Cattle and sheep breeding circulating water drinking system with self-cleaning and disinfecting functions
By designing a self-cleaning and disinfection-functional circulating drinking water system, the problems of drinking water deterioration and soil pollution have been solved, and the circulating disinfection and nutritional supplementation of drinking water have been achieved, ensuring the health of cattle and sheep.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- XINJIANG ACAD OF AGRI SCI (XINJIANG BRANCH OF CHINESE ACAD OF AGRI SCI)
- Filing Date
- 2026-02-28
- Publication Date
- 2026-05-26
AI Technical Summary
In traditional cattle and sheep farming drinking water systems, drinking water is easily contaminated by cattle and sheep manure and feed, leading to soil pollution, and residual feed substances in the drinking water affect the health of cattle and sheep.
A self-cleaning and disinfection circulating drinking water system was designed, including a disinfection tank, a circulating pump, a drinking water device, and a filtration device. The system ensures the cleanliness and disinfection of drinking water through disinfection with disinfectant, driving the circulating pump, and filtration with the filtration device. Nutrient solution is added to the drinking water to achieve recycling.
It effectively prevents the growth of viruses and bacteria in drinking water, keeps drinking water clean, reduces soil pollution, improves the health of drinking water, and supplements nutrition through porous ceramic blocks to ensure the healthy growth of cattle and sheep.
Smart Images

Figure CN122074412A_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of cattle and sheep breeding technology, specifically a circulating drinking water system for cattle and sheep breeding with self-cleaning and disinfection functions. Background Technology
[0002] Animal husbandry is an agricultural production sector that uses domesticated animals such as livestock and poultry or economically valuable wild animals to obtain products such as meat, eggs, milk, and fur through intensive breeding. Cattle and sheep breeding is a livestock activity that specifically raises cattle and sheep. In the process of cattle and sheep breeding, in order to facilitate the unified management of cattle and sheep, it is usually necessary to directly provide feed and drinking water in the farm at regular intervals and in fixed quantities. To facilitate the provision of drinking water, a unified drinking water system is usually used.
[0003] Traditional drinking water systems for cattle and sheep typically dispense drinking water directly into the system. Unused water is usually discharged directly. However, the drinking water is easily contaminated by exposure to air and by cattle and sheep manure. Furthermore, feed residue from the cattle and sheep falls into the drinking water, and various elements from the feed dissolve into it, leading to soil pollution when the water is discharged. Therefore, to address these issues, a recirculating drinking water system for cattle and sheep with self-cleaning and disinfection functions is proposed. Summary of the Invention
[0004] The purpose of this application is to provide a circulating drinking water system for cattle and sheep farming with self-cleaning and disinfection functions, so as to solve the problem that drinking water in farms is easily deteriorated due to the influence of cattle and sheep manure, and that feed and other substances that fall into the drinking water cause soil pollution when the drinking water is discharged.
[0005] To achieve the above objectives, this application provides the following technical solution: A self-cleaning and disinfection-functional circulating drinking water system for cattle and sheep includes an installation shell. A disinfection tank is installed on the left side of the installation shell, and a feeding unit is installed on the left side of the disinfection tank. A control unit is installed on the top of the installation shell, and a feeding device is installed on the right side of the installation shell. A circulation pump is installed on the lower right side of the installation shell and is connected to the disinfection tank. An inlet valve is installed on the upper front side of the disinfection tank. A drinking device is located on the right side of the installation shell, and its left front and rear ends are connected to the disinfection tank and the circulation pump, respectively.
[0006] Preferably, the drinking device includes a drinking body, a first connecting pipe, a second connecting pipe, an extension pipe, an infusion pipe, and a filtration device. The first connecting pipe is installed on the bottom left side of the drinking body, and the end of the first connecting pipe away from the drinking body is installed on the right side of the circulation pump. The filtration device is installed on the front right side of the drinking body, and the infusion pipe is installed at the bottom of the filtration device. The extension pipe is installed on the left side of the infusion pipe, and the second connecting pipe, which is fixedly connected to the disinfection tank, is installed on the left side of the extension pipe.
[0007] Preferably, the drinking water body includes a drinking water shell, an installation tube, a sealing cap, a fixing tube, a water outlet box, a water outlet pipe, a sealing column, a first sealing ring, and a sealing shell. Installation tubes are fixedly connected to both the left and right sides of the bottom of the drinking water shell. A fixing tube is installed between adjacent installation tubes on the bottom of two adjacent drinking water shells. A sealing cap is installed on the outside of the installation tube fixedly connected to the bottom right side of the drinking water shell away from the installation shell. A first connecting tube is installed on the outside of the installation tube near the installation shell on the bottom of the drinking water shell. A series of interconnected components are installed on the front right end of the drinking water shell. The water outlet box has a water outlet pipe fixedly connected to the right side of the water outlet box in an interconnected manner. A sealing column is provided in the water outlet pipe near the mounting shell. A first sealing ring is installed on the outside of the sealing column in a uniformly distributed manner. The outside of the first sealing ring is tightly fitted to the water outlet pipe. A sealing shell is fixedly connected to one end of the sealing column. The sealing shell is installed on the outside of the water outlet pipe on the left side. A filter device is installed on the outside of the water outlet pipe on the side away from the mounting shell. A feeding device is provided in the drinking water shell near the mounting shell. A mounting plate is fixedly connected to the bottom of the drinking water shell in a uniformly distributed manner.
[0008] Preferably, the filtration device includes a filter housing, a mounting cover, a sealing tube, a second sealing ring, a fixing cover, a filter body, a sealing sleeve, and a bottom tube. A fixing cover is bolted to the right side of the filter housing. A sealing sleeve is installed on one side of the fixing cover. The filter body is installed inside the sealing sleeve. A sealing ring is installed on the outer side of the filter body near the fixing cover. Distributing liquid components are evenly distributed on the outer side of the filter body away from the fixing cover. The outer side of the sealing ring is tightly fitted to the filter housing. A mounting cover is fixedly connected to the left end of the filter housing and installed on the outside of the outlet pipe. A sealing tube, interconnected with the filter housing, is installed inside the mounting cover. A second sealing ring, tightly fitted to the outlet pipe, is installed on the outer side of the sealing tube. A bottom tube, interconnected with the filter housing, is fixedly connected to the right bottom end of the filter housing. An infusion tube is installed on the outer side of the bottom tube.
[0009] Preferably, the liquid separating body includes an elastic ring, a sealing cone, a fixing rod, and a limiting strip. The outer side of the elastic ring is tightly fitted to the filter shell. A first deformation groove is evenly distributed inside the left side of the elastic ring. Multiple through holes are evenly distributed inside the elastic ring. A fixing rod is installed in the through holes of the elastic ring. A sealing cone is fixedly connected to the right end of the fixing rod. A limiting strip is fixedly connected to the left end of the fixing rod. The limiting strip is located to the left side of the first deformation groove of the elastic ring. The outer side of the left end of the sealing cone is tightly fitted to the inner wall of the through hole of the elastic ring. The sealing ring and the sealing sleeve are respectively located above the left and right sides of the bottom tube.
[0010] Preferably, the feeding device includes a nutrient tank, a porous ceramic block, a third connecting pipe, a dispensing pipe, a vertical pipe, a fixed shell, an installation groove, and a flow guiding body. The nutrient tank is installed inside the installation shell. The third connecting pipe is installed on the front right side of the nutrient tank. A dispensing pipe is installed on the outer side of one end of the third connecting pipe. A vertical pipe is fixedly connected to the bottom end of the dispensing pipe. A fixed shell is fixedly connected to the bottom end of the vertical pipe. A porous ceramic block is installed inside the fixed shell. A uniformly distributed installation groove is opened at the bottom of the fixed shell. A flow guiding body is installed in the installation groove opened in the fixed shell.
[0011] Preferably, the flow guiding body includes a rubber frame, a limiting frame is installed on one side of the rubber frame, a uniformly distributed crossbar is fixedly connected to one side of the limiting frame, a flow guiding plate is installed on the outside of the crossbar, rubber frames are fixedly connected to both the front and rear sides of the flow guiding plate, two rubber frames are arranged in a set in the mounting groove of the fixed shell, a uniformly distributed fixed plate is installed on the side of the rubber frame away from the limiting frame, a locking block is fixedly connected to one side of the fixed plate, a uniformly distributed second deformation groove is opened at the position between the limiting frame and the fixed plate in the rubber frame, a uniformly distributed locking groove is opened on the inner wall of the mounting groove of the fixed shell, the end of the locking block away from the fixed plate is hemispherical, the hemispherical end of the locking block is set in the locking groove of the fixed shell, and the fixed shell and the porous ceramic block are both set in the drinking shell near the mounting shell.
[0012] Compared with the prior art, the beneficial effects of this application are: 1. In this application, through the installation shell, control body, disinfection tank, inlet valve, circulation pump, drinking device, installation plate, feeding device and feeding body, disinfectant can be added to the disinfection tank through the feeding body to disinfect drinking water. The circulation pump and drinking device drive the drinking water to circulate, ensuring that viruses and bacteria will not grow during long-term drinking and affect the growth of cattle and sheep. The feeding device can add nutrient solution or medicine to the drinking water to make cattle and sheep healthier during the breeding process. 2. In this application, by setting up a drinking shell, installation pipe, sealing cover, fixing pipe, water outlet box, water outlet pipe, sealing column, first sealing ring, sealing shell, first connecting pipe, second connecting pipe, extension pipe, infusion pipe, filter shell, installation cover, sealing pipe, second sealing ring, fixing cover, filter body, sealing sleeve, bottom pipe, sealing ring, elastic ring, through hole, first deformation groove, sealing cone, fixing rod, and limiting strip, cattle and sheep can directly drink water under the action of the drinking shell. The drinking shell, circulation pump, and disinfection tank are connected into a circulation system through the installation pipe, fixing pipe, water outlet box, water outlet pipe, filtration equipment, infusion pipe, extension pipe, second connecting pipe, and first connecting pipe, so that drinking water can be circulated and disinfected. When excess drinking water is discharged, it will not cause soil pollution. Under the action of the fixing pipe and extension pipe, multiple groups of drinking water can be processed. The filter housing is assembled to adapt to different farms. The sealing cap can seal the installation pipe, and the sealing shell, sealing column, and first sealing ring can seal the water outlet pipe. It can also seal water outlet pipes not connected to the filter equipment to prevent drinking water leakage. The filter body filters drinking water, ensuring the cleanliness of the drinking water inside the shell. Multiple elastic rings and sealing rings can divide the filter body into multiple sections. When one section of the filter body is blocked, the water pressure pushes the sealing cone to move. The sealing cone, through the fixing rod and limiting strip, pushes the elastic ring to deform under the action of the first deformation groove. At this time, drinking water flows through the through hole of the elastic ring to the next section of the filter body, and the next section of the filter body continues to filter drinking water, improving the utilization rate of the filter body and reducing the number of filter body replacements, thus saving resources. 3. In this application, through the inclusion of a nutrient tank, porous ceramic block, third connecting pipe, dispensing pipe, vertical pipe, fixed shell, mounting groove, rubber frame, second deformation groove, fixed plate, locking block, limiting frame, crossbar, guide plate, and locking groove, nutrient solution can be added to the nutrient tank. The nutrient solution then enters the porous ceramic block through the third connecting pipe, dispensing pipe, vertical pipe, and fixed shell. Drinking water contacts the porous ceramic block through the mounting groove in the fixed shell, allowing the nutrient solution in the porous ceramic block to permeate into the drinking water, thereby supplementing the nutrition of cattle and sheep. The guide plate further guides the drinking water... The guide plate directs the drinking water downwards to flush the porous ceramic block, improving the permeability of the nutrient solution. No power is required to ensure uniform mixing of the nutrient solution and drinking water. The rubber frame uses its own elasticity to move the fixed plate, which in turn pushes the locking block into the slot in the fixed shell. This allows for the installation and positioning of the rubber frame and guide plate, while also facilitating their disassembly and replacement. The limiting frame and crossbar support the rubber frame and guide plate, making one side of the rubber frame more stable and ensuring a more stable installation of the rubber frame and guide plate. Attached Figure Description
[0013] Figure 1 This is a schematic diagram of the overall structure of this application; Figure 2 This is a schematic diagram of the installation structure of the disinfection tank in this application; Figure 3 This is a side view of the installation structure of the material feeding body in this application; Figure 4 This is a schematic diagram of the drinking water device of this application; Figure 5 This is a schematic diagram of the main structure of the drinking water unit in this application; Figure 6 This is a schematic diagram of the installation structure of the sealing shell in this application; Figure 7 This is a schematic diagram of the installation structure of the filtration device in this application; Figure 8 This is a schematic diagram of the installation structure of the liquid separation body in this application; Figure 9 A schematic diagram showing the position between the limiting strip and the elastic ring in this application; Figure 10 This is a schematic diagram of the feeding device of this application; Figure 11 This is a schematic diagram of the installation structure of the porous ceramic block in this application; Figure 12 This is a schematic diagram of the installation structure of the main body for diverting the flow in this application; Figure 13 This is a schematic diagram of the mounting structure of the fixed disk in this application; Figure 14 This is a schematic diagram of the installation structure of the limit frame in this application.
[0014] In the diagram: 1. Mounting housing; 2. Control unit; 3. Disinfection tank; 4. Inlet valve; 5. Circulation pump; 6. Drinking device; 61. Drinking unit; 611. Drinking housing; 612. Mounting pipe; 613. Sealing cap; 614. Fixing pipe; 615. Water outlet box; 616. Water outlet pipe; 617. Sealing column; 618. First sealing ring; 619. Sealing housing; 62. First connecting pipe; 63. Second connecting pipe; 64. Extension pipe; 65. Infusion pipe; 66. Filtration device; 661. Filter housing; 662. Mounting cap; 663. Sealing pipe; 664. Second sealing ring; 665. Fixing cap; 666. Filter unit; 667. 668. Sealing sleeve; 67. Bottom pipe; 68. Sealing ring; 69. Liquid separator; 60. Elastic ring; 61. Through hole; 62. First deformation groove; 63. Sealing cone; 64. Fixing rod; 65. Limiting strip; 66. Mounting plate; 7. Feeding device; 81. Nutrient tank; 82. Porous ceramic block; 83. Third connecting pipe; 84. Liquid separator; 85. Vertical pipe; 86. Fixing shell; 87. Mounting groove; 88. Flow guide body; 881. Rubber frame; 882. Second deformation groove; 883. Fixing plate; 884. Locking block; 885. Limiting frame; 886. Horizontal bar; 887. Flow guide plate; 89. Locking groove; 9. Feeding body. Detailed Implementation
[0015] Please see Figure 1-14 This application provides a technical solution: A self-cleaning and disinfection-functional circulating drinking water system for cattle and sheep includes a housing 1. A disinfection tank 3 is installed on the left side inside the housing 1. A feeding unit 9 is installed on the left side of the disinfection tank 3. A control unit 2 is installed on the top of the housing 1. A feeding device 8 is installed on the right side of the housing 1. A circulation pump 5 is installed on the lower right side inside the housing 1 and is connected to the disinfection tank 3. An inlet valve 4 is installed on the upper front side of the disinfection tank 3. A drinking device 6 is located on the right side of the housing 1. The front and rear ends of the left side of the drinking device 6 are connected to the disinfection tank 3 and the circulation pump 5, respectively. This system allows the feeding unit 9 to add disinfectant to the disinfection tank 3 to disinfect the drinking water. The circulation pump 5 and the drinking device 6 circulate the drinking water, ensuring that viruses and bacteria will not grow and affect the growth of cattle and sheep during long-term consumption. Nutrient solutions or medicines can be added to the drinking water through the feeding device 8, promoting healthier cattle and sheep during the breeding process.
[0016] like Figure 1-9As shown, the drinking device 6 includes a drinking body 61, a first connecting pipe 62, a second connecting pipe 63, an extension pipe 64, an infusion pipe 65, and a filter device 66. The first connecting pipe 62 is installed on the bottom left side of the drinking body 61, and the end of the first connecting pipe 62 away from the drinking body 61 is installed on the right side of the circulation pump 5. The filter device 66 is installed on the front right side of the drinking body 61, and the infusion pipe 65 is installed at the bottom of the filter device 66. The extension pipe 64 is installed on the left side of the infusion pipe 65, and the second connecting pipe 63, which is fixedly connected to the disinfection tank 3, is installed on the left side of the extension pipe 64. The drinking body 61 includes a drinking shell 611, an installation pipe 612, a sealing cover 613, a fixing pipe 614, a water outlet box 615, a water outlet pipe 616, a sealing column 617, and a first sealing ring. 618 and sealing shell 619, the bottom left and right sides of the drinking shell 611 are fixedly connected to the installation pipe 612. A fixing pipe 614 is installed between two adjacent installation pipes 612 at the bottom of two adjacent drinking shells 611. This arrangement allows cattle and sheep to drink directly from the drinking shells 611. The drinking shells 611, circulation pump 5, and disinfection tank 3 are connected into a circulation system via the installation pipe 612, fixing pipe 614, water outlet box 615, water outlet pipe 616, filter device 66, infusion pipe 65, extension pipe 64, second connecting pipe 63, and first connecting pipe 62, allowing for the circulation and disinfection of drinking water. Multiple sets of drinking shells 611 can be assembled using the fixing pipe 614 and extension pipe 64 to adapt to different needs. In the breeding farm, a sealing cap 613 is installed on the outside of the installation pipe 612 fixedly connected to the bottom right side of the drinking shell 611 away from the installation shell 1. A first connecting pipe 62 is installed on the outside of the installation pipe 612 near the bottom of the drinking shell 611 close to the installation shell 1. A water outlet box 615 is installed on the front right end of the drinking shell 611, which is connected to each other. A water outlet pipe 616 is fixedly connected to the right side of the water outlet box 615, which is also connected to each other. A sealing post 617 is installed inside the water outlet pipe 616 close to the installation shell 1. A first sealing ring 618 is installed on the outside of the sealing post 617, which is evenly distributed. The outside of the first sealing ring 618 is tightly fitted to the water outlet pipe 616. A sealing shell 619 is fixedly connected to one end of the sealing post 617. The sealing shell 619 is installed on the left side. A filter device 66 is installed on the outer side of the water outlet pipe 616, away from the mounting shell 1. A feeding device 8 is installed inside the drinking water shell 611 near the mounting shell 1. The bottom of the drinking water shell 611 is fixedly connected to evenly distributed mounting plates 7. Through this arrangement, the sealing cover 613 can seal the mounting pipe 612, and the sealing shell 619, sealing column 617, and first sealing ring 618 can seal the water outlet pipe 616. The water outlet pipe 616 not connected to the filter device 66 is sealed to prevent drinking water leakage. The filter device 66 includes a filter shell 661, a mounting cover 662, a sealing pipe 663, a second sealing ring 664, a fixing cover 665, a filter body 666, a sealing sleeve 667, and a bottom pipe 668.A fixing cover 665 is bolted to the right side of the filter housing 661. A sealing sleeve 667 is installed on one side of the fixing cover 665. The filter body 666 is installed inside the sealing sleeve 667. A sealing ring 67 is installed on the outer side of the filter body 666 near the fixing cover 665. A liquid separating body 68 is evenly distributed on the outer side of the filter body 666 away from the fixing cover 665. The outer side of the sealing ring 67 is tightly fitted to the filter housing 661. A mounting cover 662 is fixedly connected to the left end of the filter housing 661 and installed on the outside of the outlet pipe 616. A device that communicates with the filter housing 661 is installed inside the mounting cover 662. A sealing tube 663 is provided, and a second sealing ring 664 is installed on the outside of the sealing tube 663 to fit tightly against the water outlet pipe 616. A bottom tube 668 is fixedly connected to the bottom right end of the filter shell 661 and is arranged in a continuous manner. An infusion tube 65 is installed on the outside of the bottom tube 668. The liquid dispensing body 68 includes an elastic ring 681, a sealing cone 684, a fixing rod 685 and a limiting strip 686. The outer side of the elastic ring 681 fits tightly against the filter shell 661. A first deformation groove 683 is evenly distributed inside the left side of the elastic ring 681. Multiple through holes 68 are evenly distributed inside the elastic ring 681. 2. A fixing rod 685 is installed inside the through hole 682 of the elastic ring 681. A sealing cone 684 is fixedly connected to the right end of the fixing rod 685, and a limiting strip 686 is fixedly connected to the left end of the fixing rod 685. The limiting strip 686 is located on the left side of the first deformation groove 683 of the elastic ring 681. The outer side of the left end of the sealing cone 684 is tightly fitted with the inner wall of the through hole 682 of the elastic ring 681. The sealing ring 67 and the sealing sleeve 667 are respectively located above the left and right sides of the bottom tube 668. The filter body 666 filters drinking water to ensure the cleanliness of the drinking water shell 611. The sealing ring 681 and sealing ring 67 divide the filter body 666 into multiple sections. When one section of the filter body 666 becomes clogged, water pressure pushes the sealing cone 684 to move. The sealing cone 684, through the fixing rod 685 and the limiting strip 686, pushes the elastic ring 681 to deform under the action of the first deformation groove 683. At this time, drinking water flows through the through hole 682 of the elastic ring 681 to the next section of the filter body 666, where it continues to filter the drinking water. This improves the utilization rate of the filter body 666 and reduces the frequency of filter body replacement, thus saving resources.
[0017] like Figure 1 , 2As shown in figures 10, 11, 12, 13, and 14, the feeding device 8 includes a nutrient tank 81, a porous ceramic block 82, a third connecting pipe 83, a distributing pipe 84, a vertical pipe 85, a fixed shell 86, an installation groove 87, and a flow guiding body 88. The nutrient tank 81 is installed inside the installation shell 1. The third connecting pipe 83 is installed on the front right side of the nutrient tank 81. A distributing pipe 84 is installed on the outer side of one end of the third connecting pipe 83. The bottom end of the distributing pipe 84 is fixedly connected to the vertical pipe 85. The bottom end of the vertical pipe 85 is fixedly connected to the fixed shell 86. The porous ceramic block 82 is installed inside the fixed shell 86. The bottom of the fixed shell 86 has evenly distributed installation grooves 87. The flow guiding body 88 is installed in the installation grooves 87 of the fixed shell 86. Through this configuration, Nutrient solution can be added to the nutrient tank 81. The nutrient solution then enters the porous ceramic block 82 through the third connecting pipe 83, the dispensing pipe 84, the vertical pipe 85, and the fixed shell 86. Drinking water comes into contact with the porous ceramic block 82 through the installation groove 87 in the fixed shell 86. The nutrient solution in the porous ceramic block 82 permeates into the drinking water, thus supplementing the nutrition of cattle and sheep. The flow guide body 88 includes a rubber frame 881. A limiting frame 885 is installed on one side of the rubber frame 881. A uniformly distributed crossbar 886 is fixedly connected to one side of the limiting frame 885. A flow guide plate 887 is installed on the outside of the crossbar 886. Rubber frames 881 are fixedly connected to both the front and rear sides of the flow guide plate 887. Two rubber frames 881 are arranged as a group in the fixed shell 86. Within the six mounting slots 87, a uniformly distributed fixing plate 883 is installed on the side of the rubber frame 881 away from the limiting frame 885. A locking block 884 is fixedly connected to one side of the fixing plate 883. A uniformly distributed second deformation groove 882 is formed between the limiting frame 885 and the fixing plate 883 within the rubber frame 881. The inner wall of the mounting slot 87 of the fixing shell 86 has uniformly distributed locking grooves 89. The end of the locking block 884 away from the fixing plate 883 is hemispherical, and the hemispherical end of the locking block 884 is set in the locking groove 89 of the fixing shell 86. The fixing shell 86 and the porous ceramic block 82 are both set in the drinking shell 611 near the mounting shell 1. Through this arrangement, the guide plate 887 directs the drinking water... Water is guided to allow drinking water to flow downwards and flush the porous ceramic block 82, improving the permeability of the nutrient solution. At this time, no power is required to ensure that the nutrient solution is evenly mixed with the drinking water. The rubber frame 881 pushes the fixed plate 883 to move through its own elasticity. The fixed plate 883 pushes the locking block 884 to engage with the slot 89 opened in the fixed shell 86, thereby installing and limiting the rubber frame 881 and the guide plate 887. This also facilitates the disassembly and replacement of the rubber frame 881 and the guide plate 887. The limiting frame 885 and the crossbar 886 support the rubber frame 881 and the guide plate 887, making the shape of one side of the rubber frame 881 more stable and making the installation of the rubber frame 881 and the guide plate 887 more stable.
[0018] Workflow: When using this cattle and sheep recirculating drinking water system, firstly, multiple drinking water shells 611 are installed in suitable locations on the farm using the mounting plate 7. Then, the mounting shell 1 is installed in a suitable location on the farm. At this time, the fixing shell 86 and the porous ceramic block 82 are placed inside the drinking water shell 611 closest to the mounting shell 1. Next, the first connecting pipe 62 is installed to the bottom of the drinking water shell 611 closest to the mounting shell 1 and to the outside of the mounting pipe 612 near the mounting shell 1. The two ends of the fixing pipe 614 are installed to the outside of the two mounting pipes 612 that are close to each other at the bottom of two adjacent drinking water shells 611. The sealing cap 613 is installed to the bottom of the drinking water shell 611 furthest from the mounting shell 1 and to the outside of the mounting pipe 612 furthest from the mounting shell 1. Finally, the front side of the drinking water shell 611 furthest from the mounting shell 1 is... Remove the sealing shell 619 from the outside of the water outlet pipe 616, and install the mounting cover 662 onto the outside of the water outlet pipe 616. Then, install the infusion pipe 65 onto the outside of the bottom pipe 668. Next, install an extension pipe 64 at the other end of the infusion pipe 65 until the last extension pipe 64 is connected to the second connecting pipe 63. Then, connect the inlet pipe to one end of the inlet valve 4. This completes the assembly of the cattle and sheep breeding circulating drinking water system. Connect the power supply and open the inlet valve 4 via the controller. Drinking water enters the disinfection tank 3. The controller controls the feeding unit 9 to add disinfectant to the disinfection tank 3 to disinfect the drinking water. After disinfection, the water in the disinfection tank 3 is pumped into the drinking water tank 611 through the first connecting pipe 62 via the circulation pump 5. Then, open the... The top cover of the incubator 81 allows nutrient solution to be added. Under gravity, the nutrient solution flows through the third connecting pipe 83, the distribution pipe 84, the vertical pipe 85, and the fixed shell 86 into the porous ceramic block 82. Water then flows through the bottom of the fixed shell 86, and the nutrient solution permeates into the drinking water through the porous ceramic block 82. As the drinking water flows, the nutrient solution mixes with it. When the amount of drinking water in the drinking water tank 611 gradually increases, the guide plate 887 guides the drinking water, allowing it to flow into the porous ceramic block 82, improving the mixing efficiency of the nutrient solution and drinking water. The drinking water then flows through the installation pipe 612 and the fixed pipe 614 into the next drinking water tank 611. The control unit 2 monitors the drinking water level in the disinfection tank 3 in real time using a water level monitoring device. The water level is raised until all the water in the disinfection tank 3 has flowed out. Then, drinking water is added back into the disinfection tank 3 through the inlet valve 4 for disinfection again. After disinfection, the water is sent into the drinking tank 611 in the same way. After the drinking tanks 611 are full of drinking water, the circulation pump 5 can continuously circulate the drinking water in the disinfection tank 3. The drinking water exposed to the air returns to the disinfection tank 3 for disinfection, preventing viruses and bacteria from contaminating the drinking water. When cattle and sheep drink water, feed and other impurities fall into the drinking tank 611 and then flow into the filter body 666 along with the drinking water. When the filter body 666 becomes clogged, its permeability decreases, and the water level in the drinking tank 611 increases.Under water pressure, the sealing cone 684 moves. The sealing cone 684, through the fixing rod 685 and the limiting strip 686, pushes the elastic ring 681 to deform under the action of its first deformation groove 683. At this time, drinking water passes through the through hole 682 of the elastic ring 681, positioned between the two elastic rings 681. The drinking water continues to be filtered through the filter body 666, extending its service life. When the filter body 666 is completely clogged, the bolts are removed with tools, then the fixing cover 665 is removed, and finally the filter body 666 is removed and replaced.
[0019] This document uses specific examples to illustrate the principles and implementation methods of this application. The examples are merely for the purpose of helping to understand the methods and core ideas of this application. The above descriptions are only preferred embodiments of this application. It should be noted that due to the limitations of written expression, while there are objectively infinite specific structures, those skilled in the art can make various improvements, modifications, or variations without departing from the principles of this application, and can also combine the above technical features in an appropriate manner. These improvements, modifications, variations, or combinations, or the direct application of the inventive concept and technical solution to other situations without modification, should all be considered within the scope of protection of this application.
Claims
1. A circulating drinking water system for cattle and sheep with self-cleaning and disinfection functions, comprising an installation shell (1), characterized in that: A disinfection tank (3) is installed on the left side inside the mounting shell (1). A feeding body (9) is installed on the left side of the disinfection tank (3). A control body (2) is installed on the top of the mounting shell (1). A feeding device (8) is installed on the right side of the mounting shell (1). A circulation pump (5) is installed on the lower right side inside the mounting shell (1). The circulation pump (5) is connected to the disinfection tank (3). An inlet valve (4) is installed on the upper front side of the disinfection tank (3). A drinking water device (6) is provided on the right side of the mounting shell (1). The front and rear ends of the left side of the drinking water device (6) are connected to the disinfection tank (3) and the circulation pump (5) respectively.
2. The circulating drinking water system for cattle and sheep with self-cleaning and disinfection functions according to claim 1, characterized in that: The drinking water device (6) includes a drinking water body (61), a first connecting pipe (62), a second connecting pipe (63), an extension pipe (64), an infusion pipe (65), and a filter device (66). The first connecting pipe (62) is installed on the left side of the bottom of the drinking water body (61). The end of the first connecting pipe (62) away from the drinking water body (61) is installed on the right side of the circulation pump (5). The filter device (66) is installed on the right side of the front side of the drinking water body (61). The infusion pipe (65) is installed at the bottom of the filter device (66). The extension pipe (64) is installed on the left side of the infusion pipe (65). The second connecting pipe (63) is fixedly connected to the disinfection tank (3) on the left side of the extension pipe (64).
3. A circulating drinking water system for cattle and sheep with self-cleaning and disinfection functions according to claim 2, characterized in that: The main body (61) of the drinking water unit includes a drinking water shell (611), an installation pipe (612), a sealing cap (613), a fixing pipe (614), a water outlet box (615), a water outlet pipe (616), a sealing column (617), a first sealing ring (618), and a sealing shell (619). The drinking water shell (611) is fixedly connected to the left and right sides of its bottom with installation pipes (612). A fixing pipe (614) is installed between two adjacent installation pipes (612) at the bottom of two adjacent drinking water shells (611). A sealing cap (613) is installed on the outside of the installation pipe (612) fixedly connected to the bottom right side of the drinking water shell (611) away from the installation shell (1). A first connecting pipe (62) is installed on the outside of the installation pipe (612) near the installation shell (1) at the bottom of the drinking water shell (611). A sealing ring (618) is installed on the right side of the front of the drinking water shell (611). A water outlet box (615) is connected to each other. A water outlet pipe (616) is fixedly connected to the right side of the water outlet box (615). A sealing column (617) is provided in the water outlet pipe (616) near the mounting shell (1). A first sealing ring (618) is installed on the outside of the sealing column (617) and is tightly fitted to the water outlet pipe (616). A sealing shell (619) is fixedly connected to one end of the sealing column (617). The sealing shell (619) is installed on the outside of the water outlet pipe (616) on the left side. A filter device (66) is installed on the outside of the water outlet pipe (616) on the side away from the mounting shell (1). A feeding device (8) is provided in the drinking shell (611) near the mounting shell (1). A mounting plate (7) is fixedly connected to the bottom of the drinking shell (611) and is evenly distributed.
4. A circulating drinking water system for cattle and sheep with self-cleaning and disinfection functions according to claim 3, characterized in that: The filtration device (66) includes a filter housing (661), a mounting cover (662), a sealing tube (663), a second sealing ring (664), a fixing cover (665), a filter body (666), a sealing sleeve (667), and a bottom tube (668). A fixing cover (665) is bolted to the right side of the filter housing (661). A sealing sleeve (667) is installed on one side of the fixing cover (665). The filter body (666) is installed inside the sealing sleeve (667). A sealing ring (67) is installed on the outer side of the filter body (666) near the fixing cover (665). The filter body (666) is further away from the fixing cover (665) on one side. A liquid dispensing body (68) is installed on the outer side of the filter shell (661) in a uniformly distributed manner. The outer side of the sealing ring (67) is tightly fitted with the filter shell (661). The left end of the filter shell (661) is fixedly connected to an installation cover (662) installed on the outside of the water outlet pipe (616). A sealing tube (663) is installed inside the installation cover (662) and is connected to the filter shell (661). A second sealing ring (664) is installed on the outside of the sealing tube (663) and is tightly fitted with the water outlet pipe (616). The bottom right end of the filter shell (661) is fixedly connected to a bottom tube (668) that is connected to the filter shell (661). An infusion tube (65) is installed on the outside of the bottom tube (668).
5. A circulating drinking water system for cattle and sheep with self-cleaning and disinfection functions according to claim 4, characterized in that: The liquid separating body (68) includes an elastic ring (681), a sealing cone (684), a fixing rod (685), and a limiting strip (686). The outer side of the elastic ring (681) is tightly fitted to the filter shell (661). A first deformation groove (683) is evenly distributed inside the left side of the elastic ring (681). A plurality of through holes (682) are evenly distributed inside the elastic ring (681). A fixing rod (685) is installed in the through holes (682) of the elastic ring (681). 85), a sealing cone (684) is fixedly connected to the right end of the fixing rod (685), and a limiting strip (686) is fixedly connected to the left end of the fixing rod (685). The limiting strip (686) is located on the left side of the first deformation groove (683) opened in the elastic ring (681). The outer side of the left end of the sealing cone (684) is tightly fitted with the inner wall of the through hole (682) opened in the elastic ring (681). The sealing ring (67) and the sealing sleeve (667) are respectively located above the left and right sides of the bottom tube (668).
6. A circulating drinking water system for cattle and sheep with self-cleaning and disinfection functions according to claim 3, characterized in that: The feeding device (8) includes a nutrient tank (81), a porous ceramic block (82), a third connecting pipe (83), a liquid distribution pipe (84), a vertical pipe (85), a fixed shell (86), an installation groove (87), and a flow guiding body (88). The nutrient tank (81) is installed inside the installation shell (1). The third connecting pipe (83) is installed on the front right side of the nutrient tank (81). The liquid distribution pipe (84) is installed on the outer side of one end of the third connecting pipe (83). The bottom end of the liquid distribution pipe (84) is fixedly connected to the vertical pipe (85). The bottom end of the vertical pipe (85) is fixedly connected to the fixed shell (86). The porous ceramic block (82) is installed inside the fixed shell (86). The bottom of the fixed shell (86) has an evenly distributed installation groove (87). The flow guiding body (88) is installed in the installation groove (87) of the fixed shell (86).
7. A circulating drinking water system for cattle and sheep with self-cleaning and disinfection functions according to claim 6, characterized in that: The flow guiding body (88) includes a rubber frame (881), a limiting frame (885) is installed on one side of the rubber frame (881), and a uniformly distributed crossbar (886) is fixedly connected to one side of the limiting frame (885). A flow guiding plate (887) is installed on the outside of the crossbar (886), and rubber frames (881) are fixedly connected to both the front and rear sides of the flow guiding plate (887). Two rubber frames (881) are arranged in a group in the mounting groove (87) opened in the fixed shell (86). A uniformly distributed fixing plate (883) is installed on the side of the rubber frame (881) away from the limiting frame (885). 83) A card block (884) is fixedly connected to one side. A second deformation groove (882) is evenly distributed between the limiting frame (885) and the fixed plate (883) in the rubber frame (881). A card slot (89) is evenly distributed on the inner wall of the mounting groove (87) opened in the fixed shell (86). The end of the card block (884) away from the fixed plate (883) is set in a hemispherical shape. The hemispherical end of the card block (884) is set in the card slot (89) opened in the fixed shell (86). The fixed shell (86) and the porous ceramic block (82) are both set in the drinking shell (611) near the mounting shell (1).