Edible trough for fattening cattle

By introducing a motor-driven worm gear mechanism and nozzle system into the cattle fattening edible tank, combined with the push plate and discharge port design, the automatic cleaning of the edible tank is realized, solving the problem of residual feed residue in the inner wall of the trough during the beef cattle fattening process, and improving the cleaning efficiency and sanitary environment.

CN223110784UActive Publication Date: 2025-07-18SHAANXI YIKANGDA BIOTECHNOLOGY CO LTD
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Patent Information

Application Number
CN202422425741.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-09
Publication Date
2025-07-18
Estimated Expiration
2034-10-09

AI Technical Summary

Technical Problem

The existing beef cattle fattening edible tanks are difficult to automatically clean after use, resulting in residual feed residues on the inner walls of the tanks, breeding bacteria, affecting the sanitary environment, and manual cleaning is large.

Method used

An automated cattle fattening and edible tank is designed, and the worm and worm gear mechanism is driven by the motor to drive the rotating rod and nozzle to rotate, achieving comprehensive cleaning of the inner wall of the tank body, and is equipped with a push plate and a discharge port to facilitate the automatic discharge of residues.

Benefits of technology

Automatic cleaning of the inner wall of the tank body is realized, cleaning efficiency is improved, labor intensity is reduced, and the cleanliness of the tank body is ensured.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223110784U_ABST
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Abstract

The utility model discloses a cattle fattening feeding trough which comprises a trough body, a water tank arranged on the rear side of the trough body, a discharging opening formed in the front side of the trough body, inner troughs symmetrically formed in the upper portion of the inner wall of the trough body, rotating rods rotationally connected into the inner troughs through rotating shafts, nozzles arranged on the tops of the rotating rods, hoses connected to the rear ends of the nozzles, and water storage cavities formed in the trough body and corresponding to the inner troughs. A plurality of branch pipes are arranged on one side of the water storage cavity and correspond to the hoses in a one-to-one mode, the hoses are communicated with the interior of the water storage cavity through the corresponding branch pipes, a cavity is formed in the front end of the tank body, a worm is rotationally arranged between the left side wall and the right side wall in the cavity, and the front end of the rotating shaft close to one side of the discharging opening extends into the cavity and is connected with a worm wheel. A motor is fixedly arranged on the surface of the outer side of the tank body, and one end of the worm extends out of the cavity and is connected with an output shaft of the motor; the device can realize comprehensive cleaning of the inner wall of the tank body, and is high in automation degree, high in working efficiency, time-saving and labor-saving, and worthy of popularization.
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Description

Technical Field

[0001] The utility model relates to the technical field of animal breeding, in particular to a feeding trough for beef cattle fattening. Background Art

[0002] Beef is rich in protein, and the amino acid composition is closer to the human body's needs than that of pork. It contains vitamin B1, B2, phosphorus, calcium, iron, cholesterol, etc. There are many essential amino acids in beef protein, such as tryptophan, lysine, threonine, leucine, valine, etc., and its nutritional value is very high, which is deeply loved by consumers.

[0003] In the process of current beef cattle fattening, a feeding trough is needed. The feeding trough is a utensil for storing feed when feeding livestock. However, when the current feeding trough for beef cattle fattening is in use, the feed added to the feeding trough is in a slurry state. It is impossible for cattle to eat up the feed every time. If the feed residues remaining on the inner wall of the feeding trough are not cleaned up in time, after they dry, they will adhere to the inner wall of the trough, breed bacteria, produce unpleasant odors, and the sanitary environment is poor. The common feeding trough needs to be manually cleaned frequently. When the number of breeding cattle and the number of feeding troughs are large, the workload is large, time-consuming and laborious. Therefore, we design a feeding trough for beef cattle fattening to solve the above technical problems. Summary of the Utility Model

[0004] The purpose of the utility model is to provide a feeding trough for beef cattle fattening to solve the problems raised in the above background art.

[0005] To achieve the above purpose, the utility model provides the following technical solutions:

[0006] The feeding trough for beef cattle fattening includes a trough body. The outer part of the trough body is rectangular, and the inner wall of the trough body is an arc surface. A water tank is fixedly arranged on the rear side surface of the trough body. A water injection pipe orifice is arranged on the top of the water tank, and a pipe cap is threadedly connected to the water injection pipe orifice. A discharge port is arranged on the front side surface of the trough body, and a valve is arranged in the discharge port. The discharge port is communicated with the inside of the trough body. Inner grooves are symmetrically opened in the upper part of the inner wall of the trough body. A rotating rod is rotatably connected between the front and rear side walls in the inner groove. The cross-section of the rotating rod is square. A plurality of nozzles are arranged at equal intervals along the length direction on the top of the rotating rod. The front spray orifice of the nozzle is located between the front side surface of the rotating rod and the orifice of the inner groove. The rear end of the nozzle is connected with a hose. A water storage cavity corresponding to the inner groove is arranged in the trough body. A plurality of branch pipes are arranged on one side of the water storage cavity, and the plurality of branch pipes correspond to each hose one by one. The hose is communicated with the inside of the water storage cavity through the corresponding branch pipe. A cavity is arranged inside the front end of the trough body. A worm is rotatably arranged between the left and right side walls in the cavity. The front end of the rotating shaft close to the discharge port extends into the cavity and is connected with a worm gear. The worm gear is located at the upper left and right ends of the worm and is meshed with the worm. A motor is fixedly arranged on the outer side surface of the trough body. One end of the worm extends outside the cavity and is connected with the output shaft of the motor.

[0007] As a preferred embodiment of the present utility model: A push plate adapted to it is slidably provided in the tank body. A cross plate is provided at the top of the push plate. The left and right bottom ends of the cross plate are slidably connected to the top of the tank body. Sliding grooves are symmetrically formed on the left and right sides of the top of the tank body. A slider adapted to it is slidably provided in the sliding groove. The top of the slider is fixedly connected to the bottom of the cross plate.

[0008] As a further preferred embodiment of the present utility model: The size of the front side surface of the water tank is smaller than the size of the rear side surface of the tank body. Two water pipes are fixedly provided on the rear side surface of the tank body. The two water pipes are symmetrically arranged on the left and right sides of the water tank. A water pump is provided on the water pipe. One end of the water pipe is connected to the bottom of the outer surface of the water tank, and the other end is communicated with the inside of the corresponding water storage cavity.

[0009] As a further preferred embodiment of the present utility model: The water outlet direction of the nozzle on the left side of the push plate is in the horizontal direction, and the water outlet direction of the nozzle on the right side of the push plate is in the direction obliquely towards the inner bottom wall of the tank body.

[0010] As a further preferred embodiment of the present utility model: The sliding groove is a dovetail groove, and the slider is adapted to the sliding groove.

[0011] As a further preferred embodiment of the present utility model: The bottom of the inner wall of the discharge port is coplanar with the bottom of the inner wall of the tank body.

[0012] As a further preferred embodiment of the present utility model: A plurality of nozzles on the left and right sides of the push plate are arranged in a staggered manner with each other.

[0013] Compared with the prior art, the beneficial effects of the present utility model are:

[0014] 1. Before the cleaning operation of the present utility model starts, the water outlet direction of the nozzle on the left side of the push plate is in the horizontal direction, and the water outlet direction of the nozzle on the right side of the push plate is in the direction obliquely towards the inner bottom wall of the tank body. When the cleaning starts, the motor is started to drive the worm to rotate, and then drive the corresponding worm wheel to rotate, that is, the two worm wheels rotate clockwise. Through the rotating shaft, the corresponding rotating rod is driven to rotate clockwise. At this time, the inclined nozzle on the right side rotates clockwise until it rotates to the horizontal position. This process cleans the left half inner wall of the tank body. At the same time, the horizontal nozzle on the left side rotates clockwise until it rotates to the inclined position. This process cleans the right half inner wall of the tank body. Then, the motor rotates in reverse, and the above process is carried out in the reverse direction, and the left and right inner walls of the tank body are cleaned completely again,... In this way, the inner wall of the tank body can be comprehensively cleaned, with high automation, high work efficiency, time-saving and labor-saving, and is worthy of promotion.

[0015] 2. The utility model is provided with a push plate in the tank body, and a cross plate is arranged on the top of the push plate. During use, the valve in the discharge port is opened. After multiple nozzles spray water for cleaning, the feed residue mixed with water is discharged through the discharge port. However, there is still some residue gathered at the bottom of the inner wall of the tank body. At this time, the staff pushes the cross plate towards the direction of the discharge port, thereby driving the movement of the push plate. The push plate pushes the remaining residue to the discharge port for discharge, fully ensuring the cleanliness inside the tank body. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 is a three-dimensional view of the overall structure of the utility model;

[0017] Figure 2 is Figure 1 an enlarged view of part A in

[0018] Figure 3 is a schematic diagram of the partial structure of the utility model;

[0019] Figure 4 is a schematic diagram of the partial structure of the utility model;

[0020] Figure 5 is a schematic diagram of the partial structure of the utility model.

[0021] Wherein: 1 - tank body, 2 - water pump, 3 - chute, 4 - pipe cap, 5 - water tank, 6 - cross plate, 7 - push plate, 8 - discharge port, 9 - motor, 10 - slider, 11 - inner tank, 12 - rotating rod, 13 - nozzle, 14 - hose, 15 - cavity, 16 - worm, 17 - worm gear, 18 - water storage cavity, 19 - branch pipe, 20 - rotating shaft. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0022] The following will clearly and completely describe the technical solutions in the embodiments of the utility model with reference to the accompanying drawings in the embodiments of the utility model. In the description of the utility model, it should be noted that unless otherwise clearly defined and limited, the terms "installation", "connection", and "connection" should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be directly connected, or indirectly connected through an intermediate medium, and it can be the communication inside two components. For those of ordinary skill in the art, the specific meanings of the above terms in the utility model can be understood according to specific situations.

[0023] Please refer to Figures 1-5, in the embodiment of the present utility model, a cattle fattening feeding trough includes a trough body 1. The outer part of the trough body 1 is rectangular, and the inner wall of the trough body 1 is an arc surface. A water tank 5 is fixedly arranged on the rear side surface of the trough body 1. A water injection pipe orifice is arranged at the top of the water tank 5, and a pipe cap 4 is threadedly connected to the water injection pipe orifice. A discharge port 8 is arranged on the front side surface of the trough body 1. A valve is arranged in the discharge port 8, and the discharge port 8 is communicated with the inside of the trough body 1. Inner grooves 11 are symmetrically arranged at the upper part of the inner wall of the trough body 1. A rotating rod 12 is rotatably connected between the front and rear side walls in the inner groove 11 through a rotating shaft 20. The cross section of the rotating rod 12 is square. A plurality of nozzles 13 are arranged at equal intervals along the length direction at the top of the rotating rod 12. The front spray orifice of the nozzle 13 is located between the front side surface of the rotating rod 12 and the orifice of the inner groove 11. The rear end of the nozzle 13 is connected with a hose 14. A water storage cavity 18 corresponding to the inner groove 11 is arranged in the trough body 1. A plurality of branch pipes 19 are arranged on one side of the water storage cavity 18. The plurality of branch pipes 19 respectively correspond to the hoses 14 one by one. The hose 14 is communicated with the inside of the water storage cavity 18 through the corresponding branch pipe 19. A cavity 15 is arranged inside the front end of the trough body 1. A worm 16 is rotatably arranged between the left and right side walls in the cavity 15. The front end of the rotating shaft 20 near the discharge port 8 extends into the cavity 15 and is connected with a worm gear 17. The worm gear 17 is located at the upper left and right ends of the worm 16 and is meshed with the worm 16. A motor 9 is fixedly arranged on the outer side surface of the trough body 1. One end of the worm 16 extends outside the cavity 15 and is connected with the output shaft of the motor 9.

[0024] Furthermore, a push plate 7 adapted to the trough body 1 is slidably arranged in the trough body 1. A cross plate 6 is arranged at the top of the push plate 7. The left and right ends of the bottom of the cross plate 6 are slidably connected with the top of the trough body 1. Slide grooves 3 are symmetrically arranged on the left and right sides of the top of the trough body 1. A slider 10 adapted to the slide groove 3 is slidably arranged in the slide groove 3. The top of the slider 10 is fixedly connected with the bottom of the cross plate 6. When in use, the valve in the discharge port 8 is opened. After the plurality of nozzles 13 spray water for cleaning, the feed residue mixed with water is discharged through the discharge port 8. However, there is still some residue gathered at the bottom of the inner wall of the trough body 1. At this time, the staff pushes the cross plate 6 in the direction of the discharge port 8, thereby driving the push plate 7 to move. The push plate 7 pushes the remaining residue to the discharge port 8 for discharge, fully ensuring the cleanliness inside the trough body 1.

[0025] Furthermore, the slide groove 3 is a dovetail groove, and the slider 10 is adapted to the slide groove 3. This design prevents the cross plate 6 and the push plate 7 from separating from the trough body 1 and ensures the stability of the push plate 7 during movement and use.

[0026] Furthermore, the size of the front side surface of the water tank 5 is smaller than the size of the rear side surface of the trough body 1. Two water pipes are fixedly arranged on the rear side surface of the trough body 1. The two water pipes are symmetrically arranged on the left and right sides of the water tank 5. A water pump 2 is arranged on the water pipe. One end of the water pipe is connected with the bottom of the outer side surface of the water tank 5, and the other end is communicated with the inside of the corresponding water storage cavity 18. When in use, the water pump 2 works to pump the water in the water tank 5 into the water storage cavity 18, and it is transported to the nozzle 13 through the branch pipe 19 and the hose 14 and sprayed out by the nozzle 13 to clean the inner wall of the trough body 1.

[0027] Further, the bottom of the inner wall of the discharge port 8 is coplanar with the bottom of the inner wall of the tank body 1, which facilitates the smooth discharge of materials.

[0028] Further, before the start of the cleaning operation, the water outlet direction of the nozzle 13 on the left side of the push plate 7 is horizontal, and the water outlet direction of the nozzle 13 on the right side of the push plate 7 is obliquely towards the inner bottom wall of the tank body 1. The function of this design is as follows: when the cleaning starts, the motor 9 is started, driving the worm 16 to rotate, and then driving the corresponding worm wheel 17 to rotate. Specifically, as Figure 3 shown, the two worm wheels 17 rotate clockwise, and through the rotating shaft 20, the corresponding rotating rods 12 are driven to rotate clockwise. At this time, the inclined nozzle 13 on the right side rotates clockwise until it rotates to the horizontal position, and this process cleans the left half of the inner wall of the tank body 1. At the same time, the horizontal nozzle 13 on the left side rotates clockwise until it rotates to the inclined position, and this process cleans the right half of the inner wall of the tank body 1. Then, the motor 9 rotates in the reverse direction, and the above process proceeds in the reverse direction, cleaning the left and right inner walls of the tank body 1 again,... In this way, the inner wall of the tank body 1 can be comprehensively cleaned, with a high degree of automation, high working efficiency, time-saving and labor-saving, and is worthy of promotion.

[0029] Further, the multiple nozzles 13 on the left and right sides of the push plate 7 are arranged in a staggered manner with each other, as Figure 5 shown. Through this design, on the premise of not affecting the cleaning effect, it is avoided that the water jets of the nozzles 13 on the left and right sides impact each other, thereby affecting the cleaning effect.

[0030] It should be understood that although this specification is described according to the embodiments, not every embodiment only contains an independent technical solution. This narrative way of the specification is only for clarity. Those skilled in the art should regard the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that can be understood by those skilled in the art.

Claims

1. Beef fattening feeding trough, comprising a trough body (1); characterized in that: A water tank (5) is fixedly arranged on the rear side surface of the tank body (1). A water injection pipe opening is arranged at the top of the water tank (5), and a pipe cap (4) is threadedly connected to the water injection pipe opening. A discharge port (8) is arranged on the front side surface of the tank body (1). A valve is arranged in the discharge port (8). The discharge port (8) is communicated with the inside of the tank body (1). Inner grooves (11) are symmetrically formed in the upper part of the inner wall of the tank body (1). A rotating rod (12) is rotatably connected between the front and rear side walls in the inner groove (11) through a rotating shaft (20). A plurality of nozzles (13) are arranged at equal intervals along the length direction at the top of the rotating rod (12). A hose (14) is connected to the rear end of the nozzle (13). A water storage cavity (18) corresponding to the inner groove (11) is arranged in the tank body (1). A plurality of branch pipes (19) are arranged on one side of the water storage cavity (18). The plurality of branch pipes (19) respectively correspond to the hoses (14) one by one. The hose (14) is communicated with the inside of the water storage cavity (18) through the corresponding branch pipe (19). A cavity (15) is arranged inside the front end of the tank body (1). A worm (16) is rotatably arranged between the left and right side walls in the cavity (15). The front end of the rotating shaft (20) on the side close to the discharge port (8) extends into the cavity (15) and is connected with a worm gear (17). The worm gear (17) is located at the upper left and right ends of the worm (16) and is meshed with the worm (16). A motor (9) is fixedly arranged on the outer side surface of the tank body (1). One end of the worm (16) extends outside the cavity (15) and is connected with the output shaft of the motor (9).

2. The beef fattening feeding trough according to claim 1, characterized in that: A push plate (7) adapted to the tank body (1) is slidably arranged in the tank body (1). A cross plate (6) is arranged at the top of the push plate (7). The left and right ends of the cross plate (6) are slidably connected to the top of the tank body (1). Slide grooves (3) are symmetrically formed on the left and right sides of the top of the tank body (1). Sliders (10) adapted to the slide grooves (3) are slidably arranged in the slide grooves (3). The top of the slider (10) is fixedly connected to the bottom of the cross plate (6).

3. The beef fattening feeding trough according to claim 2, characterized in that: The size of the front side surface of the water tank (5) is smaller than the size of the rear side surface of the tank body (1). Two water pipes are fixedly arranged on the rear side surface of the tank body (1). The two water pipes are symmetrically arranged on the left and right sides of the water tank (5). A water pump (2) is arranged on the water pipe. One end of the water pipe is connected to the bottom of the outer side surface of the water tank (5), and the other end is communicated with the inside of the corresponding water storage cavity (18).

4. The beef fattening feeding trough according to claim 3, characterized in that: The water outlet direction of the nozzle (13) on the left side of the push plate (7) is the horizontal direction, and the water outlet direction of the nozzle (13) on the right side of the push plate (7) is the direction obliquely towards the inner bottom wall of the tank body (1).

5. The beef fattening feeding trough according to claim 4, characterized in that: The slide groove (3) is a dovetail groove, and the slider (10) is adapted to the slide groove (3).

6. The beef fattening feeding trough according to claim 1, characterized in that: The bottom of the inner wall of the discharge port (8) is coplanar with the bottom of the inner wall of the tank body (1).

7. The beef fattening feeding trough according to claim 6, characterized in that: The plurality of nozzles (13) on the left and right sides of the push plate (7) are arranged in a staggered manner with each other.

8. The beef fattening feeding trough according to claim 7, characterized in that: The cross section of the rotating rod (12) is square, the outside of the tank body (1) is rectangular, and the inner wall of the tank body (1) is an arc surface.

9. The beef fattening feeding trough according to claim 8, characterized in that: The front spray port of the nozzle (13) is located between the front side surface of the rotating rod (12) and the notch of the inner groove (11).