Cleaning equipment for water treatment agent conveying pipeline of water purification plant

By designing flexible storage components, sealing mechanisms, cleaning auxiliary components, and control and protection components, the problems of low water level and easy damage to the controller in the cleaning equipment for chemical delivery pipelines have been solved, realizing automatic cleaning and precise button operation, and improving the cleaning effect of water purification plants.

CN121004153AActive Publication Date: 2025-11-25THE FIRST ENG OF CHINA RAILWAY 16TH CONSTR BUREAU GROUP +2
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Patent Information

Application Number
CN202511543452.9
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-10-28
Publication Date
2025-11-25
Estimated Expiration
2045-10-28

AI Technical Summary

Technical Problem

The existing water treatment chemical delivery pipeline cleaning equipment in water purification plants lacks auxiliary cleaning structures, which results in the water level not being able to be maintained at a high level, poor cleaning effect, and the controller is prone to damage and the buttons are prone to misoperation.

Method used

A device comprising a flexible storage component, a sealing mechanism, a cleaning auxiliary component, a control and protection component, and a movable cleaning component was designed. Through the cooperation of a servo motor and a solenoid valve, it achieves automatic cleaning of the drug delivery pipeline and protection of the controller.

Benefits of technology

It enables automatic cleaning of the drug delivery pipeline, maintains a high water level, improves cleaning effect, protects the controller, and avoids accidental button operation.

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Abstract

The invention provides water treatment agent conveying pipeline cleaning equipment for a water purification plant, and relates to the technical field of cleaning equipment, the water treatment agent conveying pipeline cleaning equipment comprises an elastic storage part, a sealing mechanism, a cleaning auxiliary part, a control protection part and a movable cleaning part; an auxiliary conveying pipe is fixedly mounted at the top of the medicament conveying pipeline; the elastic storage part is located on the lower left portion of the medicament conveying pipeline. The sealing mechanism is mounted on the left side of the medicament conveying pipeline; the cleaning auxiliary part is mounted on the medicament conveying pipeline, the elastic storage part and the sealing mechanism; the control protection piece is mounted on the elastic storage piece; the movable cleaning part is mounted at the bottom of the medicament conveying pipeline; the sliding speed of the hollow auxiliary ball is basically in direct proportion to water entering the medicament conveying pipeline, so that the water in the medicament conveying pipeline is always at a higher liquid level; the problem that the water level in a to-be-cleaned medicament conveying pipeline cannot be kept high due to the fact that an auxiliary cleaning structure is generally lacked is solved.
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Description

TECHNICAL FIELD

[0001] The present application belongs to the technical field of cleaning equipment, more particularly, relates to a water treatment agent conveying pipeline cleaning equipment for water purification plants. BACKGROUND

[0002] The water treatment agent may remain on the inner wall of the pipeline after conveying, and if not cleaned in time, the remaining agent will react with the newly conveyed agent, resulting in ineffective agent or harmful by-products. Therefore, the water treatment agent conveying pipeline of the water purification plant needs to be cleaned in time after use.

[0003] The current pipeline cleaning equipment still has the following problems: 1. Generally lacks auxiliary cleaning structure, resulting in that the water level in the agent conveying pipeline to be cleaned cannot be kept at a high height, and the inner wall of the agent conveying pipeline cannot be automatically cleaned during cleaning, affecting the cleaning effect of the agent conveying pipeline; 2. Cannot protect the controller, resulting in that the controller is prone to damage, and the keys on the controller are prone to pressing errors. SUMMARY

[0004] The disclosed embodiment relates to a water treatment agent conveying pipeline cleaning equipment for water purification plants, which has an elastic storage member, a sealing mechanism, a cleaning auxiliary member, a control protection member, and a movable cleaning member. The sliding speed of the hollow auxiliary ball is proportional to the water entering the agent conveying pipeline, so that the water in the agent conveying pipeline is always at a high level. At the same time, the hollow auxiliary ball also cleans the inner wall of the agent conveying pipeline, improving the cleaning effect of the agent conveying pipeline. When the electromagnetic valve b needs to be opened, the worker inserts his hand into the pressing circular hole and presses the right control key. At this time, the controller first controls the servo motor to rotate counterclockwise for a period of time, and then controls the electromagnetic valve b to open. The problems of the water level in the agent conveying pipeline to be cleaned cannot be kept at a high height, the inner wall of the agent conveying pipeline cannot be automatically cleaned during cleaning, and the keys on the controller are prone to pressing errors are solved.

[0005] The application provides a water treatment agent conveying pipeline cleaning equipment for a water purification plant, which is used for cleaning the agent conveying pipeline and comprises an elastic storage part, a sealing mechanism, a cleaning auxiliary part, a control protection part and a movable cleaning part.

[0006] In at least some embodiments, the elastic storage part comprises an elastic storage frame, a circular storage shaft and two positioning rings, the circular storage shaft is rotatably arranged on the elastic storage frame, and the two positioning rings are fixedly arranged outside the circular storage shaft.

[0007] In at least some embodiments, the elastic storage part further comprises a servo motor, two cross-shaped mounting frames and two elastic connecting rods, the servo motor is fixedly arranged on the rear side of the elastic storage frame, the output shaft of the servo motor is fixedly connected with the circular storage shaft, the servo motor is electrically connected with the controller, the two cross-shaped mounting frames are fixedly arranged outside the circular storage shaft, the two elastic connecting rods are slidably arranged on the two positioning rings and the two cross-shaped mounting frames, and the inner ends of the two elastic connecting rods are in arc-shaped structure.

[0008] In at least some embodiments, the elastic storage part further comprises two force blocking rings and two spiral springs a, the two force blocking rings are fixedly arranged outside the two elastic connecting rods, the two spiral springs a are sleeved outside the two elastic connecting rods, and the two spiral springs a are located between the two cross-shaped mounting frames and the two force blocking rings.

[0009] In at least some embodiments, the sealing mechanism comprises a sealing disc, a hollow knob and a rubber sealing block, the sealing disc is fixedly arranged on the left side of the agent conveying pipeline, the hollow knob is threadedly connected with the sealing disc, and the rubber sealing block is fixedly arranged in the hollow knob.

[0010] In at least some embodiments, the cleaning auxiliary includes: a circular receiving wheel, a hollow auxiliary ball, a steel wire rope and a spiral spring b; the circular receiving wheel is rotatably installed outside the circular receiving shaft, and the circular receiving wheel is located between two positioning rings; the front and rear sides of the circular receiving wheel are respectively provided with an arc-shaped connecting groove, and the inner ends of the two elastic connecting rods are inserted into the two arc-shaped connecting grooves; the hollow auxiliary ball is slidably installed inside the medicine delivery pipeline; the steel wire rope is installed on the circular receiving wheel, and the steel wire rope passes through the rubber sealing block, and the steel wire rope is further fixedly connected with the hollow auxiliary ball; the spiral spring b is installed outside the steel wire rope, and the spiral spring b is located between the sealing disc and the hollow auxiliary ball, and the left end of the spiral spring b is fixedly connected with the sealing disc.

[0011] In at least some embodiments, the control protection includes: a triangular mounting plate, a circular mounting shaft and a metal protection cover; the triangular mounting plate is provided with two, and the two triangular mounting plates are fixedly installed on the top of the elastic receiving frame; the circular mounting shaft is provided with two, and the two circular mounting shafts are slidably installed on the two triangular mounting plates; the metal protection cover is fixedly installed on the inner end of the two circular mounting shafts, and the bottom of the metal protection cover is in contact with the elastic receiving frame, and the metal protection cover is provided with a pressing circular hole and a receiving groove.

[0012] In at least some embodiments, the control protection further includes: a spiral spring c and a strong magnet; the spiral spring c is provided with two, and the two spiral springs c are sleeved outside the two circular mounting shafts, and the two spiral springs c are located between the two triangular mounting plates and the metal protection cover; the strong magnet is provided with four, and the four strong magnets are fixedly installed on the two triangular mounting plates.

[0013] In at least some embodiments, the movable cleaning part includes: a cleaning auxiliary pipe, a circular guide shaft, a circular mounting ring and an L-shaped cleaning pipe; the cleaning auxiliary pipe is fixedly installed at the bottom of the medicine delivery pipeline; the circular guide shaft is provided with a circle, and the circle of circular guide shafts is fixedly installed at the bottom of the cleaning auxiliary pipe; the circular mounting ring is slidably installed outside the circle of circular guide shafts; the L-shaped cleaning pipe is fixedly installed on the circular mounting ring, and the top end of the L-shaped cleaning pipe is inserted into the cleaning auxiliary pipe, and the bottom of the L-shaped cleaning pipe is in contact with the metal protection cover.

[0014] In at least some embodiments, the movable cleaning part further includes: a rubber sealing ring, a spiral spring d and an electromagnetic valve b; the rubber sealing ring is installed at the top end of the L-shaped cleaning pipe; the spiral spring d is provided with a circle, and the circle of spiral springs d is sleeved outside the circle of circular guide shafts, and the circle of spiral springs d is located between the cleaning auxiliary pipe and the circular mounting ring; the electromagnetic valve b is fixedly installed on the L-shaped cleaning pipe, and the electromagnetic valve b is electrically connected with the controller.

[0015] Compared with the prior art, the present invention has the following beneficial effects: 1. When the external water pipe is connected to the L-shaped cleaning pipe and the controller controls the solenoid valve b to be in the open state, the water in the external water pipe can enter the agent delivery pipeline through the L-shaped cleaning pipe and the cleaning auxiliary pipe, realizing the automatic cleaning of the agent delivery pipeline after use; it also makes it convenient for staff to quickly replace the severely worn rubber sealing block by unscrewing the hollow knob. In addition, the circular guide shaft and circular mounting ring enable the L-shaped cleaning tube to move; the coiled spring d pushes the circular mounting ring, which helps the top of the L-shaped cleaning tube to separate from the bottom of the cleaning auxiliary tube.

[0016] 2. In this invention, when the controller controls the servo motor to rotate counterclockwise for a period of time, the wire rope can loosen, causing the helical spring b to drive the hollow auxiliary ball to move to the right, ensuring that the water entering the drug delivery pipeline through the L-shaped cleaning pipe and the cleaning auxiliary pipe is located on the left side of the hollow auxiliary ball; when the controller controls the solenoid valve b to be in the open state, the water pressure on the left side of the hollow auxiliary ball is greater than the elastic force of the two coils of helical spring a, realizing the intermittent separation of the two coils of elastic connecting rod and the two coils of arc-shaped connecting groove, ensuring that the sliding speed of the hollow auxiliary ball is basically proportional to the water entering the drug delivery pipeline, so that the water in the drug delivery pipeline is always at a high liquid level; at the same time, the hollow auxiliary ball also plays a cleaning role on the inner wall of the drug delivery pipeline, improving the cleaning effect of the drug delivery pipeline; when the controller controls the servo motor to rotate clockwise, the resistance of the hollow auxiliary ball when sliding is less than the elastic force of the two coils of helical spring a, and the circular storage wheel plays a storage role on the wire rope, so that the hollow auxiliary ball can automatically reset.

[0017] 3. When the solenoid valve a needs to be opened, the operator inserts their hand into the pressing hole and then presses the control button in the middle. The two helical springs c are designed so that the metal protective cover can be positioned at the center of the two triangular mounting plates under the action of the two helical springs c, making the pressing hole and the control button in the middle basically concentric. When the solenoid valve a needs to be closed, the operator presses the control button in the middle again. In addition, when solenoid valve b needs to be opened, the operator pulls the metal protective cover to the right, so that the right side of the metal protective cover contacts the two strong magnets on the right. Then, the operator inserts their hand into the pressing hole and presses the control button on the right. At this time, the controller first controls the servo motor to rotate counterclockwise for a period of time, and then controls the solenoid valve b to open. When solenoid valve b needs to be closed, the operator presses the control button on the right again. When the servo motor needs to rotate clockwise to reset the hollow auxiliary ball, the operator pulls the metal protective cover to the left, so that the left side of the metal protective cover contacts the two strong magnets on the left. At this time, the L-shaped cleaning tube moves downward under the action of the receiving groove, allowing gas or a small amount of water in the agent delivery pipeline to be discharged through the gap between the L-shaped cleaning tube and the cleaning auxiliary tube. Then, the operator inserts their hand into the pressing hole and presses the control button on the left. At this time, the controller controls the servo motor to rotate clockwise. When the working time of the servo motor reaches the preset time, the controller controls the servo motor to stop working. Attached Figure Description

[0018] To more clearly illustrate the technical solutions of the embodiments of the present invention, the accompanying drawings of the embodiments will be briefly described below.

[0019] The accompanying drawings described below are only related to some embodiments of the invention and are not intended to limit the invention.

[0020] In the attached diagram: Figure 1 A three-dimensional structural schematic diagram of the present invention is shown; Figure 2 A schematic diagram of the structure of the elastic storage component of the present invention is shown; Figure 3 A schematic diagram of the sealing mechanism and cleaning auxiliary component of the present invention is shown; Figure 4 The present invention is shown. Figure 1 A schematic diagram of the local central section structure; Figure 5 The present invention is shown. Figure 4 A magnified schematic diagram of a portion of region A in the middle; Figure 6 The present invention is shown. Figure 1 A schematic diagram of the top view structure; Figure 7 The present invention is shown. Figure 6 A magnified schematic diagram of a portion of region B in the middle; Figure 8 The present invention is shown. Figure 1 A schematic diagram of the structure from the rear side view; Figure 9 A schematic diagram of the structure of the flexible storage rack, controller, and control protection component of the present invention is shown; Figure 10 A schematic diagram of the structure of the movable cleaning component of the present invention is shown; Figure 11 The present invention is shown. Figure 10 A magnified schematic diagram of a portion of region C in the middle; Figure 12 The present invention is shown. Figure 4 A magnified schematic diagram of the structure of region D in the middle.

[0021] List of reference numerals in the attached diagram: 100. Pharmaceutical delivery pipeline; 200. Auxiliary delivery pipeline; 201. Solenoid valve a; 300. Flexible storage component; 301. Flexible storage rack; 302. Circular storage shaft; 303. Positioning ring; 304. Servo motor; 305. Cross mounting bracket; 306. Flexible connecting rod; 307. Force-bearing retaining ring; 308. Helical spring a; 400. Sealing mechanism; 401. Sealing disc; 402. Hollow knob; 403. Rubber sealing block; 500. Cleaning auxiliary parts; 501. Circular storage wheel; 5011. Arc-shaped connecting groove; 502. Hollow auxiliary ball; 503. Steel wire rope; 504. Helical spring b; 600. Controller; 601. Control buttons; 700. Control and protection components; 701. Triangular mounting plate; 702. Circular mounting shaft; 703. Metal protective cover; 7031. Pressing round hole; 7032. Storage groove; 704. Helical spring c; 705. Strong magnet; 800. Movable cleaning component; 801. Cleaning auxiliary pipe; 802. Circular guide shaft; 803. Circular mounting ring; 804. L-shaped cleaning pipe; 805. Rubber sealing ring; 806. Helical spring d; 807. Solenoid valve b. Detailed Implementation

[0022] To make the objectives, solutions, and advantages of the present invention clearer, the technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Unless otherwise stated, the terms used herein have their ordinary meanings in the art. The same reference numerals in the drawings represent the same parts.

[0023] Example: Please refer to Figures 1 to 12As shown: This invention provides a cleaning device for a water treatment chemical delivery pipeline in a water purification plant, used for cleaning a chemical delivery pipeline 100; it includes: an elastic storage component 300, a sealing mechanism 400, a cleaning auxiliary component 500, a control and protection component 700, and a movable cleaning component 800; an auxiliary delivery pipe 200 is fixedly installed on the top of the chemical delivery pipeline 100, and a solenoid valve a201 is fixedly installed on the auxiliary delivery pipe 200; the elastic storage component 300 is located at the lower left of the chemical delivery pipeline 100; the sealing mechanism 400 is installed on the left side of the chemical delivery pipeline 100; the cleaning auxiliary component 500... Component 500 is installed on the drug delivery pipeline 100, the flexible storage component 300, and the sealing mechanism 400; a controller 600 is installed on the flexible storage component 300, and a row of control buttons 601 is provided on the top of the controller 600, and the solenoid valve a201 is electrically connected to the controller 600; a control protection component 700 is installed on the flexible storage component 300, and the control protection component 700 is used to protect the controller 600; a movable cleaning component 800 is installed at the bottom of the drug delivery pipeline 100, and the cleaning auxiliary component 500 is used to improve the cleaning effect of the movable cleaning component 800.

[0024] In this embodiment of the disclosure, such as Figure 3 , Figure 10 and Figure 11 As shown, the sealing mechanism 400 includes: a sealing disc 401, a hollow knob 402, and a rubber sealing block 403; the sealing disc 401 is fixedly installed on the left side of the drug delivery pipeline 100; the hollow knob 402 is threadedly connected to the sealing disc 401; and the rubber sealing block 403 is fixedly installed inside the hollow knob 402. The movable cleaning component 800 includes: a cleaning auxiliary pipe 801, a circular guide shaft 802, a circular mounting ring 803, and an L-shaped cleaning pipe 804. The cleaning auxiliary pipe 801 is fixedly installed at the bottom of the agent delivery pipeline 100. The circular guide shaft 802 has one ring, and this ring is fixedly installed at the bottom of the cleaning auxiliary pipe 801. The circular mounting ring 803 is slidably installed outside the ring of circular guide shafts 802. The L-shaped cleaning pipe 804 is fixedly installed on the circular mounting ring 803, and the top end of the L-shaped cleaning pipe 804 is inserted into the cleaning auxiliary pipe 801. The bottom of 804 contacts the metal protective cover 703; the movable cleaning component 800 also includes: a rubber sealing ring 805, a helical spring d806, and a solenoid valve b807; the rubber sealing ring 805 is installed at the top of the L-shaped cleaning tube 804; the helical spring d806 has one coil, and the coil of the helical spring d806 is sleeved outside the coil of the circular guide shaft 802, and the coil of the helical spring d806 is located between the cleaning auxiliary tube 801 and the circular mounting ring 803; the solenoid valve b807 is fixedly installed on the L-shaped cleaning tube 804, and the solenoid valve b807 is electrically connected to the controller 600; Its specific functions are as follows: Since the sealing disc 401 is fixedly installed on the left side of the agent delivery pipeline 100, it plays a sealing role on the left side of the agent delivery pipeline 100. When the external water pipe is connected to the L-shaped cleaning pipe 804 and the controller 600 controls the solenoid valve b807 to be in the open state, the water in the external water pipe can enter the agent delivery pipeline 100 through the L-shaped cleaning pipe 804 and the cleaning auxiliary pipe 801, realizing the automatic cleaning of the agent delivery pipeline 100 after use; and since the hollow knob 402 is threadedly connected to the sealing disc 401 and the rubber sealing block 403 is fixedly installed inside the hollow knob 402, it is convenient for the staff to quickly replace the severely worn rubber sealing block 403 by unscrewing the hollow knob 402. Furthermore, since a circular guide shaft 802 is fixedly installed at the bottom of the cleaning auxiliary tube 801, and a circular mounting ring 803 is slidably installed on the outside of the circular guide shaft 802, and the L-shaped cleaning tube 804 is fixedly installed on the circular mounting ring 803, the L-shaped cleaning tube 804 has a movable effect; and since a coil spring d806 is sleeved on the outside of the circular guide shaft 802, and the coil spring d806 is located between the cleaning auxiliary tube 801 and the circular mounting ring 803, it pushes the circular mounting ring 803, which is conducive to the separation of the top end of the L-shaped cleaning tube 804 from the bottom end of the cleaning auxiliary tube 801.

[0025] In this embodiment of the disclosure, such as Figure 2 , Figure 3 , Figure 5 and Figure 7As shown, the flexible storage component 300 includes: a flexible storage frame 301, a circular storage shaft 302, and positioning rings 303; the circular storage shaft 302 is rotatably mounted on the flexible storage frame 301; two positioning rings 303 are provided, and the two positioning rings 303 are fixedly mounted on the outside of the circular storage shaft 302; the flexible storage component 300 also includes: a servo motor 304, a cross mounting bracket 305, and a flexible connecting rod 306; the servo motor 304 is fixedly mounted on the rear side of the flexible storage frame 301, and the output shaft of the servo motor 304 is fixedly connected to the circular storage shaft 302, and the servo motor 304 is electrically connected to the controller 600; two cross mounting brackets 305 are provided, and the two cross mounting brackets 305 are fixedly mounted on the outside of the circular storage shaft 302. The elastic storage component 300 is fixedly installed on the outside of the circular storage shaft 302; the elastic connecting rod 306 has two rings, and the two rings of elastic connecting rod 306 are slidably installed on the two positioning rings 303 and the two cross mounting brackets 305, and the inner end of the two rings of elastic connecting rod 306 has an arc-shaped structure; the elastic storage component 300 also includes: a force-bearing retaining ring 307 and a helical spring a308; the force-bearing retaining ring 307 has two rings, and the two rings of force-bearing retaining ring 307 are fixedly installed on the outside of the two rings of elastic connecting rod 306; the helical spring a308 has two rings, and the two rings of helical spring a308 are sleeved on the outside of the two rings of elastic connecting rod 306, and the two rings of helical spring a308 are located between the two cross mounting brackets 305 and the two rings of force-bearing retaining ring 307; The cleaning auxiliary component 500 includes: a circular collecting wheel 501, a hollow auxiliary ball 502, a steel wire rope 503, and a helical spring b504; the circular collecting wheel 501 is rotatably mounted on the outside of the circular collecting shaft 302, and the circular collecting wheel 501 is located between two positioning rings 303; an arc-shaped connecting groove 5011 is opened on the front and rear sides of the circular collecting wheel 501, and the inner ends of the two elastic connecting rods 306 are inserted into the two arc-shaped connecting grooves 5011; the hollow auxiliary ball... 502 is slidably installed inside the drug delivery pipeline 100; the wire rope 503 is installed on the circular receiving wheel 501, and the wire rope 503 passes through the rubber sealing block 403, and the wire rope 503 is also fixedly connected to the hollow auxiliary ball 502; the helical spring b504 is installed outside the wire rope 503, and the helical spring b504 is located between the sealing disc 401 and the hollow auxiliary ball 502, and the left end of the helical spring b504 is fixedly connected to the sealing disc 401; Its specific function is as follows: Because the helical spring b504 is installed outside the wire rope 503, and the helical spring b504 is located between the sealing disc 401 and the hollow auxiliary ball 502, and the left end of the helical spring b504 is fixedly connected to the sealing disc 401, when the controller 600 controls the servo motor 304 to rotate counterclockwise for a period of time, the wire rope 503 can loosen, causing the helical spring b504 to drive the hollow auxiliary ball 502 to move to the right, ensuring that the water entering the agent delivery pipeline 100 through the L-shaped cleaning pipe 804 and the cleaning auxiliary pipe 801 is located on the left side of the hollow auxiliary ball 502; and because the circular receiving wheel 501 has an arc-shaped connecting groove 5011 on its front and rear sides respectively, and the inner ends of the two elastic connecting rods 306 are inserted into the two arc-shaped connecting grooves 5011, and the two helical springs a308 are located on the two cross mounting brackets 305 and the two force-bearing retaining rings. Between points 307, when the controller 600 controls the solenoid valve b807 to be in the open state, the water pressure on the left side of the hollow auxiliary ball 502 is greater than the elastic force of the two coiled helical springs a308, realizing the intermittent separation of the two coiled elastic connecting rods 306 and the two coiled arc-shaped connecting grooves 5011, ensuring that the sliding speed of the hollow auxiliary ball 502 is basically proportional to the water entering the drug delivery pipeline 100, so that the water in the drug delivery pipeline 100 is always at a high liquid level; at the same time, the hollow auxiliary ball 502 also plays a cleaning role on the inner wall of the drug delivery pipeline 100, improving the cleaning effect of the drug delivery pipeline 100; when the controller 600 controls the servo motor 304 to rotate clockwise, the resistance of the hollow auxiliary ball 502 sliding is less than the elastic force of the two coiled helical springs a308, and the circular storage wheel 501 plays a storage role on the wire rope 503, so that the hollow auxiliary ball 502 can automatically reset.

[0026] In this embodiment of the disclosure, such as Figure 9 and Figure 12As shown, the control protection component 700 includes: a triangular mounting plate 701, a circular mounting shaft 702, and a metal protective cover 703; two triangular mounting plates 701 are provided, and the two triangular mounting plates 701 are fixedly mounted on the top of the elastic storage rack 301; two circular mounting shafts 702 are provided, and the two circular mounting shafts 702 are slidably mounted on the two triangular mounting plates 701; the metal protective cover 703 is fixedly mounted on the inner ends of the two circular mounting shafts 702, and the bottom of the metal protective cover 703 contacts the elastic storage rack 301, and the metal protective cover 703 has a pressing circular hole 7031 and a storage groove 7032; the control protection component 700 also includes: a helical spring c704 and a powerful magnet 705; there are two helical springs c704, which are sleeved on the outside of the two circular mounting shafts 702, and the two helical springs c704 are located between the two triangular mounting plates 701 and the metal protective cover 703; there are four powerful magnets 705, which are fixedly mounted on the two triangular mounting plates 701; wherein, the magnetic force of the two powerful magnets 705 connected to the metal protective cover 703 is greater than the elastic force of the two helical springs c704 after compression, so that the metal protective cover 703 can remain in a stable state after moving to the left or right; Its specific function is as follows: An auxiliary delivery pipe 200 is fixedly installed at the top of the drug delivery pipeline 100, and a solenoid valve a201 is fixedly installed on the auxiliary delivery pipe 200. When the solenoid valve a201 needs to be opened, the operator inserts their hand into the pressing hole 7031 and then presses the central control button 601. Furthermore, because two helical springs c704 are sleeved on the outside of two circular mounting shafts 702, and the two helical springs c704 are located between the two triangular mounting plates 701 and the metal protective cover 703, the metal protective cover 703 is positioned at the center of the two triangular mounting plates 701 under the action of the two helical springs c704, making the pressing hole 7031 and the central control button 601 basically concentric. When the solenoid valve a201 needs to be closed, the operator presses the central control button 601 again. Furthermore, since four powerful magnets 705 are fixedly mounted on two triangular mounting plates 701, when the solenoid valve b807 needs to be opened, the operator pulls the metal protective cover 703 to the right, so that the right side of the metal protective cover 703 contacts the two powerful magnets 705 on the right. Then, the operator inserts their hand into the pressing hole 7031 and presses the control button 601 on the right. At this time, the controller 600 first controls the servo motor 304 to rotate counterclockwise for a period of time, and then controls the solenoid valve b807 to open. When the solenoid valve b807 needs to be closed, the operator presses the control button 601 on the right again. Also, because the metal protective cover 703 has a storage groove 7032, when the servo motor 304 needs to rotate clockwise... When the hollow auxiliary ball 502 is reset, the operator pulls the metal protective cover 703 to the left, so that the left side of the metal protective cover 703 contacts the two strong magnets 705 on the left. At this time, the L-shaped cleaning tube 804 moves downward under the action of the receiving groove 7032, so that the gas or a small amount of water in the agent delivery pipe 100 can be discharged through the gap between the L-shaped cleaning tube 804 and the cleaning auxiliary tube 801. Then the operator inserts his hand into the pressing round hole 7031 and presses the control button 601 on the left. At this time, the controller 600 controls the servo motor 304 to rotate clockwise. When the working time of the servo motor 304 reaches the preset time, the controller 600 controls the servo motor 304 to stop working.

[0027] The specific usage and function of this embodiment are as follows: In use, the elastic storage rack 301 is first fixedly installed with bolts. Then, the external water treatment agent pipeline is connected to the auxiliary delivery pipe 200. Next, the external water pipe is fixedly connected to the L-shaped cleaning pipe 804. When the solenoid valve a201 needs to be opened, the operator inserts their hand into the pressing hole 7031 and then presses the central control button 601. The metal protective cover 703, under the action of two helical springs c704, is positioned at the center of the two triangular mounting plates 701, making the pressing hole 7031 and the central control button 601 essentially concentric. When the solenoid valve a201 needs to be closed, the operator presses the central control button 601 again. When the solenoid valve b807 needs to be opened, the operator... The operator pulls the metal protective cover 703 to the right, making the right side of the metal protective cover 703 contact the two strong magnets 705 on the right side. Then, the operator inserts their hand into the pressing hole 7031 and presses the control button 601 on the right side. At this time, the controller 600 first controls the servo motor 304 to rotate counterclockwise for a period of time, which loosens the wire rope 503, causing the helical spring b504 to drive the hollow auxiliary ball 502 to move to the right, ensuring that the water entering the agent delivery pipeline 100 through the L-shaped cleaning pipe 804 and the cleaning auxiliary pipe 801 is located to the left of the hollow auxiliary ball 502. The controller 600 then controls the solenoid valve b807 to open; water from the external water pipe can then pass through the L-shaped cleaning pipe 804 and the cleaning auxiliary pipe. 801 enters the drug delivery pipeline 100, realizing automatic cleaning of the drug delivery pipeline 100 after use; when the controller 600 controls the solenoid valve b807 to be in the open state, the water pressure on the left side of the hollow auxiliary ball 502 is greater than the elastic force of the two coils of helical spring a308, realizing the intermittent separation of the two coils of elastic connecting rod 306 and the two coils of arc-shaped connecting groove 5011, ensuring that the sliding speed of the hollow auxiliary ball 502 is basically proportional to the water entering the drug delivery pipeline 100, so that the water in the drug delivery pipeline 100 is always at a high liquid level; at the same time, the hollow auxiliary ball 502 also plays a cleaning role on the inner wall of the drug delivery pipeline 100, improving the cleaning effect of the drug delivery pipeline 100; when the solenoid valve When b807 needs to be turned off, the operator presses the control button 601 on the right again; when the servo motor 304 needs to rotate clockwise to reset the hollow auxiliary ball 502, the operator pulls the metal protective cover 703 to the left, so that the left side of the metal protective cover 703 contacts the two strong magnets 705 on the left. At this time, the L-shaped cleaning tube 804 moves downward under the action of the receiving groove 7032, so that the gas or a small amount of water in the agent delivery pipe 100 can be discharged through the gap between the L-shaped cleaning tube 804 and the cleaning auxiliary tube 801. Then the operator inserts his hand into the pressing hole 7031 and presses the control button 601 on the left. At this time, the controller 600 controls the servo motor 304 to rotate clockwise.When the controller 600 controls the servo motor 304 to rotate clockwise, the resistance of the hollow auxiliary ball 502 during sliding is less than the elastic force of the two coiled helical springs a308. The circular storage wheel 501 then stores the wire rope 503, allowing the hollow auxiliary ball 502 to automatically reset. When the servo motor 304 reaches the preset working time, the controller 600 controls the servo motor 304 to stop working. When the rubber sealing block 403 needs to be replaced due to wear, after cleaning the medicine delivery pipeline 100, the operator separates the left end of the wire rope 503 from the circular storage wheel 501, then removes the hollow knob 402 and the rubber sealing block 403 simultaneously. A new hollow knob 402 and rubber sealing block 403 are then installed, allowing the left end of the wire rope 503 to pass through the new rubber sealing block 403. Finally, the left end of the wire rope 503 is fixedly connected to the circular storage wheel 501.

[0028] The following points should be noted in this article: 1. The accompanying drawings of the embodiments disclosed herein only relate to the structures involved in the embodiments disclosed herein; other structures can be referred to in general design.

[0029] 2. Where there is no conflict, the embodiments of this disclosure and the features in the embodiments can be combined with each other to obtain new embodiments.

[0030] The above are merely specific embodiments of this disclosure, but the scope of protection of this disclosure is not limited thereto. Any variations or substitutions that can be easily conceived by those skilled in the art within the scope of the technology disclosed in this disclosure should be included within the scope of protection of this disclosure. Therefore, the scope of protection of this disclosure should be determined by the scope of the claims.

Claims

1. A cleaning device for water treatment chemical delivery pipelines in a water purification plant, used for cleaning chemical delivery pipelines (100); comprising: The device comprises a flexible storage component (300), a sealing mechanism (400), a cleaning auxiliary component (500), a control and protection component (700), and a movable cleaning component (800); characterized in that an auxiliary delivery pipe (200) is fixedly installed on the top of the drug delivery pipe (100), and a solenoid valve a (201) is fixedly installed on the auxiliary delivery pipe (200); the flexible storage component (300) is located at the lower left of the drug delivery pipe (100); the sealing mechanism (400) is installed on the left side of the drug delivery pipe (100); and the cleaning auxiliary component (500) is installed on the drug delivery pipe (100) and the flexible storage component (800). The elastic storage component (300) and sealing mechanism (400) are mounted on the elastic storage component (300), and a row of control buttons (601) is provided on the top of the controller (600), and the solenoid valve a (201) is electrically connected to the controller (600); the control protection component (700) is mounted on the elastic storage component (300), and the control protection component (700) is used to protect the controller (600); the movable cleaning component (800) is mounted on the bottom of the agent delivery pipeline (100), and the cleaning auxiliary component (500) is used to improve the cleaning effect of the movable cleaning component (800).

2. The water treatment agent conveying pipeline cleaning equipment for a water purification plant according to claim 1, characterized in that, The elastic storage component (300) includes: an elastic storage rack (301), a circular storage shaft (302), and a positioning ring (303); the circular storage shaft (302) is rotatably mounted on the elastic storage rack (301); there are two positioning rings (303), and the two positioning rings (303) are fixedly mounted on the outside of the circular storage shaft (302).

3. The water treatment agent conveying pipeline cleaning equipment for a water purification plant according to claim 2, characterized in that, The elastic storage component (300) further includes: a servo motor (304), a cross mounting bracket (305), and an elastic connecting rod (306); the servo motor (304) is fixedly installed on the rear side of the elastic storage bracket (301), and the output shaft of the servo motor (304) is fixedly connected to the circular storage shaft (302), and the servo motor (304) is electrically connected to the controller (600); there are two cross mounting brackets (305), and the two cross mounting brackets (305) are fixedly installed on the outside of the circular storage shaft (302); there are two elastic connecting rods (306), and the two elastic connecting rods (306) are slidably installed on two positioning rings (303) and two cross mounting brackets (305), and the inner ends of the two elastic connecting rods (306) are arc-shaped.

4. The water treatment agent conveying pipeline cleaning equipment for a water purification plant according to claim 3, characterized in that, The elastic storage component (300) further includes: a force-bearing retaining ring (307) and a helical spring a (308); the force-bearing retaining ring (307) has two rings, and the two force-bearing retaining rings (307) are fixedly installed on the outside of the two elastic connecting rods (306); the helical spring a (308) has two rings, and the two helical springs a (308) are sleeved on the outside of the two elastic connecting rods (306), and the two helical springs a (308) are located between the two cross mounting brackets (305) and the two force-bearing retaining rings (307).

5. A water treatment agent conveying pipeline cleaning device for a water purification plant according to claim 3, characterized in that, The sealing mechanism (400) includes: a sealing disc (401), a hollow knob (402), and a rubber sealing block (403); the sealing disc (401) is fixedly installed on the left side of the drug delivery pipeline (100); the hollow knob (402) is threadedly connected to the sealing disc (401); and the rubber sealing block (403) is fixedly installed inside the hollow knob (402).

6. The water treatment agent conveying pipeline cleaning equipment for a water purification plant according to claim 5, characterized in that, The cleaning auxiliary component (500) includes: a circular collecting wheel (501), a hollow auxiliary ball (502), a steel wire rope (503), and a helical spring b (504); the circular collecting wheel (501) is rotatably mounted on the outside of the circular collecting shaft (302), and the circular collecting wheel (501) is located between two positioning rings (303); an arc-shaped connecting groove (5011) is opened on the front and rear sides of the circular collecting wheel (501), and the inner ends of two elastic connecting rods (306) are inserted into the two arc-shaped connecting grooves (5011); the hollow auxiliary ball (502) is slidably installed inside the drug delivery pipeline (100); the wire rope (503) is installed on the circular receiving wheel (501), and the wire rope (503) passes through the rubber sealing block (403), and the wire rope (503) is also fixedly connected to the hollow auxiliary ball (502); the helical spring b (504) is installed outside the wire rope (503), and the helical spring b (504) is located between the sealing disc (401) and the hollow auxiliary ball (502), and the left end of the helical spring b (504) is fixedly connected to the sealing disc (401).

7. A water treatment agent conveying pipeline cleaning device for a water purification plant according to claim 2, characterized in that, The control and protection component (700) includes: a triangular mounting plate (701), a circular mounting shaft (702), and a metal protective cover (703); there are two triangular mounting plates (701), and the two triangular mounting plates (701) are fixedly mounted on the top of the elastic storage rack (301); there are two circular mounting shafts (702), and the two circular mounting shafts (702) are slidably mounted on the two triangular mounting plates (701); the metal protective cover (703) is fixedly mounted on the inner end of the two circular mounting shafts (702), and the bottom of the metal protective cover (703) is in contact with the elastic storage rack (301), and the metal protective cover (703) is provided with a pressing circular hole (7031) and a storage groove (7032).

8. A water treatment agent conveying pipeline cleaning device for a water purification plant according to claim 7, characterized in that, The control protection component (700) further includes: a helical spring c (704) and a powerful magnet (705); there are two helical springs c (704), and the two helical springs c (704) are sleeved on the outside of the two circular mounting shafts (702), and the two helical springs c (704) are located between the two triangular mounting plates (701) and the metal protective cover (703); there are four powerful magnets (705), and the four powerful magnets (705) are fixedly installed on the two triangular mounting plates (701).

9. A water treatment agent conveying pipeline cleaning device for a water purification plant according to claim 7, characterized in that, The movable cleaning component (800) includes: a cleaning auxiliary tube (801), a circular guide shaft (802), a circular mounting ring (803), and an L-shaped cleaning tube (804); the cleaning auxiliary tube (801) is fixedly installed at the bottom of the drug delivery pipeline (100); the circular guide shaft (802) has a ring, and the ring of circular guide shafts (802) is fixedly installed at the bottom of the cleaning auxiliary tube (801); the circular mounting ring (803) is slidably installed outside the ring of circular guide shafts (802); the L-shaped cleaning tube (804) is fixedly installed on the circular mounting ring (803), and the top end of the L-shaped cleaning tube (804) is inserted into the cleaning auxiliary tube (801), and the bottom end of the L-shaped cleaning tube (804) is in contact with the metal protective cover (703).

10. A water treatment agent conveying pipeline cleaning device for a water purification plant according to claim 9, characterized in that, The movable cleaning component (800) further includes: a rubber sealing ring (805), a helical spring d (806), and a solenoid valve b (807); the rubber sealing ring (805) is installed at the top of the L-shaped cleaning tube (804); the helical spring d (806) has one coil, and the coil of the helical spring d (806) is sleeved outside the coil of the circular guide shaft (802), and the coil of the helical spring d (806) is located between the cleaning auxiliary tube (801) and the circular mounting ring (803); the solenoid valve b (807) is fixedly installed on the L-shaped cleaning tube (804), and the solenoid valve b (807) is electrically connected to the controller (600).

Citation Information

Patent Citations

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