Integrated stirring and feeding equipment

The integrated mixing and feeding equipment design solves the problems of single function and low efficiency in aquaculture, realizes efficient feed mixing and feeding, and improves the integration level and metering accuracy of the equipment.

CN223810275UActive Publication Date: 2026-01-20GUANGZHOU CHENGYI WISDOM FISHERY DEV CO LTD
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Patent Information

Application Number
CN202520435936.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-12
Publication Date
2026-01-20
Estimated Expiration
2035-03-12

AI Technical Summary

Technical Problem

Existing aquaculture feed feeding devices are limited in function, lack mixing devices, or have incomplete feeding devices, resulting in low efficiency.

Method used

Design an integrated mixing and feeding device, including a main frame, a main control unit, a liquid addition unit, a mixing unit, and a feeding unit. Through organic cooperation, it realizes the functions of liquid addition, feeding, mixing, discharging, and feeding. It has a high degree of integration, accurate metering, and achieves efficient operation through the overall control function of the main control unit.

Benefits of technology

It achieves efficient feed mixing and feeding, improves feeding efficiency, enhances the integration of equipment, ensures accurate measurement, and expands the feeding area per unit of personnel.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of fishery equipment, in particular to integrated stirring and feeding equipment. The utility model aims to solve the problems of single function and low efficiency. The integrated stirring and feeding device comprises a main machine frame, a main control unit, a liquid adding unit, a stirring unit and a first feeding unit, wherein the main control unit, the liquid adding unit, the stirring unit and the first feeding unit are arranged on the main machine frame. The stirring unit comprises a stirring bin and a first stirring device, the stirring bin is arranged on the main machine frame in a supporting mode, a weighing module is arranged between the stirring bin and the main machine frame, and the first stirring device and the weighing module are both electrically connected with the main control unit; the stirring bin is provided with a liquid inlet hole, a feeding port and a first discharging port, the liquid inlet hole is communicated with the liquid adding unit, the first discharging port is communicated with the first feeding unit, a first material blocking device is arranged between the first discharging port and the first feeding unit, and the first material blocking device is configured to enable the first discharging port to be opened or closed towards the first feeding unit; the first material blocking device is electrically connected with the main control unit.
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Description

TECHNICAL FIELD

[0001] The utility model relates to fishery equipment technical field more specifically, relate to a kind of integrated formula stirring feeding equipment. BACKGROUND

[0002] With the growing demand for aquatic products around the world, the traditional manual feeding method has been difficult to meet the requirements of large-scale, high-density breeding. Therefore, automated and intelligent feed feeding equipment has emerged, and gradually become an indispensable part of modern aquaculture.

[0003] Chinese patent CN220674844 discloses a kind to be fed to aquatic feed feeding device, but there is no first stirring device;Chinese patent CN220654458 discloses a kind of material feeding device for aquaculture, which lacks specific feeding device etc.

[0004] The above-mentioned feed feeding device does not combine stirring and feeding well, or some functions are not perfect. UTILITY MODEL CONTENT

[0005] The utility model aims at overcoming at least one of the above-mentioned prior art defects, providing an integrated stirring feeding equipment to solve the problem of single function and low efficiency.

[0006] The utility model takes the technical scheme, provides an integrated stirring feeding equipment, including mainframe and main control unit, liquid adding unit, stirring unit and first feeding unit arranged on the mainframe;

[0007] The stirring unit includes a stirring bin and a first stirring device for stirring the material placed in the stirring bin, the stirring bin is supported on the mainframe, a weighing module is arranged between the stirring bin and the mainframe, the weighing module is used for weighing the stirring bin, and the first stirring device and the weighing module are electrically connected with the main control unit;

[0008] The stirring bin is provided with a liquid inlet hole, a feed inlet and a first discharge port, the liquid inlet hole is communicated with the liquid adding unit, the first discharge port is communicated with the first feeding unit, a first material blocking device is arranged between the first discharge port and the first feeding unit, the first material blocking device is configured to open or close the first discharge port towards the first feeding unit, and the first material blocking device is electrically connected with the main control unit.

[0009] The organic cooperation of the liquid adding unit, the stirring unit, the feeding unit, the weighing module and the material blocking device can complete liquid adding, material adding, uniform mixing, discharging and feeding work based on one device, has high integration degree, accurate metering, and can realize efficient operation based on the overall control function of the main control unit, expand the feeding and breeding area of unit personnel, and effectively solve the problems of single function and low efficiency.

[0010] In some embodiments, the first feeding unit includes a first buffer bin, a first unloader and a first feeder, which are all arranged on the main rack, the first buffer bin is communicated with the first discharge port through a first discharge pipeline, the first material blocking device is arranged between the first discharge port and the first discharge pipeline, the first buffer bin is provided with a first unloading port, the first unloader is communicated with the first unloading port, and a first connecting pipe is arranged between the first feeder and the first unloader, and the first feeder is used to drive the material to be discharged from the first unloader.

[0011] The first unloader and the first feeder are electrically connected with the main control unit.

[0012] The first buffer bin is added to temporarily store the material stirred by the stirring unit, which helps the stirring unit to continuously stir, thereby improving the utilization rate of the stirring unit and the feeding efficiency.

[0013] In some embodiments, the stirring bin is provided with a second discharge port, and the integrated stirring and feeding device further includes a second feeding unit.

[0014] The second discharge port is communicated with the second feeding unit, a second material blocking device is arranged between the second discharge port and the second feeding unit, the second material blocking device is configured to open or close the second discharge port towards the second feeding unit, and the second material blocking device is electrically connected with the main control unit.

[0015] The second feeding unit is added to cooperate with the first feeding unit to expand the feeding area and improve the feeding efficiency.

[0016] In some embodiments, the second feeding unit includes a second buffer bin, a second unloader and a second feeder, which are all arranged on the main rack, the second buffer bin is communicated with the second discharge port through a second discharge pipeline, the second material blocking device is arranged between the second discharge port and the second discharge pipeline, the second buffer bin is provided with a second unloading port, the second unloader is communicated with the second unloading port, a first connecting pipe is arranged between the second feeder and the second unloader, and the second feeder is used to drive the material to be discharged from the second unloader.

[0017] The second unloader and the second feeder are electrically connected with the main control unit.

[0018] In some embodiments, the first stirring device comprises a spiral stirring piece rotatably arranged in the stirring bin and a driving mechanism electrically connected with the main control unit.

[0019] In some embodiments, the spiral stirring piece is arranged in a longitudinal direction, and a cylinder piece is fixedly arranged in the first stirring bin and penetrates through the first stirring bin in the longitudinal direction, and the cylinder piece at least surrounds an upper portion of the spiral stirring piece.

[0020] In the scheme, the spiral stirring piece is isolated by the cylinder piece, so that the spiral stirring piece cannot cause injury to the operator, and the gap between the spiral stirring piece and the cylinder piece can promote the stirring and mixing of the material.

[0021] In some embodiments, the stirring bin and the driving mechanism are arranged on the main rack through a sub-rack, and the weighing module is arranged at a support connection between the main rack and the sub-rack.

[0022] In the scheme, the stirring bin and the driving mechanism are arranged on the sub-rack to form a modular mechanical structure, which is convenient for assembly and disassembly, and can improve the installation strength of the stirring bin and the driving mechanism. In addition, the weighing module does not need to contact the ground, which can reduce wear and tear and prolong the service life.

[0023] In some embodiments, the spiral stirring piece is rotatably arranged at the bottom of the stirring bin, and the spiral stirring piece has a driving end extending downward from the stirring bin.

[0024] The driving mechanism comprises a transmission assembly and a rotary driving motor electrically connected with the main control unit, the rotary driving motor is arranged on the lower side of the stirring bin, and the rotary driving motor drives the driving end of the stirring spiral stirring piece through the transmission assembly.

[0025] In the scheme, the spiral stirring piece is arranged at the bottom of the stirring bin, and the rotary driving motor is arranged on the lower side of the stirring bin, which can reduce the gravity center of the stirring unit and improve the stability during operation, so that the weighing module can accurately measure the weight of the material.

[0026] In some embodiments, the liquid adding unit comprises a liquid storage tank, a pump body and a liquid adding pipe, the liquid storage tank and the pump body are arranged on the main rack, the liquid adding pipe is arranged on the main rack or the liquid storage tank, and the pump body is electrically connected with the main control unit.

[0027] The pump body is provided with a pump-in end and a pump-out end, the liquid adding pipe is provided with a liquid inlet end and a liquid outlet end, the pump-in end is communicated with the liquid storage tank, the pump-out end is communicated with the liquid inlet end, and the liquid outlet end is connected to the liquid inlet hole.

[0028] In some embodiments, the liquid storage tank is provided with a second stirring device electrically connected with the master control unit, and the second stirring device is used for stirring and mixing the liquid placed in the liquid storage tank.

[0029] In some embodiments, the first material blocking device comprises a first shutter and a first reciprocating driving member electrically connected with the master control unit, the first reciprocating driving member is arranged on the main rack or the stirring bin through a connecting seat, and the first reciprocating driving member drives the first shutter to reciprocate relative to the first discharge opening, so that the first discharge opening is opened or closed towards the first feeding unit.

[0030] Compared with the prior art, the utility model has the advantages that:

[0031] (1) Through the organic cooperation of the liquid adding unit, the stirring unit, the feeding unit, the weighing module and the material blocking device, liquid adding, material adding, mixing, discharging and feeding work can be completed based on one device, the degree of integration is high, installation is simple, metering is accurate, and based on the overall control function of the master control unit, efficient operation can be realized, and the problems of single function and low efficiency are effectively solved.

[0032] (2) By additionally arranging a cylinder around the spiral stirring member for isolation, the spiral stirring member can be prevented from causing injury to the operator, and the gap between the spiral stirring member and the cylinder can promote the stirring and mixing of the material.

[0033] (3) By additionally arranging a weighing module between the stirring module and the main rack, more accurate measurement of the feeding weight can be provided, and the weighing module can be prevented from being damaged too quickly due to direct contact with the ground.

[0034] (4) By additionally arranging a buffer bin to temporarily store the stirred material, the utilization rate of the stirring unit can be improved, which helps to realize continuous stirring and improve the feeding efficiency. BRIEF DESCRIPTION OF DRAWINGS

[0035] Figure 1 The structure of example 1 Figure 1 .

[0036] Figure 2 The structure of example 1 Figure 2 .

[0037] Figure 3 The local structure of example 1 Figure 1 .

[0038] Figure 4A local structure of Example 1 Figure 2 .

[0039] Figure 5 A structure schematic diagram of Example 2.

[0040] The figure marks: main rack 100, auxiliary rack 110, main control unit 200, liquid adding unit 300, liquid storage tank 310, second stirring device 311, pump body 320, liquid adding pipe 330, stirring unit 400, stirring bin 410, bin body 411, cover body 412, first discharge port 413, second discharge port 414, liquid inlet hole 415, feed inlet 416, observation hole 417, maintenance hole 418, first shutter 420, first reciprocating driving part 430, cylinder part 440, spiral stirring part 450, driving mechanism 460, rotary driving motor 461, transmission assembly 462, first discharge pipeline 470, second discharge pipeline 480, first feeding unit 500, first buffer bin 510, first discharge port 511, first discharger 520, first feeder 530, first connecting pipe 540, weighing module 600, second feeding unit 700, second buffer bin 710, second discharge port 711, second discharger 720, second feeder 730, second connecting pipe 740. DETAILED DESCRIPTION

[0041] The drawings of the utility model are only used for example description, and cannot be understood as the limitation of the utility model. In order to better illustrate the following examples, some components of the drawings can be omitted, enlarged or reduced, and the size of actual products is not represented; for those skilled in the art, it is understandable that some well-known structures and their descriptions in the drawings can be omitted.

[0042] Example 1

[0043] As Figures 1-4 shown, the embodiment provides an integrated stirring and feeding equipment, which comprises a main rack 100 and a main control unit 200, a liquid adding unit 300, a stirring unit 400 and a first feeding unit 500 arranged on the main rack 100.

[0044] The stirring unit 400 comprises a stirring bin 410 and a first stirring device for stirring the material placed in the stirring bin 410, and the stirring bin 410 is supported on the main rack 100; a weighing module 600 is arranged between the stirring bin 410 and the main rack 100, and the weighing module 600 is used for weighing the stirring bin 410; and the first stirring device and the weighing module 600 are electrically connected with the main control unit 200.

[0045] The stirring bin 410 is provided with a liquid inlet hole 415, a feeding port 416 and a first discharge port 413, the liquid inlet hole 415 is communicated with the liquid adding unit 300, the first discharge port 413 is communicated with the first feeding unit 500, and a first material blocking device is arranged between the first discharge port 413 and the first feeding unit 500, the first material blocking device is configured to open or close the first discharge port 413 towards the first feeding unit 500, and the first material blocking device is electrically connected with the main control unit 200.

[0046] In specific implementation, in order to facilitate disassembly and assembly, the stirring bin 410 includes a bin body 411 with an upper opening and a cover body 412 covering the upper opening, wherein the liquid inlet hole 415 and the feeding port 416 are arranged on the cover body 412, and the first discharge port 413 is arranged on the bin body 411, so as to facilitate feeding or connection.

[0047] In use, the liquid adding unit 300 adds liquid medicine or other liquid materials into the stirring bin 410 through the liquid inlet hole 415, and the breeding feed is fed into the stirring bin 410 through the feeding port 416, the liquid medicine and the feed are stirred and mixed uniformly in the stirring bin 410 by the first stirring device, the weight of the materials is obtained by the weighing module 600, then the first material blocking device opens the first discharge port 413 towards the first feeding unit, the feed mixed with the liquid medicine is fed into the feeding unit, and then the feed is fed to the target area through the feeding unit. In this process, the feeding unit, the weighing module 600 and the material blocking device are organically combined, so that the liquid adding, feeding, mixing, discharging and feeding work can be completed based on one device, the degree of integration is high, the measurement is accurate, and the main control unit 200 is further connected with the first stirring device and the first material blocking device to control and obtain the data of the weighing module 600, so that efficient feeding can be realized, and the problems of single function and low efficiency can be solved.

[0048] In specific implementation, the main control unit 200 can be an electric control box provided with a display screen, the heating unit, the first stirring device and the first material blocking device are controlled as a whole based on the electric control box, and the weight data obtained by the weighing module 600 is directly displayed on the display screen, so as to improve the work efficiency of the operator.

[0049] Reference Figure 3 The first feeding unit 500 includes a first buffer bin 510, a first unloader 520 and a first feeder 530, which are all arranged on the main rack 100, the first buffer bin 510 is communicated with the first discharge port 413 through a first discharge pipeline 470, the first material blocking device is arranged between the first discharge port 413 and the first discharge pipeline 470, the first buffer bin 510 is provided with a first discharge port 511, the first unloader 520 is communicated with the first discharge port 511, the first feeder 530 is communicated with the first unloader 520 through a first connecting pipeline 540, and the first feeder 530 is used to drive the materials to be discharged from the first unloader 520;

[0050] The first discharger 520 and the first feeder 530 are electrically connected with the main control unit 200.

[0051] In a specific implementation, the first discharger 520 can be provided with a deceleration motor to provide discharging power, and the first feeder 530 can be in the form of a blower. In actual work, the first batch of materials mixed in the mixing bin 410 are completely delivered to the first buffer bin 510 through the first discharge port 413, and then the first blocking device closes the first discharge port 413. Thereafter, the materials in the first buffer bin 510 can be fed to the target area through the cooperation of the first discharger 520 and the first feeder 530, and at the same time, the second batch of materials in the mixing bin 410 can be mixed and stirred at the same time. In this way, the utilization rate of the mixing unit 400 can be improved, and the feeding efficiency can be improved.

[0052] Reference Figure 3 In order to improve the mixing and stirring efficiency, the first stirring device includes a spiral stirring piece 450 and a driving mechanism 460. The spiral stirring piece 450 is rotatably arranged in the mixing bin 410, and the driving mechanism 460 is electrically connected with the main control unit 200. The driving mechanism 460 is used to drive the spiral stirring piece 450 to rotate and stir.

[0053] Reference Figure 3 The spiral stirring piece 450 is arranged in a longitudinal direction, and a cylindrical piece 440 penetrating in the longitudinal direction is fixedly arranged in the first mixing bin 410. The cylindrical piece 440 at least surrounds the upper portion of the spiral stirring piece 450. In a specific implementation, the cylindrical piece 440 is fixedly arranged on the surface of the cover body 412 facing the inside of the bin body 411, and the spiral stirring piece 450 and the inner wall of the cylindrical piece 440 have a gap.

[0054] It is easy to understand that the cylindrical piece 440 can isolate the spiral stirring piece 450, thereby avoiding the spiral stirring piece 450 from causing injuries to the operator, and the gap between the spiral stirring piece 450 and the cylindrical piece 440 can promote the mixing and stirring of the materials.

[0055] Reference Figure 3 In order to facilitate the observation of the stirring condition of the materials, the cover body 412 is further provided with an observation port 417. In a preferred implementation, the position of the observation port 417 corresponds to the position of the cylindrical piece 440. In addition, in order to facilitate the maintenance of the inside of the mixing bin 410, the cover body 412 is further provided with an inspection port 418.

[0056] Reference Figures 2-3, in order to improve the installation strength, further comprising a sub-frame 110 supported on the main frame 100, the stirring bin 410 and the driving mechanism 460 are arranged on the main frame 100 through the sub-frame 110, and the weighing module 600 is arranged at the support connection between the main frame 100 and the sub-frame 110. In this way, the stirring bin 410 and the driving mechanism 460 form a modular mechanical structure, which is convenient for assembly and disassembly. In addition, the weighing module 600 does not need to contact the ground, which can reduce wear and prolong the service life. Preferably, three weighing modules 600 are arranged, and the three weighing modules 600 are uniformly distributed on the support connection surface of the sub-frame 110 and the main frame 100, so as to improve the connection stability of the sub-frame 110 and the main frame 100, and ensure the measurement accuracy of the weighing module 600.

[0057] Reference Figure 3 , the spiral stirring part 450 is arranged at the bottom of the stirring bin 410, and the spiral stirring part 450 has a driving end extending downward out of the stirring bin 410; the driving mechanism 460 includes a rotary driving motor 461 and a transmission assembly 462, and the rotary driving motor 461 is electrically connected with the main control unit 200. Specifically, the rotary driving motor 461 is arranged on the lower side of the stirring bin 410, and the rotary driving motor 461 drives the driving end of the stirring spiral stirring part 450 through the transmission assembly 462. By arranging the spiral stirring part 450 at the bottom of the stirring bin 410 and arranging the rotary driving motor 461 on the lower side of the stirring bin 410, the gravity center of the stirring unit 400 can be lowered, and the stability during operation can be improved, so that the weight of the material can be accurately measured by the weighing module 600. In specific implementation, the transmission assembly 462 can be realized by a belt wheel assembly including a driving wheel, a transmission belt and a transmission wheel, wherein the driving wheel is arranged at the driving end of the rotary driving motor 461, and the transmission wheel is arranged at the driving end of the spiral stirring part 450. In addition, the transmission assembly 462 can also be realized by a gear set in meshing connection.

[0058] Reference Figure 4 The liquid adding unit 300 includes a liquid storage tank 310, a pump body 320 and a liquid adding pipe 330, the liquid storage tank 310 and the pump body 320 are arranged on the main frame 100, the liquid adding pipe 330 is supported on the liquid storage tank 310, and the pump body 320 is electrically connected with the main control unit 200; the pump body 320 is provided with a pump inlet end and a pump outlet end, the liquid adding pipe 330 is provided with a liquid inlet end and a liquid outlet end, the pump inlet end is communicated with the liquid storage tank 310, the pump outlet end is communicated with the liquid inlet end, and the liquid outlet end is connected to the liquid inlet hole 415.

[0059] Reference Figure 4 The liquid storage tank 310 is provided with a second stirring device 311 electrically connected with the main control unit 200, and the second stirring device 311 is used for stirring and mixing the liquid medicine placed in the liquid storage tank 310.

[0060] Reference Figure 3The first material blocking device includes a first gate plate 420 and a first reciprocating drive component 430 electrically connected to the main control unit 200. The first reciprocating drive component 430 is mounted on the main frame 100 or the mixing chamber 410 via a connecting seat. The first reciprocating drive component 430 drives the first gate plate 420 to reciprocate relative to the first discharge port 413, so that the first discharge port 413 opens or closes toward the first feeding unit 500. In specific implementation, the first reciprocating drive component 430 can be implemented in the form of a cylinder or a reciprocating drive motor.

[0061] The operation of this embodiment is as follows: The liquid medicine is fed into the mixing chamber 410 through the liquid addition pipe 330 from the storage tank 310. Feed is added into the mixing chamber 410 through the feed inlet 416. The main control unit 200 operates the spiral agitator 450 to start mixing. The weighing module 600 weighs the mixture. After the liquid medicine and feed are mixed evenly in the mixing chamber 410, the main control unit 200 drives the first reciprocating drive 430 to drive the first gate 420, causing the first discharge port 413 to open towards the first buffer chamber 510, allowing the first batch of mixture to be introduced into the first buffer chamber. Inside the mixing chamber 510, until the weight measured by the weighing module 600 meets the preset requirements, the first gate 420 is operated to close the first discharge port 413. Then, a new batch of medicine and feed is added into the mixing chamber 410 for mixing. At the same time, the first batch of mixed materials in the storage chamber can be blown to the target breeding area by the blower and unloader. In this way, the mixing chamber 410 can be unloaded quickly, improving the mixing capacity. Furthermore, the materials temporarily stored in the first buffer chamber 510 can be fed continuously, significantly improving the feeding efficiency of the integrated mixing and feeding equipment.

[0062] Example 2

[0063] like Figure 5 As shown, this embodiment provides another integrated mixing and feeding device with a structure that is basically the same as the embodiment. Specifically, based on the embodiment 1, the mixing chamber 410 of embodiment 2 is provided with a second discharge port 414, and the integrated mixing and feeding device also includes a second feeding unit 700.

[0064] The second discharge port 414 is connected to the second feeding unit 700. A second material blocking device is provided between the second discharge port 414 and the second feeding unit 700. The second material blocking device is configured to open or close the second discharge port 414 toward the second feeding unit 700. The second material blocking device is electrically connected to the main control unit 200.

[0065] Similar to the embodiment 1, the second feeding unit 700 comprises the second buffer bin 710, the second discharger 720 and the second feeder 730, which are all arranged on the main frame 100, the second buffer bin 710 is communicated with the second discharge port 414 through the second discharge pipeline 480, the second blocking device is arranged between the second discharge port 414 and the second discharge pipeline 480, the second buffer bin 710 is provided with the second discharge port 711, the second discharger 720 is communicated with the second discharge port 711, the second feeder 730 is communicated with the second discharger 720 through the second connecting pipeline 740, the second feeder 730 is used for driving the material to be discharged from the second discharger 720, and the second discharger 720 and the second feeder 730 are both electrically connected with the main control unit 200.

[0066] In specific use, the stirring bin 410 can successively feed two batches of mixed materials, which are mixed and uniform by stirring, into the first buffer bin 510 and the second buffer bin 710, the first discharger 520 and the first feeder 530 are cooperated to feed the mixed material in the first buffer bin 510, the second discharger 720 and the second feeder 730 are cooperated to feed the mixed material in the second buffer bin 710, so that the feeding area can be expanded, and in the feeding process, the stirring bin 410 can continuously mix a new batch of material through the spiral stirring piece 450, the preparation efficiency of the mixed material is improved, and the feeding efficiency of the integrated stirring and feeding equipment is improved.

[0067] Obviously, the above embodiments of the utility model are only examples for clearly illustrating the technical scheme of the utility model, and are not the limitation of the specific embodiments of the utility model. Any modification, equivalent replacement and improvement made within the spirit and principle of the utility model claim should be included in the protection scope of the utility model claim.

Claims

1. An integrated feeding and stirring apparatus, characterized in that, The integrated stirring and feeding device comprises a main frame, a main control unit, a liquid adding unit, a stirring unit and a first feeding unit which are arranged on the main frame. The stirring unit comprises a stirring bin and a first stirring device for stirring the material placed in the stirring bin. The stirring bin is provided with a liquid inlet hole, a material inlet and a first material outlet.

2. The integrated feed mixer and feeder apparatus of claim 1, wherein, The first feeding unit comprises a first buffer bin, a first discharger and a first feeder which are arranged on the main frame. The first buffer bin is connected with the first material outlet through a first material outlet pipeline.

3. The integrated feeding and stirring device according to claim 1 or 2, characterized in that The first discharger and the first feeder are electrically connected with the main control unit. The first stirring device comprises a spiral stirring member and a driving mechanism electrically connected with the main control unit.

4. The integrated feed mixer and feeder apparatus of claim 3, wherein, The spiral stirring member is arranged longitudinally in the stirring bin. The stirring bin is fixedly provided with a cylinder member longitudinally penetrating through the stirring bin.

5. The integrated feeding and stirring apparatus according to any one of claims 1, 2, 4, wherein The cylinder member at least surrounds the upper part of the spiral stirring member.

6. The integrated feeding and stirring device according to claim 5, wherein ​ 7. The integrated feeding and stirring device according to claim 5, wherein The auxiliary rack is supported on the main rack, and the stirring bin and the driving mechanism are arranged on the main rack through the auxiliary rack.

8. The integrated feed mixer and feeder apparatus of claim 7, wherein, The spiral stirring member is arranged at the bottom of the stirring bin, and has a driving end extending downward from the stirring bin. The driving mechanism comprises a transmission assembly and a rotary driving motor electrically connected with the main control unit, and the rotary driving motor is arranged at the lower side of the stirring bin.

9. The integrated feeding and stirring apparatus according to any one of claims 1, 2, 4, wherein The liquid adding unit comprises a liquid storage tank, a pump body and a liquid adding pipe, the liquid storage tank and the pump body are arranged on the main rack, the liquid adding pipe is arranged on the main rack or the liquid storage tank, and the pump body is electrically connected with the main control unit. The pump body is provided with a pump inlet and a pump outlet, the liquid adding pipe is provided with a liquid inlet and a liquid outlet, the pump inlet is communicated with the liquid storage tank, the pump outlet is communicated with the liquid inlet, and the liquid outlet is connected with the liquid inlet hole.

10. The integrated feed mixer and feeder apparatus of claim 9, wherein, The liquid storage tank is provided with a second stirring device electrically connected with the main control unit, and the second stirring device is used for stirring and mixing the liquid in the liquid storage tank; and / or The first blocking device comprises a first shutter and a first reciprocating driving member electrically connected with the main control unit, the first reciprocating driving member is arranged on the main rack or the stirring bin through a connecting seat, the first reciprocating driving member drives the first shutter to reciprocate relative to the first discharge port, so that the first discharge port is opened or closed towards the first feeding unit.