Feed mixing and feeding device
By designing a feed mixing feeding device including two mixing tanks and mixing components, the problems of mixing discontinuously and feeding in the prior art are solved, and an efficient and automatic feed mixing and feeding process is achieved.
Patent Information
- Application Number
- CN202510386527.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-31
- Publication Date
- 2025-05-13
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
The existing feed mixing devices cannot achieve continuous mixing and automatic feeding, and the mixing efficiency is low and the control is complex.
A feed mixing feeding device is designed, including two mixing tanks and a mixing assembly. Through the cooperation of electric push rods and servo motors, the mixing and stirring state can be switched and automatic cleaning is achieved, and the feeding is achieved with the discharge assembly.
The continuous and automatic feeding of feed mixing are achieved, the mixing efficiency is improved, the control process is simplified, and the waiting time is significantly shortened.
Smart Images

Figure CN119971879A_ABST
Abstract
Description
Technical Field
[0001] The invention belongs to the technical field of feed mixing, and in particular relates to a feed mixing and feeding device. Background Art
[0002] Before feed mixing, various raw materials need to be strictly inspected and screened to ensure that their quality meets the standards. When mixing, the amount of each raw material will be accurately calculated according to factors such as the type of animal, growth stage, and production performance, and efficiently mixed through mechanical or airflow methods. The mixed feed is not only nutritionally balanced, but also tastes better, which helps to improve the appetite and digestion and absorption capacity of animals. Conventional feed mixing is mainly completed through feed mixing devices.
[0003] Conventional feed mixing devices mainly consist of a mixing tank and a mixing component. When in use, feed is put into the mixing tank, and the mixing component is turned on to mix it. When mixing different feeds, this mixing method must stop the mixing tank for cleaning before the secondary feed mixing process can be carried out. Continuous feed mixing cannot be achieved, and multiple feeding processes are required. The overall mixing efficiency is low.
[0004] At the same time, the discharge valve needs to be manually controlled during the mixing of the feed, and it also needs to be coordinated with the external feeding device to achieve uniform feeding after the mixing is completed. The entire control process is relatively complicated, and automatic discharge and automatic feeding cannot be achieved after the mixing is completed. Summary of the invention
[0005] The object of the present invention is to provide a feed mixing and feeding device to solve the problems raised in the above background technology.
[0006] In order to achieve the above-mentioned purpose, the present invention provides the following technical scheme: a feed mixing and feeding device comprises a frame, an inner side surface of the frame is fixedly sleeved with a feed tank, the bottom end of the feed tank is fixedly connected with a first mixing tank, the inner side surface of the first mixing tank is provided with a second mixing tank, the bottom end of the first mixing tank is fixedly installed with a connecting piece, the first mixing tank is fixed to the second mixing tank through the connecting piece, the bottom end of the first mixing tank is fixedly connected with a discharge tank, the bottom end of the discharge tank is provided with a discharge port, the internal movably clamped with a discharge assembly of the discharge tank, the top end of the feed tank is fixedly connected with a first feed port located directly above the first mixing tank at a position close to the outer side surface, the top end of the feed tank is fixedly connected with a second feed port located directly above the second mixing tank at a position close to the inner side surface, the first mixing tank and the second mixing tank are internally movably clamped with a mixing assembly, the top end of the mixing assembly is fixedly installed with a power frame, and the bottom end of the frame is fixedly installed with support legs at axially equal intervals.
[0007] Among them, the first feed port corresponds to the first mixing tank, and the second feed port corresponds to the second mixing tank. When mixing and stirring are performed, all the mixing components are located inside the first mixing tank and the second mixing tank, and the device is in a mixing and stirring state. The first mixing tank or the second mixing tank can be selected as the mixing and stirring container. When the first mixing tank is selected as the mixing container, different feeds can be injected into the interior of the first mixing tank through the first feed port, and when the second mixing tank is selected as the mixing container, different feeds can be injected into the interior of the second mixing tank through the second feed port to complete the feeding process.
[0008] As a further technical solution of the present invention, a main motor is fixedly installed in the middle of the top of the frame, and an electric push rod is fixedly installed at the output end of the main motor. The output end of the electric push rod passes through the middle of the top of the feed tank and is connected to the middle of the top of the power frame.
[0009] When the device is in a mixing and stirring state, the electric push rod can be turned on and adjusted to its longest state. At this time, the mixing components are all located inside the first mixing tank and the second mixing tank. When the device is not in a mixing and stirring state, the electric push rod can be adjusted to its shortest state. At this time, the mixing component is located directly above the first mixing tank and the second mixing tank, and the mixing component does not contact the first mixing tank or the second mixing tank.
[0010] As a further technical solution of the present invention, the number of the mixing components is three, and they are installed at the bottom end of the power frame at equal axial intervals. The mixing components include a mounting frame, which is connected to the bottom end of the power frame near the outer side surface.
[0011] As a further technical solution of the present invention, a servo motor is fixedly installed in the middle of the mounting frame, and the output shaft of the servo motor passes through the bottom end of the mounting frame and is fixedly connected to a rotating member.
[0012] As a further technical solution of the present invention, a scraper and a mixing and stirring frame are fixedly installed on the left and right sides of the bottom end of the rotating member. When the scraper is located inside the first mixing tank, the left and right sides of the scraper are in contact with the inner side surface of the first mixing tank and the outer side surface of the second mixing tank respectively.
[0013] As a further technical solution of the present invention, when the scraper is located inside the second mixing tank, one side of the scraper contacts the inner side surface of the second mixing tank, and the inner diameter of the first mixing tank is smaller than the diameter of the mixing and stirring frame.
[0014] When the feed is located inside the second mixing tank, it is necessary to ensure that the mixing and stirring frame is located directly above the second mixing tank, and turn on the electric push rod to make the mixing and stirring frame descend to the inside of the second mixing tank. At the same time, the main motor needs to be turned on to drive the electric push rod at the bottom to rotate, and at the same time drive the power frame to rotate, and drive multiple mounting frames to rotate circumferentially. At this time, multiple mixing and stirring frames inside the second mixing tank rotate circumferentially accordingly, and the feed inside the second mixing tank only needs to be mixed and stirred; When the feed is located inside the first mixing tank, the electric push rod can be controlled to shorten to the shortest state. When the mixing assembly is not in contact with the first mixing tank and the second mixing tank, the servo motor can be turned on to control the rotating part at the bottom to rotate 180 degrees. At this time, the scraper and mixing frame at the bottom will rotate accordingly. The mixing frame on the right will rotate to the left, and the scraper on the left will rotate to the right, completing the position change operation. At this time, the electric push rod is continued to be controlled to extend until the mixing frame enters the first mixing tank, and the mixing assembly is continued to be driven to rotate, thereby completing the mixing and stirring process of the feed inside the first mixing tank.
[0015] By utilizing the cooperation between the mixing component and the electric push rod, and the cooperation between the mixing component and the first mixing tank and the second mixing tank, and by switching the position of the mixing stirring frame, the device can switch the stirring state between the first mixing tank and the second mixing tank, so that the device can stir inside the second mixing tank and then stir inside the first mixing tank. The whole process can be switched quickly without using two sets of stirring devices, and the mixing and stirring process of feeds of different specifications can be completed, thereby improving the mixing efficiency.
[0016] At the same time, when the mixing and stirring frame is located inside the second mixing tank, the scraper can be located inside the first mixing tank. When the mixing and stirring frame rotates circumferentially, the scraper can rotate relative to the first mixing tank. At this time, the scraper can actively clean the inner side of the first mixing tank. When the mixing and stirring frame is located inside the first mixing tank, the scraper can be located inside the second mixing tank. The interior of the first mixing tank can be actively cleaned, and active cleaning and mixing and stirring are completed at the same time, shortening the waiting time.
[0017] By cooperating between the first mixing tank and the second mixing tank and the mixing assembly and utilizing the position switching of the scraper, active cleaning of the interior of the first mixing tank and the second mixing tank can be achieved. Meanwhile, during the cleaning process, the mixing and stirring process can be performed synchronously without stopping the machine for cleaning, thus significantly shortening the waiting time in between and realizing a continuous feed mixing process, thereby further improving the feed mixing efficiency.
[0018] As a further technical solution of the present invention, the discharge assembly includes an extension rod, the top end of the extension rod is connected to the middle part of the bottom end of the power frame, the bottom end of the extension rod is fixedly connected to a sealing plug, and the bottom end of the sealing plug is fixedly connected to a discharge dragon.
[0019] As a further technical solution of the present invention, when the electric push rod is in its longest state, the mixing components are all located inside the first mixing tank and the second mixing tank, and the bottom end of the discharge dragon protrudes from the bottom end of the discharge tank and is all located below the discharge tank, and the sealing plug is movably connected to the discharge port to seal the discharge port.
[0020] As a further technical solution of the present invention, when the electric push rod is in the shortest state, the mixing assembly is located directly above the first mixing tank and the second mixing tank, and the sealing plug is not movably connected to the discharge port, and the discharge dragon is entirely located inside the discharge tank.
[0021] When the device is in the mixing and stirring state, the mixing components are all located inside the first mixing tank and the second mixing tank, that is, the electric push rod is in the longest state, and the sealing plug at the bottom can completely seal the discharge port. At this time, the channel at the bottom of the discharge tank is blocked, and the feed cannot be discharged through the discharge port. When the device is not in the mixing and stirring state, the electric push rod is in the left end state, that is, the mixing component rises to the highest point. At this time, the sealing plug does not block the discharge port, and the feed can be discharged normally through the discharge port. At the same time, the electric push rod can be driven to rotate, and the discharge dragon at the bottom can be driven to rotate, so as to complete the uniform discharge of the feed and the feeding of the feed.
[0022] By utilizing the cooperation between the electric push rod, the discharging assembly and the mixing assembly, when the device is in a mixing and stirring state, the bottom end of the discharging port can be automatically sealed to prevent the feed from being discharged. When the device is not in a mixing and stirring state, the discharging port is automatically opened, and the discharging dragon can discharge the feed evenly. The whole process is completed automatically without manual control, and automatic feeding operation can be realized, thereby improving the overall mixing and feeding efficiency.
[0023] The beneficial effects of the present invention are as follows: (1) The present invention utilizes the coordination between the mixing component and the electric push rod, and the coordination between the mixing component and the first mixing tank and the second mixing tank, and switches the position of the mixing stirring frame, so that the device can switch the stirring state between the first mixing tank and the second mixing tank, so that the device can stir inside the second mixing tank and then stir inside the first mixing tank. The whole process can be switched quickly without using two sets of stirring devices, and the mixing and stirring process of feeds of different specifications can be completed, thereby improving the mixing efficiency.
[0024] (2) The present invention realizes active cleaning of the inside of the first mixing tank and the second mixing tank by cooperating between the first mixing tank and the second mixing tank and the mixing assembly, and by switching the position of the scraper. At the same time, during the cleaning process, the mixing and stirring process can be carried out simultaneously without stopping the machine for cleaning, which significantly shortens the waiting time in the middle, realizes a continuous feed mixing process, and further improves the feed mixing efficiency.
[0025] (3) The present invention utilizes the cooperation between the electric push rod and the discharge assembly and the mixing assembly, so that when the device is in a mixing and stirring state, the bottom end of the discharge port can be automatically sealed to prevent the feed from being discharged. When the device is not in a mixing and stirring state, the discharge port is automatically opened, and the discharge dragon can discharge the feed evenly. The whole process is completed automatically without manual control, and automatic feeding operation can be realized, thereby improving the overall mixing and feeding efficiency. BRIEF DESCRIPTION OF THE DRAWINGS
[0026] Figure 1 It is a schematic diagram of the overall structure of the present invention; Figure 2 is a schematic diagram of the bottom structure of the present invention; Figure 3 It is a schematic diagram of the coordination of the feeding tank, the discharging tank and the first mixing tank structure of the present invention; Figure 4 It is a cross-sectional schematic diagram of the internal structure of the feed tank of the present invention; Figure 5 It is an exploded schematic diagram of the structure of the discharge tank and the discharge assembly of the present invention; Figure 6 It is a schematic diagram of the coordination of the first mixing tank, the second mixing tank and the mixing assembly structure of the present invention; Figure 7 It is a schematic diagram of the coordination of the power frame and the hybrid assembly structure of the present invention; Figure 8 It is a separate exploded schematic diagram of the mixing assembly structure of the present invention.
[0027] In the figure: 1. frame; 2. supporting legs; 3. feeding tank; 4. discharging tank; 5. main motor; 6. electric push rod; 7. discharging assembly; 701. extension rod; 702. sealing plug; 703. discharging dragon; 8. discharging port; 9. first mixing tank; 10. second mixing tank; 11. first feeding port; 12. second feeding port; 13. power frame; 14. mixing assembly; 141. mounting frame; 142. servo motor; 143. rotating part; 144. scraper; 145. mixing and stirring frame; 15. connecting part. DETAILED DESCRIPTION
[0028] 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 described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.
[0029] like Figures 1 to 8 As shown, in the embodiment of the present invention, a feed mixing and feeding device includes a frame 1, an inner side surface of the frame 1 is fixedly sleeved with a feed tank 3, the bottom end of the feed tank 3 is fixedly connected with a first mixing tank 9, the inner side surface of the first mixing tank 9 is provided with a second mixing tank 10, the bottom end of the first mixing tank 9 is fixedly installed with a connecting piece 15, the first mixing tank 9 is fixed to the second mixing tank 10 through the connecting piece 15, the bottom end of the first mixing tank 9 is fixedly connected with a discharge tank 4, the bottom end of the discharge tank 4 is provided with a discharge port 8, and the discharge The tank 4 is internally movably connected with a discharge assembly 7, the top of the feed tank 3 is fixedly connected to a first feed port 11 located just above the first mixing tank 9 at a position close to the outer side surface, the top of the feed tank 3 is fixedly connected to a second feed port 12 located just above the second mixing tank 10 at a position close to the inner side surface, the first mixing tank 9 and the second mixing tank 10 are internally movably connected with a mixing assembly 14, the top of the mixing assembly 14 is fixedly mounted with a power frame 13, and the bottom end of the frame 1 is fixedly mounted with support legs 2 at axially equal intervals.
[0030] Among them, the first feed port 11 corresponds to the first mixing tank 9, and the second feed port 12 corresponds to the second mixing tank 10. When mixing and stirring, the mixing components 14 are all located inside the first mixing tank 9 and the second mixing tank 10, and the device is in a mixing and stirring state. The first mixing tank 9 or the second mixing tank 10 can be selected as the mixing and stirring container. When the first mixing tank 9 is selected as the mixing container, different feeds can be injected into the first mixing tank 9 through the first feed port 11, and when the second mixing tank 10 is selected as the mixing container, different feeds can be injected into the second mixing tank 10 through the second feed port 12 to complete the feeding process.
[0031] like Figure 1 and Figure 2 as well as Figure 3 As shown, a main motor 5 is fixedly installed in the middle of the top of the frame 1, and an electric push rod 6 is fixedly installed at the output end of the main motor 5. The output end of the electric push rod 6 passes through the middle of the top of the feed tank 3 and is connected to the middle of the top of the power frame 13.
[0032] When the device is in a mixing and stirring state, the electric push rod 6 can be turned on and adjusted to its longest state. At this time, the mixing component 14 is completely located inside the first mixing tank 9 and the second mixing tank 10. When the device is not in a mixing and stirring state, the electric push rod 6 can be adjusted to its shortest state. At this time, the mixing component 14 is located directly above the first mixing tank 9 and the second mixing tank 10, and the mixing component 14 does not contact the first mixing tank 9 or the second mixing tank 10.
[0033] like Figure 4 and Figure 7 as well as Figure 8 As shown, there are three mixing components 14, which are axially evenly spaced and mounted at the bottom of the power frame 13. The mixing component 14 includes a mounting frame 141, which is connected to the bottom of the power frame 13 at a position close to the outer side surface. A servo motor 142 is fixedly mounted in the middle of the mounting frame 141. The output shaft of the servo motor 142 passes through the bottom of the mounting frame 141 and is fixedly connected to a rotating member 143. A scraper 144 and a mixing and stirring frame 145 are fixedly mounted on the left and right sides of the bottom of the rotating member 143 respectively. When the scraper 144 is located inside the first mixing tank 9, the left and right sides of the scraper 144 are in contact with the inner side surface of the first mixing tank 9 and the outer side surface of the second mixing tank 10 respectively. When the scraper 144 is located inside the second mixing tank 10, one side of the scraper 144 is in contact with the inner side surface of the second mixing tank 10. The inner diameter of the first mixing tank 9 is smaller than the diameter of the mixing and stirring frame 145.
[0034] Embodiment: When the feed is located inside the second mixing tank 10, it is necessary to ensure that the mixing and stirring frame 145 is located directly above the second mixing tank 10, and the electric push rod 6 is turned on to make the mixing and stirring frame 145 descend to the inside of the second mixing tank 10. At the same time, the main motor 5 is turned on to drive the electric push rod 6 at the bottom to rotate, and at the same time drive the power frame 13 to rotate, and drive the multiple mounting frames 141 to rotate circumferentially. At this time, the multiple mixing and stirring frames 145 inside the second mixing tank 10 rotate circumferentially accordingly, and the feed inside the second mixing tank 10 only needs to be mixed and stirred; When the feed is located inside the first mixing tank 9, the electric push rod 6 can be controlled to shorten to the shortest state. When the mixing component 14 is not in contact with the first mixing tank 9 and the second mixing tank 10, the servo motor 142 can be turned on to control the rotating part 143 at the bottom to rotate one hundred and eighty degrees. At this time, the scraper 144 and the mixing and stirring frame 145 at the bottom will rotate accordingly. The mixing and stirring frame 145 on the right side will rotate to the left, and the scraper 144 on the left side will rotate to the right, completing the transposition operation. At this time, the electric push rod 6 is continued to be controlled to extend until the mixing and stirring frame 145 enters the first mixing tank 9, and the mixing component 14 is continued to be driven to rotate, so as to complete the mixing and stirring process of the feed inside the first mixing tank 9.
[0035] By utilizing the cooperation between the mixing component 14 and the electric push rod 6, and the cooperation between the mixing component 14 and the first mixing tank 9 and the second mixing tank 10, and by switching the position of the mixing stirring frame 145, the device can switch the stirring state between the first mixing tank 9 and the second mixing tank 10, so that the device can stir inside the second mixing tank 10 and then stir inside the first mixing tank 9. The whole process can be switched quickly without using two sets of stirring devices, and the mixing and stirring process of feeds of different specifications can be completed, thereby improving the mixing efficiency.
[0036] At the same time, when the mixing and stirring frame 145 is located inside the second mixing tank 10, the scraper 144 can be located inside the first mixing tank 9. When the mixing and stirring frame 145 rotates circumferentially, the scraper 144 can rotate relative to the first mixing tank 9. At this time, the scraper 144 can actively clean the inner side of the first mixing tank 9. When the mixing and stirring frame 145 is located inside the first mixing tank 9, the scraper 144 can be located inside the second mixing tank 10, and the interior of the first mixing tank 9 can be actively cleaned. Active cleaning and mixing and stirring are completed at the same time, shortening the waiting time.
[0037] By cooperating between the first mixing tank 9 and the second mixing tank 10 and the mixing assembly 14, and by switching the position of the scraper 144, active cleaning of the interior of the first mixing tank 9 and the second mixing tank 10 is achieved. At the same time, during the cleaning process, the mixing and stirring process can be carried out simultaneously without stopping the machine for cleaning, which significantly shortens the waiting time in the middle, realizes a continuous feed mixing process, and further improves the feed mixing efficiency.
[0038] like Figure 2 and Figure 3 as well as Figure 4 and Figure 5 As shown, the discharge assembly 7 includes an extension rod 701, the top of the extension rod 701 is connected to the middle part of the bottom end of the power frame 13, the bottom end of the extension rod 701 is fixedly connected with a sealing plug 702, and the bottom end of the sealing plug 702 is fixedly connected with a discharge dragon 703. When the electric push rod 6 is in the longest state, the mixing assembly 14 is entirely located inside the first mixing tank 9 and the second mixing tank 10, and the bottom end of the discharge dragon 703 protrudes from the bottom end of the discharge tank 4 and is entirely located below the discharge tank 4, and the sealing plug 702 is movably engaged with the discharge port 8 to seal the discharge port 8. When the electric push rod 6 is in the shortest state, the mixing assembly 14 is located directly above the first mixing tank 9 and the second mixing tank 10, and the sealing plug 702 is not movably engaged with the discharge port 8, and the discharge dragon 703 is entirely located inside the discharge tank 4.
[0039] Embodiment: When the device is in the mixing and stirring state, the mixing assembly 14 is completely located inside the first mixing tank 9 and the second mixing tank 10, that is, the electric push rod 6 is in the longest state, and the sealing plug 702 at the bottom can completely seal the discharge port 8. At this time, the channel at the bottom of the discharge tank 4 is blocked, and the feed cannot be discharged through the discharge port 8. When the device is not in the mixing and stirring state, the electric push rod 6 is in the left end state, that is, the mixing assembly 14 rises to the highest point. At this time, the sealing plug 702 does not block the discharge port 8, and the feed can be discharged normally through the discharge port 8. At the same time, the electric push rod 6 can be driven to rotate, and the discharge dragon 703 at the bottom can be driven to rotate, so as to complete the uniform discharge of the feed and the feeding of the feed.
[0040] By utilizing the cooperation between the electric push rod 6, the discharge assembly 7 and the mixing assembly 14, when the device is in a mixing and stirring state, the bottom end of the discharge port 8 can be automatically sealed to prevent the feed from being discharged. When the device is not in a mixing and stirring state, the discharge port 8 is automatically opened, and the discharge dragon 703 can discharge the feed evenly. The whole process is completed automatically without manual control, and automatic feeding operation can be realized, thereby improving the overall mixing and feeding efficiency.
[0041] Working principle and usage process: The first feed port 11 corresponds to the first mixing tank 9, and the second feed port 12 corresponds to the second mixing tank 10. When mixing and stirring, the mixing components 14 are all located inside the first mixing tank 9 and the second mixing tank 10, and the device is in a mixing and stirring state. The first mixing tank 9 or the second mixing tank 10 can be selected as a mixing and stirring container. When the first mixing tank 9 is selected as the mixing container, different feeds can be injected into the first mixing tank 9 through the first feed port 11, and when the second mixing tank 10 is selected as the mixing container, different feeds can be injected into the second mixing tank 10 through the second feed port 12 to complete the feeding process; When the device is in a mixing state, the electric push rod 6 can be turned on and adjusted to the longest state, at which time the mixing assembly 14 is completely located inside the first mixing tank 9 and the second mixing tank 10, and when the device is not in a mixing state, the electric push rod 6 can be adjusted to the shortest state, at which time the mixing assembly 14 is located directly above the first mixing tank 9 and the second mixing tank 10, and the mixing assembly 14 does not contact the first mixing tank 9 or the second mixing tank 10; When the feed is located inside the second mixing tank 10, it is necessary to ensure that the mixing and stirring frame 145 is located directly above the second mixing tank 10, and the electric push rod 6 is turned on to make the mixing and stirring frame 145 descend to the inside of the second mixing tank 10. At the same time, the main motor 5 is turned on to drive the electric push rod 6 at the bottom to rotate, and at the same time drive the power frame 13 to rotate, and drive the multiple mounting frames 141 to rotate circumferentially. At this time, the multiple mixing and stirring frames 145 inside the second mixing tank 10 rotate circumferentially accordingly, and the feed inside the second mixing tank 10 only needs to be mixed and stirred; When the feed is located inside the first mixing tank 9, the electric push rod 6 can be controlled to shorten to the shortest state. When the mixing assembly 14 is not in contact with the first mixing tank 9 and the second mixing tank 10, the servo motor 142 can be turned on to control the rotating member 143 at the bottom to rotate 180 degrees. At this time, the scraper 144 and the mixing and stirring frame 145 at the bottom rotate accordingly. The mixing and stirring frame 145 on the right rotates to the left, and the scraper 144 on the left rotates to the right, completing the position change operation. At this time, the electric push rod 6 is continued to be controlled to extend until the mixing and stirring frame 145 enters the first mixing tank 9, and the mixing assembly 14 is continued to be driven to rotate, so that the mixing and stirring process of the feed inside the first mixing tank 9 can be completed. At the same time, when the mixing and stirring frame 145 is located inside the second mixing tank 10, the scraper 144 can be located inside the first mixing tank 9. When the mixing and stirring frame 145 rotates circumferentially, the scraper 144 can rotate relative to the first mixing tank 9. At this time, the scraper 144 can actively clean the inner side of the first mixing tank 9. When the mixing and stirring frame 145 is located inside the first mixing tank 9, the scraper 144 can be located inside the second mixing tank 10, and the interior of the first mixing tank 9 can be actively cleaned. Active cleaning and mixing and stirring are completed at the same time, shortening the waiting time; When the device is in the mixing and stirring state, the mixing assembly 14 is completely located inside the first mixing tank 9 and the second mixing tank 10, that is, the electric push rod 6 is in the longest state, and the sealing plug 702 at the bottom can completely seal the discharge port 8. At this time, the channel at the bottom of the discharge tank 4 is blocked, and the feed cannot be discharged through the discharge port 8. When the device is not in the mixing and stirring state, the electric push rod 6 is in the left end state, that is, the mixing assembly 14 rises to the highest point. At this time, the sealing plug 702 does not block the discharge port 8, and the feed can be discharged normally through the discharge port 8. At the same time, the electric push rod 6 can be driven to rotate, and the discharge dragon 703 at the bottom can be driven to rotate, so as to complete the uniform discharge of the feed and the feeding of the feed.
[0042] Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions and variations may be made to the embodiments without departing from the principles and spirit of the present invention, and that the scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. A feed mixing and feeding device, comprising a frame (1), characterized in that: The inner side surface of the frame (1) is fixedly sleeved with a feed tank (3), the bottom end of the feed tank (3) is fixedly connected to a first mixing tank (9), the inner side surface of the first mixing tank (9) is provided with a second mixing tank (10), the bottom end of the first mixing tank (9) is fixedly installed with a connecting piece (15), the first mixing tank (9) and the second mixing tank (10) are fixed to each other via the connecting piece (15), the bottom end of the first mixing tank (9) is fixedly connected to a discharge tank (4), the bottom end of the discharge tank (4) is provided with a discharge port (8), the internal movable clamping member of the discharge tank (4) is connected to the discharge tank (4) and the discharge port (8) is provided at the bottom end of the discharge tank (4). A discharge assembly (7) is provided, a first feed inlet (11) located just above a first mixing tank (9) is fixedly connected at a position close to the outer side surface of the top of the feed tank (3), a second feed inlet (12) located just above a second mixing tank (10) is fixedly connected at a position close to the inner side surface of the top of the feed tank (3), a mixing assembly (14) is movably connected inside the first mixing tank (9) and the second mixing tank (10), a power frame (13) is fixedly mounted at the top of the mixing assembly (14), and support legs (2) are fixedly mounted at the bottom of the frame (1) at equidistant axial intervals.
2. A feed mixing and feeding device according to claim 1, characterized in that: A main motor (5) is fixedly mounted in the middle of the top of the frame (1), an electric push rod (6) is fixedly mounted at the output end of the main motor (5), and the output end of the electric push rod (6) passes through the middle of the top of the feed tank (3) and is connected to the middle of the top of the power frame (13).
3. A feed mixing and feeding device according to claim 2, characterized in that: The mixing components (14) are three in number and are axially equidistantly mounted at the bottom end of the power frame (13). The mixing components (14) include a mounting frame (141), and the mounting frame (141) is connected to the bottom end of the power frame (13) at a position close to the outer side surface.
4. A feed mixing and feeding device according to claim 3, characterized in that: A servo motor (142) is fixedly mounted in the middle of the mounting frame (141); an output shaft of the servo motor (142) passes through the bottom end of the mounting frame (141) and is fixedly connected to a rotating member (143).
5. A feed mixing and feeding device according to claim 4, characterized in that: A scraper (144) and a mixing and stirring frame (145) are fixedly mounted on the left and right sides of the bottom end of the rotating member (143), respectively. When the scraper (144) is located inside the first mixing tank (9), the left and right sides of the scraper (144) are in contact with the inner side surface of the first mixing tank (9) and the outer side surface of the second mixing tank (10), respectively.
6. A feed mixing and feeding device according to claim 5, characterized in that: When the scraper (144) is located inside the second mixing tank (10), one side of the scraper (144) contacts the inner side surface of the second mixing tank (10), and the inner diameter of the first mixing tank (9) is smaller than the diameter of the mixing and stirring frame (145).
7. A feed mixing and feeding device according to claim 6, characterized in that: The discharge assembly (7) comprises an extension rod (701), the top end of the extension rod (701) is connected to the middle of the bottom end of the power frame (13), the bottom end of the extension rod (701) is fixedly connected to a sealing plug (702), and the bottom end of the sealing plug (702) is fixedly connected to a discharge dragon (703).
8. A feed mixing and feeding device according to claim 7, characterized in that: When the electric push rod (6) is in its longest state, the mixing assembly (14) is completely located inside the first mixing tank (9) and the second mixing tank (10), and the bottom end of the discharge dragon (703) protrudes from the bottom end of the discharge tank (4) and is completely located below the discharge tank (4), and the sealing plug (702) is movably engaged with the discharge port (8) to seal the discharge port (8).
9. A feed mixing and feeding device according to claim 8, characterized in that: When the electric push rod (6) is in the shortest state, the mixing assembly (14) is located directly above the first mixing tank (9) and the second mixing tank (10), the sealing plug (702) is not movably engaged with the discharge port (8), and the discharge dragon (703) is completely located inside the discharge tank (4).