CN114472398B - Water conservancy irrigation ditch is with inside edulcoration equipment - Google Patents

Water conservancy irrigation ditch is with inside edulcoration equipment Download PDF

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Publication number
CN114472398B
CN114472398B CN202210063091.8A CN202210063091A CN114472398B CN 114472398 B CN114472398 B CN 114472398B CN 202210063091 A CN202210063091 A CN 202210063091A CN 114472398 B CN114472398 B CN 114472398B
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China
Prior art keywords
sliding
assembly
water conservancy
plate
frame
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Application number
CN202210063091.8A
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Chinese (zh)
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CN114472398A (en
Inventor
曾群英
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Xuzhou Ourun Pump Co ltd
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Xuzhou Ourun Pump Co ltd
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Priority to CN202210063091.8A priority Critical patent/CN114472398B/en
Publication of CN114472398A publication Critical patent/CN114472398A/en
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B08CLEANING
    • B08BCLEANING IN GENERAL; PREVENTION OF FOULING IN GENERAL
    • B08B9/00Cleaning hollow articles by methods or apparatus specially adapted thereto 
    • B08B9/02Cleaning pipes or tubes or systems of pipes or tubes
    • B08B9/027Cleaning the internal surfaces; Removal of blockages
    • B08B9/04Cleaning the internal surfaces; Removal of blockages using cleaning devices introduced into and moved along the pipes
    • B08B9/049Cleaning the internal surfaces; Removal of blockages using cleaning devices introduced into and moved along the pipes having self-contained propelling means for moving the cleaning devices along the pipes, i.e. self-propelled
    • B08B9/051Cleaning the internal surfaces; Removal of blockages using cleaning devices introduced into and moved along the pipes having self-contained propelling means for moving the cleaning devices along the pipes, i.e. self-propelled the cleaning devices having internal motors, e.g. turbines for powering cleaning tools
    • 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
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02WCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO WASTEWATER TREATMENT OR WASTE MANAGEMENT
    • Y02W10/00Technologies for wastewater treatment
    • Y02W10/10Biological treatment of water, waste water, or sewage

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Sewage (AREA)

Abstract

The invention relates to internal impurity removing equipment, in particular to internal impurity removing equipment for a water conservancy ditch. The internal impurity removing device for the water conservancy ditch has the advantages that the pipeline can be automatically cleaned, the cleaning efficiency is high, and the water conservancy ditch is clean and thorough. An internal impurity removal device for a water conservancy ditch comprises: a protective shell; a frame installed in the protective case; the two first guide plates are arranged on the frame; and the sliding blocks are two and are both installed on the first guide plate in a sliding manner. According to the cleaning brush, impurities in the water conservancy ditch pipeline can be cleaned through the cleaning brush, power can be provided when the impurities in the water conservancy ditch pipeline are cleaned through the driving assembly, the impurities in the pipeline can be scraped clean through the supporting assembly, the arc plate can be automatically opened through the pushing assembly, meanwhile, the arc plate can be kept in an opened state when the impurities are scraped, the cleaning brush can be driven to rotate through the rotating assembly, and the impurities in the pipeline are cleaned thoroughly.

Description

Water conservancy irrigation ditch is with inside edulcoration equipment
Technical Field
The invention relates to internal impurity removing equipment, in particular to internal impurity removing equipment for a water conservancy ditch.
Background
In the current hydraulic ditch engineering, a plurality of shunt ports are often required to be arranged, the shunt ports are generally constructed by using pipelines formed by pouring concrete, impurities in water are filtered by a simple filtering pore plate on the current shunt ports, and after long-time use, the shunt ports are extremely easy to block, so that the water utilization rate of the hydraulic engineering is seriously influenced.
At present, generally, the accumulated impurities in the water conservancy ditch pipeline are dug out by using a tool, a great amount of time and labor are consumed for cleaning in a manual digging mode, the cleaning efficiency is poor, the water conservancy ditch pipeline is small, workers cannot enter the pipeline for cleaning, and the impurities in the water conservancy ditch pipeline are not thoroughly cleaned.
Therefore, the invention can automatically clean the pipeline, has high cleaning efficiency, and is necessary to clean and thoroughly clean the water conservancy ditches by using internal impurity removing equipment.
Disclosure of Invention
In order to overcome the defects that a great deal of time and labor are consumed for cleaning impurities in a pipeline manually, the cleaning is incomplete and the working efficiency is low, the technical problem of the invention is that: the internal impurity removing device for the water conservancy ditch has the advantages that the pipeline can be automatically cleaned, the cleaning efficiency is high, and the water conservancy ditch is clean and thorough.
The technical implementation scheme of the invention is as follows: an internal impurity removal device for a water conservancy ditch comprises: a protective shell; a frame installed in the protective case; the two first guide plates are arranged on the frame; the two sliding blocks are arranged on the first guide plate in a sliding manner; the hollow tube is arranged between the two sliding blocks; the cleaning brush is rotatably arranged on the hollow tube; the driving assembly is arranged on the frame; and the opening assembly is arranged on the hollow tube.
Optionally, the driving assembly includes: the support legs are arranged on the frame; the gear motor is arranged on the supporting leg; the two lead screws are respectively and rotatably arranged on the frame; the two nuts are arranged on the screw rod and are connected with the sliding block; and the two belt pulley groups are arranged between the output shaft of the gear motor and the screw rod.
Optionally, the expansion assembly comprises: the sliding rod is arranged in the hollow pipe; the at least two arc-shaped plates are rotatably arranged on the sliding rod; the sliding sleeves are at least two and are arranged on the hollow pipe; the sliding plates are at least two and are all arranged in the sliding sleeve in a sliding mode, and are all connected with the arc-shaped plate in a rotating mode; the swinging plate is rotatably arranged on the hollow pipe; the round shaft is arranged on the sliding rod and is movably connected with the swinging plate.
Optionally, the device further comprises a pushing component, wherein the pushing component comprises: the sliding rail is arranged on the frame; the fixed plate is arranged on the sliding rail; the two first sliding blocks are arranged on the sliding rail in a sliding manner; the square block is arranged on the sliding rail in a sliding manner, and the first sliding blocks are connected with the square block; the two first springs are arranged between the first sliding block and the sliding rail; the guide rails are two and are arranged on the hollow pipe; the second sliding block is arranged between the two guide rails in a sliding mode and is movably connected with the swinging plate; the two second springs are arranged between the second sliding block and the hollow tube; and the roller is rotatably arranged on the second sliding block and matched with the square block.
Optionally, the device further comprises a rotating assembly, wherein the rotating assembly comprises: the rotating rod is arranged on the screw rod; the pinion is slidably arranged on the rotating rod; the connecting plate is arranged on the sliding block and is connected with the pinion in a sliding manner; and the large gear is arranged on the cleaning brush and meshed with the small gear.
Optionally, the collecting assembly is further included, and the collecting assembly includes: the second guide plate is arranged on the sliding rail; the collecting box is installed on the second guide plate in a sliding mode, and at least two water outlet holes are formed in the collecting box.
Optionally, the positioning assembly is further included, and the positioning assembly includes: the guide sleeve is arranged on the sliding rail; the positioning plate is slidably arranged in the guide sleeve and is matched with the collecting box; and the third spring is arranged between the positioning plate and the guide sleeve.
Optionally, the sliding block is strip-shaped.
The invention has the beneficial effects that: according to the cleaning brush, impurities in the water conservancy ditch pipeline can be cleaned through the cleaning brush, power can be provided when the impurities in the water conservancy ditch pipeline are cleaned through the driving assembly, the impurities in the pipeline can be scraped clean through the supporting assembly, the arc plate can be automatically opened through the pushing assembly, meanwhile, the arc plate can be kept in an opened state when the impurities are scraped, the cleaning brush can be driven to rotate through the rotating assembly, the impurities in the pipeline can be cleaned more thoroughly, the scraped impurities can be collected through the collecting assembly, the collecting box can be fixed when the cleaning brush is used through the positioning assembly, and abnormal falling of the collecting box is avoided.
Drawings
Fig. 1 is a schematic perspective view of a first embodiment of the present invention.
Fig. 2 is a schematic perspective view of a second embodiment of the present invention.
Fig. 3 is a schematic perspective view of a driving assembly according to the present invention.
Fig. 4 is a schematic perspective view of the opening assembly of the present invention.
Fig. 5 is a schematic view of a portion of a three-dimensional structure of the distractor assembly of the present invention.
Fig. 6 is a schematic perspective view of the pushing assembly of the present invention.
Fig. 7 is a schematic perspective view of a rotating assembly according to the present invention.
Fig. 8 is a schematic perspective view of a collection assembly according to the present invention.
Fig. 9 is a schematic perspective view of a positioning assembly according to the present invention.
Meaning of reference numerals in the drawings: 1: protective housing, 2: frame, 3: first deflector, 4: sliding block, 5: hollow tube, 6: cleaning brush, 7: drive assembly, 71: leg, 72: gear motor, 73: screw, 74: nut, 75: pulley group, 8: distracting assembly, 81: slide bar, 82: arc plate, 83: sliding sleeve, 84: slide plate, 85: swing plate, 86: round shaft, 9: pushing assembly, 91: slide rail, 92: fixing plate, 93: first slider, 94: square block, 95: first spring, 96: guide rail, 97: second slider, 98: second spring, 99: roller, 10: rotating assembly, 101: turning rod, 102: pinion, 103: connection plate, 104: large gear, 11: collection assembly, 111: second guide plate, 112: collection box, 113: water outlet hole, 12: positioning assembly, 121: guide sleeve, 122: locating plate, 123: and a third spring.
Detailed Description
The invention is further described below with reference to the drawings and examples.
Example 1
The utility model provides an inside edulcoration equipment for irrigation and drainage ditch, as shown in fig. 1-9, including protective housing 1, frame 2, first deflector 3, slider 4, hollow tube 5, cleaning brush 6, drive assembly 7 and strut subassembly 8, be equipped with frame 2 in the protective housing 1, the frame 2 bilateral symmetry is equipped with first deflector 3, all slidingtype on the first deflector 3 is equipped with slider 4, is equipped with hollow tube 5 between two sliders 4 around, the rotation of hollow tube 5 right-hand member is equipped with cleaning brush 6, be equipped with drive assembly 7 on the frame 2, be equipped with strut subassembly 8 on the hollow tube 5.
When the device is used, the staff removes equipment to suitable position, make protective housing 1 right part and water conservancy irrigation canals and ditches pipeline butt joint, then, the staff drives slider 4 through drive assembly 7 and slides right on first deflector 3, slider 4 slides right and drives hollow tube 5 and remove right, hollow tube 5 moves right and drives cleaning brush 6 and move right and stretch into the pipeline in clear up, hollow tube 5 moves right and drives and strut subassembly 8 and move right and stretch into the pipeline in the time, after cleaning brush 6 scrapes the impurity in the pipeline down, the staff passes through drive assembly 7 and drives slider 4 and slide left, slider 4 slides left and passes through hollow tube 5 and drive strut subassembly 8 and move left, strut subassembly 8 and scrape out the impurity in the pipeline when moving left, so, can clear away the impurity in the water conservancy irrigation canals and ditches pipeline.
As shown in fig. 1, fig. 2, fig. 3 and fig. 7, the driving assembly 7 comprises a supporting leg 71, a gear motor 72, a screw rod 73, a nut 74 and a belt pulley set 75, the supporting leg 71 is arranged at the left part of the frame 2, the gear motor 72 is arranged on the supporting leg 71, the screw rod 73 is rotatably arranged on the front side and the rear side of the frame 2, the nut 74 is matched with the screw rod 73, the nut 74 is connected with the sliding block 4, the belt pulley set 75 is connected between the output shaft of the gear motor 72 and the screw rod 73, the belt pulley set 75 consists of two belt pulleys and a flat belt, one belt pulley is arranged on the output shaft of the gear motor 72, the other belt pulley is arranged on the screw rod 73, and the flat belt is wound between the two belt pulleys.
When the device is used, a worker starts the gear motor 72 to rotate, the gear motor 72 rotates to drive the screw rod 73 to rotate through the belt pulley group 75, the screw rod 73 rotates to drive the nut 74 to move rightwards, the nut 74 moves rightwards to drive the sliding block 4 to slide rightwards, and then the cleaning brush 6 is driven to move rightwards to extend into the pipeline to clean, after the cleaning brush 6 scrapes impurities in the pipeline, the worker controls the gear motor 72 to rotate reversely, the gear motor 72 rotates reversely to drive the screw rod 73 through the belt pulley group 75, the screw rod 73 rotates reversely to drive the nut 74 to move leftwards, and then the cleaning brush 6 is driven to move leftwards to reset, after the device is used, the worker turns off the gear motor 72, and therefore power can be provided when the impurities in the water conservancy ditch pipeline are cleaned.
As shown in fig. 1, 2, 4, 5 and 6, the opening assembly 8 comprises a sliding rod 81, an arc-shaped plate 82, a sliding sleeve 83, a sliding plate 84, a swinging plate 85 and a circular shaft 86, the sliding rod 81 is arranged in the hollow tube 5 in a sliding manner, the right end of the sliding rod 81 is rotatably provided with a circle of arc-shaped plate 82, the right end of the hollow tube 5 is provided with a circle of sliding sleeve 83, sliding plates 84 are arranged in the sliding sleeve 83 in a sliding manner, the sliding plates 84 are rotatably connected with the right end of the arc-shaped plate 82, the swinging plate 85 is rotatably arranged at the left end of the hollow tube 5, the circular shaft 86 is movably connected with the swinging plate 85, and the left end of the sliding rod 81 is provided with the circular shaft 86.
When the device is used, after the cleaning brush 6 scrapes down impurities in a pipeline, a worker pulls the upper part of the swinging plate 85 to swing leftwards, the upper part of the swinging plate 85 swings leftwards to drive the sliding rod 81 to slide leftwards in the hollow pipe 5 through the circular shaft 86, the sliding rod 81 slides leftwards to drive the right part of the arc plate 82 to swing leftwards, the left part of the arc plate 82 swings outwards to open and be attached to the inner wall of the pipeline, the sliding plate 84 slides outwards in the sliding sleeve 83 along with the sliding plate, at the moment, the worker controls the gear motor 72 to rotate reversely, so that the hollow pipe 5 moves leftwards, the hollow pipe 5 moves leftwards to drive the arc plate 82 to move leftwards, and the arc plate 82 scrapes out impurities in the pipeline while moving leftwards, so that the impurities in the pipeline can be scraped cleanly.
Example 2
On the basis of embodiment 1, as shown in fig. 1, 2 and 6, the device further comprises a pushing component 9, the pushing component 9 comprises a sliding rail 91, a fixing plate 92, a first sliding block 93, a square block 94, a first spring 95, a guide rail 96, a second sliding block 97, a second spring 98 and a roller 99, the sliding rail 91 is arranged on the frame 2, the fixing plate 92 is arranged on the sliding rail 91, two first sliding blocks 93 are arranged on the right part of the sliding rail 91 in a sliding manner, the square block 94 is arranged on the right part of the sliding rail 91 in a sliding manner, the first sliding blocks 93 are connected with the square block 94, the first spring 95 is connected between the first sliding blocks 93 and the sliding rail 91, two guide rails 96 are arranged on the left part of the hollow tube 5 in a sliding manner, the second sliding block 97 is movably connected with the swinging plate 85, two second springs 98 are connected between the second sliding block 97 and the hollow tube 5, the roller 99 is arranged on the lower part of the second sliding block 97 in a rotating manner, and the roller 99 is matched with the square block 94.
When the device is used, the hollow tube 5 moves rightwards, the second slide block 97 is driven to move rightwards through the guide rail 96, the second slide block 97 moves rightwards to drive the roller 99 to roll rightwards on the slide rail 91, when the roller 99 rolls rightwards to be in contact with the square block 94, the roller 99 rolls rightwards to push the square block 94 to slide rightwards, the square block 94 slides rightwards to drive the first slide block 93 to slide rightwards in the slide rail 91, the first spring 95 deforms, when the roller 99 rolls rightwards to be in contact with the inclined surface of the slide rail 91, the roller 99 rolls rightwards and simultaneously moves upwards, the roller 99 moves upwards to drive the second slide block 97 to slide upwards in the guide rail 96, the second spring 98 deforms, the second slide block 97 slides upwards to drive the lower part of the swinging plate 85 to swing rightwards, the upper part of the swinging plate 85 swings leftwards, so that the left part of the arc plate 82 swings outwards to be attached to the inner wall of a pipeline, when the roller 99 moves upwards to be separated from the square block 94, under the action of the reset of the first spring 95, the first slider 93 drives the square block 94 to slide leftwards to reset, then, the operator controls the gear motor 72 to rotate reversely, and further drives the hollow tube 5 to move leftwards, the hollow tube 5 moves leftwards to drive the second slider 97 to move leftwards through the guide rail 96, the second slider 97 moves leftwards to drive the roller 99 to roll leftwards, under the action of the fixed plate 92, the roller 99 is always in an upwards moved state, so that the arc plate 82 is kept in an open state, and when the roller 99 rolls leftwards to be separated from the fixed plate 92, under the action of the reset of the second spring 98, the second slider 97 drives the roller 99 to move downwards to reset, so that the arc plate 82 can be automatically opened, and meanwhile, the arc plate 82 is kept in an open state when impurities are scraped.
On the basis of embodiment 1, as shown in fig. 2 and 7, the cleaning brush further comprises a rotating assembly 10, the rotating assembly 10 comprises a rotating rod 101, a pinion 102, a connecting plate 103 and a large gear 104, the right end of a rear screw rod 73 is connected with the rotating rod 101, the pinion 102 is slidably arranged on the rotating rod 101, the connecting plate 103 is slidably connected with the pinion 102 on the right part of a rear sliding block 4, the large gear 104 is arranged on the left part of the cleaning brush 6, and the large gear 104 is meshed with the pinion 102.
When the device is used, the screw rod 73 automatically drives the rotating rod 101 to rotate, the rotating rod 101 rotates to drive the pinion 102 to rotate, the pinion 102 rotates to drive the large gear 104 to rotate, the large gear 104 rotates to drive the cleaning brush 6 to rotate, when the sliding block 4 slides rightwards, the connecting plate 103 drives the pinion 102 to slide rightwards on the rotating rod 101, so that the pinion 102 is always meshed with the large gear 104, and the cleaning brush 6 can be driven to rotate to clean impurities in a pipeline more thoroughly.
On the basis of embodiment 1, as shown in fig. 1, 2, 8 and 9, the collecting assembly 11 is further included, the collecting assembly 11 includes a second guide plate 111 and a collecting tank 112, the right side of the bottom of the sliding rail 91 is provided with the second guide plate 111, the collecting tank 112 is slidably arranged in the second guide plate 111, and a water outlet hole 113 is formed in the bottom of the collecting tank 112.
When the device is used, impurities scraped by the arc-shaped plate 82 drop into the collecting box 112, water is filtered through the water outlet 113, after the impurities are removed, a worker pulls the collecting box 112 to slide forwards on the second guide plate 111 to take off the impurities, then the impurities in the collecting box 112 are cleaned, and after the impurities are removed, the collecting box 112 is pushed to slide backwards to reset, so that the scraped impurities can be collected.
On the basis of embodiment 1, as shown in fig. 1, 2 and 9, the device further comprises a positioning assembly 12, the positioning assembly 12 comprises a guide sleeve 121, a positioning plate 122 and a third spring 123, the guide sleeve 121 is arranged on the right side of the bottom of the sliding rail 91, the positioning plate 122 is arranged in the guide sleeve 121 in a sliding mode, the positioning plate 122 is matched with the collecting box 112, and the third spring 123 is connected between the positioning plate 122 and the guide sleeve 121.
When the device is used, a worker pulls the positioning plate 122 to slide leftwards in the guide sleeve 121 so as not to clamp the collecting box 112 any more, the third spring 123 deforms, then the worker pulls the collecting box 112 to slide forwards for removal, after the collecting box 112 slides backwards for reset, the worker releases the positioning plate 122, and under the effect of reset of the third spring 123, the positioning plate 122 slides rightwards to reset so as to clamp the collecting box 112, so that the collecting box 112 can be fixed during use, and abnormal falling of the collecting box 112 is avoided.
The foregoing description is only illustrative of the present invention and is not intended to limit the scope of the invention, and all equivalent structures or equivalent processes or direct or indirect application in other related arts are included in the scope of the present invention.

Claims (5)

1. An internal impurity removal device for a water conservancy ditch is characterized by comprising: a protective shell (1); a frame (2) installed in the protective case (1); the two first guide plates (3) are arranged on the frame (2); the two sliding blocks (4) are arranged on the first guide plate (3) in a sliding manner; a hollow tube (5) installed between the two sliding blocks (4); the cleaning brush (6) is rotatably arranged on the hollow tube (5); the driving assembly (7) is arranged on the frame (2); the opening assembly (8) is arranged on the hollow tube (5);
the driving assembly (7) comprises: the support legs (71) are arranged on the frame (2); a gear motor (72) mounted on the leg (71); the two screw rods (73) are respectively and rotatably arranged on the frame (2); the two nuts (74) are arranged on the screw rod (73), and the nuts (74) are connected with the sliding block (4); the two belt wheel sets (75) are arranged between the output shaft of the speed reducing motor (72) and the screw rod (73);
the opening assembly (8) comprises: a sliding rod (81) installed in the hollow tube (5); the arc-shaped plates (82), at least two arc-shaped plates (82) are rotatably arranged on the sliding rod (81); the sliding sleeves (83), at least two sliding sleeves (83) are arranged on the hollow tube (5); the sliding plates (84) are at least two, are all installed in the sliding sleeve (83) in a sliding mode, and the sliding plates (84) are all connected with the arc-shaped plates (82) in a rotating mode; the swinging plate (85) is rotatably arranged on the hollow pipe (5); the circular shaft (86) is arranged on the sliding rod (81), and the circular shaft (86) is movably connected with the swinging plate (85);
the device also comprises a pushing component (9), wherein the pushing component (9) comprises: a slide rail (91) mounted on the frame (2); a fixed plate (92) mounted on the slide rail (91); the two first sliding blocks (93) are arranged on the sliding rail (91) in a sliding manner; the square block (94) is arranged on the sliding rail (91) in a sliding mode, and the first sliding blocks (93) are connected with the square block (94); the two first springs (95) are arranged between the first sliding block (93) and the sliding rail (91); the guide rails (96) are two, and the guide rails (96) are arranged on the hollow pipe (5); the second sliding block (97) is arranged between the two guide rails (96) in a sliding mode, and the second sliding block (97) is movably connected with the swinging plate (85); the two second springs (98) are arranged between the second sliding block (97) and the hollow tube (5); and the roller (99) is rotatably arranged on the second sliding block (97), and the roller (99) is matched with the square block (94).
2. An internal impurity removing apparatus for water conservancy trenches as claimed in claim 1, further comprising a rotating assembly (10), the rotating assembly (10) comprising: the rotating rod (101) is arranged on the screw rod (73); a pinion (102) slidably mounted on the rotating lever (101); the connecting plate (103) is arranged on the sliding block (4), and the connecting plate (103) is connected with the pinion (102) in a sliding manner; and a large gear (104) mounted on the cleaning brush (6), the large gear (104) being meshed with the small gear (102).
3. An internal impurity removing apparatus for water conservancy trenches as claimed in claim 2, further comprising a collecting assembly (11), wherein the collecting assembly (11) comprises: a second guide plate (111) mounted on the slide rail (91); the collecting box (112) is installed on the second guide plate (111) in a sliding mode, and at least two water outlet holes (113) are formed in the collecting box (112).
4. An internal impurity removal apparatus for water conservancy trenches as claimed in claim 3, further comprising a positioning assembly (12), wherein the positioning assembly (12) comprises: the guide sleeve (121) is arranged on the sliding rail (91); the positioning plate (122) is slidably arranged in the guide sleeve (121), and the positioning plate (122) is matched with the collecting box (112); and a third spring (123) installed between the positioning plate (122) and the guide sleeve (121).
5. An internal impurity removing apparatus for water conservancy trenches as claimed in claim 4, wherein the sliding block (4) is in the form of a bar.
CN202210063091.8A 2022-01-20 2022-01-20 Water conservancy irrigation ditch is with inside edulcoration equipment Active CN114472398B (en)

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CN202210063091.8A CN114472398B (en) 2022-01-20 2022-01-20 Water conservancy irrigation ditch is with inside edulcoration equipment

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Application Number Priority Date Filing Date Title
CN202210063091.8A CN114472398B (en) 2022-01-20 2022-01-20 Water conservancy irrigation ditch is with inside edulcoration equipment

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CN114472398B true CN114472398B (en) 2023-12-08

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CN117123576B (en) * 2023-10-24 2024-01-05 山东蒙阳机械制造有限公司 Catheter cleaning equipment

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