High-speed mixer capable of rapidly feeding

By designing a high-speed mixer for fast feeding, the quantitative mechanism and premix mechanism are used to achieve quantitative proportioning and high-speed mixing of the drug liquid, the problem of slow material layering and delivery speed caused by batch input of traditional Chinese medicine liquid in veterinary medicine production is solved, and the mixing efficiency is improved.

CN223055527UActive Publication Date: 2025-07-04TONGCHENG JINRUN PHARMACEUTICAL CO LTD
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Patent Information

Application Number
CN202421576586.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-05
Publication Date
2025-07-04
Estimated Expiration
2034-07-05

AI Technical Summary

Technical Problem

In the prior art, different types of drug liquids are often put into batches during the production process of veterinary drugs, resulting in the layering of materials and the delivery speed being slow, reducing the mixing efficiency.

Method used

A high-speed mixer for fast feeding is designed to achieve quantitative proportioning and mixing of the drug liquid through the quantification mechanism and the premix mechanism, including a measuring cylinder, a pneumatic pressure system, a metering pump and a stirring rod. The pneumatic pressure cylinder and piston are used to control the flow of the drug liquid, and mix with a speed reduction motor to achieve high-speed mixing of the drug liquid.

Benefits of technology

The efficiency of mixing medicine liquids is improved, the problem of slow material layering and delivery speed is solved, and the rapid premixing of veterinary drugs is achieved.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a high-speed mixing machine capable of quickly feeding, and aims to solve the technical problems that in the prior art, different types of liquid medicine are often fed in batches, so that materials are layered, the feeding speed is low, and the mixing efficiency of veterinary drugs is reduced. The high-speed mixing machine comprises a mixing machine body, a feeding pipe is installed on the outer surface of the mixing machine body in a penetrating mode, an internal thread connector is installed at the right end of the feeding pipe, a medicine tank and a liquid tank are arranged on the right side of the mixing machine body, a batching box is arranged below the medicine tank and the liquid tank, and a quantifying mechanism is arranged below the medicine tank and the liquid tank. The proportioning solution is mixed with the liquid medicine guided into the proportioning box, and the stirring rod rotates to stir the proportioning solution and the liquid medicine to realize secondary premixing, so that layering of the liquid medicine is prevented, the transfer box and the feeding pipe enter the mixer body, rapid premixing and feeding of the high-speed mixer are realized, and the liquid medicine mixing efficiency is improved.
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Description

Technical Field

[0001] The utility model belongs to the technical field of veterinary medicine processing, and particularly relates to a high-speed mixer with rapid feeding. Background Art

[0002] Veterinary medicines are divided into powder and liquid. Veterinary medicine refers to substances used for preventing, treating, and diagnosing animal diseases or purposefully regulating the physiological functions of animals. According to the needs of different symptoms, people will add different ingredients to veterinary medicine. During the production of veterinary medicine, the liquid medicine and solution need to be fully mixed. During actual feeding, different types of liquid medicine are often fed in batches, which causes material stratification and slow feeding speed of the liquid medicine, reducing the mixing efficiency of veterinary medicine. Therefore, a new type of high-speed mixer with rapid feeding is designed to overcome the above technical defects. Summary of the Utility Model

[0003] (1) Technical Problems to be Solved

[0004] Aiming at the deficiencies of the prior art, the purpose of the utility model is to provide a high-speed mixer with rapid feeding, which aims to solve the technical problems that different types of liquid medicine are often fed in batches in the prior art, resulting in material stratification, slow feeding speed, and reduced mixing efficiency of veterinary medicine.

[0005] (2) Technical Solutions

[0006] To solve the above technical problems, the present utility model provides a high-speed mixer for rapid feeding. The high-speed mixer includes a mixer body. A feed pipe is installed through the outer surface of the mixer body, and an internal thread joint is installed at the right end of the feed pipe. A medicine tank and a liquid tank are arranged on the right side of the mixer body. A dosing box is arranged below the medicine tank and the liquid tank. A metering mechanism is arranged below the medicine tank and the liquid tank, and the metering mechanism is respectively installed through the medicine tank, the liquid tank and the dosing box. A premixing mechanism is installed inside the dosing box. A medicine extraction pump is installed through the bottom of the dosing box, and the output end of the medicine extraction pump is installed through a transfer box. An external thread joint is installed through the outer surface of the transfer box. An electromagnetic valve is installed on the outer surface of the external thread joint, and the internal thread joint is threadedly installed with the external thread joint. The bottoms of the medicine tank and the liquid tank are both conical. The metering mechanism includes a measuring cylinder. The measuring cylinder is arranged below the medicine tank, and a scale is provided on the outer surface of the measuring cylinder. The medicine tank is connected to the measuring cylinder through a medicine inlet pipe, and a one-way medicine inlet valve is installed inside the medicine inlet pipe. The measuring cylinder is connected to the dosing box through a medicine discharge pipe, and a one-way medicine discharge valve is installed inside the medicine discharge pipe. A silk pipe is installed through the outer surface of the end of the measuring cylinder away from the medicine discharge pipe, and an external thread pipe is threadedly connected inside the silk pipe. A telescopic rod is slidably installed inside the external thread pipe. A driven piston is slidably installed inside the measuring cylinder, and the telescopic rod is fixedly connected to the driven piston. An air cylinder is installed through the end of the external thread pipe away from the driven piston. A driving piston is slidably installed inside the air cylinder, and the telescopic rod is fixedly connected to the driving piston. An air pressure pipe is installed through the outer surface of the air cylinder, and an air suction and blowing pump is installed at the end of the air pressure pipe away from the air cylinder. A metering pump is installed on the top surface of the dosing box. The feeding end of the metering pump is connected to the liquid tank through a liquid inlet pipe, and a one-way liquid inlet valve is installed on the outer surface of the liquid inlet pipe. The discharging end of the metering pump is connected to the dosing box through a liquid discharge pipe. A strip-shaped spray head is fixedly connected to the inner wall of the dosing box, and the bottom end of the liquid discharge pipe is connected to the strip-shaped spray head. The premixing mechanism includes a reduction motor. A support hopper is installed inside the dosing box, and a blanking pipe is installed through the outer surface of the right end of the support hopper. A stirring rod is installed through the top surface of the dosing box, and the stirring rod is located inside the blanking pipe. A reduction motor is installed on the top surface of the dosing box, and the output end of the reduction motor is fixedly connected to the stirring rod.

[0007] When using the high-speed mixer of this technical solution, by grasping the external thread tube and rotating and moving it in the wire tube, the movement of the external thread tube pushes the driven piston to slide in the measuring cylinder and observe the scale for positioning. The dosage of the mixture is controlled by the moving distance of the driven piston in the measuring cylinder. By setting a metering pump, the dosage of the solution in the extraction liquid tank is controlled. When in use, the driven piston is initially in contact with the inner wall of the measuring cylinder. The air suction pump sucks air, and the suction force is conducted through the air pressure tube to the air pressure cylinder to suck the active piston and drive the telescopic rod and the driven piston to move towards the side close to the air pressure cylinder. The driven piston stops when it touches the external thread tube. The suction force in the driven piston is conducted through the medicine inlet tube to the medicine tank, and the liquid medicine in the medicine tank enters the measuring cylinder according to a fixed quantity through the one-way medicine inlet valve. Then the air suction pump blows air, and the air is conducted through the air pressure tube to the air pressure cylinder to push the active piston and drive the telescopic rod and the driven piston to move away from the side of the air pressure cylinder. The driven piston stops when it touches and is in contact with the inner wall of the measuring cylinder. The liquid medicine in multiple measuring cylinders is discharged through the one-way medicine discharge valve and enters the batching box through the discharge tube at the same time, realizing the quantitative extraction and discharge of the liquid medicine in multiple medicine tanks for mixing. At the same time, the metering pump is powered on and starts to quantitatively extract the mixed solution in the liquid tank through the liquid inlet tube, passes through the one-way liquid inlet valve, and enters the strip-shaped nozzle through the discharge tube and sprays out. The sprayed mixed solution is mixed with the liquid medicine introduced into the batching box and flows along the support hopper to the blanking tube and falls. The speed reduction motor is powered on and starts to drive the stirring rod to rotate to stir the mixed solution and the liquid medicine for secondary premixing. Then the internal thread joint and the medicine extraction pump are opened, and the medicine extraction pump extracts the premixed mixed solution and liquid medicine in the batching box, passes through the adapter box and the feed tube, and enters the mixer body, realizing the rapid premixing and feeding of the high-speed mixer, increasing the mixing efficiency of the liquid medicine, and solving the technical problems that traditional liquid medicines of different types are often put in batches, which causes material stratification and slow feeding speed, reducing the mixing efficiency of veterinary drugs.

[0008] Preferably, lifting rings are fixedly connected to the top surfaces of both the medicine tank and the liquid tank, and the number of lifting rings is at least four. Through the setting of the lifting rings, it is convenient for hoisting and installation.

[0009] Furthermore, viewing windows are installed through the outer surfaces of both the medicine tank and the liquid tank. Through the setting of the viewing windows, it is convenient to directly view the amount of liquid medicine or solution in the medicine tank and the liquid tank, and timely replenishment can be carried out.

[0010] Even further, manhole windows are installed through the outer surfaces of both the medicine tank and the liquid tank, and ladders are installed on the outer surfaces of both the medicine tank and the liquid tank. Through the setting of the manhole windows and the ladders, the staff can enter the medicine tank and the liquid tank for cleaning or maintenance.

[0011] Even further, the number of external thread joints is at least three. Through the setting of the external thread joints, multiple feed tubes can be connected, and multiple mixer bodies can be fed at the same time.

[0012] Furthermore, a bracket is installed outside the mixer body, and both the medicine tank and the liquid tank are installed inside the bracket by screws. Through the setting of the bracket, it is convenient to arrange and install the medicine tank and the liquid tank.

[0013] Furthermore, the bottoms of both the medicine tank and the liquid tank are conical. Through this conical setting, the liquid medicine or solution in the medicine tank and the liquid tank can be emptied, preventing the retention of the liquid medicine or solution in the medicine tank and the liquid tank, and facilitating cleaning.

[0014] (3) Beneficial effects

[0015] Compared with the prior art, the beneficial effects of the present utility model are as follows:

[0016] In the present utility model, by grasping the rotation and movement of the external thread tube in the wire tube, the movement of the external thread tube pushes the driven piston to slide in the measuring cylinder to observe the scale for positioning. The dosage of the proportion is controlled by the moving distance of the driven piston in the measuring cylinder. The metering pump is set to control the proportioning amount of the solution extracted from the liquid tank. When in use, in the initial state, the driven piston fits against the inner wall of the measuring cylinder. The air blowing and suction pump sucks air, and the suction force is conducted through the air pressure tube to the air pressure cylinder to suck the active piston, driving the telescopic rod and the driven piston to move towards the side close to the air pressure cylinder. The driven piston stops when it touches the external thread tube. The suction force in the driven piston is conducted through the medicine inlet tube to the medicine tank, and the liquid medicine in the medicine tank enters the measuring cylinder according to a fixed quantity through the one-way medicine inlet valve. Then, the air blowing and suction pump blows air, and the air is conducted through the air pressure tube to the air pressure cylinder to push the active piston, driving the telescopic rod and the driven piston to move towards the side away from the air pressure cylinder. The driven piston stops when it fits against and touches the inner wall of the measuring cylinder. The liquid medicine in multiple measuring cylinders is discharged through the one-way medicine discharge valve and the discharge tube and enters the batching box at the same time, realizing the quantitative extraction and discharge of the liquid medicine in multiple medicine tanks for proportioning. At the same time, the metering pump is powered on and starts to quantitatively extract the proportioning solution in the liquid tank through the liquid inlet tube, passes through the one-way liquid inlet valve, and enters the strip-shaped nozzle through the liquid discharge tube and sprays out. The sprayed proportioning solution is mixed with the liquid medicine introduced into the batching box and flows down along the support hopper to the blanking tube. The speed reduction motor is powered on and starts to drive the stirring rod to rotate to stir the mixture of the proportioning solution and the liquid medicine to achieve secondary premixing. Then, the internal thread joint and the medicine extraction pump are opened, and the medicine extraction pump extracts the premixed proportioning solution and liquid medicine in the batching box, passes through the transfer box and the feed tube, and enters the mixer body, realizing the premixing and feeding of the high-speed mixer, increasing the mixing efficiency of the liquid medicine, and solving the technical problems that traditional liquid medicines of different types are often put in batches, which causes material stratification, slow feeding speed, and reduces the mixing efficiency of veterinary drugs. Description of the drawings

[0017] Figure 1 is a three-dimensional structural schematic diagram of the high-speed mixer of the present utility model;

[0018] Figure 2 is a side view structural schematic diagram of the high-speed mixer of the present utility model;

[0019] Figure 3Schematic cross-sectional structure diagram of the measuring cylinder of the high-speed mixer of the present utility model;

[0020] Figure 4 Schematic cross-sectional structure diagram of the batching box of the high-speed mixer of the present utility model;

[0021] Figure 5 For the high-speed mixer of the present utility model Figure 1 Enlarged structure diagram at position A in;

[0022] Figure 6 For the high-speed mixer of the present utility model Figure 2 Enlarged structure diagram at position B in;

[0023] Figure 7 For the high-speed mixer of the present utility model Figure 4 Enlarged structure diagram at position C in.

[0024] The reference signs in the drawings are: 1, mixer body; 2, feed pipe; 3, bracket; 4, viewing window; 5, medicine tank; 6, lifting ring; 7, liquid tank; 8, metering pump; 9, reduction motor; 10, batching box; 11, medicine pumping pump; 12, adapter box; 13, external thread joint; 14, internal thread joint; 15, manhole window; 16, ladder; 17, medicine inlet pipe; 18, scale; 19, measuring cylinder; 20, pneumatic cylinder; 21, pneumatic pipe; 22, air blowing and suction pump; 23, external thread pipe; 24, wire pipe; 25, one-way medicine inlet valve; 26, driven piston; 27, telescopic rod; 28, driving piston; 29, one-way medicine discharge valve; 30, medicine discharge pipe; 31, support hopper; 32, liquid inlet pipe; 33, liquid discharge pipe; 34, stirring rod; 35, blanking pipe; 36, solenoid valve; 37, strip-shaped nozzle; 38, one-way liquid inlet valve. Specific embodiments

[0025] This specific embodiment is a high-speed mixer for rapid feeding, and its structural schematic diagram is as Figures 1-7As shown in the figure, the high-speed mixer includes a mixer body 1. A feed pipe 2 is installed through the outer surface of the mixer body 1, and an internal thread joint 14 is installed at the right end of the feed pipe 2. A medicine tank 5 and a liquid tank 7 are arranged on the right side of the mixer body 1. A dosing box 10 is arranged below the medicine tank 5 and the liquid tank 7. A dosing mechanism is arranged below the medicine tank 5 and the liquid tank 7, and the dosing mechanism is respectively installed through the medicine tank 5, the liquid tank 7 and the dosing box 10. A premixing mechanism is installed inside the dosing box 10. A medicine pumping pump 11 is installed through the bottom of the dosing box 10, and the output end of the medicine pumping pump 11 is installed through a transfer box 12. An external thread joint 13 is installed through the outer surface of the transfer box 12. An electromagnetic valve 36 is installed on the outer surface of the external thread joint 13, and the internal thread joint 14 is threadedly installed with the external thread joint 13. The bottom ends of the medicine tank 5 and the liquid tank 7 are both conical. The dosing mechanism includes a measuring cylinder 19. The measuring cylinder 19 is arranged below the medicine tank 5, and a scale 18 is arranged on the outer surface of the measuring cylinder 19. The medicine tank 5 is communicated with the measuring cylinder 19 through a medicine inlet pipe 17, and a one-way medicine inlet valve 25 is installed inside the medicine inlet pipe 17. The measuring cylinder 19 is communicated with the dosing box 10 through a medicine discharge pipe 30, and a one-way medicine discharge valve 29 is installed inside the medicine discharge pipe 30. A silk pipe 24 is installed through the outer surface of the measuring cylinder 19 at one end far from the medicine discharge pipe 30, and an external thread pipe 23 is threadedly connected inside the silk pipe 24. A telescopic rod 27 is slidably installed inside the external thread pipe 23. A driven piston 26 is slidably installed inside the measuring cylinder 19, and the telescopic rod 27 is fixedly connected with the driven piston 26. An air cylinder 20 is installed through one end of the external thread pipe 23 far from the driven piston 26. A driving piston 28 is slidably installed inside the air cylinder 20, and the telescopic rod 27 is fixedly connected with the driving piston 28. An air pressure pipe 21 is installed through the outer surface of the air cylinder 20, and an air suction and blowing pump 22 is installed at one end of the air pressure pipe 21 far from the air cylinder 20. A metering pump 8 is installed on the top surface of the dosing box 10. The feeding end of the metering pump 8 is communicated with the liquid tank 7 through a liquid inlet pipe 32, and a one-way liquid inlet valve 38 is installed on the outer surface of the liquid inlet pipe 32. The discharging end of the metering pump 8 is communicated with the dosing box 10 through a liquid discharge pipe 33. A strip-shaped spray head 37 is fixedly connected to the inner wall of the dosing box 10, and the bottom end of the liquid discharge pipe 33 is communicated with the strip-shaped spray head 37. The premixing mechanism includes a reduction motor 9. A support hopper 31 is installed inside the dosing box 10, and a blanking pipe 35 is installed through the outer surface of the right end of the support hopper 31. A stirring rod 34 is installed through the top surface of the dosing box 10, and the stirring rod 34 is located inside the blanking pipe 35. A reduction motor 9 is installed on the top surface of the dosing box 10, and the output end of the reduction motor 9 is fixedly connected with the stirring rod 34.

[0026] Among them, lifting rings 6 are fixedly connected to the top surfaces of both the medicine tank 5 and the liquid tank 7, and the number of lifting rings 6 is at least four. Through the arrangement of the lifting rings 6, it is convenient for hoisting and installation. Visual windows 4 are installed through the outer surfaces of both the medicine tank 5 and the liquid tank 7. Through the arrangement of the visual windows 4, it is convenient to directly view the amount of liquid medicine or solution in the medicine tank 5 and the liquid tank 7, and replenishment can be carried out in a timely manner. Manhole windows 15 are installed through the outer surfaces of the medicine tank 5 and the liquid tank 7, and ladders 16 are installed on the outer surfaces of both the medicine tank 5 and the liquid tank 7. Through the arrangement of the manhole windows 15 and the ladders 16, the staff can enter the medicine tank 5 and the liquid tank 7 for cleaning or maintenance. The number of external thread joints 13 is at least three. Through the arrangement of the external thread joints 13, multiple feed pipes 2 can be connected, and multiple mixer bodies 1 can be fed simultaneously. A support 3 is installed outside the mixer body 1, and both the medicine tank 5 and the liquid tank 7 are installed inside the support 3 by screws. Through the arrangement of the support 3, it is convenient to arrange and install the medicine tank 5 and the liquid tank 7.

[0027] In addition, the bottoms of both the medicine tank 5 and the liquid tank 7 are conical. Through the conical arrangement, the liquid medicine or solution in the medicine tank 5 and the liquid tank 7 can be emptied, preventing the liquid medicine or solution in the medicine tank 5 and the liquid tank 7 from remaining, and facilitating cleaning.

[0028] Working principle: When using the high-speed mixer of this technical solution, by grasping the external thread tube 23 and rotating and moving it in the wire tube 24, the movement of the external thread tube 23 pushes the driven piston 26 to slide in the measuring cylinder 19 and observe the scale 18 for positioning. The dosage of the proportioning medicine is controlled by the moving distance of the driven piston 26 in the measuring cylinder 19. The metering pump 8 is set to control the proportioning amount of the solution in the extraction liquid tank 7. When in use, the driven piston 26 is in contact with the inner wall of the measuring cylinder 19 in the initial state. The air blowing and suction pump 22 sucks air, and the suction force is conducted through the air pressure tube 21 to the air pressure cylinder 20 to suck the driving piston 28 and drive the telescopic rod 27 and the driven piston 26 to move towards the side close to the air pressure cylinder 20. The driven piston 26 abuts against the external thread tube 23 and stops. The suction force in the driven piston 26 is conducted through the medicine inlet tube 17 to the medicine tank 5, and the liquid medicine in the medicine tank 5 enters the measuring cylinder 19 according to a fixed quantity through the one-way medicine inlet valve 25. Then the air blowing and suction pump 22 blows air, and the air is conducted through the air pressure tube 21 to the air pressure cylinder 20 to push the driving piston 28 and drive the telescopic rod 27 and the driven piston 26 to move towards the side away from the air pressure cylinder 20. The driven piston 26 abuts against and stops when it comes into contact with the inner wall of the measuring cylinder 19. The liquid medicine in multiple measuring cylinders 19 is discharged through the one-way medicine discharge valve 29 and enters the batching box 10 through the medicine discharge tube 30 at the same time, realizing the quantitative extraction and discharge of the liquid medicine in multiple medicine tanks 5 for proportioning. At the same time, the metering pump 8 is powered on and starts to quantitatively extract the proportioning solution in the extraction liquid tank 7 through the liquid inlet tube 32 through the one-way liquid inlet valve 38 and discharges it into the strip-shaped nozzle 37 through the liquid discharge tube 33 for spraying. The sprayed proportioning solution is mixed with the liquid medicine introduced into the batching box 10 and flows down along the support hopper 31 to the blanking tube 35. The reduction motor 9 is powered on and starts to drive the stirring rod 34 to rotate to stir the mixture of the proportioning solution and the liquid medicine to realize secondary premixing. Then the internal thread joint 14 and the medicine extraction pump 11 are opened, and the medicine extraction pump 11 extracts the premixed proportioning solution and liquid medicine in the batching box 10 and extracts them into the mixer body 1 through the adapter box 12 and the feed tube 2, realizing the rapid premixing and feeding of the high-speed mixer, increasing the mixing efficiency of the liquid medicine, and solving the technical problems that traditional liquid medicines of different types are often put in batches, which causes material stratification, slow feeding speed, and reduces the mixing efficiency of veterinary drugs.

[0029] All technical features in this embodiment can be freely combined according to actual needs.

[0030] The above embodiments are the preferred implementation solutions of the present utility model. In addition, the present utility model can also be implemented in other ways. Any obvious replacement without departing from the concept of this technical solution is within the protection scope of the present utility model.

Claims

1. A high-speed mixer for rapid feeding, the high-speed mixer comprising a mixer body (1), characterized in that: The outer surface of the mixer body (1) is penetrated and installed with a feed pipe (2), and an internal thread joint (14) is installed at the right end of the feed pipe (2). A medicine tank (5) and a liquid tank (7) are arranged on the right side of the mixer body (1). A dosing box (10) is arranged below the medicine tank (5) and the liquid tank (7). A dosing mechanism is arranged below the medicine tank (5) and the liquid tank (7), and the dosing mechanism is respectively penetrated and installed with the medicine tank (5), the liquid tank (7) and the dosing box (10). A premixing mechanism is installed inside the dosing box (10). A medicine pumping pump (11) is penetrated and installed below the dosing box (10), and the output end of the medicine pumping pump (11) is penetrated and installed with an adapter box (12). An external thread joint (13) is penetrated and installed on the outer surface of the adapter box (12). An electromagnetic valve (36) is installed on the outer surface of the external thread joint (13), and the internal thread joint (14) is threadedly installed with the external thread joint (13).

2. The high-speed mixer for rapid feeding according to claim 1, characterized in that: Lifting rings (6) are fixedly connected to the top surfaces of the medicine tank (5) and the liquid tank (7), and the number of the lifting rings (6) is at least four.

3. The high-speed mixer for rapid feeding according to claim 2, characterized in that: Visual windows (4) are penetrated and installed on the outer surfaces of the medicine tank (5) and the liquid tank (7).

4. The high-speed mixer for rapid feeding according to claim 3, characterized in that: Manhole windows (15) are penetrated and installed on the outer surfaces of the medicine tank (5) and the liquid tank (7), and ladders (16) are installed on the outer surfaces of the medicine tank (5) and the liquid tank (7).

5. A high-speed mixer for rapid feeding according to claim 4, characterized in that: The number of the external thread joints (13) is at least three.

6. The high-speed mixer for rapid feeding according to claim 5, wherein: A bracket (3) is installed outside the mixer body (1), and the medicine tank (5) and the liquid tank (7) are both installed inside the bracket (3) by screws.

7. The high-speed mixer for rapid feeding according to claim 6, characterized in that: The bottom ends of the medicine tank (5) and the liquid tank (7) are both conical.

8. A high-speed mixer for rapid feeding according to claim 7, characterized in that: The metering mechanism includes a graduated cylinder (19). The graduated cylinder (19) is arranged below the medicine tank (5), and a scale (18) is provided on the outer surface of the graduated cylinder (19). The medicine tank (5) is communicated with the graduated cylinder (19) through a medicine inlet pipe (17), and a one-way medicine inlet valve (25) is installed inside the medicine inlet pipe (17). The graduated cylinder (19) is communicated with the batching box (10) through a medicine discharge pipe (30), and a one-way medicine discharge valve (29) is installed inside the medicine discharge pipe (30). A silk pipe (24) is embedded and installed through the outer surface of one end of the graduated cylinder (19) away from the medicine discharge pipe (30), and an external thread pipe (23) is threadedly connected inside the silk pipe (24). A telescopic rod (27) is slidably installed inside the external thread pipe (23). A driven piston (26) is slidably installed inside the graduated cylinder (19), and the telescopic rod (27) is fixedly connected to the driven piston (26). One end of the external thread pipe (23) away from the driven piston (26) is installed through an air cylinder (20). A driving piston (28) is slidably installed inside the air cylinder (20), and the telescopic rod (27) is fixedly connected to the driving piston (28). An air pressure pipe (21) is installed through the outer surface of the air cylinder (20), and one end of the air pressure pipe (21) away from the air cylinder (20) is installed with a blowing and suction pump (22). A metering pump (8) is installed on the top surface of the batching box (10). The feeding end of the metering pump (8) is communicated with a liquid tank (7) through a liquid inlet pipe (32), and a one-way liquid inlet valve (38) is installed on the outer surface of the liquid inlet pipe (32). The discharging end of the metering pump (8) is communicated with the batching box (10) through a liquid discharge pipe (33).

9. The high-speed mixer for rapid feeding according to claim 8, characterized in that: A strip-shaped spray head (37) is fixedly connected to the inner wall of the batching box (10). The bottom end of the liquid discharge pipe (33) is communicated with the strip-shaped spray head (37).

10. A high-speed mixer for rapid feeding according to claim 9, characterized in that: The premixing mechanism includes a reduction motor (9). A support hopper (31) is installed inside the batching box (10), and a blanking pipe (35) is installed through the outer surface of the right end of the support hopper (31). A stirring rod (34) is installed through the top surface of the batching box (10), and the stirring rod (34) is located inside the blanking pipe (35). A reduction motor (9) is installed on the top surface of the batching box (10), and the output end of the reduction motor (9) is fixedly connected to the stirring rod (34).