Livestock improved variety breeding device and method for ecological breeding in grassland area
By designing the breeding device for animal husbandry in ecological breeding in grassland areas, the cooperation of rotating parts and power parts is used to solve the problems of food residues and feed waste in the feed trough, the automatic feed transportation and scraping of residual feed are realized, and the breeding efficiency and resource utilization are improved.
Patent Information
- Application Number
- CN202510498784.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-21
- Publication Date
- 2025-06-10
AI Technical Summary
During the livestock breeding process, food residues and feed waste inside the feeding trough are serious, resulting in waste of resources and environmental pollution.
A livestock breeding device for ecological breeding in grassland areas was designed, using rotating parts and power parts. Through the cooperation of gears and racks, the transfer plates rotate inside the breeding frame, realizing the automatic feed conveying and scraping of residual feed, reducing waste.
It effectively controls the amount of animal husbandry intake, reduces feed waste, ensures that animal husbandry obtains sufficient breeding nutrition, and improves breeding efficiency and resource utilization.
Smart Images

Figure CN120113604A_ABST
Abstract
Description
Technical Field
[0001] The present invention belongs to the technical field of livestock breeding, and particularly relates to a livestock improved breed reproduction device and method for ecological breeding in grassland areas. Background Art
[0002] Feeding troughs are used for feeding animals in the livestock breeding industry. During the livestock breeding process, it is necessary to provide food for animals in a timely manner. Animals obtain food in the feeding troughs. Most feeding troughs are set inside the enclosures for captive animals to facilitate animal feeding. The food inside the feeding troughs can provide the nutrients required for animal reproduction.
[0003] After a large amount of food is directly piled up inside the feeding trough, after the animals eat, a large amount of remaining food will remain inside the feeding trough. When the food for the next feeding is poured into the feeding trough, the new food will pile up on top of the remaining food. When the animals cannot finish eating completely, the food from multiple feedings will pile up inside the feeding trough, which is likely to cause food waste. Summary of the Invention
[0004] In view of the above problems, the present invention provides a livestock improved breed reproduction device and method for ecological breeding in grassland areas to solve the problems raised in the above background art.
[0005] To achieve the above object, the present invention provides the following technical solutions:
[0006] A livestock improved breed reproduction device for ecological breeding in grassland areas includes a chassis and a breeding frame inside the chassis. A placement groove corresponding to the breeding frame is provided on the inner side of the top surface of the chassis. Feed is poured into the breeding frame, and livestock are fed with the feed inside the breeding frame. The breeding frame is installed on the top of the chassis by a rotating component. A rotating plate is provided inside the breeding frame, and a power component for controlling the rotation of the rotating plate is provided on the end face of the breeding frame. The power component includes a first rack, a second rack, and a limiting frame. The first rack is on the top of the second rack. The bottom surface of the first rack is connected to the second rack by a connecting rod. The limiting frame is between the first rack and the second rack. The moving second rack drives the first rack to move synchronously by the connecting rod. The limiting frame is fixedly installed on the end face of the breeding frame. Gears are fixed at both ends of the rotating plate, and the gears mesh with the teeth on the top surface of the first rack. The power component makes the rotating plate rotate inside the breeding frame by the gears.
[0007] Further, the power component further includes a motor and a power shaft. The motor is installed on the end face of the breeding frame, the power shaft is transmissionally installed at the output end of the motor, and the power shaft meshes with the teeth on the outer side of the second rack. The rotating power shaft makes the second rack move on the end face of the breeding frame by the teeth.
[0008] Further, side grooves are provided on both end faces of the breeding frame. The end of the rotating plate is connected to a gear by a cross bar, and the cross bar penetrates through the side groove. An inner groove is provided inside the side groove, and a collar sleeved on the surface of the cross bar is provided inside the inner groove. The collar is connected to the output end of the stepping motor by a pull bar. A chute corresponding to the pull bar is provided at the end of the breeding frame. When the output end of the stepping motor rotates to wind up the pull bar, the wound-up pull bar slides inside the chute, and the sliding pull bar pulls the collar to move rightward inside the side groove.
[0009] Further, a spring piece is provided inside the side groove. The spring piece is located on the right side of the collar, and the collar is connected to the right side of the side groove by the spring piece.
[0010] Further, the rotating member includes a side plate, a frame plate, a rotating rod and a convex rod;
[0011] The side plate is installed on the left side of the breeding frame. Convex rods are installed on both end faces of the side plate. The two frame plates correspond to the two convex rods one by one. The top end of the frame plate is sleeved on the surface of the convex rod, and the bottom end of the frame plate is spirally sleeved on the surface of the rotating rod. The rotating rotating rod makes the two frame plates approach or separate from each other. The rotating rod penetrates through the left side of the breeding frame, and a strip groove corresponding to the frame plate is provided on the top surface of the breeding frame. The breeding frame rotates on the top of the frame plate by the convex rod at the end of the side plate.
[0012] Further, a scraping bar is provided at the bottom of the rotating plate. The scraping bar is limited at the bottom of the rotating plate by an elastic member. The elastic member includes a plug rod, an inserting strip, a spring and a pressing rod;
[0013] Multiple plug rods vertically penetrate through the rotating plate. The inserting strip is fixed at the center of the top surface of the scraping bar. The bottom end of the plug rod is connected to the top surface of the inserting strip. The top ends of the multiple plug rods are connected by a pressing rod. Springs are sleeved on the surfaces of the multiple plug rods, and the pressing rod is connected to the top surface of the rotating plate by the springs.
[0014] Further, the spring is in a stretched state, and the elastic force of the spring makes the bottom surface of the scraping bar fit with the inner arc surface of the breeding frame. A bottom groove corresponding to the inserting strip is provided on the bottom surface of the rotating plate.
[0015] The present invention also provides a breeding method for a livestock improved breed breeding device for ecological breeding in a grassland area using the above-mentioned device, including the following steps:
[0016] S1. Install the breeding frame inside the placement groove at the top of the chassis through the rotating member;
[0017] S2. Pour the feed required for breeding into the right side of the rotating plate. The left side of the breeding frame corresponds to the livestock. The rotating breeding frame deflects the rotating plate, and the feed moves to the left side of the breeding frame through the bottom of the deflected rotating plate, and the livestock are fed with the feed on the left side of the rotating plate.
[0018] S3. After feeding, the breeding frame is rotated in the reverse direction until the rotating plate is vertical inside the breeding frame. The power component moves the second rack, and the moving second rack drives the first rack to move synchronously by means of a connecting rod. The first rack makes the gear rotate by means of teeth, and the rotating gear makes the rotating plate rotate inside the breeding frame. The rotating plate scrapes the feed on the inner side wall of the breeding frame.
[0019] S4. The scraped feed accumulates on the right side of the rotating plate, facilitating the mixing of the feed for the next feeding with the accumulated feed, reducing feed waste. The feed provides sufficient reproductive nutrition for livestock and facilitates the safe production of high-quality livestock.
[0020] The technical effects and advantages of the present invention:
[0021] 1. In the present invention, the gear rolls on the top of the rack. The rolling gear deflects the bottom of the rotating plate inside the breeding frame by means of a cross bar. The bottom of the rotating plate shifts to the left side, and the bottom of the rotating plate separates from the inner bottom surface of the breeding frame, forming a leakage groove. The feed on the right side of the rotating plate can be conveyed to the left side of the rotating plate through the leakage groove, ensuring the continuous conveyance of the feed on the right side of the rotating plate to the left side of the rotating plate, thereby controlling the feeding amount of livestock and avoiding excessive feed accumulation inside the breeding frame, which is likely to cause feed waste.
[0022] 2. In the present invention, the power component moves the first rack left and right. The first rack makes the gear rotate by means of teeth, and the rotating gear drives the rotating plate to rotate inside the breeding frame. The rotating plate cooperates to scrape the feed on the inner side wall of the breeding frame. The feed scraped by the rotating plate is brushed to the right side of the rotating plate by a brush, so that the scraped feed and the remaining feed accumulate on the right side of the rotating plate, avoiding the pollution of the feed by the bred livestock. At the same time, it facilitates the mixing of the feed for the next feeding with the accumulated feed, reducing feed waste. Description of the Drawings
[0023] Figure 1 is the overall schematic diagram of the livestock improved breed reproduction device for ecological breeding in the grassland area according to the embodiment of the present invention;
[0024] Figure 2 is the schematic diagram of the cooperation between the first rack and the second rack according to the embodiment of the present invention;
[0025] Figure 3 is the schematic diagram of the snap ring inside the chute of the breeding frame according to the embodiment of the present invention;
[0026] Figure 4 is the Figure 3 magnified view of the structure of part A in the embodiment of the present invention;
[0027] Figure 5 is the overall schematic diagram of the breeding frame according to the embodiment of the present invention;
[0028] Figure 6It is a schematic diagram of the cooperation between the shelf board and the rotating rod in the embodiment of the present invention;
[0029] Figure 7 It is a schematic diagram of the cooperation between the rotating plate and the scraping strip by using an elastic member in the embodiment of the present invention;
[0030] Figure 8 It is a schematic diagram of the scraping strip at the bottom end of the insertion rod by using an insertion strip in the embodiment of the present invention;
[0031] In the figure: 1, the bottom frame; 2, the breeding frame; 201, the sliding groove; 3, the rotating plate; 4, the first rack; 5, the second rack; 6, the limiting frame; 7, the connecting rod; 8, the gear; 9, the motor; 10, the power shaft; 11, the side groove; 12, the collar; 13, the pulling strip; 14, the stepping motor; 15, the elastic piece; 16, the side plate; 17, the shelf board; 18, the rotating rod; 19, the convex rod; 20, the scraping strip; 21, the insertion rod; 22, the insertion strip; 23, the spring; 24, the pressing rod. Detailed implementation manners
[0032] To make the objectives, technical solutions and advantages of the embodiments of the present invention clearer, the technical solutions of the present invention will be clearly and completely described below in conjunction with the embodiments.
[0033] The present invention provides a livestock improved breed reproduction device for ecological breeding in grassland areas, as Figure 1 and Figure 2 shown, including a bottom frame 1 and a breeding frame 2 inside the bottom frame 1. A placement groove corresponding to the breeding frame 2 is provided on the inner side of the top surface of the bottom frame 1. Feed is poured into the interior of the breeding frame 2, and livestock are fed with the feed inside the breeding frame 2. The breeding frame 2 is installed on the top of the bottom frame 1 by a rotating member. A rotating plate 3 is provided inside the breeding frame 2, and a power member for controlling the rotation of the rotating plate 3 is provided on the end face of the breeding frame 2; when the feed is at the right side part of the rotating plate 3, the rotating plate 3 blocks the feed. When the breeding frame 2 rotates by the rotating member, the breeding frame 2 gradually rotates and deflects towards the left side part. At this time, the rotating plate 3 offsets inside the breeding frame 2. The offset rotating plate 3 cannot block the feed, and the feed on the right side part moves from the bottom of the rotating plate 3 to the left side part of the rotating plate 3. At this time, livestock can eat the feed on the left side part of the rotating plate 3, ensuring the continuous conveyance of the feed on the right side part of the rotating plate 3 to the left side part of the rotating plate 3, thereby controlling the feeding amount of livestock and avoiding excessive feed accumulation inside the breeding frame 2, which is likely to cause feed waste.
[0034] The power component includes a first rack 4, a second rack 5 and a limiting frame 6; the first rack 4 is at the top of the second rack 5, the bottom surface of the first rack 4 is connected to the second rack 5 by a connecting rod 7, the limiting frame 6 is between the first rack 4 and the second rack 5, the moving second rack 5 drives the first rack 4 to move synchronously by the connecting rod 7, the limiting frame 6 is fixedly mounted on the end surface of the breeding frame 2, gears 8 are fixed at both ends of the rotating plate 3, the gears 8 are meshed with the teeth on the top surface of the first rack 4, and the power component uses the gear 8 to make the rotating plate 3 rotate inside the breeding frame 2. When the power component moves the second rack 5, the moving second rack 5 drives the first rack 4 to move synchronously by the connecting rod 7. Since the bottom surface of the first rack 4 fits with the top surface of the limiting frame 6, and the top surface of the second rack 5 fits with the bottom surface of the limiting frame 6, the connecting rod 7 moves inside the limiting frame 6 at this time, and the limiting frame 6 makes the first rack 4 and the second rack 5 move synchronously and smoothly.
[0035] When the first rack 4 moves driven by the second rack 5, the first rack 4 uses its teeth to rotate the gear 8, and the rotating gear 8 drives the rotating plate 3 to rotate inside the breeding frame 2. The rotating rotating plate 3 cooperates to scrape the feed on the inner wall of the breeding frame 2 to prevent the feed from sticking to the inner wall of the breeding frame 2. The feed scraped by the rotating plate 3 is brushed to the right side of the rotating plate 3 by a brush, so that the scraped feed and the remaining feed are accumulated on the right side of the rotating plate 3, so as to prevent the farmed livestock from contaminating the feed. At the same time, it is convenient to mix the feed for the next feeding with the accumulated feed, thereby reducing the waste of feed.
[0036] exist Figure 1 and Figure 2 In the embodiment, the power component further includes a motor 9 and a power shaft 10; the motor 9 is mounted on the end face of the breeding frame 2, the power shaft 10 is transmission-mounted at the output end of the motor 9, the power shaft 10 is meshed with the teeth on the outer side of the second rack 5, and the rotating power shaft 10 uses the teeth to move the second rack 5 at the end face of the breeding frame 2. The motor 9 is started, the power shaft 10 at the output end of the motor 9 rotates, and the rotating power shaft 10 uses the teeth on the surface of the second rack 5 to move the second rack 5 at the bottom of the limiting frame 6. At this time, the moving second rack 5 uses the connecting rod 7 to drive the first rack 4 synchronously, and the meshing cooperation of the first rack 4 and the gear 8 is used to facilitate the control of the rotating plate 3 to cooperate in scraping the residual feed on the inner wall of the breeding frame 2.
[0037] exist Figure 1 , Figures 3 to 5In it, side grooves 11 are provided on both end faces of the breeding frame 2. The end of the rotating plate 3 is connected to the gear 8 by a cross bar, and the cross bar passes through the side groove 11. An inner groove is provided inside the side groove 11, and a collar 12 sleeved on the surface of the cross bar is provided inside the inner groove. The collar 12 is connected to the output end of the stepping motor 14 by a pull bar 13. A sliding groove 201 corresponding to the pull bar 13 is provided at the end of the breeding frame 2. When the output end of the stepping motor 14 rotates to wind up the pull bar 13, the wound pull bar 13 slides inside the sliding groove 201, and the sliding pull bar 13 pulls the collar 12 to move rightward inside the side groove 11. A spring piece 15 is provided inside the side groove 11, and the spring piece 15 is located on the right side of the collar 12. The collar 12 is connected to the right side of the side groove 11 by the spring piece 15. The feed for feeding livestock is stacked on the right side of the rotating plate 3. When the stepping motor 14 is started and the output end of the stepping motor 14 rotates to wind up the pull bar 13, when the wound pull bar 13 slides inside the sliding groove 201, the moving pull bar 13 cooperates to pull the collar 12 inside the side groove 11. Under the pulling force of the pull bar 13, the rightward moving collar 12 cooperates to squeeze the spring piece 15 inside the side groove 11, and the elastic force of the spring piece 15 is applied to the breeding frame 2. The elastic forces of the wound pull bar 13 and the spring piece 15 cause the breeding frame 2 to rotate by a rotating component. At this time, the breeding frame 2 deflects to the left side on the top of the chassis 1 by the rotating component.
[0038] The collar 12 drives the gear 8 and the top of the rotating plate 3 to move rightward through the cross bar. The motor 9 limits the second rack 5 by the power shaft 10, and the first rack 4 is prevented from moving through the second rack 5. At this time, the rightward moving gear 8 rolls and moves on the top of the first rack 4. The rolling gear 8 deflects the inside of the breeding frame 2 at the bottom of the rotating plate 3 through the cross bar. The bottom of the rotating plate 3 deflects to the left side, and the bottom of the rotating plate 3 is separated from the inner bottom surface of the breeding frame 2, forming a leakage groove. The feed on the right side of the rotating plate 3 can be conveyed to the left side of the rotating plate 3 through the leakage groove. At this time, the livestock can eat the feed on the left side of the rotating plate 3.
[0039] In Figure 1 and Figure 6Among them, the rotating member includes a side plate 16, a frame plate 17, a rotating rod 18 and a convex rod 19; the side plate 16 is installed on the left side of the breeding frame 2, convex rods 19 are installed on both end faces of the side plate 16, the two frame plates 17 correspond to the two convex rods 19 one by one, the top end of the frame plate 17 is sleeved on the surface of the convex rod 19, and the bottom end of the frame plate 17 is spirally sleeved on the surface of the rotating rod 18. The rotating rotating rod 18 makes the two frame plates 17 approach or move away from each other. The rotating rod 18 penetrates through the left side of the breeding frame 2, and a strip groove corresponding to the frame plate 17 is provided on the top surface of the breeding frame 2. The breeding frame 2 rotates at the top of the frame plate 17 by means of the convex rod 19 at the end of the side plate 16. Place the breeding frame 2 inside the placement groove at the top of the bottom frame 1. At this time, the side plate 16 is between the two frame plates 17. Rotate the rotating rod 18. The rotating rotating rod 18 makes the two frame plates 17 approach each other. When the top end of the frame plate 17 approaches the side plate 16, the top end of the frame plate 17 is gradually sleeved on the surface of the convex rod 19. At this time, when the breeding frame 2 rotates, the convex rod 19 at the end of the side plate 16 rotates at the top end of the frame plate 17. At this time, the breeding frame 2 deviates to the left side during the rotation until the livestock finish eating.
[0040] The output end of the stepping motor 14 rotates in the reverse direction to release the draw bar 13. The elastic force of the elastic piece 15 pushes the collar 12 to move leftward inside the side groove 11. The leftward moving collar 12 makes the gear 8 and the top of the rotating plate 3 move leftward by means of the cross bar. The leftward moving gear 8 and the first rack 4 make the bottom of the rotating plate 3 move rightward until the rotating plate 3 is vertically inside the breeding frame 2, preventing the feed on the right side of the rotating plate 3 from continuing to enter the left side of the rotating plate 3 through the leakage groove and avoiding waste of feed.
[0041] In Figure 1 、 Figure 7 and Figure 8Among them, a scraping strip 20 is arranged at the bottom of the rotating plate 3. The scraping strip 20 is limited at the bottom of the rotating plate 3 by an elastic member. The elastic member includes a plug rod 21, a plug strip 22, a spring 23 and a pressure rod 24. A plurality of plug rods 21 vertically penetrate through the rotating plate 3. The plug strip 22 is fixed at the center of the top surface of the scraping strip 20. The bottom end of the plug rod 21 is connected to the top surface of the plug strip 22. The top ends of the plurality of plug rods 21 are connected by a pressure rod 24. Springs 23 are sleeved on the surfaces of the plurality of plug rods 21. The pressure rod 24 is connected to the top surface of the rotating plate 3 by the spring 23. The spring 23 is in a stretched state. The elastic force of the spring 23 makes the bottom surface of the scraping strip 20 fit the inner arc surface of the breeding frame 2. A bottom groove corresponding to the plug strip 22 is arranged on the bottom surface of the rotating plate 3. When the rotating plate 3 moves rightward in the inner part of the breeding frame 2, at this time, the meshing cooperation between the gear 8 and the first rack 4 makes the bottom end of the rotating plate 3 deflect towards the inner part of the breeding frame 2. Since the spring 23 is in a stretched state, the distance between the bottom of the rotating plate 3 and the inner arc surface of the breeding frame 2 increases at this time. The elastic force of the spring 23 pulls the pressure rod 24 close to the rotating plate 3. The pressure rod 24 makes the plug strip 22 and the scraping strip 20 away from the rotating plate 3 by means of the plug rod 21. Until the pressure rod 24 fits the top of the rotating plate 3, the continuously rotating rotating plate 3 makes the bottom of the scraping strip 20 separate from the inner arc surface of the breeding frame 2. At this time, a leakage groove is formed between the bottom of the scraping strip 20 and the inner arc surface of the breeding frame 2. The feed on the right side of the rotating plate 3 is conveyed to the left side of the rotating plate 3 through the leakage groove. The inclined breeding frame 2 continuously feeds livestock by means of the feed on the left side of the rotating plate 3. The feed provides sufficient reproductive nutrition for the livestock.
[0042] When the rotating plate 3 is vertically inside the breeding frame 2, at this time, the elastic piece 15 limits the cross bar through the collar 12. The power component makes the rotating plate 3 rotate inside the breeding frame 2 by means of the gear 8 and the cross bar. The elastic force of the spring 23 makes the bottom of the scraping strip 20 always fit the inner arc surface of the breeding frame 2. The rotating scraping strip 20 and the rotating plate 3 cooperate to scrape the feed remaining on the inner wall of the breeding frame 2.
[0043] The present invention also provides a breeding method for applying the livestock improved breed breeding device for ecological breeding in grassland areas described above, referring to Figures 1 to 8 as shown, including the following steps:
[0044] S1. Install the breeding frame 2 inside the placement groove at the top of the chassis 1 through a rotating component; S2. Pour the feed required for breeding into the right side of the rotating plate 3. The left side of the breeding frame 2 corresponds to the livestock. The rotating breeding frame 2 causes the rotating plate 3 to deflect, and the feed moves to the left side of the breeding frame 2 through the bottom of the deflected rotating plate 3, and the livestock is fed with the feed on the left side of the rotating plate 3; S3. After feeding, reverse the rotation of the breeding frame 2 until the rotating plate 3 is vertical inside the breeding frame 2. The power component causes the second rack 5 to move. The moving second rack 5 drives the first rack 4 to move synchronously by means of the connecting rod 7. The first rack 4 causes the gear 8 to rotate by means of the teeth, and the rotating gear 8 causes the rotating plate 3 to rotate inside the breeding frame 2. The rotating rotating plate 3 scrapes the feed on the inner wall of the breeding frame 2; S4. The scraped feed accumulates on the right side of the rotating plate 3, which is convenient for the feed for the next feeding to be mixed with the accumulated feed, reducing the waste of feed. The feed provides sufficient breeding nutrition for the livestock and is convenient for the livestock to safely produce high-quality livestock. The above embodiments are only used to illustrate the technical solutions of the present invention and are not intended to limit it.
Claims
1. A livestock breeding device for ecological breeding in grassland areas, comprising a base frame (1), and a breeding frame (2) located inside the base frame (1), wherein a placement groove corresponding to the breeding frame (2) is arranged on the inner side of the top surface of the base frame (1), and feed is poured into the breeding frame (2), and livestock is fed with the feed inside the breeding frame (2), characterized in that: The breeding frame (2) is mounted on the top of the base frame (1) by means of a rotating component, a rotating plate (3) is arranged inside the breeding frame (2), and a power component for controlling the rotation of the rotating plate (3) is arranged on the end surface of the breeding frame (2); the power component comprises a first rack (4), a second rack (5) and a limiting frame (6); the first rack (4) is located on the top of the second rack (5), the bottom surface of the first rack (4) is connected to the second rack (5) by means of a connecting rod (7), the limiting frame (6) is located between the first rack (4) and the second rack (5), the moving second rack (5) drives the first rack (4) to move synchronously by means of the connecting rod (7), the limiting frame (6) is fixedly mounted on the end surface of the breeding frame (2), gears (8) are fixed on both ends of the rotating plate (3), the gears (8) are meshed with teeth on the top surface of the first rack (4), and the power component uses the gears (8) to make the rotating plate (3) rotate inside the breeding frame (2).
2. The animal husbandry breeding device for ecological breeding in grassland areas according to claim 1 is characterized by: The power component also includes a motor (9) and a power shaft (10); the motor (9) is mounted on the end face of the breeding frame (2); the power shaft (10) is transmission-mounted on the output end of the motor (9); the power shaft (10) is meshed with teeth on the outer side of the second rack (5); the rotating power shaft (10) uses the teeth to move the second rack (5) on the end face of the breeding frame (2).
3. The animal husbandry breeding device for ecological breeding in grassland areas according to claim 1 is characterized by: The two end surfaces of the breeding frame (2) are both provided with side grooves (11); the end of the rotating plate (3) is connected to the gear (8) by means of a cross bar, and the cross bar passes through the side groove (11); the side groove (11) is provided with an inner groove inside; the inner groove is provided with a sleeve (12) sleeved on the surface of the cross bar; the sleeve (12) is connected to the output end of the stepper motor (14) by means of a pull rod (13); the end of the breeding frame (2) is provided with a slide groove (201) corresponding to the pull rod (13); when the output end of the stepper motor (14) rotates to reel in the pull rod (13), the reeled pull rod (13) slides inside the slide groove (201), and the sliding pull rod (13) pulls the sleeve ring (12) to move right inside the side groove (11).
4. The animal husbandry breeding device for ecological breeding in grassland areas according to claim 3 is characterized by: A spring sheet (15) is arranged inside the side groove (11), the spring sheet (15) is located on the right side of the collar (12), and the collar (12) is connected to the right side of the side groove (11) by means of the spring sheet (15).
5. The animal husbandry breeding device for ecological breeding in grassland areas according to claim 1 is characterized by: The rotating component comprises a side plate (16), a frame plate (17), a rotating rod (18) and a protruding rod (19); the side plate (16) is mounted on the left side of the breeding frame (2); the protruding rods (19) are mounted on both end surfaces of the side plate (16); the two frame plates (17) correspond to the two protruding rods (19) one by one; the top end of the frame plate (17) is sleeved on the surface of the protruding rod (19); the bottom end of the frame plate (17) is spirally sleeved on the surface of the rotating rod (18); the rotating rotating rod (18) causes the two frame plates (17) to move closer to or farther from each other; the rotating rod (18) passes through the left side of the breeding frame (2); and the top surface of the breeding frame (2) is provided with a groove corresponding to the frame plate (17); the breeding frame (2) rotates on the top of the frame plate (17) by means of the protruding rod (19) at the end of the side plate (16).
6. The animal husbandry breeding device for ecological breeding in grassland areas according to claim 1, characterized in that: A scraper strip (20) is provided at the bottom of the rotating plate (3), and the scraper strip (20) is limited at the bottom of the rotating plate (3) by an elastic component, and the elastic component comprises an insertion rod (21), an insertion strip (22), a spring (23) and a pressure rod (24); a plurality of insertion rods (21) vertically penetrate the rotating plate (3), the insertion strip (22) is fixed at the center of the top surface of the scraper strip (20), the bottom end of the insertion rod (21) is connected to the top surface of the insertion strip (22), the top ends of the plurality of insertion rods (21) are connected by a pressure rod (24), the surfaces of the plurality of insertion rods (21) are all sleeved with a spring (23), and the pressure rod (24) is connected to the top surface of the rotating plate (3) by the spring (23).
7. The animal husbandry breeding device for ecological breeding in grassland areas according to claim 6, characterized in that: The spring (23) is in a stretched state, and the elastic force of the spring (23) causes the bottom surface of the scraper strip (20) to fit the inner arc surface of the breeding frame (2), and the bottom surface of the rotating plate (3) is provided with a bottom groove corresponding to the cutting strip (22).
8. A breeding method using the animal husbandry breeding device for ecological breeding in grassland areas according to claim 1, characterized in that: The following steps are involved: S1, installing the breeding frame (2) inside the placement groove on the top of the base frame (1) through a rotating component; S2, pouring the feed required for breeding into the right side of the rotating plate (3), the left side of the breeding frame (2) corresponds to the livestock, the rotating breeding frame (2) causes the rotating plate (3) to deflect, the feed moves to the left side of the breeding frame (2) through the bottom of the deflected rotating plate (3), and the livestock is fed with the feed on the left side of the rotating plate (3); S3, after feeding, the breeding frame (2) is rotated in the opposite direction until the rotating plate (3) is vertically located inside the breeding frame (2), the power component causes the second rack (5) to move, the moving second rack (5) drives the first rack (4) to move synchronously by means of the connecting rod (7), the first rack (4) causes the gear (8) to rotate by means of the teeth, the rotating gear (8) causes the rotating plate (3) to rotate inside the breeding frame (2), and the rotating rotating plate (3) scrapes the feed on the inner wall of the breeding frame (2); S4. The scraped feed is accumulated on the right side of the rotating plate (3), so that the feed for the next feeding can be mixed with the accumulated feed, thereby reducing feed waste. The feed provides sufficient breeding nutrition for livestock, and facilitates the safe production of fine breeds of livestock.
Citation Information
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