Ion exchange resin tank cleaning device with limit structure
Technical Field
The utility model belongs to the technical field of resin tank cleaning, and particularly relates to an ion exchange resin tank cleaning device with a limiting structure.
Background
An ion exchange resin tank is an important water treatment device, and is characterized in that various ions in water are removed by using ion exchange resin, so that the water quality is improved, and the working principle of the ion exchange resin tank is based on the ion exchange capability of the ion exchange resin, and when water flows through the resin tank, cations and anions in the water are exchanged with exchangeable ions on the resin, so that the cations and anions are adsorbed by the resin.
The ion exchange resin tank needs to be cleaned inside to keep the performance of the ion exchange resin tank after being used, so that the ion exchange resin tank cleaning device is needed to be used, when the existing resin tank cleaning device is used for cleaning, the spray head used for cleaning only supports unidirectional rotation, and therefore uneven distribution of cleaning water can be caused in the cleaning process, and certain areas can not be fully washed, so that the overall cleaning quality is affected.
Disclosure of utility model
The utility model aims to solve the problems that in the prior art, when a resin tank cleaning device is used for cleaning, a nozzle used for cleaning only supports one-way rotation, so that uneven distribution of cleaning water is possibly caused in the cleaning process, certain areas are possibly not fully washed, and the overall cleaning quality is affected.
In order to achieve the above purpose, the present utility model adopts the following technical scheme:
The ion exchange resin tank cleaning device with the limiting structure comprises a resin tank main body, wherein the top of the resin tank main body is connected with a first flange, the top of the first flange is detachably connected with a second flange through bolts and nuts, and one side of the second flange is provided with a reciprocating mechanism;
The reciprocating mechanism comprises a water pipe, the outer wall of the water pipe is provided with reciprocating threads and is in threaded connection with a thread seat, the bottom of the thread seat is connected with two connecting plates, the bottoms of the two connecting plates are connected with a temporary storage pipe, the inner wall of the water pipe is connected with a fixing frame, the inner wall of the fixing frame is rotationally connected with a cylinder, the outer wall of the cylinder is connected with a plurality of impellers, the inner wall of the cylinder is attached with a moving rod, one end of the moving rod extends out of the cylinder and is connected with the bottom of the inner wall of the temporary storage pipe, sliding grooves are formed in two sides of the inner wall of the cylinder, the outer wall of the sliding grooves are in sliding connection with the inner wall of the sliding grooves, two sides of the outer wall of the temporary storage pipe are connected with a plurality of rotating sleeves, the inner wall of the rotating sleeves is rotationally connected with a rotating pipe, one end of the rotating pipe is communicated with a spray head, the other end of the rotating pipe is communicated with the outer wall of the temporary storage pipe and extends into the temporary storage pipe, and a plurality of through grooves are formed in the outer wall of the rotating pipe.
As a further description of the above technical solution:
the outer wall of the water pipe is connected with the inner wall of the second flange, one side of the connecting plate is attached to the outer wall of the water pipe, and one end of the water pipe extends into the temporary storage pipe.
As a further description of the above technical solution:
The outer wall of the water pipe is attached to one side of the temporary storage pipe, one side of the temporary storage pipe is provided with a placing groove, the standing groove inner wall is connected with the sealing washer, sealing washer inner wall and water pipe outer wall laminating.
As a further description of the above technical solution:
the temporary storage pipe is internally provided with a rotating mechanism, the rotating mechanism comprises a connecting pipe, one end of the connecting pipe is communicated with one end of the water pipe, and the cylinder and the moving rod are both positioned in the connecting pipe.
As a further description of the above technical solution:
The outer wall of the connecting pipe is attached with a bevel gear ring, bevel gears are meshed with two sides of the bevel gear ring, and one side of each bevel gear is connected with one end of the rotating pipe.
As a further description of the above technical solution:
the sliding grooves are formed in two sides of the outer wall of the connecting pipe, two sliding blocks are connected to the inner wall of the bevel gear ring, and the outer wall of each sliding block is in sliding connection with the inner wall of each sliding groove.
As a further description of the above technical solution:
And a strong spring is sleeved outside the connecting pipe, and one end of the strong spring is connected with the bottom of the bevel gear ring.
As a further description of the above technical solution:
The other end of the strong spring is connected with a fixed ring, and the inner wall of the fixed ring is connected with the outer wall of the connecting pipe.
In summary, due to the adoption of the technical scheme, the beneficial effects of the utility model are as follows:
1. According to the utility model, by arranging the reciprocating movement mechanism, the impeller and the cylinder can be driven to rotate when high-pressure water flows in the water pipe, the cylinder can be blocked by the sliding strip and the sliding groove to drive the moving rod and the temporary storage pipe to rotate, and the temporary storage pipe can drive the threaded seat to rotate through the connecting plate, so that the threaded seat can drive the temporary storage pipe to move up and down through the connecting plate, the temporary storage pipe can drive the rotating sleeve, the rotating pipe and the spray head to move up and down, and the spray head can move up and down to enable the cleaning water sprayed by the spray head to be more uniform, so that the inner wall of the resin tank main body can be sufficiently washed, and the cleaning effect of the spray head is improved.
2. According to the utility model, by arranging the rotating mechanism, when the temporary storage pipe drives the rotating pipe and the spray head to rotate through the rotating sleeve, the rotating pipe can drive the bevel gear to rotate around the bevel gear ring, so that the bevel gear is meshed with the bevel gear ring to rotate, and the bevel gear rotates to drive the rotating pipe and the spray head to rotate, so that the spray head can rotate, further the spray head can spray more uniformly, the cleaning effect of the spray head is further improved, the cleaning device can complete the cleaning work more quickly, and the cleaning efficiency of the cleaning device is improved.
Drawings
FIG. 1 is a schematic perspective view of the present utility model;
FIG. 2 is a schematic view of a screw seat according to the present utility model;
FIG. 3 is a schematic cross-sectional view of a rotary mechanism according to the present utility model;
FIG. 4 is an enlarged schematic view of the portion A of FIG. 3 according to the present utility model;
FIG. 5 is an enlarged schematic view of the portion B of FIG. 3 according to the present utility model;
FIG. 6 shows a slider according to the present utility model schematic cross-sectional structure;
FIG. 7 is a schematic cross-sectional view of a temporary storage tube according to the present utility model;
FIG. 8 is a schematic view of a slider structure according to the present utility model.
The illustration is that 1, a resin tank main body, 2, a first flange, 3, a second flange, 4, a reciprocating mechanism, 401, a water pipe, 402, a screw seat, 403, a connecting plate, 404, a temporary storage pipe, 405, a fixing frame, 406, a cylinder, 407, an impeller, 408, a placing groove, 409, a sealing ring, 410, a moving rod, 411, a sliding groove, 412, a sliding bar, 5, a rotating mechanism, 501, a connecting pipe, 502, a bevel gear, 503, a sliding groove, 504, a bevel gear ring, 505, a powerful spring, 506, a fixed ring, 507, a sliding block, 6, a rotating pipe, 7, a spray head, 8, a rotating sleeve, 9 and a through groove.
Detailed Description
The following description of the embodiments of the present utility model will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present utility model, but not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
Referring to fig. 1-8, the utility model provides a technical scheme that an ion exchange resin tank cleaning device with a limiting structure comprises a resin tank main body 1, wherein the top of the resin tank main body 1 is connected with a first flange 2, the top of the first flange 2 is detachably connected with a second flange 3 through bolts and nuts, and one side of the second flange 3 is provided with a reciprocating mechanism 4;
The reciprocating mechanism 4 comprises a water pipe 401, the outer wall of the water pipe 401 is provided with reciprocating threads and is connected with a thread seat 402 in a threaded manner, the bottoms of the thread seat 402 are connected with two connecting plates 403, the bottoms of the two connecting plates 403 are connected with a temporary storage pipe 404, the inner wall of the water pipe 401 is connected with a fixing frame 405, the inner wall of the fixing frame 405 is rotationally connected with a cylinder 406, the outer wall of the cylinder 406 is connected with a plurality of impellers 407, the inner wall of the cylinder 406 is attached with a moving rod 410, one end of the moving rod 410 extends out of the cylinder 406 and is connected with the bottom of the inner wall of the temporary storage pipe 404, both sides of the inner wall of the cylinder 406 are connected with sliding strips 412, both sides of the outer wall of the moving rod 410 are provided with sliding grooves 411, the outer wall of the sliding strips 412 are in sliding connection with the inner wall of the sliding grooves 411, the temporary storage tube 404 outer wall both sides all are connected with a plurality of rotating sleeves 8, rotating sleeve 8 inner wall rotates and is connected with the rotating tube 6, rotating tube 6 one end intercommunication has shower nozzle 7, and rotating tube 6 other end and temporary storage tube 404 outer wall intercommunication extend to in the temporary storage tube 404, a plurality of logical grooves 9 have been seted up to rotating tube 6 outer wall, the water pipe 401 outer wall is connected with the second flange 3 inner wall, connecting plate 403 one side is laminated with water pipe 401 outer wall, water pipe 401 one end extends to in the temporary storage tube 404, water pipe 401 outer wall is laminated with temporary storage tube 404 one side, standing groove 408 has been seted up to temporary storage tube 404 one side, standing groove 408 inner wall is connected with sealing washer 409, sealing washer 409 inner wall and water pipe 401 outer wall laminating.
The implementation mode specifically comprises the following steps: after water is pressurized, the water is introduced into the water pipe 401, when the water flows in the water pipe 401, the water flow can drive the impeller 407 to rotate, the impeller 407 rotates to drive the cylinder 406 to rotate, when the cylinder 406 rotates, the sliding bar 412 and the sliding groove 411 can be blocked to drive the moving rod 410 to rotate, the moving rod 410 rotates to drive the temporary storage pipe 404 to rotate, when the temporary storage pipe 404 rotates, the rotating pipe 6 and the spray head 7 can be driven to rotate through the rotating sleeve 8, so that the spray head 7 can rotate for spraying, meanwhile, the temporary storage pipe 404 can drive the thread seat 402 to rotate through the connecting plate 403, the thread seat 402 can rotate on the reciprocating threads arranged on the outer wall of the water pipe 401, so that the thread seat 402 can move up and down along the water pipe 401, when the thread seat 402 moves up and down, the temporary storage pipe 404 can drive the rotating sleeve 8, the rotating pipe 6 and the spray head 7 to move up and down through the connecting plate 403, the shower nozzle 7 reciprocates and can make the washing water that shower nozzle 7 sprayed more even to can make the inner wall of resin jar main part 1 obtain abundant washing, and then improve the cleaning performance of shower nozzle 7, when the temporary storage pipe 404 reciprocates, carriage release 410 can slide from top to bottom in drum 406, consequently can adapt to the removal of temporary storage pipe 404 and can not cause the interference to the removal of temporary storage pipe 404, reciprocating screw thread makes the stroke that screw thread seat 402 risen be less than the distance of bevel gear 502 to the bottom of water pipe 401 and the distance of temporary storage pipe 404 inner wall bottom to connecting pipe 501 bottom, when screw thread seat 402 moves to the minimum position, the water pipe 401 bottom still is located temporary storage pipe 404, sealing washer 409 can seal the gap between water pipe 401 and the temporary storage pipe 404, prevent that washing water from flowing from the gap between water pipe 401 and the temporary storage pipe 404.
The temporary storage pipe 404 is internally provided with a rotating mechanism 5, the rotating mechanism 5 comprises a connecting pipe 501, one end of the connecting pipe 501 is communicated with one end of the water pipe 401, a cylinder 406 and a moving rod 410 are both positioned in the connecting pipe 501, a bevel gear ring 504 is attached to the outer wall of the connecting pipe 501, bevel gears 502 are meshed with two sides of the bevel gear ring 504, one side of each bevel gear 502 is connected with one end of the rotating pipe 6, sliding grooves 503 are formed in two sides of the outer wall of the connecting pipe 501, two sliding blocks 507 are connected with the inner wall of each sliding groove 507 in an inner wall sliding manner, a powerful spring 505 is sleeved outside the connecting pipe 501, one end of the powerful spring 505 is connected with the bottom of the bevel gear ring 504, the other end of the powerful spring 505 is connected with a fixed ring 506, and the inner wall of the fixed ring 506 is connected with the outer wall of the connecting pipe 501.
The embodiment is that when the temporary storage tube 404 drives the rotating tube 6 and the spray head 7 to rotate through the rotating sleeve 8, the rotating tube 6 can drive the bevel gear 502 to rotate around the bevel gear ring 504, the bevel gear 502 can be meshed with the bevel gear ring 504 to rotate in the process of rotating the bevel gear 502 around the bevel gear ring 504, the bevel gear 502 rotates to drive the rotating tube 6 to rotate, the rotating tube 6 rotates to drive the spray head 7 to rotate, the spray head 7 can rotate, further the spray head 7 can spray more uniformly, the cleaning effect of the spray head 7 is further improved, and the cleaning device can complete the cleaning work faster, so that the cleaning efficiency of the cleaning device is improved, the strong spring 505 can support the bevel gear ring 504 through elasticity, the bevel gear ring 504 can be always meshed with the bevel gear 502 in the process of following the upward and downward movement of the temporary storage tube 404, the slide block 507 can limit the bevel gear ring 504 through the slide groove 503, the distance from the bevel gear ring 502 to the opposite fixed ring 506 is larger than that the reciprocating thread to enable the lifting stroke of the threaded seat 402, and the opposite fixed ring 506 cannot interfere with each other in the lifting process of the bevel gear 502.
Working principle: when in use, the cleaning device is integrally inserted into the resin tank main body 1, then the second flange 3 and the first flange 2 are fixed through bolts and nuts, so that the position of the cleaning device can be limited, then water is pressurized and introduced into the water pipe 401, when the water flows in the water pipe 401, the water flow can drive the impeller 407 and the cylinder 406 to rotate, the cylinder 406 can block through the sliding strip 412 and the sliding groove 411 to drive the moving rod 410 and the temporary storage pipe 404 to rotate, when the temporary storage pipe 404 rotates, the rotating pipe 6 and the spray head 7 can be driven to rotate through the rotating sleeve 8, the spray head 7 can be rotated for spray cleaning, meanwhile, the temporary storage pipe 404 can drive the thread seat 402 to rotate on the reciprocating threads arranged on the outer wall of the water pipe 401 through the connecting plate 403, so that the thread seat 402 can move up and down along the water pipe 401 and can drive the temporary storage pipe 404 to move up and down through the connecting plate 403, the temporary storage pipe 404 moves up and down to drive the rotating sleeve 8, the rotating pipe 6 and the spray head 7 to move up and down, so that the water sprayed by the spray head 7 can be more uniform, the water entering the water pipe 401 enters the connecting pipe 501 through the hole at the bottom of the water pipe 401, then flows out of the bottom of the connecting pipe 501 and enters the temporary storage pipe 404, then enters the rotating pipe 6 from the through groove 9 formed in the rotating pipe 6, finally is sprayed out of the spray head 7, when the temporary storage pipe 404 moves up and down, the moving rod 410 can slide up and down in the cylinder 406, so that the movement of the temporary storage pipe 404 can be adapted without interference to the movement of the temporary storage pipe 404, when the temporary storage pipe 404 drives the rotating pipe 6 and the spray head 7 to rotate through the rotating sleeve 8, the rotating pipe 6 can drive the bevel gear 502 to rotate around the bevel gear 504, and the bevel gear 502 is meshed with the bevel gear 504 to rotate, the bevel gear 502 rotates to drive the rotating pipe 6 and the spray head 7, the spray head 7 can rotate, so that the spray head 7 can spray more uniformly, the strong spring 505 can support the bevel gear ring 504 through elasticity, and the bevel gear ring 504 can be always meshed with the bevel gear 502 in the process that the bevel gear 502 moves up and down along with the temporary storage pipe 404.
The foregoing is only a preferred embodiment of the present utility model, but the scope of the present utility model is not limited thereto, and any person skilled in the art, who is within the scope of the present utility model, should make equivalent substitutions or modifications according to the technical scheme of the present utility model and the inventive concept thereof, and should be covered by the scope of the present utility model.