Cleaning assembly for water purification activated carbon floating carbon removal device
By designing the cleaning components of the water-purifying activated carbon removal device, and using the water flow impact cleaning brush to clean the floating carbon, the problem of floating carbon blocking the filter pipe in the water is solved, and the safe and efficient operation of the water-purifying equipment is achieved.
Patent Information
- Application Number
- CN202422071613.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-26
- Publication Date
- 2025-07-08
- Estimated Expiration
- 2034-08-26
AI Technical Summary
There is a lack of effective devices and methods in the prior art to clean the floating carbon in the water, which leads to the air inlet of the water purification equipment being easily blocked and unable to effectively filter the floating carbon in the water, posing safety hazards and environmental pollution risks.
A cleaning assembly for the water-purifying activated carbon removal device is designed, including a circular plate, a fan plate, a filter tube and a linkage mechanism. The cleaning brush is driven to rotate through the linkage mechanism, and the filter tube is cleaned by the water flow impact cleaning brush to ensure that the floating carbon is collected in the first filter tube and avoid entering the second filter tube.
It has achieved effective cleaning of floating charcoal in the water, avoided blockage of filter pipes, ensured the normal operation of water purification equipment, and reduced environmental pollution and safety hazards.
Smart Images

Figure CN223069167U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of activated carbon for removing floating carbon, in particular to a cleaning component for a device for removing floating carbon from purified water activated carbon. Background Technique
[0002] Waste activated carbon usually refers to used activated carbon. During the treatment process of waste activated carbon, powdery waste activated carbon floating substances are prone to float and disperse in the air, causing relatively serious pollution to the environment and being unfavorable to the health of workers. At the same time, a large amount of waste activated carbon floating in the air also has safety hazards such as flammability and explosiveness. During the treatment process of waste activated carbon, there is a lack of corresponding floating substance treatment devices. Common exhaust fans or air filtration devices are not convenient for collecting and treating floating substances in the air, and the air filtration effect is poor. Due to a large amount of waste activated carbon in the air, waste activated carbon is easily accumulated at the air inlet of common air filtration devices, resulting in blockage of the air inlet and inability to effectively filter the air.
[0003] A device for treating waste activated carbon floating substances with the existing publication number CN216537422U includes a support plate. A filtering member and an air extraction member are arranged on the upper side of the support plate. The filtering member includes a filtering box with an opening on one side. A filter net is slidably arranged in the filtering box. A screw rod that penetrates and extends to the outside of the filter net is fixed in the filtering box. A nut that is rotationally arranged in the middle of the side surface of the filter net and is threadedly connected to the screw rod is provided. This device for treating waste activated carbon floating substances can effectively filter out waste activated carbon floating substances contained in the air environment, avoid serious pollution to the environment caused by waste activated carbon floating in the air, and ensure the health of workers at the same time. After the waste activated carbon floating substances are filtered, they accumulate at a certain position. A cleaning member for cleaning the accumulated waste activated carbon is arranged in this treatment device, which is convenient for the collection and treatment of waste activated carbon and avoids blockage of the air inlet of this treatment device by waste activated carbon.
[0004] The above technical solution is mainly for treating activated carbon floating substances in the air, which is not conducive to application in water purification equipment and cannot effectively collect and clean the activated carbon and activated carbon powder floating in water. How to clean the activated carbon floating carbon in water is a difficult problem in this field. For this reason, we have proposed a cleaning component for a device for removing floating carbon from purified water activated carbon to solve the above problems. Content of the Utility Model
[0005] The purpose of the utility model is to solve the deficiencies existing in the prior art and propose a cleaning component for a device for removing floating carbon from purified water activated carbon.
[0006] In order to achieve the above purpose, the utility model adopts the following technical solutions:
[0007] A cleaning assembly for a floating carbon removal device of activated carbon for water purification comprises a contacting circular plate, a fan-shaped plate is detachably connected to the contacting circular plate, a first filter tube is fixed at the lower end of the fan-shaped plate, a connecting piece is fixed at the bottom of the first filter tube, a second filter tube is fixed at the upper end of the connecting piece, a linkage mechanism is arranged in the second filter tube, a cleaning brush is arranged on the linkage mechanism, and the cleaning brush contacts the side wall in the second filter tube;
[0008] The abutting circular plate is provided with a connecting port, the linkage mechanism is connected to the connecting port, an annular groove is provided on the abutting circular plate, the connecting port is located in the annular groove, the connecting port and the annular groove are coaxially arranged, a first connecting pipe is detachably connected in the annular groove, and the first connecting pipe is connected to the fan-shaped plate.
[0009] Compared with the prior art, the present application can be connected to an external suction component through a first connecting tube so as to generate negative pressure in the first connecting tube, so that water can enter the first connecting tube through the first filter tube and the second filter tube. At the same time, when water flows in the first connecting tube, the water can impact the fan blade, so that the vertical axis can drive the cleaning brush to rotate, and the cleaning brush can clean the second filter tube, so as to effectively allow clean water to enter, prevent activated carbon floating carbon from entering the second filter tube, and effectively perform cleaning operations.
[0010] Preferably, the linkage mechanism includes a vertical shaft rotatably sleeved on the hole on the fan-shaped plate, the vertical shaft and the fan-shaped plate are coaxially arranged, a fan blade is installed on the vertical shaft, the fan blade is located in the hole on the fan-shaped plate, the hole on the fan-shaped plate and the connecting port are coaxially arranged, and the upper end of the cleaning brush is fixedly connected to the vertical shaft.
[0011] Furthermore, during actual production and preparation, the fan-shaped plate adopts a circular ring structure, and a plurality of arc blocks are fixed at equal intervals on the upper end of the fan-shaped plate, through which the arc blocks can be inserted into the corresponding fan-shaped openings for subsequent rapid assembly.
[0012] Preferably, the cleaning brush is arranged in a U shape, and the vertical end of the cleaning brush conflicts with the side wall in the second filter tube.
[0013] Furthermore, in actual preparation, the cleaning brush is inverted U-shape, and a cleaning brush component is installed on the vertical end of the cleaning brush to clean the second filter tube to prevent floating carbon from entering the second filter tube, and at the same time, the floating carbon is between the first filter tube and the second filter tube to achieve the purpose of cleaning the floating carbon. At the same time, the diameter of the grid holes on the first filter tube is larger than the diameter of the grid holes on the second filter tube, so that the floating carbon can enter the first filter tube, but cannot enter the second filter tube.
[0014] Preferably, a plurality of sector openings are equidistantly arranged on the abutting circular plate. The plurality of sector openings are arranged in a circular shape, and the circle formed by the plurality of sector openings overlaps with the axis of the connecting opening.
[0015] Furthermore, it is convenient for fast charging insertion, and can effectively ensure the rapid assembly and fixation of the abutting circular plate and the sector plate.
[0016] Preferably, a plurality of arc-shaped notches are equidistantly arranged on the side wall of the annular groove in a circumferential direction. A first connecting pipe penetrates through the annular groove. A plurality of second connecting pipes are fixedly arranged at equal intervals around the lower end of the first connecting pipe. A spring member is fixed inside the second connecting pipe. One end of the spring member is fixed with a push rod. The push rod is slidably installed inside the second connecting pipe. The plurality of push rods respectively extend into the plurality of arc-shaped notches. The lower end of the arc-shaped notch is slidably installed with an inserting rod. The inserting rod abuts against the push rod. A plurality of inserting holes are equidistantly arranged at the upper end of the sector plate. The plurality of inserting rods respectively extend into the plurality of inserting holes.
[0017] Furthermore, during actual preparation, after the staff inserts the second connecting pipe into the annular groove, the push rod can be inserted into the arc-shaped notch, and under the action of the spring member, the push rod pushes the inserting rod into the inserting hole on the sector plate, completing the connection and fixation of the sector plate, the abutting circular plate and the second connecting pipe.
[0018] Preferably, an annular plate is fixed on the first connecting pipe. The annular plate is located inside the annular groove, and the annular plate abuts against the inner wall of the annular groove.
[0019] Furthermore, it can be effectively closed to effectively make the purified water flow.
[0020] The beneficial effects of the present utility model are:
[0021] 1. During actual production and preparation, the sector plate adopts a circular ring structure, and a plurality of arc-shaped blocks are fixedly arranged at equal intervals at the upper end of the sector plate. The arc-shaped blocks can be inserted into the corresponding sector openings for subsequent rapid assembly.
[0022] 2. During actual preparation, after the staff inserts the first connecting pipe into the annular groove, the push rod can be inserted into the arc-shaped notch, and under the action of the spring member, the push rod pushes the inserting rod into the inserting hole on the sector plate, completing the connection and fixation of the sector plate, the abutting circular plate and the first connecting pipe.
[0023] 3. In actual preparation, the cleaning brush is U-shaped and inverted at 90°. A cleaning brush component is installed on the vertical end of the cleaning brush to clean the second filter tube to prevent floating carbon from entering the second filter tube. At the same time, the floating carbon is between the first filter tube and the second filter tube to achieve the purpose of cleaning the floating carbon. At the same time, the diameter of the grid holes on the first filter tube is larger than the diameter of the grid holes on the second filter tube, so that the floating carbon can enter the first filter tube, but cannot enter the second filter tube. BRIEF DESCRIPTION OF THE DRAWINGS
[0024] Figure 1 It is a cross-sectional view of the utility model;
[0025] Figure 2 This is a structural diagram of the utility model's abutting circular plate;
[0026] Figure 3 This is a structural diagram of the first filter tube, the second filter tube and the fan-shaped plate of the utility model;
[0027] Figure 4 It is a cross-sectional view of the utility model against the circular plate;
[0028] In the figure: 1 a first filter tube, 2 a connecting member, 3 a second filter tube, 4 a cleaning brush, 5 an arc-shaped notch, 6 a connecting port, 7 an annular groove, 8 a fan-shaped port, 9 a contact circular plate, 10 a fan-shaped plate, 11 a fan blade member, 12 a vertical axis, 13 a first connecting tube, 14 annular plate, 15 a socket, 16 a push rod, 17 a second connecting tube, 18 a spring member, and 19 a plug member. DETAILED DESCRIPTION
[0029] The technical solutions in the embodiments of the present invention will be described clearly and completely below in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, rather than all of the embodiments.
[0030] Reference Figures 1-4, a cleaning assembly for a water purification activated carbon device for removing floating carbon, comprising a resisting circular plate 9, a sector plate 10 being detachably connected to the resisting circular plate 9, a plurality of arc-shaped notches 5 being evenly spaced on a side wall of a circle in an annular groove 7, a first connecting tube 13 being passed through the annular groove 7, a plurality of second connecting tubes 17 being evenly spaced and fixed to a circle at a lower end of the first connecting tube 13, a spring member 18 being fixed in the second connecting tube 17, a push rod 16 being fixed at one end of the spring member 18, the push rod 16 being slidably mounted in the second connecting tube 17, a plurality of push rods 16 extending into a plurality of arc-shaped notches 5 respectively, and the arc A plug-in rod 19 is slidably installed at the lower end of the arc-shaped notch 5, and the plug-in rod 19 and the push rod 16 are in conflict with each other. A plurality of insertion holes 15 are evenly spaced at the upper end of the fan-shaped plate 10, and a plurality of plug-in rods 19 extend into the plurality of insertion holes 15 respectively. During actual production and preparation, after the staff inserts the first connecting tube 13 into the annular groove 7, the push rod 16 can be inserted into the arc-shaped notch 5, and under the action of the spring member 18, the push rod 16 pushes the plug-in rod 19 into the insertion hole 15 on the fan-shaped plate 10, thereby completing the connection and fixation of the fan-shaped plate 10, the conflicting circular plate 9 and the first connecting tube 13.
[0031] Reference Figures 1-4 A first filter tube 1 is fixed at the lower end of the sector plate 10, a connecting piece 2 is fixed at the bottom of the first filter tube 1, a second filter tube 3 is fixed at the upper end of the connecting piece 2, a linkage mechanism is provided in the second filter tube 3, a cleaning brush 4 is provided on the linkage mechanism, the cleaning brush 4 and the side wall of the second filter tube 3 are in conflict, the cleaning brush 4 is U-shaped, the vertical end of the cleaning brush 4 and the side wall of the second filter tube 3 are in conflict, the linkage mechanism includes a vertical shaft 12 rotatably sleeved at the hole on the sector plate 10, the vertical shaft 12 and the sector plate 10 The fan blade member 11 is coaxially arranged, and is installed on the vertical axis 12. The fan blade member 11 is located in the hole on the fan plate 10. The hole on the fan plate 10 and the connecting port 6 are coaxially arranged. The upper end of the cleaning brush 4 is fixedly connected to the vertical axis 12, and is connected to the external suction pump body through the first connecting pipe 13. The clean water can be output through the first connecting pipe 13, and at the same time, the clean water will drive the floating carbon to move in the direction of the first filter tube 1 and the second filter tube 3. At the same time, the floating carbon can be cleaned through the first filter tube 1 and the second filter tube 3.
[0032] Reference Figures 1-4 A connecting port 6 is penetrated through the contact circular plate 9, and the linkage mechanism is connected to the connecting port 6. An annular groove 7 is provided on the contact circular plate 9, and the connecting port 6 is located in the annular groove 7. The connecting port 6 and the annular groove 7 are coaxially arranged. A first connecting pipe 13 is detachably connected in the annular groove 7 and can be assembled as needed, so that the first connecting pipe 13 is quickly connected to the external pump body structure to quickly pump clean water. The first connecting pipe 13 is connected to the fan-shaped plate 10, and an annular plate 14 is fixed on the first connecting pipe 13. The annular plate 14 is located in the annular groove 7, and the annular plate 14 conflicts with the inner wall of the annular groove 7, which can effectively seal and avoid leakage.
[0033] Referring to Figures 1-3 , a plurality of sector openings 8 are equidistantly formed in the interference circular plate 9. The plurality of sector openings 8 are arranged in a circular shape, and the circle formed by the plurality of sector openings 8 overlaps with the axis of the connection port 6, which is convenient for quick assembly.
[0034] In the present utility model, after the staff inserts the first connecting pipe 13 into the annular groove 7, the ejector rod 16 can be inserted into the arc-shaped notch 5, and under the action of the spring member 18, the ejector rod 16 pushes the inserting member 19 into the insertion hole 15 on the sector plate 10, completing the connection and fixation of the sector plate 10, the interference circular plate 9 and the first connecting pipe 13;
[0035] The first connecting pipe 13 is connected to an external suction component, so as to generate negative pressure in the first connecting pipe 13. Water can enter the first connecting pipe 13 through the first filter pipe 1 and the second filter pipe 3. At the same time, when there is water flow in the first connecting pipe 13, the water impacts the fan blade member 11, enabling the vertical shaft 12 to drive the cleaning brush 4 to rotate, so that the cleaning brush 4 can clean the second filter pipe 3. At the same time, the diameter of the grid holes on the first filter pipe 1 is larger than the diameter of the grid holes on the second filter pipe 3, enabling the floating carbon to enter the first filter pipe 1 but not enter the second filter pipe 3, effectively realizing the collection of floating carbon.
[0036] The above is only a preferred specific embodiment of the present utility model, but the protection scope of the present utility model is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present utility model, according to the technical solution of the present utility model and its inventive concept, makes equivalent substitutions or changes, and should be covered by the protection scope of the present utility model.
Claims
1. A cleaning assembly for a water purification activated carbon device for removing floating carbon, comprising a friction disc (9), characterized in that: A sector plate (10) is detachably connected to the contact circular plate (9). A first filter pipe (1) is fixed to the lower end of the sector plate (10). A connecting piece (2) is fixed to the bottom inside the first filter pipe (1). A second filter pipe (3) is fixed to the upper end of the connecting piece (2). A linkage mechanism is provided inside the second filter pipe (3). A cleaning brush (4) is provided on the linkage mechanism. The cleaning brush (4) abuts against the inner side wall of the second filter pipe (3). A connection port (6) penetrates through the contact circular plate (9). The linkage mechanism is connected to the connection port (6). An annular groove (7) is provided on the contact circular plate (9). The connection port (6) is located inside the annular groove (7). The connection port (6) and the annular groove (7) are coaxially arranged. A first connection pipe (13) is detachably connected inside the annular groove (7). The first connection pipe (13) is connected to the sector plate (10).
2. The cleaning component for the floating carbon removal device of the water purification activated carbon according to claim 1, characterized in that: The linkage mechanism includes a vertical shaft (12) rotatably sleeved at the hole on the sector plate (10). The vertical shaft (12) and the sector plate (10) are coaxially arranged. A fan blade member (11) is installed on the vertical shaft (12). The fan blade member (11) is located inside the hole on the sector plate (10). The hole on the sector plate (10) and the connection port (6) are coaxially arranged. The upper end of the cleaning brush (4) is fixedly connected to the vertical shaft (12).
3. The cleaning component for the floating carbon removal device of the water purification activated carbon according to claim 2, characterized in that: The cleaning brush (4) is arranged in a U shape. The vertical ends of the cleaning brush (4) abut against the inner side wall of the second filter pipe (3).
4. The cleaning component for the floating carbon removal device of the water purification activated carbon according to claim 1, wherein: A plurality of sector openings (8) are equidistantly formed on the contact circular plate (9). The plurality of sector openings (8) are circularly arranged. The center of the circle formed by the plurality of sector openings (8) coincides with the axis of the connection port (6).
5. The cleaning component for the floating carbon removal device of the water purification activated carbon according to claim 1, wherein: A plurality of arc-shaped notches (5) are equidistantly provided on the inner side wall of the annular groove (7) in a circumferential direction. A first connection pipe (13) penetrates through the annular groove (7). A plurality of second connection pipes (17) are fixedly connected to the lower end of the first connection pipe (13) in an equidistant manner in a circumferential direction. A spring member (18) is fixed inside the second connection pipe (17). One end of the spring member (18) is fixed to a push rod (16). The push rod (16) is slidably installed inside the second connection pipe (17). The plurality of push rods (16) respectively extend into the plurality of arc-shaped notches (5). The lower end of the arc-shaped notch (5) is slidably installed with an insertion rod member (19). The insertion rod member (19) abuts against the push rod (16). A plurality of insertion holes (15) are equidistantly formed on the upper end of the sector plate (10). The plurality of insertion rod members (19) respectively extend into the plurality of insertion holes (15).
6. The cleaning assembly for the floating carbon removal device of the water purification activated carbon, characterized in that: An annular plate (14) is fixed to the first connection pipe (13). The annular plate (14) is located inside the annular groove (7). The annular plate (14) abuts against the inner wall of the annular groove (7).
Citation Information
Patent Citations
Waste activated carbon floating object treatment device
CN216537422U