Cleaning equipment convenient for water filtration

The hydraulic cylinder drives the lifting and mixing of the tank lid and mixing the stirring blades, combined with the multi-stage filtration system, solves the problems of small particles' impurities suspension and uneven flow of water liquid, and achieves efficient cleaning and water resource recycling, and improves production efficiency.

CN223185090UActive Publication Date: 2025-08-05SICHUAN LINHE SILICON CO LTD
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Patent Information

Application Number
CN202422150469.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-03
Publication Date
2025-08-05
Estimated Expiration
2034-09-03

AI Technical Summary

Technical Problem

During the recycling process of existing cleaning equipment, small particles of impurities may be suspended in the medium, and the water flows unevenly during the precipitation process, resulting in poor local precipitation effect and affecting the cleaning effect.

Method used

The hydraulic cylinder drive tank lid lifting structure is adopted, combined with agitating blades and multi-stage filtration system to achieve full mixing of media and materials, and the bucket-shaped discharge trough and filter are used to separate large solid impurities, and the sewage is deeply purified through multi-layer filter parts to reduce impurities re-adsorption.

Benefits of technology

It improves the cleaning effect, shortens the cleaning time, reduces raw material damage, realizes the recycling of water resources, reduces equipment downtime, and improves production efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of industrial silicon processing, in particular to cleaning equipment convenient for water filtration, which comprises a tank body, a tank cover is connected to the top of the tank body in an inserted manner, the tank body and the tank cover are integrally connected through a bearing frame, and a hydraulic oil cylinder is connected to the top of the bearing frame through bolts. The power output end of the hydraulic oil cylinder is connected to the top of the tank cover through a bolt. According to the improved cleaning equipment, the lifting structure of the material barrel along with the tank cover avoids re-adsorption of impurities, the cleaning effect is improved, the stirring blades rotating at a high speed are additionally arranged, so that a cleaning medium and materials are fully mixed, uniform cleaning is achieved, stubborn impurities are removed, the cleaning time is shortened, meanwhile, raw materials are not prone to being damaged, and the filter is installed through the sealing cover and convenient to disassemble and clean. And the sewage subjected to primary filtration enters the treatment box, and is deeply purified by combining three groups of filtering pieces made of different materials in the treatment box, so that the cyclic utilization of water resources is realized, and the environmental influence is reduced.
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Description

Technical Field

[0001] The utility model relates to the technical field of industrial silicon processing, in particular to a cleaning device convenient for water filtration. Background Art

[0002] Industrial silicon processing refers to a series of physical, chemical or mechanical treatments of industrial silicon to change its form, performance or purity to meet the requirements of different industrial applications. Industrial silicon processing may include crushing, grinding, screening to obtain silicon particles with specific particle sizes; improving the purity of silicon through chemical methods such as refining and purification; or performing operations such as melting, casting, and molding to make industrial silicon into various shapes and specifications of products, such as silicon ingots, silicon wafers, silicon rods, etc.

[0003] Since the purity of industrial silicon is crucial for its subsequent applications, it is necessary to use a cleaning device to thoroughly clean the raw materials at the initial stage of processing to remove impurities, dust, oxides and other possible pollutants on the surface of the raw materials.

[0004] The inventor found the following problems in the prior art during the implementation of the present utility model: 1. For the protection of water resources, these cleaning devices usually adopt a recycling method for cleaning. At present, many cleaning devices use a static filtration method to achieve preliminary screening of large particle solid impurities. However, since the raw materials are still immersed in the medium, small particle impurities may still be suspended in the medium, and long-term immersion of the raw materials may cause some impurities to redissolve into the water solution, making the filtration more complicated; 2. And during the precipitation process, the flow of the water solution is uneven, which may cause poor local precipitation effect. Content of the Utility Model

[0005] The purpose of the present utility model is to provide a cleaning device that facilitates the filtration of water and liquid, so as to solve the problems raised in the above-mentioned background technology. When the raw materials are soaked in the medium, small particle impurities may still be suspended in the medium, and during the precipitation process, the flow of the water and liquid is uneven, which may cause poor local precipitation effect. To achieve the above purpose, the present utility model provides the following technical solutions: A cleaning device that facilitates the filtration of water and liquid, including a tank body, the top of the tank body is inserted and connected with a tank cover, the tank body and the tank cover are integrally connected through a bearing frame, the top of the bearing frame is bolted with a hydraulic cylinder, the power output end of the hydraulic cylinder is bolted to the top of the tank cover, the bottom of the tank cover is bolted with a material bucket, a funnel-shaped drainage groove is opened at the bottom inside the tank body, a waterproof shell is opened above the funnel-shaped drainage groove, the waterproof shell is welded to one side of the inner wall of the tank body, a treatment channel is opened at the bottom outside the tank body, the bottom of the treatment channel is threadedly connected with a sealing cover, a filter is inserted and connected to the top of the sealing cover, the filter is located inside the treatment channel and its outer wall is annularly fitted to the inner wall of the treatment channel, a treatment box is opened on one side of the tank body away from its outer wall, one end of the treatment box is connected to one side of the outer wall of the treatment channel through a water pump and a pipeline, and the other end of the treatment box is connected to one side of the outer wall of the tank body through a water pump and a pipeline.

[0006] One side of the material bucket is rotatably connected with a movable panel, and tenon grooves are respectively opened at both ends of the outer wall of the material bucket corresponding to one side of the movable panel, and tenon heads for inserting and connecting to the tenon grooves are respectively opened at both ends of the movable panel.

[0007] A driving bevel gear and a driven bevel gear are respectively rotatably connected inside the waterproof shell, the driving bevel gear is integrally connected with the output end of a servo motor on one side of the outer wall of the tank body through a shaft rod penetrating through its axis, an annularly distributed stirring blade is opened at the top of the waterproof shell, the stirring blades are integrally connected to each other and the shaft head at one end of the shaft rod through their axes penetrates through the driven bevel gear and is welded to it as a whole.

[0008] Further preferably, sliding rods are opened at both ends of the bearing frame corresponding to the hydraulic cylinder, and the tank cover forms a lifting structure on the top of the tank body through the hydraulic cylinder, and the tank cover is slidably connected to the sliding rods on the top of the bearing frame through sliders at both ends of the hydraulic cylinder.

[0009] Further preferably, the material bucket is open at the top, and through holes are provided through its annular side edge and bottom, and through holes consistent with the specifications of the material bucket are opened on the surface of the movable panel, and the movable panel forms an opening and closing structure on one side of the material bucket and is connected to the material bucket through the insertion connection of the tenon head and the tenon groove, and the tenon head and the tenon groove are threadedly connected through a limit bolt.

[0010] Further preferably, the stirring blades are located at the bottom of the material barrel and are spaced a certain distance from it. The stirring blades are arc-shaped, with the end adjacent to the inner wall of the tank being wider, and the stirring blades gradually narrow along the axial direction. At the same time, the stirring blades are rotationally connected between the hopper-shaped drainage chute and the material barrel through a driving bevel gear and a driven bevel gear.

[0011] Further preferably, the tank body and the hopper-shaped drainage chute are integrally connected. The narrower end of the hopper-shaped drainage chute extends into the interior of the treatment channel through a pipeline and is located above the filter. A ball valve is provided at the pipe opening of the hopper-shaped drainage chute corresponding to the treatment channel.

[0012] Further preferably, the top of the filter is an inclined structure with a 45-degree angle cut surface. The pipe opening on the side where the treatment channel is connected to the treatment box is located at the higher end of the filter top cut surface. The filter is made of metal and has through holes penetrating its surface. At the same time, the diameter of the through holes on the surface of the filter is smaller than the diameter of the through holes of the material barrel.

[0013] Further preferably, the treatment box is L-shaped, with its lower side connected to the treatment channel and its higher side connected to the tank body. The inner walls of the lower side of the treatment box are respectively inserted and connected with a first filter element, a second filter element, and a third filter element. At the same time, there is a certain distance between the first filter element, the second filter element, and the third filter element. A maintenance plate is rotationally connected to the lower side of the top of the treatment box, and the maintenance plate is located directly above the first filter element, the second filter element, and the third filter element.

[0014] Compared with the prior art, the beneficial effects of the present utility model are as follows:

[0015] In the present utility model, the tank cover is lifted and lowered by a hydraulic cylinder, which is closely inserted with the tank body. Guided by the slider and the slide rod, it is stable and without deviation, creating good conditions for stirring and cleaning. The opening and closing structure of the material barrel, the mortise and tenon and threaded connections ensure stability. Its hollow structure can initially screen impurities, and its structure that rises with the tank cover avoids re-adsorption of impurities, improving the cleaning effect. The addition of high-speed rotating stirring blades makes the cleaning medium and the material fully mixed, evenly cleaning, removing stubborn impurities, shortening the cleaning time and not easily damaging the raw materials.

[0016] In this utility model, after the initial cleaning, the bucket-shaped drainage trough uses gravity to make sewage and waste flow naturally into the treatment channel to complete the initial filtration, reducing cross-contamination and separating large solid waste. The ball valve of the bucket-shaped drainage trough realizes sewage discharge and solid particle filtration. The filter intercepts large particle impurities, and fine impurities enter the treatment tank for further treatment, achieving hierarchical filtration, improving the accuracy and effect. The filter is installed through a sealing cover, which is convenient for disassembly and cleaning, reducing downtime and improving processing efficiency. Moreover, the sewage after the initial filtration enters the treatment tank, where it is combined with three different material filter elements inside to deeply purify the sewage, realizing the recycling of water resources and reducing environmental impact. The maintenance panel on its top is convenient for replacing the filter element. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Figure 1 is the front view structural schematic diagram of the present utility model;

[0018] Figure 2 is the structural schematic diagram of the bottom of the tank cover of the present utility model;

[0019] Figure 3 is the structural schematic diagram of the material bucket of the present utility model;

[0020] Figure 4 is the structural schematic diagram of the interior of the tank body of the present utility model;

[0021] Figure 5 is the structural schematic diagram of the interior of the treatment channel of the present utility model;

[0022] Figure 6 is the structural schematic diagram of the interior of the treatment tank of the present utility model.

[0023] In the figure: 1, tank body; 2, tank cover; 3, bearing frame; 4, hydraulic cylinder; 5, material bucket; 501, movable panel; 502, mortise groove; 503, tenon; 504, limit bolt; 6, bucket-shaped drainage trough; 7, waterproof shell; 701, driving bevel gear; 702, driven bevel gear; 703, stirring blade; 8, treatment channel; 9, sealing cover; 10, filter; 11, treatment tank; 1101, first filter element; 1102, second filter element; 1103, third filter element; 1104, maintenance panel. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0024] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative work shall fall within the protection scope of the present utility model.

[0025] Please refer to Figures 1 to 6, the utility model provides a technical solution: a cleaning device for facilitating water and liquid filtration, including a tank body 1, a tank cover 2 is inserted and connected to the top of the tank body 1, the tank body 1 and the tank cover 2 are integrally connected through a bearing frame 3, the top of the bearing frame 3 is bolted with a hydraulic cylinder 4, the power output end of the hydraulic cylinder 4 is bolted to the top of the tank cover 2, the bottom of the tank cover 2 is bolted with a material bucket 5, a hopper-shaped drainage groove 6 is opened at the inner bottom of the tank body 1, a waterproof shell 7 is opened above the hopper-shaped drainage groove 6, the waterproof shell 7 is welded to one side of the inner wall of the tank body 1, a treatment channel 8 is opened at the outer bottom of the tank body 1, a sealing cover 9 is threadedly connected to the bottom of the treatment channel 8, a filter 10 is inserted and connected to the top of the sealing cover 9, the filter 10 is located inside the treatment channel 8 and its outer wall is annularly fitted to the inner wall of the treatment channel 8, a treatment box 11 is opened on one side of the tank body 1 away from its outer wall, one end of the treatment box 11 is connected to one side of the outer wall of the treatment channel 8 through a water pump and a pipeline, and the other end of the treatment box 11 is connected to one side of the outer wall of the tank body 1 through a water pump and a pipeline.

[0026] A movable panel 501 is rotatably connected to one side of the material bucket 5, tenon grooves 502 are respectively opened at both ends of the outer wall of the material bucket 5 corresponding to one side of the movable panel 501, and tenon heads 503 for inserting and connecting to the tenon grooves 502 are respectively opened at both ends of the movable panel 501.

[0027] A driving bevel gear 701 and a driven bevel gear 702 are respectively rotatably connected inside the waterproof shell 7, the driving bevel gear 701 is integrally connected to the output end of a servo motor on one side of the outer wall of the tank body 1 through a shaft rod penetrating through its axis, an annularly distributed stirring blade 703 is opened at the top of the waterproof shell 7, the stirring blades 703 are integrally connected to each other and the shaft head at one end of the shaft rod at their axis penetrates through the driven bevel gear 702 and is welded to it as a whole.

[0028] In this embodiment, as Figure 1 and Figure 2 shown, sliding rods are opened at both ends of the bearing frame 3 corresponding to the hydraulic cylinder 4, and the tank cover 2 forms a lifting structure on the top of the tank body 1 through the hydraulic cylinder 4, and the tank cover 2 is slidably connected to the sliding rods on the top of the bearing frame 3 through sliders at both ends of the hydraulic cylinder 4; the tank cover 2 is lifted through the hydraulic cylinder 4 to quickly complete the opening and closing with the tank body 1, and the special insertion structure of the tank cover 2 and the tank body 1 increases the tight closing property of their connection to lay a foundation for subsequent stirring and cleaning, effectively preventing the phenomenon of medium overflow, and combining the slider structure at both ends of the tank cover 2 and the sliding rods of the bearing frame 3 plays a certain guiding role, making the tank cover 2 stable during the lifting process and reducing shaking and deviation.

[0029] In this embodiment, as Figure 2 and Figure 3As shown, the material barrel 5 is open at the top and its annular rim and bottom are penetrated by through holes, and the surface of the movable panel 501 is provided with a through hole consistent with the specification of the material barrel 5, and the movable panel 501 forms an opening and closing structure on one side of the material barrel 5 and is connected to the material barrel 5 through the plug-in connection of the tenon 503 and the tenon groove 502, and the tenon 503 and the tenon groove 502 are threadedly connected by a limit bolt 504; the material barrel 5 is used to load the raw materials to be cleaned, and the movable panel 501 of the opening and closing structure on one side provides favorable convenience for the addition and extraction of the raw materials, and provides preliminary positioning and fixation in advance through the mortise and tenon connection, and the threaded connection through the limit bolt 504 further enhances the stability of the connection part, ensuring that the movable panel 501 will not be accidentally opened during the cleaning process, and the hollow structure adopted on the surface of the entire material barrel 5 is used during the cleaning process. During the process, large particles of impurities can be directly discharged from the barrel 5 through the through hole, realizing preliminary screening and separation, reducing the burden of subsequent filtration steps. At the same time, it is an integrated structure with the tank cover 2. When the tank cover 2 is lifted, it is correspondingly lifted out from the inside of the tank body 1. When the tank body 1 processes the medium for the first cleaning, the lifting structure of the barrel 5 is more effective in removing impurities than the traditional method of always being immersed in the gradually dirty medium. Although the medium is recycled after filtration, if the barrel 5 is immersed in the gradually dirty medium, it will go through a waiting process before it is discharged. During this period, it is easy to cause impurities to be re-adsorbed on the raw materials, continuously accumulate, and the cleaning effect gradually deteriorates. Its lifting structure can quickly separate the barrel 5 from the sewage, and newly generated impurities or impurities that have fallen off the surface of the material but have not yet been discharged will not adhere to the material again, thereby improving the intensity of the secondary cleaning.

[0030] In this embodiment, Figure 4 As shown, the stirring blade 703 is located at the bottom of the barrel 5 and is separated from it by a certain distance, and the stirring blade 703 is arc-shaped and is wider at one end adjacent to the inner wall of the tank body 1, and the stirring blade 703 gradually narrows along the axial direction, and at the same time, the stirring blade 703 is connected between the bucket-shaped discharge trough 6 and the barrel 5 through the active bevel gear 701 and the driven bevel gear 702; the high-speed rotating stirring blade 703 can make the cleaning medium and the material fully mixed, quickly peel off the impurities from the surface of the material, shortening the time required for cleaning, and this cleaning method can ensure that all parts of the material can be evenly contacted with the cleaning medium, avoiding the situation of incomplete local cleaning that may occur in static sedimentation, and its structural form can generate more effective fluid dynamics, promote the flow and circulation of the medium, and improve the cleaning effect. This cleaning method not only does not cause the breakage of the raw materials, but also effectively removes stubborn impurities.

[0031] In this embodiment, Figure 4As shown, the tank body 1 and the bucket-shaped drainage trough 6 are integrally connected. The narrower end of the bucket-shaped drainage trough 6 extends into the interior of the treatment channel 8 through a pipeline and is located above the filter 10. A ball valve is provided at the pipe opening of the bucket-shaped drainage trough 6 corresponding to the treatment channel 8. When the initial cleaning is completed, due to the structural form of the bucket-shaped drainage trough 6, when the material bucket 5 is lifted with materials, opening the valve of the bucket-shaped drainage trough 6 can make the sewage and fixed waste flow into the treatment channel 8 along the inclined opening of the bucket-shaped drainage trough 6, and the initial filtration is completed inside the treatment channel 8. First, the special structure of the bucket-shaped drainage trough 6 can utilize the gravity effect to make the sewage and waste flow naturally and smoothly. At the same time, it is centrally treated through the filtering structure inside the treatment channel 8, reducing the risk of cross-contamination, separating out larger solid waste in advance, and reducing the burden on subsequent filtering equipment.

[0032] In this embodiment, as Figure 5 shown, the top of the filter 10 is an inclined structure with a 45-degree angle cut surface. The pipe opening on the side where the treatment channel 8 is connected to the treatment box 11 is located at the higher end of the top cut surface of the filter 10. The filter 10 is made of metal and has through holes penetrating its surface. At the same time, the diameter of the through holes on the surface of the filter 10 is smaller than the diameter of the through holes of the material bucket 5. The first sewage discharge and filtration are realized through the ball valve inside the bucket-shaped drainage trough 6. The ball valve not only has good sealing performance but can also discharge solid particles. The filter 10 can intercept large-particle solid impurities, while fine impurities enter the treatment box 11 through the pipe opening adjacent to its higher end through the pipeline for further treatment, realizing hierarchical filtration, improving the accuracy and effect of filtration. And the filter 10 is installed in the treatment channel 8 through the sealing cover 9, and there is a ball valve between the bucket-shaped drainage trough 6 and the treatment channel 8. Even during the secondary cleaning, the filter 10 can be disassembled and cleaned through the sealing cover 9, improving the processing efficiency while reducing the equipment downtime.

[0033] In this embodiment, as Figure 6As shown in the figure, the processing box 11 is L-shaped. Its lower side is connected to the processing channel 8, and its higher side is connected to the tank body 1. The inner walls of the lower side of the processing box 11 are respectively inserted and connected with a first filter element 1101, a second filter element 1102, and a third filter element 1103. At the same time, there is a certain distance between the first filter element 1101, the second filter element 1102, and the third filter element 1103. A maintenance plate 1104 is rotatably connected to the lower side of the top of the processing box 11, and the maintenance plate 1104 is located directly above the first filter element 1101, the second filter element 1102, and the third filter element 1103. First, the first filter element 1101 uses a filter element made of quartz sand, which has a low cost and can adsorb and remove suspended solids in the sewage. The second filter element 1102 uses an ultrafiltration membrane filter element, which can remove small impurities such as macromolecular organic matter and bacteria in the sewage. The third filter element 1103 uses a filter element made of activated carbon, which can adsorb the odor, color, and residual organic matter in the sewage. Through the combination of three different filter materials, the preliminarily filtered sewage can be gradually and deeply purified, removing various impurities and pollutants in it, making the treated water meet the requirements for re-circulation use, improving the utilization rate of water resources, and at the same time reducing the impact of sewage discharge on the environment. Moreover, the structure of the maintenance plate 1104 provides convenience for the operator to replace the internal filter element.

[0034] The usage method and advantages of the present utility model: For this cleaning equipment facilitating water filtration, during use, the working process is as follows:

[0035] Such as Figure 1 、 Figure 2 、 Figure 3 、 Figure 4 、 Figure 5 and Figure 6As shown in the figure, first, the hydraulic cylinder 4 raises the tank cover 2 to a certain height to facilitate the operator to put in the raw materials. It should be noted that there is a certain gap between the top of the drum 5 and the tank cover 2, so there is no restriction when putting in and taking out the materials. By turning the limit bolt 504, its shaft head at one end is disengaged from the inside of the mortise groove 502 during rotation, and the movable panel 501 is opened. After the operator puts the industrial silicon raw materials to be processed into the drum 5, the movable panel 501 is flipped again, and the mortise-tenon connection with the mortise groove 502 is achieved through the tenons 503 on both sides of it. Then the limit bolt 504 is turned in the reverse direction to be fixed to the mortise groove 502. And the inside of the tank body 1 is filled with an appropriate amount of clean water through an external water supply device, or according to different cleaning processes and requirements, an aqueous solution added with specific cleaning agents or chemical agents is used to complete the feeding of the medium. The driving power source hydraulic cylinder 4 drives the tank cover 2 to descend and insert into the corresponding annular notch at the top of the tank body 1. At this time, the drum 5 descends into the tank body 1. The power on one side outside the tank body 1 is turned on, and the driving bevel gear 701 inside the waterproof housing 7 rotates to mesh with the driven bevel gear 702 to rotate, so that the stirring blades 703 connected coaxially and distributed in a ring rotate in the medium. The waterproof housing 7 is made of aluminum alloy and its surface is coated with an epoxy resin coating, which has certain corrosion resistance. And sealing gaskets are respectively arranged at the joints between it and the outside of the tank body 1 and the stirring blades 703. The structural form of the stirring blades 703 can generate more effective hydrodynamic force, promote the flow of the medium and the contact with the raw materials inside the drum 5, and improve the cleaning effect. After cleaning for a certain period of time, the power outside the tank body 1 is turned off. The hydraulic cylinder 4 drives the tank cover 2 to rise to a certain height again, and the valve at one end of the connection between the hopper-shaped drainage trough 6 and the treatment channel 8 is opened. The sewage in the tank body 1 will gradually fall to the inside of the treatment channel 8 along the inclined surface of the hopper-shaped drainage trough 6 under the action of gravity. Due to the interception of the filter 10, large solid particle impurities will remain inside it, and the sewage containing small particles and suspended substances will flow into the treatment tank 11 through the pipeline on one side of the treatment channel 8 by a water pump. After being filtered repeatedly during the process of contacting the first filter element 1101, the second filter element 1102 and the third filter element 1103 respectively, it enters another cavity of the treatment tank 11 and is finally transported back to the tank body 1 by the water pump and the pipeline again. The operator can drive the tank cover 2 to descend again by using the hydraulic cylinder 4 to complete the closing with the tank body 1, so as to clean the raw materials inside the drum 5 again. The cleaning process of the raw materials is completed by the way of repeatedly filtering the sewage and recycling the water. And during each cleaning process and when the valve of the hopper-shaped drainage trough 6 is in the closed state, the filter 10 can be taken out by turning the sealing cover 9 to clean the impurities inside it, so that the filter 10 can always maintain good filtering performance, avoid affecting the filtering efficiency and effect due to the accumulation of impurities, reduce the downtime caused by equipment maintenance and cleaning, and improve the production efficiency.

[0036] The basic principles, main features and advantages of the present utility model have been shown and described above. Those skilled in the art should understand that the present utility model is not limited by the above embodiments. The above embodiments and the descriptions in the specification are only preferred examples of the present utility model and are not used to limit the present utility model. Without departing from the spirit and scope of the present utility model, various changes and improvements will occur to the present utility model, and all these changes and improvements fall within the scope of the present utility model claimed. The scope of protection claimed by the present utility model is defined by the appended claims and their equivalents.

Claims

1. A cleaning device for facilitating water filtration, comprising a tank (1), characterized in that: The top of the tank body (1) is plug-connected with a tank cover (2), and the tank body (1) and the tank cover (2) are integrally connected through a load-bearing frame (3). The top of the load-bearing frame (3) is connected to a hydraulic cylinder (4) through bolts, and the power output end of the hydraulic cylinder (4) is connected to the top of the tank cover (2) through bolts. The bottom of the tank cover (2) is connected to a material barrel (5) through bolts. A bucket-shaped drainage groove (6) is provided at the bottom of the tank body (1), and a waterproof shell (7) is provided above the bucket-shaped drainage groove (6). The waterproof shell (7) is welded to one side of the inner wall of the tank body (1). The tank body ( 1) A processing channel (8) is provided at the outer bottom, a sealing cover (9) is threadedly connected to the bottom of the processing channel (8), a filter (10) is plugged and connected to the top of the sealing cover (9), the filter (10) is located inside the processing channel (8) and its outer wall is annularly attached to the inner wall of the processing channel (8), a processing box (11) is provided on the side of the tank body (1) away from the outer wall thereof, one end of the processing box (11) is connected to one side of the outer wall of the processing channel (8) through a water pump and a pipeline, and the other end of the processing box (11) is connected to one side of the outer wall of the tank body (1) through a water pump and a pipeline; One side of the material barrel (5) is rotatably connected to a movable panel (501), and two ends of the outer wall of the material barrel (5) corresponding to one side of the movable panel (501) are respectively provided with mortises (502), and two ends of the movable panel (501) are respectively provided with tenons (503) for being plugged into and connected to the mortise (502); The interior of the waterproof shell (7) is rotatably connected to a driving bevel gear (701) and a driven bevel gear (702). The driving bevel gear (701) is integrally connected to the output end of the servo motor on one side of the outer wall of the tank body (1) via a shaft penetrating through the axis thereof. The top of the waterproof shell (7) is provided with stirring blades (703) distributed in an annular shape. The stirring blades (703) are integrally connected to each other and penetrate the driven bevel gear (702) via a shaft head at one end of the shaft at the axis thereof and are welded to the driven bevel gear (702) as a whole.

2. The cleaning device for facilitating water filtration according to claim 1, characterized in that: The load-bearing frame (3) is provided with sliding rods at both ends corresponding to the hydraulic cylinder (4), and the tank cover (2) forms a lifting structure on the top of the tank body (1) through the hydraulic cylinder (4), and the tank cover (2) is slidably connected to the sliding rod on the top of the load-bearing frame (3) through the sliding blocks at both ends of the hydraulic cylinder (4).

3. The cleaning device for facilitating water filtration according to claim 1, characterized in that: The material barrel (5) is open at the top and has through holes on its annular rim and bottom. A through hole having the same specifications as the material barrel (5) is provided on the surface of the movable panel (501). The movable panel (501) forms an opening and closing structure on one side of the material barrel (5) and is connected to the material barrel (5) through the plug-in connection of the tenon (503) and the tenon groove (502). At the same time, the tenon (503) and the tenon groove (502) are threadedly connected through a limit bolt (504).

4. The cleaning device for facilitating water filtration according to claim 1, characterized in that: The stirring blade (703) is located at the bottom of the material barrel (5) and is spaced a certain distance therefrom. The stirring blade (703) is arc-shaped and is wider at one end adjacent to the inner wall of the tank body (1). The stirring blade (703) gradually narrows along the axial direction. At the same time, the stirring blade (703) is rotatably connected between the bucket-shaped discharge trough (6) and the material barrel (5) through a driving bevel gear (701) and a driven bevel gear (702).

5. The cleaning device for facilitating water filtration according to claim 1, characterized in that: The tank body (1) is integrally connected to the bucket-shaped drainage trough (6), and the narrower end of the bucket-shaped drainage trough (6) extends into the interior of the processing channel (8) through a pipeline and is located above the filter (10), and a ball valve is provided at the pipe opening of the bucket-shaped drainage trough (6) corresponding to the processing channel (8).

6. The cleaning device for facilitating water filtration according to claim 1, characterized in that: The top of the filter (10) is in the form of a 45-degree inclined cross-section, and the pipe opening on the side where the processing channel (8) is connected to the processing box (11) is located at the higher end of the cross-section of the top of the filter (10). The filter (10) is made of metal and has a through hole extending through its surface. The diameter of the through hole on the surface of the filter (10) is smaller than the diameter of the through hole in the barrel (5).

7. The cleaning device for facilitating water filtration according to claim 1, characterized in that: The processing box (11) is L-shaped, with its lower side connected to the processing channel (8), and the higher side of the processing box (11) is connected to the tank body (1), and the inner wall of the lower side of the processing box (11) is respectively plugged and connected with a first filter element (1101), a second filter element (1102) and a third filter element (1103), and the first filter element (1101), the second filter element (1102) and the third filter element (1103) are all spaced a certain distance apart from each other. The lower side of the top of the processing box (11) is rotatably connected with an inspection plate (1104), and the inspection plate (1104) is located directly above the first filter element (1101), the second filter element (1102) and the third filter element (1103).

Citation Information

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