Intelligent purification water-saving water storage tank for goat breeding and implementation method of intelligent purification water-saving water storage tank

The smart filtration system in sheep farming troughs addresses water contamination by employing dual-stage filtration and automatic cleaning, ensuring clean water supply and reducing manual labor, thereby improving animal health and farming efficiency.

CN120304312AInactive Publication Date: 2025-07-15NINGXIA KEMISH KID BREEDING CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202510384148.8
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-28
Publication Date
2025-07-15
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

During the use of existing goat farming water tanks, the water body is easily contaminated by impurities such as wool and sediment, leading to water source pollution, increasing the risk of animal poisoning and infectious diseases, and affecting animal health.

Method used

An intelligent purification and water-saving water storage tank is designed, which contains a large-particle filtering structure and a micro-particle filtering structure. The particles in the water are filtered through a rotating drum and micro-filter paper, and combined with an automated brush plate to clean the screen to achieve water quality purification and automated cleaning.

Benefits of technology

It effectively removes impurities in the water, improves the purity of water quality, ensures safe drinking water source for goats, reduces the need for manual cleaning, improves filtration efficiency and stable operation of the water tank.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN120304312A_ABST
    Figure CN120304312A_ABST
Patent Text Reader

Abstract

The invention relates to the technical field of livestock breeding, in particular to an intelligent purification water-saving water storage tank for goat breeding and an implementation method of the intelligent purification water-saving water storage tank. The drinking water filtering device comprises a water tank structure, drinking water is contained in the water tank structure, a large-particle filtering structure is arranged in the water tank structure, the drinking water flows from top to bottom and flows through the large-particle filtering structure, and the large-particle filtering structure blocks large-particle substances such as wool in the drinking water. A rotating particle filtering structure is arranged below the large particle filtering structure, drinking water filtered by the large particle filtering structure flows into the particle filtering structure, and the rotating particle filtering structure swings the drinking water to intercept particles in the drinking water in the particle filtering structure; and the filtered purified water is conveyed to the upper layer in the water tank structure. Large-particle substances such as wool in drinking water are blocked through the screen arranged on the upper side of the flow guide groove plate, so that the water quality can be kept clean.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The present invention relates to the technical field of livestock breeding, and specifically, to an intelligent purification and water-saving water storage tank for goat breeding and an implementation method thereof. Background Art

[0002] Livestock breeding refers to the physiological functions of animals such as livestock and poultry that have been artificially domesticated by humans, or wild animals such as deer, musk deer, foxes, minks, otters, and quails. Through artificial feeding and breeding, the plant energy such as forage and feed is converted into animal energy to obtain livestock products such as meat, eggs, milk, wool, cashmere, hides, silk, and medicinal materials. In the process of livestock breeding, a water storage tank is often used. In the past, there may be a situation where a large amount of water is poured in at one time for goats to drink for a long time. Due to a large amount of animal activities, the wool on the goats, as well as the sediment and feed in the breeding site, are easily brought into the water storage tank when the goats drink water. As a result, there are more microorganisms and bacteria in the water body, which easily leads to water pollution. Drinking polluted water will increase the risk of acute and chronic poisoning of animals, cause bacteria to develop drug resistance, and reduce the body's immunity. Especially when the water body is polluted by pathogenic microorganisms, it will cause the occurrence and spread of animal infectious diseases, seriously threatening the lives of animals. Summary of the Invention

[0003] The purpose of the present invention is to provide an intelligent purification and water-saving water storage tank for goat breeding and an implementation method thereof to solve the problems raised in the above background art.

[0004] To achieve the above purpose, one of the purposes of the present invention is to provide an intelligent purification and water-saving water storage tank for goat breeding, including a water tank structure. Drinking water is contained inside the water tank structure. A large-particle filtering structure is arranged inside the water tank structure. The drinking water flows from top to bottom and passes over the large-particle filtering structure. The large-particle filtering structure blocks large-particle substances such as wool in the drinking water. A rotating fine-particle filtering structure is arranged below the large-particle filtering structure. The drinking water filtered by the large-particle filtering structure flows into the fine-particle filtering structure. The rotating fine-particle filtering structure shakes the drinking water, intercepts the particles in the drinking water inside the fine-particle filtering structure, and conveys the filtered pure water to the upper layer inside the water tank structure. When the fine-particle filtering structure rotates, it drives the large-particle filtering structure to slide back and forth, scraping and collecting the wool adsorbed above the large-particle filtering structure.

[0005] As a further improvement of the technical solution, the water tank structure includes a main tank, and drinking water is contained inside the main tank. A partition is fixedly installed in the middle of the main tank. The partition shields the components below and blocks the goats. There are gaps between the partition and the two side walls of the main tank. The drinking water flows downward through the gaps. The large-particle filtering structure includes a diversion trough plate fixedly installed in the middle of the main tank. The drinking water flows to the upper part of the diversion trough plate through the gaps. A screen is installed above the diversion trough plate. The screen blocks large-particle substances such as wool in the drinking water. A connection port is opened on the bottom wall of the diversion trough plate. The drinking water filtered by the screen flows downward from the connection port.

[0006] As a further improvement of the technical solution, a protective cover is fixedly connected to one side of the main tank. A motor is fixedly installed inside the protective cover. A third gear is fixedly connected to the rotating shaft of the motor. The fine-particle filtering structure includes a rotating drum fixedly connected to the side of the third gear away from the motor. An outer barrel is sleeved outside the rotating drum. The outer barrel is fixedly installed on the bottom wall of the main tank. The rotating drum rotates inside the outer barrel. One end of the rotating drum away from the protective cover is fixedly connected to a water inlet pipe. The water inlet pipe communicates the diversion trough plate and the rotating drum. The top end of the water inlet pipe is fixed to the connection port of the middle pipe. An inlet water propeller is arranged inside the water inlet pipe. The inlet water propeller stirs the water flow and transports the drinking water from above the diversion trough plate to the inside of the rotating drum through the water inlet pipe. The rotating rotating drum swings the drinking water inside it. Micro filter paper is fixedly installed on the side wall of the rotating drum. The micro filter paper intercepts the particles in the drinking water. Under the action of centrifugal force, pure water passes through the micro filter paper and enters the pure water chamber arranged between the outer barrel and the rotating drum.

[0007] As a further improvement of the technical solution, a middle pipe is fixedly connected to the side wall of the outer barrel away from the water inlet pipe. An outlet pipe is fixedly connected above the middle pipe. The middle pipe communicates the pure water chamber and the outlet pipe. The top of the outlet pipe penetrates through the partition and is connected to the upper layer of the main tank. An outlet water propeller is arranged inside the middle pipe. The outlet water propeller stirs the pure water and transports the pure water from the pure water chamber to the upper layer of the main tank through the middle pipe and the outlet pipe.

[0008] As a further improvement of the technical solution, a first gear is meshed above the third gear. A second gear is meshed above the first gear. A reciprocating lead screw is fixedly connected to the side of the second gear away from the protective cover. A brush plate is sleeved on the reciprocating lead screw. The rotation of the reciprocating lead screw pushes the brush plate to slide back and forth along the axial direction of the reciprocating lead screw. A brush is fixedly installed on the lower side wall of the brush plate. The reciprocating sliding brush plate scrapes the screen above the diversion trough plate through the brush, removes the wool adsorbed on the screen, and collects the scraped wool through the brush.

[0009] As a further improvement of the technical solution, a sliding cylinder is sleeved outside the reciprocating lead screw. The sliding cylinder is fixedly installed on the brush plate. A crescent pin is rotatably hinged on the inner side wall of the sliding cylinder. The crescent pin is arranged in a shuttle shape. Two helical grooves with opposite helical directions are opened on the side wall of the reciprocating lead screw. Both ends of the two helical grooves are connected by transverse grooves. The crescent pin slides along the helical groove, driving the brush plate to slide axially along the reciprocating lead screw through the sliding cylinder. When the crescent pin passes through the transverse groove, the crescent pin is guided by the transverse groove to swing, so that the crescent pin slides along the other helical groove, driving the brush plate to slide axially in the reverse direction along the reciprocating lead screw.

[0010] As a further improvement of the technical solution, two sliding grooves are opened on the bottom wall of the partition plate. Two sliding blocks are arranged above the brush plate. The sliding blocks slide in the main groove to guide the sliding path of the brush plate, so that the brush plate can only slide axially along the reciprocating lead screw and cannot rotate around the axial direction of the reciprocating lead screw.

[0011] The second object of the present invention is to provide an implementation method for operating the intelligent purification and water-saving water storage tank for goat breeding including the above-mentioned one, including the following method steps:

[0012] S1. First, pour drinking water into the inside of the main tank. The inlet screw propeller arranged in the inlet pipe pushes the contaminated drinking water to flow downward through the gaps on both sides of the partition plate until it flows above the diversion trough plate.

[0013] S2. The screen installed on the upper side of the diversion trough plate blocks large particle substances such as wool in the drinking water. The preliminarily filtered drinking water flows from below the screen along the bottom wall of the diversion trough plate and flows into the inside of the drum through the inlet pipe in the connection port.

[0014] S3. The motor drives the drum to rotate through the rotating shaft. The drum swings the drinking water. Under the action of centrifugal force, the drinking water passes through the micro filter paper and is filtered into pure water and enters the pure water chamber between the outer barrel and the drum.

[0015] S4. The outlet screw propeller arranged in the intermediate pipe pushes the pure water to flow from the pure water chamber into the upper part of the partition plate. While the drum rotates, through the transmission of the third gear, the first gear and the second gear, the reciprocating lead screw is driven to rotate.

[0016] S5. The rotating reciprocating lead screw guides the crescent pin to slide back and forth axially along the reciprocating lead screw through the helical groove and the transverse groove, so that the brush plate slides back and forth axially along the reciprocating lead screw.

[0017] S6. The reciprocating sliding brush plate drives the brush installed on its lower side to slide back and forth. The reciprocating sliding brush scrapes and collects the wool adsorbed on the screen.

[0018] Compared with the prior art, the beneficial effects of the present invention are as follows:

[0019] 1. In the intelligent purification and water-saving water storage tank for goat breeding and its implementation method, the drinking water inside is swung by a rotating drum. A microfilter paper is fixedly installed on the side wall of the drum, and the microfilter paper intercepts the particles in the drinking water. Under the action of centrifugal force, the purified water passes through the microfilter paper and enters the purified water chamber arranged between the outer barrel and the drum. The microfilter paper effectively removes the tiny particles in the water, improving the purity of the water quality. The setting of the purified water chamber provides a storage space for the purified water, facilitating collection and reuse.

[0020] 2. In the intelligent purification and water-saving water storage tank for goat breeding and its implementation method, while the drum rotates, it drives the reciprocating screw rod to rotate. The reciprocating screw rod guides the crescent pin to slide axially along the reciprocating screw rod through the spiral groove and the transverse groove, thereby driving the brush plate to slide reciprocally on the screen, enabling the brush plate to continuously clean the wool on the screen, preventing the wool from accumulating and causing the screen to be blocked, and maintaining the continuity and efficiency of water filtration. BRIEF DESCRIPTION OF THE DRAWINGS

[0021] Figure 1 is the overall structural schematic diagram of the present invention;

[0022] Figure 2 is one of the internal structural schematic diagrams of the present invention;

[0023] Figure 3 is another internal structural schematic diagram of the present invention;

[0024] Figure 4 is the sectional schematic diagram of the water tank structure of the present invention;

[0025] Figure 5 is one of the schematic diagrams of the large particle filtration structure of the present invention;

[0026] Figure 6 is another schematic diagram of the large particle filtration structure of the present invention;

[0027] Figure 7 is one of the schematic diagrams of the fine particle filtration structure of the present invention;

[0028] Figure 8 is another schematic diagram of the fine particle filtration structure of the present invention.

[0029] The meanings of the various reference numerals in the figure are as follows:

[0030] 1. Water tank structure; 11. Main tank; 12. Protective cover; 13. Partition board; 131. Slide groove;

[0031] 2. Large particle filtration structure; 21. Reciprocating lead screw; 221. Slide block; 22. Brush plate; 23. Slide cylinder; 24. Crescent pin; 25. Flow guiding groove plate;

[0032] 3. Fine particle filtration structure; 31. Outer barrel; 32. Rotary drum; 33. Micro filter paper; 34. Water inlet pipe; 35. Intermediate pipe; 36. Water outlet pipe;

[0033] 41. Motor; 42. First gear; 43. Second gear; 44. Third gear. Detailed implementation manners

[0034] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.

[0035] In the description of the present invention, it should be understood that the terms "center", "longitudinal", "transverse", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", etc. indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings. It is only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and thus cannot be understood as a limitation to the present invention.

[0036] In addition, the terms "first" and "second" are only used for descriptive purposes and cannot be understood as indicating or implying relative importance or implicitly specifying the quantity of the indicated technical features. Thus, the features defined with "first" and "second" may explicitly or implicitly include one or more of such features. In the description of the present invention, "a plurality" means two or more, unless otherwise specifically defined.

[0037] Embodiment 1

[0038] Please refer to Figures 1 - 8As shown, one of the purposes of this embodiment is to provide an intelligent purification and water-saving water storage tank for goat breeding, including a tank structure 1, the tank structure 1 contains drinking water, the tank structure 1 allows water to be stored therein, and provides a platform so that other structures can be installed inside it, working together to achieve water purification and water saving, a large particle filtering structure 2 is arranged inside the tank structure 1, drinking water flows from top to bottom and flows over the large particle filtering structure 2, the large particle filtering structure 2 blocks large particles such as wool in the drinking water, this process not only improves the sanitary standard of the water source, but also reduces the water quality degradation caused by impurities, ensuring that the goats can drink cleaner water, a rotating particle filtering structure 3 is arranged below the large particle filtering structure 2, the drinking water filtered by the large particle filtering structure 2 flows into the particle filtering structure 3, the rotating particle filtering structure 3 swings the drinking water, and intercepts the particles in the drinking water inside the particle filtering structure 3, The filtered pure water is transported to the upper layer inside the water tank structure 1. This step helps to remove finer impurities, further improve water quality, and ensure the safety and hygiene of drinking water. At the same time, the filtered pure water is transported back to the upper layer inside the water tank structure, realizing the effective recycling of water resources and saving water resources. The particulate filter structure 3 drives the large particle filter structure 2 to slide back and forth when rotating, and scratches and collects the wool adsorbed on the large particle filter structure 2, thereby keeping the filter clean and improving the filtration efficiency. This automated cleaning mechanism reduces the need for manual cleaning and reduces labor intensity, while also avoiding the decrease in filtration efficiency due to excessive accumulation of wool, ensuring the long-term and stable operation of the water tank, keeping the filter clean and improving the filtration efficiency. This automated cleaning mechanism reduces the need for manual cleaning and reduces labor intensity, while also avoiding the decrease in filtration efficiency due to excessive accumulation of wool, ensuring the long-term and stable operation of the water tank.

[0039] The sink structure 1 includes a main tank 11, in which drinking water is contained. A partition 13 is fixedly installed in the middle of the main tank 11. The partition 13 shields the components below and blocks the goats to prevent the goats from directly contacting or damaging these sensitive components. At the same time, the partition 13 also blocks the goats to prevent them from interfering with the filtration process. There are gaps between the partition 13 and the two side walls of the main tank 11. The drinking water flows downward through the gaps, achieving preliminary water flow distribution and control. At the same time, by precisely guiding the water flow, splashing and evaporation are reduced, and water waste is also reduced. The large-particle filtration structure 2 includes a diversion trough plate 25 fixedly installed in the middle of the main tank 11. The drinking water flows through the gaps to above the diversion trough plate 25. The diversion trough plate 25 helps to guide the water flow, ensuring uniform water distribution, reducing the direct impact of the water flow on the components below, and at the same time improving the filtration efficiency. A screen is installed above the diversion trough plate 25. The screen blocks large-particle substances such as wool in the drinking water, improving the water quality through the screen, reducing water quality pollution problems caused by impurities such as wool, and at the same time protecting the filtration components below and extending their service life. The setting of the screen ensures the hygiene of the water source and prevents pollutants that may cause goat diseases. A connection port is opened on the bottom wall of the diversion trough plate 25. The drinking water filtered by the screen flows downward from the connection port, enabling the filtered water to flow smoothly to the next filtration link, ensuring the continuity of the water flow and the filtration efficiency. The filtered pure water can be collected and reused, reducing water resource waste. At the same time, it also reduces the breeding cost caused by water quality problems and ensures that the goats can drink cleaner and safer water, thereby improving the quality and efficiency of breeding.

[0040] On one side of the main tank 11, a protective cover 12 is fixedly connected. The protective cover 12 protects the internal structure from the external environment, such as dust and moisture, and also prevents goats from contacting the internal structure, ensuring the safety of the equipment and the stable operation of the water storage tank. Inside the protective cover 12, a motor 41 is fixedly installed. On the rotating shaft of the motor 41, a third gear 44 is fixedly connected. The particulate filtration structure 3 includes a drum 32 fixedly connected to the side of the third gear 44 away from the motor 41. An outer barrel 31 is sleeved outside the drum 32. The outer barrel 31 is fixedly installed on the bottom wall of the main tank 11. The drum 32 rotates inside the outer barrel 31. This design enables the drum 32 to perform efficient filtration operations in a closed environment. At the same time, the structure of the outer barrel 31 protects the drum 32 from damage and makes it more convenient to maintain and replace the drum 32. One end of the drum 32 away from the protective cover 12 is fixedly connected to a water inlet pipe 34. The water inlet pipe 34 connects the diversion trough plate 25 and the drum 32. The top end of the water inlet pipe 34 is fixedly connected to the connection port of the intermediate pipe 35. Inside the water inlet pipe 34, a water inlet propeller is provided. The water inlet propeller stirs the water flow, transporting the drinking water from above the diversion trough plate 25 through the water inlet pipe 34 into the inside of the drum 32. By increasing the fluidity of the water, the filtration effect is enhanced, ensuring the uniform distribution and efficient circulation of the water source. The rotating drum 32 swings the drinking water inside it. On the side wall of the drum 32, a micro filter paper 33 is fixedly installed. The micro filter paper 33 intercepts the particles in the drinking water. Under the action of centrifugal force, the purified water passes through the micro filter paper 33 and enters the purified water chamber provided between the outer barrel 31 and the drum 32. The micro filter paper 33 effectively removes the tiny particles in the water, improving the purity of the water quality. The setting of the purified water chamber provides a storage space for the purified water, facilitating collection and reuse.

[0041] On the side wall of the outer barrel 31 away from the water inlet pipe 34, an intermediate pipe 35 is fixedly connected. The intermediate pipe 35 ensures that the purified water can be smoothly discharged from the chamber and also maintains the continuity of the entire water cycle, making the entire filtration and purification process more efficient. Above the intermediate pipe 35, a water outlet pipe 36 is fixedly connected. The intermediate pipe 35 connects the purified water chamber and the water outlet pipe 36. The top of the water outlet pipe 36 penetrates through the partition plate 13 and is connected to the upper layer of the main tank 11, directly supplementing the purified water to the upper layer of the water storage tank, ensuring that goats can drink the newly purified water. At the same time, it also reduces water waste because the water is directly transported to the place where it is needed, reducing the evaporation loss caused by exposure. Inside the intermediate pipe 35, a water outlet propeller is provided. The water outlet propeller stirs the purified water, transporting the purified water from the purified water chamber through the intermediate pipe 35 and the water outlet pipe 36 to the upper layer of the main tank 11. This not only increases the fluidity of the water but also ensures the uniform distribution of the water, avoiding the retention of water in the chamber, thereby reducing the growth of bacteria and ensuring the hygiene and safety of the water quality.

[0042] Above the third gear 44, there is a first gear 42 meshed with it. Above the first gear 42, there is a second gear 43 meshed with it. On the side of the second gear 43 away from the protective cover 12, there is a reciprocating lead screw 21 fixedly connected. A brush plate 22 is sleeved on the reciprocating lead screw 21. When the reciprocating lead screw 21 rotates, it pushes the brush plate 22 to slide back and forth along the axial direction of the reciprocating lead screw 21. This mechanical motion design enables the slider 221 to regularly clean the sieve mesh, maintaining the permeability of the sieve mesh, avoiding a decrease in filtration efficiency caused by the accumulation of impurities such as wool. On the lower side wall of the brush plate 22, there are brushes fixedly installed. The reciprocating brush plate 22 scrapes the sieve mesh above the flow guide groove plate 25 through the brushes, removing the wool adsorbed on the sieve mesh from the sieve mesh, and collecting the scraped wool through the brushes, maintaining the cleanliness of the sieve mesh. At the same time, it also facilitates the recycling and treatment of wool. This automated cleaning mechanism reduces the need for manual cleaning, reduces labor intensity, and also avoids a decrease in filtration efficiency caused by excessive accumulation of wool, ensuring the long-term stable operation of the water storage tank.

[0043] An outer sliding sleeve of the reciprocating lead screw 21 is provided with a sliding cylinder 23, and the sliding cylinder 23 is fixedly installed on the brush plate 22, enabling the sliding cylinder 23 to smoothly slide outside the reciprocating lead screw 21, ensuring the stability and reliability of the entire large-particle filtration structure. The sliding cylinder 23 reduces the friction during the sliding process, making the movement of the slider 221 smoother and improving the working efficiency of the system. On the inner side wall of the sliding cylinder 23, there is a crescent pin 24 rotatably hinged. The crescent pin 24 is set in a shuttle shape, and this shape helps to reduce resistance during the movement process and improve the flexibility of the movement. On the side wall of the reciprocating lead screw 21, there are two helical grooves with opposite helical directions, and both ends of the two helical grooves are connected by transverse grooves. The crescent pin 24 slides along the helical groove. This design enables the crescent pin 24 to slide along the axial direction of the reciprocating lead screw 21 under the drive of the sliding cylinder 23, realizing the reciprocating movement of the slider 221. By driving the brush plate 22 to slide along the axial direction of the reciprocating lead screw 21 through the sliding cylinder 23, when the crescent pin 24 passes through the transverse groove, the transverse groove guides the crescent pin 24 to swing, enabling the crescent pin 24 to slide along the other helical groove, driving the brush plate 22 to slide reversely along the axial direction of the reciprocating lead screw 21. Utilizing the swing of the crescent pin 24, the bidirectional movement of the slider 221 is realized. This not only improves the flexibility of the movement of the slider 221 but also makes the sieve mesh cleaning process more efficient, ensuring that the sieve mesh always remains clean, thereby improving the filtration efficiency and the overall performance of the water storage tank.

[0044] Two slide grooves 131 are provided on the bottom wall of the partition 13, and two sliders 221 are arranged above the brush plate 22. The sliders 221 slide in the main groove 11 to guide the sliding path of the brush plate 22, so that the brush plate 22 can only slide along the axial direction of the reciprocating screw 21 and cannot rotate around the axial direction of the reciprocating screw 21. This design improves the stability of the system and ensures that the slider 221 and the brush plate 22 will not deviate or rotate during the movement, thereby ensuring the efficient and accurate operation of the filtering structure.

[0045] When this embodiment is used, drinking water is first poured into the main tank 11. The drinking water is pushed by the water inlet propeller, flows through the gaps on both sides of the partition 13, and reaches the screen above the guide tank plate 25. The screen intercepts large particles of impurities such as wool. The water quality is improved through the screen, and the water pollution problem caused by impurities such as wool is reduced. At the same time, the filter components below are protected and their service life is extended. The water after preliminary filtration flows into the drum 32. The drum 32 rotates under the drive of the motor 41, and the impurity particles in the water are separated by centrifugal force. The purified water is stored in the pure water chamber. The pure water is pushed from the pure water chamber by the water outlet propeller, passes through the intermediate pipe 35 and the water outlet pipe 36, and is transported to the upper layer of the main tank 11 for goats to drink. When the drum 32 rotates, the reciprocating screw 21 drives the brush plate 22 and its brush to slide back and forth, automatically cleaning the wool on the screen, preventing the wool from accumulating and causing the screen to be blocked, and maintaining the continuity and efficiency of water filtration.

[0046] The second purpose of this embodiment is to provide an implementation method of an intelligent purification and water-saving water storage tank for goat breeding, including the following method steps:

[0047] S1. First, pour drinking water into the main tank 11. The water inlet propeller provided in the water inlet pipe 34 pushes the contaminated drinking water to flow downward through the gaps on both sides of the partition 13. The partition 13 shields the components below and blocks the goats to prevent the goats from directly contacting or damaging these sensitive components until the drinking water flows to the top of the guide trough plate 25, thereby ensuring the uniform distribution of the water flow and enabling the pollutants to be more effectively guided to the next step of the filtration system.

[0048] S2. The screen installed on the upper side of the guide trough plate 25 blocks the large particles such as wool in the drinking water. This step helps to keep the water clean and prevents impurities such as wool from entering the subsequent filtering process, thereby protecting the efficiency and life of the filtering system. The drinking water after preliminary filtration flows from the bottom of the screen along the bottom wall of the guide trough plate 25 through the water inlet pipe 34 in the connecting port into the inside of the drum 32. The large particles of impurities such as wool in the drinking water are removed, providing a clean water source for subsequent particle filtration, ensuring the water quality of the final water supply;

[0049] S3. The motor 41 drives the drum 32 to rotate through the rotating shaft. The drum 32 swings the drinking water. Under the action of centrifugal force, the drinking water passes through the micro filter paper 33 and is filtered into pure water and enters the pure water chamber between the outer barrel 31 and the drum 32. The setting of the pure water chamber enables the purified water to be safely collected, facilitating subsequent use or recycling. Such a design not only saves water resources but also ensures the hygiene and safety of the drinking water for goats;

[0050] S4. The water outlet propeller provided in the middle pipe 35 pushes the pure water to flow from the pure water chamber above the partition plate 13, ensuring that the purified water can be effectively transported back to the main part of the water storage tank for goats to drink. The design of the water outlet propeller improves the fluidity of the water, ensures the continuity and uniformity of the water flow, avoids the retention of pure water in the chamber, reduces the risk of bacterial growth, and also improves the water supply efficiency of the water storage tank. While the drum 32 rotates, through the transmission of the third gear 44 and the first gear 42 and the second gear 43, the reciprocating lead screw 21 is driven to rotate;

[0051] S5. The rotating reciprocating lead screw 21 guides the crescent pin 24 to reciprocate axially along the reciprocating lead screw 21 through the spiral groove and the transverse groove, enabling the crescent pin 24 to smoothly transfer from one spiral groove to another through the transverse groove under the guidance of the spiral groove, and making the brush plate 22 reciprocate axially along the reciprocating lead screw 21. This not only improves the filtration efficiency but also reduces the need for manual cleaning, lowers the maintenance cost and labor intensity. The automated cleaning mechanism ensures that the water storage tank can continuously provide clean drinking water without frequent manual intervention, contributing to improving the efficiency of goat breeding and ensuring the hygiene of the water source;

[0052] S6. The reciprocating brush plate 22 reciprocates through the brush installed on its lower side. The reciprocating brush scrapes and collects the wool adsorbed on the screen, enabling the brush plate 22 to continuously clean the wool on the screen when moving axially along the reciprocating lead screw 21, preventing the wool from accumulating and causing the screen to be blocked, and maintaining the continuity and efficiency of water filtration. The setting of the brush not only ensures the cleanliness of the screen, avoids affecting the water quality due to excessive wool, but also reduces the pollution in the breeding environment by collecting the wool, improves the automation level of the water storage tank, reduces the need for manual cleaning, and lowers the labor intensity.

[0053] The foregoing has shown and described the basic principles, main features and advantages of the present invention. Those skilled in the art should understand that the present invention is not limited by the above embodiments, and the above embodiments and the descriptions in the specification are only preferred examples of the present invention, and are not used to limit the present invention. Without departing from the spirit and scope of the present invention, the present invention will have various changes and improvements, and these changes and improvements all fall within the scope of the present invention claimed. The scope of the present invention claimed is defined by the appended claims and their equivalents.

Claims

1. An intelligent purification and water-saving water storage tank for goat breeding, comprising a water tank structure (1), wherein drinking water is contained inside the water tank structure (1), and it is characterized in that: Inside the water tank structure (1), a large particle filtration structure (2) is provided. Drinking water flows from top to bottom and passes over the large particle filtration structure (2). The large particle filtration structure (2) blocks large particle substances such as wool in the drinking water. Below the large particle filtration structure (2), a rotating fine particle filtration structure (3) is provided. The drinking water filtered by the large particle filtration structure (2) flows into the fine particle filtration structure (3). The rotating fine particle filtration structure (3) swings the drinking water, intercepts the particles in the drinking water inside the fine particle filtration structure (3), and conveys the filtered pure water to the upper layer inside the water tank structure (1). When the fine particle filtration structure (3) rotates, it drives the large particle filtration structure (2) to slide back and forth, scraping and collecting the wool adsorbed above the large particle filtration structure (2).

2. The intelligent purification and water-saving storage water tank for goat breeding according to claim 1, characterized in that: The water tank structure (1) includes a main tank (11). Drinking water is contained inside the main tank (11). A partition plate (13) is fixedly installed in the middle of the main tank (11). The partition plate (13) shields the components below and blocks the goats. There are gaps between the partition plate (13) and the two side walls of the main tank (11). Drinking water flows downward through the gaps. The large particle filtration structure (2) includes a diversion trough plate (25) fixedly installed in the middle of the main tank (11). Drinking water flows through the gap to above the diversion trough plate (25). A screen is installed above the diversion trough plate (25). The screen blocks the wool in the drinking water. A connection port is opened on the bottom wall of the diversion trough plate (25). The drinking water filtered by the screen flows downward from the connection port.

3. The intelligent purification water-saving storage tank for goat breeding according to claim 2, characterized in that: On one side of the main tank (11), a protective cover (12) is fixedly connected. Inside the protective cover (12), a motor (41) is fixedly installed. A third gear (44) is fixedly connected to the rotating shaft of the motor (41). The fine particle filtration structure (3) includes a drum (32) fixedly connected to the side of the third gear (44) away from the motor (41). An outer barrel (31) is sleeved outside the drum (32). The outer barrel (31) is fixedly installed on the bottom wall of the main tank (11). The drum (32) rotates inside the outer barrel (31). One end of the drum (32) away from the protective cover (12) is fixedly connected to a water inlet pipe (34). The water inlet pipe (34) communicates the diversion trough plate (25) and the drum (32). The top end of the water inlet pipe (34) is fixed to the connection port of the middle pipe (35). An inlet water propeller is provided inside the water inlet pipe (34). The inlet water propeller agitates the water flow, transports the drinking water from above the diversion trough plate (25) through the water inlet pipe (34) into the inside of the drum (32). The rotating drum (32) swings the drinking water inside it. A micro filter paper (33) is fixedly installed on the side wall of the drum (32). The micro filter paper (33) intercepts the particles in the drinking water. Under the action of centrifugal force, the pure water passes through the micro filter paper (33) and enters the pure water chamber provided between the outer barrel (31) and the drum (32).

4. The intelligent purification and water-saving storage tank for goat breeding according to claim 3, characterized in that: One end side wall of the outer barrel (31) far away from the water inlet pipe (34) is fixedly connected with an intermediate pipe (35). An outlet pipe (36) is fixedly connected above the intermediate pipe (35). The intermediate pipe (35) communicates with the purified water chamber and the outlet pipe (36). The top of the outlet pipe (36) penetrates through the partition plate (13) and is communicated with the upper layer of the main tank (11). An outlet water propeller is arranged inside the intermediate pipe (35). The outlet water propeller stirs the purified water and transports the purified water from the purified water chamber to the upper layer of the main tank (11) through the intermediate pipe (35) and the outlet pipe (36).

5. The intelligent purification and water-saving storage tank for goat breeding according to claim 3, characterized in that: A first gear (42) is meshed above the third gear (44). A second gear (43) is meshed above the first gear (42). One side of the second gear (43) far away from the protective cover (12) is fixedly connected with a reciprocating lead screw (21). A brush plate (22) is sleeved on the reciprocating lead screw (21). The reciprocating lead screw (21) rotates to push the brush plate (22) to slide axially along the reciprocating lead screw (21). A brush is fixedly installed on the lower side wall of the brush plate (22). The reciprocating sliding brush plate (22) scrapes the screen above the flow guide groove plate (25) through the brush, removes the wool adsorbed on the screen from the screen, and collects the scraped wool through the brush.

6. The intelligent purification and water-saving storage tank for goat breeding according to claim 5, characterized in that: A sliding cylinder (23) is slidably sleeved outside the reciprocating lead screw (21). The sliding cylinder (23) is fixedly installed on the brush plate (22). A crescent pin (24) is rotatably hinged on the inner side wall of the sliding cylinder (23). The crescent pin (24) is arranged in a spindle shape. Two helical grooves with opposite helical directions are formed on the side wall of the reciprocating lead screw (21). Both ends of the two helical grooves are connected through transverse grooves. The crescent pin (24) slides along the helical groove, drives the brush plate (22) to slide axially along the reciprocating lead screw (21) through the sliding cylinder (23). When the crescent pin (24) passes through the transverse groove, the crescent pin (24) is guided by the transverse groove to swing the crescent pin (24), so that the crescent pin (24) slides along the other helical groove, driving the brush plate (22) to slide axially in the reverse direction along the reciprocating lead screw (21).

7. The intelligent purification and water-saving storage tank for goat breeding according to claim 6, characterized in that: Two sliding grooves (131) are formed on the bottom wall of the partition plate (13). Two sliding blocks (221) are arranged above the brush plate (22). The sliding blocks (221) slide in the main tank (11) to guide the sliding path of the brush plate (22), so that the brush plate (22) can only slide axially along the reciprocating lead screw (21) and cannot rotate around the axis of the reciprocating lead screw (21).

8. An implementation method for operating the intelligent purification and water-saving water storage tank for goat farming described in any one of claims 1-7, characterized in that: It includes the following method steps: S1. First, pour the drinking water into the inside of the main tank (11). The inlet water propeller arranged in the water inlet pipe (34) pushes the contaminated drinking water to flow downward through the gaps on both sides of the partition plate (13) until it flows above the flow guide groove plate (25). S2. The screen installed on the upper side of the diversion trough plate (25) blocks large particulate matters such as wool in the drinking water. The preliminarily filtered drinking water flows from below the screen along the bottom wall of the diversion trough plate (25) into the interior of the drum (32) through the water inlet pipe (34) in the connection port. S3. The motor (41) drives the drum (32) to rotate through the rotating shaft. The drinking water is swung by the drum (32). Under the action of centrifugal force, the drinking water passes through the micro filter paper (33) and is filtered into pure water, which enters the pure water chamber between the outer barrel (31) and the drum (32). S4. The water outlet propeller arranged in the middle pipe (35) pushes the pure water to flow into the upper part of the partition plate (13) from the pure water chamber. While the drum (32) is rotating, through the transmission of the third gear (44), the first gear (42) and the second gear (43), the reciprocating lead screw (21) is driven to rotate. S5. The rotating reciprocating lead screw (21) guides the crescent pin (24) to reciprocate axially along the reciprocating lead screw (21) through the spiral groove and the transverse groove, so that the brush plate (22) reciprocates axially along the reciprocating lead screw (21). S6. The reciprocating brush plate (22) drives the brush installed on its lower side to reciprocate. The reciprocating brush scrapes and collects the wool adsorbed on the screen.