Chicken breeding feed production material mixing equipment and use method thereof

By designing feed production material mixing equipment for chicken farming, and utilizing agitation mixing, dust suppression, and auxiliary discharge devices, the problems of roughage and concentrate separation and dust generation were solved, achieving efficient and safe feed mixing and discharge.

CN121944890APending Publication Date: 2026-05-01HENGYANG HONGXIN AGRI DEV CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
HENGYANG HONGXIN AGRI DEV CO LTD
Filing Date
2026-04-01
Publication Date
2026-05-01

AI Technical Summary

Technical Problem

In chicken farming, the large difference in particle size between roughage and concentrate makes it easy for the feed to separate during mixing, which affects the mixing effect. At the same time, the dust generated during the mixing process is harmful to the environment and the health of operators, and feed that is not finely crushed affects the production quality.

Method used

A feed production material mixing device for chicken farming was designed, including a stirring mixing device, a dust suppression device, and an auxiliary discharge device. Vertical mixing is achieved through spirally distributed inclined stirring plates, and fine crushing is performed by setting fine shavings and large spiral strips. Dust is captured by a bottom inclined plate and the inner wall is cleaned by a triangular scraper. The auxiliary discharge device ensures smooth discharge through double rods and inclined push plates.

Benefits of technology

It effectively prevents the separation of roughage and concentrate, reduces dust pollution, improves mixing uniformity and production environment safety, and ensures the efficiency of feed crushing and discharge.

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Abstract

The invention relates to the technical field of feed mixing, and particularly discloses feed production material mixing equipment for chicken breeding and a use method of the feed production material mixing equipment. Comprising a linkage rod, an inclined stirring plate is fixedly connected to the outer side of the linkage rod, a fine crushing thorn block is fixedly connected to one side of the inclined stirring plate, and a large spiral strip is fixedly connected to the side, away from the fine crushing thorn block, of the inclined stirring plate. A plurality of inclined stirring plates which are spirally distributed on the outer side of a linkage rod are used for alternately stirring and mixing the feed at different heights in the circular mixing barrel in the vertical direction, so that the phenomenon that the mixing effect is influenced by the phenomenon that coarse feed and concentrated feed are easily layered during mixing due to relatively large particle size difference is prevented; a plurality of fine crushing thorn blocks are arranged on the surface of the inclined stirring plate and are used for performing fine crushing treatment on the mixed feed when being in contact with the mixed feed, so that the influence on the mixing effect caused by difficulty in fully mixing the feed in the circular mixing barrel when the granularity difference of the feed is relatively large is prevented.
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Description

Technical Field

[0001] This invention relates to the field of feed mixing technology, specifically to a feed production material mixing device for chicken farming and its usage method. Background Technology

[0002] With the large-scale and intensive development of global animal husbandry, the chicken farming industry, as the core sector of poultry farming, has gradually transformed from the traditional free-range model to standardized and refined farming. Feed is the core material basis for chicken growth, development, and improved production performance, and its quality directly determines the farming efficiency and product safety. Material mixing is a core link in the feed production process, which directly affects the nutritional uniformity of feed, animal feeding effect, and farming economic benefits. Therefore, efficient and precise feed mixing equipment has become a key equipment support for the chicken farming feed production process.

[0003] In the production of mixed feed, roughage and concentrate need to be added in sequence. However, due to the large difference in particle size between roughage and concentrate, stratification is likely to occur during mixing, affecting the mixing effect. Therefore, we propose a feed production material mixing equipment for chicken farming and its usage method. Summary of the Invention

[0004] To solve the above-mentioned technical problems, the present invention provides a feed production material mixing device for chicken farming and its usage method, including a circular mixing tank, a triangular fixing plate fixedly connected to the inner wall of the circular mixing tank, a drive motor fixedly connected to the top of the triangular fixing plate, a drive shaft of the drive motor passing through the triangular fixing plate and fixedly connected to a stirring mixing device, a dust suppression device rotatably connected to the bottom of the triangular fixing plate through a bearing, an auxiliary discharge device sleeved and fixedly connected to the outside of the stirring mixing device, and a discharge pipe connected to the outside of the circular mixing tank; The stirring mixing device includes a linkage rod, and an inclined stirring plate is fixedly connected to the outside of the linkage rod. Multiple inclined stirring plates spirally distributed on the outside of the linkage rod perform vertical alternating stirring and mixing of feed at different heights inside the circular mixing barrel, preventing the roughage and concentrate from easily separating during mixing due to their large particle size differences, which would affect the mixing effect. The top of the agitating mixing device is rotatably connected to the bottom of the triangular fixing plate by a rotating bolt. The bottom of the agitating mixing device is rotatably connected to the inner wall of the circular mixing barrel by a rotating bolt. The dust suppression device is sleeved on the agitating mixing device and fixedly connected to the agitating mixing device. The outer side of the auxiliary discharge device is fixedly connected to the inner wall of the circular mixing barrel. The top of the linkage rod is rotatably connected to the bottom of the triangular fixing plate by a rotating bolt. The top of the linkage rod is fixedly connected to the drive shaft of the drive motor. The bottom of the linkage rod is rotatably connected to the inner wall of the circular mixing barrel by a rotating bolt. The outer side of the linkage rod is fixedly connected to the inner side of the dust suppression device. The outer side of the linkage rod is fixedly connected to the inner side of the auxiliary discharge device. Multiple inclined stirring plates are provided, and the multiple inclined stirring plates are spirally distributed on the outer side of the linkage rod. A fine, spiky block is fixedly connected to one side of the inclined mixing plate. By setting multiple fine, spiky blocks on the surface of the inclined mixing plate, the feed is finely crushed upon contact with the mixed feed. This prevents the feed particles in the circular mixing tank from being difficult to mix thoroughly due to large differences in particle size, thus affecting the mixing effect. The fine, spiky blocks on the surface of the inclined mixing plate also extend the time the feed stays on the plate, preventing the feed pushed by the plate from sliding rapidly outwards due to its slope, resulting in a short vertical distance. A large spiral bar is fixedly connected to the side of the inclined mixing plate away from the fine, spiky blocks. The large spiral bar on one side of the plate performs a screening separation of the mixed feed, preventing uncrushed feed from mixing with the already crushed feed, which would lead to low crushing efficiency and affect the mixing effect. The fine, spiky blocks are provided in multiple quantities, and the multiple fine, spiky blocks are distributed on one side of the inclined stirring plate. The large spiral strips are provided in multiple quantities, and the multiple large spiral strips are distributed on one side of the inclined stirring plate.

[0005] Furthermore, the dust suppression device includes a triangular sleeve rod, the bottom of which is fixedly connected to a bottom inclined plate. The inclined surface of the bottom inclined plate pushes the feed near the top downwards, preventing some feed near the top from splashing and overflowing from the top of the circular mixing drum when pushed by the inclined stirring plate. Dust-collecting holes are provided on the outer side of the bottom inclined plate. Multiple dust-collecting holes on the bottom inclined plate capture and suppress dust generated during stirring, preventing large amounts of dust generated during feed mixing from affecting the production environment, harming the health of operators, and potentially causing nutritional imbalances in the feed due to raw material loss. A bottom ring is fixedly connected to the bottom of the bottom inclined plate, and a vertical triangular scraper is fixedly connected to the bottom of the bottom ring. As the bottom ring rotates, the vertical triangular scraper rotates, scraping the inner wall of the circular mixing drum. A scraping-type cleaning method is used to prevent excessive feed residue on the inner wall of the circular mixing drum from causing moldy raw materials to contaminate the new feed. The feed scraped off by the vertical triangular scraper contacts its triangular inclined surface and is pushed away from the inner wall of the circular mixing drum by the thrust, preventing the scraped feed from accumulating in the gap between the vertical triangular scraper and the inner wall of the circular mixing drum and being difficult to handle. The top of the triangular sleeve rod and the bottom of the triangular fixing plate are rotatably connected by a bearing. The triangular sleeve rod is sleeved on the linkage rod and fixedly connected to the linkage rod. There are three bottom inclined plates, and the three bottom inclined plates are distributed at the bottom of the triangular sleeve rod. There are multiple dust collection holes, and the multiple dust collection holes are distributed on the bottom inclined plates. There are two vertical triangular scrapers, and the two vertical triangular scrapers are distributed at the bottom of the bottom ring.

[0006] Furthermore, the auxiliary discharge device includes a circular sleeve plate with a square discharge hole at its top. This hole facilitates the passage of finely crushed feed while blocking uncrushed feed, preventing it from being discharged outwards along with the mixed feed and affecting feed production quality. A double-sleeved rod is rotatably connected to the top of the circular sleeve plate via a bearing. The relative rotation of the double-sleeved rod and the circular sleeve plate pushes the feed to the discharge hole for easy discharge, preventing finely crushed feed from accumulating on the circular sleeve plate and becoming difficult to handle. Small spiral strips are fixedly connected to both sides of the double-sleeved rod. These small spiral strips separate uncrushed and finely crushed feed, preventing uncrushed feed from being pushed outwards by the double-sleeved rod. The feed passage is not properly positioned and gets stuck inside the square feed passage, making it difficult to handle. A slanted pusher plate is fixedly connected to the bottom of the circular sleeve plate. The slanted pusher plate pushes out the accumulated feed at the bottom of the circular sleeve plate in a timely manner, preventing excessive material accumulation at the bottom of the circular sleeve plate from clogging the discharge pipe and affecting the discharge effect. The circular sleeve plate is fitted onto the linkage rod and fixedly connected to it. The outer side of the double sleeve rod is fixedly connected to the inner wall of the circular mixing tank. The double sleeve rod is fitted onto the linkage rod and rotatably connected to it via a bearing. There are two square feed passages, distributed on the circular sleeve plate. Multiple small spiral strips are provided, distributed on both sides of the double sleeve rod. There are two slanted pusher plates, distributed at the bottom of the circular sleeve plate.

[0007] A method for mixing feed materials for chicken farming includes the following steps: S1: Place materials. Roughage, concentrate, silage and additives are placed from the area outside the triangular fixing plate at the top of the round mixing drum. The materials will pass through the dust suppression device into the inside of the round mixing drum and accumulate on the auxiliary discharge device. S2: Alternate stirring and mixing. Start the drive motor to drive the stirring mixing device to rotate, so that the stirring mixing device alternately stirs and mixes the material accumulated on the auxiliary discharge device. S3: Dust suppression. When the agitator rotates, it drives the dust suppression device on the outside near the top to rotate. When the dust suppression device rotates, it captures and suppresses the dust generated during agitation. S4: Auxiliary discharge. When the stirring mixing device rotates, it drives the auxiliary discharge device on the outside near the bottom to rotate. When the auxiliary discharge device rotates, it pushes the mixture that has been stirred and mixed to a certain degree of fineness into the discharge pipe and discharges it from the discharge pipe.

[0008] This invention provides a feed mixing device for chicken farming and its usage method. It has the following beneficial effects: 1. The feed production material mixing equipment for chicken farming and its usage method, through multiple inclined stirring plates spirally distributed on the outside of the linkage rod, vertically and alternately stirs and mixes the feed at different heights inside the circular mixing tank, preventing the stratification of roughage and concentrate due to their large particle size difference during mixing, which would affect the mixing effect. Multiple dust-collecting round holes are opened on the bottom inclined plate to capture and suppress the dust generated during stirring, preventing the large amount of dust generated during feed mixing from affecting the production environment, harming the health of operators, and potentially causing feed nutritional imbalance due to raw material loss. The inclined push plate pushes the accumulated feed at the bottom of the circular sleeve plate to discharge it in time, preventing the discharge pipe from being blocked by excessive material accumulation at the bottom of the circular sleeve plate, which would affect the discharge effect.

[0009] 2. The feed production mixing equipment and its usage method for chicken farming are equipped with a stirring mixing device. Multiple inclined stirring plates, spirally distributed on the outside of the linkage rod, alternately stir and mix feed at different heights inside the circular mixing tank in a vertical direction. This prevents the coarse feed and concentrate feed from separating due to large particle size differences, which can affect the mixing effect. Multiple fine shavings are placed on the surface of the inclined stirring plates to finely crush the feed upon contact with it, preventing the feed particles with large size differences from being difficult to mix fully and affecting the mixing effect. The multiple fine shavings on the surface of the inclined stirring plates also prolong the time that the feed stays on the surface of the inclined stirring plates, preventing the feed pushed by the inclined stirring plates from sliding rapidly to the sides due to the slope, resulting in a short vertical distance. A large spiral strip on one side of the inclined stirring plates performs screening and separation of the mixed feed, preventing un-crushed feed from always mixing with the already crushed feed, which would lead to low crushing efficiency and affect the mixing effect.

[0010] 3. The feed production material mixing equipment and its usage method for chicken farming are equipped with a dust suppression device. Multiple dust-collecting holes are opened on the bottom inclined plate to capture and suppress dust generated during mixing, preventing large amounts of dust from affecting the production environment, harming the health of operators, and potentially causing nutritional imbalances in the feed due to raw material loss. The inclined surface of the bottom plate pushes the feed near the top downwards, preventing some feed near the top from splashing and overflowing from the top of the circular mixing drum when pushed by the inclined mixing plate. As the vertical triangular scraper rotates with the bottom ring, it scrapes and cleans the inner wall of the circular mixing drum, preventing excessive feed residue from being left untreated and causing moldy raw materials to contaminate new feed. The feed scraped off by the vertical triangular scraper contacts its triangular inclined surface and is pushed away from the inner wall of the circular mixing drum, preventing the scraped feed from accumulating in the gap between the vertical triangular scraper and the inner wall of the circular mixing drum, which is difficult to handle.

[0011] 4. The feed production material mixing equipment for chicken farming and its usage method are equipped with an auxiliary discharge device. The relative rotation of the double sleeve rod and the circular sleeve plate pushes the feed to the position of the feed passage hole for easy discharge. This prevents fine feed from accumulating on the circular sleeve plate and being difficult to fall through the feed passage hole. Small spiral strips are set on both sides of the double sleeve rod to separate the uncrushed feed from the fine feed. This prevents uncrushed feed from being pushed to the position of the feed passage hole by the double sleeve rod but failing to fall through and getting stuck in the feed passage hole. The feed passage hole is opened on the circular sleeve plate to allow fine feed to pass through and to block uncrushed feed. This prevents feed that is not crushed to a certain degree from being discharged to the outside along with the mixed feed, affecting the feed production quality. The inclined push plate pushes the accumulated feed at the bottom of the circular sleeve plate to discharge in time, preventing the discharge pipe from being blocked by too much material at the bottom of the circular sleeve plate, which would affect the discharge effect. Attached Figure Description

[0012] Figure 1 This is a schematic diagram of the feed production material mixing equipment of the present invention; Figure 2 This is a schematic diagram of the internal structure of the feed production material mixing equipment of the present invention; Figure 3 This is a schematic diagram of the bottom structure of the stirring mixing device of the present invention; Figure 4 This is a schematic diagram of the stirring mixing device of the present invention; Figure 5 This is a schematic diagram of the bottom structure of the dust suppression device of the present invention; Figure 6 This is a schematic diagram of the dust suppression device of the present invention; Figure 7 This is a schematic diagram of the auxiliary discharge device of the present invention; Figure 8 This is a schematic diagram of the bottom side section of the auxiliary discharge device of the present invention; Figure 9 This is a schematic diagram of the feed production material mixing method of the present invention.

[0013] In the diagram: 1. Circular mixing tank; 2. Triangular fixing plate; 3. Drive motor; 4. Agitating mixing device; 5. Dust suppression device; 6. Auxiliary discharge device; 7. Discharge pipe; 401. Linkage rod; 402. Inclined stirring plate; 403. Fine crushed shards; 404. Large spiral blade; 501. Triangular sleeve rod; 502. Bottom inclined plate; 503. Dust collection hole; 504. Bottom circular ring; 505. Vertical triangular scraper; 601. Circular sleeve plate; 602. Material passage square hole; 603. Double sleeve rod; 604. Small spiral blade; 605. Inclined push plate. Detailed Implementation

[0014] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0015] Please see Figures 1-4 This invention provides a feed production material mixing device for chicken farming and its usage method, including a circular mixing tank 1, a triangular fixing plate 2 fixedly connected to the inner wall of the circular mixing tank 1, a drive motor 3 fixedly connected to the top of the triangular fixing plate 2, a drive shaft of the drive motor 3 passing through the triangular fixing plate 2 and fixedly connected to a stirring mixing device 4, a dust suppression device 5 rotatably connected to the bottom of the triangular fixing plate 2 through a bearing, an auxiliary discharge device 6 sleeved and fixedly connected to the outside of the stirring mixing device 4, and a discharge pipe 7 connected to the outside of the circular mixing tank 1. The stirring mixing device 4 includes a linkage rod 401, and an inclined stirring plate 402 is fixedly connected to the outside of the linkage rod 401; The top of the stirring mixing device 4 is rotatably connected to the bottom of the triangular fixing plate 2 by a rotating bolt. The bottom of the stirring mixing device 4 is rotatably connected to the inner wall of the circular mixing barrel 1 by a rotating bolt. The dust suppression device 5 is sleeved on the stirring mixing device 4 and fixedly connected to the stirring mixing device 4. The outer side of the auxiliary discharge device 6 is fixedly connected to the inner wall of the circular mixing barrel 1. The top of the linkage rod 401 is rotatably connected to the bottom of the triangular fixing plate 2 by a rotating bolt. The top of the linkage rod 401 is fixedly connected to the drive shaft of the drive motor 3. The bottom of the linkage rod 401 is rotatably connected to the inner wall of the circular mixing barrel 1 by a rotating bolt. The outer side of the linkage rod 401 is fixedly connected to the inner side of the dust suppression device 5. The outer side of the linkage rod 401 is fixedly connected to the inner side of the auxiliary discharge device 6. Multiple inclined stirring plates 402 are provided, and the multiple inclined stirring plates 402 are spirally distributed on the outer side of the linkage rod 401. Fine spiky blocks 403 are fixedly connected to one side of the inclined stirring plate 402, and a large spiral strip 404 is fixedly connected to the side of the inclined stirring plate 402 away from the fine spiky blocks 403. Multiple finely crushed brittle fragments 403 are provided, and these fragments are distributed on one side of the inclined mixing plate 402. Multiple large spiral strips 404 are also provided, and these large spiral strips are distributed on one side of the inclined mixing plate 402. In use, roughage, concentrate, silage, and additives are placed into the area outside the triangular fixing plate 2 at the top of the circular mixing drum 1. The materials pass through the dust suppression device 5 into the interior of the circular mixing drum 1 and accumulate on the auxiliary discharge device 6. Then, the drive motor 3 is started to drive the agitating mixing device 4. The rotation causes the agitator 4 to alternately stir and mix the material piled on the auxiliary discharge device 6. When the agitator 4 rotates, it drives the dust suppression device 5 near the top on the outside to rotate. When the dust suppression device 5 rotates, it captures and suppresses the dust generated during the stirring. At the same time, when the agitator 4 rotates, it drives the auxiliary discharge device 6 near the bottom on the outside to rotate. When the auxiliary discharge device 6 rotates, it pushes the mixture to a certain fineness into the discharge pipe 7 and discharges it from the discharge pipe 7. After the material enters the circular mixing drum 1, the drive motor 3 is started, which drives the linkage rod 401 to rotate. The rotation of the linkage rod 401 drives the dust suppression device 5, the auxiliary discharge device 6, and the inclined stirring plate 402 on the outside to rotate together. As the inclined stirring plate 402 rotates with the linkage rod 401, the fine fragments 403 on its surface come into contact with the mixed feed in the circular mixing drum 1 and push it to stir. When the inclined stirring plate 402 pushes the mixed feed, it pushes the feed to move locally upward through its inclined surface. The multiple inclined stirring plates 402, spirally distributed on the outside of the linkage rod 401, alternately stir and mix the feed at different heights inside the circular mixing drum 1 in a vertical direction. Multiple fine burrs 403 are provided on the surface of the mixing plate 402 to finely crush the mixed feed when it comes into contact with it. By providing multiple fine burrs 403 on the surface of the inclined mixing plate 402, the time that the feed stays on the surface of the inclined mixing plate 402 is extended. When the inclined mixing plate 402 rotates with the linkage rod 401, it drives the large spiral strip 404 on one side to rotate together. When the large spiral strip 404 rotates with the linkage rod 401, it comes into contact with the mixed feed. At this time, the finely crushed feed will pass through the large spiral strip 404, and the feed that has not been finely crushed will be separated on the outside of the large spiral strip 404. The large spiral strip 404 on one side of the inclined mixing plate 402 performs a screening separation of the mixed feed.

[0016] Please see Figures 1-9This invention provides a feed production material mixing device for chicken farming and its usage method: The dust suppression device 5 includes a triangular sleeve rod 501, a bottom inclined plate 502 fixedly connected to the bottom of the triangular sleeve rod 501, a dust collection hole 503 opened on the outer side of the bottom inclined plate 502, a bottom ring 504 fixedly connected to the bottom of the bottom inclined plate 502, a vertical triangular scraper 505 fixedly connected to the bottom of the bottom ring 504, the top of the triangular sleeve rod 501 and the bottom of the triangular fixed plate 2 are rotatably connected by a bearing, the triangular sleeve rod 501 is sleeved on the linkage rod 401 and fixedly connected to the linkage rod 401, three bottom inclined plates 502 are provided, and the three bottom inclined plates 502 are distributed at the bottom of the triangular sleeve rod 501, multiple dust collection holes 503 are provided, and multiple dust collection holes 503 are distributed on the bottom inclined plate 502, and two vertical triangular scrapers 505 are provided, and the two vertical triangular scrapers 505 are distributed at the bottom of the bottom ring 504; The auxiliary discharge device 6 includes a circular sleeve plate 601. A square passage hole 602 is provided at the top of the circular sleeve plate 601. A double sleeve rod 603 is rotatably connected to the top of the circular sleeve plate 601 via a bearing. Small spiral strips 604 are fixedly connected to both sides of the double sleeve rod 603. An inclined push plate 605 is fixedly connected to the bottom of the circular sleeve plate 601. The circular sleeve plate 601 is fitted onto the linkage rod 401 and fixedly connected to it. The outer sides of the double sleeve rod 603 are fixedly connected to the inner wall of the circular mixing tank 1. The double sleeve rod 603 is fitted onto the linkage rod 401 and rotatably connected to it via a bearing. Two square passage holes 602 are provided, distributed on the circular sleeve plate 601. The small spiral strips 604 are provided with… Multiple small spiral strips 604 are distributed on both sides of the double sleeve rod 603. Two inclined push plates 605 are provided, and the two inclined push plates 605 are distributed at the bottom of the circular sleeve plate 601. In use, when the linkage rod 401 rotates, it drives the outer triangular sleeve rod 501 to rotate together. When the triangular sleeve rod 501 rotates, it drives the bottom inclined plate 502 to rotate. When the bottom inclined plate 502 rotates, it drives the dust-collecting round holes 503 on its surface to come into contact with the dust generated during stirring. When the dust comes into contact with the dust-collecting round holes 503, it will accumulate and adhere to the dust-collecting round holes 503. By opening multiple dust-collecting round holes 503 on the bottom inclined plate 502, the dust generated during stirring is captured and suppressed. A part of the feed near the top is stirred by the inclined stirring plate 402. The feed will come into contact with the bottom inclined plate 502. The feed in contact with the bottom inclined plate 502 is pushed down along its slope by the bottom inclined plate 502. The slope of the bottom inclined plate 502 pushes the feed near the top downward. When the bottom inclined plate 502 rotates with the linkage rod 401, it drives the bottom ring 504 to rotate. When the bottom ring 504 rotates, it drives the bottom vertical triangular scraper 505 to rotate together. When the vertical triangular scraper 505 rotates, it is in constant contact with the inner wall of the circular mixing tank 1. When the vertical triangular scraper 505 rotates with the bottom ring 504, it scrapes and cleans the inner wall of the circular mixing tank 1. The feed scraped off by the vertical triangular scraper 505 comes into contact with its triangular inclined surface and is pushed away from the inner wall of the circular mixing tank 1 by the thrust. When the linkage rod 401 rotates, it drives the outer circular sleeve plate 601 and the inclined push plate 605 to rotate together. When the circular sleeve plate 601 rotates, it rotates relative to the double sleeve rod 603 fixed to the inner wall of the circular mixing tank 1. At this time, the double sleeve rod 603 pushes the feed on the circular sleeve plate 601. The relative rotation between the double sleeve rod 603 and the circular sleeve plate 601 pushes the feed to the position of the feed passage square hole 602 for easy discharge. At the same time, the small spiral strips 604 on both sides of the double sleeve rod 603 will first contact the feed. The feed that has been finely crushed will pass through the small spiral strips 604 and contact the double sleeve rod 603 to be pushed. The feed that has not been finely crushed will separate from the fine feed in advance and be on the side of the small spiral strip 604 away from the double sleeve rod 603.Small spiral strips 604 on both sides of the double-sleeved rod 603 separate uncrushed and finely crushed feed. The mixed feed, already finely crushed, falls through the feed passage 602 to the bottom of the circular sleeve plate 601. The feed passage 602 on the circular sleeve plate 601 facilitates the passage of finely crushed feed while blocking uncrushed feed. Simultaneously, the inclined push plate 605, rotating with the linkage rod 401, pushes the feed accumulated at the bottom of the circular sleeve plate 601 towards the outside of the circular mixing tank 1 and discharges it through the discharge pipe 7. The inclined push plate 605 promptly discharges the accumulated feed at the bottom of the circular sleeve plate 601.

[0017] A method for mixing feed materials for chicken farming includes the following steps: S1: Place materials. Roughage, concentrate, silage and additives are placed from the area outside the triangular fixing plate 2 at the top of the circular mixing drum 1. The materials will pass through the dust suppression device 5 and enter the interior of the circular mixing drum 1 and accumulate on the auxiliary discharge device 6. S2: Alternate stirring and mixing, start the drive motor 3 to drive the stirring mixing device 4 to rotate, so that the stirring mixing device 4 alternately stirs and mixes the material accumulated on the auxiliary discharge device 6; S3: Dust suppression. When the agitating mixing device 4 rotates, it drives the dust suppression device 5 located near the top on the outside to rotate. When the dust suppression device 5 rotates, it captures and suppresses the dust generated during agitation. S4: Auxiliary discharge. When the stirring mixing device 4 rotates, it drives the auxiliary discharge device 6 located near the bottom on the outside to rotate. When the auxiliary discharge device 6 rotates, it pushes the mixed material, which has been stirred and mixed to a certain degree of fineness, into the discharge pipe 7 and discharges it from the discharge pipe 7.

[0018] When using this invention, roughage, concentrate, silage, and additives are placed into the area outside the triangular fixing plate 2 at the top of the circular mixing drum 1. The materials pass through the dust suppression device 5 into the interior of the circular mixing drum 1 and accumulate on the auxiliary discharge device 6. Then, the drive motor 3 is started to drive the stirring mixing device 4 to rotate, so that the stirring mixing device 4 alternately stirs and mixes the materials accumulated on the auxiliary discharge device 6. When the stirring mixing device 4 rotates, it drives the dust suppression device 5 near the top on the outside to rotate. When the dust suppression device 5 rotates, it captures and suppresses the dust generated during stirring. At the same time, when the stirring mixing device 4 rotates, it drives the auxiliary discharge device 6 near the bottom on the outside to rotate. When the auxiliary discharge device 6 rotates, it pushes the mixture to a certain fineness into the discharge pipe 7 and discharges it from the discharge pipe 7. After the material enters the circular mixing drum 1, the drive motor 3 is started, which drives the linkage rod 401 to rotate. The rotation of the linkage rod 401 drives the dust suppression device 5, the auxiliary discharge device 6, and the inclined stirring plate 402 on the outside to rotate together. When the inclined stirring plate 402 rotates with the linkage rod 401, the fine fragments 403 on its surface come into contact with the mixed feed in the circular mixing drum 1 and push it to stir. When the inclined stirring plate 402 pushes the mixed feed, it pushes the feed to move locally upward through its inclined surface. The multiple inclined stirring plates 402 spirally distributed on the outside of the linkage rod 401 perform vertical alternating stirring and mixing of the feed at different heights inside the circular mixing drum 1. The multiple fine fragments 403 on the surface of the inclined stirring plate 402 are used to stir and mix the feed. 03. When in contact with the mixed feed, it is finely shredded. Multiple fine-shredding protrusions 403 are provided on the surface of the inclined mixing plate 402 to prolong the time the feed remains on the surface. When the inclined mixing plate 402 rotates with the linkage rod 401, it drives the large spiral strip 404 on one side to rotate as well. The large spiral strip 404 contacts the mixed feed as it rotates with the linkage rod 401. At this time, the finely shredded feed passes through the large spiral strip 404, while the unshredded feed is separated on the outside of the large spiral strip 404. The large spiral strip 404 on one side of the inclined mixing plate 402 performs a screening separation of the mixed feed. When the linkage rod 401 rotates, it drives the outer triangular sleeve rod 501 to rotate as well. When rotating, the bottom inclined plate 502 is driven to rotate. As the bottom inclined plate 502 rotates, the dust-collecting holes 503 on its surface come into contact with the dust generated during stirring. When the dust comes into contact with the dust-collecting holes 503, it accumulates and adheres inside the holes 503. By creating multiple dust-collecting holes 503 on the bottom inclined plate 502, the dust generated during stirring is captured and suppressed. A portion of the feed near the top comes into contact with the bottom inclined plate 502 when it is pushed and stirred by the inclined stirring plate 402. The feed in contact with the bottom inclined plate 502 is pushed down along its slope by the bottom inclined plate 502. The slope of the bottom inclined plate 502 pushes the feed near the top downwards. As the bottom inclined plate 502 rotates with the linkage rod 401, the bottom inclined plate 502... When the circular ring 504 rotates, it drives the vertical triangular scraper 505 at the bottom to rotate as well. The vertical triangular scraper 505 is in constant contact with the inner wall of the circular mixing tank 1 as it rotates. As the bottom circular ring 504 rotates, the vertical triangular scraper 505 scrapes and cleans the inner wall of the circular mixing tank 1. The feed scraped off by the vertical triangular scraper 505 contacts its triangular inclined surface and is pushed away from the inner wall of the circular mixing tank 1. When the linkage rod 401 rotates, it drives the outer circular sleeve plate 601 and the inclined push plate 605 to rotate together. When the circular sleeve plate 601 rotates, it rotates relative to the double sleeve rod 603 fixed to the inner wall of the circular mixing tank 1. At this time, the double sleeve rod 603 pushes the feed on the circular sleeve plate 601.The relative rotation of the double-sleeved rod 603 and the circular sleeve 601 pushes the feed to the feed passage 602 for easy discharge. Simultaneously, the small spiral strips 604 on both sides of the double-sleeved rod 603 first contact the feed. The finely crushed feed passes through the small spiral strips 604 and contacts the double-sleeved rod 603, being pushed forward. The uncrushed feed separates from the finely crushed feed beforehand and is located on the side of the small spiral strip 604 away from the double-sleeved rod 603. By setting small spiral strips 604 on both sides of the double-sleeved rod 603, the uncrushed feed and the finely crushed feed are separated. The feed is separated, and the finely crushed mixed feed falls through the feed passage 602 to the bottom of the circular sleeve 601. The feed passage 602 in the circular sleeve 601 facilitates the passage of finely crushed feed while blocking uncrushed feed. Simultaneously, the inclined pusher 605, driven by the rotation of the linkage rod 401, pushes the feed accumulated at the bottom of the circular sleeve 601 towards the outside of the circular mixing drum 1 and discharges it through the discharge pipe 7. The inclined pusher 605 promptly discharges the accumulated feed at the bottom of the circular sleeve 601.

[0019] Obviously, the described embodiments are only a part of the embodiments of the present invention, and not all of them. All other embodiments obtained by those skilled in the art and related fields based on the embodiments of the present invention without inventive effort should fall within the scope of protection of the present invention. Structures, devices, and operating methods not specifically described and explained in the present invention, unless otherwise specified or limited, shall be implemented according to conventional means in the art.

Claims

1. A feed production material mixing device for chicken farming, comprising a circular mixing tank (1), characterized in that: The inner wall of the circular mixing tank (1) is fixedly connected to a triangular fixing plate (2), the top of the triangular fixing plate (2) is fixedly connected to a drive motor (3), the drive shaft of the drive motor (3) passes through the triangular fixing plate (2) and is fixedly connected to a stirring mixing device (4), the bottom of the triangular fixing plate (2) is rotatably connected to a dust suppression device (5) through a bearing, an auxiliary discharge device (6) is sleeved on and fixedly connected to the outside of the stirring mixing device (4), and a discharge pipe (7) is connected to the outside of the circular mixing tank (1). The stirring mixing device (4) includes a linkage rod (401), and an inclined stirring plate (402) is fixedly connected to the outside of the linkage rod (401).

2. The feed mixing equipment for chicken farming according to claim 1, characterized in that: The top of the agitating mixing device (4) is rotatably connected to the bottom of the triangular fixing plate (2) by a rotating bolt. The bottom of the agitating mixing device (4) is rotatably connected to the inner wall of the circular mixing barrel (1) by a rotating bolt. The dust suppression device (5) is sleeved on the agitating mixing device (4) and fixedly connected to the agitating mixing device (4). The outer side of the auxiliary discharge device (6) is fixedly connected to the inner wall of the circular mixing barrel (1).

3. The feed production material mixing equipment for chicken farming according to claim 1, characterized in that: The top of the linkage rod (401) is rotatably connected to the bottom of the triangular fixing plate (2) by a rotating bolt. The top of the linkage rod (401) is fixedly connected to the drive shaft of the drive motor (3). The bottom of the linkage rod (401) is rotatably connected to the inner wall of the circular mixing barrel (1) by a rotating bolt. The outer side of the linkage rod (401) is fixedly connected to the inner side of the dust suppression device (5). The outer side of the linkage rod (401) is fixedly connected to the inner side of the auxiliary discharge device (6). Multiple inclined stirring plates (402) are provided, and multiple inclined stirring plates (402) are spirally distributed on the outer side of the linkage rod (401).

4. The feed production material mixing equipment for chicken farming according to claim 1, characterized in that: Fine spiky blocks (403) are fixedly connected to one side of the inclined stirring plate (402), and a large spiral strip (404) is fixedly connected to the side of the inclined stirring plate (402) away from the fine spiky blocks (403).

5. The feed production material mixing equipment for chicken farming according to claim 4, characterized in that: Multiple fine spiky blocks (403) are provided, and the multiple fine spiky blocks (403) are distributed on one side of the inclined stirring plate (402). Multiple large spiral strips (404) are provided, and the multiple large spiral strips (404) are distributed on one side of the inclined stirring plate (402).

6. The feed mixing equipment for chicken farming according to claim 1, characterized in that: The dust suppression device (5) includes a triangular sleeve rod (501), a bottom inclined plate (502) is fixedly connected to the bottom of the triangular sleeve rod (501), a dust collection hole (503) is opened on the outer side of the bottom inclined plate (502), a bottom ring (504) is fixedly connected to the bottom of the bottom inclined plate (502), and a vertical triangular scraper rod (505) is fixedly connected to the bottom of the bottom ring (504).

7. The feed mixing equipment for chicken farming according to claim 6, characterized in that: The top of the triangular sleeve rod (501) is rotatably connected to the bottom of the triangular fixing plate (2) through a bearing. The triangular sleeve rod (501) is sleeved on the linkage rod (401) and fixedly connected to the linkage rod (401). There are three bottom inclined plates (502), and the three bottom inclined plates (502) are distributed at the bottom of the triangular sleeve rod (501). There are multiple dust collection holes (503), and the multiple dust collection holes (503) are distributed on the bottom inclined plates (502). There are two vertical triangular scrapers (505), and the two vertical triangular scrapers (505) are distributed at the bottom of the bottom ring (504).

8. The feed mixing equipment for chicken farming according to claim 1, characterized in that: The auxiliary discharge device (6) includes a circular sleeve plate (601), the top of which is provided with a square hole (602) for material passage, and the top of the circular sleeve plate (601) is rotatably connected to a double sleeve rod (603) via a bearing. Small spiral strips (604) are fixedly connected to both sides of the double sleeve rod (603), and a slanted push plate (605) is fixedly connected to the bottom of the circular sleeve plate (601).

9. The feed mixing equipment for chicken farming according to claim 8, characterized in that: The circular sleeve plate (601) is sleeved on the linkage rod (401) and fixedly connected to the linkage rod (401). The outer side of the double sleeve rod (603) is fixedly connected to the inner wall of the circular mixing barrel (1). The double sleeve rod (603) is sleeved on the linkage rod (401) and rotatably connected to the linkage rod (401) through a bearing. There are two material passage square holes (602), and the two material passage square holes (602) are distributed on the circular sleeve plate (601). There are multiple small spiral strips (604), and the multiple small spiral strips (604) are distributed on both sides of the double sleeve rod (603). There are two inclined push plates (605), and the two inclined push plates (605) are distributed at the bottom of the circular sleeve plate (601).

10. A method for mixing feed materials for chicken farming, characterized in that, It includes the following steps: S1: Place materials, put roughage, concentrate, silage and additives into the area outside the triangular fixing plate (2) at the top of the round mixing barrel (1). The materials will pass through the dust suppression device (5) into the interior of the round mixing barrel (1) and accumulate on the auxiliary discharge device (6). S2: Alternate stirring and mixing, start the drive motor (3) to drive the stirring mixing device (4) to rotate, so that the stirring mixing device (4) alternately stirs and mixes the material piled on the auxiliary discharge device (6); S3: Dust suppression, when the agitating mixing device (4) rotates, it drives the dust suppression device (5) on the outside near the top to rotate. When the dust suppression device (5) rotates, it captures and suppresses the dust generated during agitation. S4: Auxiliary discharge. When the stirring mixing device (4) rotates, it drives the auxiliary discharge device (6) located near the bottom on the outside to rotate. When the auxiliary discharge device (6) rotates, it pushes the mixed material that has been stirred and mixed to a certain degree of fineness into the discharge pipe (7) and discharges it from the discharge pipe (7).