Pollutant cleaning device for channel water pollution and use method

By designing a pollutant cleaning device without motor drive, the water flow power is converted into mechanical power, and efficient separation and collection of pollutants in the river water body is achieved, solving the problems of single functions and safety of existing devices, and improving the water body repair effect.

CN120273323APending Publication Date: 2025-07-08水发养护工程(山东)集团有限公司
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Patent Information

Application Number
CN202510680388.2
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-26
Publication Date
2025-07-08

AI Technical Summary

Technical Problem

The existing river water body repair device has a single function and cannot effectively clean up pollutants in the water body. It is not safe to use the motor drive equipment near the polluted water body.

Method used

A pollutant cleaning device is designed, and a transmission system composed of support frames, sealing mechanisms, cleaning and lifting components, filters and drive components are converted into mechanical power to achieve the lifting and separation of pollutants. The motor-free driving method is adopted to drive the operation of the transmission components by using the impact force of the water flow to realize the screening and lifting of pollutants.

Benefits of technology

It realizes efficient separation and collection of pollutants in the water body, improves water quality, avoids the safety risks of motors being used near contaminated water bodies, and simplifies the operation process.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of water pollution cleaning, in particular to a pollutant cleaning device for channel water pollution and a use method.The device comprises a supporting frame, a sealing mechanism is arranged in the supporting frame, and a cleaning lifting assembly is arranged on the sealing mechanism; the method comprises the following steps: mounting parts, starting equipment, cleaning impurities and pollutants, dismounting and replacing. According to the device, the impact force of water can be increased under the action of the flow dividing pipe frame and the round pipe fitting, so that the impact force of the water is converted into part operation force, and solid impurities and garbage which cause water pollution can be intercepted through the filter screen, so that pollutants in sewage are salvaged and collected in a centralized manner; and meanwhile, the operation steps of the device are disclosed, so that personnel in the field can conveniently know how to clean the impurities and the garbage in the sewage by parts.
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Description

Technical Field

[0001] The present invention relates to the technical field of water pollution cleaning, and particularly to a pollutant cleaning device and a using method for channel water pollution. Background Art

[0002] River water body restoration aims to restore the healthy state of polluted water bodies. By controlling the discharge of industrial and domestic sewage, promoting clean production, wetland restoration and other measures, the pollutant content in the water body is reduced and the water quality is improved.

[0003] In the process of river water body ecological restoration, it is necessary to start from multiple aspects to solve the problem of water body pollution. Most of the existing restoration devices have a single function and require a combination of various tools to complete the various tasks of water body restoration. The operation is relatively troublesome, and it is impossible to complete the auxiliary work of river water body ecological restoration well, which is not conducive to effectively cleaning water pollution and facilitating the removal of pollutants in the water body.

[0004] A three-dimensional auxiliary device for river water body ecological restoration with the publication number of CN222729517U includes a main body component, and the main body component includes a support column, a motor, a lead screw, a connecting rod, a salvage plate, a baffle, a support rod and a net; a motor is installed at the top of the support column, and the output shaft of the motor is fixedly connected to one end of the lead screw. The lead screw is rotatably connected to the inner side wall of the support column, and the outer side wall of the lead screw is threadedly connected with a connecting rod. The utility model intercepts floating objects on the water surface through the net, and drives the salvage plate to move through the motor, so as to salvage floating pollutants in the water body and reduce the pollution of the floating objects to the river water body. By using a pH value detector, a turbidity meter and a dissolved oxygen detector to monitor the pH value, turbidity and dissolved oxygen value of the water body respectively, and taking corresponding measures to repair the river water body pollution, it plays a good auxiliary role in water body pollution repair and improves the water body restoration effect.

[0005] In the above technical solution, a motor is connected to a power supply to drive the device to operate, which is set near the polluted water body, and it is not conducive to ensuring the safety of use. At the same time, the above technical solution cannot effectively clean the garbage in the polluted water body, which is not conducive to removing impurities in the sewage, so improvement is needed. Summary of the Invention

[0006] The purpose of the present invention is to solve the deficiencies existing in the prior art, and to propose a pollutant cleaning device and a using method for channel water pollution.

[0007] In order to achieve the above purpose, the present invention adopts the following technical solutions:

[0008] A pollutant cleaning device for channel water pollution, comprising a support frame. A sealing mechanism is arranged inside the support frame. A cleaning and lifting assembly is arranged on the sealing mechanism. A diversion pipe rack is fixed to the lower end of the cleaning and lifting assembly. Two circular pipe fittings are installed on the diversion pipe rack. A driving assembly is installed on the circular pipe fitting. A transmission assembly is jointly installed on the two driving assemblies. A linkage assembly is connected to the transmission assembly. The linkage assembly is connected to the cleaning and lifting assembly. The transmission assembly penetrates through the sealing mechanism. A lifting assembly is arranged on the transmission assembly. The cleaning and lifting assembly is located between the lifting assembly and the driving assembly;

[0009] An inclined frame, a filter screen, two lifting bending plates and two inclined plates are arranged inside the cleaning and lifting assembly. The two inclined plates and the two lifting bending plates are arranged alternately. The upper end of the cleaning and lifting assembly is detachably connected with a filter bag assembly. The lower lifting bending plate is arranged on one side of the filter screen;

[0010] Two linkage belts are arranged on the lifting assembly. A plurality of lifting plates are jointly fixed between the plurality of linkage belts. The lifting plate abuts against the filter screen. The upper end of the linkage belt is higher than the upper end of the inclined frame.

[0011] Compared with the prior art, the present application is convenient to be installed in the polluted water body to cut off the sewage flow, so that the sewage passes through the filter screen and is discharged through the circular pipe fitting. The impact force of the water flow can be converted into the power for the operation of corresponding components through the cooperation of the transmission assembly, the driving assembly, the lifting assembly and the linkage assembly, so that the components in the device can operate, lift the impurities and pollutants in the sewage blocked by the filter screen, separate the pollutants from the water flow, help to improve the water quality, remove the pollutants and impurities in the sewage, and collect the pollutants and impurities centrally.

[0012] Preferably, the sealing mechanism comprises two mounting frames. Sealing members are fixed to the outer sides of the two mounting frames. The two sealing members respectively abut against the opposite side walls inside the support frame. The lower end of the mounting frame abuts against the bottom inside the support frame. The two sides of the inclined frame and the two inclined plates are respectively fixedly connected with the two mounting frames. The two inclined plates and the inclined frame are installed in sequence from top to bottom. The two inclined plates and the inclined frame are inclined;

[0013] The lifting assembly is connected to the mounting frame.

[0014] Furthermore, the sealing member is extruded under the action of the mounting frame and the support frame, so that the sealing member deforms, and the sealing member can fill the gaps on the mounting frame and the support frame, avoiding water penetration, enabling the water flow to flow inside the support frame, facilitating the water to flow through the filter screen, facilitating the filter screen to separate the water from the impurities and pollutants in the water, and enabling the water flow to flow stably at the same time.

[0015] Preferably, the mounting frame includes a frame body assembly. Oblique grooves and mounting grooves are formed on the opposite sides of the two frame body assemblies. The oblique grooves are inclined, and the mounting grooves are arranged at the lower ends of the frame body assemblies. The oblique frame is located between the oblique grooves and the mounting grooves;

[0016] The transmission assembly is located in the oblique groove and the mounting groove on one of the frame body assemblies, and the lifting assembly is arranged through the two oblique grooves.

[0017] Further, during actual production and preparation, the linkage shaft is rotatably sleeved in the mounting groove and the oblique groove in one of the frame body assemblies to effectively ensure the stable transmission of power;

[0018] And the inclination of the oblique groove is the same as that of the oblique frame, so that the inclination degree of the lifting assembly and the oblique frame is effectively the same, and the impurities and pollutants blocked by the filter screen can be effectively lifted and cleaned.

[0019] Preferably, the shunt pipe rack is fixed on the side of the oblique frame away from the lifting assembly, the filter screen is fixed in the oblique frame, and the shunt pipe rack corresponds to the two filter screens.

[0020] Further, the shunt pipe rack is composed of two conical cover structures. The two conical covers are fixedly connected, and the two conical covers are fixed on the oblique frame, so that the filter screen is located within the range of the two conical cover openings, which can ensure that the water body quickly enters the shunt pipe rack after passing through the filter screen, forming two water flows. At the same time, the conical setting makes the water body flow from the end with a larger diameter to the end with a smaller diameter, improving the water flow speed and impact force.

[0021] Preferably, a lifting frame is fixedly connected to the lower ends of the two lifting bent plates, and the lifting frame is located at the upper end of the shunt pipe rack;

[0022] The lower lifting bent plate abuts against the oblique frame, and the lower lifting bent plate abuts against the lower inclined plate;

[0023] The upper lifting bent plate abuts against the lower inclined plate, and the upper lifting bent plate abuts against the upper inclined plate. The lifting frame is connected to the linkage assembly;

[0024] The two lifting bent plates are respectively slidably mounted on the two inclined plates, and the inclined plates are both of grid plate structures.

[0025] Furthermore, two inclined plates are fixed between two frame components, and the inclined plates, the lifting and bending plate, and the inclined frame have the same inclination degree. The lifting and bending plate can be in an inverted L shape. As impurities and pollutants in the water body rise, the impurities and pollutants in the water body can fall onto the upper end of the lifting and bending plate. The inclined plates have a larger width, so that the impurities and pollutants can fall onto the upper end of the inclined plates. When the lifting and bending plate falls, the impurities and pollutants at the upper end of the inclined plates can fall onto the upper end of the corresponding lifting and bending plate, effectively lifting the impurities and pollutants, cleaning the pollutants in the water body, and enabling the pollutants to fall into the filter bag assembly through the fixed frame for centralized collection, which helps to improve the water quality.

[0026] Preferably, the linkage assembly includes a sliding sleeve assembly, a disc linkage member, and a rotating rod. The upper end of the rotating rod is rotatably connected to the lower end of the sliding sleeve assembly. The sliding sleeve assembly is connected to the cleaning and lifting assembly. The lower end of the rotating rod is rotatably connected to one side of the disc linkage member. The disc linkage member is rotatably connected to one side of the shunt pipe rack, and the disc linkage member is connected to the transmission assembly.

[0027] Furthermore, when the water body impacts the driving component, the impact force of the water flow is converted into the power for the operation of the components, which can avoid using motor equipment and improve the safety of use. The driving component drives the disc linkage member to rotate through the transmission assembly. As the disc linkage member rotates, the rotating rod can push the sliding sleeve assembly thereon to move up and down. And the sliding sleeve assembly is sleeved on the lifting frame, which can push the lifting frame to rise, and can also make the lifting frame tilt and rise under the action of the lifting and bending plate.

[0028] Preferably, the lifting assembly includes four second rotating shaft members respectively rotatably sleeved in two mounting frames. The two second rotating shaft members in the same mounting frame form a group, and two linkage belts are respectively sleeved on the two groups of second rotating shaft members. One of the second rotating shaft members located at the lower end is connected to the transmission assembly.

[0029] Furthermore, as the water body impacts the driving component, the transmission component can drive the second rotating shaft member to rotate. The two second rotating shaft members in the same inclined groove, with the linkage belt sleeved on the two second rotating shaft members, drive the lifting plate to operate in a cycle. And as the lifting plate moves upward from the lower ends of the inclined frame and the filter net, it can push the impurities and pollutants to rise, making the impurities and pollutants fall onto the upper end of the inclined frame, facilitating the impurities and pollutants on the inclined frame to fall onto the lifting and bending plate after the lifting and bending plate falls.

[0030] Preferably, the driving component includes a first rotating shaft member fixed on one side inside the circular pipe fitting, a paddle member at one end of the first rotating shaft member inside the circular pipe fitting. The paddle member is connected to the transmission assembly. An electric control valve assembly is commonly installed between the two circular pipe fittings. The electric control valve assembly is located on the side of the paddle member away from the first rotating shaft member.

[0031] Furthermore, the action of the electric control valve assembly can control whether there is water flow in the circular pipe fitting, effectively cut off the water body, facilitate the trimming of the rear end of the support frame, and can also install or disassemble the filter bag assembly; at the same time, when the electric control valve assembly is opened, the water body can impact the paddle piece to make the first rotating shaft piece rotate, converting the impact force of the water body into power so as to make the corresponding assembly operate.

[0032] Preferably, the transmission assembly includes a linkage shaft rotatably sleeved in one of the mounting frames. A double conical gear transmission assembly is fixed at one end of the transmission assembly close to the lifting assembly, and the double conical gear transmission assembly is connected to the lifting assembly;

[0033] Belt transmission assemblies are installed on the drive assemblies in both circular pipe fittings. One belt transmission assembly is connected to the linkage assembly, and the other belt transmission assembly is connected to the linkage shaft.

[0034] Furthermore, the belt transmission assembly consists of two belt pulleys and a belt sleeved on the upper ends of the two belt pulleys. The belt pulleys are installed on the corresponding components as required, which can fully realize the transmission of power, contribute to the rotation of the disc linkage, can also make the linkage shaft rotate, and can also make the double conical gear transmission assembly transmit power to make one of the first rotating shaft pieces rotate.

[0035] The present invention also proposes a usage method of a pollutant cleaning device for channel water pollution, which is applicable to the above-mentioned pollutant cleaning device for channel water pollution, including the following steps:

[0036] S1. Component installation: Insert the mounting frame into the support frame, place the support frame into the water body so that the water body can flow through the support frame. At the same time, the seal is located between the mounting frame and the support frame. Through the extrusion of the support frame and the mounting frame, the gap can be filled. The action of the electric control valve assembly can control whether there is water flow in the circular pipe fitting. When there is no water flow, it is convenient for the staff to trim the rear end of the support frame;

[0037] S2. Equipment startup: The staff manipulates the electric control valve assembly to make the water flow through the circular pipe fitting to make the paddle piece rotate, and at the same time, the paddle piece can make the first rotating shaft piece rotate, which is convenient for the first rotating shaft piece to drive the linkage assembly and the lifting assembly to operate through the transmission assembly;

[0038] S3. Cleaning of impurities and pollutants: When the two paddle pieces drive the two first rotating shaft pieces connected to them to rotate respectively, the first rotating shaft piece can drive the belt transmission assembly connected to it to operate. One belt transmission assembly drives the disc linkage to rotate. Through the rotation of the disc linkage, the rotating rod can drive the lifting frame to tilt and lift through the sliding sleeve, which is convenient for driving the lifting bending plate to lift along the direction of the inclined plate;

[0039] When another belt drive assembly drives one of the second rotating shaft members to rotate through the linkage shaft and the double-bevel gear drive assembly, the second rotating shaft member can drive the push-up plate to circulate through the linkage belt, and the push-up plate will operate from the lower end of the inclined frame to the upper end of the inclined frame. Impurities and pollutants will rise along the inclined frame and the filter screen under the action of the push-up plate, causing the impurities and pollutants to fall to the upper end of the push-up bending plate, and with the operation of the push-up bending plate, they will alternately rise to the push-up bending plate located at the upper end, and then the impurities and pollutants will enter the fixed frame and the filter bag assembly through the push-up bending plate;

[0040] S4. Disassembly and replacement: When there are a lot of impurities and pollutants stored in the filter bag assembly, the electric control valve assembly will close the round pipe, and the filter bag assembly can be disassembled from the fixed frame. After replacement, the electric control valve assembly can be opened.

[0041] Compared with the prior art, the present application provides a detailed description of how to install the components, which can cut off the water body, facilitate the stable flow of water from the support frame, show how to convert the impact force of the water body into mechanical rotational force, can screen the impurities and pollutants in the water body, and can lift the impurities and pollutants in the water body for centralized collection.

[0042] The beneficial effects of the present invention are:

[0043] 1. The seal between the support frame and the mounting frame can effectively perform extrusion sealing to prevent water penetration. The electric control valve assembly can achieve water interception, which is convenient for the staff to trim the rear end of the support frame, ensure the firmness and sealing effect of the support frame, and facilitate the transportation of water through the support frame;

[0044] 2. When the water impacts the paddle blade, the first rotating shaft drives the belt drive assembly to rotate, and the two belt drive assemblies can be connected to the disc linkage and the linkage shaft respectively. The disc linkage can make the rotating rod and the sliding assembly operate, so that the push-lift frame can be lifted and the push-lift bending plate can be tilted upward, so that impurities and pollutants can be lifted;

[0045] 3. At the same time, the linkage shaft rotates the second rotating shaft through the action of the double-cone gear transmission assembly, and can drive the push-up plate to perform a circular motion through the linkage belt. Impurities and pollutants in the water body will collide with the inclined frame and the filter screen to rise. The push-up plate will collide with the lower end of the inclined frame to make the impurities and pollutants rise under the action of the filter screen, and can make the impurities and pollutants fall to the upper end of the inclined frame, and when the push-up bending plate falls back, the impurities and pollutants can fall to the upper end of the push-up bending plate again, and with the reciprocating rise of the push-up bending plate, it is easy to lift the impurities and pollutants to the upper end of the inclined plate and the fixed frame, so that the impurities and pollutants can enter the filter bag assembly;

[0046] 4. Through the conical setting of the shunt pipe rack, the impact force of the water flow can be enhanced, so as to effectively make the paddle blade rotate, and the first rotating shaft can be rotated to effectively convert the power. Description of the Drawings

[0047] Figure 1 The front view of a pollutant cleaning device for channel water pollution proposed by the present invention;

[0048] Figure 2 The structural diagram of the mounting rack in a pollutant cleaning device for channel water pollution proposed by the present invention;

[0049] Figure 3 The structural diagram of the driving component in a pollutant cleaning device for channel water pollution proposed by the present invention;

[0050] Figure 4 This is an enlarged view of part A of the attached Figure 3 of the present invention;

[0051] Figure 5 The structural diagram of the linkage component in a pollutant cleaning device for channel water pollution proposed by the present invention;

[0052] Figure 6 The structural diagram of the lifting component in a pollutant cleaning device for channel water pollution proposed by the present invention;

[0053] Figure 7 The structural diagram of the lifting bending plate and the lifting frame in a pollutant cleaning device for channel water pollution proposed by the present invention;

[0054] Figure 8 The internal structural diagram of the support frame in a pollutant cleaning device for channel water pollution proposed by the present invention;

[0055] Figure 9 The structural diagram of the lifting plate and the filter screen in a pollutant cleaning device for channel water pollution proposed by the present invention;

[0056] In the figure: 1, support frame; 2, mounting frame, 21, frame assembly, 22, inclined groove, 23, mounting groove; 3, filter bag assembly; 4, cleaning and lifting assembly, 41, inclined frame, 42, filter screen, 43, fixed frame, 44, inclined plate, 45, lifting and bending plate, 46, lifting frame; 5, linkage assembly, 51, rotating rod, 52, disc linkage; 6, seal; 7, shunt pipe rack; 8, circular pipe fitting; 9, transmission assembly, 91, belt transmission assembly, 92, linkage shaft, 93, double conical gear transmission assembly; 10, drive assembly, 101, blade member, 102, first rotating shaft member, 103, electric control valve assembly; 11, lifting assembly, 1101, linkage belt, 1102, lifting plate, 1103, second rotating shaft member. Detailed implementation mode

[0057] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments.

[0058] Refer to Figures 1 - 9 , a pollutant cleaning device for channel water pollution, including a support frame 1, which can install the support frame 1 in the channel, and is convenient for the support frame 1 to be provided with a sealing mechanism. A cleaning and lifting assembly 4 is provided on the sealing mechanism, which can enable water to flow through the support frame 1. The sealing mechanism includes two mounting frames 2, and sealing members 6 are fixed on the outer sides of the two mounting frames 2. The two sealing members 6 are respectively in contact with the opposite side walls in the support frame 1. Under the action of extrusion force, the sealing members 6 are deformed, which can effectively fill the gaps between the support frame 1 and the mounting frame 2, avoid leakage, ensure that water can flow through the support frame 1, and at the same time, corresponding components can be installed in the support frame 1, and the force of water flow can be converted into the force of component operation, so as to drive the components to salvage impurities and pollutants. The lower end of the mounting frame 2 is in contact with the bottom in the support frame 1. The two sides of the inclined frame 41 and the two inclined plates 44 are respectively fixedly connected to the two mounting frames 2. The two inclined plates 44 and the inclined frame 41 are installed in sequence from top to bottom. The two inclined plates 44 and the inclined frame 41 are inclined, which helps to lift impurities and pollutants; The lifting assembly 11 is connected to the mounting frame 2, which can lift the impurities and pollutants in the water to the cleaning and lifting assembly 4, so as to facilitate the components in the cleaning and lifting assembly 4 to lift the impurities and pollutants.

[0059] Refer to Figure 1 , Figure 3 , Figure 8 and Figure 9, a shunt pipe support 7 is fixedly installed at the lower end of the cleaning and lifting assembly 4. Welding or other methods can be used to ensure the sealing performance of the connection between the shunt pipe support 7 and the inclined frame 41. At the same time, the shunt pipe support 7 is composed of two mutually fixed conical pipes, which can increase the water flow velocity while reducing the aperture, facilitating the rotation of the blade member 101.

[0060] Refer to Figure 1 , Figure 3 , Figure 6 , Figure 8 and Figure 9 , two circular pipe fittings 8 are installed on the shunt pipe support 7 to ensure the sealing performance of the connection. A drive assembly 10 is installed on the circular pipe fitting 8. The flowing energy of the water body can enable the drive assembly 10 to convert the water flow power into mechanical power. A transmission assembly 9 is commonly installed on the two drive assemblies 10. Through the transmission assembly 9, the converted mechanical power can be transmitted to the corresponding components, facilitating the control of the component operation. A linkage assembly 5 is connected to the transmission assembly 9. The linkage assembly 5 is connected to the cleaning and lifting assembly 4. The transmission assembly 9 penetrates through the sealing mechanism. A lifting assembly 11 is provided on the transmission assembly 9. The cleaning and lifting assembly 4 is located between the lifting assembly 11 and the drive assembly 10. Through the action of the transmission assembly 9, the linkage assembly 5 and the lifting assembly 11 can operate, so as to effectively clean the impurities and pollutants in the water body, make the impurities and pollutants rise, and contribute to improving the water quality.

[0061] Refer to Figure 1 , Figure 2 , Figure 3 , Figure 7 , Figure 8 and Figure 9 , an inclined frame 41, a filter screen 42, two lifting bending plates 45 and two inclined plates 44 are provided inside the cleaning and lifting assembly 4. The two inclined plates 44 and the two lifting bending plates 45 are arranged alternately. The upper end of the cleaning and lifting assembly 4 is detachably connected with a filter bag assembly 3. The lower lifting bending plate 45 is arranged on one side of the filter screen 42; the inclined frame 41 is composed of a frame structure, and the opening in the filter screen 42 and the inclined frame 41 are fixedly connected, and the side surfaces of the filter screen 42 and the inclined frame 41 are flush, enabling the water body to flow through the filter screen 42. However, the impurities and pollutants in the water body pass through the filter screen 42 under the action of the filter screen 42, and the impurities and pollutants are left on the filter screen 42.

[0062] Refer to Figure 1 , Figure 2 , Figure 3 , Figure 7 , Figure 8 and Figure 9, there are two linkage belts 1101 provided on the lifting assembly 11. A plurality of lifting plates 1102 are fixedly connected among the plurality of linkage belts 1101. The lifting plates 1102 are in contact with the filter net 42. The upper ends of the linkage belts 1101 are higher than the upper ends of the inclined frames 41. As the linkage belts 1101 operate in a cycle, and the operation of the linkage belts 1101 can make the lifting plates 1102 operate in a cycle to clean the impurities and pollutants in the water body, and can screen out the impurities and pollutants from the water body and lift them, so that the impurities and pollutants rise along the inclined frames 41 and the filter net 42, which is convenient for the subsequent entry of the impurities and pollutants into the filter bag assembly 3 through the action of the lifting and bending plate 45 and the inclined plate 44, and effectively separates the residual water in the impurities and pollutants.

[0063] Refer to Figure 2 , Figure 3 and Figure 4 , the mounting frame 2 includes a frame body assembly 21. Oblique slots 22 and mounting slots 23 are respectively formed on the opposite sides of the two frame body assemblies 21. The oblique slots 22 are inclined, which is convenient for the corresponding components in the lifting assembly 11 to be installed between the two frame body assemblies 21 and in the oblique slots 22, and can effectively make the impurities and pollutants rise. The mounting slots 23 are arranged at the lower ends of the frame body assemblies 21. The inclined frames 41 are located between the oblique slots 22 and the mounting slots 23; the transmission assembly 9 is located in the oblique slots 22 and the mounting slots 23 on one of the frame body assemblies 21. The linkage shaft 92 is rotatably sleeved in the frame body assembly 21, and the two ends of the linkage shaft 92 are respectively located at the lower ends of the mounting slot 23 and the oblique slot 22. The lifting assembly 11 is disposed through the two oblique slots 22, which is convenient for the operation of the lifting assembly 11 and helps the lifting plates 1102 in the lifting assembly 11 to contact the inclined frames 41 and the filter net 42 to make the impurities and pollutants rise.

[0064] Refer to Figure 1 , Figure 3 , Figure 8 and Figure 9 , the shunt pipe rack 7 is fixed on the side of the inclined frame 41 away from the lifting assembly 11. The filter net 42 is fixed in the inclined frame 41. The shunt pipe rack 7 corresponds to the two filter nets 42; the shunt pipe rack 7 is composed of two conical cover structures, which are fixedly connected between the two conical covers, and the two conical covers are fixed on the inclined frame 41, so that the filter net 42 is located within the range of the two conical cover openings, which can ensure that the water body quickly enters the shunt pipe rack 7 after passing through the filter net 42, forming two water flows, which is convenient for effectively utilizing the impact force of the water flow.

[0065] Refer to Figures 1 - 9, the lower ends of the two pushing and bending plates 45 are jointly fixed with a pushing frame 46, and the pushing and bending frame 46 is located at the upper end of the shunt pipe frame 7; the pushing and bending plate 45 at the lower end conflicts with the inclined frame 41, the pushing and bending plate 45 at the lower end conflicts with the inclined plate 44 at the lower end, the pushing and bending plate 45 at the upper end conflicts with the inclined plate 44 at the lower end, and the pushing and bending plate 45 at the upper end conflicts with the inclined plate 44 at the upper end. The two inclined plates 44 are fixed between the two frame assemblies 21, and the inclined plates 44, the pushing and bending plates 45 and the inclined frames 41 have the same degree of inclination. The pushing and bending plates 45 can adopt an inverted L shape. As impurities and pollutants rise, the impurities and pollutants can fall to the upper end of the pushing and bending plates 45, and the inclined plates 44 The width is large, so that impurities and pollutants can fall to the upper end of the inclined plate 44. When the push-up bent plate 45 falls back, the impurities and pollutants on the upper end of the inclined plate 44 can fall to the upper end of the corresponding push-up bent plate 45, so as to effectively lift the impurities and pollutants, so that the impurities and pollutants pass through the fixed frame 43 and fall into the filter bag assembly 3; the push-up frame 46 is connected to the linkage assembly 5; it helps to use power to enable the linkage assembly 5 to control the push-up frame 46 to rise and move. The two push-up bent plates 45 are respectively slidably installed on the two inclined plates 44, so that the push-up bent plates 45 can rise along the direction of the inclined plates 44. The inclined plates 44 all adopt a grid plate structure, and the grid plate can separate the water from the impurities and pollutants, which helps to make the impurities and pollutants rise.

[0066] Reference Figure 1 , Figure 2 , Figure 3 , Figure 5 , Figure 8 and Figure 9 The linkage assembly 5 includes a sliding assembly, a disc linkage member 52 and a rotating rod 51. The upper end of the rotating rod 51 is rotatably connected to the lower end of the sliding assembly, the sliding assembly is connected to the cleaning and lifting assembly 4, the lower end of the rotating rod 51 is rotatably connected to one side of the disc linkage member 52, the disc linkage member 52 is rotatably connected to one side of the diversion pipe rack 7, and the disc linkage member 52 is connected to the transmission assembly 9; when the water body impacts the driving assembly 10, the driving assembly 10 drives the disc linkage member 52 to rotate through the transmission assembly 9, and as the disc linkage member 52 rotates, the rotating rod 51 can push the sliding assembly thereon to rise and fall, and the sliding assembly is sleeved on the pushing frame 46, which can push the pushing frame 46 to rise, and can also make the pushing frame 46 tilt and rise under the action of the pushing bending plate 45.

[0067] Reference Figure 1 , Figure 3 , Figure 4 , Figure 6 , Figure 8 and Figure 9The lifting component 11 includes four second rotating shafts 1103 which are respectively rotatably sleeved in the two mounting frames 2. The two second rotating shafts 1103 located in the same mounting frame 2 form a group. The two linkage belts 1101 are respectively sleeved on the two groups of second rotating shafts 1103, and one of the second rotating shafts 1103 located at the lower end is connected to the transmission component 9; as the water body impacts the driving component 10, the transmission component 9 can drive the second rotating shaft 1103 to rotate. The two second rotating shafts 1103 located in the same inclined groove 22, the linkage belt 1101 is sleeved on the two second rotating shafts 1103, and drives the lifting plate 1102 to circulate, and as the lifting plate 1102 moves upward from the lower end of the inclined frame 41 and the filter screen 42, it can push the impurities and pollutants up, so that the impurities and pollutants fall to the upper end of the inclined frame 41, so that the impurities and pollutants on the inclined frame 41 fall on the lifting bending plate 45 after the lifting bending plate 45 falls back.

[0068] Reference Figure 1 , Figure 3 , Figure 8 and Figure 9 The driving assembly 10 includes a first rotating shaft member 102 fixed on one side of the circular tube member 8, the first rotating shaft member 102 is located at a paddle member 101 at one end of the circular tube member 8, the paddle member 101 is connected to the transmission assembly 9, and an electric control valve assembly 103 is installed between the two circular tube members 8, and the electric control valve assembly 103 is located on the side of the paddle member 101 away from the first rotating shaft member 102; through the action of the electric control valve assembly 103, it can be controlled whether there is water flowing in the circular tube member 8, so as to effectively cut off the water body, facilitate the trimming of the rear end of the support frame 1, and can also install or remove the filter bag assembly 3; at the same time, when the electric control valve assembly 103 is opened, the water body can impact the paddle member 101 to rotate the first rotating shaft member 102, and the impact force of the water body is converted into power.

[0069] Reference Figure 1 , Figure 3 , Figure 4 , Figure 8 and Figure 9, the transmission assembly 9 includes a linkage shaft 92 which is rotatably sleeved in one of the mounting brackets 2. At one end of the transmission assembly 9 close to the lifting assembly 11, a double-cone gear transmission assembly 93 is fixed, and the double-cone gear transmission assembly 93 is connected to the lifting assembly 11. Belt transmission assemblies 91 are installed on the drive assemblies 10 in both circular pipe fittings 8. One of the belt transmission assemblies 91 is connected to the linkage assembly 5, and the other belt transmission assembly 91 is connected to the linkage shaft 92. The belt transmission assembly 91 consists of two belt pulleys and a belt sleeved on the upper ends of the two belt pulleys. By installing the belt pulleys on the corresponding components as required, the transmission of power can be fully realized, which helps the disc linkage 52 to rotate, enables the linkage shaft 92 to rotate, and enables the double-cone gear transmission assembly 93 to transmit power so that one of the second rotating shaft members 1103 rotates.

[0070] The present invention also proposes a method for using a pollutant cleaning device for channel water pollution, which is applicable to the above-mentioned pollutant cleaning device for channel water pollution, and includes the following steps:

[0071] S1. Component installation: Insert the mounting bracket 2 into the support frame 1, and the support frame 1 can be placed in the water body so that the water body can flow through the support frame 1. At the same time, the seal 6 is located between the mounting bracket 2 and the support frame 1. Through the extrusion of the support frame 1 and the mounting bracket 2, the gap can be filled. Through the action of the electric control valve assembly 103, it can control whether there is water flow in the circular pipe fitting 8. When there is no water flow, it is convenient for the staff to repair the rear end of the support frame 1.

[0072] S2. Equipment startup: The staff operates the electric control valve assembly 103 to enable the water flow to pass through the circular pipe fitting 8 to make the paddle member 101 rotate, and at the same time, the paddle member 101 can make the first rotating shaft member 102 rotate, which is convenient for the first rotating shaft member 102 to drive the linkage assembly 5 and the lifting assembly 11 to operate through the transmission assembly 9.

[0073] S3. Cleaning of impurities and pollutants: When the two paddle members 101 drive the two first rotating shaft members 102 connected to them to rotate respectively, the first rotating shaft members 102 can drive the belt transmission assemblies 91 connected to them to operate. One of the belt transmission assemblies 91 drives the disc linkage 52 to rotate. Through the rotation of the disc linkage 52, the rotating rod 51 can drive the lifting frame 46 to tilt and lift through the sliding sleeve assembly, which is convenient for driving the lifting bending plate 45 to lift along the direction of the inclined plate 44.

[0074] When another belt drive assembly 91 drives one of the second rotating shaft members 1103 through the linkage shaft 92 and the double conical gear drive assembly 93, the second rotating shaft member 1103 can drive the lifting plate 1102 to operate cyclically through the linkage belt 1101, and the lifting plate 1102 will operate from the lower end of the inclined frame 41 to the upper end of the inclined frame 41. The impurities will rise along the inclined frame 41 and the filter screen 42 under the action of the lifting plate 1102, causing the impurities to fall onto the upper end of the lifting bending plate 45. Along with the operation of the lifting bending plate 45, the impurities will alternately rise to the upper lifting bending plate 45, and then enter the fixed frame 43 and the filter bag assembly 3 through the lifting bending plate 45.

[0075] S4. Disassembly and replacement: When there is a large amount of impurities stored in the filter bag assembly 3, the electric control valve assembly 103 closes the circular pipe fitting 8, and the filter bag assembly 3 can be disassembled from the fixed frame 43. After replacement, the electric control valve assembly 103 is opened again.

[0076] The above is only a preferred specific embodiment of the present invention, but the protection scope of the present invention is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present invention, according to the technical solution and inventive concept of the present invention, makes equivalent substitutions or changes, and all should be covered by the protection scope of the present invention.

Claims

1. A pollutant cleaning device for channel water pollution, comprising a support frame (1), characterized in that: A sealing mechanism is provided inside the support frame (1). A cleaning and lifting component (4) is provided on the sealing mechanism. A diversion pipe rack (7) is fixed to the lower end of the cleaning and lifting component (4). Two circular pipe fittings (8) are installed on the diversion pipe rack (7). A driving component (10) is installed on the circular pipe fitting (8). A transmission component (9) is jointly installed on the two driving components (10). A linkage component (5) is connected to the transmission component (9). The linkage component (5) is connected to the cleaning and lifting component (4). The transmission component (9) penetrates the sealing mechanism. A lifting component (11) is provided on the transmission component (9). The cleaning and lifting component (4) is located between the lifting component (11) and the driving component (10). An inclined frame (41), a filter screen (42), two lifting bent plates (45) and two inclined plates (44) are provided inside the cleaning and lifting component (4). The two inclined plates (44) and the two lifting bent plates (45) are arranged alternately. The upper end of the cleaning and lifting component (4) is detachably connected to a filter bag component (3). The lower lifting bent plate (45) is arranged on one side of the filter screen (42). Two linkage belts (1101) are provided on the lifting component (11). A plurality of lifting plates (1102) are jointly fixed between the plurality of linkage belts (1101). The lifting plate (1102) abuts against the filter screen (42). The upper end of the linkage belt (1101) is higher than the upper end of the inclined frame (41).

2. The pollutant cleaning device for channel water pollution according to claim 1, wherein: The sealing mechanism includes two mounting frames (2). Sealing members (6) are fixed to the outer sides of the two mounting frames (2). The two sealing members (6) respectively abut against the opposite side walls inside the support frame (1). The lower end of the mounting frame (2) abuts against the bottom inside the support frame (1). The two sides of the inclined frame (41) and the two inclined plates (44) are respectively fixed to the two mounting frames (2). The two inclined plates (44) and the inclined frame (41) are installed in sequence from top to bottom. The two inclined plates (44) and the inclined frame (41) are inclined. The lifting component (11) is connected to the mounting frame (2).

3. The pollutant cleaning device for channel water pollution according to claim 2, wherein: The mounting frame (2) includes a frame body component (21). Inclined grooves (22) and mounting grooves (23) are formed on the opposite sides of the two frame body components (21). The inclined grooves (22) are inclined. The mounting groove (23) is arranged at the lower end of the frame body component (21). The inclined frame (41) is located between the inclined groove (22) and the mounting groove (23). The transmission component (9) is located in the inclined groove (22) and the mounting groove (23) on one of the frame body components (21). The lifting component (11) penetrates through the two inclined grooves (22).

4. The pollutant cleaning device for channel water pollution according to claim 3, characterized in that: The diversion pipe rack (7) is fixed to the side of the inclined frame (41) away from the lifting component (11). The filter screen (42) is fixed inside the inclined frame (41). The diversion pipe rack (7) corresponds to the two filter screens (42).

5. The pollutant cleaning device for channel water pollution according to claim 4, characterized in that: The lower ends of the two lifting bent plates (45) are jointly fixed to a lifting frame (46). The lifting frame (46) is located above the diversion pipe rack (7). The push-up bending plate (45) at the lower end abuts against the inclined frame (41), and the push-up bending plate (45) at the lower end abuts against the inclined plate (44) at the lower end; The push-up bending plate (45) at the upper end and the inclined plate (44) at the lower end are in conflict with each other, and the push-up bending plate (45) at the upper end and the inclined plate (44) at the upper end are in conflict with each other, and the push-up frame (46) and the linkage assembly (5) are connected; The two push-up bending plates (45) are respectively slidably mounted on the two inclined plates (44), and the inclined plates (44) are both grid plate structures; A fixing frame (43) is fixed on the inclined plate (44) at the upper end, and the filter bag assembly (3) and the fixing frame (43) are detachably connected.

6. The pollutant cleaning device for channel water pollution according to claim 5, characterized in that: The linkage assembly (5) comprises a sliding sleeve, a disc linkage member (52) and a rotating rod (51); the upper end of the rotating rod (51) is rotatably connected to the lower end of the sliding sleeve; the sliding sleeve is connected to the cleaning lifting assembly (4); the lower end of the rotating rod (51) is rotatably connected to one side of the disc linkage member (52); the disc linkage member (52) is rotatably connected to one side of the diversion pipe rack (7); and the disc linkage member (52) is connected to the transmission assembly (9).

7. The pollutant cleaning device for channel water pollution according to claim 6, characterized in that: The lifting assembly (11) comprises four second rotating shaft members (1103) which are respectively rotatably sleeved in two mounting frames (2), two second rotating shaft members (1103) located in the same mounting frame (2) form a group, and two linkage belts (1101) are respectively sleeved on the two groups of second rotating shaft members (1103), and one of the second rotating shaft members (1103) located at the lower end is connected to the transmission assembly (9).

8. A pollutant cleaning device for channel water pollution according to claim 7, characterized in that: The driving assembly (10) comprises a first rotating shaft member (102) fixed to one side of the circular tube member (8); the first rotating shaft member (102) is located at a paddle member (101) at one end of the circular tube member (8); the paddle member (101) is connected to the transmission assembly (9); an electric control valve assembly (103) is installed between the two circular tube members (8); the electric control valve assembly (103) is located at a side of the paddle member (101) away from the first rotating shaft member (102).

9. The pollutant cleaning device for channel water pollution according to claim 8, characterized in that: The transmission assembly (9) comprises a linkage shaft (92), the linkage shaft (92) being rotatably sleeved in one of the mounting frames (2), a double-cone gear transmission assembly (93) being fixed to one end of the transmission assembly (9) close to the push-up assembly (11), and the double-cone gear transmission assembly (93) and the push-up assembly (11) being connected; Belt transmission components (91) are installed on the driving components (10) in the two round tubes (8), one of the belt transmission components (91) is connected to the linkage component (5), and the other belt transmission component (91) is connected to the linkage shaft (92).

10. A method for using a pollutant cleaning device for channel water pollution, applicable to a pollutant cleaning device for channel water pollution according to claim 9 above, characterized in that, The following steps are involved: S1. Component Installation: Insert the mounting frame (2) into the support frame (1), place the support frame (1) in the water body so that water can flow through the support frame (1). Meanwhile, the seal (6) is located between the mounting frame (2) and the support frame (1). Through the extrusion of the support frame (1) and the mounting frame (2), the gap can be filled. The action of the electric control valve assembly (103) can control whether water flows in the circular pipe fitting (8). When there is no water flow, it is convenient for the staff to trim the rear end of the support frame (1). S2. Equipment Startup: The staff operates the electric control valve assembly (103) to enable water to flow through the circular pipe fitting (8) to make the paddle component (101) rotate. At the same time, the paddle component (101) can make the first rotating shaft component (102) rotate, which is convenient for the first rotating shaft component (102) to drive the linkage component (5) and the lifting component (11) to operate through the transmission component (9). S3. Cleaning of Impurities and Pollutants: When the two paddle components (101) drive the two first rotating shaft components (102) connected to them to rotate respectively, the first rotating shaft component (102) can drive the belt transmission component (91) connected to it to operate. One of the belt transmission components (91) drives the disc linkage (52) to rotate. Through the rotation of the disc linkage (52), the rotating rod (51) can drive the lifting frame (46) to tilt and lift through the sliding sleeve component, which is convenient for driving the lifting bending plate (45) to lift along the direction of the inclined plate (44). When the other belt transmission component (91) drives one of the second rotating shaft components (1103) to rotate through the linkage shaft (92) and the double conical gear transmission component (93), the second rotating shaft component (1103) can drive the lifting plate (1102) to operate in a cycle through the linkage belt (1101). And the lifting plate (1102) will operate from the lower end of the inclined frame (41) to the upper end of the inclined frame (41). The impurities will rise along the inclined frame (41) and the filter screen (42) under the action of the lifting plate (1102), and the impurities will fall onto the upper end of the lifting bending plate (45). With the operation of the lifting bending plate (45), the impurities will alternately rise to the upper lifting bending plate (45), and then the impurities will enter the fixed frame (43) and the filter bag assembly (3) through the lifting bending plate (45). S4. Disassembly and Replacement: When there is a large amount of impurities stored in the filter bag assembly (3), the electric control valve assembly (103) is used to close the circular pipe fitting (8). The filter bag assembly (3) can be disassembled from the fixed frame (43), replaced, and then the electric control valve assembly (103) is opened.

Citation Information

Patent Citations

  • A three-dimensional river water ecological restoration auxiliary device

    CN222729517U