CN210317384U - Coal mine transformer with dust removal function - Google Patents
Coal mine transformer with dust removal function Download PDFInfo
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- CN210317384U CN210317384U CN201920955371.3U CN201920955371U CN210317384U CN 210317384 U CN210317384 U CN 210317384U CN 201920955371 U CN201920955371 U CN 201920955371U CN 210317384 U CN210317384 U CN 210317384U
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- sponge layer
- cleaning plate
- dust removal
- movable box
- coal mine
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Abstract
The utility model discloses a colliery transformer with dust removal function, including basement shell, fan and pivot, clean board is installed to basement shell's periphery, and the front surface of clean board is connected with the control panel, basement shell's top is connected with the movable box, first sponge layer is all installed to inside both sides around the clean board, and the inside second sponge layer of all installing in the left and right sides of clean board, the mouth of blowing has been seted up to the rear surface of movable box, and the top of the mouth of blowing is provided with sprays the mouth, the pivot runs through the inside and the stopper interconnect of clean board, and the stopper is through pivot and control panel interconnect, the draw-in groove has all been seted up on the junction surface of second sponge layer and first sponge layer and clean board. This colliery transformer with dust removal function removes dust through cleaning plate and movable box to colliery transformer's upper surface and outer wall, has improved the security of clean mode when having saved a large amount of manpower and materials.
Description
Technical Field
The utility model relates to a colliery transformer technical field specifically is a colliery transformer with dust removal function.
Background
The coal mine transformer is specially used in the coal mine exploitation field, the methane development field and other dangerous environments, the adopted shell is firm in material, lighter in weight, smaller in size, and has certain explosion-proof performance and high stability compared with a conventional transformer, and the transformer is a specific transformer with pertinence in material and shape.
Due to the particularity of the working environment of the coal mine transformer, a plurality of dust particles floating in the air are accumulated on the surface of the coal mine transformer frequently in the working process of the coal mine transformer, the air vent is possibly blocked, the subsequent work is influenced, and certain danger exists, so that the dust removal on the surface of the coal mine transformer is indispensable work.
The conventional coal mine transformer dust removal mode generally utilizes manpower, and is cleaned manually by workers or is used for removing dust by means of external wind power, so that the operation is complicated, the resource waste is easily caused, and the conventional coal mine transformer dust removal mode cannot ensure that each region of the transformer is cleaned while time and labor are saved.
Disclosure of Invention
An object of the utility model is to provide a colliery transformer with dust removal function to solve the clean dynamics of the conventional colliery transformer dust removal mode that proposes in the above-mentioned background art and cause the problem of wasting of resources easily inadequately and the operation mode is complicated.
In order to achieve the above object, the utility model provides a following technical scheme: a coal mine transformer with a dust removal function comprises a base shell, a fan and a rotating shaft, wherein a cleaning plate is installed on the periphery of the base shell, a first water inlet is installed on the left side of the cleaning plate, a control plate is connected to the front surface of the cleaning plate, a movable box is connected to the upper portion of the base shell, a second water inlet is formed in the front surface of the movable box, the fan is connected to the left side of the base shell, a blowing pipeline is installed below the fan, an oil storage box is installed above the base shell, a sliding groove is formed in the upper surface of the base shell, a rail is arranged inside the sliding groove, a transmission belt is connected to the periphery of the rail, the upper surface of the transmission belt is connected with the bottom of the movable box, a first sponge layer is installed inside the front side and the back side of the cleaning plate, and a second sponge layer is installed inside the left, and first sponge layer and second sponge layer all with first water inlet interconnect, the mouth of blowing has been seted up to the rear surface of activity case, and the top of the mouth of blowing is provided with sprays the mouth, the pivot runs through the inside and the stopper interconnect of cleaning plate, and the stopper passes through pivot and control panel interconnect, the draw-in groove has all been seted up on the junction surface of second sponge layer and first sponge layer and cleaning plate.
Preferably, the cleaning plate and the substrate shell form a sliding structure, and the cleaning plate, the second sponge layer and the first sponge layer form a dismounting and mounting structure.
Preferably, the control panel is evenly distributed with 2 on the front side, the back side, the left side and the right side of the cleaning plate, the control panel and the cleaning plate form a sliding structure, and the control panel and the cleaning plate form a rotating structure through a rotating shaft.
Preferably, the blowing pipe is provided with a folding telescopic structure, the right end of the blowing pipe is connected with the movable box, and the movable box and the base shell form a sliding structure through the sliding groove.
Preferably, the transmission belt and the track form a sliding structure, the width of the transmission belt is the same as that of the sliding chute and the track, and the transmission belt and the movable box form a transmission structure.
Preferably, the air blowing port and the spraying port are equally spaced apart from each other on the rear surface of the movable box, the air blowing port and the air blowing pipe are connected to each other, and the spraying port and the second water inlet are connected to each other.
Compared with the prior art, the beneficial effects of the utility model are that: the coal mine transformer with the dust removal function,
1. the operation mode is simple, dust is removed from the outer part and the upper surface of the coal mine transformer through the cleaning plate and the movable box, workers do not need to wipe the dust block by block, a large amount of manpower and material resources can be saved, and compared with manual cleaning, the cleaning mode of the device is safer;
2. the cleaning plate can slide up and down on the periphery of the substrate shell, and the cleaning plate is cleaned by using sponge, the sponge is soft in structure, can adapt to the uneven structure of the surface of the coal mine transformer, and can wipe more corners which are inconvenient to wipe on the periphery of the substrate shell;
3. the stool has two choices of wind power dust removal and clear water dust removal, and the staff can select more suitable clean mode as the circumstances, slides from side to side in the top of basement shell through the movable box to clean each region to coal mine transformer upper surface.
Drawings
FIG. 1 is a schematic view of the overall structure of the present invention;
FIG. 2 is a schematic view of the overall top view structure of the present invention;
FIG. 3 is a schematic view of the structure of the movable box of the present invention in a rear view when it is connected with the transmission belt;
FIG. 4 is a schematic view of the control panel and the limiting block of the present invention rotating in a overlooking structure;
fig. 5 is the utility model discloses stopper and draw-in groove are connected and are looked the structure schematic diagram mainly.
In the figure: 1. a substrate housing; 2. a second sponge layer; 3. cleaning the plate; 4. a first water inlet; 5. a control panel; 6. a movable box; 7. a second water inlet; 8. a fan; 9. a blowing duct; 10. an oil storage tank; 11. a chute; 12. a track; 13. a transmission belt; 14. a first sponge layer; 15. an air blowing port; 16. a spray port; 17. a rotating shaft; 18. a limiting block; 19. a clamping groove.
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. 1-5, the present invention provides a technical solution: a coal mine transformer with a dust removal function comprises a substrate shell 1, a second sponge layer 2, a cleaning plate 3, a first water inlet 4, a control plate 5, a movable box 6, a second water inlet 7, a fan 8, an air blowing pipeline 9, an oil storage box 10, a sliding groove 11, a rail 12, a transmission belt 13, a first sponge layer 14, an air blowing port 15, a spraying port 16, a rotating shaft 17, a limiting block 18 and a clamping groove 19, wherein the cleaning plate 3 is installed on the periphery of the substrate shell 1, the first water inlet 4 is installed on the left side of the cleaning plate 3, the control plate 5 is connected to the front surface of the cleaning plate 3, the movable box 6 is connected to the upper portion of the substrate shell 1, the second water inlet 7 is arranged on the front surface of the movable box 6, the fan 8 is connected to the left side of the substrate shell 1, the air blowing pipeline 9 is installed below the fan 8, the oil storage box 10 is installed above the substrate shell 1, and the, the inside of spout 11 is provided with track 12, and the periphery of track 12 is connected with drive belt 13, and the upper surface of drive belt 13 and the bottom interconnect of activity case 6, inside first sponge layer 14 of all installing in both sides around clean board 3, and inside second sponge layer 2 of all installing in the left and right sides of clean board 3, and first sponge layer 14 and second sponge layer 2 all with first water inlet 4 interconnect, the mouth of blowing 15 has been seted up to the rear surface of activity case 6, and the top of the mouth of blowing 15 is provided with spray opening 16, pivot 17 runs through the inside and the stopper 18 interconnect of clean board 3, and stopper 18 is through pivot 17 and control panel 5 interconnect, draw-in groove 19 has all been seted up on the junction surface of second sponge layer 2 and first sponge layer 14 and clean board 3.
Blow the pipeline 9 and set up to folding extending structure, and the right-hand member and the movable box 6 interconnect of pipeline 9 of blowing to movable box 6 passes through spout 11 and constitutes sliding construction with basement shell 1, when movable box 6 slides in the top of basement shell 1, can stimulate and blow pipeline 9 and move simultaneously, can not take place the restriction, and movable box 6 can control the dust removal position of mouth 15 of blowing and mouth 16 that sprays.
The transmission belt 13 and the rail 12 form a sliding structure, the width of the transmission belt 13 is the same as the width of the sliding groove 11 and the rail 12, the transmission belt 13 and the movable box 6 form a transmission structure, the transmission belt 13 can block dust, so that the dust cannot fall into the inside of the substrate shell 1, and the transmission belt 13 can move along with the movable box 6 at the same time, and cannot limit the movement of the movable box 6.
The equal interval distribution in activity case 6's rear surface of mouth 15 and the mouth 16 of blowing, and mouth 15 and the 9 interconnect of blowing to spray mouth 16 and second water inlet 7 interconnect, the staff can select to carry out wind-force dust removal or clear water dust removal to the top of this device as the case requires, and the dust removal dynamics of different dust removal modes is different, and the situation that is suitable for is also different.
The working principle is as follows: when workers need to clean the mining transformer, the main body part of the mining transformer is firstly cleaned, as shown in fig. 1 and fig. 2, the cleaning plate 3 is sleeved on the periphery of the base shell 1, the second sponge layer 2 and the first sponge layer 14 are installed inside the cleaning plate, the first water inlet 4 is connected with clear water, the second sponge layer 2 and the first sponge layer 14 inside the cleaning plate are wetted, chemical cleaning agents can be added if necessary to enhance the cleaning capability of the cleaning plate 3, the water flow is stopped to be led in before the second sponge layer 2 and the first sponge layer 14 are wetted and the water flow does not overflow, then the workers can smoothly pull the cleaning plate 3 through the pulling plate on the outer side of the cleaning plate 3 to enable the cleaning plate 3 to slide up and down on the periphery of the base shell 1, and the base shell 1 is cleaned through the wetted second sponge layer 2 and the first sponge layer 14;
then, the working personnel need to clean the upper surface of the mining transformer and the outer side of the oil storage tank 10, the movable tank 6 can slide in the sliding chute 11, the working personnel need to selectively wash the upper surface of the mining transformer with clear water or remove dust with wind power according to the situation, the arrangement mode of the air blowing port 15 and the spraying port 16 is shown in figure 3, when the wind power is used for removing dust, the working personnel need to open the left fan 8, the fan 8 blows air to enter the movable tank 6 through the air blowing pipeline 9 and then blows the air outwards through the air blowing port 15, the working personnel can pull the movable tank 6 to control the direction of the air blowing port 15, so that the air flow can be blown to each area above the mining transformer, as shown in figure 2, the driving belt 13 is laid on the periphery of the rail 12, the driving belt 13 is connected with the movable tank 6, and when the movable tank 6 slides, the driving belt 13 below is driven to move on the periphery of the rail, the transmission belt 13 and the rail 12 can prevent a large amount of dust from falling into the substrate shell 1, and protect the substrate shell 1;
when the upper surface of the mining transformer needs to be flushed by clean water, workers need to introduce the clean water into the second water inlet 7, spray water to the upper surface of the mining transformer through the spray opening 16, and can control the spray direction of the clean water through the sliding movable box 6 to further clean the upper surface of the mining transformer;
the sponge material has high softness while ensuring the cleaning capability, and can be well cleaned to each corner outside the substrate shell 1, but is also easy to be damaged, so when the second sponge layer 2 and the first sponge layer 14 need to be replaced, a worker firstly needs to rotate the control panel 5, as shown in fig. 5, the limiting block 18 is positioned inside the clamping groove 19 in a stable state, and the second sponge layer 2 and the first sponge layer 14 are fixed, so that the second sponge layer 2 and the first sponge layer 14 cannot be loosened from the connection with the cleaning panel 3 in the working process, as shown in fig. 4, after the control panel 5 is rotated in the replacement process, the control panel 5 drives the limiting block 18 to rotate through the rotating shaft 17, the control panel 5 is rotated from a vertical state to a horizontal state, the limiting block 18 is the same as the horizontal position of the clamping groove 19, and the worker can pull the control panel 5 outwards, make stopper 18 break away from the inside of draw-in groove 19, break away from the restriction to second sponge layer 2 and first sponge layer 14, make the staff upwards take out second sponge layer 2 and first sponge layer 14 or change downwards, change for new second sponge layer 2 and first sponge layer 14 after, put them back the inside of cleaning plate 3 again, inwards press control panel 5 and make stopper 18 reenter the inside of draw-in groove 19, drive stopper 18 through rotation control panel 5 and rotate simultaneously, until with draw-in groove 19 mutually perpendicular, second sponge layer 2 and first sponge layer 14 are fixed in the inside of cleaning plate 3 again this moment.
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 a coal mine transformer with dust removal function, includes basement shell (1), fan (8) and pivot (17), its characterized in that: the cleaning device is characterized in that a cleaning plate (3) is installed on the periphery of the base shell (1), a first water inlet (4) is installed on the left side of the cleaning plate (3), a control plate (5) is connected to the front surface of the cleaning plate (3), a movable box (6) is connected to the upper portion of the base shell (1), a second water inlet (7) is arranged on the front surface of the movable box (6), a fan (8) is connected to the left side of the base shell (1), a blowing pipeline (9) is installed below the fan (8), an oil storage box (10) is installed above the base shell (1), a sliding groove (11) is formed in the upper surface of the base shell (1), a rail (12) is arranged inside the sliding groove (11), a driving belt (13) is connected to the periphery of the rail (12), and the upper surface of the driving belt (13) is connected to the bottom of the movable box (6, first sponge layer (14) are all installed to inside both sides around cleaning plate (3), and second sponge layer (2) are all installed to inside the left and right sides of cleaning plate (3) to first sponge layer (14) and second sponge layer (2) all with first water inlet (4) interconnect, mouth (15) of blowing has been seted up to the rear surface of activity case (6), and the top of mouth (15) of blowing is provided with sprays mouth (16), pivot (17) run through the inside and stopper (18) interconnect of cleaning plate (3), and stopper (18) are through pivot (17) and control panel (5) interconnect, draw-in groove (19) have all been seted up on the junction surface of second sponge layer (2) and first sponge layer (14) and cleaning plate (3).
2. The coal mine transformer with the dust removal function as claimed in claim 1, wherein: the cleaning plate (3) and the substrate shell (1) form a sliding structure, and the cleaning plate (3), the second sponge layer (2) and the first sponge layer (14) form a dismounting and mounting structure.
3. The coal mine transformer with the dust removal function as claimed in claim 1, wherein: control panel (5) are equallyd divide cloth and are had 2 in both sides and the left and right sides around cleaning plate (3), and control panel (5) and cleaning plate (3) constitute sliding construction to control panel (5) constitute rotating-structure through pivot (17) and cleaning plate (3).
4. The coal mine transformer with the dust removal function as claimed in claim 1, wherein: the blowing pipeline (9) is of a folding telescopic structure, the right end of the blowing pipeline (9) is connected with the movable box (6) mutually, and the movable box (6) and the base shell (1) form a sliding structure through the sliding groove (11).
5. The coal mine transformer with the dust removal function as claimed in claim 1, wherein: the transmission belt (13) and the track (12) form a sliding structure, the width of the transmission belt (13) is the same as that of the sliding chute (11) and the track (12), and the transmission belt (13) and the movable box (6) form a transmission structure.
6. The coal mine transformer with the dust removal function as claimed in claim 1, wherein: the air blowing ports (15) and the spraying ports (16) are distributed on the rear surface of the movable box (6) at equal intervals, the air blowing ports (15) are connected with the air blowing pipeline (9) mutually, and the spraying ports (16) are connected with the second water inlets (7) mutually.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201920955371.3U CN210317384U (en) | 2019-06-24 | 2019-06-24 | Coal mine transformer with dust removal function |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN201920955371.3U CN210317384U (en) | 2019-06-24 | 2019-06-24 | Coal mine transformer with dust removal function |
Publications (1)
Publication Number | Publication Date |
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CN210317384U true CN210317384U (en) | 2020-04-14 |
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CN201920955371.3U Active CN210317384U (en) | 2019-06-24 | 2019-06-24 | Coal mine transformer with dust removal function |
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2019
- 2019-06-24 CN CN201920955371.3U patent/CN210317384U/en active Active
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