Large-scale integrated liquid feed feeding system for animal husbandry

The liquid feed feeding system with optimized design through integrated and control components solves the feeding needs, system cost and space issues of large livestock farms, realizes efficient and stable liquid feed transportation and automatic blockage clearing functions, and improves the efficiency of animal husbandry.

CN223415447UActive Publication Date: 2025-10-10JIANGXI ZENG XIN HUSBANDRY TECH CO LTD
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Patent Information

Application Number
CN202422702329.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-06
Publication Date
2025-10-10
Estimated Expiration
2034-11-06

AI Technical Summary

Technical Problem

Traditional liquid feeding systems are difficult to meet feeding needs in large livestock farms, and the layout of multiple systems leads to increased costs and space occupation.

Method used

An integrated liquid feed feeding system for large-scale livestock is designed. The return water tank, stirring assembly, foreign matter separator, main pump and water pump are integrated into an integrated frame. The control components are used to achieve a compact layout and efficient collaboration of the equipment. Switching parts and emergency units are used to ensure continuous operation and automatic blockage clearing of the system.

Benefits of technology

It realizes the continuous feeding needs of large livestock farms, reduces the cost and space impact of multiple systems, improves the efficiency and benefits of animal husbandry, and ensures the normal operation of the system in emergency situations.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a large-scale integrated liquid feed feeding system for animal husbandry, which relates to the field of feeding systems and comprises a water return tank, a stirring component, a foreign matter separator, a main pump, a water pump and an integrated frame, and the water return tank, the stirring component, the foreign matter separator, the main pump, the water pump and a control component are arranged in the integrated frame. The control assembly can control communication and closing among the water return tank, the stirring assembly, the foreign matter separator, the main pump and the water pump; the stirring assembly comprises a first stirring cylinder and a second stirring cylinder, the control assembly comprises a switching piece, and the switching piece is arranged between the first stirring cylinder and the second stirring cylinder; the large-scale integrated liquid feed feeding system for livestock raising can meet the feeding requirements of a large-scale livestock raising farm, and meanwhile, the influence of a plurality of liquid feed feeding systems on the increase of the feeding cost and the increase of the occupied space can be reduced.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the field of feeding system, concretely is a large -scale livestock integrated liquid material feeding system. BACKGROUND

[0002] In the livestock industry, especially in the pig industry, the liquid material feeding system plays an important role in improving production efficiency, reducing labor costs and maintaining animal health. The traditional liquid material feeding system usually includes a mixing cylinder and a water return tank. The mixing cylinder and the water return tank are connected by various devices such as water pumps and main pumps, and work together to ensure the smooth preparation, transportation and distribution of liquid feed.

[0003] However, the amount of ingredients in a single mixing cylinder in the traditional liquid material feeding system has an upper limit, which cannot meet the feeding needs of large-scale livestock farms. Solving the problem of insufficient liquid material supply by using multiple liquid material feeding systems will increase the feeding cost and increase the occupied space of the entire feeding system. SUMMARY

[0004] The utility model aims at providing a large -scale livestock integrated liquid material feeding system, which can meet the feeding needs of large -scale livestock farms, and can reduce the influence of multiple liquid material feeding systems on the increase of feeding cost and the increase of occupied space.

[0005] The above-mentioned optimization structure of the utility model is realized by the following technical scheme: a large -scale livestock integrated liquid material feeding system, comprising a water return tank and a stirring assembly, an impurity separator, a main pump and a water pump are connected between the water return tank and the stirring assembly, further comprising an integrated rack, the water return tank, the stirring assembly, the impurity separator, the main pump, the water pump and a control assembly are arranged in the integrated rack, and the control assembly can control the communication and closure between the water return tank, the stirring assembly, the impurity separator, the main pump and the water pump.

[0006] The stirring assembly comprises a first mixing cylinder and a second mixing cylinder, and the control assembly comprises a switching piece, and the first mixing cylinder and the second mixing cylinder are provided with the switching piece.

[0007] In some embodiments, the switching piece comprises a first stirring outlet valve, a second stirring outlet valve, a first stirring water inlet valve and a second stirring water inlet valve, the first stirring outlet valve is arranged between the first mixing cylinder and the impurity separator, the second stirring outlet valve is arranged between the second mixing cylinder and the impurity separator, the first stirring water inlet valve is arranged between the first mixing cylinder and the water pump, and the second stirring water inlet valve is arranged between the second mixing cylinder and the water pump.

[0008] In some embodiments, the main pump is connected to a feed pipe, and the control component also includes a return water outlet valve, a return water valve, and a feed main valve. The return water outlet valve is arranged between the foreign matter separator and the return water tank; the return water valve is arranged between the main pump and the stirring component; and the feed main valve is arranged between the main pump and the feed pipe.

[0009] In some embodiments, the control component also includes an emergency unit, which includes a clean water tank outlet valve, a main pump outlet valve, a water pump outlet valve and a separator outlet valve. One end of the clean water tank outlet valve is connected to the separator outlet valve and the return water outlet valve, and the other end is connected to the water pump and the external water supply device; one end of the main pump outlet valve is connected to the main pump, and the other end is connected to the return water valve and the feeding main valve; one end of the water pump outlet valve is connected to the water pump, and the other end is connected to the return water tank and the stirring assembly; one end of the separator outlet valve is connected to the foreign matter separator, and the other end is connected to the return water outlet valve and the clean water tank outlet valve.

[0010] In some embodiments, the control component further includes a return water inlet valve, one end of which is connected to the return water tank, and the other end of which is connected to the return water valve.

[0011] In some embodiments, the integrated frame includes a bottom frame, and the foreign matter separator, the main pump, and the water pump are provided on the bottom wall of the bottom frame; a limit frame is provided on the bottom frame, and the bottom frame and the inner side wall of the limit frame are connected to the stirring assembly and the return water tank.

[0012] In some embodiments, the integrated frame further includes a plurality of wire fixing plates, and the plurality of wire fixing plates are disposed on the top of the limiting frame.

[0013] In some embodiments, a return pipe is also included, one end of which is connected to the stirring assembly and the return water tank, and the other end is connected to the return device. A stirring return valve is provided between the return pipe and the stirring assembly, and a return water return valve is provided between the return pipe and the return water tank.

[0014] In summary, the present invention has the following beneficial effects:

[0015] The large-scale integrated liquid feed feeding system of the present invention can realize the switching of the batching operation and the feeding operation of the first and second mixing cylinders through the joint action of the first mixing cylinder, the second mixing cylinder and the switching component, thereby realizing continuous transportation of the feeding system, avoiding waiting during the liquid feed preparation process, meeting the feeding needs of large-scale livestock farms, and reducing the impact of multiple liquid feed feeding systems on the increase in feeding costs and the increase in occupied space, thereby improving the efficiency and benefits of livestock breeding.

[0016] The return water tank, mixing assembly, foreign matter separator, main pump, and water pump are integrated into the integrated frame, achieving an integrated feeding system. Through optimized design, the equipment achieves a compact layout and efficient collaboration, ensuring installation quality. Furthermore, the emergency unit can function as both the main pump and the water pump, enabling emergency response and ensuring normal system operation. The control component can also backwash the feeding system without affecting system operation, achieving automatic clearing of blockages. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Figure 1 It is a structural diagram of the utility model;

[0018] Figure 2 This is a structural diagram of the utility model from another perspective;

[0019] Figure 3 This is a structural diagram of the utility model without the integrated frame.

[0020] In the figure: 1. Return water tank; 2. Stirring assembly; 21. First stirring tank; 22. Second stirring tank; 3. Foreign matter separator; 4. Main pump; 5. Water pump; 6. Integrated frame; 61. Bottom frame; 62. Limit frame; 63. Wire fixing plate; 7. Control assembly; 71. Switching part; 711. First stirring outlet valve; 712. Second stirring outlet valve; 713. First stirring water inlet valve; 714. Second stirring water inlet valve; 72. Return water outlet valve; 73. Add and return water valve; 74. Main feeding valve; 75. Emergency unit; 751. Clean water tank outlet valve; 752. Main pump outlet valve; 753. Water pump outlet valve; 754. Separator outlet valve; 76. Return water inlet valve; 77. Stirring return valve; 78. Return water return valve; 8. Feed pipe; 9. Return pipe. DETAILED DESCRIPTION

[0021] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of them. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0022] refer to Figure 1-3The utility model provides a large -scale livestock integrated liquid material feeding system, including integrated frame 6, integrated frame 6 includes bottom frame 61, limiting frame 62, bottom frame 61, limiting frame 62 can be welded by steel pipe, the inside bottom wall of bottom frame 61 is equipped with foreign matter separator 3, main pump 4, water pump 5, can be connected by bolt, can be connected by welding, realize the fixation of foreign matter separator 3, main pump 4, water pump 5 on bottom frame 61, bottom frame 61 is equipped with limiting frame 62, and the inside wall of bottom frame 61, limiting frame 62 is connected with stirring assembly 2, backwater tank 1, and stirring assembly 2, backwater tank 1 can be fixed by bolt assembly or welding, integrated frame 6 can be equipped with multiple fixed line plate 63, and fixed line plate 63 can be groove type board, and multiple fixed line plate 63 are equipped at the top of limiting frame 62, and the pipeline in feeding system can be connected by bolt assembly to support the pipeline, avoid the droop of pipeline in the water, material conveying process, to influence the connection stability between pipeline and control valve and equipment, meanwhile, multiple fixed line plate 63 can be set up horizontally, longitudinally, and the both ends are connected with limiting frame 62, can improve the overall connection strength of integrated frame 6, to improve the stability of feeding system work, integrated frame 6 one side can be equipped with the climbing frame, and it is convenient for later maintenance, through bottom frame 61, limiting frame 62 can realize the positioning of each equipment of liquid material feeding system in integrated frame 6, realizes the integration of feeding system, and can realize the compact layout and efficient cooperation of equipment by optimizing design, guarantees the consistency of installation quality.

[0023] Backwater tank 1 can store and recycle the moisture in liquid feed, the water outlet of backwater tank 1 is connected with the water inlet of stirring assembly 2, the feed inlet of stirring assembly 2 is connected with feeding device, stirring assembly 2 can mix feed raw materials and water to form uniform liquid feed, the feed outlet of stirring assembly 2 is connected with the feed inlet of foreign matter separator 3, foreign matter separator 3 can remove impurities in liquid feed, the feed outlet of foreign matter separator 3 is connected with the feed inlet of main pump 4, main pump 4 can provide the conveying power of liquid feed, the feed outlet of main pump 4 is connected with feeding pipe 8, feeding pipe 8 can deliver liquid feed to the feeding point in pig house to realize the feeding of pigs, the water inlet of water pump 5 is connected with external water supply device, and external water supply device is prior art, which will not be repeated here, the water outlet of water pump 5 is connected with the water inlet of backwater tank 1 and the water inlet of stirring assembly 2, and water pump 5 supplies water to backwater tank 1 and stirring assembly 2.

[0024] Integrated frame 6 is also equipped with control assembly 7, control assembly 7 can control the communication and closure between backwater tank 1, stirring assembly 2, foreign matter separator 3, main pump 4 and water pump 5, realize automatic control.

[0025] The stirring assembly 2 comprises a first stirring cylinder 21 and a second stirring cylinder 22, the control assembly 7 comprises a switching piece 71, and the switching piece 71 is arranged between the first stirring cylinder 21 and the second stirring cylinder 22. The switching piece 71 comprises a first stirring outlet valve 711, a second stirring outlet valve 712, a first stirring water inlet valve 713 and a second stirring water inlet valve 714. The first stirring outlet valve 711 is arranged between the first stirring cylinder 21 and the foreign matter separator 3, the second stirring outlet valve 712 is arranged between the second stirring cylinder 22 and the foreign matter separator 3, the first stirring water inlet valve 713 is arranged between the first stirring cylinder 21 and the water pump 5, and the second stirring water inlet valve 714 is arranged between the second stirring cylinder 22 and the water pump 5. The connection routes of the first stirring cylinder 21 and the second stirring cylinder 22 and the foreign matter separator 3 can be controlled through the control of the first stirring outlet valve 711 and the second stirring outlet valve 712, so that the connection device of the feed inlet of the foreign matter separator 3 is controlled. The connection routes of the first stirring cylinder 21 and the second stirring cylinder 22 and the water pump 5 can be controlled through the first stirring water inlet valve 713 and the second stirring water inlet valve 714, so that the connection device of the water outlet of the water pump 5 is controlled, and then the stirring cylinder connected to the liquid feed feeding system is selected. When the first stirring cylinder 21 or the second stirring cylinder 22 is damaged, the other intact stirring cylinder can be switched, so that the failure of the stirring cylinder is avoided, the feeding system cannot work, and meanwhile, the double stirring cylinders can realize the stirring of one stirring cylinder and the feeding of the other stirring cylinder, so that the feeding time is shortened and the continuity of feeding is improved, so that the feeding demand of the existing liquid feed feeding system in a large-scale livestock and poultry breeding farm is met, and only one stirring cylinder and control valve are added, the cost increase is small, and the occupied space increase is small.

[0026] In some embodiments, the main pump 4 is connected with a feeding pipe 8, the control assembly 7 further comprises a backwater outlet valve 72, a backwater adding valve 73 and a feeding main valve 74, the backwater outlet valve 72 is arranged between the foreign matter separator 3 and the backwater tank 1, the backwater adding valve 73 is arranged between the main pump 4 and the stirring assembly 2, and the feeding main valve 74 is arranged between the main pump 4 and the feeding pipe 8.

[0027] In operation, the backwater adding valve 73, the backwater outlet valve 72 and the main pump 4 are opened, the first stirring outlet valve 711, the second stirring outlet valve 712 and the feeding main valve 74 are closed, the main pump 4 delivers the solution stored in the backwater tank 1 into the stirring assembly 2, the backwater adding valve 73 is closed, the water pump 5 is opened, the water pump 5 delivers the clean water from an external water delivery device into the backwater tank 1 and the stirring assembly 2, the first stirring outlet valve 711, the second stirring outlet valve 712 and the main pump 4 are opened, the backwater outlet valve 72, the backwater adding valve 73 and the feeding main valve 74 are opened, the main pump 4 delivers the liquid feed in the stirring assembly 2 into the feeding point in the pig house through the feeding pipe 8, and the pig feeding is realized.

[0028] In some embodiments, the control component 7 also includes an emergency unit 75, which includes a clean water tank outlet valve 751, a main pump outlet valve 752, a water pump outlet valve 753 and a separator outlet valve 754. One end of the clean water tank outlet valve 751 is connected to the separator outlet valve 754 and the return water outlet valve 72, and the other end is connected to the water pump 5 and the external water supply device; one end of the main pump outlet valve 752 is connected to the main pump 4, and the other end is connected to the return water valve 73 and the feeding main valve 74; one end of the water pump outlet valve 753 is connected to the water pump 5, and the other end is connected to the return water tank 1 and the stirring component 2; one end of the separator outlet valve 754 is connected to the foreign matter separator 3, and the other end is connected to the return water outlet valve 72 and the clean water tank outlet valve 751. When the main pump 4 or the water pump 5 is damaged, the main pump 4 or the water pump 5 can be used in dual purposes by switching the valves, thereby responding to emergencies and ensuring the normal operation of the system.

[0029] Specifically, when the main pump 4 is damaged, the main pump outlet valve 752 is closed, and the clean water tank outlet valve 751, the water pump outlet valve 753, and the separator outlet valve 754 are opened to connect the water pump 5 to the foreign matter separator 3, acting as the conveying function of the main pump 4. When the water pump 5 is damaged, the water pump outlet valve 753 is closed, and the clean water tank outlet valve 751, the main pump outlet valve 752, and the separator outlet valve 754 are opened to connect the main pump 4 to the external water supply device through the foreign matter separator 3, acting as the clean water conveying function of the water pump 5, thereby realizing the dual use of the main pump 4 or the water pump 5.

[0030] In some embodiments, the control component 7 also includes a return water inlet valve 76, one end of the return water inlet valve 76 is connected to the return water tank 1, and the other end is connected to the return water valve 73. By opening and closing the first stirring inlet valve 713, the second stirring inlet valve 714, and the return water inlet valve 76, the water delivery direction is adjusted to further enhance the flexibility and controllability of the system.

[0031] The backwash function of the feeding system can also be achieved through the control of the control component 7. Specifically, the water pump 5 is started, the first stirring outlet valve 711, the second stirring outlet valve 712, the return water outlet valve 72, the water pump outlet valve 753, and the separator outlet valve 754 are opened, and the return water valve 73, the first stirring water inlet valve 713, the second stirring water inlet valve 714, the return water inlet valve 76, the clean water tank outlet valve 751, and the main pump 4 are closed. The water pump 5 connects the clean water of the external water supply device to the feeding system, and flows from the water outlet of the main pump 4 to the water inlet of the main pump 4, and flows into the foreign matter separator 3 for diversion. Part of the water flows through the first stirring outlet valve 711 and the second stirring outlet valve 712 through the discharge ports of the first stirring cylinder 21 and the second stirring cylinder 22 into the first stirring cylinder 21 and the second stirring cylinder 22, and the other part passes through the return water outlet valve 72 and enters the return water tank 1 through the water outlet of the return water tank 1, thereby achieving the backwash function of the feeding system.

[0032] In some embodiments, the first stirring outlet valve 711, the second stirring outlet valve 712, the backwater outlet valve 72, the feeding main valve 74, the clean water tank outlet valve 751, the main pump outlet valve 752, and the water pump outlet valve 753 can be stainless steel pneumatic ball valves, and the backwater valve 73, the first stirring water inlet valve 713, the second stirring water inlet valve 714, and the backwater water inlet valve 76 can be straight-through diaphragm valves.

[0033] In some embodiments, a back material pipe 9 is further included, one end of the back material pipe 9 is connected with the feeding port of the stirring assembly 2 and the feeding port of the backwater tank 1, and the other end is connected with a back material device, which can recycle the remaining feed in the pig house. The specific structure of the back material device is a prior art, which is not described here. A stirring back material valve 77, which can be a feeding diaphragm valve (three-way), is arranged between the back material pipe 9 and the stirring assembly 2. A backwater back material valve 78, which can be a stainless steel pneumatic ball valve, is arranged between the back material pipe 9 and the backwater tank 1. By controlling the stirring back material valve 77 and the backwater back material valve 78, the conveying direction of the recycled material can be adjusted, further improving the flexibility and controllability of the system.

[0034] In some embodiments, a control cabinet is further included, which is arranged on one side of the integrated frame 6 and is electrically connected with the foreign matter separator 3, the main pump 4, the water pump 5, the stirring assembly 2, the backwater tank 1, and the control assembly 7, so as to realize the automation of the feeding system and improve the control precision.

[0035] The specific working principle is as follows:

[0036] Firstly, the feed raw material is added into the stirring assembly 2 through the feeding device, and at the same time, the water pump 5 is started to introduce clean water from the external water feeding device into the first stirring cylinder 21 and the second stirring cylinder 22 through the first stirring water inlet valve 713 and the second stirring water inlet valve 714, so as to mix with the feed raw material. The stirring assembly 2 is started to stir the mixture to form uniform liquid feed, and the preparation of the liquid feed is completed.

[0037] After the stirring is completed, the liquid feed in the first stirring cylinder 21 enters the foreign matter separator 3 through the first stirring outlet valve 711 to remove impurities and unsolved particles. The liquid feed after the foreign matter separation enters the main pump 4, which is used to convey the liquid feed to the feeding point through the feeding main valve 74 and the feeding pipe 8 under the action of the main pump 4, so as to be eaten by livestock and realize the feeding of the feeding system.

[0038] After the liquid feed in the first mixing tank 21 is transported, the first mixing tank 21 needs to be re-dosed. The first mixing outlet valve 711 and the second mixing water inlet valve 714 are closed, and the first mixing water inlet valve 713 and the second mixing outlet valve 712 are opened. Under the action of the main pump 4, the liquid feed in the second mixing tank 22 is transported to the feeding point through the feeding main valve 74 and the feeding pipe 8 for livestock to eat. At the same time, the water pump 5 introduces clean water into the first mixing tank 21, mixes it with the dry material in the first mixing tank 21, and stirs it to prepare the liquid feed. When the liquid feed in the second mixing tank 22 is transported, the second mixing tank 22 needs to be re-dosed. The first mixing water inlet valve 713 and the second mixing outlet valve 712 are closed, and the first mixing outlet valve 711 and the second mixing water inlet valve 714 are opened. Under the action of the main pump 4, the liquid feed in the first mixing tank 21 is transported to the feeding point through the feeding main valve 74 and the feeding pipe 8 for livestock to eat. At the same time, the water pump 5 introduces clean water into the second mixing tank 22, mixes it with the dry material in the second mixing tank 22, and stirs to prepare the liquid feed. Repeating the above steps can achieve continuous feeding of the liquid feeding system until the feeding work of the large-scale livestock farm is completed.

[0039] The above embodiments are only used to illustrate the technical solutions of the present invention, rather than to limit the same. Although the present invention has been described in detail with reference to the aforementioned embodiments, those skilled in the art should understand that the technical solutions described in the aforementioned embodiments can still be modified, or some of the technical features thereof can be replaced by equivalents. However, these modifications or replacements do not deviate the essence of the corresponding technical solutions from the spirit and scope of the technical solutions of the various embodiments of the present invention.

Claims

1. An integrated liquid feed system for large livestock, comprising a return water tank (1) and a stirring assembly (2), wherein a foreign matter separator (3), a main pump (4), and a water pump (5) are connected between the return water tank (1) and the stirring assembly (2), and characterized in that: It also includes an integrated frame (6), wherein the integrated frame (6) is provided with the return water tank (1), the stirring assembly (2), the foreign matter separator (3), the main pump (4), the water pump (5) and a control assembly (7), and the control assembly (7) can control the connection and closing between the return water tank (1), the stirring assembly (2), the foreign matter separator (3), the main pump (4) and the water pump (5); The stirring assembly (2) comprises a first stirring cylinder (21) and a second stirring cylinder (22); the control assembly (7) comprises a switching member (71); and the switching member (71) is provided between the first stirring cylinder (21) and the second stirring cylinder (22).

2. The integrated liquid feed feeding system for large livestock according to claim 1, characterized in that: The switching member (71) comprises a first stirring outlet valve (711), a second stirring outlet valve (712), a first stirring water inlet valve (713), and a second stirring water inlet valve (714); the first stirring outlet valve (711) is arranged between the first stirring tank (21) and the foreign matter separator (3); the second stirring outlet valve (712) is arranged between the second stirring tank (22) and the foreign matter separator (3); the first stirring water inlet valve (713) is arranged between the first stirring tank (21) and the water pump (5); and the second stirring water inlet valve (714) is arranged between the second stirring tank (22) and the water pump (5).

3. The large-scale integrated liquid feed feeding system for livestock according to claim 2, characterized in that: The main pump (4) is connected to a feeding pipe (8), and the control component (7) further comprises a return water outlet valve (72), a water supply and return valve (73), and a feeding main valve (74). The return water outlet valve (72) is arranged between the foreign matter separator (3) and the return water tank (1); the water supply and return valve (73) is arranged between the main pump (4) and the stirring component (2); and the feeding main valve (74) is arranged between the main pump (4) and the feeding pipe (8).

4. The integrated liquid feed feeding system for large livestock according to claim 3, characterized in that: The control assembly (7) further includes an emergency unit (75), which includes a clean water tank outlet valve (751), a main pump outlet valve (752), a water pump outlet valve (753) and a separator outlet valve (754). One end of the clean water tank outlet valve (751) is connected to the separator outlet valve (754) and the return water outlet valve (72), and the other end is connected to the water pump (5) and an external water supply device; one end of the main pump outlet valve (752) is connected to the main pump (4), and the other end is connected to the water supply valve (73) and the main feeding valve (74); one end of the water pump outlet valve (753) is connected to the water pump (5), and the other end is connected to the return water tank (1) and the stirring assembly (2); one end of the separator outlet valve (754) is connected to the foreign matter separator (3), and the other end is connected to the return water outlet valve (72) and the clean water tank outlet valve (751).

5. The large-scale integrated liquid feed feeding system for livestock according to claim 3, characterized in that: The control assembly (7) further comprises a return water inlet valve (76), one end of the return water inlet valve (76) being connected to the return water tank (1), and the other end being connected to the return water valve (73).

6. The integrated liquid feed feeding system for large livestock according to claim 1, characterized in that: The integrated frame (6) comprises a bottom frame (61), and the foreign matter separator (3), the main pump (4), and the water pump (5) are provided on the inner bottom wall of the bottom frame (61); a limit frame (62) is provided on the bottom frame (61), and the inner side walls of the bottom frame (61) and the limit frame (62) are connected to the stirring assembly (2) and the return water tank (1).

7. The integrated liquid feed feeding system for large livestock according to claim 6, characterized in that: The integrated frame (6) further comprises a plurality of line fixing plates (63), and the plurality of line fixing plates (63) are arranged on the top of the limiting frame (62).

8. The integrated liquid feed feeding system for large livestock according to claim 1, characterized in that: It also includes a return pipe (9), one end of which is connected to the stirring assembly (2) and the return water tank (1), and the other end is connected to the return device. A stirring return valve (77) is provided between the return pipe (9) and the stirring assembly (2), and a water return valve (78) is provided between the return pipe (9) and the return water tank (1).