CN115591846B - Auxiliary device for power distribution network maintenance - Google Patents

Auxiliary device for power distribution network maintenance Download PDF

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Publication number
CN115591846B
CN115591846B CN202211355420.2A CN202211355420A CN115591846B CN 115591846 B CN115591846 B CN 115591846B CN 202211355420 A CN202211355420 A CN 202211355420A CN 115591846 B CN115591846 B CN 115591846B
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CN
China
Prior art keywords
sliding
plate
rigid coupling
driving piece
distribution network
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CN202211355420.2A
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Chinese (zh)
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CN115591846A (en
Inventor
王成亮
葛永高
朱足君
包正君
王宁
高明亮
王伏亮
宁艳
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Jiangsu Fangtian Power Technology Co Ltd
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Jiangsu Fangtian Power Technology Co Ltd
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Application filed by Jiangsu Fangtian Power Technology Co Ltd filed Critical Jiangsu Fangtian Power Technology Co Ltd
Priority to CN202211355420.2A priority Critical patent/CN115591846B/en
Publication of CN115591846A publication Critical patent/CN115591846A/en
Application granted granted Critical
Publication of CN115591846B publication Critical patent/CN115591846B/en
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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B08CLEANING
    • B08BCLEANING IN GENERAL; PREVENTION OF FOULING IN GENERAL
    • B08B3/00Cleaning by methods involving the use or presence of liquid or steam
    • B08B3/02Cleaning by the force of jets or sprays
    • B08B3/024Cleaning by means of spray elements moving over the surface to be cleaned
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B08CLEANING
    • B08BCLEANING IN GENERAL; PREVENTION OF FOULING IN GENERAL
    • B08B13/00Accessories or details of general applicability for machines or apparatus for cleaning

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  • Insulators (AREA)
  • Cleaning By Liquid Or Steam (AREA)

Abstract

The application relates to the technical field of power distribution network maintenance, in particular to an auxiliary device for power distribution network maintenance. The utility model provides an auxiliary device for distribution network maintenance, including the guide arm, the equal rigid coupling in both ends of guide arm has the mounting bracket, rotates between the adjacent mounting bracket to be connected with reciprocating screw, reciprocating screw threaded connection have with guide arm sliding connection's movable plate, the movable plate top rigid coupling has the mount, mount symmetry sliding connection has the carriage, the rigid coupling has the mounting panel in the carriage, mounting panel sliding connection has the slider, the slider rotates and is connected with the rotation cover, the rigid coupling has the first spray tube that is used for cleaing away the channel-section steel dust in the rotation cover. According to the application, the first spray pipe moves along the inner wall of the channel steel in the process of swinging from top to bottom to clean, and the insulating cleaning liquid in the channel steel is outwards brought out in the outwards moving process, so that the channel steel is cleaned in all directions, dust on the channel steel is outwards driven by spraying the insulating cleaning liquid in the second spray pipe, and the dust residue on the channel steel is avoided.

Description

Auxiliary device for power distribution network maintenance
Technical Field
The application relates to the technical field of power distribution network maintenance, in particular to an auxiliary device for power distribution network maintenance.
Background
The distribution network comprises overhead line, cable, shaft tower, distribution transformer and some appurtenances etc. its distribution transformer can produce a large amount of heat in the course of the work, and current distribution transformer gives off the heat through oneself more, and the dust in the air can adhere to the outside of distribution transformer and can influence radiating efficiency, need clear away distribution transformer's dust.
The mode that current many pass through wind-force and insulating water washes carries out dust clearance to dry-type transformer, and its outside cover in work of most dry-type transformer has the box, and can not take off it when wasing through insulating water, can lead to dry-type transformer's washing space limited, and dry-type transformer's wire and insulator can bring inconvenience for the washing of channel-section steel and insulator, cause many dead angles clearance of dry-type transformer incomplete, along with dust accumulation increases, can influence distribution transformer heat dissipation, still will lead to transformer insulation to reduce and cause insulation breakdown even.
Disclosure of Invention
Based on the technical problems in the background art, the application provides an auxiliary device for power distribution network maintenance.
The utility model provides an auxiliary device for distribution network maintenance, including the guide arm, the equal rigid coupling in both ends of guide arm has the mounting bracket, rotate between the adjacent mounting bracket and be connected with reciprocating screw, the mounting bracket is provided with the first driving piece of drive reciprocating screw pivoted through the mount pad, reciprocating screw threaded connection has the fly leaf with guide arm sliding connection, the rigid coupling has the mount at fly leaf top, mount symmetry sliding connection has the carriage, the rigid coupling has the mounting panel in the carriage, mounting panel sliding connection has the slider, the slider rotates and is connected with the rotation cover, the rigid coupling has the first spray tube that is used for cleaing away the channel-section steel dust in the rotation cover, the second driving piece is installed to the fly leaf, mount upper portion symmetry is provided with the leading wheel, the tensioning subassembly is installed to the mount symmetry, adjacent leading wheel is located the tensioning subassembly inboard of symmetry setting, the carriage rotates and is connected with the axostylus axostyle, leading wheel, through band pulley and belt drive between tensioning subassembly and the second driving piece output shaft, the axostylus axostyle rigid coupling has the swinging plate, the swinging plate rotates and is connected with the sliding cover that cup joints with first straight-tube, the carriage rigid coupling has, the first channel-section steel that is provided with in the carriage, the bottom the carriage is used for the carriage to reciprocate, the inner wall that moves in the swing process, the first spray tube is swung.
As a further preferable scheme, the transmission assembly comprises symmetrically arranged connecting frames, the connecting frames are fixedly connected to the bottom of the movable plate, connecting shafts are symmetrically connected in a rotating mode through adjacent connecting frames, first gears meshed with adjacent first straight racks are mounted at two ends of each connecting shaft, third driving pieces for driving the connecting shafts to rotate are arranged on the connecting frames through mounting seats, second gears meshed with the first gears are connected in a rotating mode, and belt wheels and belts are used for driving the second gears.
As a further preferable scheme, one side connecting frame is connected with a guide frame in a sliding way, the guide frame is rotationally connected with a rotating frame, the rotating frame is fixedly connected with a second spray pipe, the guide frame is fixedly connected with a sliding frame, the other side connecting frame is rotationally connected with a rotating shaft, the rotating shaft is driven by an output shaft of a second driving piece through a belt wheel and a belt, the rotating shaft is fixedly connected with a rotating plate, and the rotating plate is fixedly connected with a pin rod in sliding fit with the sliding frame.
As a further preferable scheme, the adjacent connecting frames are symmetrically and fixedly connected with positioning rods for pushing the second spray pipe to swing.
As a further preferable scheme, elastic clamping rods are symmetrically and fixedly connected in the guide frame, and the rotating frame is provided with limiting clamping grooves in sliding fit with the elastic clamping rods.
As a further preferable scheme, the insulator cleaning device further comprises a support, wherein the support is fixedly connected to the top of the fixing frame, the support is symmetrically and slidably connected with a second straight rack, the support is provided with a fourth driving piece, an output shaft of the fourth driving piece is provided with a transmission gear meshed with the second straight rack, the second straight rack is symmetrically and fixedly connected with a vertical support plate, the adjacent vertical support plate is slidably connected with a sliding plate, the second straight rack is provided with a fifth driving piece fixedly connected with the sliding plate through a mounting seat, the sliding plate is provided with a sixth driving piece, the sliding plate is provided with an opening assembly, and the opening assembly is provided with a moving assembly for cleaning the insulator.
As a further preferable scheme, open the subassembly including the pivot that the symmetry set up, the pivot rotates to be connected in the sliding plate bottom, and the pivot rigid coupling of sixth driving piece and one side, the third gear is all installed at the both ends of pivot, and adjacent third gear meshes mutually, and the equal symmetry in sliding plate bottom both sides is rotated and is connected with a set of fan gear with adjacent third gear meshing, and the fan gear in a set of is the symmetric distribution, and the fan gear rigid coupling has the arc, and the arc is provided with the arc.
As a further preferable scheme, the cleaning assembly comprises sliding blocks, the sliding blocks are arranged in the arc-shaped grooves in a sliding mode, cleaning pieces used for cleaning dust of insulators are connected between the sliding blocks which are arranged in a sliding mode in a opposite mode, one of a group of sliding blocks is fixedly connected with an arc-shaped rack, adjacent arc-shaped racks are arranged in a opposite mode, a seventh driving piece is arranged on the lower portion of each arc-shaped plate, and a fourth gear meshed with the arc-shaped rack is arranged on an output shaft of each seventh driving piece.
As a further preferred embodiment, the shape of the cleaning member is adapted to the outer shape of the insulator.
As a further preferable scheme, the cleaning pieces are equidistantly provided with water spraying holes, and when the cleaning pieces are positioned at the uppermost side, the water spraying holes face the uppermost edge of the insulator.
The beneficial effects of the application are as follows:
according to the application, in the process of swinging the first spray pipe from top to bottom, the first spray pipe can move along the inner wall of the channel steel for cleaning, and in addition, the insulating cleaning liquid in the channel steel can be outwards brought out in the outwards moving process, so that the channel steel is cleaned in all directions, dust on the channel steel can be outwards driven by spraying the insulating cleaning liquid in the second spray pipe, and the dust residue on the channel steel is avoided.
In the process of cleaning the insulator by the cleaning piece, insulating cleaning liquid sprayed out of the water spraying holes on the cleaning piece is downwards inclined water flow, and meanwhile impurities on the surface of the insulator and the insulating cleaning liquid are driven downwards, so that residual impurities on the surface of the insulator are prevented, a round shape is formed by moving the cleaning pieces on the left side and the right side, and the insulator is cleaned in all directions.
Drawings
Fig. 1 is a perspective view of the present application.
Fig. 2 is a schematic perspective view of the present application.
Fig. 3 is a schematic perspective view of a cleaning part of the channel steel of the present application.
Fig. 4 is an enlarged perspective view of the present application.
Fig. 5 is a schematic cross-sectional perspective view of the present application.
Fig. 6 is a schematic view of the three-dimensional structure of the positioning rod and the guide frame of the present application.
Fig. 7 is a schematic perspective view of a turret, a second nozzle and a sliding frame according to the present application.
Fig. 8 is a schematic perspective view of an insulator cleaning part according to the present application.
Fig. 9 is a schematic perspective view of a cleaning member according to the present application.
Fig. 10 is a schematic view of a B-enlarged perspective structure of the present application.
Reference numerals illustrate: the device comprises a first guide rod, a second mounting frame, a first driving piece 3, a reciprocating screw rod 4, a second moving plate 5, a first fixing frame 6, a first sliding frame 7, a second mounting plate 8, a second rotating sleeve 9, a first spray pipe 10, a second driving piece 11, a guide wheel 12, a tensioning component 13, a third driving piece 131, a shaft rod 132, a swinging plate 132, a first straight rack 14, a first fan gear 15, a connecting frame 16, a first gear 17, a third driving piece 18, a second gear 19, a positioning rod 20, a guide frame 21, a rotating frame 22, a second spray pipe 22, a second sliding frame 23, a rotating shaft 24, a rotating plate 25, a rotating plate 26, an elastic clamping rod 29, a bracket 30, a second straight rack 31, a fourth driving piece 32, a transmission gear 33, a vertical supporting plate 34, a fifth driving piece 35, a sixth driving piece 36, a rotating shaft 37, a third gear 38, a fan gear 39, a fourth arc-shaped groove 40, an arc-shaped groove 42, a sliding block 43, a cleaning piece 44, a seventh arc-shaped gear 45, a fourth driving piece 46 and an arc-shaped plate 47.
Detailed Description
The following describes the technical scheme with reference to specific embodiments, and it should be noted that: terms indicating orientations, such as up, down, left, right, etc., are used herein only with respect to the position of the illustrated structure in the corresponding drawings. The parts themselves are numbered herein, for example: first, second, etc. are used solely to distinguish between the described objects and do not have any sequential or technical meaning. The application is as follows: connection, coupling, unless specifically stated otherwise, includes both direct and indirect connection (coupling).
Example 1
The utility model provides an auxiliary device for distribution network maintenance, as shown in fig. 1-7, including guide arm 1, guide arm 1 left and right both ends all rigid coupling has mounting bracket 2, rotate between the adjacent mounting bracket 2 of control and be connected with reciprocating screw 4, reciprocating screw 4 is located the front side of guide arm 1, left mounting bracket 2 has first driving piece 3 with reciprocating screw 4 left end rigid coupling through mount pad bolted connection, reciprocating screw 4 threaded connection has the movable plate 5 with guide arm 1 sliding connection, the left part rigid coupling of movable plate 5 upper surface has mount 6, the front and back two equal sliding connection of mount 6 has slide frame 7, the lower part rigid coupling has mounting panel 8 in the slide frame 7, mounting panel 8 sliding connection has the slider, the slider rotates and is connected with swivel 9, the rigid coupling has the first spray tube 10 that is used for cleaing away channel-section steel dust in the swivel 9, the second driving piece 11 is installed to the movable plate 5, the top symmetry is provided with leading wheel 12 and tensioning assembly 13 in the mount 6, the tensioning assembly 13 inboard of symmetry setting, the lower part rotation is connected with axostylus axostyle 131 in the slide frame 7, leading wheel 131, leading wheel 12, leading wheel 13 and second driving piece 13 have the swing drive plate 13, the rigid coupling has the output shaft assembly through the first driving piece 13, the swing joint has the upper and second driving piece 13, the swing drive plate 132 has the first driving piece 132, the swing joint has the slide frame 13, and has the pivot 13.
As shown in fig. 2-4, the transmission assembly comprises symmetrically arranged connecting frames 15, the connecting frames 15 are fixedly connected to the bottom of the movable plate 5, the adjacent connecting frames 15 are symmetrically and rotatably connected with connecting shafts, first gears 16 meshed with adjacent first racks 14 are respectively installed at two ends of each connecting shaft, the connecting frames 15 are connected with third driving pieces 17 for driving the connecting shafts to rotate through mounting seat bolts, second gears 18 meshed with the adjacent first gears 16 are rotatably connected to the front part of the right side connecting frame 15, and the second gears 18 and the rear side first gears 16 are transmitted through pulleys and belts.
As shown in fig. 5-7, the right side surface of the left connecting frame 15 is slidably connected with a guide frame 20, the guide frame 20 is rotatably connected with a rotating frame 21, the rotating frame 21 is fixedly connected with a second spray pipe 22, the right side surface of the guide frame 20 is fixedly connected with a sliding frame 23, the left side surface of the right connecting frame 15 is rotatably connected with a rotating shaft 24, the rotating shaft 24 and an output shaft of the second driving piece 11 are transmitted through a belt wheel and a belt, the rotating shaft 24 is fixedly connected with a rotating plate 25, and the upper part of the rotating plate 25 is fixedly connected with a pin rod in sliding fit with the sliding frame 23.
As shown in fig. 6, positioning rods 19 for pushing the second spray pipe 22 to swing are symmetrically fixedly connected to the front wall and the rear wall of the adjacent connecting frame 15.
As shown in fig. 7, an elastic clamping rod 26 is symmetrically and fixedly connected in the guide frame 20, and the rotating frame 21 is provided with a limit clamping groove in sliding fit with the elastic clamping rod 26.
When dust in a steel tank of the dry-type transformer 47 is cleaned, a user places the cleaning device on the upper side of the steel tank of the dry-type transformer 47, the user communicates the first spray pipe 10 and the second spray pipe 22 with external equipment through external pipes respectively, the user pumps insulating cleaning liquid into the first spray pipe 10 and the second spray pipe 22 through the external equipment through the external pipes respectively, simultaneously starts the first driving piece 3 and the second driving piece 11 to work, the first driving piece 3 drives the reciprocating screw 4 to enable the movable plate 5 to reciprocate, the movable plate 5 reciprocates to drive parts on the movable plate to move, the second driving piece 11 rotates through a belt pulley and a belt transmission shaft 131, the shaft 131 rotates to enable the first spray pipe 10 to swing up and down through a sliding sleeve on the swinging plate 132, the first spray pipe 10 is matched with the rotating sleeve 9 through a sliding block of the mounting plate 8 in the up-down swinging process, the first spray pipe 10 moves back and forth at the same time, the front first spray pipe 10 moves back gradually in the process of swinging the front side from the upper part to the middle part, the front first spray pipe 10 moves back gradually, the front side first spray pipe 10 moves from the middle part to the lower part to the middle part to enable the front side of the first spray pipe 10 to move forward along the channel 10, the side of the channel steel is cleaned, and the cleaning liquid is completely along the channel steel 10 in the channel steel is cleaned, and the inner wall of the channel steel is cleaned in the channel steel is completely in the process.
In the initial state, the lower part of the second spray pipe 22 is inclined forwards, in the forward moving process of the second spray pipe 22, the insulating cleaning liquid in the second spray pipe 22 is sprayed out, dust on the channel steel is driven to the front side by the spraying of the insulating cleaning liquid, the second driving piece 11 works and rotates through a belt pulley and a belt transmission rotating shaft 24, the rotating shaft 24 rotates to be matched with the sliding frame 23 through a rotating plate 25 and a pin rod on the rotating plate, the guide frame 20 is enabled to reciprocate forwards and backwards, the guide frame 20 moves forwards to drive the second spray pipe 22 to move through the rotating frame 21, the second spray pipe 22 is contacted with the positioning rod 19 on the front side and continuously moves, the lower part of the second spray pipe 22 swings backwards, meanwhile, the elastic clamping rod 26 on the rear side is enabled to move out of the limit clamping groove of the rotating frame 21, the dust on the channel steel is enabled to be clamped into the limit clamping groove of the rotating frame 21, the second spray pipe 22 is fixed in a backward inclined mode, and the dust on the channel steel is enabled to be prevented from being blown backwards through the elastic clamping rod 26 on the rear side, and the channel steel is enabled to be kept away from being blown out of the limit clamping groove of the second spray pipe 22.
After the reciprocating screw 4 moves the moving plate 5 leftwards, the channel steel of the dry type transformer 47 is cleaned again, so that residual dust on the dry type transformer 47 is avoided, and heat dissipation of the dry type transformer 47 is affected.
Example 2
On the basis of the embodiment 1, as shown in fig. 8-10, the device further comprises a bracket 29, the bracket 29 is fixedly connected to the top of the fixed frame 6, the upper part and the lower part of the bracket 29 are both in sliding connection with a second straight rack 30, the right part of the bracket 29 is provided with a fourth driving part 31, the output shaft of the fourth driving part 31 is provided with a transmission gear 32 meshed with the second straight rack 30, the second straight rack 30 is symmetrically fixedly connected with a vertical support plate 33, the left and right adjacent vertical support plates 33 are in sliding connection with a sliding plate 34, the second straight rack 30 is provided with a fifth driving part 35 fixedly connected with the sliding plate 34 through a mounting seat, the sliding plate 34 is provided with a sixth driving part 36, the left and right sides of the bottom of the sliding plate 34 are both in rotating connection with a rotating shaft 37, the sixth driving part 36 is fixedly connected with the rotating shaft 37 on the right side, the front and rear ends of the rotating shaft 37 are both provided with a third gear 38, the adjacent third gears 38 are meshed, the left side and the right side of the bottom of the sliding plate 34 are respectively and rotatably connected with a group of sector gears 39 meshed with the adjacent third gears 38, the two groups of inner sector gears 39 are arranged, the two groups of inner sector gears 39 are symmetrical front and back, the sector gears 39 are fixedly connected with an arc-shaped plate 40, the arc-shaped plate 40 is provided with an arc-shaped groove 41, sliding blocks 42 are slidably connected in the arc-shaped groove 41, cleaning pieces 43 for cleaning dust of insulators are rotatably connected between the front and the back adjacent sliding blocks 42, the shape of the cleaning pieces 43 is matched with the shape of the insulators, water spraying holes are formed in the cleaning pieces 43 at equal intervals, when the cleaning pieces are positioned at the uppermost side, the water spraying holes face the uppermost side edge of the insulators, the sliding blocks 42 at the outer sides of the right side are fixedly connected with arc-shaped racks 44, the sliding blocks 42 at the inner sides of the left side are fixedly connected with arc-shaped racks 44, seventh driving pieces 45 are arranged at the lower part of the arc-shaped plate 40, the seventh drive member 45 has an output shaft mounted with a fourth gear 46 which meshes with the arcuate rack 44.
At first, the user communicates cleaning piece 43 through pipeline and external equipment, and above-mentioned in-process, the in-process of movable plate 5 reciprocating motion can meet the insulator spacing, and the user starts third driving piece 17 and makes its last first gear 16 this moment, drives carriage 7 through first rack 14 and upwards moves to this makes carriage 7 keep away from the insulator, and the user starts third driving piece 17 and makes its last first gear 16 reversal, makes carriage 7 reset and washs the channel-section steel of dry-type transformer 47 again.
When the cleaning member 43 is positioned above the insulator, a user starts the fourth driving member 31 to work, the second straight racks 30 on the upper side and the lower side are respectively moved to the front side and the rear side through the transmission gear 32, the second straight racks 30 move to drive the parts on the second straight racks to move, the cleaning member 43 on the front side and the rear side is moved to the position right above the insulator along with the back movement, then the user closes the fourth driving member 31 and makes the fourth driving member self-locking, meanwhile, the fifth driving member 35 and the sixth driving member 36 are started to work, the sixth driving member 36 works to drive the rotating shaft 37 on the right side to rotate, the rotating shaft 37 on the right side drives the third gear 38 to rotate, the rotating shaft 37 on the left side is driven to rotate through the transmission of the adjacent third gear 38, the rotating directions of the third gears 38 on the left side are opposite, the third gears 38 drive the sector gears 39 to enable the arc plates 40 to swing upwards, the arc plates 40 on the left side and the right side swing upwards, and a space is provided for the insulator to enter between the arc plates 40 on the left side and the right side.
In the above process, the fifth driving piece 35 works to enable the sliding plate 34 to drive the parts on the sliding plate to move downwards, enable the insulator to be located between the arc plates 40 on the left side and the right side, enable the user to close the fifth driving piece 35, enable the sixth driving piece 36 to drive the rotating shaft 37 connected with the fifth driving piece to rotate reversely, enable the arc plates 40 on the left side and the right side to reset and close self-locking, at the same time, enable the cleaning piece 43 to be matched with grooves of the insulator, enable the user to pump insulating cleaning liquid to the cleaning piece 43 through the external equipment through the pipeline, enable the arc racks 44 to move circumferentially through the fourth gear 46 by taking the insulator as a circle center, enable the arc racks 44 to move to enable the cleaning piece 43 to clean the insulator through the sliding block 42, enable the cleaning piece 43 to be inclined water downwards in the process of the cleaning piece 43 moving downwards, enable impurities on the surface of the insulator to be driven downwards at the same time by inclined water flow, enable impurities on the surface of the insulator to be driven downwards, enable the cleaning liquid to remain impurities on the surface of the insulator to be prevented from being driven downwards, enable the cleaning piece 43 to move to form a circle through the left side and the cleaning piece 43 to enable the insulator to be cleaned in all-round mode, enable the insulator to be reset and enable the insulator to be driven to be reset through the left side and the cleaning piece 43 to move upwards, enable the fifth driving piece 45 to move upwards and enable the arc racks 44 to be enabled to move downwards and enable the cleaning piece 40 to be used to be reset to be located on the left side and the insulator to be located on the right side.
The foregoing is merely illustrative of the present application, and the present application is not limited thereto, and any person skilled in the art will readily recognize that variations or substitutions are within the scope of the present application. Therefore, the protection scope of the present application shall be subject to the protection scope of the claims.

Claims (8)

1. An auxiliary device for distribution network maintenance, characterized by: including guide arm (1), both ends of guide arm (1) all are fixedly connected with mounting bracket (2), rotate between adjacent mounting bracket (2) and be connected with reciprocating screw (4), mounting bracket (2) are provided with first driving piece (3) of drive reciprocating screw (4) pivoted through the mount pad, reciprocating screw (4) threaded connection has movable plate (5) with guide arm (1) sliding connection, movable plate (5) top rigid coupling has mount (6), mount (6) symmetrical sliding connection has carriage (7), the rigid coupling has mounting panel (8) in carriage (7), mounting panel (8) sliding connection has the slider, the slider rotates and is connected with rotation cover (9), the rigid coupling has first spray tube (10) that are used for cleaing away channel-section steel dust in rotation cover (9), second driving piece (11) are installed to movable plate (5), mount (6) upper portion symmetry is provided with leading wheel (12), tensioning assembly (13) are installed to mount (6) symmetry formula, adjacent leading wheel (12) are located the tensioning assembly (13) inboard of symmetry setting, carriage (7) rotation is connected with axostylus axostyle (131), tensioning assembly (131), leading wheel (12) and second driving piece pass through between driving piece and the belt 11, the shaft lever (131) is fixedly connected with a swinging plate (132), the swinging plate (132) is rotationally connected with a sliding sleeve sleeved with the first spray pipe (10), the sliding frame (7) is fixedly connected with a first straight rack (14), the bottom of the moving plate (5) is provided with a transmission component for the sliding frame (7) to move up and down, and the first spray pipe (10) moves and washes along the inner wall of the channel steel in the process of swinging up and down;
the transmission assembly comprises symmetrically arranged connecting frames (15), the connecting frames (15) are fixedly connected to the bottom of the movable plate (5), connecting shafts are symmetrically connected to the adjacent connecting frames (15) in a rotating mode, first gears (16) meshed with the adjacent first straight racks (14) are arranged at two ends of each connecting shaft, the connecting frames (15) are connected with third driving pieces (17) for driving the connecting shafts to rotate through mounting seat bolts, second gears (18) meshed with the adjacent first gears (16) are connected to the front portions of the right sides of the right side connecting frames (15) in a rotating mode, and transmission is conducted between the second gears (18) and the first gears (16) at the rear sides through belt wheels and belts;
one side link (15) sliding connection has leading truck (20), leading truck (20) internal rotation is connected with rotating turret (21), rotating turret (21) rigid coupling has second spray tube (22), leading truck (20) rigid coupling has sliding frame (23), opposite side link (15) rotates and is connected with axis of rotation (24), axis of rotation (24) pass through band pulley and belt drive with the output shaft of second driving piece (11), axis of rotation (24) rigid coupling has rotating plate (25), rotating plate (25) rigid coupling have with sliding frame (23) sliding fit's round pin pole.
2. An auxiliary device for maintenance of an electrical distribution network according to claim 1, characterized in that: the adjacent connecting frames (15) are symmetrically and fixedly connected with positioning rods (19) for pushing the second spray pipe (22) to swing.
3. An auxiliary device for maintenance of an electrical distribution network according to claim 1, characterized in that: elastic clamping rods (26) are symmetrically and fixedly connected in the guide frame (20), and limiting clamping grooves which are in sliding fit with the elastic clamping rods (26) are formed in the rotating frame (21).
4. An auxiliary device for maintenance of an electrical distribution network according to claim 1, characterized in that: still including support (29), support (29) rigid coupling is in mount (6) top, support (29) symmetry sliding connection has second straight rack (30), support (29) are provided with fourth driving piece (31), transmission gear (32) with second straight rack (30) meshing are installed to the output shaft of fourth driving piece (31), second straight rack (30) symmetry rigid coupling has perpendicular extension board (33), adjacent perpendicular extension board (33) sliding connection has sliding plate (34), second straight rack (30) are provided with fifth driving piece (35) with sliding plate (34) rigid coupling through the mount pad, sliding plate (34) are provided with sixth driving piece (36), sliding plate (34) are provided with and open the subassembly, it is provided with the removal subassembly that is used for the insulator to wash to open the subassembly.
5. An auxiliary device for maintenance of an electrical distribution network according to claim 4, wherein: the opening assembly comprises a rotating shaft (37) which is symmetrically arranged, the rotating shaft (37) is rotationally connected to the bottom of the sliding plate (34), a sixth driving piece (36) is fixedly connected with the rotating shaft (37) on one side, third gears (38) are mounted at two ends of the rotating shaft (37), adjacent third gears (38) are meshed, a group of sector gears (39) which are meshed with the adjacent third gears (38) are symmetrically rotationally connected to two sides of the bottom of the sliding plate (34), the sector gears (39) in the group are symmetrically distributed, an arc-shaped plate (40) is fixedly connected to the sector gears (39), and the arc-shaped plate (40) is provided with an arc-shaped groove (41).
6. An auxiliary device for maintenance of an electrical distribution network according to claim 4, wherein: the cleaning assembly comprises sliding blocks (42), the sliding blocks (42) are arranged in the arc-shaped grooves (41) in a sliding mode, cleaning pieces (43) used for cleaning dust of insulators are connected between the sliding blocks (42) which are arranged in a opposite mode in a rotating mode, one of the sliding blocks (42) is fixedly connected with arc-shaped racks (44), adjacent arc-shaped racks (44) are arranged in the opposite mode, a seventh driving piece (45) is arranged at the lower portion of each arc-shaped plate (40), and a fourth gear (46) meshed with the arc-shaped racks (44) is arranged on an output shaft of each seventh driving piece (45).
7. An auxiliary device for maintenance of an electrical distribution network according to claim 6, wherein: the cleaning member (43) is shaped to fit the outer shape of the insulator.
8. An auxiliary device for maintenance of an electrical distribution network according to claim 6, wherein: the cleaning pieces (43) are provided with water spraying holes at equal intervals, and when the cleaning pieces are positioned at the uppermost side, the water spraying holes face the uppermost edge of the insulator.
CN202211355420.2A 2022-11-01 2022-11-01 Auxiliary device for power distribution network maintenance Active CN115591846B (en)

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