CN213967977U - Efficient belt cleaning device is used in processing of insulator plug - Google Patents

Efficient belt cleaning device is used in processing of insulator plug Download PDF

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Publication number
CN213967977U
CN213967977U CN202022761263.8U CN202022761263U CN213967977U CN 213967977 U CN213967977 U CN 213967977U CN 202022761263 U CN202022761263 U CN 202022761263U CN 213967977 U CN213967977 U CN 213967977U
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cleaning device
mesh screen
cleaning
washing
device main
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CN202022761263.8U
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Chinese (zh)
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胡秀丽
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Hubei Xinri Huineng Power Construction Co ltd
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Hubei Xinri Huineng Power Construction Co ltd
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Abstract

The utility model discloses a belt cleaning device is used in processing of efficient insulator plug, including belt cleaning device main part, slider, first washing mesh screen and filter screen, the top of belt cleaning device main part is provided with the pan feeding mouth, and the collecting vat has been seted up to the inside of belt cleaning device main part to the top of collecting vat is connected with one side of pipeline, and the opposite side of pipeline is connected with the jet simultaneously. This belt cleaning device is used in processing of efficient insulator plug, the inside washing mesh screen that is provided with two symmetries in the belt cleaning device main part, when first washing mesh screen during operation, can drive first jam plate and cut apart the pan feeding mouth, make the insulator plug fall first washing mesh screen and clear up, when piling up on first washing mesh screen more, make first washing mesh screen can be automatic with the insulator plug discharge, work can be intervened to the second washing mesh screen after that, make that the belt cleaning device main part can be ceaseless clear up the insulator plug, be favorable to improving work efficiency.

Description

Efficient belt cleaning device is used in processing of insulator plug
Technical Field
The utility model relates to an insulator technical field specifically is a belt cleaning device is used in processing of efficient insulator plug.
Background
The insulator is an insulating controlling part, can play important effect in overhead transmission line, and the shape of insulator is more loaded down with trivial details, and wherein the insulator plug is the important component part of insulator, and the equipment that uses is various in the processing to the insulator plug simultaneously, wherein just including insulator plug processing with belt cleaning device, but common belt cleaning device still has following problem in the existing market:
1. the assembly line can not be realized when the insulator core rod is cleaned, so that the cleaning is not efficient enough, and the working efficiency is reduced;
2. a large amount of water resources can be used in the cleaning process, more chips can be generated during cleaning, and the general cleaning device cannot be used for the second time of water flow, so that waste is caused, and the cost is increased.
Aiming at the problems, the innovative design is carried out on the basis of the original cleaning device for processing the insulator core rod.
Disclosure of Invention
An object of the utility model is to provide an efficient belt cleaning device is used in insulator plug processing, with solve common belt cleaning device is used in the processing of common insulator plug on the existing market that proposes in the above-mentioned background art, it can not accomplish the streamlined to clear up the insulator plug, make not enough high-efficient when the clearance, thereby reduce work efficiency, can use a large amount of water resources at the in-process of clearance simultaneously, have more piece when wasing, make general belt cleaning device not possess the secondary use to rivers, thereby cause the waste, the problem of cost is increased.
In order to achieve the above object, the utility model provides a following technical scheme: a high-efficiency cleaning device for processing an insulator core rod comprises a cleaning device main body, a sliding block, a first cleaning mesh screen and a filter screen, wherein a feeding hole is formed in the top of the cleaning device main body, a collecting groove is formed in the cleaning device main body, the top of the collecting groove is connected with one side of a pipeline, the other side of the pipeline is connected with a jet orifice, a discharge hole is formed in the cleaning device main body, a limiting block is arranged in the cleaning device main body, the bottom of the limiting block is connected with the sliding block, the two sides of the sliding block are respectively connected with the first cleaning mesh screen and a second cleaning mesh screen, the upper surfaces of the first cleaning mesh screen and the second cleaning mesh screen are respectively connected with a first plugging plate and a second plugging plate through connecting rods, one sides of the first cleaning mesh screen and the second cleaning mesh screen are respectively connected with a supporting rod, and the bottom of the supporting rod is connected with the cleaning device main body through a telescopic spring, one side and the belt cleaning device bulk phase of filter screen are connected, and the opposite side of belt cleaning device main part is connected with the resistance spring, the bottom of slider is connected with the push rod, and one side of push rod is connected with one side of gangbar to the opposite side of gangbar is connected with the top of main shaft.
Preferably, first washing mesh screen is the level setting, and first washing mesh screen passes through the connecting rod and constitutes revolution mechanic with first jam plate to first jam plate is sliding construction with the stopper.
Preferably, the second washs the mesh screen and sets up for the slope, and the second jam plate on the second washs the mesh screen is located the below of first jam plate to the top of first jam plate and second jam plate is smooth arc structure.
Preferably, the first cleaning mesh screen, the second cleaning mesh screen and the sliding block form a rotating structure, the first cleaning mesh screen, the second cleaning mesh screen and the supporting rod are connected in a fitting manner, and the supporting rod and the cleaning device main body form a telescopic structure through a telescopic spring.
Preferably, the filter screen is the slope setting, and the filter screen uses the push rod as central symmetry and distributes to filter screen one side and belt cleaning device main part constitute revolution mechanic, and the filter screen opposite side passes through the resistance spring and constitutes extending structure with the belt cleaning device main part simultaneously.
Preferably, the limiting block and the sliding block form a clamping connection, the sliding block and the push rod are of an integrated structure, and the push rod and the main shaft form a rotating structure through the linkage rod.
Compared with the prior art, the beneficial effects of the utility model are that: the high-efficiency cleaning device for processing the insulator core rod,
1. two symmetrical cleaning mesh screens are arranged in the cleaning device main body, when the first cleaning mesh screen works, the first blocking plate is driven to divide a feeding port, so that the insulator core rod falls on the first cleaning mesh screen for cleaning, when the first cleaning mesh screen is piled up more, the first cleaning mesh screen can automatically discharge the insulator core rod, then the second cleaning mesh screen can intervene in the work, so that the cleaning device main body can continuously clean the insulator core rod, and the work efficiency is improved;
2. be provided with the filter screen in the inside of belt cleaning device main part, can separate the piece that uses the back flowing water the inside for inside the water after the filtration can flow to the collection tank, through the pipeline from the jet blowout, be favorable to the reuse of water resource, avoid extravagant.
Drawings
FIG. 1 is a schematic view of the overall front cross-sectional structure of the present invention;
FIG. 2 is a schematic view of the overall side view cross-section structure of the present invention;
fig. 3 is a schematic view of the left side connecting structure of the support rod and the first cleaning mesh screen of the present invention;
fig. 4 is a schematic view of the overlooking connection structure of the push rod and the linkage rod of the present invention.
In the figure: 1. a cleaning device main body; 2. a feeding port; 3. a pipeline; 4. an ejection port; 5. collecting tank; 6. a slider; 7. a first cleaning mesh screen; 8. a second cleaning mesh screen; 9. a first blocking plate; 10. a second jam plate; 11. a discharge port; 12. a support bar; 13. a tension spring; 14. a filter screen; 15. a resistance spring; 16. a push rod; 17. a linkage rod; 18. a main shaft; 19. a limiting block; 20. a connecting rod.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
Referring to fig. 1-4, the present invention provides a technical solution: a high-efficiency cleaning device for processing an insulator core rod comprises a cleaning device main body 1, a sliding block 6, a first cleaning mesh 7 and a filter screen 14, wherein a feeding port 2 is formed in the top of the cleaning device main body 1, a collecting groove 5 is formed in the cleaning device main body 1, the top of the collecting groove 5 is connected with one side of a pipeline 3, the other side of the pipeline 3 is connected with a jet opening 4, a discharging port 11 is formed in the cleaning device main body 1, a limiting block 19 is arranged in the cleaning device main body 1, the bottom of the limiting block 19 is connected with the sliding block 6, the two sides of the sliding block 6 are respectively connected with the first cleaning mesh 7 and a second cleaning mesh 8, the upper surfaces of the first cleaning mesh 7 and the second cleaning mesh 8 are respectively connected with a first plugging plate 9 and a second plugging plate 10 through connecting rods 20, and one sides of the first cleaning mesh 7 and the second cleaning mesh 8 are respectively connected with a supporting rod 12, the bottom of the supporting rod 12 is connected with the cleaning device body 1 through a telescopic spring 13, one side of the filter screen 14 is connected with the cleaning device body 1, the other side of the cleaning device body 1 is connected with a resistance spring 15, the bottom of the sliding block 6 is connected with a push rod 16, one side of the push rod 16 is connected with one side of a linkage rod 17, and the other side of the linkage rod 17 is connected with the top of a main shaft 18.
First washing mesh screen 7 sets up for the level, and first washing mesh screen 7 constitutes revolution mechanic through connecting rod 20 and first jam plate 9 to first jam plate 9 is sliding construction with stopper 19, is favorable to first jam plate 9 to the cutting apart of pan feeding mouth 2, makes the insulator plug clear up in first washing mesh screen 7.
The second washs the mesh screen 8 and sets up for the slope, and the second jam plate 10 on the second washs the mesh screen 8 is located the below of first jam plate 9 to the top of first jam plate 9 and second jam plate 10 is glossy arc structure, is favorable to the replacement of position between first jam plate 9 and the second jam plate 10.
First washing mesh screen 7 and second washing mesh screen 8 constitute revolution mechanic with slider 6, and first washing mesh screen 7 and second washing mesh screen 8 are connected for the laminating with bracing piece 12 to bracing piece 12 passes through expanding spring 13 and constitutes extending structure with belt cleaning device main part 1, is favorable to follow-up first washing mesh screen 7 to do the discharge during operation to the insulator plug, and second washing mesh screen 8 can intervene the clearance work.
Filter screen 14 is the slope setting, and filter screen 14 uses push rod 16 as central symmetry and distributes to filter screen 14 one side and belt cleaning device main part 1 constitute revolution mechanic, and 14 opposite sides of filter screen pass through resistance spring 15 simultaneously and constitute extending structure with belt cleaning device main part 1, are favorable to filter the waste water after the filter screen 14 is used.
The limiting block 19 and the sliding block 6 are connected in a clamping mode, the sliding block 6 and the push rod 16 are of an integrated structure, the push rod 16 and the main shaft 18 form a rotating structure through the linkage rod 17, the push rod 16 is favorable for driving the sliding block 6 to shake at the bottom of the limiting block 19, and cleaning work is thorough.
The working principle is as follows: according to the figures 1-4, firstly, a worker needs to place the cleaning device main body 1 at a proper position, then the cleaning device main body 1 is opened to enable water flow to be sprayed out from the jet opening 4, then insulator core rods are sequentially placed into the material inlet 2, so that the insulator core rods fall into the first cleaning mesh sieve 7 through the blocking of the first blocking plate 9, meanwhile, a motor on the outer side of the cleaning device main body 1 is opened, the motor drives the push rod 16 to move back and forth through the main shaft 18 and the linkage rod 17, so that the push rod 16 drives the slide block 6 to move back and forth at the bottom of the limiting block 19, the first cleaning mesh sieve 7 and the second cleaning mesh sieve 8 can shake continuously, the insulator core rods are cleaned more cleanly, and when the weight of the insulator core rods in the first cleaning mesh sieve 7 is greater than the elastic support of the telescopic spring 13 on the support rod 12, the first cleaning mesh sieve 7 is inclined, thereby make the insulator plug follow discharge gate 11 roll-off, first washing mesh screen 7 can pass through the first jam plate 9 of connecting rod 20 pulling simultaneously, make second jam plate 10 slide to the top of first jam plate 9 in the promotion of expanding spring 13 and second washing mesh screen 8, thereby make first jam plate 9 cut apart pan feeding mouth 2, make the insulator plug fall into second washing mesh screen 8 and clear up, make first washing mesh screen 7 when doing the discharge work to the insulator plug, second washing mesh screen 8 can intervene the cleaning work after that, make cleaning device main part 1 can be ceaselessly clear up the insulator plug, be favorable to improving work efficiency.
As the water to be cleaned flows down from the bottom of the first and second cleaning screens 7, 8, according to fig. 1-4, there is a greater amount of debris, causing the waste water to fall onto the screen 14, so that the filtering net 14 filters the waste water, the filtered water flows to the inside of the collecting tank 5, when the debris on the upper surface of filter 14 is excessive, filter 14 is caused to compress resistance spring 15, thereby enabling the filter screen 14 to be more inclined, enabling the debris on the filter screen 14 to be automatically discharged, avoiding the filter screen 14 from deteriorating the effect caused by too much accumulated debris, meanwhile, the water collected in the collecting tank 5 is conveyed to the jet orifice 4 through the water pump and the water pipe to be sprayed out again, which is beneficial to the reuse of water resources and avoids waste, the above is the operation of the whole device, and the details which are not described in detail in this specification are well known to those skilled in the art.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.

Claims (6)

1. The utility model provides an efficient belt cleaning device is used in processing of insulator plug, includes belt cleaning device main part (1), slider (6), first washing mesh screen (7) and filter screen (14), its characterized in that: the cleaning device comprises a cleaning device body (1), a feed inlet (2) is arranged at the top of the cleaning device body (1), a collecting groove (5) is formed in the cleaning device body (1), the top of the collecting groove (5) is connected with one side of a pipeline (3), the other side of the pipeline (3) is connected with a jet orifice (4), a discharge outlet (11) is formed in the cleaning device body (1), a limiting block (19) is arranged in the cleaning device body (1), the bottom of the limiting block (19) is connected with a sliding block (6), the two sides of the sliding block (6) are respectively connected with a first cleaning mesh screen (7) and a second cleaning mesh screen (8), the upper surfaces of the first cleaning mesh screen (7) and the second cleaning mesh screen (8) are respectively connected with a first plugging plate (9) and a second plugging plate (10) through connecting rods (20), and one sides of the first cleaning mesh screen (7) and the second cleaning mesh screen (8) are respectively connected with a support rod (12), the bottom of the supporting rod (12) is connected with the cleaning device main body (1) through a telescopic spring (13), one side of the filter screen (14) is connected with the cleaning device main body (1), the other side of the cleaning device main body (1) is connected with a resistance spring (15), the bottom of the sliding block (6) is connected with a push rod (16), one side of the push rod (16) is connected with one side of a linkage rod (17), and the other side of the linkage rod (17) is connected with the top of a main shaft (18).
2. The efficient cleaning device for insulator mandrel machining according to claim 1, wherein: first washing mesh screen (7) are the level setting, and first washing mesh screen (7) constitute revolution mechanic through connecting rod (20) and first jam plate (9) to first jam plate (9) are sliding construction with stopper (19).
3. The efficient cleaning device for insulator mandrel machining according to claim 1, wherein: the second washs mesh screen (8) and sets up for the slope, and second jam plate (10) on second washing mesh screen (8) are located the below of first jam plate (9) to the top of first jam plate (9) and second jam plate (10) is glossy arc structure.
4. The efficient cleaning device for insulator mandrel machining according to claim 1, wherein: first washing mesh screen (7) and second washing mesh screen (8) constitute revolution mechanic with slider (6), and first washing mesh screen (7) and second washing mesh screen (8) are connected for the laminating with bracing piece (12), and bracing piece (12) constitute extending structure through expanding spring (13) and belt cleaning device main part (1).
5. The efficient cleaning device for insulator mandrel machining according to claim 1, wherein: the filter screen (14) is arranged in an inclined mode, the filter screen (14) is symmetrically distributed by taking the push rod (16) as the center, one side of the filter screen (14) and the cleaning device body (1) form a rotating structure, and the other side of the filter screen (14) and the cleaning device body (1) form a telescopic structure through the resistance spring (15).
6. The efficient cleaning device for insulator mandrel machining according to claim 1, wherein: the limiting block (19) and the sliding block (6) form clamping connection, the sliding block (6) and the push rod (16) are of an integrated structure, and the push rod (16) and the main shaft (18) form a rotating structure through the linkage rod (17).
CN202022761263.8U 2020-11-25 2020-11-25 Efficient belt cleaning device is used in processing of insulator plug Active CN213967977U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202022761263.8U CN213967977U (en) 2020-11-25 2020-11-25 Efficient belt cleaning device is used in processing of insulator plug

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202022761263.8U CN213967977U (en) 2020-11-25 2020-11-25 Efficient belt cleaning device is used in processing of insulator plug

Publications (1)

Publication Number Publication Date
CN213967977U true CN213967977U (en) 2021-08-17

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ID=77266245

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202022761263.8U Active CN213967977U (en) 2020-11-25 2020-11-25 Efficient belt cleaning device is used in processing of insulator plug

Country Status (1)

Country Link
CN (1) CN213967977U (en)

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