Feeding device for beef cattle breeding
By designing an automated feeding device including feeding tanks, movable tank bodies, telescopic components and transition mechanisms, the shortcomings of traditional beef cattle feeding equipment in feed distribution, automation and residual feed treatment are solved, and efficient and sanitary beef cattle breeding is achieved.
Patent Information
- Application Number
- CN202411936429.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-26
- Publication Date
- 2025-06-06
- Estimated Expiration
- 2044-12-26
AI Technical Summary
Traditional beef cattle feeding equipment has shortcomings in feed distribution uniformity, automation level, residual feed treatment, etc., resulting in high labor intensity and unhygienic cleaning.
An automated feeding device including a feeding tank, a movable tank body, a telescopic component and a transition mechanism is designed. Through the cooperation of the driving motor and the telescopic component, the feed is uniformly distributed and automatic cleaning is achieved, and the flow direction of sewage and residual material is separated.
It realizes efficient and even feed distribution, automatically cleansing residual feed, separates sewage and residual feed, reduces manual intervention, improves breeding efficiency, and ensures the hygiene of the feeding environment.
Smart Images

Figure CN119422927B_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of beef cattle breeding, and in particular to a feeding device for beef cattle breeding. Background Art
[0002] In beef cattle farming, the design of the feeding device directly affects the feeding efficiency of beef cattle and the waste of feed. Traditional beef cattle feeding equipment mostly relies on manual feeding or simple automatic feeding systems. Although these devices can meet the basic feed supply needs, they are insufficient in terms of feed distribution uniformity, automation level, and residual feed processing. Especially in the process of feed supply, cleaning, and waste treatment, manual intervention is frequent, which increases the labor intensity and makes it difficult to achieve efficient and hygienic cleaning. Therefore, there is an urgent need for an automated feeding device with a reasonable structure and comprehensive functions to improve breeding efficiency, reduce waste, and realize automated cleaning and sanitation management. Summary of the invention
[0003] The purpose of the present invention is to solve the shortcomings of the prior art and to propose a feeding device for beef cattle breeding.
[0004] In order to achieve the above object, the present invention adopts the following technical solutions:
[0005] A feeding device for beef cattle breeding comprises a feeding trough, wherein the inner walls on both sides of the feeding trough are fixed with a fixed trough body of an arc structure, the two sides of the feeding trough are movably installed with a mounting shaft, one side of the mounting shaft is installed with a movable trough body, the bottom of the movable trough body is installed with an extended trough body through a telescopic component, and the outer wall of the feeding trough is provided with a driving motor three for driving the mounting shaft to rotate; a fixed seat is provided at the middle position of the inner walls at both ends of the feeding trough, two mounting seats one are installed on both sides of the fixed seat through mounting rods, the same fixed sliding rod is installed on the opposite side of the two mounting seats one, a slider is slidably provided on the fixed sliding rod, and the top of the two sliders is provided with the same transition discharge pipe through mounting side wings; the fixed seat A mounting groove is provided on the top, a mounting seat 2 is installed in the mounting groove through a spring, a material dividing component is provided on the top of the mounting seat 2, the cross section of the material dividing component is a Y-shaped structure, the material dividing component is located in the middle position of the bottom opening of the transition discharge pipe, and is used to disperse the feed falling from the opening of the transition discharge pipe; a transition mechanism is installed on the bottom inner wall of the feeding trough, and the same transition mechanism is movably installed on the inner walls of both ends of the feeding trough, a middle partition is provided inside the transition mechanism, and the middle partition divides the interior of the transition mechanism into a sewage transition trough and a residual material transition trough, and a driving motor 2 for driving the transition mechanism to rotate is provided on the outer wall of the feeding trough, and the transition mechanism, the vertical partition and the fixed seat are all located in the same vertical direction.
[0006] Preferably, an air pump is installed on the outer wall of the feeding trough, one side of the fixed trough body close to the movable trough body is an inclined surface, a cavity one is opened on one side of the fixed trough body close to the movable trough body, an air outlet is opened on one side of the cavity one close to the movable trough body, and the air outlet end of the air pump is connected with the interior of the cavity one through an extended air pipe.
[0007] Preferably, a cavity three is opened on one side of the middle partition close to the residual material transition groove, and a cavity two is opened on one side of the middle partition close to the sewage transition groove. The side walls of cavity two and cavity three are both opened with through holes, and the air outlet end of the air pump is connected with the interior of cavity three through an extended air pipe.
[0008] Preferably, the fixed slide rod is a hollow structure, and a flushing mechanism is provided inside the fixed slide rod for flushing the fixed trough body and the movable trough body.
[0009] Preferably, the flushing mechanism includes a water outlet pipe movably installed inside the fixed slide rod, a flushing nozzle is arranged at the bottom of the water outlet pipe, a spray port is opened on the bottom outer wall of the fixed slide rod, the flushing nozzle extends to the bottom of the fixed slide rod through the spray port, and a water pump is arranged on the outer wall of the feeding trough, and the water outlet end of the water pump is connected with the inside of the water outlet pipe through an extended water pipe.
[0010] Preferably, a driving motor 4 for driving the water outlet pipe to rotate is arranged on the side of the mounting seat 1.
[0011] Preferably, the water outlet end of the water delivery pump is connected to the interior of the second cavity through an extended water pipe.
[0012] Preferably, a material conveying assembly is provided on one side of the vertical partition close to the residual material transition trough, a driving motor 1 for driving the material conveying assembly is provided on the outer wall of the feeding trough, and a movable door 1 is movably provided at one end of the feeding trough, and the position of the movable door 1 corresponds to the position of the material conveying assembly.
[0013] Preferably, a sewage pipe is provided on one side wall of the feeding trough for discharging cleaning sewage.
[0014] Preferably, a vibration motor is provided at one end of the material dividing component.
[0015] The beneficial effects of the present invention are:
[0016] 1. Efficient and uniform feed distribution: Through the cooperation of the drive motor and the telescopic parts, the extension trough can be precisely adjusted to ensure that the feed is evenly distributed to both sides of the feeding trough, reducing feed waste and uneven supply.
[0017] 2. Automatic cleaning function: After the beef cattle eat, the device can quickly remove the residual feed through the flipping and telescopic functions of the movable trough. At the same time, the transition mechanism guides the residual feed and sewage into a special transition trough, effectively avoiding the accumulation and contamination of residual feed and reducing the frequency of manual cleaning.
[0018] 3. Separation of sewage and residual materials: By designing reasonable sewage transition troughs and residual material transition troughs, the flow of sewage and residual materials can be separated, avoiding cross contamination between the two, helping to maintain the hygiene of the breeding environment and reduce the breeding of pathogens.
[0019] 4. Fully automated operation: The entire system is driven by a motor and an automatic telescopic device to complete the entire process of feed supply, dispersion and cleaning, greatly reducing manual intervention and improving breeding efficiency.
[0020] 5. Compact structure and easy cleaning: The designed fixed trough, movable trough, transition mechanism and other components are easy to disassemble and clean, ensuring the sanitary management of the system and meeting the needs of modern beef cattle breeding. BRIEF DESCRIPTION OF THE DRAWINGS
[0021] Figure 1 This is a schematic diagram of the overall structure of a feeding device for beef cattle breeding proposed in an embodiment of the present invention;
[0022] Figure 2 A schematic diagram of the internal structure of a feeding device for beef cattle breeding proposed in an embodiment of the present invention;
[0023] Figure 3 A schematic diagram of the structure of a fixed seat, a material distribution component, a flushing mechanism and a fixed sliding rod in a feeding device for beef cattle breeding proposed in an embodiment of the present invention;
[0024] Figure 4 A structural cross-sectional view of a fixed seat, a material distribution component, a flushing mechanism and a fixed sliding rod in a feeding device for beef cattle breeding proposed in an embodiment of the present invention;
[0025] Figure 5 A structural cross-sectional view of a fixed seat, a material distribution component and a fixed sliding rod in a feeding device for beef cattle breeding proposed in an embodiment of the present invention;
[0026] Figure 6 A schematic diagram of the structure of a transition mechanism in a feeding device for beef cattle breeding proposed in an embodiment of the present invention;
[0027] Figure 7 A structural cross-sectional view of a transition mechanism in a feeding device for beef cattle breeding proposed in an embodiment of the present invention;
[0028] Figure 8A schematic diagram of the structure of a fixed trough body and a movable trough body in a feeding device for beef cattle breeding proposed in an embodiment of the present invention;
[0029] Fig. 9 A schematic diagram of the structure of a movable trough body in a feeding device for beef cattle breeding proposed in an embodiment of the present invention flipping downward;
[0030] Fig.10 This is a top view of the structure cross-section of a fixed trough body and a movable trough body in a feeding device for beef cattle breeding proposed in an embodiment of the present invention.
[0031] In the figure: 1-feeding trough, 2-movable door 1, 31-drive motor 1, 4-drive motor 2, 5-air pump, 6-drive motor 3, 7-flushing mechanism, 71-drive motor 4, 72-flushing nozzle, 73-water outlet pipe, 74-water delivery pump, 8-fixed slide bar, 9-mounting side wing, 10-transition feed pipe, 11-movable door 2, 12-drain pipe, 13-fixed seat, 14-mounting rod, 15-fixed trough body, 16-transition mechanism, 17-vibration motor, 18-material dividing component, 19-mounting seat 1, 20-mounting seat 2, 21-slider, 22-spray port, 23-movable trough, 24-extension trough, 25-air outlet, 26-mounting shaft, 27-cavity 1, 28-telescopic component, 29-residual material transition trough, 30-sewage transition trough, 32-feeding and conveying assembly, 33-cavity 2, 34-cavity 3, 35-through hole, 36-vertical partition, 37-middle partition. DETAILED DESCRIPTION
[0032] The technical solutions in the embodiments of the present invention will be described clearly and completely below in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, rather than all the embodiments.
[0033] In one embodiment, referring to Figures 1 to 10A feeding device for beef cattle breeding comprises a feeding trough 1, wherein the inner walls on both sides of the feeding trough 1 are fixed with a fixed trough body 15 of an arc structure, both sides of the feeding trough 1 are movably installed with a mounting shaft 26, a movable trough body 23 is installed on one side of the mounting shaft 26, and an extension trough body 24 is installed at the bottom of the movable trough body 23 through a telescopic component 28, and a driving motor three 6 for driving the mounting shaft 26 to rotate is arranged on the outer wall of the feeding trough 1; a fixed seat 13 is arranged at the middle position of the inner wall at both ends of the feeding trough 1, and two mounting seats one 19 are installed on both sides of the fixed seat 13 through a mounting rod 14, and the same fixed slide bar 8 is installed on the opposite side of the two mounting seats one 19, and a slider 21 is slidably arranged on the fixed slide bar 8, and the top of the two sliders 21 is installed with the same transition discharge pipe 10 through a mounting side wing 9; the fixed seat 1 3 is provided with a mounting groove at the top, in which a mounting seat 20 is installed by a spring, and a material dividing component 18 is provided on the top of the mounting seat 20, and the cross section of the material dividing component 18 is a Y-shaped structure, and the material dividing component 18 is located in the middle position of the bottom opening of the transition discharge pipe 10, and is used to disperse the feed falling from the opening of the transition discharge pipe 10; a transition mechanism 16 is installed on the bottom inner wall of the feeding trough 1, and the same transition mechanism 16 is movably installed on the inner walls of both ends of the feeding trough 1, and a middle partition 37 is provided inside the transition mechanism 16, and the middle partition 37 divides the interior of the transition mechanism 16 into a sewage transition trough 30 and a residual material transition trough 29, and the outer wall of the feeding trough 1 is provided with a driving motor 24 for driving the transition mechanism 16 to rotate, and the transition mechanism 16, the vertical partition 36 and the fixed seat 13 are all located in the same vertical direction.
[0034] When feeding beef cattle, the driving motor 36 drives the mounting shaft 26 to rotate, so that the top of the movable trough body 23 abuts against one side of the fixed trough body 15, and the telescopic component 28 pushes the extended trough body 24 to move until one side of the extended trough body 24 abuts against the side of the fixed seat 13. At this time, the fixed trough body 15, the movable trough body 23 and the extended trough body 24 hold the feed for the beef cattle to eat, and when the feed is fed into the feeding trough 1, one end of the feed discharge pipe can be connected to the top of the transition discharge pipe 10, and the feed is discharged through the transition discharge pipe 10 at the top of the distribution component 18. The distribution component 18 distributes the discharged feed on the fixed trough bodies 15 on both sides of the fixed seat 13, and during the feeding process, the transition discharge pipe 10 can be pushed to move horizontally at a uniform speed on the top of the distribution component 18. At this time, the slider 21 slides on the fixed slide bar 8, and the fixed trough bodies 15 on both sides of the feeding trough 1 can be quickly and evenly fed. After the beef cattle have eaten, The extension trough body 24 is driven by the telescopic component 28 to move and be stored at the bottom of the movable trough body 23, and the mounting shaft 26 is driven to rotate by the driving motor three 6, driving the movable trough body 23 to flip downward to be tilted. At this time, the residual feed on the fixed trough body 15 and the movable trough body 23 will slide into the residual material transition trough 29, and the transition mechanism 16 can be driven by the driving motor two 4 to rotate, so that the residual material collected in the residual material transition trough 29 falls to one side of the vertical partition 36. After the residual material on the fixed trough body 15 and the movable trough body 23 is cleaned and before the fixed trough body 15 and the movable trough body 23 are flushed, the transition mechanism 16 can be driven by the driving motor two 4 to rotate until the opening of the sewage transition trough 30 faces upward. At this time, the sewage generated by cleaning on the fixed trough body 15 and the movable trough body 23 flows into the sewage transition trough 30, and then the transition mechanism 16 is driven by the driving motor two 4 to rotate until the sewage collected in the sewage transition trough 30 flows to the other side of the vertical partition 36.
[0035] As a preferred embodiment of the present invention, an air pump 5 is installed on the outer wall of the feeding trough 1, and one side of the fixed trough body 15 close to the movable trough body 23 is an inclined surface, and a cavity 27 is provided on one side of the fixed trough body 15 close to the movable trough body 23, and an air outlet 25 is provided on one side of the cavity 27 close to the movable trough body 23. The air outlet end of the air pump 5 is connected with the interior of the cavity 27 through an extended air pipe. When the movable trough body 23 is turned down to clean the residual material, air can be blown into the cavity 27 through the air pump 5, and the air flow is ejected from the air outlet 25 to blow dust on the surface of the movable trough body 23 to prevent feed from adhering to the surface of the movable trough body 23.
[0036] As a preferred embodiment of the present invention, a cavity three 34 is provided on one side of the middle partition plate 37 close to the residual material transition groove 29, and a cavity two 33 is provided on one side of the middle partition plate 37 close to the sewage transition groove 30. The side walls of the cavity two 33 and the cavity three 34 are both provided with through holes 35. The air outlet end of the air pump 5 is connected with the interior of the cavity three 34 through an extended air pipe. When the residual material collected in the residual material transition groove 29 is discharged, air can be blown into the cavity three 34 through the air pump 5, and the air flow is ejected from the through hole 35 to blow down and empty the residual material in the residual material transition groove 29.
[0037] As a preferred embodiment of the present invention, the fixed slide rod 8 is a hollow structure, and a flushing mechanism 7 is provided inside the fixed slide rod 8 for flushing the fixed slot body 15 and the movable slot body 23 .
[0038] As a preferred embodiment of the present invention, the flushing mechanism 7 includes a water outlet pipe 73 movably installed inside the fixed slide rod 8, a flushing nozzle 72 is arranged at the bottom of the water outlet pipe 73, a spray port 22 is opened on the bottom outer wall of the fixed slide rod 8, the flushing nozzle 72 extends to the bottom of the fixed slide rod 8 through the spray port 22, and a water pump 74 is arranged on the outer wall of the feeding trough 1, and the water outlet end of the water pump 74 is connected to the inside of the water outlet pipe 73 through an extended water pipe.
[0039] As a preferred embodiment of the present invention, a driving motor 4 71 for driving the water outlet pipe 73 to rotate is provided on the side of the mounting seat 19. When it is necessary to flush the fixed trough body 15 and the movable trough body 23, cleaning liquid can be injected into the water outlet pipe 73 through the water pump 74, and the cleaning liquid is sprayed from the flushing nozzle 72 to flush the fixed trough body 15 and the movable trough body 23. The water outlet pipe 73 and the flushing nozzle 72 can be driven by the driving motor 4 71 to rotate. The cleaning liquid covers a wider area through rotational motion, including all corners of the fixed trough body 15 and the movable trough body 23, ensuring the expansion of the flushing range and the thoroughness of the flushing effect. At the same time, the spray port 22 limits the rotation amplitude of the flushing nozzle 72 and the water outlet pipe 73, effectively preventing the cleaning liquid from splashing to the outside of the feeding trough 1, thereby preventing pollution to the external environment during the cleaning process, achieving efficient, thorough and environmentally friendly cleaning effects, and meeting the needs of automation and sanitation management of modern breeding equipment.
[0040] As a preferred embodiment of the present invention, the water outlet end of the water pump 74 is connected to the interior of the cavity 2 33 through an extended water pipe, and cleaning liquid can be injected into the cavity 2 33 through the water pump 74. The cleaning liquid is sprayed out from the opening of the through hole 35 to flush and clean the inner wall of the sewage transition tank 30.
[0041] As a preferred embodiment of the present invention, a feed conveying assembly 32 is provided on one side of the vertical partition 36 close to the residual material transition trough 29, and a driving motor 31 for driving the feed conveying assembly 32 is provided on the outer wall of the feeding trough 1. A movable door 2 is movably provided at one end of the feeding trough 1, and the position of the movable door 2 corresponds to the position of the feed conveying assembly 32. The feed conveying assembly 32 can be driven by the driving motor 31 to transport the residual material falling from the residual material transition trough 29 to one end of the feeding trough 1, so as to facilitate opening the movable door 2 to collect the residual material in the feeding trough 1.
[0042] As a preferred embodiment of the present invention, a sewage pipe 12 is provided on one side wall of the feeding trough 1 for discharging cleaning sewage.
[0043] As a preferred embodiment of the present invention, a vibration motor 17 is provided at one end of the distributing component 18. When the distributing component 18 disperses the feed, the vibration motor 17 drives the distributing component 18 to vibrate, thereby improving the efficiency of distributing the feed.
[0044] The working principle of the present invention is:
[0045] 1. Feed supply and distribution: The drive motor 36 is started, driving the mounting shaft 26 to rotate, so that the movable trough 23 moves and contacts one side of the fixed trough 15, and at the same time drives the extension trough 24 to move to abut against the side of the fixed seat 13 through the telescopic component 28, forming a complete feed holding structure. When feeding, the feed is transported to the transition discharge pipe 10, and the transition discharge pipe 10 moves horizontally under the drive of the slider 21, and the feed is evenly distributed on both sides of the fixed trough 15. After the feed is dispersed by the Y-shaped structure of the distribution component 18, the feed is evenly distributed, which is convenient for beef cattle to eat.
[0046] 2. Processing of residual feed after eating: After the beef cattle finish eating, the mounting shaft 26 is driven to rotate by the driving motor three 6, so that the movable trough body 23 is flipped to an inclined state, and the extending trough body 24 is retracted to the bottom of the movable trough body 23, and the residual feed in the fixed trough body 15 and the movable trough body 23 slides into the residual feed transition trough 29. Subsequently, the transition mechanism 16 is driven to rotate by the driving motor two 4 to guide the residual feed in the residual feed transition trough 29 to one side of the vertical partition 36, thereby realizing the collection and processing of the residual feed.
[0047] 3. Cleaning operation and sewage treatment: Before cleaning, the transition mechanism 16 is driven to rotate by the driving motor 24 so that the opening of the sewage transition trough 30 faces upward to prepare for collecting the sewage generated during the cleaning process; during cleaning, the water delivery pump 74 delivers the cleaning liquid to the water outlet pipe 73 inside the fixed slide bar 8, and the cleaning liquid is sprayed from the spray port 22 through the flushing nozzle 72 to flush the surface of the fixed trough body 15 and the movable trough body 23; the driving motor 4 71 drives the water outlet pipe 73 and the flushing nozzle 72 to rotate, expand the cleaning range, and ensure the thoroughness of the flushing; the spray port 22 limits the rotation range of the flushing nozzle 72 and the water outlet pipe 73 to prevent the cleaning liquid from overflowing to the outside of the feeding trough 1; the sewage generated by cleaning is collected by the sewage transition trough 30, and then the transition mechanism 16 rotates to guide the sewage to the other side of the vertical partition 36 to complete the discharge and treatment of the sewage.
[0048] Through the coordinated work of multiple motors and precision components, this device achieves functions such as uniform feed supply, automatic collection and flushing of residual feed, and separation of sewage and residual feed. It effectively improves breeding efficiency, reduces labor intensity, and ensures the hygiene and cleanliness of the feeding environment. It is an ideal equipment for modern beef cattle breeding.
[0049] The above description is only a preferred specific implementation manner of the present invention, but the protection scope of the present invention is not limited thereto. Any technician familiar with the technical field can make equivalent replacements or changes according to the technical scheme and inventive concept of the present invention within the technical scope disclosed by the present invention, which should be covered by the protection scope of the present invention.
Claims
1. A feeding device for beef cattle breeding, comprising a feeding trough (1), characterized in that: A fixed trough body (15) with an arc-shaped structure is fixed to the inner walls of both sides of the feeding trough (1), a mounting shaft (26) is movably mounted on both sides of the feeding trough (1), a movable trough body (23) is mounted on one side of the mounting shaft (26), an extension trough body (24) is mounted on the bottom of the movable trough body (23) via a telescopic component (28), and a driving motor (6) for driving the mounting shaft (26) to rotate is arranged on the outer wall of the feeding trough (1); A fixed seat (13) is provided at the middle position of the inner wall at both ends of the feeding trough (1), two mounting seats (19) are installed on both sides of the fixed seat (13) via mounting rods (14), a same fixed slide bar (8) is installed on the opposite side of the two mounting seats (19), a slider (21) is slidably provided on the fixed slide bar (8), and a same transition discharge pipe (10) is installed on the top of the two sliders (21) via mounting side wings (9); The top of the fixed seat (13) is provided with a mounting groove, in which a second mounting seat (20) is mounted via a spring, and a material distribution component (18) is provided on the top of the second mounting seat (20), wherein the cross section of the material distribution component (18) is a Y-shaped structure, and the material distribution component (18) is located in the middle of the bottom opening of the transition discharge pipe (10); A transition mechanism (16) is installed on the inner wall of the bottom of the feeding trough (1); the same transition mechanism (16) is movably installed on the inner walls at both ends of the feeding trough (1); a middle partition (37) is arranged inside the transition mechanism (16); the middle partition (37) divides the interior of the transition mechanism (16) into a sewage transition trough (30) and a residual material transition trough (29); a second drive motor (4) for driving the transition mechanism (16) to rotate is arranged on the outer wall of the feeding trough (1); the transition mechanism (16), the vertical partition (36) and the fixed seat (13) are all located in the same vertical direction; An air pump (5) is installed on the outer wall of the feeding trough (1); one side of the fixed trough body (15) close to the movable trough body (23) is an inclined surface; one side of the fixed trough body (15) close to the movable trough body (23) is provided with a cavity one (27); one side of the cavity one (27) close to the movable trough body (23) is provided with an air outlet (25); and an air outlet end of the air pump (5) is connected to the interior of the cavity one (27) via an extended air pipe.
2. A feeding device for beef cattle breeding according to claim 1, characterized in that: A third cavity (34) is provided inside the middle partition plate (37) on one side close to the residual material transition groove (29), and a second cavity (33) is provided inside the middle partition plate (37) on one side close to the sewage transition groove (30). The side walls of the second cavity (33) and the third cavity (34) are both provided with through holes (35), and the air outlet end of the air pump (5) is connected to the interior of the third cavity (34) via an extended air pipe.
3. A feeding device for beef cattle breeding according to claim 2, characterized in that: The fixed slide bar (8) is a hollow structure, and a flushing mechanism (7) is provided inside the fixed slide bar (8) for flushing the fixed trough body (15) and the movable trough body (23).
4. A feeding device for beef cattle breeding according to claim 3, characterized in that: The flushing mechanism (7) comprises a water outlet pipe (73) movably mounted inside the fixed slide bar (8), a flushing nozzle (72) being arranged at the bottom of the water outlet pipe (73), a spray port (22) being provided on the bottom outer wall of the fixed slide bar (8), the flushing nozzle (72) extending through the spray port (22) to the bottom of the fixed slide bar (8), and a water delivery pump (74) being arranged on the outer wall of the feeding trough (1), the water outlet end of the water delivery pump (74) being connected to the inside of the water outlet pipe (73) via an extended water pipe.
5. A feeding device for beef cattle breeding according to claim 4, characterized in that: A driving motor four (71) for driving the water outlet pipe (73) to rotate is arranged on the side of the mounting seat one (19).
6. A feeding device for beef cattle breeding according to claim 5, characterized in that: The water outlet end of the water delivery pump (74) is in communication with the interior of the second cavity (33) via an extended water pipe.
7. A feeding device for beef cattle breeding according to claim 6, characterized in that: A material conveying assembly (32) is arranged on one side of the vertical partition (36) close to the residual material transition trough (29), a driving motor (31) for driving the material conveying assembly (32) is arranged on the outer wall of the feeding trough (1), and a movable door (2) is movably arranged at one end of the feeding trough (1), and the position of the movable door (2) corresponds to the position of the material conveying assembly (32).
8. A feeding device for beef cattle breeding according to claim 7, characterized in that: A sewage pipe (12) is provided on one side wall of the feeding trough (1) for discharging cleaning sewage.
9. A feeding device for beef cattle breeding according to claim 1, characterized in that: A vibration motor (17) is provided at one end of the material distribution component (18).
Citation Information
Patent Citations
Remaining material discharging structure of calf feeding trough
CN220654379U
Livestock feeding apparatus capable of reducing waste and facilitating collection
WO2021253618A1