Solar charging type energy-saving water purifier

By introducing agitated drug addition components and self-discharge filter components into the water purifier, the problem that existing water purifiers cannot be automatically cleaned up precipitates during the liquid discharge process is solved, efficient mixing and convenient discharge are achieved, and water purification efficiency and cleaning convenience are improved.

CN119977113AInactive Publication Date: 2025-05-13SHENZHEN CHANGDEXIN PLASTIC MOULD CO LTD

Patent Information

Application Number
CN202510366692.X
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-26
Publication Date
2025-05-13
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

The existing water purification device cannot automatically clean the precipitates on the filter screen during the purified liquid discharge process, resulting in the filter holes being easily blocked, reducing the liquid discharge efficiency and increasing the difficulty of cleaning.

Method used

A solar-energy rechargeable energy-saving water purifier is designed, including agitating drug-adding assembly and self-discharge filter assembly. The stirred dosing assembly realizes quantitative dosing and efficient mixing through an annular drug storage box and a control rod, and the self-discharge filter assembly automatically discharges precipitates and cleanses the filter plate through an electric push rod and a movable control seat.

Benefits of technology

It realizes efficient mixing and convenient discharge of precipitates during drug dosing and purification, avoids clogging of filter holes, improves liquid discharge efficiency, and simplifies the cleaning process of the device.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of water purifiers, in particular to a solar charging type energy-saving water purifier which comprises a water purification barrel, a stirring type dosing assembly is arranged in the water purification barrel, a self-impurity-discharging filtering assembly is arranged outside the water purification barrel, and the self-impurity-discharging filtering assembly comprises a fixed shell fixedly connected to the bottom of one side of the water purification barrel and communicated with the water purification barrel. A rotating seat is rotationally mounted in the fixed shell; according to the invention, intermittent dosing is realized through the stirring type dosing assembly, meanwhile, efficient mixing treatment is synchronously carried out, sediment in the water purification cylinder is completely discharged in an auxiliary manner during liquid discharging, then, automatic anti-blocking efficient filtering treatment is realized through the self-impurity-discharging filtering assembly, efficient liquid discharging is ensured, and meanwhile, through rotation of a hollow prism after filtering, the filtering effect is greatly improved. Filtered sediments can be quickly discharged, so that the convenience in cleaning after the water purifier is used is improved.
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Description

Technical Field

[0001] The present invention relates to the technical field of water purifiers, and in particular to a solar-chargeable energy-saving water purifier. Background Art

[0002] Water is an indispensable resource in daily life, and its cleanliness is directly related to people's health. In some areas with poor water quality, although tap water will be initially disinfected before being introduced into households, it is still possible for the tap water to be contaminated during the transportation process. Therefore, it is particularly important to use a water purifier to further treat the tap water.

[0003] For example, in the prior art, there is an energy-saving water purification device using new energy technology with publication number CN115215400A. Although it can achieve multi-stage water purification through the cooperation of a deodorizing mechanism, a dosing mechanism and a filtering mechanism, it is unable to autonomously clean the sediment on the filter screen during the drainage process after purification, which causes some filter holes on the filter screen to be easily clogged during the drainage process, thereby reducing the drainage efficiency. After the drainage, it is difficult to quickly and conveniently discharge the sediment in the water bucket and the fifth hollow cylinder, which greatly increases the difficulty of cleaning the device after use. Summary of the invention

[0004] The object of the present invention is to provide a solar-powered energy-saving water purifier to solve the above-mentioned technical defects.

[0005] The object of the present invention can be achieved by the following technical scheme: a solar-powered rechargeable energy-saving water purifier, comprising a water purification cylinder, a stirring-type dosing assembly is arranged inside the water purification cylinder, and a self-draining filter assembly is arranged outside the water purification cylinder, the stirring-type dosing assembly comprises an annular medicine storage box rotatably mounted on the top of the water purification cylinder, and a plurality of medicine outlet pipes are fixedly connected at the bottom of the annular medicine storage box, and a control rod cooperating with the water purification cylinder is slidably mounted inside the medicine outlet pipe;

[0006] The self-draining impurity filtering assembly includes a fixed shell fixedly connected to the bottom of one side of the water purification cylinder and communicated with the same, a rotating seat is rotatably installed in the fixed shell, and a liquid inlet penetrating one side of the rotating seat is provided inside the rotating seat, one side of the rotating seat is connected to a filter cartridge through a drainage pipe, a movable control seat is slidably connected inside the filter cartridge, a filter plate is installed on the top of the movable control seat, and an elastic scraper plate is provided on one side of the filter plate.

[0007] Preferably, the top of the water purification cylinder is fixedly connected with a medicine inlet pipe communicating with the annular medicine storage box, the top of one side of the water purification cylinder is fixedly connected with a liquid inlet pipe, and a liquid outlet is penetrated through the movable control seat.

[0008] Preferably, a rotating shaft is rotatably installed inside the water purification cylinder, and a motor for driving the rotating shaft to rotate is installed on the bottom bolt, a bracket is fixedly connected between the rotating shaft and the corresponding medicine outlet pipe, and a scraper is hinged at the bottom of the control rod.

[0009] Preferably, the bottom of the water purification cylinder is an inclined structure, a medicine outlet is provided on the annular outer wall of the medicine outlet pipe, an ear plate is fixedly connected to the inner wall of the annular medicine storage box, and a spring is fixedly connected between the ear plate and the corresponding control rod.

[0010] Preferably, a support plate is bolted to the bottom of one side of the filter cartridge, an electric push rod is installed on the support plate, and the telescopic rod of the electric push rod is rotatably connected to the movable control seat, and a drainage pipe is fixedly connected to the top of one side of the filter cartridge close to the water purification cylinder.

[0011] Preferably, the top of the filter cartridge is fixedly connected with an L-shaped baffle that cooperates with the liquid discharge pipe and the debris discharge pipe, the two sides of the movable control seat are symmetrically fixedly connected with guide pins, and the inner wall of the filter cartridge is provided with an L-shaped guide groove that is slidably connected with the corresponding guide pin.

[0012] Preferably, a rotating sleeve is rotatably mounted on the movable control seat, and an impeller and an elastic scraper plate are fixedly mounted on the rotating sleeve.

[0013] Preferably, the free end of the rotating sleeve is slidably connected to a hollow prism rotatably connected to the filter cartridge, and a piston sleeve is fixedly mounted on the hollow prism and slides with the inner wall of the rotating sleeve, the end of the hollow prism passes through the outside of the filter cartridge and is installed with a rotating joint, and a torsion wheel is fixedly mounted on the hollow prism.

[0014] Preferably, the rotating seat is rotatably installed inside the fixed shell through a rotating shaft, and the end of the rotating shaft on one side is fixedly connected to a gear. A hydraulic push rod is fixedly connected to the fixed shell, and the piston rod end of the hydraulic push rod is fixedly connected to a toothed plate meshing with the gear. The hydraulic push rod is connected to the rotating joint through a connecting pipe.

[0015] The beneficial effects of the present invention are as follows:

[0016] (1) The present invention is that when the stirring dosing component is used for dosing and mixing, the stirring shaft drives the drug outlet pipe and the control rod to rotate, combined with the inclined structure at the bottom of the water purification cylinder, it can not only synchronously cause the control rod to move back and forth in the drug outlet pipe, intermittently open the drug outlet, and achieve multiple small amounts of intermittent quantitative dosing treatment, providing the necessary prerequisite for rapid mixing, but also can simultaneously and efficiently mix the flocculant and water while adding the drug. In addition, when discharging the liquid, combined with the scraper hinged on the control rod, it can assist in the discharge of sediment, thereby realizing the convenient discharge of impurities in the water purification cylinder;

[0017] (2) The present invention also uses the electric push rod to carry the movable control seat to move downward when the self-draining filter assembly is draining, first blocking the drainage pipe to prevent water from being discharged through the drainage pipe during drainage, and then prompting the drainage pipe to open and carry the filter cartridge to deflect to synchronously open the liquid inlet to assist in draining all the precipitated water in the water purification cylinder, and prompting the impeller to carry the elastic scraper to rotate, and synchronously clean the filter plate during filtration, thereby avoiding clogging of the filter holes and reducing the drainage efficiency;

[0018] After the drainage is completed, the drainage pipe is automatically blocked and the debris discharge pipe is opened through the reset movement of the movable control seat, and the filtered sediment is discharged through the debris discharge pipe through the inclined filter plate. During the discharge, the elastic scraper plate is carried by rotating the hollow prism to assist the rapid discharge of the sediment, thereby achieving rapid cleaning and convenient discharge of the sediment. In addition, the liquid inlet is blocked at the same time to avoid the problem that some water enters the drainage pipe during the purification process, which makes it difficult to fully mix with the flocculant and reduces the purification effect. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] The present invention will be further described below in conjunction with the accompanying drawings;

[0020] Figure 1 It is a schematic diagram of the structure of the present invention;

[0021] Figure 2 It is a schematic diagram of the internal structure of the water purification cylinder of the present invention;

[0022] Figure 3 It is a schematic diagram of the structure of the stirring type dosing assembly of the present invention;

[0023] Figure 4 is a schematic diagram of the structure of the self-exhaust filter assembly of the present invention;

[0024] Figure 5 It is a schematic diagram of the structure of the filter cartridge of the present invention;

[0025] Figure 6 It is a schematic diagram of the cooperation between the movable control seat and the impeller of the present invention;

[0026] Figure 7 It is a structural schematic diagram of the movable control seat of the present invention;

[0027] Figure 8 It is a structural schematic diagram of the rotating sleeve of the present invention.

[0028] Legend:

[0029] 1. Water purification cylinder; 11. Medicine inlet pipe; 12. Liquid inlet pipe;

[0030] 2. Stirring dosing assembly; 21. Ring-shaped medicine storage box; 22. Medicine outlet pipe; 23. Control lever; 24. Rotating shaft; 25. Motor; 26. Scraper; 27. Medicine outlet; 28. Spring;

[0031] 3. Self-draining debris filter assembly; 31. Fixed shell; 32. Rotating seat; 33. Liquid inlet; 34. Drain pipe; 35. Filter cartridge; 36. Movable control seat; 37. Filter plate; 38. Elastic scraper plate; 39. Electric push rod; 310. Drain pipe; 311. L-shaped baffle; 312. Guide pin; 313. L-shaped guide groove; 314. Rotating sleeve; 315. Impeller; 316. Hollow prism; 317. Gear; 318. Hydraulic push rod; 319. Tooth plate; 320. Connecting pipe. DETAILED DESCRIPTION

[0032] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.

[0033] Example 1: Please refer to Figure 1-Figure 3 As shown, the problem that it is difficult to effectively discharge the sediment in the water purification cylinder in the prior art can be solved by the following solution;

[0034] In the present embodiment, a solar-powered rechargeable energy-saving water purifier comprises a water purification cylinder 1, wherein a stirring-type dosing assembly 2 is arranged inside the water purification cylinder 1, and a self-draining filter assembly 3 is arranged outside the water purification cylinder 1, wherein the stirring-type dosing assembly 2 comprises an annular medicine storage box 21 rotatably mounted on the top of the water purification cylinder 1, wherein the top of the annular medicine storage box 21 is an open structure, so as to facilitate the addition of flocculants therein, and the bottom of the annular medicine storage box 21 is fixedly connected with a plurality of medicine outlet pipes 22, wherein a control rod 23 cooperating with the water purification cylinder 1 is slidably mounted inside the medicine outlet pipe 22, and the opening of the medicine outlet pipe 22 is controlled by the position of the control rod 23 in the medicine outlet pipe 22 to discharge the medicine liquid;

[0035] The self-draining filter assembly 3 includes a fixed shell 31 fixedly connected to the bottom of one side of the water purification cylinder 1 and communicated with it. A rotating seat 32 is rotatably installed in the fixed shell 31, and a liquid inlet 33 penetrating one side of the rotating seat 32 is opened inside the rotating seat 32. When the rotating seat 32 deflects upward, the liquid inlet 33 on the rotating seat 32 is blocked to prevent part of the water from entering the drain pipe 34 during the purification process, which is difficult to fully mix with the flocculant and reduce the purification effect. When the rotating seat 32 deflects downward, the liquid inlet 33 is communicated with the inside of the water purification cylinder 1, and the drain port of the drain pipe 34 is tilted downward to assist in the full discharge of sediment-containing water;

[0036] One side of the rotating seat 32 is connected to a filter cartridge 35 through a drain pipe 34, and a slot for the drain pipe 34 to pass through is provided on the fixed shell 31. The interior of the filter cartridge 35 is slidably connected to a movable control seat 36, and a filter plate 37 is installed on the top of the movable control seat 36, and an elastic scraper plate 38 is provided on one side of the filter plate 37.

[0037] The top of the water purification cylinder 1 is fixedly connected with a medicine inlet pipe 11 which is communicated with the annular medicine storage box 21. The top of one side of the water purification cylinder 1 is fixedly connected with a liquid inlet pipe 12. Water is added to the inside of the water purification cylinder 1 through the liquid inlet pipe 12, and a flocculant of a corresponding proportion is selected according to the amount of water added and injected into the annular medicine storage box 21 through the medicine inlet pipe 11. A liquid outlet is opened through the movable control seat 36 for discharging the filtered water.

[0038] A rotating shaft 24 is rotatably installed inside the water purification cylinder 1, and a motor 25 for driving the rotating shaft 24 to rotate is installed on the bottom bolt. A bracket is fixedly connected between the rotating shaft 24 and the corresponding medicine outlet pipe 22. The motor 25 drives the rotating shaft 24 to rotate, and the rotating shaft 24 drives the medicine outlet pipe 22 and the control rod 23 inside it to rotate through the bracket, thereby realizing the rapid mixing treatment of the flocculant added to the water. A scraper 26 is hinged at the bottom of the control rod 23, which is used to assist in the discharge of sediment in the water purification cylinder 1 during the drainage process, thereby realizing convenient cleaning of the sediment in the water purification cylinder 1.

[0039] The bottom of the water purification cylinder 1 is an inclined structure, which is used to assist in the complete discharge of the sediment water in the water purification cylinder 1. A medicine outlet 27 is provided on the annular outer wall of the medicine outlet pipe 22. When the control rod 23 rotates circumferentially, combined with the inclined structure of the bottom of the water purification cylinder 1, the control rod 23 is prompted to reciprocate and rise and fall. An ear plate is fixedly connected to the inner side wall of the annular medicine storage box 21, and a spring 28 is fixedly connected between the ear plate and the corresponding control rod 23;

[0040] When the scraper 26 moves from the highest point to the lowest point, the control rod 23 under the compression of the corresponding spring 28 rotates circumferentially and moves downward, causing the top of the control rod 23 to be lower than the medicine outlet 27 on the medicine outlet pipe 22, and the flocculant in the annular medicine storage box 21 is discharged through the opened medicine outlet 27 and mixed with water;

[0041] When the scraper 26 moves from the lowest point to the highest point, the control rod 23 rotates circumferentially while rising and compressing the spring 28, causing the top of the control rod 23 to be higher than the drug outlet 27 on the drug outlet pipe 22, closing the drug outlet 27, and discharging the drug intermittently. Through the rotation of the bracket, the drug outlet pipe 22, the control rod 23 and the scraper 26, the flocculant and water are synchronously and efficiently mixed.

[0042] Example 2: Please refer to Figure 1 , Figure 2 and Figure 4-Figure 8 As shown, the following solutions can be used to solve the problem that it is difficult to perform autonomous anti-blocking cleaning during drainage and it is inconvenient to discharge the sediment conveniently after filtration;

[0043] In this embodiment, the self-draining filter assembly 3 includes a fixed shell 31 fixedly connected to the bottom of one side of the water purification cylinder 1 and communicated with the fixed shell 31, a rotating seat 32 is rotatably installed in the fixed shell 31, and the interior of the rotating seat 32 is provided with a liquid inlet 33 running through one side thereof, one side of the rotating seat 32 is connected to a filter cartridge 35 through a liquid discharge pipe 34, the interior of the filter cartridge 35 is slidably connected with a movable control seat 36, and a filter plate 37 is installed on the top of the movable control seat 36, and an elastic scraper plate 38 is provided on one side of the filter plate 37. When filtering the drainage, the filter plate 37 can be cleaned synchronously during filtering by rotating the elastic scraper plate 38, thereby avoiding the problem of clogging of the filter holes and reducing the drainage efficiency.

[0044] A support plate is bolted to the bottom of one side of the filter cartridge 35, and an electric push rod 39 is installed on the support plate, and the telescopic rod of the electric push rod 39 is rotatably connected to the movable control seat 36. When water is discharged, the movable control seat 36 is driven by the electric push rod 39 to realize a downward movement in the filter cartridge 35. A drainage pipe 310 is fixedly connected to the top of one side of the filter cartridge 35 close to the water purification cylinder 1, which is used to cause the filtered sediment to be discharged through the drainage pipe 310 through the inclined filter plate 37 after the filter cartridge 35 is deflected upward.

[0045] The top of the filter cartridge 35 is fixedly connected with an L-shaped baffle plate 311 that cooperates with the drain pipe 34 and the impurity discharge pipe 310. The two sides of the movable control seat 36 are symmetrically fixedly connected with guide pins 312. The inner wall of the filter cartridge 35 is provided with an L-shaped guide groove 313 that is slidably connected with the corresponding guide pin 312. The electric push rod 39 drives the movable control seat 36 to move downward in the filter cartridge 35, and the impurity discharge pipe 310 is blocked by the L-shaped baffle plate 311. The L-shaped baffle plate 311 continuously blocks the discharge port of the drain pipe 34. In combination with the guide pin 312 sliding in the vertical section of the corresponding L-shaped guide groove 313, the rotation of the movable control seat 36 is restricted, ensuring that the L-shaped baffle plate 311 blocks the discharge port of the impurity discharge pipe 310 and the drain pipe 34.

[0046] Through the continuous downward movement of the movable control seat 36, the guide pin 312 enters the oblique section from the vertical section of the L-shaped guide groove 313, causing the movable control seat 36 to deflect. During the deflection process, the L-shaped baffle 311 maintains the blockage of the drainage pipe 310 and opens the liquid outlet of the drainage pipe 34, and the water containing sediment enters the filter cartridge 35 for filtration treatment.

[0047] A rotating sleeve 314 is rotatably mounted on the movable control seat 36, and an impeller 315 and an elastic scraper plate 38 are fixedly mounted on the rotating sleeve 314. When the filter plate 37 is lower than the liquid outlet of the drain pipe 34, the water discharged from the drain pipe 34 drives the impeller 315 to rotate, and the impeller 315 drives the rotating sleeve 314 to rotate. The rotating sleeve 314 carries the elastic scraper plate 38 to rotate, and the sediment accumulated on the filter plate 37 is scraped off to ensure efficient filtration of the filter plate 37. The filtered water is discharged through the liquid outlet. The elastic setting of the elastic scraper plate 38 prevents the L-shaped baffle 311 from causing rotation interference therewith.

[0048] The free end of the rotating sleeve 314 is slidably connected to a hollow prism 316 rotatably connected to the filter cartridge 35, and a piston sleeve is fixedly installed on the hollow prism 316 to slide with the inner wall of the rotating sleeve 314. The end of the hollow prism 316 penetrates the outer side of the filter cartridge 35 and is installed with a rotating joint. With the movement of the movable control seat 36, the hollow prism 316 carries the piston sleeve to move in the rotating sleeve 314, so that a negative pressure environment is formed inside the rotating sleeve 314.

[0049] A twist wheel is fixedly installed on the hollow prism 316, and the movable control seat 36 rises and resets. During this process, the L-shaped baffle 311 is first blocked against the drainage port of the drainage pipe 34, so that the filter plate 37 is at the height of the drainage port of the drainage pipe 34 to prevent the sediment from entering the drainage pipe 34, which leads to the problem that all sediment cannot be discharged. The L-shaped baffle 311 is then opened to the drainage pipe 310, and the filter cartridge 35 is flipped upward. The inclined filter plate 37 causes the filtered sediment to be discharged through the drainage pipe 310. When discharging sediment, the hollow prism 316 is driven to rotate with the rotating sleeve 314 by rotating the twist wheel, and the discharge of sediment is assisted by the elastic scraper plate 38.

[0050] The rotating seat 32 is rotatably installed inside the fixed housing 31 via a rotating shaft, and a gear 317 is fixedly connected to the end of one side of the rotating shaft. A hydraulic push rod 318 is fixedly connected to the fixed housing 31, and a toothed plate 319 meshing with the gear 317 is fixedly connected to the piston rod end of the hydraulic push rod 318. The hydraulic push rod 318 is connected to the rotary joint via a connecting pipe 320. When one of the hydraulic push rod 318 or the hollow prism 316 is in a contracted state, the hydraulic push rod 318, the connecting pipe 320 and the rotating sleeve 314 are filled with hydraulic oil.

[0051] The movable control seat 36 moves downward, causing the hollow prism 316 to carry the piston sleeve to move in the rotating sleeve 314, resulting in a negative pressure environment inside the rotating sleeve 314, and the hydraulic oil in the hydraulic push rod 318 is extracted through the hollow prism 316, the rotary joint and the connecting pipe 320, causing the piston rod in the hydraulic push rod 318 to move downward with the gear plate 319, and through the meshing of the gear plate 319 and the gear 317, the rotating seat 32 is driven to rotate downward, causing the liquid inlet 33 on the rotating seat 32 to communicate with the inside of the water purification cylinder 1;

[0052] When the movable control seat 36 moves upward, the hollow prism 316 returns to its original position, pushing the hydraulic oil in the rotating sleeve 314 to be injected into the hydraulic push rod 318 through the hollow prism 316, the rotating joint and the connecting pipe 320, and combined with the toothed plate 319 and the gear 317, so as to cause the rotating seat 32 to rotate upward.

[0053] Example 3: Please refer to Figure 1-Figure 8 As shown, the present invention also provides a method for using a solar-powered charging energy-saving water purifier, comprising the following steps:

[0054] Step 1: Add water into the water purification cylinder 1 through the liquid inlet pipe 12, and select a corresponding amount of flocculant according to the amount of water added and inject it into the annular medicine storage box 21 through the medicine inlet pipe 11, the motor 25 drives the rotating shaft 24 to rotate, and the rotating shaft 24 drives the medicine outlet pipe 22 and the control rod 23 inside it to rotate through the bracket, and during the rotation process, the inclined structure of the bottom of the water purification cylinder 1 and the compression of the spring 28 cause the control rod 23 to reciprocate and move up and down;

[0055] Step 2: When the scraper 26 at the bottom of the control rod 23 moves from the highest point to the lowest point, the control rod 23 rotates circumferentially and moves downward at the same time, causing the top of the control rod 23 to be lower than the drug outlet 27 on the drug outlet pipe 22, and the flocculant in the annular drug storage box 21 is discharged through the opened drug outlet 27 and mixed with water. When the scraper 26 moves from the lowest point to the highest point, the control rod 23 rotates circumferentially and moves upward at the same time, causing the top of the control rod 23 to be higher than the drug outlet 27 on the drug outlet pipe 22, and the drug outlet 27 is closed. While discharging the drug intermittently, the flocculant and water are efficiently mixed through the bracket, the drug outlet pipe 22, the control rod 23 and the scraper 26;

[0056] Step 3: When draining water, the electric push rod 39 drives the movable control seat 36 to move downward in the filter cartridge 35, and the impurity discharge pipe 310 is blocked by the L-shaped baffle 311, and the L-shaped baffle 311 continues to block the discharge port of the discharge pipe 34, and the guide pin 312 slides in the vertical section of the corresponding L-shaped guide groove 313 to limit the rotation of the movable control seat 36, ensuring that the L-shaped baffle 311 blocks the impurity discharge pipe 310 and the discharge port of the discharge pipe 34;

[0057] Step 4: With the movement of the movable control seat 36, the hollow prism 316 is prompted to carry the piston sleeve to move in the rotating sleeve 314, so that a negative pressure environment is formed inside the rotating sleeve 314, and the hydraulic oil in the hydraulic push rod 318 is extracted through the hollow prism 316, the rotary joint and the connecting pipe 320, so that the piston rod in the hydraulic push rod 318 carries the gear plate 319 to move downward, and the gear plate 319 is meshed with the gear 317 to drive the rotating seat 32 to rotate, so that the liquid inlet 33 on the rotating seat 32 is connected with the inside of the water purification cylinder 1, and the drain pipe 34 is in a tilted state with the liquid port facing downward, and the water containing sediment in the water purification cylinder 1 enters the drain pipe 34;

[0058] Step 5: Through the continuous downward movement of the movable control seat 36, the guide pin 312 enters the oblique section from the vertical section of the L-shaped guide groove 313, causing the movable control seat 36 to deflect. During the deflection process, the L-shaped baffle 311 keeps blocking the drainage pipe 310 and opens the liquid outlet of the drainage pipe 34. The water containing sediment enters the filter cartridge 35 until the filter plate 37 is lower than the liquid outlet of the drainage pipe 34. The water discharged from the drainage pipe 34 drives the impeller 315 to rotate, and the impeller 315 drives the rotating sleeve 314 to rotate. The rotating sleeve 314 carries the elastic scraping plate 38 to rotate, and the sediment accumulated on the filter plate 37 is scraped off to ensure the efficient filtration of the filter plate 37. The filtered water is discharged through the liquid outlet.

[0059] Step 6: After the filtration is completed, the electric push rod 39 drives the movable control seat 36 to rise and reset. During this process, the L-shaped baffle 311 is first blocked against the drainage port of the drainage pipe 34, so that the filter plate 37 is at the height of the drainage port of the drainage pipe 34 to prevent sediment from entering the drainage pipe 34, and the filter cartridge 35 is simultaneously flipped upward to block the liquid inlet 33 on the rotating seat 32, and then the L-shaped baffle 311 is driven to open the drainage pipe 310. The inclined filter plate 37 drives the filtered sediment to be discharged through the drainage pipe 310. When discharging sediment, the hollow prism 316 is driven to carry the rotating sleeve 314 to rotate by rotating the twist wheel, and the discharge of sediment is assisted by the elastic scraper plate 38.

[0060] The above description is only a preferred specific implementation manner of the present invention, but the protection scope of the present invention is not limited thereto. Any technician familiar with the technical field can make equivalent replacements or changes according to the technical scheme and inventive concept of the present invention within the technical scope disclosed by the present invention, which should be covered by the protection scope of the present invention.

Claims

1. A solar-powered energy-saving water purifier, comprising a water purifier cylinder (1), characterized in that: The water purification cylinder (1) is provided with a stirring-type dosing assembly (2) inside and a self-exhausting filter assembly (3) outside, the stirring-type dosing assembly (2) comprising an annular medicine storage box (21) rotatably mounted on the top of the water purification cylinder (1), and the bottom of the annular medicine storage box (21) is fixedly connected with a plurality of medicine outlet pipes (22), and a control rod (23) cooperating with the water purification cylinder (1) is slidably mounted inside the medicine outlet pipe (22); The self-exhausting filter assembly (3) comprises a fixed shell (31) fixedly connected to the bottom of one side of the water purification cylinder (1) and communicated therewith, a rotating seat (32) is rotatably mounted in the fixed shell (31), and a liquid inlet (33) is provided inside the rotating seat (32) and runs through one side thereof, one side of the rotating seat (32) is connected to a filter cartridge (35) via a liquid discharge pipe (34), the inside of the filter cartridge (35) is slidably connected to a movable control seat (36), and a filter plate (37) is mounted on the top of the movable control seat (36), and an elastic scraping plate (38) is provided on one side of the filter plate (37).

2. A solar-powered energy-saving water purifier according to claim 1, characterized in that: The top of the water purification cylinder (1) is fixedly connected to a medicine inlet pipe (11) communicating with the annular medicine storage box (21), the top of one side of the water purification cylinder (1) is fixedly connected to a liquid inlet pipe (12), and a liquid outlet is provided through the movable control seat (36).

3. A solar-powered energy-saving water purifier according to claim 1, characterized in that: A rotating shaft (24) is rotatably mounted inside the water purification cylinder (1), and a motor (25) for driving the rotating shaft (24) to rotate is bolted to the bottom. A bracket is fixedly connected between the rotating shaft (24) and the corresponding medicine outlet tube (22), and a scraper (26) is hingedly mounted at the bottom of the control rod (23).

4. A solar-powered energy-saving water purifier according to claim 3, characterized in that: The bottom of the water purification cylinder (1) is of an inclined structure, a medicine outlet (27) is provided on the annular outer wall of the medicine outlet pipe (22), an ear plate is fixedly connected to the inner wall of the annular medicine storage box (21), and a spring (28) is fixedly connected between the ear plate and the corresponding control rod (23).

5. A solar-powered energy-saving water purifier according to claim 1, characterized in that: A support plate is bolted to the bottom of one side of the filter cartridge (35), an electric push rod (39) is installed on the support plate, and the telescopic rod of the electric push rod (39) is rotatably connected to the movable control seat (36), and a drainage pipe (310) is fixedly connected to the top of one side of the filter cartridge (35) close to the water purification cylinder (1).

6. A solar-powered energy-saving water purifier according to claim 5, characterized in that: An L-shaped baffle (311) that cooperates with a liquid discharge pipe (34) and a debris discharge pipe (310) is fixedly connected to the top of the filter cartridge (35), guide pins (312) are symmetrically fixedly connected to both sides of the movable control seat (36), and an L-shaped guide groove (313) that is slidably connected to the corresponding guide pin (312) is provided on the inner wall of the filter cartridge (35).

7. A solar-powered energy-saving water purifier according to claim 1, characterized in that: A rotating sleeve (314) is rotatably mounted on the movable control seat (36), and an impeller (315) and an elastic scraper plate (38) are fixedly mounted on the rotating sleeve (314).

8. A solar-powered energy-saving water purifier according to claim 7, characterized in that: The free end of the rotating sleeve (314) is slidably connected to a hollow prism (316) rotatably connected to the filter cartridge (35), and a piston sleeve is fixedly mounted on the hollow prism (316) and slides with the inner wall of the rotating sleeve (314). The end of the hollow prism (316) passes through the outside of the filter cartridge (35) and is installed with a rotating joint, and a torsion wheel is fixedly mounted on the hollow prism (316).

9. A solar-powered energy-saving water purifier according to claim 8, characterized in that: The rotating seat (32) is rotatably mounted inside the fixed housing (31) via a rotating shaft, and a gear (317) is fixedly connected to the end of the rotating shaft on one side. A hydraulic push rod (318) is fixedly connected to the fixed housing (31), and a gear plate (319) meshing with the gear (317) is fixedly connected to the piston rod end of the hydraulic push rod (318). The hydraulic push rod (318) is connected to the rotating joint via a connecting pipe (320).

Citation Information

Patent Citations

  • Energy-saving water purifying device applying new energy technology

    CN115215400A

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