A high-efficiency inclined tube cleaning device for sedimentation tank packing and its usage method

By designing an adaptive and highly efficient inclined tube cleaning device for sedimentation tank packing, the problem of existing devices being unable to adjust the inclination angle and pipe diameter has been solved, achieving efficient cleaning of the inclined tube, expanding the scope of application, and improving the cleaning effect.

CN118437719BActive Publication Date: 2026-03-13JIANGSU JUDE ENVIRONMENTAL PROTECTION TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-05-07
Publication Date
2026-03-13

AI Technical Summary

Technical Problem

Existing high-efficiency sedimentation tank packing inclined tube cleaning devices cannot be adaptively adjusted according to the actual inclination angle of the inclined tube, and are difficult to meet the cleaning needs of different pipe diameters, thus limiting their application range.

Method used

A cleaning device comprising a water tank, a support frame, a water supply assembly, a drive assembly, and a rotating assembly was designed. Through the cooperation of the drive assembly and the rotating assembly, the positioning and angle adjustment of the inclined tube are achieved, and efficient cleaning is carried out by utilizing the flow force of the cleaning cotton and the cleaning water.

Benefits of technology

It enables inclined pipe cleaning with different tilt angles and pipe diameters, improving cleaning efficiency, expanding its application range, and requiring no power resources, making it more convenient to use.

✦ Generated by Eureka AI based on patent content.

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Abstract

This invention discloses a high-efficiency sedimentation tank packing inclined tube cleaning device and its usage method, including a water conveying component, a first connecting box, a second connecting box, a third connecting box, a second driving component, a rotating component, and a first driving component; the bottom of the third connecting box is rotatably connected to a rotating rod, and the bottom end of the rotating rod is connected to a rotating cylinder, the outside of which is covered with cleaning cotton; in this invention, the rotating component enables the third rotating shaft to drive the fixed block and the third connecting box to rotate, thereby rotating the rotating rod and the rotating cylinder at the bottom of the third connecting box, thus adjusting the tilt angle of the entire rotating cylinder, which facilitates subsequent cleaning of inclined tubes with different tilt angles, and allows for adaptive angle adjustment according to actual conditions.
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Description

Technical Field

[0001] This invention relates to the field of wastewater treatment technology, specifically to a high-efficiency sedimentation tank packing inclined tube cleaning device and its usage method. Background Technology

[0002] High-efficiency sedimentation tanks utilize physical and chemical treatments and a special flocculation and sedimentation system. The core of the system is to use the sludge accumulated in the tank to come into contact with and adsorb particles in the water through external recirculation, thereby accelerating particle flocculation and promoting the rapid separation of impurity particles. Combined with inclined tube or inclined plate packing, the sedimentation process is accelerated to achieve efficient solid-liquid separation.

[0003] When a high-efficiency sedimentation tank is in use, under the influence of direct sunlight, sufficient dissolved oxygen in the circulating water, suitable temperature, and eutrophic conditions, moss and algae can easily grow on the inner surface of the inclined packing tubes. If not cleaned in time, this will lead to water quality deterioration. Furthermore, the slime deposits of flocculents can easily clog the inclined packing tubes, affecting the sedimentation effect of the high-efficiency sedimentation tank. Therefore, cleaning the inclined packing tubes is extremely important.

[0004] A Chinese patent application with publication number CN117379841A discloses a high-efficiency cleaning device for inclined tube packing in a sedimentation tank and its usage method. By setting up a flushing mechanism, a cleaning mechanism, and an anti-segregation mechanism between the sedimentation tank and the cleaning liquid storage tank, the inclined tube packing in the sedimentation tank can be effectively flushed inside the inclined tube packing when internal cleaning is required through the synchronous coordination of the flushing mechanism, the cleaning mechanism, and the anti-segregation mechanism.

[0005] However, this cleaning device has the following drawbacks in practical use:

[0006] 1. In existing processes, the overall size and structure of the sedimentation tank must be comprehensively considered based on factors such as the volume of water to be treated, water quality, and flocculant dosage. Since the inclined tube is a key component of the sedimentation tank, its function is to accelerate the settling of particulate matter. Therefore, to effectively ensure this function, the inclination angle of the inclined tube is typically between 50 and 60 degrees and must be kept uniform. The selection of the most suitable inclination angle within this range needs to be rationally determined based on the volume of water to be treated and the settling requirements. However, the aforementioned cleaning device cannot adaptively adjust to the actual inclination angle of the inclined tube, which limits the scope of its overall structure and makes it difficult to meet the needs of more scenarios.

[0007] 2. Depending on the actual process requirements, the standard diameter of the inclined tube also varies. The aforementioned difficult-to-use device cannot meet the cleaning needs of inclined tubes of different diameters, resulting in a limited range of applications. Therefore, it is urgent to improve it. Summary of the Invention

[0008] The purpose of this invention is to provide a high-efficiency sedimentation tank packing inclined tube cleaning device and its usage method to solve the problems mentioned in the background art.

[0009] To achieve the above-mentioned objectives, the present invention adopts the following technical solution:

[0010] This invention provides a high-efficiency inclined tube cleaning device for sedimentation tank packing, comprising a water tank and a support frame, and further comprising:

[0011] A water delivery assembly is located on one side of the water tank;

[0012] The first connecting box is mounted on the support frame;

[0013] The second connecting box is disposed on the first connecting box;

[0014] The third connecting box is disposed on the second connecting box;

[0015] The second drive component is disposed on the second connecting box and is used to drive the third connecting box to perform longitudinal reciprocating motion;

[0016] A rotating component is disposed on the first connecting box and is used to drive the second connecting box and the third connecting box to rotate;

[0017] And a first drive assembly, disposed on the support frame, for driving the first connecting box, the second connecting box and the third connecting box to perform lateral reciprocating motion;

[0018] in,

[0019] The bottom of the third connecting box is rotatably connected to a rotating rod, and the bottom end of the rotating rod is connected to a rotating cylinder. The outside of the rotating cylinder is covered with cleaning cotton. The inside of the third connecting box is also provided with a driving component for driving the rotating rod and the rotating cylinder to rotate.

[0020] Preferably, the support frame includes two side plates and a top frame for connecting the two side plates; the first drive assembly includes:

[0021] A first motor, a first threaded rod, a first threaded block, a first guide rod, and a first guide block;

[0022] in,

[0023] The first motor is mounted on one of the side plates, and the output end of the first motor is connected to one end of the first threaded rod. The other end of the first threaded rod is rotatably connected to the side plate. The first threaded block is threaded to the outside of the first threaded rod. The first guide rod is horizontally fixed between the two side plates, and the outside of the first guide rod is used to fit the first guide block. The bottoms of the first guide block and the first threaded block are both fixed to the top of the first connecting box.

[0024] Preferably, the rotating component includes:

[0025] The components include a second motor, a first rotating shaft, a second rotating shaft, a fixed frame, a first gear, a second gear, a worm gear, a worm wheel, a third rotating shaft, and a fixed block.

[0026] in,

[0027] The second motor is mounted on the top of the first connecting box, and the output end of the second motor is connected to the top of the first rotating shaft. The bottom end of the first rotating shaft is rotatably connected to the top of the first connecting box. The first gear is sleeved on the first rotating shaft, and the second gear is sleeved on the second rotating shaft, and the first gear and the second gear mesh with each other. The number of the fixed frame, the second rotating shaft, the worm gear, the worm, the third rotating shaft, and the fixed block are all two.

[0028] The fixing frame is fixed to the inner bottom of the first connecting box. The worm and worm wheel are rotatably connected to the fixing frame and mesh with each other. The top end of the worm is coaxially connected to the bottom of the second rotating shaft. The worm wheel is coaxially connected to the third rotating shaft. The fixing block is fixed to the outside of the third rotating shaft and the bottom of the fixing block is fixed to the top of the second connecting box.

[0029] Preferably, the second driving component includes:

[0030] The third motor, the third gear, the fourth shaft, the fourth gear, the second threaded rod, the second threaded block, the second guide rod, and the second guide block;

[0031] in,

[0032] The third motor is mounted on the top of the second connecting box, and the third gear is connected to the output end of the third motor. The fourth rotating shaft is rotatably connected to the top of the second connecting box, and the fourth gear is sleeved on the fourth rotating shaft. The fourth gear meshes with the third gear. The bottom of the fourth rotating shaft is connected to the top of the second threaded rod, and the bottom of the second threaded rod is rotatably connected to the inner bottom of the second connecting box. The second threaded block is threaded to the outside of the second threaded rod. The second guide rod is fixed inside the second connecting box, and the second guide block is slidably disposed outside the second guide block. The same side ends of the second threaded block and the second guide block are both fixed to the side of the third connecting box. The side of the second connecting box is also provided with a slot for the third connecting box to slide.

[0033] Preferably, the water conveyance assembly includes:

[0034] Water pump, inlet pipe and outlet pipe;

[0035] in,

[0036] The water pump is installed on one side of the water tank, and the outlet pipe and the inlet pipe are connected to the outlet end and the inlet end of the water pump, respectively. The end of the inlet pipe extends into the interior of the water tank.

[0037] Preferably, the third connecting box has several circular cavities and an upper chamber inside, and one of the circular cavities is connected to the upper chamber through a through hole, and every two adjacent circular cavities are connected through a connecting hole; the end of the water outlet pipe extends into the circular cavity away from the through hole.

[0038] The driving component is an arc-shaped fan blade disposed inside a circular cavity, and the arc-shaped fan blade is sleeved on the outside of the rotating rod.

[0039] Preferably, the top end of the rotating rod extends into the interior of the upper chamber, and a central hole communicating with the interior of the upper chamber is provided at the center of the rotating rod. The bottom end of the rotating rod extends into the interior of the rotating cylinder and is connected to a flexible tube, and the interior of the flexible tube communicates with the interior of the central hole. One end of the cleaning cotton extends into the interior of the rotating cylinder and is connected to a connecting plate, and the other end of the connecting plate is connected to the end of the flexible tube. Both the connecting plate and the cleaning cotton have interconnected support holes, and the support holes communicate with the interior of the flexible tube.

[0040] Preferably, an electric telescopic rod is installed on the inner top of the rotating drum, and a sliding plate is connected to the output end of the electric telescopic rod. A sleeve is fixed to the bottom of the sliding plate and fitted outside the rotating rod. A hinge rod is hinged to the outside of the sleeve, and the other end of the hinge rod is hinged to the end face of the connecting plate.

[0041] Preferably, a pointer is connected to the end of the third rotating shaft, and a scale line that cooperates with the pointer is provided on the side of the first connecting box.

[0042] The present invention also provides a method for using the above-mentioned high-efficiency sedimentation tank packing inclined tube cleaning device, comprising the following steps:

[0043] S1: Device installation: Use the U-shaped grooves at the bottom of the two side plates on the support frame to snap the entire support frame onto the top two sides of the sedimentation tank, and set the device above the sedimentation tank.

[0044] S2: Cleaning preparation: Prepare all power supplies and controllers in the device, and fill the water tank with clean water containing a certain concentration of mixed solution;

[0045] S3: Cleaning operation: Through the cooperation of the first drive component, the second drive component and the rotating component, the inclined tube to be cleaned is positioned and the rotating drum is inserted into the inclined tube to be cleaned. Then, the water supply component injects cleaning water into the third connecting box, so that the cleaning water finally flows out from the support hole on the cleaning cotton. At the same time, the flow effect of the cleaning water drives the rotating drum and the cleaning cotton to rotate, thereby completing the operation of injecting water into the inclined tube and starting the cleaning.

[0046] S4: Cleaning complete: After cleaning the inclined tube to be cleaned, turn off the power and then remove the support frame from the sedimentation tank.

[0047] Compared with existing technologies, one or more of the above technical solutions have the following beneficial effects:

[0048] 1. In the high-efficiency sedimentation tank packing inclined tube cleaning device and its usage method, when it is necessary to use cleaning cotton to clean the inside of the inclined tube, after the water conveying component delivers cleaning water into the circular cavity, on the one hand, the flow force of the cleaning water drives the cleaning cotton and the rotating drum to rotate, and on the other hand, the cleaning water can be sprayed out from the support holes on the cleaning cotton, thereby achieving high-efficiency cleaning. Moreover, the whole system does not require the use of electricity, making it more convenient to use.

[0049] 2. In this high-efficiency sedimentation tank packing inclined tube cleaning device and its usage method, when the electric telescopic rod is activated, the electric telescopic rod can drive the sliding plate and the sleeve to move upward or downward. Then, under the action of the hinge rod, the connecting plates and cleaning cotton in multiple circumferential arrays can simultaneously retract inward or expand outward, so that the cleaning cotton can clean the inner wall of the inclined tubes of different diameters. At the same time, the squeezing pressure between the cleaning cotton and the inner wall of the inclined tube can be adjusted by the degree of expansion of the cleaning cotton. When facing the inner wall of the inclined tube that is difficult to clean, the cleaning effect can be improved by increasing the squeezing pressure between the cleaning cotton and the inner wall of the inclined tube, making the overall use more efficient.

[0050] 3. In this high-efficiency sedimentation tank packing inclined tube cleaning device and its usage method, the set rotating component enables the third rotating shaft to drive the fixed block and the third connecting box to rotate, thereby rotating the rotating rod and rotating cylinder at the bottom of the third connecting box, thereby adjusting the tilt angle of the entire rotating cylinder, which facilitates the subsequent cleaning of inclined tubes with different tilt angles. It can make adaptive angle adjustments according to actual conditions, and has a wider range of applications.

[0051] 4. In this high-efficiency sedimentation tank packing inclined tube cleaning device and its usage method, when adjusting the angle of the rotating drum, the pointer will rotate with the rotation of the third rotating shaft. Combined with the specified angle displayed on the scale, it is easy for people to understand the current inclination angle of the inclined tube more intuitively. It is also possible to quickly adjust the angle of the rotating drum according to the known inclination angle of the inclined tube, resulting in better usage effect. Attached Figure Description

[0052] The accompanying drawings, which form part of this invention, are used to provide a further understanding of the invention. The illustrative embodiments of the invention and their descriptions are used to explain the invention and do not constitute an improper limitation of the invention.

[0053] Furthermore, the terms "installation," "setup," "equipped with," "connection," "linking," and "socketing" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral structure; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium, or an internal connection between two devices, components, or parts. Those skilled in the art can understand the specific meaning of these terms in this application based on the specific circumstances.

[0054] Figure 1 This is a schematic diagram of the overall structure of the present invention;

[0055] Figure 2 This is a schematic diagram of the connection structure of the first connecting box, the second connecting box, and the third connecting box of the present invention;

[0056] Figure 3 This is a schematic diagram of the structure of the first driving component of the present invention;

[0057] Figure 4 This is a schematic diagram of the structure of the rotating component of the present invention;

[0058] Figure 5 This is a schematic diagram of the structure of the fixing frame of the present invention;

[0059] Figure 6 This is a schematic diagram of the connection structure between the third connecting box and the rotating drum of the present invention;

[0060] Figure 7 This is the present invention. Figure 6 Enlarged view of point A in the middle;

[0061] Figure 8 This is a cross-sectional view of the third connecting box of the present invention;

[0062] Figure 9 This is the present invention. Figure 8 Enlarged view of point B in the middle;

[0063] Figure 10 This is a longitudinal sectional view of the third connecting box of the present invention;

[0064] Figure 11 This is the present invention. Figure 10 Enlarged view of point C in the middle;

[0065] Figure 12 This is a schematic diagram of the water conveying component of the present invention;

[0066] Figure 13 This is a schematic diagram of the internal structure of the rotating cylinder of the present invention;

[0067] Figure 14 This is a schematic diagram of the structure of the pointer and scale lines of the present invention;

[0068] In the picture:

[0069] 1. Water tank; 2. Water supply assembly; 201. Water pump; 202. Inlet pipe; 203. Outlet pipe; 3. Support frame; 301. Top frame; 302. Side plate; 4. First connecting box; 5. Second connecting box; 501. Slot; 6. Third connecting box; 601. Circular cavity; 602. Upper chamber; 603. Through hole; 604. Connecting hole; 7. First drive assembly; 701. First motor; 702. First threaded rod; 703. First threaded block; 704. First guide rod; 705. First guide block; 8. Rotating assembly; 801. Second motor; 802. First rotating shaft; 803. Second rotating shaft; 804. Fixing frame; 805. First Gear; 806, Second Gear; 807, Worm; 808, Worm Gear; 809, Third Shaft; 810, Fixing Block; 9, Second Drive Assembly; 901, Third Motor; 902, Third Gear; 903, Fourth Shaft; 904, Fourth Gear; 905, Second Threaded Rod; 906, Second Threaded Block; 907, Second Guide Rod; 908, Second Guide Block; 10, Rotating Rod; 1001, Center Hole; 11, Rotating Cylinder; 12, Cleaning Cotton; 13, Arc-shaped Fan Blade; 14, Flexible Hose; 15, Connecting Plate; 16, Support Hole; 17, Electric Telescopic Rod; 18, Slide Plate; 19, Sleeve; 20, Hinge Rod; 21, Pointer; 22, Scale Line. Detailed Implementation

[0070] To enable those skilled in the art to better understand the present application, the technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present application, and not all embodiments. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art without creative effort should fall within the scope of protection of the present application. Example 1:

[0071] Please see Figures 1-14 A high-efficiency sedimentation tank packing inclined tube cleaning device includes a water tank 1 and a support frame 3, and further includes:

[0072] Water delivery component 2 is located on one side of water tank 1;

[0073] The first connecting box 4 is mounted on the support frame 3;

[0074] The second connecting box 5 is disposed on the first connecting box 4;

[0075] The third connecting box 6 is installed on the second connecting box 5;

[0076] The second drive assembly 9 is disposed on the second connecting box 5 and is used to drive the third connecting box 6 to perform longitudinal reciprocating motion.

[0077] The rotating component 8 is disposed on the first connecting box 4 and is used to drive the second connecting box 5 and the third connecting box 6 to rotate.

[0078] And the first drive assembly 7, which is mounted on the support frame 3, and is used to drive the first connecting box 4, the second connecting box 5 and the third connecting box 6 to perform lateral reciprocating motion;

[0079] in,

[0080] The bottom of the third connecting box 6 is rotatably connected to a rotating rod 10, and the bottom end of the rotating rod 10 is connected to a rotating cylinder 11. A cleaning cotton 12 is provided on the outside of the rotating cylinder 11. The interior of the third connecting box 6 is also provided with a driving component for driving the rotating rod 10 and the rotating cylinder 11 to rotate.

[0081] Furthermore, the water conveyance component 2 includes:

[0082] Water pump 201, inlet pipe 202, and outlet pipe 203;

[0083] in,

[0084] The water pump 201 is installed on one side of the water tank 1, and the outlet pipe 203 and the inlet pipe 202 are connected to the outlet end and the inlet end of the water pump 201 respectively. The end of the inlet pipe 202 extends into the interior of the water tank 1. Both the outlet pipe 203 and the inlet pipe 202 are flexible pipes.

[0085] Furthermore, the interior of the third connecting box 6 is provided with several circular cavities 601 and an upper chamber 602, and one of the circular cavities 601 and the upper chamber 602 are connected by a through hole 603, and every two adjacent circular cavities 601 are connected by a connecting hole 604; the end of the water outlet pipe 203 extends into the interior of the circular cavity 601 at the end away from the through hole 603.

[0086] The driving component is an arc-shaped fan blade 13 disposed inside the circular cavity 601, and the arc-shaped fan blade 13 is sleeved on the outside of the rotating rod 10;

[0087] In addition, the top end of the rotating rod 10 extends into the interior of the upper chamber 602, and a central hole 1001 communicating with the interior of the upper chamber 602 is provided at the center of the rotating rod 10. The bottom end of the rotating rod 10 extends into the interior of the rotating cylinder 11 and is connected to a flexible tube 14, and the interior of the flexible tube 14 is connected to the interior of the central hole 1001. One end of the cleaning cotton 12 extends into the interior of the rotating cylinder 11 and is connected to a connecting plate 15, and the other end of the connecting plate 15 is connected to the end of the flexible tube 14. Both the connecting plate 15 and the cleaning cotton 12 have interconnected support holes 16, and the support holes 16 are connected to the interior of the flexible tube 14.

[0088] Therefore, in summary, combining Figures 8-12It can be seen that when the water pump 201 is started using the external controller, the water pump 201 can transport the cleaning liquid inside the water tank 1 through the inlet pipe 202 and the outlet pipe 203 to the circular cavity 601 connected to the outlet pipe 203. Then, after passing through the connecting hole 604, it flows through the interior of each circular cavity 601 in sequence and finally through the through hole 603 on the last circular cavity 601 to the interior of the upper chamber 602. Then, it flows through the central hole 1001 at the top of the rotating rod 10 in the upper chamber 602 to the hose 14. Finally, the cleaning water is sprayed out from the branch hole 16 through the connection between the hose 14 and the branch hole 16. At the same time, the cleaning water is sprayed out from the branch hole 16. The water flows through each of the circular cavities 601 in sequence. Each circular cavity 601 is equipped with a rotating rod 10 and an arc-shaped fan blade 13. As the water flows, the arc-shaped fan blade 13 drives the rotating rod 10 to rotate, which in turn causes the rotating drum 11 to drive the cleaning cotton 12 to rotate. When the cleaning cotton 12 is needed to clean the inside of the inclined tube, the flow force of the cleaning water drives the cleaning cotton 12 and the rotating drum 11 to rotate. At the same time, the cleaning water can be sprayed out from the support holes 16 on the cleaning cotton 12, thereby achieving efficient cleaning. Moreover, the whole process does not require the use of electricity, making it more convenient to use.

[0089] Furthermore, an electric telescopic rod 17 is installed on the inner top of the rotating drum 11, and a slide plate 18 is connected to the output end of the electric telescopic rod 17. A sleeve 19 is fixed to the bottom of the slide plate 18 and sleeved outside the rotating rod 10. A hinge rod 20 is hinged to the outside of the sleeve 19, and the other end of the hinge rod 20 is hinged to the end face of the connecting plate 15.

[0090] pass Figure 13 As can be seen, when the electric telescopic rod 17 is activated by the controller, the electric telescopic rod 17 can drive the slide plate 18 and the sleeve 19 to move upward or downward. Then, under the action of the hinge rod 20, the connecting plates 15 of multiple circumferential arrays and the cleaning cotton 12 can synchronously retract inward or expand outward. This allows the cleaning cotton 12 to clean the inner walls of inclined tubes of different diameters. At the same time, the pressure between the cleaning cotton 12 and the inner wall of the inclined tube can be adjusted by the degree of expansion of the cleaning cotton 12. When facing the inner wall of the inclined tube that is difficult to clean, the cleaning effect can be improved by increasing the pressure between the cleaning cotton 12 and the inner wall of the inclined tube, making the overall use more efficient.

[0091] Furthermore, the support frame 3 includes two side plates 302 and a top frame 301 for connecting the two side plates 302, according to Figure 3 It can be seen that the top of the two side plates 302 are provided with U-shaped grooves. The side plates 302 can be clamped onto the top edge of the sedimentation tank through the U-shaped grooves, thereby completing the installation of the entire support frame 3 and subsequent structures.

[0092] The first drive component 7 includes:

[0093] The components include a first motor 701, a first threaded rod 702, a first threaded block 703, a first guide rod 704, and a first guide block 705.

[0094] in,

[0095] The first motor 701 is mounted on one of the side plates 302, and the output end of the first motor 701 is connected to one end of the first threaded rod 702. The other end of the first threaded rod 702 is rotatably connected to the side plate 302. The first threaded block 703 is threaded to the outside of the first threaded rod 702. The first guide rod 704 is horizontally fixed between the two side plates 302, and the outside of the first guide rod 704 is used to sleeve the first guide block 705. The bottoms of the first guide block 705 and the first threaded block 703 are both fixed to the top of the first connecting box 4.

[0096] That is, when using it, combine Figure 3 It can be seen that when the first motor 701 is started by the external controller, the first motor 701 can drive the first threaded rod 702 to rotate. Under the action of sliding between the first guide rod 704 and the first guide block 705, the first threaded block 703 and the first guide block 705 can drive the first connecting box 4 to move forward or backward.

[0097] Rotating component 8 includes:

[0098] The components include a second motor 801, a first rotating shaft 802, a second rotating shaft 803, a fixed frame 804, a first gear 805, a second gear 806, a worm gear 807, a worm wheel 808, a third rotating shaft 809, and a fixed block 810.

[0099] in,

[0100] The second motor 801 is mounted on the top of the first connecting box 4, and the output end of the second motor 801 is connected to the top end of the first rotating shaft 802. The bottom end of the first rotating shaft 802 is rotatably connected to the top of the first connecting box 4. The first gear 805 is sleeved on the first rotating shaft 802, and the second gear 806 is sleeved on the second rotating shaft 803, and the first gear 805 and the second gear 806 mesh with each other. The number of the fixed frame 804, the second rotating shaft 803, the worm gear 808, the worm 807, the third rotating shaft 809, and the fixed block 810 are all two.

[0101] The fixing frame 804 is fixed to the inner bottom end of the first connecting box 4. The worm 807 and the worm wheel 808 are rotatably connected to the fixing frame 804, and the worm 807 and the worm wheel 808 are meshed. The top end of the worm 807 is coaxially connected to the bottom end of the second rotating shaft 803. The worm wheel 808 is coaxially connected to the third rotating shaft 809. The fixing block 810 is fixed to the outside of the third rotating shaft 809, and the bottom end of the fixing block 810 is fixed to the top end of the second connecting box 5.

[0102] Therefore, when using it, combine Figure 4 and Figure 5 As can be seen, when the second motor 801 is started, the second motor 801 can drive the first rotating shaft 802 to rotate, which in turn causes the first gear 805 to rotate. Since the first gear 805 meshes with the second gear 806, the second gear 806 can drive the second rotating shaft 803 to rotate, which in turn causes the worm 807 to rotate. Since the worm 807 meshes with the worm wheel 808, the worm wheel 808 can drive the third rotating shaft 809, the fixed block 810, and the second connecting box 5 to rotate, thereby completing the rotation operation.

[0103] Furthermore, a pointer 21 is connected to the end of the third rotating shaft 809, and a scale line 22 cooperating with the pointer 21 is provided on the side of the first connecting box 4; according to Figure 4 and Figure 14 As can be seen, when the rotating component 8 is activated, the third rotating shaft 809 drives the fixed block 810 and the third connecting box 6 to rotate, thereby rotating the rotating rod 10 and the rotating drum 11 at the bottom of the third connecting box 6. This adjusts the tilt angle of the entire rotating drum 11, making it easier to clean inclined tubes with different tilt angles. It can make adaptive angle adjustments according to actual conditions, making it more applicable. At the same time, the pointer 21 will rotate with the rotation of the third rotating shaft 809. Combined with the specified angle displayed by the scale line 22, it is easier for people to intuitively understand the current tilt angle of the inclined tube. The angle of the rotating drum 11 can also be quickly adjusted according to the known tilt angle of the inclined tube, resulting in better performance.

[0104] Furthermore, the second drive component 9 includes:

[0105] The components include: a third motor 901, a third gear 902, a fourth rotating shaft 903, a fourth gear 904, a second threaded rod 905, a second threaded block 906, a second guide rod 907, and a second guide block 908.

[0106] in,

[0107] The third motor 901 is mounted on the top of the second connecting box 5, and the third gear 902 is connected to the output end of the third motor 901. The fourth rotating shaft 903 is rotatably connected to the top of the second connecting box 5, and the fourth gear 904 is sleeved on the fourth rotating shaft 903. The fourth gear 904 meshes with the third gear 902. The bottom of the fourth rotating shaft 903 is connected to the top of the second threaded rod 905, and the bottom of the second threaded rod 905 is rotatably connected to the inner bottom of the second connecting box 5. The second threaded block 906 is threaded to the outside of the second threaded rod 905. The second guide rod 907 is fixed inside the second connecting box 5, and the second guide block 908 is slidably disposed outside the second guide block 908. The same side ends of the second threaded block 906 and the second guide block 908 are both fixed to the side of the third connecting box 6. The side of the second connecting box 5 is also provided with a slot 501 for the third connecting box 6 to slide.

[0108] When using, according to Figure 6 and Figure 7 It can be seen that when the third motor 901 is started, the third motor 901 can drive the third gear 902 to rotate, which in turn causes the fourth gear 904, the fourth rotating shaft 903 and the second threaded rod 905 to rotate, thereby enabling the second threaded block 906 to drive the third connecting box 6 to move. Example 2:

[0109] A method of using the high-efficiency sedimentation tank packing inclined tube cleaning device of Example 1 includes the following steps:

[0110] S1: Device installation: The entire support frame 3 is snapped onto the top two sides of the sedimentation tank using the U-shaped grooves at the bottom of the two side plates 302 on the support frame 3. The device is set above the sedimentation tank.

[0111] S2: Cleaning preparation: Prepare all power supplies and controllers in the device, and fill water tank 1 with clean water containing a certain concentration of mixed solution;

[0112] S3: Cleaning operation: Through the cooperation of the first drive assembly 7, the second drive assembly 9 and the rotating assembly 8, the positioning of the inclined tube to be cleaned is completed and the rotating drum 11 is inserted into the inclined tube to be cleaned. Then, the water supply assembly 2 injects cleaning water into the third connecting box 6, so that the cleaning water finally flows out from the support hole 16 on the cleaning cotton 12. At the same time, the flow effect of the cleaning water drives the rotating drum 11 and the cleaning cotton 12 to rotate, thereby completing the operation of injecting water into the inclined tube and starting the cleaning.

[0113] S4: Cleaning complete: After cleaning the inclined tube to be cleaned, turn off the power and then remove the support frame 3 from the sedimentation tank.

[0114] The above are merely preferred embodiments of the present invention, but the scope of protection of the present invention is not limited thereto. Any equivalent substitutions or modifications made by those skilled in the art within the scope of the technology disclosed in the present invention, based on the technical solution and inventive concept of the present invention, should be covered within the scope of protection of the present invention.

Claims

1. A high-efficiency sedimentation tank packing inclined tube cleaning device, comprising a water tank (1) and a support frame (3), characterized in that, Also includes: A water delivery assembly (2) is disposed on one side of the water tank (1); The first connecting box (4) is mounted on the support frame (3); The second connecting box (5) is disposed on the first connecting box (4); The third connecting box (6) is disposed on the second connecting box (5); The second drive assembly (9) is disposed on the second connecting box (5) and is used to drive the third connecting box (6) to perform longitudinal reciprocating motion; A rotating component (8) is disposed on the first connecting box (4) and is used to drive the second connecting box (5) and the third connecting box (6) to rotate; And the first drive assembly (7), which is disposed on the support frame (3) and is used to drive the first connecting box (4), the second connecting box (5) and the third connecting box (6) to perform lateral reciprocating motion; The bottom of the third connecting box (6) is rotatably connected to a rotating rod (10), and the bottom end of the rotating rod (10) is connected to a rotating cylinder (11). The outside of the rotating cylinder (11) is provided with a cleaning cotton (12). The interior of the third connecting box (6) is also provided with a driving component for driving the rotating rod (10) and the rotating cylinder (11) to rotate. The rotating assembly (8) includes: a second motor (801), a first rotating shaft (802), a second rotating shaft (803), a fixed frame (804), a first gear (805), a second gear (806), a worm (807), a worm wheel (808), a third rotating shaft (809), and a fixed block (810). The second motor (801) is mounted on the top of the first connecting box (4), and the output end of the second motor (801) is connected to the top end of the first rotating shaft (802). The bottom end of the first rotating shaft (802) is rotatably connected to the top of the first connecting box (4). The first gear (805) is sleeved on the first rotating shaft (802), and the second gear (806) is sleeved on the second rotating shaft (803). The first gear (805) and the second gear (806) mesh with each other. The number of the fixing frame (804), the second rotating shaft (803), the worm gear (808), the worm (807), the third rotating shaft (809), and the fixing block (810) are all two. The fixing frame (804) is fixed to the first connecting box (4). At the inner bottom end of the connecting box (4), the worm (807) and worm wheel (808) are rotatably connected to the fixed frame (804), and the worm (807) and worm wheel (808) are meshed. The top end of the worm (807) is coaxially connected to the bottom of the second rotating shaft (803), and the worm wheel (808) is coaxially connected to the third rotating shaft (809). The fixed block (810) is fixed to the outside of the third rotating shaft (809), and the bottom of the fixed block (810) is fixed to the top of the second connecting box (5). The water conveying assembly (2) includes: a water pump (201), an inlet pipe (202), and an outlet pipe (203). The water pump (201) is installed on one side of the water tank (1), and the outlet pipe (203) and the inlet pipe are coaxially connected to the third rotating shaft (809). Water pipes (202) are connected to the outlet and inlet of water pump (201) respectively, and the end of the inlet pipe (202) extends into the interior of water tank (1); the interior of the third connecting box (6) is provided with several circular cavities (601) and an upper chamber (602), and one end of the circular cavity (601) is connected to the upper chamber (602) through a through hole (603), and every two adjacent circular cavities (601) are connected through a connecting hole (604); the end of the outlet pipe (203) extends into the interior of the circular cavity (601) away from the through hole (603); the driving component is an arc-shaped fan blade (13) set inside the circular cavity (601), and the arc-shaped fan blade (13) is sleeved on the rotating rod (10). The outside of the rotating rod (10); the top end of the rotating rod (10) extends into the interior of the upper chamber (602), and a central hole (1001) communicating with the interior of the upper chamber (602) is provided at the center of the rotating rod (10); the bottom end of the rotating rod (10) extends into the interior of the rotating cylinder (11) and is connected to a flexible tube (14), and the interior of the flexible tube (14) is connected to the interior of the central hole (1001); one end of the cleaning cotton (12) extends into the interior of the rotating cylinder (11) and is connected to a connecting plate (15), and the other end of the connecting plate (15) is connected to the end of the flexible tube (14); both the connecting plate (15) and the cleaning cotton (12) are provided with interconnected branch holes (16), and the branch holes (16) are connected to the interior of the flexible tube (14);An electric telescopic rod (17) is installed on the inner top of the rotating drum (11), and the output end of the electric telescopic rod (17) is connected to a sliding plate (18). A sleeve (19) is fixed to the bottom of the sliding plate (18) and fitted outside the rotating rod (10). A hinge rod (20) is hinged to the outside of the sleeve (19). The other end of the hinge rod (20) is hinged to the end face of the connecting plate (15). A pointer (21) is connected to the end of the third rotating shaft (809), and a scale line (22) that cooperates with the pointer (21) is provided on the side of the first connecting box (4).

2. The high-efficiency sedimentation tank packing inclined tube cleaning device according to claim 1, characterized in that: The support frame (3) includes two side plates (302) and a top frame (301) for connecting the two side plates (302); the first drive assembly (7) includes: a first motor (701), a first threaded rod (702), a first threaded block (703), a first guide rod (704), and a first guide block (705); the first motor (701) is mounted on one of the side plates (302), and the output end of the first motor (701) is connected to one end of the first threaded rod (702), the other end of the first threaded rod (702) is rotatably connected to the side plate (302), the first threaded block (703) is threaded to the outside of the first threaded rod (702), the first guide rod (704) is laterally fixed between the two side plates (302), and the outside of the first guide rod (704) is used to sleeve the first guide block (705), the bottom of the first guide block (705) and the first threaded block (703) are both fixed to the top of the first connecting box (4).

3. The high-efficiency sedimentation tank packing inclined tube cleaning device according to claim 2, characterized in that: The second drive assembly (9) includes: a third motor (901), a third gear (902), a fourth shaft (903), a fourth gear (904), a second threaded rod (905), a second threaded block (906), a second guide rod (907), and a second guide block (908); the third motor (901) is mounted on the top of the second connecting box (5), and the third gear (902) is connected to the output end of the third motor (901); the fourth shaft (903) is rotatably connected to the top of the second connecting box (5), and the fourth gear (904) is sleeved on the fourth shaft (903); the fourth gear (904) meshes with the third gear (902), and so on. The bottom of the fourth rotating shaft (903) is connected to the top of the second threaded rod (905), and the bottom of the second threaded rod (905) is rotatably connected to the inner bottom of the second connecting box (5). The second threaded block (906) is threaded to the outside of the second threaded rod (905). The second guide rod (907) is fixed inside the second connecting box (5), and the second guide block (908) is slidably disposed outside the second guide block (908). The same side ends of the second threaded block (906) and the second guide block (908) are both fixed to the side of the third connecting box (6). The side of the second connecting box (5) is also provided with a slot (501) for the third connecting box (6) to slide.

4. A method of using the high-efficiency sedimentation tank packing inclined tube cleaning device as described in claim 2 or 3, characterized in that: Includes the following steps: S1: Device installation: The entire support frame (3) is clamped to the top of the sedimentation tank using the U-shaped grooves at the bottom of the two side plates (302) on the support frame (3), and the device is set above the sedimentation tank. S2: Cleaning preparation: Prepare all power supplies and controllers in the device, and fill the water tank (1) with clean water of a certain concentration of mixed solution; S3: Cleaning operation: Through the cooperation of the first drive assembly (7), the second drive assembly (9) and the rotating assembly (8), the positioning of the inclined tube to be cleaned is completed and the rotating drum (11) is inserted into the inclined tube to be cleaned. Then, the water supply assembly (2) injects cleaning water into the interior of the third connecting box (6), so that the cleaning water finally flows out from the support hole (16) on the cleaning cotton (12). At the same time, the flow effect of the cleaning water drives the rotating drum (11) and the cleaning cotton (12) to rotate, thereby completing the operation of injecting water into the inclined tube and starting the cleaning. S4: Cleaning complete: After the inclined tube to be cleaned is cleaned, turn off the power and then remove the support frame (3) from the sedimentation tank.

Citation Information

Patent Citations

  • Internal cleaning device and method for sewage treatment equipment

    CN115672903A

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    CN117379841A