A specialized breeding house for fattening meat ducks

By designing the flip unit, feeding mechanism and feeding mechanism, the dust and liquid splash caused by bare feed trough is solved, the protection and uniform delivery of feed is achieved, and the feed utilization rate and edible convenience in the fattening process of meat ducks are improved.

CN117546798BActive Publication Date: 2025-08-22ANHUI AGRICULTURAL UNIVERSITY
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Patent Information

Application Number
CN202311718451.4
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-12-14
Publication Date
2025-08-22
Estimated Expiration
2043-12-14

AI Technical Summary

Technical Problem

The exposed existing feed tanks make the feed susceptible to external dust, and the liquid splash during cleaning causes the feed to deteriorate, increasing waste.

Method used

A specialized breeding house for fattening of meat ducks is designed, using a flip unit and feeding mechanism to protect the feed through a feed baffle, and combining the feeding mechanism and control mechanism to achieve uniform feed delivery and mixing.

Benefits of technology

Effectively protect feed from dust and liquids, reduce the risk of spoilage, improve feed utilization, avoid accumulation and food competition, and provide a convenient edible environment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention relates to the field of breeding technology, and discloses a specialized breeding house for fattening meat ducks, comprising a breeding rack, an inner wall of the breeding rack being provided with a support plate, an inner wall of the breeding rack being provided with a breeding mesh plate located at the top of the support plate, a placement groove being provided at the top of the breeding mesh plate, a groove one being provided on one side of the inner wall of the breeding rack being provided, a feed seat and a control mechanism located at one side of the feed seat being provided inside the placement groove, side baffles being symmetrically provided on both sides of the top of the placement groove, a feed baffle being provided on the feed seat, the feed baffle being connected to the feed seat by a flip unit, a feeding mechanism located above the feed seat being provided on the inner wall of the breeding rack, and a feeding mechanism connected to the feeding mechanism being provided inside the feed seat; the present invention shields the top of the feed seat by the feed baffle, effectively protecting the feed inside the feed seat, preventing the feed from being affected by external dust and liquid, and reducing the possibility of feed deterioration.
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Description

Technical Field

[0001] The present invention relates to the field of breeding, and in particular to a specialized breeding house for fattening meat ducks. Background Art

[0002] Ducks are divided into three types, namely egg-laying, meat-raising and dual-purpose. Meat ducks are simply called meat ducks. They are generally larger in size and have delicious meat. When meat ducks are raised in a centralized manner, they are usually raised with feed, so the feed is put into the feed trough.

[0003] Since the existing feed trough is exposed, the remaining feed inside is easily affected by external dust. When the breeding house is cleaned and disinfected, liquid may splash into the feed, increasing the possibility of feed deterioration and causing feed waste. Summary of the Invention

[0004] In order to solve the technical problems that the existing feed troughs are exposed and the residual feed inside is easily affected by external dust, and when the breeding house is cleaned and disinfected, liquid may splash into the feed, increasing the possibility of feed deterioration and further causing feed waste, the present invention provides a specialized breeding house for fattening meat ducks.

[0005] The present invention is implemented by the following technical solution: a specialized breeding house for fattening meat ducks, comprising a breeding rack, an inner wall of the breeding rack is installed with a support plate, an inner wall of the breeding rack is installed with a breeding mesh plate located at the top of the support plate, a placement slot is provided at the top of the breeding mesh plate, a groove connected to the placement slot is provided on one side of the inner wall of the breeding rack, a feed seat and a control mechanism located on one side of the feed seat are provided inside the placement slot, side baffles are symmetrically installed on both sides of the top of the placement slot, a feed baffle is installed on the feed seat, the feed baffle and the feed seat are connected by a turning unit, a feeding mechanism located above the feed seat is installed on the inner wall of the breeding rack, and a feeding mechanism connected to the feeding mechanism is installed inside the feed seat;

[0006] The feeding mechanism includes a slide slidably mounted on the inner wall of the breeding rack, a feed storage box is provided at the top of the slide, a discharge pipe rotatably mounted on the inner wall of the slide is provided at the bottom end of the feed storage box, the bottom end of the discharge pipe is movably connected to the feeding pipe, a connecting ring is provided at the top of the feeding pipe, and a connecting groove slidably connected to the connecting ring is provided at the bottom end of the discharge pipe. The feeding pipe and the feeding mechanism are connected through a transmission assembly, and the slide is connected to the driver.

[0007] As a further improvement of the above-mentioned scheme, the driver includes a groove 2 opened on the inner wall of the breeding rack and located above the groove 1. A motor is installed on the inner wall of the groove 2. The output shaft of the motor is connected to a screw rod. The screw rod is provided with a threaded seat 1 fixed to the side wall of the slide seat. The threaded seat 1 is threadedly connected to the screw rod.

[0008] As a further improvement of the above-mentioned scheme, the material-dispensing mechanism includes a fixed plate fixed to the inner wall of the breeding rack, a rotating rod extending to the inner wall of the feed seat is rotatably installed on the fixed plate, a rotating part connected to the transmission assembly is provided on the rotating rod, a bidirectional threaded groove located inside the feed seat is opened on the rotating rod, a stabilizing rod located below the rotating rod is fixed to the inner wall of the feed seat, a threaded seat 2 is slidably installed on the bidirectional threaded groove and the stabilizing rod, the threaded seat 2 is threadedly connected to the bidirectional threaded groove, and the threaded seat 2 is slidably connected to the stabilizing rod, and an elastic material-dispensing part is provided at the bottom end of the threaded seat 2.

[0009] As a further improvement of the above-mentioned scheme, the elastic material-dispensing member includes an elastic telescopic rod inserted into the interior of the second threaded seat, the bottom end of the elastic telescopic rod is provided with a material-dispensing plate that is slidably connected to the inner wall of the feed seat, and the inner bottom end of the feed seat is provided with convex plates at equal distances, and the bottom end of the material-dispensing plate is slidably connected to the convex plate.

[0010] As a further improvement of the above scheme, the transmission assembly includes a gear 1 fixedly sleeved on the outside of the feeding pipe and a winding wheel 1, the winding wheel 1 is located below the gear 1, the inner wall of the breeding rack is fixedly connected with a bar-shaped tooth plate 1 that is meshed with the gear 1, the inner wall of the breeding rack is installed with a traction rod, the traction rod is provided with an opening, a connecting rope is wrapped around the winding wheel 1, the connecting rope passes through the opening and is connected to the rotating part.

[0011] As a further improvement of the above solution, the rotating part includes a winding wheel 2 fixedly connected to the rotating rod, a connecting rope is wound on the winding wheel 2, and a spring 1 is provided on the outer sleeve of the rotating rod and fixedly connected to the winding wheel 2 and the side wall of the fixed plate.

[0012] As a further improvement of the above scheme, the control mechanism includes a control box installed on one side of the feed seat and located inside the placement groove, a T-shaped pedal is inserted into the inner top of the control box, the side wall of the T-shaped pedal is slidably connected to the outer wall of the feed seat, the inner wall of the control box is fixed with a plug rod inserted into the inside of the T-shaped pedal, the outer side of the plug rod is provided with a spring 2 connected to the bottom end of the T-shaped pedal, a connecting groove connected to the groove 1 is provided on the feed seat and the control box, the bottom end of the T-shaped pedal is fixed with a pull rod inserted in the connecting groove and extending to the inside of the groove 1, and one end of the pull rod is connected to the flip unit.

[0013] As a further improvement of the above-mentioned scheme, the flipping unit includes a receiving groove opened on the inner wall of the feed seat and connected with groove one, and the inner walls of the receiving groove and groove one are both provided with a slide groove. One end of the feed baffle is fixed with a slide rod extending to the inside of the slide groove, and the slide rod slides on the inner wall of the slide groove. The outer wall of the feed baffle is installed with an arc-shaped tooth plate, and the arc-shaped tooth plate is connected to the acceleration movement mechanism.

[0014] As a further improvement of the above scheme, the acceleration moving mechanism includes a lifting plate connected to one end of the pull rod, the inner top end of the groove one is fixedly connected with a connecting rod, the connecting rod is inserted into the interior of the lifting plate, and the bottom end of the connecting rod is fixedly connected to the inner wall of the lifting plate through spring four. A push rod is provided on one side of the lifting plate, and the push rod is connected to the lifting plate through a telescopic part. A T-shaped moving plate is slidably installed on the inner top end of the groove one, and a movable groove is provided on the T-shaped moving plate. A movable rod is installed on the push rod to slide and insert into the movable groove. A bar tooth plate 2 is fixed on the side of the T-shaped moving plate away from the lifting plate, and a gear 2 meshing with the bar tooth plate 2 and the arc tooth plate is connected to the upper shaft of the push rod. A connecting plate is fixed on one side of the push rod, and a connecting rod is fixed on the connecting plate. A slot is provided on the feed baffle, and the connecting rod runs through the interior of the slot and slides inside the slot.

[0015] As a further improvement of the above solution, the telescopic part includes a storage groove opened on one side of the lifting plate, the push rod is inserted into the interior of the storage groove, the interior of the storage groove is fixed with an insertion rod inserted into the interior of the push rod, and the insertion rod is provided with a spring three connected to the side wall of the push rod.

[0016] Compared with the prior art, the present invention has the following beneficial effects:

[0017] 1. When the meat duck stands on the control mechanism, the present invention provides power to the turning unit, thereby turning the feed baffle located above the feed seat, so that the feed seat is opened, thereby providing convenience for the meat duck to eat the feed inside the feed seat.

[0018] 2. The feed baffle is used to block the top of the feed seat, effectively protecting the feed inside the feed seat, preventing the feed from being affected by external dust and liquid, and reducing the possibility of feed deterioration.

[0019] 3. The design of the feed-diverting mechanism makes it easy to dig the feed, avoid the feed from standing still, and achieve feed mixing, thereby increasing the probability of meat ducks eating the original remaining feed, effectively reducing the possibility of the covered feed being left uneaten for a long time and deteriorating, thereby saving feed.

[0020] 4. The design of the feeding mechanism makes it easy for the discharge pipe to move back and forth above the feed seat, so that the feed can be fed to different positions inside the feed seat. This can avoid the problem of feed accumulation, which causes the ducks to squeeze each other for food and makes it inconvenient for the weak ducks to eat. This design makes it convenient for the ducks to eat feed. BRIEF DESCRIPTION OF THE DRAWINGS

[0021] Figure 1 This is a schematic diagram of the overall structure of a specialized breeding house for fattening meat ducks provided in Example 1 of the present invention;

[0022] Figure 2 for Figure 1A schematic diagram of the structure enlarged in the middle;

[0023] Figure 3 It is a schematic diagram of the side cross-section structure of the material shifting mechanism;

[0024] Figure 4 It is the connection diagram between the flip unit and the control mechanism;

[0025] Figure 5 It is a schematic diagram of the side cross-section structure of the feed seat and the feed baffle;

[0026] Figure 6 for Figure 4 The enlarged structural diagram at B in the middle;

[0027] Figure 7 for Figure 5 Schematic diagram of the three-dimensional structure.

[0028] Description of main symbols:

[0029] 1. Breeding rack; 2. Support plate; 3. Breeding mesh plate; 4. Placement slot; 5. Groove 1; 6. Feed seat; 7. Control box; 8. Feed baffle; 9. Groove 2; 10. Slide; 11. Feed storage box; 12. Discharge pipe; 13. Feeding pipe; 14. Connecting ring; 15. Connecting slot; 16. Gear 1; 17. Strip tooth plate 1; 18. Reel 1; 19. Drawbar; 20. Opening; 21. Connecting rope; 22. Screw; 23. Threaded seat 1; 24. Motor; 25. Receiving slot; 26. Spring 4; 27. Side baffle; 28. Fixed plate; 29. ​​Rotating rod; 30. Reel 2; 3 1. Spring 1; 32. Bidirectional thread groove; 33. Stabilizing rod; 34. Threaded seat 2; 35. Elastic telescopic rod; 36. Diverter plate; 37. Raised plate; 38. Connecting groove; 39. T-shaped pedal; 40. Connecting rod; 41. Spring 2; 42. Pull rod; 43. Slide groove; 44. Slide rod; 45. Arc-shaped tooth plate; 46. Slot; 47. Lifting plate; 48. Connecting rod; 49. Storage groove; 50. Push rod; 51. Insert rod; 52. T-shaped movable plate; 53. Movable rod; 54. Movable groove; 55. Strip tooth plate 2; 56. Gear 2; 57. Connecting plate; 58. Connecting rod; 59. Spring 3. DETAILED DESCRIPTION

[0030] The present invention will be further described below in conjunction with the accompanying drawings and specific implementation methods. It should be noted that, under the premise of no conflict, the various embodiments or technical features described below can be arbitrarily combined to form new embodiments.

[0031] Example 1

[0032] Please combine Figures 1 to 7, a specialized breeding house for fattening meat ducks in this embodiment includes a breeding rack 1, a support plate 2 is installed on the inner wall of the breeding rack 1, a breeding mesh plate 3 located at the top of the support plate 2 is installed on the inner wall of the breeding rack 1, a placement groove 4 is opened on the top of the breeding mesh plate 3, and a groove 5 connected to the placement groove 4 is opened on one side of the inner wall of the breeding rack 1. A feed seat 6 and a control mechanism located on one side of the feed seat 6 are provided inside the placement groove 4, and side baffles 27 are symmetrically installed on both sides of the top of the placement groove 4. A feed baffle 8 is installed on the feed seat 6, and the feed baffle 8 is connected to the feed seat 6 by a turning unit. A feeding mechanism located above the feed seat 6 is installed on the inner wall of the breeding rack 1, and a feeding mechanism connected to the feeding mechanism is installed inside the feed seat 6;

[0033] When the meat ducks eat feed, the meat ducks will stand on the control mechanism, and then through the design of the flip unit, the feed baffle 8 located above the feed seat 6 will flip, and then the feed seat 6 will open, making it convenient for the meat ducks to eat the remaining feed inside the feed seat 6. When the feed baffle 8 flips and the feed seat 6 is opened, the staff will control the feeding mechanism to work, and then move above the feed seat 6 to feed, so that the feed is fed evenly, effectively avoiding feed accumulation, so that the meat ducks can all eat feed. At the same time, when the feeding mechanism is working, the feeding mechanism inside the feed seat 6 will be activated, because the fed feed will cover the original remaining feed, which will cause the meat ducks to eat the upper feed first, and the original remaining feed may deteriorate due to long-term non-eating. Therefore, the feed will be moved through the action of the feeding mechanism to avoid the lower feed from standing still, and then the feed can be mixed, thereby increasing the probability of the meat ducks eating the original remaining feed and effectively reducing the possibility of feed deterioration.

[0034] The feeding mechanism includes a slide 10 slidably mounted on the inner wall of the breeding rack 1, a feed storage box 11 is provided at the top of the slide 10, and a discharge pipe 12 rotatably mounted on the inner wall of the slide 10 is provided at the bottom end of the feed storage box 11, and a feeding pipe 13 is movably connected to the bottom end of the discharge pipe 12, and a connecting ring 14 is provided at the top of the feeding pipe 13. A connecting groove 15 slidably connected to the connecting ring 14 is provided at the bottom end of the discharge pipe 12. The feeding pipe 13 is connected to the feeding mechanism through a transmission assembly, and the slide 10 is connected to the driver. The driver includes a groove 29 opened on the inner wall of the breeding rack 1 and located above the groove 15. A motor 24 is installed on the inner wall of the groove 29. The output shaft of the motor 24 is connected to a screw rod 22. A threaded seat 23 fixed to the side wall of the slide 10 is sleeved on the screw rod 22, and the threaded seat 23 is threadedly connected to the screw rod 22;

[0035] When the feed baffle 8 is flipped over and blocks the top of the feed seat 6, the motor 24 is started, and the motor 24 drives the screw rod 22 to rotate. Through the threaded connection relationship between the screw rod 22 and the threaded seat 1 23 and the sliding connection relationship between the slide 10 and the inner wall of the breeding rack 1, the threaded seat 1 23 is made to slide on the outside of the screw rod 22, and then the slide 10 drives the feed storage box 11, the feeding pipe 13, the connecting ring 14 and the connecting groove 15 to move synchronously, so that the feeding pipe 13 moves back and forth above the feed seat 6, so that the feed inside the feed storage box 11 is fed into different positions in the feed seat 6 through the discharge pipe 12 and the feeding pipe 13, which can avoid the problem of feed accumulation, causing the meat ducks to squeeze each other for food and making it inconvenient for the weak meat ducks to eat, and thus the present design provides convenience for the meat ducks to eat feed;

[0036] The feeding mechanism includes a fixed plate 28 fixed to the inner wall of the breeding rack 1, and a rotating rod 29 extending to the inner wall of the feed seat 6 is rotatably installed on the fixed plate 28. The rotating rod 29 is provided with a rotating part connected to the transmission assembly. The rotating rod 29 is provided with a bidirectional thread groove 32 located inside the feed seat 6. The inner wall of the feed seat 6 is fixed with a stabilizing rod 33 located below the rotating rod 29. A threaded seat 24 is slidably installed on the bidirectional thread groove 32 and the stabilizing rod 33. The threaded seat 24 is threadedly connected to the bidirectional thread groove 32, and the threaded seat 24 is slidably connected to the stabilizing rod 33. The bottom end of the threaded seat 24 is provided with an elastic feeding piece, which includes an elastic telescopic rod 35 inserted into the inside of the threaded seat 24, and the bottom end of the elastic telescopic rod 35 is provided with a feeding plate slidably connected to the inner wall of the feed seat 6. 36, the inner bottom end of the feed seat 6 is equidistantly provided with a convex plate 37, the bottom end of the material-diverting plate 36 is slidably connected to the convex plate 37, the transmission assembly includes a gear 16 and a reel 18 fixedly sleeved on the outside of the feeding tube 13, the reel 18 is located below the gear 16, the inner wall of the breeding rack 1 is fixedly connected with a bar-shaped toothed plate 17 meshing with the gear 16, the inner wall of the breeding rack 1 is installed with a traction rod 19, the traction rod 19 is provided with an opening 20, a connecting rope 21 is wound around the reel 18, the connecting rope 21 passes through the opening 20 and is connected to the rotating member, the rotating member includes a reel 2 30 fixedly connected to the rotating rod 29, the reel 2 30 is wound with a connecting rope 21, and the outer sleeve of the rotating rod 29 is provided with a spring 31 fixed to the reel 2 30 and the side wall of the fixed plate 28;

[0037] When the feeding tube 13 moves above the feed seat 6 and feeds, the feeding tube 13 will drive the gear 16 and the reel 18 to move synchronously. Through the meshing connection between the gear 16 and the bar tooth plate 17, the gear 16 will rotate during the movement, and then the gear 16 will drive the feeding tube 13 to rotate, and the feeding tube 13 will drive the connecting ring 14 to rotate inside the connecting groove 15, and then the feeding tube 13 will drive the reel 18 to rotate, and the reel 18 will reel the connecting rope 21, and then the connecting rope 21 will reel in. The opening 20 inside the traction rod 19 moves, and the winding wheel 2 30 rotates by winding the connecting rope 21. The winding wheel 2 30 releases the connecting rope 21, and the rotation of the winding wheel 2 30 drives the rotating rod 29 to rotate, and at the same time drives the spring 1 31 to rotate. The rotation of the rotating rod 29 drives the bidirectional thread groove 32 to rotate. Through the threaded connection relationship between the bidirectional thread groove 32 and the threaded seat 2 34 and the sliding connection relationship between the threaded seat 2 34 and the stabilizing rod 33, the threaded seat 2 34 drives the elastic telescopic rod 35 The feeding plate 36 slides synchronously on the inner bottom of the feed seat 6, thereby facilitating the feeding plate 36 to move the feed inside the feed seat 6, thereby preventing the feed inside the feed seat 6 from being left still and causing the feed at the bottom to be covered. When the feeding tube 13 moves in the reverse direction, the feeding tube 13 will be reversed, and the reel-18 will release the connecting rope 21. Due to the reverse force of the spring 1 31, the rotating rod 29 will rotate in the reverse direction, and the rotating rod 29 will drive the reel-2 30 to reel in the connecting rope 21. At the same time, the rotating rod 29 will The rotation of the two-way thread groove 32 will realize the relative movement of the two thread seats 34, and then the thread seat 2 34 will move the feed back and forth. At the same time, the material shifting plate 36 will touch the convex plate 37 during the movement. Due to the structural design of the convex plate 37, the material shifting plate 36 will slide on the outer wall of the convex plate 37, and then the elastic telescopic rod 35 will be extended and retracted inside the thread seat 2 34, making it easier for the material shifting plate 36 to rise and fall during the horizontal movement, effectively improving the mixing effect of the feed, and thus increasing the probability of the meat ducks eating the original remaining feed.

[0038] The control mechanism includes a control box 7 mounted on one side of the feed seat 6 and located inside the placement groove 4. A T-shaped pedal 39 is inserted into the inner top of the control box 7. The side wall of the T-shaped pedal 39 is slidably connected to the outer wall of the feed seat 6. A plug-in rod 40 is fixedly connected to the inner wall of the control box 7 and inserted into the interior of the T-shaped pedal 39. The outer portion of the plug-in rod 40 is sleeved with a spring 2 41 connected to the bottom end of the T-shaped pedal 39. A connecting groove 38 connected to the groove 1 5 is formed on the feed seat 6 and the control box 7. A pull rod 42 is fixedly connected to the bottom end of the T-shaped pedal 39 and inserted into the connecting groove 38 and extends into the interior of the groove 1 5. One end of the pull rod 42 is connected to the flip unit.

[0039] When the meat duck eats feed, it will stand on the top of the T-shaped pedal 39. The T-shaped pedal 39 will move downward due to gravity. The downward movement of the T-shaped pedal 39 will compress the spring 2 41. At the same time, the T-shaped pedal 39 will push the pull rod 42 to move downward inside the connecting groove 38, and then the pull rod 42 will realize the flipping unit action, thereby providing power for the flipping of the feed baffle 8. When the meat duck leaves the T-shaped pedal 39, the reverse force of the spring 2 41 will cause the T-shaped pedal 39 to move up, and then the pull rod 42 will move up, and the flipping unit will move in the opposite direction, and then the feed baffle 8 will rotate in the opposite direction, and the feed baffle 8 will be rotated to the top of the feed seat 6 to block the feed, effectively reducing dust from entering the feed seat 6. At the same time, when cleaning the breeding mesh plate 3, liquid can be prevented from splashing into the feed seat 6 and causing feed deterioration, thereby effectively protecting the feed.

[0040] The flip unit includes a receiving groove 25 which is provided on the inner wall of the feed seat 6 and is connected to the groove 5. The inner walls of the receiving groove 25 and the groove 5 are both provided with a slide groove 43. One end of the feed baffle 8 is fixed with a slide rod 44 extending to the inside of the slide groove 43. The slide rod 44 slides on the inner wall of the slide groove 43. The outer wall of the feed baffle 8 is installed with an arc-shaped tooth plate 45. The arc-shaped tooth plate 45 is connected to the acceleration movement mechanism. The acceleration movement mechanism includes a lifting plate 47 connected to one end of the pull rod 42. The inner top end of the groove 5 is fixed with a connecting rod 48. The connecting rod 48 is inserted into the interior of the lifting plate 47, and the bottom end of the connecting rod 48 is fixed to the inner wall of the lifting plate 47 through a spring four 26. A push rod 50 is provided on one side of the lifting plate 47. The push rod 50 is connected to the lifting plate 47 through a telescopic member. The inner top end of the groove 5 is slidably installed with a T-shaped moving plate 52. The T-shaped A movable groove 54 is provided on the movable plate 52, and a movable rod 53 is installed on the push rod 50, which is slidably inserted into the movable groove 54. A bar tooth plate 2 55 is fixedly connected to the side of the T-shaped movable plate 52 away from the lifting plate 47. A gear 2 56 is connected to the upper shaft of the push rod 50 and is meshed with the bar tooth plate 2 55 and the arc tooth plate 45. A connecting plate 57 is fixedly connected to one side of the push rod 50, and a connecting rod 58 is fixedly connected to the connecting plate 57. A slot 46 is provided on the feed baffle 8, and the connecting rod 58 runs through the interior of the slot 46 and slides inside the slot 46. The telescopic part includes a receiving slot 49 provided on one side of the lifting plate 47, and the push rod 50 is inserted into the interior of the receiving slot 49. The interior of the receiving slot 49 is fixed with an insertion rod 51 inserted into the interior of the push rod 50, and the insertion rod 51 is sleeved with a spring 3 59 connected to the side wall of the push rod 50;

[0041] The downward movement of the pull rod 42 will drive the lifting plate 47 to move downward, and then the lifting plate 47 will move downward on the outside of the connecting rod 48, and stretch the spring 426. At the same time, the lifting plate 47 will drive the storage groove 49 and the push rod 50 to move downward synchronously, and the push rod 50 will drive the movable rod 53, the gear 2 56, the connecting plate 57 and the connecting rod 58 to move downward synchronously, and make the movable rod 53 slide inside the movable groove 54. Through the meshing connection relationship between the gear 2 56 and the bar tooth plate 2 55, the gear 2 56 will rotate in the process of moving downward. At the same time, through the meshing connection relationship between the gear 2 56 and the arc tooth plate 45 , which will cause the arc-shaped tooth plate 45 to rotate, and the arc-shaped tooth plate 45 will drive the feed baffle 8 to rotate, and then the feed baffle 8 will drive the slide bar 44 to slide inside the slide groove 43, and then the feed baffle 8 will drive the slot 46 to slide outside the connecting rod 58, and move the feed baffle 8 to the inside of the accommodating groove 25, so that the top of the feed seat 6 is opened, which is convenient for the meat ducks to eat the feed inside the feed seat 6. At the same time, this design makes the gear 2 56 rotate during the downward movement, which will speed up the flipping speed of the feed baffle 8, thereby speeding up the opening efficiency of the feed seat 6, effectively providing convenience for the meat ducks to eat feed.

[0042] The implementation principle of a specialized breeding house for fattening meat ducks in the embodiment of the present application is as follows:

[0043] When the meat duck eats feed, it will stand on the top of the T-shaped pedal 39, and the T-shaped pedal 39 will move downward under the force of gravity. The downward movement of the T-shaped pedal 39 will compress the spring 2 41, and at the same time, the T-shaped pedal 39 will push the pull rod 42 to move downward inside the connecting groove 38, and then the pull rod 42 will realize the flip unit action, thereby providing power for the flipping of the feed baffle 8. When the meat duck leaves the T-shaped pedal 39, the reverse action of the spring 2 41 will cause the T-shaped pedal 39 to move up, and then the pull rod 42 will move up, and the flip unit will move in the opposite direction, and then the feed baffle 8 will rotate in the opposite direction and rotate the feed baffle 8 to the top of the feed seat 6 to achieve shielding of the feed, effectively reducing dust from entering the feed seat 6. At the same time, when cleaning the breeding net plate 3, it can prevent liquid from splashing into the feed seat 6 and causing the feed to deteriorate, thereby effectively protecting the feed;

[0044] The downward movement of the pull rod 42 will drive the lifting plate 47 to move downward, and then the lifting plate 47 will move downward on the outside of the connecting rod 48, and stretch the spring 426. At the same time, the lifting plate 47 will drive the storage groove 49 and the push rod 50 to move downward synchronously, and the push rod 50 will drive the movable rod 53, the gear 2 56, the connecting plate 57 and the connecting rod 58 to move downward synchronously, and make the movable rod 53 slide inside the movable groove 54. Through the meshing connection relationship between the gear 2 56 and the bar tooth plate 2 55, the gear 2 56 will rotate in the process of moving downward. At the same time, through the meshing connection relationship between the gear 2 56 and the arc tooth plate 45 , which will cause the arc-shaped tooth plate 45 to rotate, and the arc-shaped tooth plate 45 will drive the feed baffle 8 to rotate, and then the feed baffle 8 will drive the slide bar 44 to slide inside the slide groove 43, and then the feed baffle 8 will drive the slot 46 to slide outside the connecting rod 58, and move the feed baffle 8 to the inside of the accommodating groove 25, so that the top of the feed seat 6 is opened, which is convenient for the meat ducks to eat the feed inside the feed seat 6. At the same time, this design makes the gear 2 56 rotate during the downward movement, which will speed up the flipping speed of the feed baffle 8, thereby speeding up the opening efficiency of the feed seat 6, effectively providing convenience for the meat ducks to eat feed;

[0045] When the feed baffle 8 is flipped over and blocks the top of the feed seat 6, the motor 24 is started, and the motor 24 drives the screw rod 22 to rotate. Through the threaded connection relationship between the screw rod 22 and the threaded seat 1 23 and the sliding connection relationship between the slide 10 and the inner wall of the breeding rack 1, the threaded seat 1 23 is made to slide on the outside of the screw rod 22, and then the slide 10 drives the feed storage box 11, the feeding pipe 13, the connecting ring 14 and the connecting groove 15 to move synchronously, so that the feeding pipe 13 moves back and forth above the feed seat 6, so that the feed inside the feed storage box 11 is fed into different positions in the feed seat 6 through the discharge pipe 12 and the feeding pipe 13, which can avoid the problem of feed accumulation, causing the meat ducks to squeeze each other for food and making it inconvenient for the weak meat ducks to eat, and thus the present design provides convenience for the meat ducks to eat feed;

[0046] When the feeding tube 13 moves above the feed seat 6 and feeds, the feeding tube 13 will drive the gear 16 and the reel 18 to move synchronously. Through the meshing connection between the gear 16 and the bar tooth plate 17, the gear 16 will rotate during the movement, and then the gear 16 will drive the feeding tube 13 to rotate, and the feeding tube 13 will drive the connecting ring 14 to rotate inside the connecting groove 15, and then the feeding tube 13 will drive the reel 18 to rotate, and the reel 18 will reel the connecting rope 21, and then the connecting rope 21 will reel in. The opening 20 inside the traction rod 19 moves, and the winding wheel 2 30 rotates by winding the connecting rope 21. The winding wheel 2 30 releases the connecting rope 21, and the rotation of the winding wheel 2 30 drives the rotating rod 29 to rotate, and at the same time drives the spring 1 31 to rotate. The rotation of the rotating rod 29 drives the bidirectional thread groove 32 to rotate. Through the threaded connection relationship between the bidirectional thread groove 32 and the threaded seat 2 34 and the sliding connection relationship between the threaded seat 2 34 and the stabilizing rod 33, the threaded seat 2 34 drives the elastic telescopic rod 35 The feeding plate 36 slides synchronously on the inner bottom of the feed seat 6, thereby facilitating the feeding plate 36 to move the feed inside the feed seat 6, thereby preventing the feed inside the feed seat 6 from being left still and causing the feed at the bottom to be covered. When the feeding tube 13 moves in the reverse direction, the feeding tube 13 will be reversed, and the reel-18 will release the connecting rope 21. Due to the reverse force of the spring 1 31, the rotating rod 29 will rotate in the reverse direction, and the rotating rod 29 will drive the reel-2 30 to reel in the connecting rope 21. At the same time, the rotating rod 29 will The rotation of the two-way thread groove 32 will realize the relative movement of the two thread seats 34, and then the thread seat 2 34 will move the feed back and forth. At the same time, the material shifting plate 36 will touch the convex plate 37 during the movement. Due to the structural design of the convex plate 37, the material shifting plate 36 will slide on the outer wall of the convex plate 37, and then the elastic telescopic rod 35 will be extended and retracted inside the thread seat 2 34, making it easier for the material shifting plate 36 to rise and fall during the horizontal movement, effectively improving the mixing effect of the feed, and thus increasing the probability of the meat ducks eating the original remaining feed.

[0047] The above embodiments are only preferred embodiments of the present invention and cannot be used to limit the scope of protection of the present invention. Any non-substantial changes and replacements made by technicians in this field on the basis of the present invention fall within the scope of protection required by the present invention.

Claims

1. A specialized breeding house for fattening meat ducks, characterized in that: The invention comprises a breeding rack, wherein a support plate is installed on the inner wall of the breeding rack, a breeding mesh plate located at the top of the support plate is installed on the inner wall of the breeding rack, a placement slot is provided on the top of the breeding mesh plate, a groove connected to the placement slot is provided on one side of the inner wall of the breeding rack, a feed seat and a control mechanism located on one side of the feed seat are provided inside the placement slot, side baffles are symmetrically installed on both sides of the top of the placement slot, a feed baffle is installed on the feed seat, the feed baffle and the feed seat are connected by a turning unit, a feeding mechanism located above the feed seat is installed on the inner wall of the breeding rack, and a feeding mechanism connected to the feeding mechanism is installed inside the feed seat; The feeding mechanism includes a slide seat slidably mounted on the inner wall of the breeding rack, a feed storage box is provided at the top of the slide seat, a discharge pipe rotatably mounted on the inner wall of the slide seat is provided at the bottom end of the feed storage box, the bottom end of the discharge pipe is movably connected to the feeding pipe, a connecting ring is provided at the top of the feeding pipe, a connecting groove is provided at the bottom end of the discharge pipe which is slidably connected to the connecting ring, the feeding pipe and the feeding mechanism are connected through a transmission assembly, and the slide seat is connected to the driver; The feeding mechanism includes a fixed plate fixed to the inner wall of the breeding rack, a rotating rod extending to the inner wall of the feed seat is rotatably mounted on the fixed plate, a rotating member connected to the transmission assembly is provided on the rotating rod, a bidirectional threaded groove located inside the feed seat is opened on the rotating rod, a stabilizing rod located below the rotating rod is fixed to the inner wall of the feed seat, a threaded seat 2 is slidably mounted on the bidirectional threaded groove and the stabilizing rod, the threaded seat 2 is threadedly connected to the bidirectional threaded groove, and the threaded seat 2 is slidably connected to the stabilizing rod, and an elastic feeding member is provided at the bottom end of the threaded seat 2; The elastic material-diverting member includes an elastic telescopic rod inserted into the interior of the second threaded seat, the bottom end of the elastic telescopic rod is provided with a material-diverting plate slidably connected to the inner wall of the feed seat, and the inner bottom end of the feed seat is provided with convex plates at equal distances, and the bottom end of the material-diverting plate is slidably connected to the convex plate; The transmission assembly includes a gear 1 fixedly sleeved on the outside of the feeding pipe and a reel 1, the reel 1 is located below the gear 1, the inner wall of the breeding rack is fixedly connected to a bar-shaped toothed plate 1 meshing with the gear 1, the inner wall of the breeding rack is installed with a traction rod, the traction rod is provided with an opening, and a connecting rope is wound around the reel 1, the connecting rope passes through the opening and is connected to the rotating member; The rotating member includes a second winding wheel fixedly connected to the rotating rod, a connecting rope is wound on the second winding wheel, and a spring first is provided on the outer sleeve of the rotating rod and fixedly connected to the second winding wheel and the side wall of the fixed plate.

2. The specialized breeding house for fattening meat ducks according to claim 1, characterized in that: The driver includes a groove 2 opened on the inner wall of the breeding rack and located above the groove 1. A motor is installed on the inner wall of the groove 2. The motor output shaft is connected to a screw rod. A threaded seat 1 fixedly connected to the side wall of the slide is sleeved on the screw rod. The threaded seat 1 is threadedly connected to the screw rod.

3. The specialized breeding house for fattening meat ducks according to claim 1, characterized in that: The control mechanism includes a control box installed on one side of the feed seat and located inside the placement groove, a T-shaped pedal is inserted into the inner top of the control box, the side wall of the T-shaped pedal is slidably connected to the outer wall of the feed seat, the inner wall of the control box is fixed with a plug rod inserted into the inside of the T-shaped pedal, the outer part of the plug rod is provided with a spring 2 connected to the bottom end of the T-shaped pedal, a connecting groove connected to the groove 1 is provided on the feed seat and the control box, a pull rod is fixed to the bottom end of the T-shaped pedal, which is inserted into the connecting groove and extends to the inside of the groove 1, and one end of the pull rod is connected to the flip unit.

4. The specialized breeding house for fattening meat ducks according to claim 3, characterized in that: The flipping unit includes a receiving groove opened on the inner wall of the feed seat and connected to the groove one, and the inner walls of the receiving groove and the groove one are both provided with a slide groove. One end of the feed baffle is fixed with a slide rod extending to the inside of the slide groove, and the slide rod slides on the inner wall of the slide groove. The outer wall of the feed baffle is installed with an arc-shaped tooth plate, and the arc-shaped tooth plate is connected to the acceleration movement mechanism.

5. The specialized breeding house for fattening meat ducks according to claim 4, characterized in that: The acceleration moving mechanism includes a lifting plate connected to one end of the pull rod, the inner top end of the groove one is fixedly connected with a connecting rod, the connecting rod is inserted into the interior of the lifting plate, and the bottom end of the connecting rod is fixedly connected to the inner wall of the lifting plate through a spring four. A push rod is provided on one side of the lifting plate, and the push rod is connected to the lifting plate through a telescopic part. A T-shaped moving plate is slidably installed on the inner top end of the groove one, and a movable groove is provided on the T-shaped moving plate. A movable rod slidingly inserted into the inside of the movable groove is installed on the push rod. A bar tooth plate 2 is fixed on the side of the T-shaped moving plate away from the lifting plate, and a gear 2 meshing with the bar tooth plate 2 and the arc tooth plate is connected to the upper shaft of the push rod. A connecting plate is fixed on one side of the push rod, and a connecting rod is fixed on the connecting plate. A slot is provided on the feed baffle, and the connecting rod runs through the inside of the slot and slides inside the slot.

6. The specialized breeding house for fattening meat ducks according to claim 5, characterized in that: The telescopic member includes a receiving groove opened on one side of the lifting plate, the push rod is inserted into the interior of the receiving groove, the interior of the receiving groove is fixed with an insertion rod inserted into the interior of the push rod, and the insertion rod is sleeved with a spring three connected to the side wall of the push rod.

Citation Information

Patent Citations

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