside of the angle iron on the power distribution circuit, the angle iron bears the extrusion block, the extrusion block compresses the first air bag, the gas in the first air bag is discharged to the inside of the second air bag, the second air bag expands and clamps the angle iron, at the same time, when contacting the angle iron, the angle iron extrudes the bearing block, the bearing block drives the plug block to move out from the inside of the clamping groove through the pull rope, at this time, the limit block arranged elastically rotates and pops out, preventing the fixed plate from being separated from the angle iron, without screwing the bolt, the fixed plate can be fixed by moving towards the angle iron; 2. The wind direction plate is rotated by wind, and then the extension rod is rotated through the rotating shaft, when rotating, the elastic shock block is in contact with the fixed block, the shock block is pressed down and then the shock block is popped out by the sixth reset spring to hit the top end inside the trapezoidal table, so that the trapezoidal table makes sound, realizing bird repelling; 3. Photovoltaic power generation is carried out through the photovoltaic panel, the generated electricity is delivered to the motor, the motor drives the first connecting plate to move along the surface of the photovoltaic panel, the surface of the photovoltaic panel is cleaned, preventing bird droppings or dust from falling on the surface of the photovoltaic panel and affecting the photovoltaic panel, at the same time, the generated electricity is delivered to the electrode column, when the bird falls on the electric shock plate, the electric shock plate falls due to the increase of gravity, the sharp spikes extend and stab at the bird, realizing bird repelling, at the same time, the electrode column contacts the electric shock plate, and the bird is electrocuted. DRAWINGS

[0015] Figure 1 It is a schematic diagram of the three-dimensional structure of the present application; Figure 2 It is a schematic diagram of the side of the three-dimensional structure of the present application; Figure 3 It is a schematic diagram of the cross section of the three-dimensional structure of the present application; Figure 4 It is Figure 3 the enlarged schematic diagram of the structure at A in the middle; Figure 5 It is Figure 3 the enlarged schematic diagram of the structure at B in the middle; Figure 6 It is a schematic diagram of the cross section of the trapezoidal table structure part of the present application; Figure 7 It is Figure 6 the enlarged schematic diagram of the structure at C in the middle.

[0016] In the diagram: 1. Trapezoidal platform; 2. Photovoltaic panel; 3. First connecting plate; 4. Fixing plate; 5. Electric shock plate; 6. Spike; 7. Rotating shaft; 8. Wind vane; 9. Motor; 10. Extrusion block; 11. Through groove; 12. Second connecting plate; 13. Settling groove; 14. Drive shaft; 15. Connecting rod; 16. First storage groove; 18. Fixing groove; 19. Pull rod; 20. First return spring; 21. First airbag; 22. Second return spring; 23. First exhaust pipe; 24. Second exhaust pipe; 25. Air storage chamber; 26. Sealing plate; 3. Third return spring. Spring 27, second airbag 28, second storage slot 29, fourth reset spring 30, third storage slot 31, support block 32, through hole 33, pull rope 34, clamping block 35, fourth storage slot 36, limiting block 37, slot 38, fifth storage slot 39, fifth reset spring 40, insertion block 41, through slot 42, electrode post 43, extension rod 44, sixth reset spring 45, shock block 46, fixing block 47, seventh storage slot 48, seventh reset spring 49, cleaning plate 50. Detailed Implementation

[0017] To more clearly illustrate the overall concept of the present invention, a detailed description will be provided below with reference to the accompanying drawings and examples.

[0018] Example 1: Please see Figures 1 to 7 The present invention provides a technical solution: a multifunctional bird-proof device for power distribution lines, including a trapezoidal platform 1, a rotating shaft 7 rotatably disposed at the upper end of the trapezoidal platform 1, and a shocking component connected to the lower end of the rotating shaft 7 for shocking the trapezoidal platform 1, the shocking component including an extension rod 44; An electric shock assembly is installed on the upper surface of the trapezoidal platform 1. The electric shock assembly includes an electric shock plate 5, and an electrode post 43 is installed on the trapezoidal platform 1 at a position corresponding to the electric shock plate 5. A fixing component is installed at the lower end of the trapezoidal platform 1. The fixing component includes a fixing plate 4, and a clamping component is provided inside the fixing plate 4. The clamping component includes a clamping block 35. The trapezoidal platform 1 is fixed to the angle iron by the cooperation of the internal clamping components of the fixing component. Then, the rotating shaft 7 is rotated by wind power, which causes the shock component to shock the trapezoidal platform 1. The sound generated drives away the birds. At the same time, the shock component can also shock the birds standing on the trapezoidal platform 1.

[0019] Example 2: like Figures 2-5 As shown, the multifunctional bird-proof device for power distribution lines disclosed in Embodiment 2 of the present invention has a structure that is basically the same as that in Embodiment 1, except that: The fixed plate 4 is in a "H" type structure, and a first receiving groove 16 is formed on one side of the inner part of the fixed plate 4, and a pressing block 10 is inserted into the first receiving groove 16, and a second reset spring 22 is arranged between the end of the pressing block 10 and the inner side wall of the first receiving groove 16; A hole is formed on the position corresponding to the pressing block 10 of the lower end of the fixed plate 4, the hole penetrates the lower end plate of the fixed plate 4, and a pull rod 19 is inserted into the hole, a first reset spring 20 is arranged between the pull rod 19 and the lower end of the fixed plate 4, and a fixed groove 18 is formed on the lower end of the pressing block 10 corresponding to the position of the end of the pull rod 19; A second receiving groove 29 is formed on the inner top end of the fixed plate 4, a clamping block 35 is inserted into the second receiving groove 29, and a plurality of groups of fourth reset springs 30 are arranged at intervals between the upper end of the clamping block 35 and the inner top end of the second receiving groove 29; A second air bag 28 is arranged between the upper end of the clamping block 35 and the inner top end of the second receiving groove 29; A first air bag 21 is arranged between the end of the pressing block 10 and the inner side wall of the first receiving groove 16, and a first exhaust pipe 23 is formed between the first air bag 21 and the second air bag 28; A gas storage cavity 25 is formed on the position corresponding to the first exhaust pipe 23 of the inner part of the fixed plate 4, a sealing plate 26 is slidably arranged in the gas storage cavity 25, a third reset spring 27 is arranged between the side wall of the sealing plate 26 and the inner wall of the gas storage cavity 25, and the elastic force of the third reset spring 27 is greater than that of the second reset spring 22; A second exhaust pipe 24 is formed between the gas storage cavity 25 and the first exhaust pipe 23; A fourth receiving groove 36 is formed on the end of the clamping block 35 close to the opening of the fixed plate 4, and a limiting block 37 is elastically rotatably arranged in the fourth receiving groove 36; A fifth receiving groove 39 is formed on the inner side wall of the fourth receiving groove 36, and a plug 41 is inserted into the fifth receiving groove 39, and a fifth reset spring 40 is arranged between the end of the plug 41 and the inner side wall of the fifth receiving groove 39; A third receiving groove 31 is formed on the position of the lower end of the clamping block 35 close to the pressing block 10, a resisting block 32 is inserted into the third receiving groove 31, a through hole 33 is formed between the third receiving groove 31 and the fifth receiving groove 39, a pull rope 34 is arranged in the through hole 33, and the two ends of the pull rope 34 are respectively connected with the end of the plug 41 and the side wall of the resisting block 32; The bird deterrent device is fixed by the fixing plate 4. During fixing, the fixing plate 4 is snapped into the outside of the angle iron on the power distribution line. The angle iron abuts against the compression block 10. The compression block 10 compresses the first airbag 21. The gas inside the first airbag 21 is discharged into the second airbag 28. The second airbag 28 expands and clamps the angle iron. At the same time, when it contacts the angle iron, the angle iron presses against the holding block 32. The holding block 32 drives the insert block 41 to move out of the slot 38 through the pull rope 34. At this time, the elastically set limit block 37 rotates and pops out to prevent the fixing plate 4 from falling off the angle iron. There is no need to tighten the bolts. The fixing can be achieved by pushing the fixing plate 4 toward the angle iron.

[0020] Example 3: like Figures 1-3 As shown, the multifunctional bird-proof device for power distribution lines disclosed in Embodiment 3 of the present invention has a structure that is basically the same as that in Embodiment 2, except that: The upper end of the trapezoidal platform 1 is rotatably provided with a connecting rod 15, the rotating shaft 7 is connected to the upper end of the connecting rod 15, and the upper end of the rotating shaft 7 is connected to a plurality of wind vanes 8 arranged in a circular pattern. The lower end of the connecting rod 15 is connected to a plurality of circumferentially distributed extension rods 44. Each extension rod 44 has a placement groove at its upper end. Each placement groove is fitted with a shock block 46. A sixth return spring 45 is provided between the lower end of each shock block 46 and the bottom end of the corresponding placement groove. The upper end of the shock block 46 has two side walls that are inclined. The top of the trapezoidal platform 1 has multiple sets of circumferentially distributed fixing blocks 47 installed at the position of the shock block 46. The wind-driven wind vane 8 rotates, which in turn drives the extension rod 44 to rotate via the shaft 7. During rotation, the elastically set shock block 46 continuously contacts the fixed block 47. The shock block 46 is pressed down and then ejected by the sixth reset spring 45 to strike the top of the trapezoidal platform 1, causing the trapezoidal platform 1 to make a sound, thus repelling birds.

[0021] Example 4: like Figures 1-3 As shown, the multifunctional bird-proof device for power distribution lines disclosed in Embodiment 4 of the present invention has a structure that is basically the same as that in Embodiment 3, except that: The upper surface of the trapezoidal platform 1 is provided with a groove, and an electric shock plate 5 is elastically arranged inside the groove. The electric shock plate 5 is provided with multiple sets of evenly spaced through slots 42. A spike 6 is installed at the bottom of the groove corresponding to the position of each of the through slots 42; The electrode post 43 is installed at the bottom end of the groove, corresponding to the position of the electric shock plate 5. The trapezoidal table 1 is provided with a sinking groove 13 on each side wall, and a photovoltaic panel 2 is installed in each sinking groove 13, and the photovoltaic panel 2 is connected with an electricity storage device, and the electricity storage device is electrically connected with an electrode column 43; The photovoltaic panel 2 is used for photovoltaic power generation, and the generated electricity is transmitted to the electrode column 43; when a bird lands on the electric shock plate 5, the electric shock plate 5 falls due to the increase of gravity, the sharp spike 6 extends and stings the bird, and the bird is driven away; meanwhile, the electrode column 43 contacts the electric shock plate 5, and the bird is electrocuted.

[0022] Embodiment five: As Figures 2-3 shown, the multifunctional power distribution line bird prevention device disclosed in the embodiment five of the present application has basically the same structure as that in the embodiment four, and the difference lies in that: One end of the trapezoidal table 1 is provided with a motor 9, and the motor 9 is electrically connected with the electricity storage device; A transmission shaft 14 is rotatably arranged in the trapezoidal table 1 at a position corresponding to the motor 9, and an end of the transmission shaft 14 is connected with an output end of the motor 9; A second connecting plate 12 is screwed on the transmission shaft 14, and a through groove 11 is formed in the side wall of the trapezoidal table 1 at a position corresponding to an end of the second connecting plate 12; A first connecting plate 3 is arranged in the trapezoidal table 1 at a position corresponding to the photovoltaic panel 2, and one end of the first connecting plate 3 penetrates through the through groove 11 and is connected with the end of the second connecting plate 12; A seventh storage groove 48 is formed in a side wall of the first connecting plate 3 close to the photovoltaic panel 2, a cleaning plate 50 is arranged in the seventh storage groove 48, and a plurality of groups of seventh return springs 49 are arranged between an end of the cleaning plate 50 and an inner top end of the seventh storage groove 48; The photovoltaic panel 2 is used for photovoltaic power generation, and the generated electricity is transmitted to the motor 9; the motor 9 drives the first connecting plate 3 to move along the surface of the photovoltaic panel 2, and the surface of the photovoltaic panel 2 is cleaned, so that the bird droppings or dust is prevented from falling on the surface of the photovoltaic panel 2 and affecting the power generation of the photovoltaic panel 2.

[0023] The specific implementation of the scheme is that the fixed plate 4 is clamped into the outside of the angle iron on the power distribution line, the angle iron abuts against the extrusion block 10, the extrusion block 10 compresses the first air bag 21, the gas in the first air bag 21 is discharged into the inside of the second air bag 28, the second air bag 28 expands and clamps the angle iron, at the same time, when the angle iron is contacted, the angle iron extrudes the abutting block 32, the abutting block 32 drives the plug-in block 41 to move out from the inside of the clamping groove 38 through the pull rope 34, at this time, the limit block 37 which is elastically arranged rotates and pops out, and the fixed plate 4 is prevented from being separated from the angle iron; The wind drives the wind direction plate 8 to rotate, and then drives the extension rod 44 to rotate through the rotating shaft 7. When rotating, the elastically arranged percussion block 46 is in constant contact with the fixed block 47. The percussion block 46 is pressed down and then pops out to hit the top end inside the trapezoidal table 1 through the sixth reset spring 45, so that the trapezoidal table 1 makes a sound, realizes bird repelling, and at the same time, photovoltaic power generation is carried out through the photovoltaic panel 2. The generated electricity is delivered to the motor 9, and the motor 9 drives the first connecting plate 3 to move along the surface of the photovoltaic panel 2, so as to clean the surface of the photovoltaic panel 2, prevent bird droppings or dust from falling on the surface of the photovoltaic panel 2, and affect the power generation of the photovoltaic panel 2. At the same time, the generated electricity is delivered to the electrode column 43. When the bird falls on the electric shock plate 5, the electric shock plate 5 falls due to the increase of gravity, the sharp spike 6 extends and stings the bird, and the bird is repelled. At the same time, the electrode column 43 is in contact with the electric shock plate 5 to electrocute the bird.

[0024] The present application is intended to encompass all such alternatives, modifications and variations falling within the broad scope of the appended claims. Accordingly, any and all such omissions, modifications, equivalents, improvements and the like are intended to be included within the scope of the present application.

Claims

1. A multi-functional bird prevention device for power distribution lines, characterized in that, Include: Trapezoidal table (1), the upper end of the trapezoidal table (1) is rotatably provided with a rotating shaft (7), the lower end of the rotating shaft (7) is connected with a shock assembly for shocking the trapezoidal table (1), the shock assembly comprises an extension rod (44); Electric shock assembly installed on the upper surface of the trapezoidal table (1), the electric shock assembly comprises an electric shock plate (5), the trapezoidal table (1) is installed with an electrode column (43) corresponding to the position of the electric shock plate (5); The fixing assembly is installed at the lower end of the trapezoidal table (1), the fixing assembly comprises a fixed plate (4), the inside of the fixed plate (4) is provided with a clamping assembly, the clamping assembly comprises a clamping block (35).

2. The multi-functional power distribution line bird prevention device according to claim 1, wherein, The fixed plate (4) is in "Fang" type structure, and a first receiving groove (16) is formed in one side of the inside of the fixed plate (4), the first receiving groove (16) is inserted with an extrusion block (10), and a second reset spring (22) is arranged between one end of the extrusion block (10) and the inner side wall of the first receiving groove (16); A hole is formed in the lower end of the fixed plate (4) corresponding to the position of the extrusion block (10), the hole penetrates the lower end plate of the fixed plate (4), and a pull rod (19) is inserted in the hole, a first reset spring (20) is arranged between the pull rod (19) and the lower end of the fixed plate (4), and a fixing groove (18) is formed in the lower end of the extrusion block (10) corresponding to the position of the end of the pull rod (19).

3. The multi-functional power distribution line bird prevention device according to claim 2, wherein, A second receiving groove (29) is formed in the top end of the inside of the fixed plate (4), the second receiving groove (29) is inserted with a clamping block (35), and a plurality of groups of fourth reset springs (30) are arranged between the upper end of the clamping block (35) and the top end of the inside of the second receiving groove (29).

4. The multi-functional power distribution line bird prevention device according to claim 3, wherein, A second air bag (28) is arranged between the upper end of the clamping block (35) and the top end of the inside of the second receiving groove (29); A first air bag (21) is arranged between the end of the extrusion block (10) and the inner side wall of the first receiving groove (16), and a first exhaust pipe (23) is formed between the first air bag (21) and the second air bag (28); A gas storage cavity (25) is formed in the inside of the fixed plate (4) corresponding to the position of the first exhaust pipe (23), a sealing plate (26) is slidably arranged in the inside of the gas storage cavity (25), a third reset spring (27) is arranged between one side wall of the sealing plate (26) and the inner wall of the gas storage cavity (25), and the elastic force of the third reset spring (27) is greater than that of the second reset spring (22); A second exhaust pipe (24) is formed between the gas storage cavity (25) and the first exhaust pipe (23).

5. The multi-functional power distribution line bird prevention device according to claim 4, wherein, A fourth receiving groove (36) is formed in one end of the opening of the fixed plate (4) near the lower end of the clamping block (35), and a limiting block (37) is elastically rotatably arranged in the inside of the fourth receiving groove (36). The inner side wall of the fourth receiving groove (36) is provided with a fifth receiving groove (39), the fifth receiving groove (39) is provided with a plug (41) inside, and the fifth reset spring (40) is arranged between the end of the plug (41) and the inner side wall of the fifth receiving groove (39); The lower end of the clamping block (35) is provided with a third receiving groove (31) near the position of the extrusion block (10), the third receiving groove (31) is provided with a resisting block (32) inside, and a through hole (33) is arranged between the third receiving groove (31) and the fifth receiving groove (39), the through hole (33) is provided with a pull rope (34), and the two ends of the pull rope (34) are connected with the end of the plug (41) and the side wall of the resisting block (32) respectively.

6. The multi-functional power distribution line bird prevention device according to claim 5, wherein, The upper end of the trapezoidal table (1) is rotatably provided with a connecting rod (15), the rotating shaft (7) is connected with the upper end of the connecting rod (15), and a plurality of circumferentially distributed wind direction plates (8) are connected with the upper end of the rotating shaft (7). The lower end of the connecting rod (15) is connected with a plurality of circumferentially distributed extension rods (44), the upper end of each extension rod (44) is provided with a placing groove, each placing groove is provided with a shock block (46), and the lower end of each shock block (46) and the bottom end of the corresponding placing groove are provided with a sixth reset spring (45).

7. The multi-functional power distribution line bird prevention device according to claim 6, wherein, The upper end of the shock block (46) is provided with inclined side walls, and the inner top of the trapezoidal table (1) is provided with a plurality of circumferentially distributed fixing blocks (47) corresponding to the position of the shock block (46).

8. The multi-functional power distribution line bird prevention device according to claim 7, wherein, The upper surface of the trapezoidal table (1) is provided with a recess, and the recess is elastically provided with a shock plate (5), and the shock plate (5) is provided with a plurality of uniformly spaced through grooves (42). The inner bottom of the recess is provided with a sharp (6) corresponding to the position of each through groove (42). The electrode column (43) is installed at the inner bottom of the recess corresponding to the position of the shock plate (5).

9. The multi-functional power distribution line bird device of claim 8, wherein, Both sides of the trapezoidal table (1) are provided with a sunken groove (13), and each sunken groove (13) is provided with a photovoltaic panel (2), and the photovoltaic panel (2) is connected with a power storage device, and the power storage device is electrically connected with the electrode column (43).

10. The multi-functional power distribution line bird device of claim 9, wherein, One end of the trapezoidal table (1) is provided with a motor (9), and the motor (9) is electrically connected with the power storage device. The inner top of the trapezoidal table (1) is rotatably provided with a transmission shaft (14) corresponding to the position of the motor (9), and the end of the transmission shaft (14) is connected with the output end of the motor (9). The transmission shaft (14) is screwed with a second connecting plate (12), and the side wall of the trapezoidal table (1) is provided with a through groove (11) corresponding to the end position of the second connecting plate (12). The trapezoidal table (1) is provided with a first connecting plate (3) corresponding to the position of the photovoltaic panel (2), one end of the first connecting plate (3) penetrates through the through groove (11) and is connected with the end of the second connecting plate (12). The first connecting plate (3) is provided with a seventh receiving groove (48) near the side wall of one side of the photovoltaic panel (2), the inside of the seventh receiving groove (48) is provided with a cleaning plate (50), and a plurality of groups of seventh reset springs (49) are arranged at intervals between the end of the cleaning plate (50) and the inside top end of the seventh receiving groove (48).

Citation Information

Patent Citations

  • Novel length-adjustable power transmission and distribution line anti-bird device

    CN213819553U