Water-driven automatic overturning water filtering device and use method thereof

By designing a water-driven automatic flipping water filter device and utilizing a flipping adjustment mechanism and a hydraulic drive device to realize automatic cleaning of the filter box, the problem of reduced efficiency caused by the need for manual cleaning of traditional filter devices is solved, thereby improving the filtration efficiency.

CN120661992AInactive Publication Date: 2025-09-19DONGGUAN CHENGNONG ECOLOGICAL TECH CO LTD
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Patent Information

Application Number
CN202511037485.6
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-07-28
Publication Date
2025-09-19
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

Traditional water filtration devices require manual cleaning of the filter box, resulting in reduced filtration efficiency due to limited manpower and untimely cleaning.

Method used

A water-driven automatic flipping water filtration device is designed. The counterweight of the filter box is changed by the flip adjustment mechanism, causing it to flip and backwash. The hydraulic drive device drives the flushing device to clean the filter box.

Benefits of technology

It avoids manual cleaning of the filter box, improves filtration efficiency, and solves the problem of untimely cleaning due to limited manpower.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of filtering, and discloses a water-driven automatic overturning water filtering device and a using method thereof.The device comprises a box body, an enclosure device is arranged at the top of the box body, a water distribution device is arranged in the box body, a filter screen box is arranged at the bottom of the water distribution device, and a rotating groove is formed in the inner wall of the box body; the end of the filter screen box is rotationally connected into the rotating groove through a rotating shaft, the bottom of the box body is divided into a sewage area and a purified water area through a partition piece, a second water outlet and a first water outlet are formed in the positions, close to the bottom, of the outer wall of the box body, the second water outlet is located in the sewage area, and the first water outlet is located in the purified water area; and the side wall of the filter screen box is fixedly connected with a turnover adjusting mechanism. According to the invention, the balance weight of the filter screen box is changed through the overturning adjusting mechanism, so that the filter screen box generates unbalanced overturning, and the problem that the filter screen box needs to be cleaned manually in most traditional filter devices, and the filter efficiency is reduced is solved.
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Description

Technical Field

[0001] The present invention relates to the field of filtration technology, in particular to a water-driven automatic flipping water filtration device and a use method thereof. Background Art

[0002] Water source filtration device is a key equipment for purifying water quality, which removes impurities and pollutants in water through the synergistic action of multiple links.

[0003] Most traditional filtration devices require manual cleaning of the filter box. Due to limited manpower, it is easy to cause untimely cleaning, which in turn leads to reduced filtration efficiency. Summary of the Invention

[0004] In response to the shortcomings of the existing technology, the present invention provides a water-driven automatic flipping water filter device and its use method, which solves the problem that most traditional filter devices require manual cleaning of the filter box, which is prone to untimely cleaning due to limited manpower, resulting in reduced filtration efficiency.

[0005] To achieve the above objectives, the present invention is implemented through the following technical solutions: a water-driven automatic flip water filter device, comprising a box body, a protective device is provided on the top of the box body, a water distribution device is provided inside the box body, a filter box is provided at the bottom of the water distribution device, the inner wall of the box body is provided with a rotating groove, the end of the filter box is rotatably connected to the inside of the rotating groove by a rotating shaft, the bottom of the box body is divided into a sewage area and a clean water area by a dividing plate, the outer wall of the box body is provided with a second drain outlet and a first drain outlet near the bottom, the second drain outlet is located in the sewage area, and the first drain outlet is located in the clean water area, the side wall of the filter box is fixedly connected to a flip adjustment mechanism, a flushing device is provided inside the box body, the bottom of the flushing device is rotatably connected to the top of the mounting groove, and the bottom of the mounting groove is fixedly connected to the inner bottom of the box body, a hydraulic driving device is provided on the top of the flushing device, the hydraulic driving device is fixed to the inner wall of the box body through a fixing plate, the hydraulic driving device can transport an external water source into the flushing device and drive the flushing device to swing.

[0006] By adopting the above technical solution, the flip adjustment mechanism is used to change the counterweight of the filter box, thereby causing the filter box to flip unbalancedly. The flushing device can be opened in time through the valve switch device to backwash the filter box, thereby flushing out impurities on the surface of the filter box. After the filter box is flushed, the flip adjustment mechanism can drive the filter box to flip back to its original position to continue filtering, thereby avoiding manual cleaning of the filter box, thereby improving the problem that most traditional filtering devices require manual cleaning of the filter box. Due to limited manpower, it is easy to cause untimely cleaning, thereby reducing the filtering efficiency.

[0007] Preferably, the bottom of the filter box is fixedly connected to the top of the separator, and the bottom of the separator is fixedly connected to the inner bottom of the box through a fixing strip.

[0008] Preferably, the enclosure device includes a top plate, a first sliding groove is opened inside the top of the box body, the top plate is slidably connected to the inside of the first sliding groove, and an operating block is fixedly connected to the top of the top plate.

[0009] Preferably, the water distribution device includes a first water pipe, a first water outlet is provided at the bottom of the first water pipe, the input end of the first water pipe is connected to a first on-off valve through a mounting block, a mounting port is provided on the outer wall of the box body, the outer wall of the first water pipe is located on the inner wall of the mounting port, the inner wall of the box body is fixedly connected to a support block, and the side of the first water pipe away from the output end is located on the top of the support block.

[0010] Preferably, the flip adjustment mechanism includes an ascending end counterweight box and a descending end counterweight box, the side walls of the ascending end counterweight box and the descending end counterweight box are fixedly connected to the side walls of the filter box, the ascending end counterweight box and the descending end counterweight box are positioned opposite to each other on the side walls of the filter box, a third drain outlet is provided on the outer wall of the filter box close to the descending end counterweight box, a water retaining bar is fixedly connected to the bottom of the third drain outlet, a first water inlet is provided on the side wall of the descending end counterweight box, a fifth drain outlet is provided on the bottom of the descending end counterweight box, a fourth drain outlet is provided on the side wall of the descending end counterweight box, the position of the fourth drain outlet is opposite to that of the first water inlet, the first water inlet coincides with the third drain outlet, a second water inlet is provided on the bottom of the side of the ascending end counterweight box away from the filter box.

[0011] Preferably, the flushing device includes a water storage column, the top of the water storage column is fixedly connected to a transmission shaft, the input end of the water storage column is fixedly provided with one end of a water hose, the output end of the water storage column is provided with a second water spray port, and the bottom of the water storage column is rotatably connected to the top of the mounting groove.

[0012] Preferably, the hydraulic drive device includes a water storage box, the top of the water storage box is provided with a first input end and a second input end, the first input end is fixedly provided with a second water pipe, the second input end is fixedly provided with one end of a water distribution pipe, the other end of the water distribution pipe is connected to the side wall of the second water pipe, the end of the second water pipe away from the water storage box is provided with a second on-off valve through a reducer, the interior of the water storage box is provided with a sixth drain port and a mounting hole, the sixth drain port is fixedly provided with an end of a water hose away from the water storage column, the transmission shaft passes through the interior of the mounting hole, a runner is provided inside the water storage box, the outer wall of the runner is fixedly connected with blades and a first paddle plate, the bottom of the runner is fixedly connected to the end of the transmission shaft away from the water storage column, and the inner wall of the water storage box is fixedly connected with a connecting block and a first water baffle , the connecting block is fixedly connected to a third water baffle on one side away from the side wall of the water storage box, the third water baffle, the first water baffle and the connecting block can form the first water storage chamber and the second water storage chamber, the first input end is communicated with the first water storage chamber, and the second input end is communicated with the second water storage chamber, and two gaps are left between the two sides of the third water baffle and the first water baffle, the second water baffle can block a gap, the second water baffle is fixedly connected to a slider on the side of the second water baffle close to the third water baffle, and the second water baffle is fixedly connected to the second toggle piece on the side of the second water baffle away from the slider, the second slide groove is opened on the side of the third water baffle away from the connecting block, the slider can slide inside the second slide groove, and a limiting strip is provided on the side of the first water baffle close to the second water baffle.

[0013] The cam is fixedly mounted on the outside of the box body, wherein the first and second connecting plates are connected to each other with a bolt, and the bolt has a round shank to contact with the second end of the box body.

[0014] A method for using a water-driven automatic flipping water filter device comprises the following steps:

[0015] The water source to be filtered conveys sewage into the first water pipe through the first on-off valve;

[0016] The sewage is applied to the surface of the filter box through the first water spray port, and then filtered by the filter box, and the clean water falls to the bottom of the box body and is discharged through the first drain port;

[0017] When the filter box is clogged by impurities in the sewage, the water level inside the filter box rises, and then the water source enters the interior of the descending end counterweight box through the third drain port;

[0018] At the same time, the weight of the counterweight box at the descending end is greater than that at the ascending end, thereby driving the filter box to flip;

[0019] At this time, the guide plate will be driven to rise by the rotating plate, and then the first on-off valve will be controlled to close and the second on-off valve will be controlled to open through the second support plate and the third support plate;

[0020] The flushing device will spray water to flush the impurities on the surface of the filter box to the side of the separator away from the installation groove, and then discharge it from the second drain port;

[0021] At the same time, the water source inside the counterweight box at the descending end is discharged through the fourth drain port, and part of the water source of the flushing device enters the interior of the counterweight box at the ascending end through the second water inlet;

[0022] When the weight of the counterweight box at the ascending end is greater than the weight of the counterweight box at the descending end, the filter box will be driven to flip back to the horizontal position, and then the rotating plate will rotate back to its original position, thereby causing the guide plate to drive the second support plate and the third support plate to descend. Due to gravity, the first on-off valve will open and the second on-off valve will close to continue filtering.

[0023] The present invention provides a water-driven automatic flip water filter device and its use method.

[0024] Beneficial effects:

[0025] 1. In the present invention, the counterweight of the filter box is changed by the flip adjustment mechanism, so that the filter box is flipped unbalanced, and the filter box is backwashed by the flushing device to flush out impurities on the surface of the filter box. After the filter box is flushed, the flip adjustment mechanism can drive the filter box to flip back to its original position to continue filtering, thereby avoiding manual cleaning of the filter box, thereby improving the problem that most traditional filtering devices require manual cleaning of the filter box. Due to limited manpower, it is easy to cause untimely cleaning, thereby reducing the filtering efficiency.

[0026] 2. In the present invention, the flip adjustment mechanism drives the filter box to flip and restore through the principle of gravity balance. The hydraulic drive device also drives the impeller to rotate through hydraulic power, thereby driving the water storage column to swing and flush the filter box. Therefore, the entire device can complete all flushing and filtering functions without a complex control system.

[0027] 3. In the present invention, by installing the filter box in the box, the sewage pipe to be filtered and the municipal tap water, as well as the discharge pipes of the second drain outlet and the first drain outlet are connected to the device respectively, thereby reducing a large number of equipment connections and continuously performing the filter box cleaning work, thereby achieving the purpose of saving energy. BRIEF DESCRIPTION OF THE DRAWINGS

[0028] Figure 1 It is a schematic diagram of the front three-dimensional structure of the present invention;

[0029] Figure 2 This is a schematic diagram of the three-dimensional structure of the present invention after the top plate is removed;

[0030] Figure 3 Schematic diagram of the three-dimensional structure of the bottom of the water pipe of the present invention;

[0031] Figure 4 This is a schematic diagram of the three-dimensional structure of the present invention after removing the top plate and the water pipe;

[0032] Figure 5 This is a schematic diagram of the three-dimensional structure of the filter box of the present invention located in the box;

[0033] Figure 6 This is a schematic diagram of the three-dimensional structure of the separator of the present invention;

[0034] Figure 7 Schematic diagram of the three-dimensional structure of the filter box of the present invention;

[0035] Figure 8 It is a schematic diagram of the rear three-dimensional structure of the present invention;

[0036] Figure 9 This is a schematic three-dimensional diagram of the structure of the guide plate and the second support plate of the present invention;

[0037] Figure 10 It is a partial cross-sectional structural diagram of the descending end counterweight box of the present invention;

[0038] Figure 11 It is a partial cross-sectional structural diagram of the rising end counterweight box of the present invention;

[0039] Figure 12 It is a partial cross-sectional structural diagram of the filter box of the present invention;

[0040] Figure 13 It is a partial three-dimensional structural diagram of the water storage box and the water storage column of the present invention;

[0041] Figure 14 This is a schematic diagram of the internal three-dimensional structure of the water storage box of the present invention;

[0042] Figure 15 This is a schematic diagram of the top view of the water storage box of the present invention;

[0043] Figure 16 This is a schematic diagram of the installation structure of the third water retaining plate and the second water retaining plate of the present invention;

[0044] Figure 17 This is a schematic diagram of the cross-sectional structure of the third water retaining plate and the second water retaining plate of the present invention;

[0045] Figure 18 Schematic diagram of a partial three-dimensional structure of the runner of the present invention;

[0046] Figure 19 This is a schematic diagram of the three-dimensional structure of the guide plate of the present invention located in the box.

[0047] Among them, 1. Top plate; 2. Box body; 3. First drain outlet; 4. Second drain outlet; 5. Mounting block; 6. First on-off valve; 7. Reducer; 8. Second water pipe; 9. Operating block; 10. First water pipe; 11. First chute; 12. First water outlet; 13. Water storage box; 14. Support block; 15. Connecting block; 16. First slide; 17. Mounting port; 18. Rotating shaft; 19. Water distribution pipe; 20. Fixed plate; 21. Second water outlet; 22. Water storage column; 23. Rising end counterweight box; 24. Filter box; 25. Fixed strip; 26. Separator; 27. Descending end counterweight box; 28. Mounting slot; 29. ​​Rotating slot; 30. Water retaining strip; 31. Third row Water outlet; 32. Rotating plate; 33. Fourth drain outlet; 34. First connecting plate; 35. Second connecting plate; 36. First water inlet; 37. Fifth drain outlet; 38. Second water inlet; 39. Drive shaft; 40. Water hose; 41. Blade; 42. Rotor; 43. Sixth drain outlet; 44. First water baffle; 45. Second water baffle; 46. First toggle plate; 47. Third water baffle; 48. Mounting hole; 49. Limiting strip; 50. Second slide; 51. Second toggle plate; 52. Slider; 53. Guide plate; 54. Second slide; 55. Anti-tilt plate; 56. First support plate; 57. Second support plate; 58. Third support plate; 59. Second opening and closing valve. DETAILED DESCRIPTION

[0048] The following will clearly and completely describe the technical solution of the present invention in conjunction with the accompanying drawings. Obviously, the embodiments described are only some embodiments of the present invention, not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0049] Example 1:

[0050] Please see the attached Figure 1-6, an embodiment of the present invention provides a water-driven automatic flip water filtering device, including a box body 2, a protective device is provided on the top of the box body 2, a water distribution device is provided inside the box body 2, and a filter box 24 is provided at the bottom of the water distribution device. The inner wall of the box body 2 is provided with a rotating groove 29, and the end of the filter box 24 is rotatably connected to the inside of the rotating groove 29 by a rotating shaft 18. The bottom of the box body 2 is divided into a sewage area and a clean water area by a partition 26. A second drain port 4 and a first drain port 3 are provided on the outer wall of the box body 2 near the bottom. The second drain port 4 is located in the sewage area, and the first drain port 3 is located in the clean water area. The side wall of the filter box 24 is fixedly connected with a flip adjustment mechanism, and a flushing device is provided inside the box body 2. The bottom of the flushing device is rotatably connected to the top of the mounting groove 28, and the bottom of the mounting groove 28 is fixedly connected to the inner bottom of the box body 2. A hydraulic driving device is provided on the top of the flushing device, and the hydraulic driving device is fixed to the inner wall of the box body 2 through a fixing plate 20. The hydraulic driving device can transport external water to the inside of the flushing device and drive the flushing device to swing.

[0051] Specifically, the box body 2 can be used to install the internal structure and the water source after the mobile phone is filtered; the enclosure device can be used to shield the box body 2, thereby achieving the function of protecting the internal structure of the box body 2; the water distribution device can be used to transport the sewage to be filtered to the top of the filter box 24; the filter box 24 can filter the sewage; the rotating groove 29 can support the rotating shaft 18, and at the same time, the filter box 24 can rotate inside the rotating groove 29 with the rotating shaft 18 as the axis; the separator 26 can be used to divide the bottom of the box body 2 into a sewage area and a clean water area The second drain port 4 can be used to drain the sewage from the filter box 24; the first drain port 3 can be used to drain the filtered water after the filter box 24 is filtered; the flip adjustment mechanism can control the rotation of the filter box 24. When the filter box 24 is clogged with impurities in the sewage, the filter box 24 can be driven to rotate ninety degrees, and then the filter box 24 can be flushed by the flushing device. After flushing, the flip adjustment mechanism can drive the filter box 24 to rotate ninety degrees and return to the working position to continue The filtration work continues; the installation groove 28 can play the role of installing the flushing device, thereby supporting the flushing device and enabling the flushing device to swing stably inside the installation groove 28; the hydraulic drive device can play the role of conveying water to the inside of the flushing device, and at the same time, the internal structure can also drive the flushing device to swing back and forth, thereby performing fan-shaped flushing on the filter box 24, thereby achieving the purpose of all-round cleaning. The position of the flushing device is opposite to that of the sewage area, thereby enabling the dirt on the surface of the filter box 24 to be reversely flushed into the sewage area, and finally discharged to the second drain port 4. Inside the sewage collection device; the flip adjustment mechanism changes the counterweight of the filter box 24, thereby causing the filter box 24 to flip unbalancedly, and the filter box 24 is backwashed by the flushing device, thereby flushing out impurities on the surface of the filter box 24. After the filter box 24 is flushed, the flip adjustment mechanism can drive the filter box 24 to flip back to its original position to continue filtering, thereby avoiding manual cleaning of the filter box 24, thereby improving the traditional filtering device. Most of them require manual cleaning of the filter box 24. Due to limited manpower, it is easy to cause untimely cleaning, thereby reducing the filtering efficiency.

[0052] Please see the attached Figure 6 The bottom of the filter box 24 is fixedly connected to the top of the separator 26, and the bottom of the separator 26 is fixedly connected to the inner bottom of the box body 2 through the fixing strip 25.

[0053] Specifically, the separator 26 is made of a soft rubber material, which can block the water source and can also deform with the rotation of the filter box 24, thereby always isolating the clean water area and the sewage area; the fixing bar 25 can fix the separator 26 to the bottom of the box 2.

[0054] Please see the attached Figure 1 -Attached Figure 2 The enclosure device includes a top plate 1, a first slide groove 11 is opened inside the top of the box body 2, the top plate 1 is slidably connected to the inside of the first slide groove 11, and an operating block 9 is fixedly connected to the top of the top plate 1.

[0055] Specifically, the top plate 1 can shield the box body 2 to prevent impurities from falling into the box body 2; the first slide groove 11 can guide the top plate 1, thereby allowing the top plate 1 to slide more accurately and conveniently inside the first slide groove 11; the operating block 9 can provide a clear fulcrum for the top plate 1, thereby further facilitating the removal of the top plate 1 from the first slide groove 11 or the placement of the top plate 1 into the first slide groove 11.

[0056] Please see the attached Figure 1 -Attached Figure 4 The water distribution device includes a first water pipe 10, a first water outlet 12 is provided at the bottom of the first water pipe 10, the input end of the first water pipe 10 is connected to the first on-off valve 6 through the mounting block 5, a mounting port 17 is provided on the outer wall of the box body 2, the outer wall of the first water pipe 10 is located on the inner wall of the mounting port 17, the inner wall of the box body 2 is fixedly connected with a support block 14, and the side of the first water pipe 10 away from the output end is located on the top of the support block 14.

[0057] Specifically, the first water pipe 10 can be used to temporarily store sewage; the first water nozzle 12 can be used to spray out the sewage inside the first water pipe 10. The first water nozzles 12 are evenly distributed at the bottom of the first water pipe 10, and the distribution length is equal to the length of the filter box 24, thereby the sewage inside the first water pipe 10 can be evenly sprayed on the surface of the filter box 24, thereby maximizing the filtering effect of the filter box 24; the first on-off valve 6 can be used to control whether the external water supply equipment conveys sewage to the first water pipe 10. The top side wall of the first on-off valve 6 is provided with a valve-controlled connecting rod and a gravity ball. When the position of the gravity ball and the valve-controlled connecting rod are close to the first When the connection end of an on-off valve 6 is in a horizontal position, the first on-off valve 6 is in a closed state, and when the gravity ball of the first on-off valve 6 is lower than the valve-controlled connecting rod close to the connection end of the first on-off valve 6, it is in an open state; the installation port 17 can be used to place the first water pipe 10, so that the top surface of the first water pipe 10 is on the bottom surface of the top plate 1, thereby ensuring that the top surface of the top plate 1 is horizontal, thereby reducing the volume of the entire filter device; the support block 14 can support the first water pipe 10, thereby making the first water pipe 10 remain horizontal during water distribution, and thereby making the sewage inside the first water pipe 10 discharged from the first water spray port 12 accurately distributed to the surface of the filter box 24.

[0058] Please see the attached Figure 5 -Attached Figure 12 The flip adjustment mechanism includes a rising end counterweight box 23 and a descending end counterweight box 27. The side walls of the rising end counterweight box 23 and the descending end counterweight box 27 are fixedly connected to the side walls of the filter box 24. The rising end counterweight box 23 and the descending end counterweight box 27 are opposite to each other in the side walls of the filter box 24. The outer wall of the filter box 24 close to the side of the descending end counterweight box 27 is provided with a third drain outlet 31, and the bottom of the third drain outlet 31 is fixedly connected with a water retaining bar 30. The side wall of the descending end counterweight box 27 is provided with a first water inlet 36, and the bottom of the descending end counterweight box 27 is provided with a fifth drain outlet 37. The side wall of the descending end counterweight box 27 is provided with a fourth drain outlet 33. The position of the fourth drain outlet 33 is opposite to the position of the first water inlet 36, and the first water inlet 36 coincides with the third drain outlet 31. The bottom of the rising end counterweight box 23 away from the filter box 24 is provided with a second water inlet 38.

[0059] Specifically, the ascending end counterweight box 23 can drive the filter box 24 to turn downward after the filter box 24 is turned over, thereby allowing the filter box 24 to return to the working state; the descending end counterweight box 27 can drive the filter box 24 to rotate downward when the filter box 24 is blocked, so that the bottom surface of the filter box 24 can face the flushing device, thereby allowing the flushing device to flush the filter box 24; the ascending end counterweight box 23 and the descending end counterweight box 27 are relative to each other on the side wall of the filter box 24, so that when the weight of the water stored in the descending end counterweight box 27 is greater than that of the ascending end counterweight box 23, the filter box 24 can be driven to turn over, thereby achieving the purpose of waiting for flushing. When the filter box 24 is turned over, the weight box 27 can be driven to flip over, thereby achieving the purpose of controlling the filter box 24 to return to the working state; through the third drain port 31, the water source inside the filter box 24 can be transported to the inside of the descending end counterweight box 27 when the filter box 24 is blocked, thereby increasing the weight of the descending end counterweight box 27; through the water retaining bar 30, after the filter box 24 is flipped over, impurities can flow into the inside of the descending end counterweight box 27 along the edge of the filter box 24, thereby avoiding impurities clogging the fourth drain port 33 and the fifth drain port 37 of the descending end counterweight box 27; through the first water inlet 36, water can be transported to the inside of the descending end counterweight box 27; through the fifth drain port 37, water can be discharged from the descending end counterweight box 27. The function is that when the filter box 24 is in a horizontal working state, it is inevitable that some water will splash into the interior of the descending end counterweight box 27 through the third drain port 31 and the first water inlet 36. At this time, the filter box 24 is not blocked, so there is no need to flip it over. Therefore, a small part of the water inside the descending end counterweight box 27 can be discharged through the fifth drain port 37; the fourth drain port 33 can play the role of discharging the water source inside the descending end counterweight box 27. When the filter box 24 is blocked due to the water source, the filter box 24 is flipped over by the descending end counterweight box 27 to start the cleaning work, and the water source inside the descending end counterweight box 27 is slowly discharged through the fourth drain port 33. At the same time, due to the flushing device flushing the filter box 24, some water will be The water source enters the interior of the ascending end counterweight box 23 through the mounting groove 28, thereby enabling the weight of the descending end counterweight box 27 to be less than the weight of the ascending end counterweight box 23 after a period of time, and then, due to gravity, the ascending end counterweight box 23 drives the filter box 24 to flip back to the working position; the position of the fourth drain port 33 is opposite to that of the first water inlet 36, so that the drainage work will only start when the descending end counterweight box 27 drives the filter box 24 to flip so that the fourth drain port 33 is at the bottom; the first water inlet 36 overlaps with the third drain port 31, so that when the filter box 24 is blocked, the water source will enter the first water inlet 36 from the third drain port 31, and then enter the interior of the descending end counterweight box 27;A second water inlet 38 is provided at the bottom of the ascending counterweight box 23 on a side away from the filter box 24. When the descending counterweight box 27 drives the filter box 24 to rotate, the ascending counterweight box 23 is located at the top of the filter box 24. At this time, the second water inlet 38 faces the flushing device, allowing the flushing device to flush water into the ascending counterweight box 23. When the ascending counterweight box 23 drives the filter box 24 to rotate and descend, the second water inlet 38 will be located at the bottom of the ascending counterweight box 23, thereby allowing the water inside the ascending counterweight box 23 to be discharged in a timely manner, preventing the filter box 24 from rotating excessively and maintaining its balance.

[0060] Please see the attached Figure 4 -Attached Figure 13 The flushing device includes a water storage column 22, the top of the water storage column 22 is fixedly connected to the transmission shaft 39, the input end of the water storage column 22 is fixedly provided with one end of a water hose 40, the output end of the water storage column 22 is provided with a second water spray port 21, and the bottom of the water storage column 22 is rotatably connected to the top of the mounting groove 28.

[0061] Specifically, the water storage column 22 can serve as a temporary water storage source, and can also serve as a mounting point for the second water outlet 21; the transmission shaft 39 can transmit rotational force, thereby driving the water storage column 22 to swing; the water supply hose 40 can transport water to the inside of the water storage column 22. The water supply hose 40 is made of a soft material, so that it can deform when the water storage column 22 swings, thereby maintaining the transmission of water; the water source inside the water storage column 22 can be sprayed out through the second water outlet 21, thereby flushing away impurities on the surface of the filter box 24; the mounting groove 28 can assist the water storage column 22 in swinging stably.

[0062] Please see the attached Figure 4 -Attached Figure 18The hydraulic drive device includes a water storage box 13, a first input end and a second input end are provided at the top of the water storage box 13, the first input end is fixedly provided with a second water delivery pipe 8, the second input end is fixedly provided with one end of a water distribution pipe 19, the other end of the water distribution pipe 19 is connected to the side wall of the second water delivery pipe 8, the end of the second water delivery pipe 8 away from the water storage box 13 is provided with a second on-off valve 59 through a reducer 7, a sixth drain port 43 and a mounting hole 48 are opened inside the water storage box 13, the sixth drain port 43 is fixedly provided with an end of a water delivery hose 40 away from the water storage column 22, a transmission shaft 39 passes through the interior of the mounting hole 48, a runner 42 is provided inside the water storage box 13, the outer wall of the runner 42 is fixedly connected with a blade 41 and a first paddle piece 46, the bottom of the runner 42 is fixedly connected to the end of the transmission shaft 39 away from the water storage column 22, the inner wall of the water storage box 13 is fixedly connected with a connecting block 15 and a first water baffle 44, A third water baffle 47 is fixedly connected to the side of the connecting block 15 away from the side wall of the water storage box 13. The third water baffle 47, the first water baffle 44 and the connecting block 15 can form a first water storage chamber and a second water storage chamber. The first input end is communicated with the first water storage chamber, and the second input end is communicated with the second water storage chamber. Two gaps are left between the two sides of the third water baffle 47 and the first water baffle 44. A second water baffle 45 is provided on the side of the third water baffle 47 away from the connecting block 15. The second water baffle 45 can block a gap. A slider 52 is fixedly connected to the side of the second water baffle 45 close to the third water baffle 47. A second paddle plate 51 is fixedly connected to the side of the second water baffle 45 away from the slider 52. A second slide groove 50 is provided on the side of the third water baffle 47 away from the connecting block 15. The slider 52 can slide inside the second slide groove 50. A limiting strip 49 is provided on the side of the first water baffle 44 close to the second water baffle 45.

[0063] Specifically, the water storage box 13 can be used to store water and install internal structures; the second water pipe 8 can be used to transport water to the inside of the first water storage chamber through the first input end; the water distribution pipe 19 can be used to transport water to the inside of the second water storage chamber through the second input end; the large diameter of the second opening and closing valve 59 can be converted into a diameter suitable for the second water pipe 8 through the reducing joint 7; the second opening and closing valve 59 can be used to regulate the opening and closing of the external water source to the second water pipe 8. The second opening and closing valve 59 is installed inverted, opposite to the upper and lower sides of the first opening and closing valve 6, so the bottom side of the second opening and closing valve 59 is opened. The wall is provided with a valve-controlled connecting rod and a gravity ball. When the position of the gravity ball and the connection end of the valve-controlled connecting rod close to the second opening and closing valve 59 are in a horizontal position, the second opening and closing valve 59 is in a closed state. When the gravity ball of the second opening and closing valve 59 is higher than the connection end of the valve-controlled connecting rod close to the second opening and closing valve 59, it is in an open state. The water source inside the water storage box 13 can be transported to the inside of the water supply hose 40 through the sixth drain port 43, and then transported to the inside of the water storage column 22 through the water supply hose 40. The transmission shaft 39 can pass through the mounting hole 48, thereby transmitting the rotational force from the inside of the water storage box 13 to the water storage column 22. The runner 42 can play a role The role of transmitting rotational force to the transmission shaft 39; the blade 41 can play a role in driving the runner 42 to rotate; the first paddle plate 46 can play a role in moving the second paddle plate 51, thereby driving the second water baffle 45 to slide on the surface of the third water baffle 47; the connecting block 15 can play a role in connecting the third water baffle 47; the first water baffle 44 can play a role in forming the first water storage chamber and the second water storage chamber with the third water baffle 47 and the connecting block 15; the third water baffle 47 can play a role in installing the second water baffle 45; the two sides of the third water baffle 47 are connected to the first water baffle 4 4, two gaps are left between them, through which water from the first water storage chamber and the second water storage chamber can be sprayed out from the inside of the two gaps, and then sprayed onto the surface of the blade 41, thereby driving the runner 42 to rotate, and then driving the water storage column 22 to rotate through the transmission shaft 39; the second water baffle 45 can play a role in shielding the above-mentioned gap, thereby achieving the purpose of allowing water to be discharged only through one gap, thereby causing the runner 42 to rotate in different directions; the slider 52 can fit into the second chute 50, thereby driving the second water baffle 45 to slide stably and accurately on the surface of the third water baffle 47;When water is ejected from one of the above-mentioned gaps, it will drive the runner 42 to rotate through the blades 41, thereby driving the first paddle plate 46 to rotate. When the runner 42 drives the first paddle plate 46 to rotate one circle, the first paddle plate 46 will hit the second paddle plate 51, thereby moving the second water baffle 45 to the side of the open gap, thereby closing the previous gap and opening the originally closed gap. At this time, water is ejected from the now-opened gap, causing the runner 42 to rotate in the opposite direction, thereby driving the first paddle plate 46 to rotate in the opposite direction. After rotating one circle, it will hit the other side of the second paddle plate 51 again, causing the second water baffle 45 to open another gap, thereby achieving the purpose of repeatedly swinging the runner 42 only by the water source; the limit bar 49 can play a role in limiting the movement range of the second water baffle 45, thereby limiting the movement range of the second water baffle 45 to between the two first water baffles 44, preventing the second water baffle 45 from excessively moving and losing the effect of covering the gap.

[0064] Please see the attached Figure 8 -Attached Figure 19 , a guide plate 53 is provided inside the box 2, the end of the guide plate 53 is fixedly connected to the first connecting plate 34, the first connecting plate 34 is fixedly connected to the side away from the guide plate 53 with an anti-tilt piece 55, the outer wall of the guide plate 53 is fixedly connected to the second connecting plate 35, the side wall of the box 2 is provided with a first slide 16 and a second slide 54, the first connecting plate 34 is slidably connected to the inside of the second slide 54, the second connecting plate 35 is slidably connected to the inner wall of the first slide 16, the anti-tilt piece 55 is located on the outer wall of the box 2, and the second The end of the connecting plate 35 away from the guide plate 53 is fixedly connected to the second support plate 57, the middle of the second support plate 57 is provided with a first support plate 56, the end of the second support plate 57 is provided with a third support plate 58, and the bottom of the guide plate 53 is provided with a rotating plate 32. The cross-section of the rotating plate 32 is elliptical, and one end of the rotating plate 32 is fixedly connected to the outer wall of the rotating shaft 18. The second support plate 57 can support the adjusting component of the first opening and closing valve 6, and the third support plate 58 can support the adjusting component of the second opening and closing valve 59.

[0065] The second connecting plate 35 is moved up and down by the guide plate 53, and the first connecting plate 34 is slidably connected to the inside of the second slide 54, thereby limiting the up and down movement of the guide plate 53 inside the second slide 54, thereby making the guide plate 53 move more smoothly. The anti-tilt piece 55 fixedly connected to the outer wall of the first connecting plate 34 can always fix the first connecting plate 34 inside the second slide 54, and the anti-tilt piece 55 is located on the outer wall of the box body 2 and has a cross-sectional area larger than the first connecting plate 34, thereby making the first connecting plate 34 and the anti-tilt piece 55 maintain a vertical relationship, thereby making the guide plate 53 The plate 53 can move parallel to the second slide 54, thereby avoiding the height difference of the first connecting plates 34 on both sides; the second connecting plate 35 can transmit the power of the up and down movement transmitted by the guide plate 53 to the second support plate 57, thereby driving the second support plate 57 to move up and down; the first slide 16 can play the role of allowing the second connecting plate 35 to pass; the second support plate 57 can play the role of transmitting the upward movement force of the guide plate 53 to the gravity ball of the first opening and closing valve 6, through the upward movement of the guide plate 53, thereby driving the second support plate 57 to move upward, thereby driving the gravity ball of the first opening and closing valve 6 to move upward , so that the valve control connecting rod of the first on-off valve 6 changes its angle to horizontal, thereby closing the first on-off valve 6; the first support plate 56 can play the role of lowering the local height of the second support plate 57, thereby allowing the middle part of the first on-off valve 6 to enter the interior of the first support plate 56, thereby avoiding the top surface of the second support plate 57 being restricted by the bottom surface of the first on-off valve 6, so that the second support plate 57 can drive the gravity ball of the first on-off valve 6 to rise to a higher position; the third support plate 58 can play the role of supporting the gravity ball of the second on-off valve 59, and the rise of the second support plate 57 drives the third support plate 58 to rise, thereby It can drive the gravity ball of the second opening and closing valve 59 to rise. After rising, the gravity ball of the second opening and closing valve 59 will drive the valve control connecting rod of the second opening and closing valve 59 to form an upward tilt, thereby opening the second opening and closing valve 59, thereby allowing the external water source to enter the flushing device through the second opening and closing valve 59; the rotating plate 32 can rotate when the rotating shaft 18 rotates, and the flip adjustment mechanism drives the filter box 24 to rotate toward the side of the counterweight box 27 at the descending end, thereby driving the rotating plate 32 to rotate with the rotating shaft 18 as the axis, thereby enabling the rotating plate 32 to flip upward away from the side of the rotating shaft 18, thereby pushing the guide plate 53 to move upward.

[0066] A method for using a water-driven automatic flipping water filter device comprises the following steps:

[0067] The water source to be filtered is transported through the first on-off valve 6 into the first water pipe 10;

[0068] The sewage is applied to the surface of the filter box 24 through the first water spray port 12, and then filtered by the filter box 24, and the clean water falls into the bottom of the box body 2 and is discharged through the first drain port 3;

[0069] When the filter box 24 is clogged by impurities in the sewage, the water level inside the filter box 24 rises, and then the water source enters the interior of the descending end counterweight box 27 through the third drain port 31;

[0070] At the same time, the weight of the descending end counterweight box 27 is greater than the ascending end counterweight box 23, thereby driving the filter box 24 to flip;

[0071] At this time, the guide plate 53 will be driven upward by the rotating plate 32, and then the first on-off valve 6 will be controlled to be closed and the second on-off valve 59 will be controlled to be open through the second support plate 57 and the third support plate 58;

[0072] The flushing device will spray water to flush the impurities on the surface of the filter box 24 to the side of the partition 26 away from the installation groove 28, and then discharge it from the second drain port 4;

[0073] At the same time, the water source inside the descending end counterweight box 27 is discharged through the fourth drain port 33, and part of the water source of the flushing device enters the ascending end counterweight box 23 through the second water inlet 38;

[0074] When the weight of the counterweight box 23 at the ascending end is greater than the weight of the counterweight box 27 at the descending end, the filter box 24 will be driven to flip back to the horizontal position, and then the rotating plate 32 will rotate back to its original position, thereby causing the guide plate 53 to drive the second support plate 57 and the third support plate 58 to descend. Due to gravity, the first on-off valve 6 will be opened and the second on-off valve 59 will be closed to continue filtering.

[0075] The device can be composed of one or more filter boxes 24. The flushing device can accurately flush a single filter box 24 to avoid wasting water resources, thereby being widely used in industrial filtration.

[0076] While embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions, and variations may be made to these embodiments without departing from the principles and spirit of the invention, and that the scope of the invention is defined by the appended claims and their equivalents.

Claims

1. A water-driven automatic flip water filter device, comprising a housing (2), characterized in that: The top of the box (2) is provided with a protective device, the interior of the box (2) is provided with a water distribution device, the bottom of the water distribution device is provided with a filter box (24), the inner wall of the box (2) is provided with a rotating groove (29), the end of the filter box (24) is rotatably connected to the inside of the rotating groove (29) through a rotating shaft (18), the bottom of the box (2) is divided into a sewage area and a clean water area by a partition (26), the outer wall of the box (2) is provided with a second drain port (4) and a first drain port (3), the second drain port (4) is located in the sewage area, and the first drain port (3) is located in the sewage area. A drain outlet (3) is located in the water purification area, the side wall of the filter box (24) is fixedly connected with a flip adjustment mechanism, the interior of the box (2) is provided with a flushing device, the bottom of the flushing device is rotatably connected to the top of the installation groove (28), the bottom of the installation groove (28) is fixedly connected to the inner bottom of the box (2), the top of the flushing device is provided with a hydraulic drive device, the hydraulic drive device is fixed to the inner wall of the box (2) through a fixing plate (20), the hydraulic drive device can transport external water source to the inside of the flushing device, and can also drive the flushing device to swing.

2. The water-driven automatic flip water filter device according to claim 1, characterized in that: The bottom of the filter box (24) is fixedly connected to the top of the separator (26), and the bottom of the separator (26) is fixedly connected to the inner bottom of the box body (2) through a fixing strip (25).

3. The water-driven automatic flip water filter device according to claim 1, characterized in that: The enclosure device comprises a top plate (1), a first sliding groove (11) is provided inside the top of the box body (2), the top plate (1) is slidably connected to the inside of the first sliding groove (11), and an operating block (9) is fixedly connected to the top of the top plate (1).

4. The water-driven automatic flip water filter device according to claim 1, characterized in that: The water distribution device comprises a first water pipe (10), a first water spray port (12) is provided at the bottom of the first water pipe (10), an input end of the first water pipe (10) is connected to a first on-off valve (6) via a mounting block (5), an outer wall of the box (2) is provided with a mounting port (17), the outer wall of the first water pipe (10) is located on the inner wall of the mounting port (17), the inner wall of the box (2) is fixedly connected to a support block (14), and a side of the first water pipe (10) away from the output end is located on the top of the support block (14).

5. The water-driven automatic flip water filter device according to claim 1, characterized in that: The flip adjustment mechanism includes an ascending end counterweight box (23) and a descending end counterweight box (27), the side walls of the ascending end counterweight box (23) and the descending end counterweight box (27) are fixedly connected to the side wall of the filter box (24), the ascending end counterweight box (23) and the descending end counterweight box (27) are opposite to each other at the side wall of the filter box (24), and the outer wall of the filter box (24) near the descending end counterweight box (27) is provided with a third drain port (31), and the bottom of the third drain port (31) is fixedly connected with a water retaining bar (30) The side wall of the descending end counterweight box (27) is provided with a first water inlet (36), the bottom of the descending end counterweight box (27) is provided with a fifth drain outlet (37), the side wall of the descending end counterweight box (27) is provided with a fourth drain outlet (33), the position of the fourth drain outlet (33) is opposite to the position of the first water inlet (36), the first water inlet (36) and the third drain outlet (31) are overlapped, and the bottom of the ascending end counterweight box (23) away from the filter box (24) is provided with a second water inlet (38).

6. The water-driven automatic flip water filter device according to claim 1, characterized in that: The flushing device comprises a water storage column (22), the top of the water storage column (22) is fixedly connected to a transmission shaft (39), the input end of the water storage column (22) is fixedly provided with one end of a water delivery hose (40), the output end of the water storage column (22) is provided with a second water spray port (21), and the bottom of the water storage column (22) is rotatably connected to the top of the mounting groove (28).

7. The water-driven automatic flipping water filter device according to claim 6, characterized in that: The hydraulic drive device comprises a water storage box (13), the top of the water storage box (13) is provided with a first input end and a second input end, the first input end is fixedly provided with a second water pipe (8), the second input end is fixedly provided with one end of a water distribution pipe (19), the other end of the water distribution pipe (19) is connected to the side wall of the second water pipe (8), the end of the second water pipe (8) away from the water storage box (13) is provided with a second opening and closing valve (59) through a reducing joint (7), the interior of the water storage box (13) is provided with a sixth drain port (43) and an installation valve. The sixth drain port (43) is fixedly provided with an end of a water hose (40) away from the water column (22), the transmission shaft (39) passes through the interior of the mounting hole (48), a rotating wheel (42) is provided inside the water storage box (13), the outer wall of the rotating wheel (42) is fixedly connected with a blade (41) and a first paddle (46), the bottom of the rotating wheel (42) is fixedly connected to the end of the transmission shaft (39) away from the water column (22), the inner wall of the water storage box (13) is fixedly connected with a connecting block (15) and a first water baffle (46), and the outer wall of the rotating wheel (42) is fixedly connected with a connecting block (15) and a first water baffle (46). 4), a third water baffle (47) is fixedly connected to the side of the connecting block (15) away from the side wall of the water storage box (13), the third water baffle (47) and the first water baffle (44) and the connecting block (15) can form a first water storage chamber and a second water storage chamber, the first input end is communicated with the first water storage chamber, the second input end is communicated with the second water storage chamber, two gaps are left between the two sides of the third water baffle (47) and the first water baffle (44), and a second water baffle (45) is provided on the side of the third water baffle (47) away from the connecting block (15), The second water baffle (45) can block a gap, a slider (52) is fixedly connected to the side of the second water baffle (45) close to the third water baffle (47), a second paddle (51) is fixedly connected to the side of the second water baffle (45) away from the slider (52), a second slide groove (50) is provided on the side of the third water baffle (47) away from the connecting block (15), the slider (52) can slide inside the second slide groove (50), and a limiting strip (49) is provided on the side of the first water baffle (44) close to the second water baffle (45).

8. The water-driven automatic flip water filter device according to claim 1, characterized in that: A guide plate (53) is provided inside the box (2), and the end of the guide plate (53) is fixedly connected to a first connecting plate (34), and the first connecting plate (34) is fixedly connected to an anti-tilt piece (55) on a side away from the guide plate (53), and the outer wall of the guide plate (53) is fixedly connected to a second connecting plate (35). The side wall of the box (2) is provided with a first slideway (16) and a second slideway (54), and the first connecting plate (34) is slidably connected to the inside of the second slideway (54), and the second connecting plate (35) is slidably connected to the inner wall of the first slideway (16). The anti-tilt piece (55) is located on the outer wall of the box (2). The second connecting plate (35) is fixedly connected to one end away from the guide plate (53) with a second supporting plate (57), a first supporting plate (56) is provided in the middle of the second supporting plate (57), and a third supporting plate (58) is provided at the end of the second supporting plate (57). A rotating plate (32) is provided at the bottom of the guide plate (53), and the cross-section of the rotating plate (32) is elliptical. One end of the rotating plate (32) is fixedly connected to the outer wall of the rotating shaft (18). The second supporting plate (57) can support the adjusting component of the first opening and closing valve (6), and the third supporting plate (58) can support the adjusting component of the second opening and closing valve (59).

9. A method for using a water-driven automatic flip water filter device is applied to a water-driven automatic flip water filter device according to any one of claims 1 to 8, characterized in that The following steps are involved: The water source to be filtered conveys sewage through the first opening and closing valve (6) into the interior of the first water delivery pipe (10); The sewage is applied to the surface of the filter box (24) through the first water spray port (12), and then filtered by the filter box (24), and the clean water falls into the bottom of the box body (2) and is discharged through the first drain port (3); When the filter box (24) is clogged by impurities in the sewage, the water level inside the filter box (24) rises, and then the water source enters the interior of the descending end counterweight box (27) through the third drain port (31); At the same time, the weight of the descending end counterweight box (27) is greater than that of the ascending end counterweight box (23), thereby driving the filter box (24) to flip; At this time, the guide plate (53) will be driven to rise by the rotating plate (32), and then the first opening and closing valve (6) will be controlled to close and the second opening and closing valve (59) will be controlled to open by the second supporting plate (57) and the third supporting plate (58); The flushing device will spray water to flush the impurities on the surface of the filter box (24) to the side of the partition (26) away from the installation groove (28), and then discharge them through the second drain port (4); At the same time, the water source inside the descending end counterweight box (27) is discharged through the fourth drain port (33), and part of the water source of the flushing device enters the ascending end counterweight box (23) through the second water inlet (38); When the weight of the ascending end counterweight box (23) is greater than the weight of the descending end counterweight box (27), the filter box (24) will be driven to flip back to the horizontal position, and then the rotating plate (32) will rotate back to its original position, thereby causing the guide plate (53) to drive the second support plate (57) and the third support plate (58) to descend. Due to gravity, the first opening and closing valve (6) will be opened and the second opening and closing valve (59) will be closed, and the filtering work will continue.