Sewage conveying anti-blocking pipeline

Through the dual-flow chamber structure and automatic dredging mechanism, the problem of sewage transport pipelines is solved, continuous sewage transport is realized, and the transportation efficiency and reliability are improved.

CN120486547AActive Publication Date: 2025-08-15CHANGZHOU KEDE WATER TREATMENT COMPLETE EQUIP CO LTD
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Patent Information

Application Number
CN202510970918.7
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-07-15
Publication Date
2025-08-15
Estimated Expiration
2045-07-15

AI Technical Summary

Technical Problem

Existing sewage transport pipelines are prone to blockage due to accumulation of pollutants after long-term use, resulting in shutdown and dredging, affecting the efficiency and waste of sewage transport.

Method used

A sewage transport anti-blocking pipeline is designed, adopting a dual-flow chamber structure, which automatically switches and blockage and dredges through the diversion assembly and the cleaning assembly. The water filter plate and water volume detector are used to detect blockage. The motor drives the scraper rod to clean the blockage to ensure continuous sewage transportation.

Benefits of technology

It realizes automatic dredging without shutting down when the pipeline is blocked, ensuring normal sewage transport, improving conveying efficiency and continuity, and reducing downtime waiting time.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention belongs to the technical field of sewage treatment pipelines, and particularly relates to a sewage conveying anti-blocking pipeline which comprises a water flow pipe, a box pipe and a sewage containing box are fixedly installed at the top of the water flow pipe, the outer walls of the two sides of the sewage containing box are fixedly connected with the outer wall of the box pipe, and two independent flow cavities are formed in the two sides of the interior of the box pipe; the bottom ends of the two flow cavities, the bottom of the sewage containing box and the top of the water flow pipe are communicated; when one flow cavity is blocked, the flow dividing assembly guides sewage flowing in the water inlet pipe into the other flow cavity, the sewage cleaning assembly dredges the blocked flow cavity, and when one flow cavity is blocked, the sewage is guided into the other flow cavity, so that on one hand, trash components in the flow cavity can be cleaned; on the other hand, normal conveying of the sewage during conveying can be guaranteed, the situation that the sewage needs to be stopped when cleaning and dredging operation needs to be conducted on the flow cavity, the conveying speed of the sewage and the follow-up treatment speed are affected is avoided, and the conveying operation of the sewage is better facilitated.
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Description

Technical Field

[0001] The invention belongs to the technical field of sewage treatment pipelines, in particular to a sewage transportation anti-blocking pipeline. Background Art

[0002] The sewage transportation anti-blocking pipeline is a pipeline system used to transport sewage and can effectively prevent blockage. It has good hydraulic performance and corrosion resistance. It is used to collect and transport mixed sewage such as urban domestic sewage, industrial wastewater and rainwater, and transport it from various blocks and communities to urban sewage treatment plants for treatment.

[0003] A patent application with publication number CN116498831A discloses an anti-blocking water treatment delivery pipeline, which intercepts impurities at the water inlet of the pipeline by setting an anti-blocking interception component. Under the interception treatment of the anti-blocking interception component, large impurities such as dead trees and branches, man-made garbage, etc. are prevented from clogging the pipeline. The rotational motion of the crushing rotor and the relative motion of the interception grid are used to shear and crush them, avoiding the blockage of large impurities. There is no need for manual shutdown for cleaning and maintenance. Small impurities are directly passed into the water treatment and filtration system for filtration treatment, reducing the difficulty of manual maintenance.

[0004] In the current existing technology, when sewage is transported through pipelines, when impurities in the sewage accumulate in the pipelines after a long period of flow, these accumulations will form blockages in the pipelines, causing the pipelines to be unable to continue transporting sewage. At this time, the sewage needs to be intercepted and then the pipelines need to be dredged by a dredging device to ensure the normal use of the pipelines. Since this method requires intercepting the sewage when dredging the pipelines, and waiting for the pipelines to be dredged before continuing to transport the sewage, it not only affects the normal transportation of the sewage but also wastes time.

[0005] To this end, the present invention provides a sewage transportation anti-blocking pipeline. Summary of the Invention

[0006] In order to make up for the deficiencies of the prior art, at least one technical problem raised in the background technology is solved.

[0007] The technical solution adopted by the present invention to solve its technical problem is: a sewage transportation anti-blocking pipe described in the present invention comprises a water flow pipe, a box pipe and a sewage box are fixedly installed on the top of the water flow pipe, and the outer walls of the sewage box on both sides are fixedly connected to the outer walls of the box pipe, and two independent flow cavities are arranged on both sides of the interior of the box pipe, and flow passes between the bottom ends of the two flow cavities and the bottom of the sewage box and the top of the water flow pipe, and filter plates are arranged inside the two flow cavities, and a water inlet pipe is fixedly installed on the top of the box pipe, and a box body is fixedly installed on the outer wall of the water inlet pipe, and a diversion component is provided in the middle position of the interior of the box pipe, and the diversion component is used to drive the sewage to flow into the flow cavity on the other side when the flow cavity on one side is blocked, and a cleaning component is provided inside the two flow cavities, and the cleaning component includes a scraping rod, and the cleaning component is used to drive the scraping rod to dredge the top of the filter plate in the flow cavity when blockage occurs in the flow cavity; When in use, by passing sewage from the water inlet pipe into the box pipe, the sewage will enter one of the flow cavities in the box pipe through the diversion trend of the diversion component. When the sewage enters the flow cavity, the sewage will be filtered by the filter water plate and flow into the water flow pipe. When the impurities in the sewage accumulate in the flow cavity and affect the flow of water in the flow cavity, the diversion component will guide the sewage flowing in the water inlet pipe into another flow cavity by controlling the operation of the diversion component. The cleaning component in one of the flow cavities will drive the scraping rod to dredge the top of the filter plate in the flow cavity, thereby discharging the impurities filtered out of the flow cavity into the sewage box for storage, and removing During sewage operation, when one of the flow cavities is blocked due to the accumulation of impurities, the sewage will be diverted to another flow cavity for operation, and the inside of the blocked flow cavity will be dredged. On the one hand, the impurities in the flow cavity can be cleaned, and on the other hand, the normal transportation of sewage can be ensured, avoiding the need to intercept sewage when the flow cavity needs to be cleared, which affects the transportation and subsequent treatment speed of sewage, and is more conducive to the transportation of sewage. By opening multiple filter holes at the bottom of the sewage box, when the deposits enter the sewage box for storage, part of the sewage in the deposits can also flow through the filter holes to the water pipe to maximize the sewage backflow.

[0008] Preferably, water volume detectors are fixedly installed on the inner walls of the two flow cavities, and the water volume detectors are placed on the top of the water filter plate. When sewage flows through the filter water plate in the flow cavity, the sewage will flow into the water flow pipe through the filter water plate. When the impurities filtered on the top of the filter plate accumulate on the top of the filter plate, the impurities will block the filter holes on the top of the filter plate due to the accumulation, and the speed of water flowing through the filter water plate will slow down. At the same time, the water level placed on the top of the filter plate will rise due to the continuous delivery of water flow. When the water level rises to the position of the water volume detector, it means that the inside of the flow cavity is blocked, and the water volume detector will transmit the detected information into the system, and then the system controls the diversion component to operate, so that the diversion component drives the water flow into another flow cavity, thereby detecting whether the water flow in the flow cavity is blocked.

[0009] Preferably, the diversion component includes a rotating cylinder, which is fixedly mounted on the outer wall of the box pipe, a rotating shaft is fixedly mounted on the output end of the rotating cylinder, a water guide plate is fixedly mounted on the outer wall of the rotating shaft, the outer wall of the water guide plate is slidably connected to the inner wall of the box pipe, the water guide plate is placed directly below the water inlet pipe, both ends of the water guide plate can fit with the inner wall of the box pipe, the water guide plate is placed between the two flow chambers, and when the water level in the flow chamber rises to the water volume detector, the system controls the operation of the rotating cylinder, the rotating cylinder will drive the water guide plate to rotate, and the water guide plate will generate water by rotating When the position changes, the heights of the two ends of the water guide plate will be exchanged, the blocked flow cavity will be blocked, and the other flow cavity will be opened, and the sewage will flow into the other flow cavity through the top of the water guide plate, guiding the flow of sewage. By setting two independent flow cavities, it can be ensured that when a blockage occurs in the pipeline, the sewage can flow normally from the other flow cavity. There is no need to intercept the sewage when a blockage occurs in the pipeline. When the pipeline is unblocked, the sewage will be discharged to ensure the normal conveying speed of sewage, which is more conducive to the sewage transportation operation.

[0010] Preferably, the sewage cleaning component also includes a motor, and there are two motors, which are symmetrically fixed on both sides of the outer wall of the box tube. The output ends of the two motors are fixedly installed with screws, the scraping rod is placed inside the flow cavity, and the bottom of the scraping rod can be rotatably connected to the top of the water filter plate, the outer wall of the scraping rod is rotatably connected to the inner wall of the box tube, and the top of the scraping rod is placed outside the box tube. The tops of the two screws and the tops of the scraping rods are fixedly installed with a first transmission shaft, and a transmission belt is provided between the three first transmission shafts. When blockage occurs in the flow cavity, the sewage is affected by the diversion component. When the water flows into another flow cavity, the motor will rotate the screw. When the screw rotates, it will drive the scraping rod to rotate in the blocked flow cavity through the transmission of the transmission belt. The bottom end of the scraping rod will rotate on the top of the filter plate, thereby scraping the deposits on the top of the filter plate. The deposits on the top of the filter plate will be scraped up from the top of the filter plate by the scraping rod, and the filter holes in the filter plate will be exposed. The water in the flow cavity will flow downward through the exposed filter holes and finally enter the water flow pipe, thereby unblocking the flow of sewage.

[0011] Preferably, the outer walls of the two screws are threadedly connected with a connecting block, and the two connecting blocks are slidably connected to the inner wall of the box tube. The outer wall of the box tube is symmetrically fixed with a water sealing member, and the outer walls of the two connecting blocks are slidably connected to the inner walls of the two water sealing members. A pressure plate is fixedly installed between the two connecting blocks, and the inner wall of the pressure plate is slidably connected with a scraper block. A plurality of pressure-bearing springs are provided between the inner wall of the scraper block and the bottom of the pressure plate. The outer wall of the scraper block is slidably connected to the inner wall of the flow cavity in the box tube, and the outer wall of the scraper rod is slidably connected to the scraper block and the inner wall of the pressure plate. When the screw rotates to drive the scraper rod to scrape the top of the water filter plate, the screw will drive the connecting block downward through thread transmission. When the connecting block moves downward, the connecting block drives the pressure plate downward. The pressure plate will drive the scraper block downward through the elastic support force of the pressure spring, and the scraper block will scrape the inner wall of the flow cavity, thereby scraping down the moisture or impurities attached to the inner wall of the flow cavity, and playing the role of scraping and cleaning the inner wall of the flow cavity. When the scraper block moves downward in the flow cavity, the scraper block will push the sewage in the flow cavity to move downward through the continuous downward movement of the scraper block, and cooperate with the rotation and scraping of the scraper rod on the top of the water filter plate, so that the sewage in the flow cavity will be discharged into the water flow pipe through the filter water plate, accelerating the downstream speed of the sewage in the flow cavity, and playing the role of promoting the flow of sewage in the flow cavity. The water sealing part is provided to seal the box pipe when the connecting block slides in the box pipe to prevent sewage from leaking.

[0012] Preferably, the water filter plate is rotatably connected to the inner wall of the box tube, and the inner wall of the box tube is slidably connected with a rectangular plate. A plurality of return springs are provided between the bottom of the rectangular plate and the inner wall of the box tube. The top of the rectangular plate can fit in contact with the bottom of the water filter plate. A counterweight block is fixedly installed at one end of the water filter plate, and one end of the water filter plate is placed inside the sewage box. When the sewage in the flow cavity flows out through the filter plate by the push of the scraper block, the return spring is pushed downward by pushing the rectangular plate, and one end of the water filter plate will lose the restriction. The water filter plate will rotate on the inner wall of the box tube under the drive of the counterweight block, and one end of the water filter plate will open between the box tube and the sewage box, thereby providing a discharge path for the deposit on the water filter plate.

[0013] Preferably, a pressure rod is fixedly installed on one side of the outer wall of the two connecting blocks, and a pull rod is fixedly installed on the bottom of the rectangular plate. The outer wall of the pull rod is slidably connected to the inner wall of the box tube, and the two pressure rods are respectively placed directly above the two ends of the pull rod and the two can fit in contact. When the connecting block drives the scraping block downward through the screw, the connecting block will drive the pressure rod downward. When the scraping block pushes the sewage in the flow cavity to flow into the water flow pipe through the filter water plate, the bottom of the scraping block has contacted with the top of the scraping rod, and then the driving motor drives the pressure plate to continue to move downward through the screw. Since the bottom of the scraping block has contacted with the top of the scraping rod at this time, the bottom of the scraping block will achieve a limit When the pressure plate moves downward, the pressure plate will squeeze the pressure spring to move toward the scraper block, and the connecting block will drive the pressure rod to continue to move downward. The pressure rod will press the pull rod downward, and the pull rod will pull the moment plate to squeeze the return spring downward. The bottom of the water filter plate will lose its restriction, thereby rotating and opening between the box pipe and the sewage box, thereby driving the water filter plate to rotate and open. At the same time, when the bottom of the scraper block contacts the top of the scraper rod and then controls the water filter plate to open, relative to directly driving the water filter plate to rotate and open when the scraper block moves downward, the scraper block can maximize the discharge of the water flow in the flow cavity, thereby reducing the mixed content of sewage in the deposit.

[0014] The two L-shaped rods are fixedly mounted on both sides of the box tube, and the inner walls of the two rectangular boxes are slidably connected with L-shaped rods. A plurality of return springs are provided between one side of the two L-shaped rods and the inner walls of the two rectangular boxes. The top ends of the two L-shaped rods are dovetail-shaped, and the tops of one end of the two L-shaped rods are provided with an inclined surface. The bottoms of one end of the two pull rods are provided with an inclined surface. The outer walls of the bottom ends of the two L-shaped rods are respectively slidably connected to one end of the two pull rods. A push block is fixedly mounted on the other side of the outer wall of the two connecting blocks, and one end of the push block can be slidably connected to the outer wall of the L-shaped rod. The upper and lower surfaces of one end of the push block are provided with an inclined surface. When the connecting block drives the pressure rod to move downward, the connecting block is simultaneously The L-shaped rod is pushed back to the left by the spring and the push rod is pushed down, and the bottom end of the L-shaped rod is pressed against the bottom end of the L-shaped rod. When the motor drives the screw to reverse, it will drive the scraping rod and the push block to move upward and reset. The deposits on the top of the water filter plate will slide down along the top of the water filter plate and finally slide into the sewage box for storage, which plays the role of slag discharge. When the motor drives the screw to reverse, it will drive the scraping rod to flow in. The reverse rotation in the cavity and the continuous rotation of the scraper rod can also speed up the rotation and push of the larger deposits on the top of the water filter plate, thereby accelerating the sliding speed of the deposits on the water filter plate. When the connecting block drives the push block to move up and contacts the dovetail shape at the top of the L-shaped rod, the push block will push the L-shaped rod backward, and the bottom end of the L-shaped rod will slide open on the top of the pull rod, and the pull rod will lose its limit base. Under the elastic push of the reset spring, the pull rod will reset, and the water filter plate will be pushed by the moment plate to reset and close. By setting it in this way, on the one hand, the water filter plate can be controlled to be closed, and on the other hand, time can be gained for the deposits to slide on the top of the water filter plate.

[0015] The bottom of the water filter plate is fixed with a plate, and the plate is placed under the lower side of the water filter plate. The bottom of the water filter plate can be fitted with the top of the plate, and the inner wall of the plate is slidably connected with a vibration plate. A vibration plate spring is provided between the bottom of the vibration plate and the inner wall of the plate. Triangular blocks are fixedly installed at both ends of the vibration plate, and the two triangular blocks are slidably connected to the box pipe and the inner wall of the plate. When the deposit slides down on the top of the water filter plate, it pushes the triangular blocks upward intermittently. When the triangular block moves up, the upward movement of the triangular block drives the vibration plate to move out from the inside of the plate, and the vibration plate will intermittently push the water filter plate up, and cooperate with the vibration plate spring to pull the gap of the vibration plate to reset, so that the vibration plate can lift the water filter plate in a gap-like manner, so that when the deposit slides down on the top of the water filter plate, a vibration operation is realized on the top of the water filter plate, thereby accelerating the sliding speed of the deposit on the water filter plate and playing the role of vibrating the deposit to slide down.

[0016] Preferably, the outer wall of the box tube is rotatably connected with a rotating rod on both sides, and the bottom ends of the two rotating rods are symmetrically fixedly installed with a shift block, and the outer walls of the two shift blocks are respectively slidably connected to the outer walls of the two triangular blocks, wherein the two first transmission shafts and the tops of the two rotating rods are fixedly installed with a second transmission shaft, and a transmission belt 2 is provided for transmission between the four second transmission shafts, through the setting of the second transmission shaft and the transmission belt 2, when the screw rotates, the screw drives the rotating rod to rotate, and when the rotating rod rotates, the rotating rod drives the shift block to rotate, thereby causing the shift block to push the triangular block to move up, and the triangular block will drive the vibration plate to move up. When the shift block loses contact with the triangular block, the vibration plate spring pulls the vibration plate to reset, and the shift block continues to push the triangular block up and cooperates with the vibration plate spring to continuously drive the vibration plate to reset, thereby realizing the vibration operation of the water filter plate, which plays a role in pushing the triangular block to move up.

[0017] The beneficial effects of the present invention are as follows: 1. The sewage transportation anti-blocking pipeline described in the present invention, when blockage occurs in the flow cavity, the diversion component guides the sewage flowing in the water inlet pipe into another flow cavity, and the cleaning component will dredge the blocked flow cavity. When blockage occurs in one of the flow cavities, the sewage is guided to the other flow cavity. On the one hand, the impurities in the flow cavity can be cleaned, and on the other hand, the normal transportation of the sewage can be ensured, avoiding the need to intercept the sewage when the flow cavity needs to be cleared, which affects the transportation and subsequent treatment speed of the sewage, and is more conducive to the transportation of sewage.

[0018] 2. The sewage conveying anti-blocking pipeline described in the present invention is that when the impurities filtered by the top of the water filter plate accumulate on the top of the water filter plate, the impurities will block the filter holes on the top of the water filter plate due to the accumulation, and the speed of water flowing through the filter plate will slow down. At the same time, the water level of the water flow placed on the top of the water filter plate will rise due to the continuous transportation of the water flow. When the water level rises to the position of the water volume detector, it means that the inside of the flow cavity is blocked. The water volume detector will transmit the detected information into the system, and then the system will control the diversion component to operate, so that the diversion component drives the water flow to enter another flow cavity, thereby detecting whether the water flow in the flow cavity is blocked.

[0019] 3. The sewage conveying anti-blocking pipe described in the present invention is driven by a motor to rotate a screw. When the screw rotates, the screw drives the scraper rod to rotate in the blocked flow cavity through the transmission of the transmission belt 1. The bottom end of the scraper rod rotates on the top of the water filter plate, thereby scraping the deposits on the top of the water filter plate. The deposits on the top of the water filter plate will be scraped up from the top of the water filter plate by the scraping of the scraper rod, and the filter holes in the water filter plate will be exposed. The water in the flow cavity will flow downward through the exposed filter holes and finally enter the water flow pipe, thereby playing a role in unblocking the flow of sewage.

[0020] 4. The sewage conveying anti-blocking pipe described in the present invention, when the screw rotates to drive the scraper rod to scrape the top of the water filter plate, the screw will drive the connecting block downward through the threaded transmission, and when the connecting block moves downward, the connecting block drives the pressure plate to move downward, and the pressure plate will drive the scraper block downward through the elastic support force of the pressure spring, and the scraper block will scrape the inner wall of the flow cavity, thereby scraping down the moisture or impurities attached to the inner wall of the flow cavity. At the same time, through the continuous downward movement of the scraper block, the scraper block will push the sewage in the flow cavity to move downward, and cooperate with the rotation and scraping of the scraper rod on the top of the water filter plate, so that the sewage placed in the flow cavity is discharged into the water flow pipe through the filter water plate, thereby accelerating the downstream speed of the sewage in the flow cavity.

[0021] 5. The sewage conveying anti-blocking pipeline described in the present invention is provided with a second transmission shaft and a second transmission belt. When the screw rotates, the screw drives the rotating rod to rotate, and the rotating rod drives the shift block to rotate, so that the shift block pushes the triangular block to move upward, and the triangular block drives the vibration plate to move upward. When the shift block loses contact with the triangular block, the vibration plate spring pulls the vibration plate to reset. The shift block continuously pushes the triangular block upward and cooperates with the vibration plate spring to continuously drive the vibration plate to reset, thereby realizing the vibration operation of the water filter plate and accelerating the sliding speed of the deposit on the water filter plate. BRIEF DESCRIPTION OF THE DRAWINGS

[0022] The present invention will be further described below with reference to the accompanying drawings.

[0023] Figure 1 It is an overall diagram of the present invention; Figure 2 It is the main figure of the present invention; Figure 3 It is a structural schematic diagram of the water filter plate in the present invention; Figure 4 It is a structural schematic diagram of the L-shaped rod in the present invention; Figure 5 It is a structural schematic diagram of the water guide plate in the present invention; Figure 6 It is a structural schematic diagram of the dirt scraping rod in the present invention; Figure 7 It is a structural schematic diagram of the pressure rod of the present invention; Figure 8 It is a structural schematic diagram of the rectangular plate in the present invention; Figure 9 It is a structural schematic diagram of the pull rod in the present invention; Figure 10 It is a structural diagram of the shift block in the present invention; Figure 11 It is a structural schematic diagram of the vibration plate in the present invention; Figure 12 It is a structural schematic diagram of the water flow pipe in the present invention.

[0024] In the figure: 1. box body; 2. water flow pipe; 3. water inlet pipe; 4. dirt box; 5. motor; 501. screw; 502. connecting block; 503. transmission belt 1; 6. box pipe; 7. rectangular box; 701. L-shaped rod; 702. push block; 703. return block spring; 8. water guide plate; 801. rotary cylinder; 9. scraper block; 901. pressure plate; 902. pressure spring; 10. rotating rod; 1001. transmission belt 2; 1002. dial block; 11. pressure rod; 12. pull rod; 13. dirt scraper rod; 14. water quantity detector; 15. water filter plate; 16. rectangular plate; 1601. reset spring; 17. water sealing part; 18. triangular block; 19. scaffolding plate; 1901. vibration plate; 1902. vibration plate spring; 20. first transmission shaft; 21. second transmission shaft. DETAILED DESCRIPTION

[0025] In order to make the technical means, creative features, objectives and effects achieved by the present invention easier to understand, the present invention is further described below in conjunction with specific implementation methods.

[0026] like Figures 1 to 12As shown, a sewage transportation anti-blocking pipeline described in an embodiment of the present invention includes a water flow pipe 2, a box pipe 6 and a sewage box 4 are fixedly installed on the top of the water flow pipe 2, and the outer walls of the sewage box 4 on both sides are fixedly connected to the outer walls of the box pipe 6. Two independent flow cavities are provided on both sides of the interior of the box pipe 6, and flow passes between the bottom ends of the two flow cavities and the bottom of the sewage box 4 and the top of the water flow pipe 2. A water filter plate 15 is provided inside the two flow cavities, and an inlet pipe 3 is fixedly installed on the top of the box pipe 6. The outer wall of the water inlet pipe 3 is fixedly installed with a box body 1, and a diverter component is provided in the middle position of the interior of the box pipe 6. The diverter component is used to drive the sewage to flow into the flow cavity on the other side when the flow cavity on one side is blocked. A cleaning component is provided inside the two flow cavities, and the cleaning component includes a scraping rod 13. The cleaning component is used to drive the scraping rod 13 to dredge the top of the water filter plate 15 in the flow cavity when blockage occurs in the flow cavity; When the accumulation forms a blockage in the pipeline, it is necessary to intercept the sewage and then dredge the pipeline through a dredging device to ensure the normal use of the pipeline. Since this method requires intercepting the sewage when dredging the pipeline, the sewage transportation operation must be continued after the pipeline is dredged. This not only affects the normal transportation of sewage but also wastes time. When in use, by passing sewage from the water inlet pipe 3 into the box pipe 6, the sewage will enter one of the flow cavities in the box pipe 6 through the diversion trend of the diversion component. When the sewage enters the flow cavity, the sewage will be filtered by the filter water plate 15 and flow into the water flow pipe 2. When the impurities in the sewage accumulate in the flow cavity and affect the flow of water in the flow cavity, by controlling the operation of the diversion component, the diversion component will guide the sewage flowing in the water inlet pipe 3 into another flow cavity through the guide. The cleaning component in one of the flow cavities will drive the scraping rod 13 to dredge the top of the filter plate 15 in the flow cavity, thereby discharging the impurities filtered out of the flow cavity into the sewage box 4 for storage, and performing the decontamination operation. When the accumulation is blocked, the sewage will be diverted to another flow cavity for operation, and the blocked flow cavity will be dredged. On the one hand, the impurities in the flow cavity can be cleaned, and on the other hand, the normal transportation of sewage can be ensured, avoiding the need to intercept sewage when the flow cavity needs to be cleared, which affects the transportation and subsequent treatment speed of sewage, and is more conducive to the transportation of sewage. By opening multiple filter holes at the bottom of the sewage box 4, when the deposit enters the sewage box 4 for storage, part of the sewage in the deposit can also be flowed into the water flow pipe 2 through the filter holes to maximize the sewage backflow. It should be noted that the example implemented in this scheme is a rectangular pipe, and the specific pipe shape can be replaced according to the usage scenario.

[0027] like Figures 3 to 6As shown, water volume detectors 14 are fixedly installed on the inner walls of the two flow chambers, and the water volume detectors 14 are placed on the top of the water filter plate 15; When sewage flows through the filter plate 15 in the flow cavity, the sewage will flow into the water flow tube 2 through the filter plate 15. When the impurities filtered on the top of the filter plate 15 accumulate on the top of the filter plate 15, the impurities will clog the filter holes on the top of the filter plate 15 due to the accumulation, and the speed of water flowing through the filter plate 15 will slow down. At the same time, the water level on the top of the filter plate 15 will rise due to the continuous delivery of the water flow. When the water level rises to the position of the water volume detector 14, it means that the inside of the flow cavity is blocked. The water volume detector 14 will transmit the detected information into the system, and then the system will control the diversion component to operate, so that the diversion component drives the water flow into another flow cavity, thereby detecting whether the water flow in the flow cavity is blocked.

[0028] like Figures 3 to 5 As shown, the flow diversion assembly includes a rotating cylinder 801, which is fixedly mounted on the outer wall of the box tube 6. A rotating shaft is fixedly mounted on the output end of the rotating cylinder 801, and a water guide plate 8 is fixedly mounted on the outer wall of the rotating shaft. The outer wall of the water guide plate 8 is slidably connected to the inner wall of the box tube 6. The water guide plate 8 is placed directly below the water inlet pipe 3. Both ends of the water guide plate 8 can fit the inner wall of the box tube 6. The water guide plate 8 is placed between the two flow chambers. When the water level in the flow cavity rises to the water volume detector 14, the system controls the operation of the rotating cylinder 801, and the rotating cylinder 801 will drive the water guide plate 8 to rotate. The water guide plate 8 will change its position through rotation, and the heights of the two ends of the water guide plate 8 will be exchanged, blocking the blocked flow cavity and opening the other flow cavity. The sewage will flow into the other flow cavity through the top of the water guide plate 8, guiding the flow of sewage. By setting two independent flow cavities, it can be ensured that when a blockage occurs in the pipeline, the sewage can flow normally from the other flow cavity. There is no need to intercept the sewage when a blockage occurs in the pipeline. When the pipeline is unblocked, the sewage will be discharged to ensure the normal transportation speed of the sewage, which is more conducive to the sewage transportation operation.

[0029] like Figures 4 to 7 As shown, the cleaning assembly also includes a motor 5, the number of which is two. The two motors 5 are symmetrically fixedly mounted on both sides of the outer wall of the box tube 6. The output ends of the two motors 5 are fixedly mounted with screws 501. The scraping rod 13 is placed inside the flow cavity and the bottom of the scraping rod 13 can be rotatably connected to the top of the water filter plate 15. The outer wall of the scraping rod 13 is rotatably connected to the inner wall of the box tube 6. The top of the scraping rod 13 is placed outside the box tube 6. The tops of the two screws 501 and the tops of the scraping rods 13 are fixedly mounted with first transmission shafts 20. A transmission belt 503 is provided for transmission between the three first transmission shafts 20. When blockage occurs in the flow cavity and the sewage is driven by the diversion component to flow into another flow cavity, the motor 5 will rotate the screw 501. When the screw 501 rotates, the screw 501 will drive the scraper rod 13 to rotate in the blocked flow cavity through the transmission of the transmission belt 1 503. The bottom end of the scraper rod 13 will rotate on the top of the water filter plate 15, thereby scraping the deposits on the top of the water filter plate 15. The deposits on the top of the water filter plate 15 will be scraped from the top of the water filter plate 15 by the scraping of the scraper rod 13, and the filter holes in the water filter plate 15 will be exposed. The water in the flow cavity will flow downward through the exposed filter holes and eventually enter the water flow pipe 2, thereby clearing the flow of sewage.

[0030] like Figures 6 and 7 As shown, the outer walls of the two screw rods 501 are threadedly connected with connecting blocks 502, and the two connecting blocks 502 are slidably connected to the inner wall of the box tube 6. The outer wall of the box tube 6 is symmetrically fixed with a water sealing member 17, and the outer walls of the two connecting blocks 502 are slidably connected to the inner walls of the two water sealing members 17 respectively. A pressure plate 901 is fixedly installed between the two connecting blocks 502, and the inner wall of the pressure plate 901 is slidably connected to the scraping block 9. A plurality of pressure springs 902 are provided between the inner wall of the scraping block 9 and the bottom of the pressure plate 901. The outer wall of the scraping block 9 is slidably connected to the inner wall of the flow cavity in the box tube 6, and the outer wall of the scraping rod 13 is slidably connected to the scraping block 9 and the inner wall of the pressure plate 901; When the screw 501 rotates and drives the scraper rod 13 to scrape the top of the water filter plate 15, the screw 501 will drive the connecting block 502 to move downward through the threaded transmission. When the connecting block 502 moves downward, the connecting block 502 drives the pressure plate 901 to move downward. The pressure plate 901 will drive the scraper block 9 to move downward through the elastic support force of the pressure spring 902. The scraper block 9 will scrape the inner wall of the flow cavity, thereby scraping down the water or impurities attached to the inner wall of the flow cavity, and playing the role of scraping and cleaning the inner wall of the flow cavity. When the scraper block 9 moves downward in the flow cavity, the scraper block 9 will push the sewage in the flow cavity to move downward through the continuous downward movement of the scraper block 9, and cooperate with the rotation and scraping of the scraper rod 13 on the top of the water filter plate 15, so that the sewage placed in the flow cavity is discharged into the water flow tube 2 through the filter water plate 15, thereby accelerating the downstream speed of the sewage in the flow cavity and promoting the flow of sewage in the flow cavity. The water sealing member 17 is provided so that when the connecting block 502 slides in the box pipe 6, the water sealing member 17 seals the box pipe 6 to prevent sewage from leaking.

[0031] like Figures 8 and 9 As shown, the water filter plate 15 is rotatably connected to the inner wall of the box tube 6, and the inner wall of the box tube 6 is slidably connected to a rectangular plate 16. A plurality of return springs 1601 are provided between the bottom of the rectangular plate 16 and the inner wall of the box tube 6. The top of the rectangular plate 16 can fit in contact with the bottom of the water filter plate 15. A counterweight is fixedly installed at one end of the water filter plate 15, and one end of the water filter plate 15 is placed inside the dirt box 4. When the sewage in the flow cavity flows out through the filter plate 15 by the push of the scraper 9, the moment plate 16 is pushed to squeeze the return spring 1601 downward, and one end of the filter plate 15 will lose its restriction. The filter plate 15 will rotate on the inner wall of the box pipe 6 driven by the counterweight block, and one end of the filter plate 15 will open between the box pipe 6 and the sewage box 4, thereby providing a discharge path for the deposits on the filter plate 15.

[0032] like Figure 4 As shown, a pressure rod 11 is fixedly installed on one side of the outer wall of the two connecting blocks 502, and a pull rod 12 is fixedly installed on the bottom of the rectangular plate 16. The outer wall of the pull rod 12 is slidably connected to the inner wall of the box tube 6. The two pressure rods 11 are respectively placed directly above the two ends of the pull rod 12 and the two can fit in contact; When the connecting block 502 drives the scraper 9 to move downward through the screw 501, the connecting block 502 will drive the pressure rod 11 to move downward. When the scraper 9 pushes the sewage in the flow cavity to flow into the water flow pipe 2 through the filter water plate 15, the bottom of the scraper 9 has contacted the top of the scraper rod 13. Then the driving motor 5 drives the pressure plate 901 to continue to move downward through the screw 501. Since the bottom of the scraper 9 has contacted the top of the scraper rod 13 at this time, the bottom of the scraper 9 will realize a limit support. Therefore, when the pressure plate 901 moves downward, the pressure plate 901 will squeeze the pressure spring 902 to move toward the scraper 9, and the connecting block 502 will It will drive the pressure rod 11 to continue to move downward, and the pressure rod 11 will press the pull rod 12 to move downward, and the pull rod 12 will pull the moment plate 16 to squeeze the return spring 1601 to move downward, and the bottom of the water filter plate 15 will lose its restriction, thereby rotating and opening between the box pipe 6 and the sewage box 4, thereby driving the water filter plate 15 to rotate and open. At the same time, when the bottom of the scraper block 9 contacts the top of the scraper rod 13, the water filter plate 15 is controlled to open. Compared with the downward movement of the scraper block 9, the water filter plate 15 is directly driven to rotate and open, so that the scraper block 9 can maximize the discharge of the water flow in the flow cavity, thereby reducing the mixed content of sewage in the deposit.

[0033] like Figure 4 As shown, rectangular boxes 7 are symmetrically fixedly installed on both sides of the box tube 6, and the inner walls of the two rectangular boxes 7 are slidably connected with L-shaped rods 701. A plurality of return block springs 703 are provided between one side of the two L-shaped rods 701 and the inner walls of the two rectangular boxes 7. The top ends of the two L-shaped rods 701 are both dovetail-shaped, and the tops of one end of the two L-shaped rods 701 are both provided with inclined surfaces. The bottoms of one end of the two pull rods 12 are both provided with inclined surfaces. The outer walls of the bottom ends of the two L-shaped rods 701 are respectively slidably connected to one end of the two pull rods 12, and a push block 702 is fixedly installed on the other side of the outer wall of the two connecting blocks 502. One end of the push block 702 can be slidably connected to the outer wall of the L-shaped rod 701, and the upper and lower surfaces of one end of the push block 702 are both provided with inclined surfaces. When the connecting block 502 drives the pressure rod 11 to move downward, the connecting block 502 drives the pushing block 702 to move downward at the same time, and the pushing block 702 will push the dovetail shape at the top of the L-shaped rod 701 to move downward, and the L-shaped rod 701 will squeeze the return block spring 703 to slide in the rectangular box 7. Through the continuous downward movement of the connecting block 502, the pushing block 702 will lose contact with the L-shaped rod 701, and the L-shaped rod 701 will be reset under the elastic push of the return block spring 703. When the pressure rod 11 squeezes and pushes the pull rod 12 to move downward, the pull rod 12 will push the bottom end of the L-shaped rod 701 to move backward. When the pull rod 12 is completely moved downward, at this time, the pull rod 12 with The moment plate 16 is retracted into the interior of the box tube 6, and the water filter plate 15 loses its restriction and rotates open between the box tube 6 and the dirt box 4. One end of the pull rod 12 loses contact with the bottom end of the L-shaped rod 701 and is reset under the elastic push of the return block spring 703. The bottom end of the L-shaped rod 701 is attached to the top of the pull rod 12, limiting it and playing a role in limiting the moment plate 16, preventing the moment plate 16 from being pushed by the moment plate 16 to rotate and close when the connecting block 502 drives the pressure rod 11 to reset. Since the pull rod 12 is not limited and is reset under the elastic drive of the reset spring 1601, the water filter plate 15 is pushed by the moment plate 16 to rotate and close, which is the basis for the subsequent water filter plate 15 The outflow of the accumulation on the top serves as an outflow path. When the L-shaped rod 701 completes the limiting of the pull rod 12, the motor 5 is controlled to drive the screw 501 to reverse, and the connecting block 502 will drive the pressure rod 11 and the push block 702 to move up and reset. The accumulation on the top of the water filter plate 15 will slide down along the top of the water filter plate 15 and finally slide into the dirt box 4 for storage, which plays the role of slag discharge. When the motor 5 drives the screw 501 to reverse, it will drive the scraping rod 13 to rotate in the opposite direction in the flow cavity. The continuous rotation of the scraping rod 13 can also accelerate the rotation and push of the larger accumulation on the top of the water filter plate 15, thereby accelerating the accumulation. The sliding speed of the accumulated matter on the water filter plate 15 is such that when the connecting block 502 drives the push block 702 to move up and contacts the dovetail shape at the top of the L-shaped rod 701, the push block 702 will push the L-shaped rod 701 to move backward, and the bottom end of the L-shaped rod 701 will slide open on the top of the pull rod 12, and the pull rod 12 will lose its limiting basis. Under the elastic push of the reset spring 1601, the pull rod 12 will reset, and the water filter plate 15 will be pushed by the moment plate 16 to reset and close. By setting it in this way, on the one hand, the water filter plate 15 can be controlled to be closed, and on the other hand, time can be gained for the accumulated matter to slide on the top of the water filter plate 15.

[0034] like Figures 8 to 11As shown, a scaffolding plate 19 is fixed to the inner wall of the sewage box 4. The scaffolding plate 19 is placed on the side and lower part of the water filter plate 15. The bottom of the water filter plate 15 can fit with the top of the scaffolding plate 19. A vibration plate 1901 is slidably connected to the inner wall of the scaffolding plate 19. A vibration plate spring 1902 is provided between the bottom of the vibration plate 1901 and the inner wall of the scaffolding plate 19. Triangular blocks 18 are fixedly installed at both ends of the vibration plate 1901. The two triangular blocks 18 are slidably connected to the box pipe 6 and the inner wall of the scaffolding plate 19. When the deposit slides down on the top of the water filter plate 15, the triangular block 18 is pushed up intermittently. When the triangular block 18 moves up, the upward movement of the triangular block 18 drives the vibration plate 1901 to move out from the inside of the bridge plate 19, and the vibration plate 1901 will intermittently push the water filter plate 15 to move up, and cooperate with the vibration plate spring 1902 to pull the gap of the vibration plate 1901 to reset, so that the vibration plate 1901 can lift the water filter plate 15 intermittently, so that when the deposit slides down on the top of the water filter plate 15, a vibration operation is realized on the top of the water filter plate 15, thereby accelerating the sliding speed of the deposit on the water filter plate 15 and playing the role of vibrating the deposit to slide down.

[0035] like Figures 4 to 10 As shown, the outer walls of the box tube 6 are rotatably connected to the rotating rods 10 on both sides, and the bottom ends of the two rotating rods 10 are symmetrically fixed with shift blocks 1002. The outer walls of the two shift blocks 1002 are respectively slidably connected to the outer walls of the two triangular blocks 18. The two first transmission shafts 20 and the tops of the two rotating rods 10 are fixedly installed with second transmission shafts 21. A transmission belt 2 1001 is provided between the four second transmission shafts 21 for transmission. Through the setting of the second transmission shaft 21 and the transmission belt 1001, when the screw 501 rotates, the screw 501 will drive the rotating rod 10 to rotate. When the rotating rod 10 rotates, the rotating rod 10 drives the shift block 1002 to rotate, so that the shift block 1002 pushes the triangular block 18 to move upward, and the triangular block 18 will drive the vibration plate 1901 to move upward. When the shift block 1002 loses contact with the triangular block 18, the vibration plate spring 1902 pulls the vibration plate 1901 to reset. The shift block 1002 continues to push the triangular block 18 upward and cooperates with the vibration plate spring 1902 to continuously drive the vibration plate 1901 to reset, thereby realizing the vibration operation of the water filter plate 15, which plays a role in pushing the triangular block 18 to move upward.

[0036] Working principle: When in use, by passing sewage from the water inlet pipe 3 into the box inlet pipe 6, the sewage will enter one of the flow cavities in the box pipe 6 through the diversion trend of the diversion component. When the sewage enters the flow cavity, the sewage will be filtered by the filter plate 15 and enter the water flow pipe 2 to flow away. When the impurities in the sewage accumulate in the flow cavity and affect the flow of water in the flow cavity, by controlling the operation of the diversion component, the diversion component will guide the sewage flowing in the water inlet pipe 3 into another flow cavity. The cleaning component in one of the flow cavities will drive the scraping rod 13 to dredge the top of the filter plate 15 in the flow cavity, thereby discharging the impurities filtered out of the flow cavity into the sewage box 4 for entry. The sewage is stored and decontaminated. When one of the flow cavities is blocked due to the accumulation of impurities, the sewage is diverted to another flow cavity for operation, and the blocked flow cavity is dredged. On the one hand, the impurities in the flow cavity can be cleaned, and on the other hand, the normal transportation of sewage can be ensured, avoiding the need to intercept sewage when the flow cavity needs to be cleared, which affects the transportation and subsequent treatment speed of sewage, and is more conducive to the transportation of sewage. By opening multiple filter holes at the bottom of the sewage box 4, when the deposited matter enters the sewage box 4 for storage, part of the sewage in the deposited matter can also be flowed into the water flow pipe 2 through the filter holes to maximize the sewage backflow; When sewage flows through the filter plate 15 in the flow cavity, the sewage will flow into the water flow pipe 2 through the filter plate 15. When the impurities filtered by the top of the filter plate 15 accumulate on the top of the filter plate 15, the impurities will clog the filter holes on the top of the filter plate 15 due to the accumulation, and the speed of water flowing through the filter plate 15 will slow down. At the same time, the water level on the top of the filter plate 15 will rise due to the continuous delivery of the water flow. When the water level rises to the position of the water volume detector 14, it means that the inside of the flow cavity is blocked. The water volume detector 14 will transmit the detected information to the system, and then the system will control the diversion component to operate, so that the diversion component drives the water flow into another flow cavity, which plays a role in detecting whether the water flow in the flow cavity is blocked. When the water level in the flow cavity rises to the water volume detector 14, the system controls the operation of the rotating cylinder 801, and the rotating cylinder 801 will drive the water guide plate 8 to rotate. The water guide plate 8 will change its position through rotation, and the heights of the two ends of the water guide plate 8 will be exchanged, blocking the blocked flow cavity and opening the other flow cavity. The sewage will flow into the other flow cavity through the top of the water guide plate 8, playing the role of guiding the flow of sewage. By setting two independent flow cavities, it can be ensured that when a blockage occurs in the pipe, the sewage can flow normally from the other flow cavity. There is no need to intercept the sewage when a blockage occurs in the pipe. When the pipe is unblocked, the sewage will be discharged, ensuring the normal transportation speed of the sewage, which is more conducive to the sewage transportation operation. When blockage occurs in the flow cavity and the sewage is driven by the diversion component to flow into the other flow cavity, the motor 5 will rotate the screw 501. When the screw 501 rotates, the screw 501 will drive the scraper rod 13 to rotate in the blocked flow cavity through the transmission of the transmission belt 1 503. The bottom end of the scraper rod 13 will rotate on the top of the water filter plate 15, thereby scraping the deposits on the top of the water filter plate 15. The deposits on the top of the water filter plate 15 will be scraped off from the top of the water filter plate 15 by the scraping of the scraper rod 13, and the filter holes in the water filter plate 15 will be exposed. The water in the flow cavity will flow downward through the exposed filter holes and eventually enter the water flow pipe 2, thereby clearing the flow of sewage. When the screw 501 rotates and drives the scraper rod 13 to scrape the top of the water filter plate 15, the screw 501 will drive the connecting block 502 to move downward through the threaded transmission. When the connecting block 502 moves downward, the connecting block 502 drives the pressure plate 901 to move downward. The pressure plate 901 will drive the scraper block 9 to move downward through the elastic support force of the pressure spring 902. The scraper block 9 will scrape the inner wall of the flow cavity, thereby scraping down the water or impurities attached to the inner wall of the flow cavity, and playing the role of scraping and cleaning the inner wall of the flow cavity. When the scraper block 9 moves downward in the flow cavity, the scraper block 9 continues to move downward, and the scraper block 9 will push the sewage in the flow cavity to move downward and flow, and cooperate with the rotation and scraping of the scraper rod 13 on the top of the water filter plate 15, so that the sewage placed in the flow cavity is discharged into the water flow pipe 2 through the water filter plate 15, thereby accelerating the downstream speed of the sewage in the flow cavity and playing a role in promoting the flow of sewage in the flow cavity. The water sealing member 17 is provided so that when the connecting block 502 slides in the box pipe 6, the water sealing member 17 seals the box pipe 6 to prevent sewage from leaking out; When the sewage in the flow cavity flows out through the filter plate 15 by the push of the scraper 9, the moment plate 16 is pushed to squeeze the return spring 1601 downward, and one end of the filter plate 15 is freed from the restriction. Driven by the counterweight, the filter plate 15 rotates on the inner wall of the box pipe 6, and one end of the filter plate 15 is opened between the box pipe 6 and the sewage box 4, thereby providing a discharge path for the deposits on the filter plate 15. When the connecting block 502 drives the scraper 9 to move downward through the screw 501, the connecting block 502 will drive the pressure rod 11 to move downward. When the scraper 9 pushes the sewage in the flow cavity to flow into the water flow pipe 2 through the filter water plate 15, the bottom of the scraper 9 has contacted the top of the scraper rod 13. Then the driving motor 5 drives the pressure plate 901 to continue to move downward through the screw 501. Since the bottom of the scraper 9 has contacted the top of the scraper rod 13 at this time, the bottom of the scraper 9 will realize a limit support. Therefore, when the pressure plate 901 moves downward, the pressure plate 901 will squeeze the pressure spring 902 to move toward the scraper 9, and the connecting block 502 will The pressure rod 11 will be driven to continue to move downward, and the pressure rod 11 will press the pull rod 12 to move downward, and the pull rod 12 will pull the moment plate 16 to squeeze the return spring 1601 to move downward, and the bottom of the water filter plate 15 will lose its restriction, thereby rotating and opening between the box pipe 6 and the sewage box 4, thereby driving the water filter plate 15 to rotate and open. At the same time, when the bottom of the scraper block 9 contacts the top of the scraper rod 13, the water filter plate 15 is controlled to open. Compared with the downward movement of the scraper block 9, the water filter plate 15 is directly driven to rotate and open, so that the scraper block 9 can maximize the discharge of the water flow in the flow cavity, thereby reducing the mixed content of sewage in the deposit. When the connecting block 502 drives the pressure rod 11 to move downward, the connecting block 502 drives the pushing block 702 to move downward at the same time, and the pushing block 702 will push the dovetail shape at the top of the L-shaped rod 701 to move downward, and the L-shaped rod 701 will squeeze the return block spring 703 to slide in the rectangular box 7. Through the continuous downward movement of the connecting block 502, the pushing block 702 will lose contact with the L-shaped rod 701, and the L-shaped rod 701 will be reset under the elastic push of the return block spring 703. When the pressure rod 11 squeezes and pushes the pull rod 12 to move downward, the pull rod 12 will push the bottom end of the L-shaped rod 701 to move backward. When the pull rod 12 is completely moved downward, at this time, the pull rod 12 with The moment plate 16 is retracted into the interior of the box tube 6, and the water filter plate 15 loses its restriction and rotates open between the box tube 6 and the dirt box 4. One end of the pull rod 12 loses contact with the bottom end of the L-shaped rod 701 and is reset under the elastic push of the return block spring 703. The bottom end of the L-shaped rod 701 is attached to the top of the pull rod 12, limiting it and playing a role in limiting the moment plate 16, preventing the moment plate 16 from being pushed by the moment plate 16 to rotate and close when the connecting block 502 drives the pressure rod 11 to reset. Since the pull rod 12 is not limited and is reset under the elastic drive of the reset spring 1601, the water filter plate 15 is pushed by the moment plate 16 to rotate and close, which is the basis for the subsequent water filter plate 15 The outflow of the accumulation on the top serves as an outflow path. When the L-shaped rod 701 completes the limiting of the pull rod 12, the motor 5 is controlled to drive the screw 501 to reverse, and the connecting block 502 will drive the pressure rod 11 and the push block 702 to move up and reset. The accumulation on the top of the water filter plate 15 will slide down along the top of the water filter plate 15 and finally slide into the dirt box 4 for storage, which plays the role of slag discharge. When the motor 5 drives the screw 501 to reverse, it will drive the scraping rod 13 to rotate in the opposite direction in the flow cavity. The continuous rotation of the scraping rod 13 can also accelerate the rotation and push of the larger accumulation on the top of the water filter plate 15, thereby accelerating the accumulation. The sliding speed of the accumulated matter on the water filter plate 15 is such that when the connecting block 502 drives the push block 702 to move upward and contact the dovetail shape at the top of the L-shaped rod 701, the push block 702 will push the L-shaped rod 701 to move backward, and the bottom end of the L-shaped rod 701 will slide open on the top of the pull rod 12, and the pull rod 12 will lose its limit base. Under the elastic push of the reset spring 1601, the pull rod 12 will reset, and the water filter plate 15 will be pushed by the moment plate 16 to reset and close. By setting it in this way, on the one hand, the water filter plate 15 can be controlled to be closed, and on the other hand, time for the accumulated matter to slide on the top of the water filter plate 15 can be gained; When the deposit slides down on the top of the water filter plate 15, the triangular block 18 is pushed upward intermittently. When the triangular block 18 moves upward, the upward movement of the triangular block 18 drives the vibration plate 1901 to move out from the inside of the bridge plate 19. The vibration plate 1901 will intermittently push the water filter plate 15 to move up, and cooperate with the vibration plate spring 1902 to pull the gap of the vibration plate 1901 to reset, so that the vibration plate 1901 can lift the water filter plate 15 intermittently, so that when the deposit slides down on the top of the water filter plate 15, the top of the water filter plate 15 is vibrated, which accelerates the sliding speed of the deposit on the water filter plate 15 and plays the role of vibrating the deposit to slide down; Through the setting of the second transmission shaft 21 and the transmission belt 1001, when the screw 501 rotates, the screw 501 will drive the rotating rod 10 to rotate. When the rotating rod 10 rotates, the rotating rod 10 drives the shift block 1002 to rotate, so that the shift block 1002 pushes the triangular block 18 to move upward, and the triangular block 18 will drive the vibration plate 1901 to move upward. When the shift block 1002 loses contact with the triangular block 18, the vibration plate spring 1902 pulls the vibration plate 1901 to reset. The shift block 1002 continues to push the triangular block 18 upward and cooperates with the vibration plate spring 1902 to continuously drive the vibration plate 1901 to reset, thereby realizing the vibration operation of the water filter plate 15, which plays a role in pushing the triangular block 18 to move upward.

[0037] The basic principles, main features, and advantages of the present invention are shown and described above. Those skilled in the art should understand that the present invention is not limited to the foregoing embodiments. The foregoing embodiments and descriptions are merely illustrative of the principles of the present invention. Various changes and modifications may be made to the present invention without departing from the spirit and scope of the present invention. Such changes and modifications are intended to fall within the scope of the present invention. The scope of protection claimed in the present invention is defined by the appended claims and their equivalents.

Claims

1. A sewage transport anti-blocking pipeline, characterized by: It includes a water flow pipe, a box pipe and a sewage box are fixedly installed on the top of the water flow pipe, the outer walls of the sewage box on both sides are fixedly connected to the outer walls of the box pipe, two independent flow chambers are arranged on both sides of the interior of the box pipe, and flow passes between the bottom ends of the two flow chambers and the bottom of the sewage box and the top of the water flow pipe, and water filter plates are arranged inside the two flow chambers, an inlet pipe is fixedly installed on the top of the box pipe, a box body is fixedly installed on the outer wall of the water inlet pipe, and a diversion assembly is provided in the middle position of the interior of the box pipe. The diversion assembly is used to drive the sewage to flow into the flow cavity on the other side when the flow cavity on one side is blocked, and a cleaning assembly is arranged inside the two flow cavities, and the cleaning assembly includes a scraping rod. The cleaning assembly is used to drive the scraping rod to dredge the top of the water filter plate in the flow cavity when blockage occurs in the flow cavity.

2. The sewage transport anti-blocking pipeline according to claim 1, characterized in that: Water volume detectors are fixedly installed on the inner walls of the two flow chambers and are placed on the top of the water filter plate.

3. The sewage transport anti-blocking pipeline according to claim 2, characterized in that: The diversion assembly includes a rotating cylinder, which is fixedly mounted on the outer wall of the box pipe. A rotating shaft is fixedly mounted on the output end of the rotating cylinder. A water guide plate is fixedly mounted on the outer wall of the rotating shaft. The outer wall of the water guide plate is fitted and slidably connected to the inner wall of the box pipe. The water guide plate is placed directly below the water inlet pipe. Both ends of the water guide plate can fit with the inner wall of the box pipe. The water guide plate is placed between the two flow chambers.

4. The sewage transport anti-blocking pipeline according to claim 3, characterized in that: The dirt cleaning component also includes a motor. There are two motors, which are symmetrically fixed on both sides of the outer wall of the box tube. The output ends of the two motors are fixedly installed with screws. The scraping rod is placed inside the flow cavity and the bottom of the scraping rod can be rotatably connected to the top of the water filter plate. The outer wall of the scraping rod is rotatably connected to the inner wall of the box tube. The top of the scraping rod is placed outside the box tube. The tops of the two screws and the tops of the scraping rods are fixedly installed with first transmission shafts, and a transmission belt is provided for transmission between the three first transmission shafts.

5. The sewage transport anti-blocking pipeline according to claim 4, characterized in that: The outer walls of the two screw rods are threadedly connected with connecting blocks, and the two connecting blocks are slidingly connected to the inner wall of the box pipe. The outer wall of the box pipe is symmetrically fixed with water sealing parts. The outer walls of the two connecting blocks are slidingly connected to the inner walls of the two water sealing parts respectively. A pressure plate is fixedly installed between the two connecting blocks, and the inner wall of the pressure plate is slidingly connected to a scraper block. A plurality of pressure springs are arranged between the inner wall of the scraper block and the bottom of the pressure plate. The outer wall of the scraper block is slidingly connected to the inner wall of the flow cavity in the box pipe, and the outer wall of the scraper rod is slidingly connected to the inner wall of the scraper block and the pressure plate.

6. The sewage transport anti-blocking pipeline according to claim 5, characterized in that: The water filter plate is rotatably connected to the inner wall of the box tube, and the inner wall of the box tube is slidably connected to a rectangular plate. A plurality of return springs are arranged between the bottom of the rectangular plate and the inner wall of the box tube. The top of the rectangular plate can fit in contact with the bottom of the water filter plate. A counterweight is fixedly installed at one end of the water filter plate, and one end of the water filter plate is placed inside the sewage box.

7. The sewage transport anti-blocking pipeline according to claim 6, characterized in that: A pressure rod is fixedly installed on one side of the outer wall of the two connecting blocks, and a pull rod is fixedly installed on the bottom of the rectangular plate. The outer wall of the pull rod is slidably connected to the inner wall of the box tube. The two pressure rods are respectively placed directly above the two ends of the pull rod and the two can fit in contact.

8. The sewage transport anti-blocking pipeline according to claim 7, characterized in that: Rectangular boxes are symmetrically fixed on both sides of the box tube, and the inner walls of the two rectangular boxes are slidably connected with L-shaped rods. A plurality of return springs are arranged between one side of the two L-shaped rods and the inner walls of the two rectangular boxes. The top ends of the two L-shaped rods are dovetail-shaped, and the tops of one end of the two L-shaped rods are opened into an inclined surface, and the bottoms of one end of the two pull rods are opened into an inclined surface. The outer walls of the bottom ends of the two L-shaped rods can be slidably connected to one end of the two pull rods respectively, and a push block is fixedly installed on the other side of the outer wall of the two connecting blocks. One end of the push block can be slidably connected to the outer wall of the L-shaped rod, and the upper and lower surfaces of one end of the push block are opened into an inclined surface.

9. The sewage transportation anti-blocking pipeline according to claim 8, characterized in that: A stepping plate is fixed to the inner wall of the sewage box, and the stepping plate is placed on the lower side of the water filter plate. The bottom of the water filter plate can fit with the top of the stepping plate. The inner wall of the stepping plate is slidably connected with a vibration plate. A vibration plate spring is provided between the bottom of the vibration plate and the inner wall of the stepping plate. Triangular blocks are fixedly installed at both ends of the vibration plate, and the two triangular blocks are slidably connected to the box pipe and the inner wall of the stepping plate.

10. The sewage transport anti-blocking pipeline according to claim 9, characterized in that: The outer wall of the box tube is rotatably connected with rotating rods on both sides, and the bottom ends of the two rotating rods are symmetrically fixed with shift blocks. The outer walls of the two shift blocks are slidingly connected to the outer walls of the two triangular blocks respectively. The two first transmission shafts and the tops of the two rotating rods are fixedly installed with second transmission shafts, and transmission belts 2 are set for transmission between the four second transmission shafts.

Citation Information

Patent Citations

  • Self-cleaning pipeline for water conservancy project

    CN113863468A

  • Diversion drainage device for bridge construction

    CN119021344A

  • Anti -blocking pipe says structure

    CN208687366U

  • Improved drainage pipe for municipal gardens

    CN217974673U

  • Sewage pipeline waste interception anti-blocking device

    CN218323112U