Water purifying device for concentrated feed production

By embedding the sealing assembly and water guide plate in the water purification device, combining the closed slot and separation assembly with the spiral structure, the impurities are separated by centrifugal force by aggregating and rotating centrifugation, the problem of rapid accumulation of impurities in the filter screen is solved, and efficient filtration separation and convenient cleaning are achieved.

CN120361620APending Publication Date: 2025-07-25ORION (HUBEI) BIOENGINEERING CO LTD
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Patent Information

Application Number
CN202510675481.4
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-23
Publication Date
2025-07-25

AI Technical Summary

Technical Problem

In the production of concentrated feed, the existing water purification device quickly accumulates impurities on the filter, resulting in frequent replacement and cleaning, reducing the effectiveness of the equipment.

Method used

The cylinder assembly is embedded in the sealing assembly and water guide plate, combined with the closed slot and separation assembly of the spiral structure, the impurities are gathered by centrifugal force, and the impurities are separated and discharged by rotary centrifugation, achieving convenient cleaning.

Benefits of technology

It improves the filtration and separation effect and cleaning convenience of the water purification device, reduces the downtime of the device, and improves the use efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of water purification devices, and discloses a water purification device for concentrated feed production, which comprises a cylinder assembly, a sealing assembly is movably embedded in the cylinder assembly, a water guide assembly is fixedly mounted at the top end in the cylinder assembly, and a water guide plate is fixedly mounted in the cylinder assembly. According to the water purifying device for concentrated feed production, an inner channel and a closed slot are formed in the cylinder assembly, a water guide plate is arranged in the outer cylinder, and the closed assemblies with the same spiral line structure are synchronously arranged, so that the inner channel and the closed slot are formed in the cylinder assembly, and the water guide plate is arranged in the outer cylinder; through the arrangement of the water guide plate, water flow entering from the top end can flow along the surface of the water guide plate, then impurities in water can be gathered towards the position where the closed insertion groove is located under the action of centrifugal force in the downward spiral flowing process, and the water flow can be relatively gentle through the spiral flowing mode; further, the precipitation and separation of impurities are facilitated.
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Description

Technical Field

[0001] The present invention relates to the technical field of water purification devices, and particularly to a water purification device for the production of concentrated feed. Background Art

[0002] Concentrated feed, also known as protein supplementary feed, is a semi-finished compound feed prepared from protein feed, mineral feed, and additive premix. When a certain proportion of energy feed is added, it becomes a complete feed that meets the nutritional needs of animals. It has the advantages of high protein content, comprehensive nutritional components, and convenient use. In the production of concentrated feed, the water source used needs to be clean and clear to ensure the quality and quality of the feed. Existing water purification devices are mainly divided into preliminary filtration and fine filtration. Among them, preliminary filtration simply uses filter mesh materials to filter and separate impurities in water. However, such a filtration method still has some problems, which are as follows:

[0003] Although the simple screen filtration method can achieve the preliminary filtration effect, a large amount of impurities will quickly accumulate on the filter screen after filtration, and these impurities cannot be effectively discharged in the water purification device in a timely manner, resulting in the need to frequently replace and clean the filter screen of the entire device, greatly reducing the use effect of the equipment. For this reason, we propose a water purification device for the production of concentrated feed. Summary of the Invention

[0004] The present invention provides a water purification device for the production of concentrated feed, which has the advantages of good filtration and separation effect and easy cleaning, and solves the problems raised in the above background art.

[0005] The present invention provides the following technical solution: A water purification device for the production of concentrated feed, including a cylinder assembly. A sealing assembly is movably installed inside the cylinder assembly. A water guiding assembly is fixedly installed at the top end inside the cylinder assembly. A water guiding plate is fixedly installed inside the cylinder assembly. A water collecting conical cylinder is fixedly installed at the bottom end of the cylinder assembly. An annular airbag is fixedly installed by embedding at the bottom end of the water collecting conical cylinder. A separation assembly is movably installed inside the bottom end of the water collecting conical cylinder. An external driving assembly is fixedly installed on one side of the bottom end of the water collecting conical cylinder. An external water guiding ring is movably installed at the bottom end of the separation assembly. A collecting ring groove is installed outside the water collecting conical cylinder;

[0006] The cylinder assembly includes an outer cylinder. An inner channel is opened inside the outer cylinder. A sealing slot is opened above the inner channel. An outer slot opening is provided on the outer side of the outer cylinder, and an outer movable sealing plate is embedded and installed therein;

[0007] The sealing assembly includes a top ring. A straight rod is fixedly installed at the bottom end of the top ring. A baffle is fixedly installed by sleeving on the straight rod;

[0008] The water guiding component includes a water guiding pipe. An upper filtering hole is opened at the top end of the water guiding pipe, and a lower filtering hole is opened at the bottom end of the water guiding pipe;

[0009] The separation component includes a collection cylinder. An external gear ring is fixedly installed on the outer side surface of the collection cylinder. Discharge ports are evenly and annularly opened on the side surface of the collection cylinder, and a sewage discharge component is movably installed at the position of the discharge ports. A drainage port is arranged at the bottom end of the collection cylinder;

[0010] The external driving component includes a suspension rod. A driven driving component is fixedly installed at the bottom end of the suspension rod, and a gas guiding component is fixedly installed on one side of the driven driving component;

[0011] In a preferred embodiment, the bottom end of the outer cylinder body is hermetically and fixedly connected to the top end of the water collection conical cylinder. A cylindrical extension pipe is arranged at the bottom end of the water collection conical cylinder. The inner channel is opened within the wall thickness of the cylinder body component, and the closed slot communicates with the inner channel. The closed slot is opened in a spiral structure. The outer slot opening at the position of the outer movable sealing plate communicates with the inside of the inner channel and is located at the bottom end outside the outer cylinder body. The closing component is movably inserted into the closed slot, and the water guiding plate is spiral and is flatly attached to the bottom end of the closed slot.

[0012] In a preferred embodiment, the top ring is arranged at the top end of the cylinder body component. The baffle is in a spiral structure and is movably inserted in adaptation with the closed slot. When the baffle is lowered, the bottom end thereof is in sealing contact with the bottom end of the closed slot.

[0013] In a preferred embodiment, the top end of the water guiding pipe is fixedly installed with the inner top end of the cylinder body component. The upper filtering hole is opened in the area of the height inside the outer cylinder body. The lower filtering hole is opened in the area where the separation component is located, and a water blocking plate inclined downward is arranged on the inner wall of the water guiding pipe at the position where the lower filtering hole is located.

[0014] In a preferred embodiment, a convex ring is arranged at the top end of the collection cylinder, a positioning ring is arranged at the top end of the convex ring, and a ball is embedded at the bottom end of the convex ring. The bottom end of the drainage port is movably inserted inside the outer water guiding ring and can rotate.

[0015] In a preferred embodiment, the sewage discharge component includes side rails. A guide block is movably installed inside the side rails. An outer vertical plate is fixedly installed on one side of the guide block. A traction rope is fixedly installed at the top of one end of the guide block. The traction rope is wound and connected to a runner. A bracket is movably installed on the side surface of the runner. One ends of the side rails and the bracket are fixedly installed on the inner surface of the collection cylinder. The two sides of the guide block are slidably arranged in a limiting and clamping manner on the side rails. An inclined surface is opened downward at one end inside the collection cylinder on the lower surface of the guide block. The outer vertical plate is attached to the outside of the collection cylinder. The runner is rotationally connected through a pin shaft, and a return spring is sleeved on the pin shaft.

[0016] In a preferred embodiment, the top end of the suspension rod is fixedly installed on the outer lower surface of the water collecting conical cylinder, the air guiding assembly is connected to the driven driving assembly in a penetrating manner, one end of the air guiding assembly is hermetically connected to the annular airbag in a penetrating manner, and the annular airbag is sleeved on the outer surface of the collecting cylinder.

[0017] In a preferred embodiment, the driven driving assembly includes a housing, and an inner airbag is fixedly installed at the bottom end in the housing. A first support plate is fixedly installed at the top end of the inner airbag. A second support plate is fixedly installed at the top end of the first support plate. An external driving motor is fixedly installed above the second support plate. An external driving round rod is fixedly installed on the output shaft of the external driving motor. A driving gear is fixedly installed at the bottom end of the external driving round rod. The inner airbag is fixedly connected to the air guiding assembly in a penetrating manner. The first support plate is slidably arranged in the housing. The external driving round rod penetrates through the inner airbag and the first support plate and is rotatably arranged. The driving gear is meshed with the external toothed ring and can be separated from the external toothed ring.

[0018] In a preferred embodiment, the air guiding assembly includes an air guiding central cavity. A first air guiding pipe is fixedly installed at one end of the air guiding central cavity. A second air guiding pipe is fixedly installed at the other end of the air guiding central cavity. A third air guiding pipe is fixedly installed on one side of the air guiding central cavity.

[0019] In a preferred embodiment, the first air guiding pipe is hermetically connected to an external air supply device in a penetrating manner. The second air guiding pipe is hermetically connected to the annular airbag in a penetrating manner. The third air guiding pipe is hermetically connected to the inner airbag.

[0020] The present invention has the following beneficial effects:

[0021] 1. For the water purification device for the production of concentrated feed, by arranging an inner channel and a closed slot inside the cylinder assembly, arranging a water guiding plate inside the outer cylinder, and arranging a closing assembly with the same spiral structure synchronously, the water flowing in from the top can flow along the surface of the water guiding plate. Then, the impurities in the water can gather towards the position of the closed slot under the action of centrifugal force during the downward spiral flow. And the spiral flow form can make the water flow relatively gentle, which is more conducive to the precipitation and separation of the impurities therein. After the rotational flow is completed, the separated and precipitated impurities can open the closing effect of the closing assembly on the closed slot, and by increasing the water inflow, the impurities on the side can be flushed into the inner channel. Finally, the outer movable sealing plate on the side can be opened to completely discharge the impurities therein, improving the subsequent cleaning convenience of the device.

[0022] 2. The water purification device for concentrated feed production is provided with a separation component at the bottom. By using the separation component, the water flowing down from above can be further concentrated into the collection cylinder. Then, the water flows through the lower filter holes in the middle and re-enters the water guide pipe to flow downward. The larger particulate impurities separated by secondary precipitation in the collection cylinder can be driven and adjusted by an external driving component to drive the external gear ring to rotate later, thereby driving the entire collection cylinder to rotate around the bottom end of the water collection cone cylinder. During the rotation process, the internal structure of the sewage discharge component will be opened under the action of centrifugal force, so that the impurities separated by precipitation can be discharged from the collection cylinder through the laterally opened sewage discharge component and collected inside the detachably installed external water guide ring. This process can achieve normal water supply or reduce the water supply volume while quickly rotating and centrifugally separating and cleaning the impurities, greatly improving the convenience of use of this water purification device. BRIEF DESCRIPTION OF THE DRAWINGS

[0023] Figure 1 is a first three-dimensional structural schematic diagram of the present invention;

[0024] Figure 2 is a second three-dimensional structural schematic diagram of the present invention;

[0025] Figure 3 is a sectional structural schematic diagram of the present invention;

[0026] Figure 4 is a three-dimensional structural schematic diagram of the closing component of the present invention;

[0027] Figure 5 is a three-dimensional structural schematic diagram of the connection of the closing component, water guide component and water guide plate of the present invention;

[0028] Figure 6 is a three-dimensional structural schematic diagram of the separation component of the present invention;

[0029] Figure 7 is a three-dimensional structural schematic diagram of the sewage discharge component of the present invention;

[0030] Figure 8 is a three-dimensional structural schematic diagram of the connection of the external driving component and the ring airbag of the present invention;

[0031] Figure 9 is a three-dimensional structural schematic diagram of the connection of the driven driving component and the air guide component of the present invention.

[0032] In the figure: 1. Cylinder assembly; 11. Outer cylinder; 12. Inner channel; 13. Closed slot; 14. Outer movable sealing plate; 2. Sealing assembly; 21. Top ring; 22. Straight rod; 23. Baffle; 3. Water guiding assembly; 31. Water guiding pipe; 32. Upper filtering hole; 33. Lower filtering hole; 4. Water guiding plate; 5. Water collecting conical cylinder; 6. Ring airbag; 7. Separation assembly; 71. Collection cylinder; 72. Outer tooth ring; 73. Sewage discharge assembly; 731. Side rail; 732. Guide block; 733. Outer vertical plate; 734. Traction rope; 735. Runner; 736. Bracket; 74. Drain port; 8. Outer drive assembly; 81. Suspension rod; 82. Driven drive assembly; 821. Inner airbag; 822. First support plate; 823. Second support plate; 824. Outer drive motor; 825. Outer drive round rod; 826. Drive gear; 83. Air guiding assembly; 831. Air guiding central cavity; 832. First air guiding pipe; 833. Second air guiding pipe; 834. Third air guiding pipe; 9. Outer water guiding ring; 10. Collection ring groove. Detailed implementation mode

[0033] The technical solutions in the present invention will be clearly and completely described below in conjunction with the accompanying drawings in the present invention. In addition, the forms of the various structures described in the following embodiments are only examples, and the water purification device for concentrated feed production involved in the present invention is not limited to the various structures described in the following embodiments. All other embodiments obtained by those of ordinary skill in the art without creative efforts belong to the scope of protection of the present invention.

[0034] Please refer to Figures 1-3 , a water purification device for concentrated feed production, including a cylinder assembly 1, a sealing assembly 2 is movably installed in the cylinder assembly 1 in an embedded manner, a water guiding assembly 3 is fixedly installed at the inner top end of the cylinder assembly 1, a water guiding plate 4 is fixedly installed inside the cylinder assembly 1, a water collecting conical cylinder 5 is fixedly installed at the bottom end of the cylinder assembly 1, a ring airbag 6 is fixedly installed in an embedded manner at the bottom end of the water collecting conical cylinder 5, a separation assembly 7 is movably installed at the bottom end of the water collecting conical cylinder 5, an outer drive assembly 8 is fixedly installed at one side of the bottom end of the water collecting conical cylinder 5, an outer water guiding ring 9 is movably installed at the bottom end of the separation assembly 7, and a collection ring groove 10 is installed outside the water collecting conical cylinder 5;

[0035] In this embodiment, it should be noted that by providing an inner channel 12 and a closed slot 13 inside the cylinder assembly 1, a water guide plate 4 is provided inside the outer cylinder 11, and a closed assembly 2 with the same spiral structure is synchronously provided. It can make the water flowing in from the top flow along the surface of the water guide plate 4. As a result, the impurities in the water can gather towards the position where the closed slot 13 is located under the action of centrifugal force during the downward spiral flow. Moreover, the spiral flow form can make the water flow relatively gently, which is more conducive to the precipitation and separation of impurities therein. After the rotational flow is completed, the separated and precipitated impurities can be flushed into the inner channel 12 by opening the closing effect of the closed assembly 2 on the closed slot 13 and increasing the water inflow. Finally, the outer movable sealing plate 14 on the side can be opened to completely discharge the impurities therein, improving the subsequent cleaning convenience of the device. By providing a separation assembly 7 at the bottom, the separation assembly 7 can further concentrate the water flowing down from above into the collection cylinder 71. Then, the water flows through the lower filter hole 33 in the middle and re-enters the water guide pipe 31 to flow downward. For the larger particle impurities separated by secondary precipitation in the collection cylinder 71, the outer ring gear 72 can be driven to rotate by an external driving assembly 8 later, thereby driving the entire collection cylinder 71 to rotate around the bottom end of the water collecting conical cylinder 5. During the rotation process, the internal structure of the sewage discharge assembly 73 will be opened under the action of centrifugal force. In this way, the separated and precipitated impurities can be discharged from the collection cylinder 71 through the sewage discharge assembly 73 opened on the side and collected inside the detachable outer water guide ring 9. This process can achieve normal water supply or reduce the water supply while quickly rotating and centrifugally separating and cleaning the impurities therein, greatly improving the use convenience of the water purification device.

[0036] Please refer to Figures 1-3 , a water purification device for concentrated feed production, including a cylinder assembly 1. The cylinder assembly 1 includes an outer cylinder 11. An inner channel 12 is opened inside the outer cylinder 11. A closed slot 13 is opened above the inner channel 12. An outer slot opening is provided on the outer side of the outer cylinder 11, and an outer movable sealing plate 14 is embedded and installed therein;

[0037] In this embodiment, it should be noted that the bottom end of the outer cylinder 11 is fixedly and sealingly connected to the top end of the water collecting conical cylinder 5. A cylindrical extension pipe is provided at the bottom end of the water collecting conical cylinder 5. The inner channel 12 is opened within the wall thickness of the cylinder assembly 1 and the closed slot 13 communicates with the inner channel 12. The closed slot 13 is formed in a spiral structure. The outer slot opening at the outer movable sealing plate 14 communicates with the inside of the inner channel 12 and is located at the bottom end outside the outer cylinder 11. The closing assembly 2 is movably inserted into the closed slot 13. The water guide plate 4 is spiral and is flatly attached to the bottom end of the closed slot 13. In this way, by using the guiding action of the water guide plate 4, the impurity particles in the water flow can flow centrifugally outward along its surface. Then, when the closing assembly 2 is opened, the particulate impurities can flow down to the bottom end of the inner channel 12. Finally, the impurities can be removed by opening the outer movable sealing plate 14, which maximally avoids the blockage of the device after long-term use and the need for shutdown cleaning, and ensures the use efficiency of the device.

[0038] Please refer to Figures 1-4 , a water purification device for concentrated feed production, including a closing assembly 2. The closing assembly 2 includes a top ring 21. A straight rod 22 is fixedly installed at the bottom end of the top ring 21. A baffle 23 is fixedly installed in a sleeved manner on the straight rod 22.

[0039] In this embodiment, it should be noted that the top ring 21 is located at the top end of the cylinder assembly 1. The baffle 23 is in a spiral structure and is movably inserted in adaptation with the closed slot 13. When the baffle 23 is lowered, the bottom end thereof is in sealing contact with the bottom end of the closed slot 13. In this way, when it is necessary to discharge the impurities separated by the flow on the water guide plate 4, the top ring 21 can be lifted, and then the impurities are flushed into the inner channel 12 by the rotational flow impact of the water flow, so as to facilitate the discharge. And after the impurities are discharged, the communication between the inner channel 12 and the inside of the outer cylinder 11 can be locked and closed automatically to ensure the normal use of the device.

[0040] Please refer to Figures 1-5 , a water purification device for concentrated feed production, including a water guide assembly 3. The water guide assembly 3 includes a water guide pipe 31. An upper filter hole 32 is opened at the top end of the water guide pipe 31. A lower filter hole 33 is opened at the bottom end of the water guide pipe 31.

[0041] In this embodiment, it should be noted that the top end of the water guide pipe 31 is fixedly installed with the inner top end of the cylinder assembly 1. The upper filter holes 32 are opened in the area where the height of the outer cylinder 11 is located. The lower filter holes 33 are opened in the area where the separation assembly 7 is located. And at the position where the lower filter holes 33 are located, a water baffle inclined downward is arranged on the inner wall of the water guide pipe 31. In this way, most of the water flowing on the water guide plate 4 can flow into the water guide pipe 31 from the upper filter holes 32, while the particulate impurities are separated outward under the action of centrifugal force, achieving a good filtering effect. At the same time, when the water flowing downward impacts the water baffle arranged at the lower filter holes 33 in the water guide pipe 31, it will not flow backward into the separation assembly 7, thus ensuring the water flow directionality of the entire device.

[0042] Please refer to Figures 1-6 , a water purification device for concentrated feed production, includes a separation assembly 7. The separation assembly 7 includes a collection cylinder 71. An outer toothed ring 72 is fixedly installed on the outer side surface of the collection cylinder 71. A discharge port is annularly and evenly opened on the side surface of the collection cylinder 71. And a sewage discharge assembly 73 is movably installed at the discharge port. A drainage port 74 is arranged at the bottom end of the collection cylinder 71;

[0043] In this embodiment, it should be noted that a convex ring is arranged at the top end of the collection cylinder 71, a positioning ring is arranged at the top end of the convex ring, and a ball is embedded at the bottom end of the convex ring. The bottom end of the drainage port 74 is movably inserted into the inner part of the outer water guide ring 9 and can be rotatably arranged. In this way, the outer toothed ring 72 can be driven to rotate by the drive of the outer drive assembly 8, and then the sewage discharge assembly 73 is driven to rotate. Under the action of centrifugal force, the sewage discharge assembly 73 will open the discharge port, and the particulate impurities carried at the bottom end inside the collection cylinder 71 can also be thrown out along the discharge port under the action of centrifugal force, further improving the filtering and separation effect of the device. And the main water flow channel set by the device is inside the water guide pipe 31. In this way, even if the impurities are discharged by rotary centrifugation at this place, it will not affect the normal flow of the water inside the central water guide pipe 31. Thus, the device can perform self-cleaning under continuous water flow, greatly improving the use efficiency and effect of the device.

[0044] Please refer to Figures 3-7 , a water purification device for concentrated feed production, includes a sewage discharge assembly 73. The sewage discharge assembly 73 includes a side rail 731. A guide block 732 is movably installed inside the side rail 731. An outer vertical plate 733 is fixedly installed on one side of the guide block 732. A traction rope 734 is fixedly installed at the top of one end of the guide block 732. The traction rope 734 is wound and connected to a runner 735. A bracket 736 is movably installed on the side surface of the runner 735;

[0045] In this embodiment, it should be noted that one end of the side rail 731 and the bracket 736 is fixedly installed on the inner surface of the collection cylinder 71. The two sides of the guide block 732 are slidably arranged by being clamped on the side rail 731. A downwardly opening inclined surface is arranged at one end of the lower surface of the guide block 732 inside the collection cylinder 71. The outer vertical plate 733 is arranged in contact with the outside of the collection cylinder 71. The runner 735 is rotationally connected by a pin shaft and a return spring is sleeved on the pin shaft. In this way, when it is necessary to discharge the filter, the guide block 732 can be thrown outwards by the centrifugal force generated by rotation, thereby opening the side channel, and the filter can be discharged along the lower surface of the guide block 732, so as to effectively discharge the filter without affecting the normal water supply of the water supply device.

[0046] Please refer to Figures 1-8 , a water purification device for concentrated feed production, including an external drive assembly 8. The external drive assembly 8 includes a suspension rod 81. A driven drive assembly 82 is fixedly installed at the bottom end of the suspension rod 81. A gas guide assembly 83 is fixedly installed on one side of the driven drive assembly 82;

[0047] In this embodiment, it should be noted that the top end of the suspension rod 81 is fixedly installed on the outer lower surface of the water collection conical cylinder 5. The gas guide assembly 83 is connected to the driven drive assembly 82 in a through manner. One end of the gas guide assembly 83 is hermetically connected to the annular airbag 6 in a through manner. The annular airbag 6 is sleeved on the outer surface of the collection cylinder 71. The gas guide assembly 83 is connected to an external gas supply device in a through manner. In this way, when it is necessary to lock the separation assembly 7, only the external gas supply device needs to supply gas into the annular airbag 6, so that the annular airbag 6 expands and clamps the separation assembly 7 to fix it, ensuring the stable operation of the whole device and being able to seal the rotating part to avoid leakage.

[0048] Please refer to Figures 8-9 , a water purification device for concentrated feed production, including a driven drive assembly 82. The driven drive assembly 82 includes a housing and an inner airbag 821 is fixedly installed at the bottom end in the housing. A first support plate 822 is fixedly installed at the top end of the inner airbag 821. A second support plate 823 is fixedly installed at the top end of the first support plate 822. An external drive motor 824 is fixedly installed above the second support plate 823. An external drive round rod 825 is fixedly installed on the output shaft of the external drive motor 824. A drive gear 826 is fixedly installed at the bottom end of the external drive round rod 825;

[0049] In this embodiment, it should be noted that the inner airbag 821 is fixedly connected to the air guiding assembly 83 in a penetrating manner. The first support plate 822 is slidably arranged in the housing. The outer driving round rod 825 penetrates through the inner airbag 821 and the first support plate 822 and is rotatably arranged. The driving gear 826 is meshed with the external toothed ring 72 and can be separated from the external toothed ring 72. In this way, when it is necessary to clean the impurity particles in the separation assembly 7, only the driving gear 826 needs to be used to drive the external toothed ring 72 to drive the collection cylinder 71 to rotate, so that the centrifugal force can be used to throw them out.

[0050] Please refer to Figures 8-9 , a water purification device for the production of concentrated feed, including an air guiding assembly 83. The air guiding assembly 83 includes an air guiding central cavity 831. One end of the air guiding central cavity 831 is fixedly installed with a first air guiding pipe 832, the other end of the air guiding central cavity 831 is fixedly installed with a second air guiding pipe 833, and one side of the air guiding central cavity 831 is fixedly installed with a third air guiding pipe 834;

[0051] In this embodiment, it should be noted that the first air guiding pipe 832 is hermetically connected to the external air supply device in a penetrating manner, the second air guiding pipe 833 is hermetically connected to the annular airbag 6 in a penetrating manner, and the third air guiding pipe 834 is hermetically connected to the inner airbag 821 in a penetrating manner. In this way, when the external air supply device supplies air, the driving gear 826 can be lifted after the inner airbag 821 expands, so that the driving gear 826 is separated from the external toothed ring 72, and at the same time, the annular airbag 6 will expand, and then clamp the outside of the collection cylinder 71 and achieve sealing to ensure the normal use of the device.

[0052] Working principle: External water flow enters the interior of the outer cylinder 11 through the top of the cylinder assembly 1 and flows on the upper surface of the water guide plate 4. A swirling flow is formed during the flow process, causing the impurities therein to diffuse to the bottom edge of the surrounding closed slots 13 under the action of centrifugal force. When cleaning is required, the top ring 21 can be lifted to open the baffle 23 to open the internal channel of the cylinder assembly 1. Then, the impurities flow centrally into the inner channel 12 under the drive of the water flow. Subsequently, the outer movable sealing plate 14 on the side can be opened to clean the impurities inside the inner channel 12. Most of the water flow flows into the water guide pipe 31 through the upper filter holes 32 and flows downward, and the rest flows to the inside of the bottom collection cylinder 71 through the bottom end of the water guide plate 4. Part of the water flow continues to flow to the water guide pipe 31 through the lower filter holes 33, while the impurities gradually deposit at the bottom end inside the collection cylinder 71. When cleaning is required, the external air supply device disconnects the air supply, causing the outer drive round rod 825 to engage with the outer gear ring 72. The outer drive motor 824 starts to drive the outer drive round rod 825 to rotate, and then drives the entire sewage discharge assembly 73 to rotate through the outer gear ring 72. In this way, the guide block 732 and the outer vertical plate 733 extend outwards during the rotation process, and the impurities at the bottom end of the collection cylinder 71 are discharged into the collection ring groove 10 through the laterally opened channel for subsequent overall replacement and collection. Finally, the water flow is discharged from the bottom outer water guide ring 9 to the subsequent equipment for supply.

[0053] Although the embodiments of the present invention have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principles and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A water purification device for concentrated feed production, comprising a cylinder assembly (1), characterized in that: A sealing component (2) is movably installed by being embedded in the cylinder component (1). A water guiding component (3) is fixedly installed at the inner top end of the cylinder component (1). A water guiding plate (4) is fixedly installed inside the cylinder component (1). A water collecting conical cylinder (5) is fixedly installed at the bottom end of the cylinder component (1). A ring airbag (6) is fixedly installed by being embedded at the bottom end of the water collecting conical cylinder (5). A separating component (7) is movably installed inside the bottom end of the water collecting conical cylinder (5). An external driving component (8) is fixedly installed at one side of the bottom end of the water collecting conical cylinder (5). An external water guiding ring (9) is movably installed at the bottom end of the separating component (7). A collecting ring groove (10) is installed outside the water collecting conical cylinder (5). The cylinder component (1) includes an outer cylinder (11). An inner channel (12) is formed inside the outer cylinder (11). A sealing slot (13) is formed above the inner channel (12). An outer slot opening is formed on the outer side of the outer cylinder (11), and an outer movable sealing plate (14) is embedded and installed therein. The sealing component (2) includes a top ring (21). A straight rod (22) is fixedly installed at the bottom end of the top ring (21). A baffle plate (23) is fixedly installed by being sleeved on the straight rod (22). The water guiding component (3) includes a water guiding pipe (31). An upper filtering hole (32) is formed at the top end of the water guiding pipe (31). A lower filtering hole (33) is formed at the bottom end of the water guiding pipe (31). The separating component (7) includes a collecting cylinder (71). An outer toothed ring (72) is fixedly installed on the outer side surface of the collecting cylinder (71). Discharge ports are evenly formed in a ring shape on the side surface of the collecting cylinder (71), and a sewage discharging component (73) is movably installed at the positions of the discharge ports. A drainage port (74) is arranged at the bottom end of the collecting cylinder (71). The external driving component (8) includes a suspension rod (81). A driven driving component (82) is fixedly installed at the bottom end of the suspension rod (81). An air guiding component (83) is fixedly installed at one side of the driven driving component (82).

2. The water purification device for the production of concentrated feed according to claim 1, characterized in that: The bottom end of the outer cylinder (11) is fixedly and sealingly connected to the top end of the water collecting conical cylinder (5). A cylindrical extension pipe is arranged at the bottom end of the water collecting conical cylinder (5). The inner channel (12) is formed inside the wall thickness of the cylinder component (1), and the sealing slot (13) communicates with the inner channel (12). The sealing slot (13) is formed in a spiral structure. The outer slot opening at the outer movable sealing plate (14) communicates with the inside of the inner channel (12) and is located at the bottom end outside the outer cylinder (11). The sealing component (2) is movably inserted into the sealing slot (13). The water guiding plate (4) is spiral and is flatly attached to the bottom end of the sealing slot (13).

3. The water purification device for concentrated feed production according to claim 1, characterized in that: The top ring (21) is arranged at the top end of the cylinder component (1). The baffle plate (23) is spiral and is movably inserted and matched with the sealing slot (13). When the baffle plate (23) is lowered, the bottom end thereof is in sealing fit with the bottom end of the sealing slot (13).

4. The water purification device for concentrated feed production according to claim 1, characterized in that: The top end of the water guide pipe (31) is fixedly installed with the inner top end of the cylinder assembly (1). The upper filter holes (32) are opened in the area of the height inside the outer cylinder (11). The lower filter holes (33) are opened in the area where the separation assembly (7) is located. And at the position where the lower filter holes (33) are located, a water baffle inclined downward is arranged on the inner wall of the water guide pipe (31).

5. The water purification device for the production of concentrated feed according to claim 1, characterized in that: The top end of the collection cylinder (71) is provided with a convex ring, and the top end of the convex ring is provided with a positioning ring. And the bottom end of the convex ring is embedded with a ball. The bottom end of the drain port (74) is movably inserted into the inner part of the outer water guide ring (9) and can be rotatably arranged.

6. The water purification device for the production of concentrated feed according to claim 1, characterized in that: The sewage discharge assembly (73) includes a side rail (731). A guide block (732) is movably installed in the side rail (731). One side of the guide block (732) is fixedly installed with an outer vertical plate (733). The top of one end of the guide block (732) is fixedly installed with a traction rope (734). The traction rope (734) is wound and connected with a runner (735). A bracket (736) is movably installed on the side surface of the runner (735). One ends of the side rail (731) and the bracket (736) are fixedly installed on the inner surface of the collection cylinder (71). The two sides of the guide block (732) are limited and clamped to slide on the side rail (731). The lower surface of the guide block (732) is provided with an inclined surface opening downward at one end inside the collection cylinder (71). The outer vertical plate (733) is attached to the outside of the collection cylinder (71). The runner (735) is rotationally connected through a pin shaft, and a return spring is sleeved on the pin shaft.

7. The water purification device for the production of concentrated feed according to claim 1, characterized in that: The top end of the suspension rod (81) is fixedly installed on the outer lower surface of the water collection conical cylinder (5). The air guide assembly (83) is connected to the driven drive assembly (82) in a penetrating manner. One end of the air guide assembly (83) is hermetically connected to the annular air bag (6) in a penetrating manner. The annular air bag (6) is sleeved on the outer surface of the collection cylinder (71).

8. The water purification device for the production of concentrated feed according to claim 7, characterized in that: The driven drive assembly (82) includes a housing, and an inner air bag (821) is fixedly installed at the bottom end in the housing. The top end of the inner air bag (821) is fixedly installed with a first support plate (822). The top end of the first support plate (822) is fixedly installed with a second support plate (823). An outer drive motor (824) is fixedly installed above the second support plate (823). An outer drive round rod (825) is fixedly installed on the output shaft of the outer drive motor (824). The bottom end of the outer drive round rod (825) is fixedly installed with a drive gear (826). The inner air bag (821) is fixedly connected to the air guide assembly (83) in a penetrating manner. The first support plate (822) is slidably arranged in the housing. The outer drive round rod (825) passes through the inner air bag (821) and the first support plate (822) and is rotatably arranged. The drive gear (826) is engaged with the outer toothed ring (72) and can be separated from the outer toothed ring (72).

9. The water purification device for concentrated feed production according to claim 7, characterized in that: The air guiding assembly (83) includes an air guiding central cavity (831). One end of the air guiding central cavity (831) is fixedly installed with a first air guiding pipe (832), the other end of the air guiding central cavity (831) is fixedly installed with a second air guiding pipe (833), and one side of the air guiding central cavity (831) is fixedly installed with a third air guiding pipe (834).

10. A water purification device for the production of concentrated feed according to claim 9, characterized in that: The first air guiding pipe (832) is hermetically connected in a penetrating manner to an external air supply device, the second air guiding pipe (833) is hermetically connected in a penetrating manner to the annular airbag (6), and the third air guiding pipe (834) is hermetically connected in a penetrating manner to the inner airbag (821).

Citation Information

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