Feed additive mixing machine
By introducing a rotating and sampling mechanism into the feed additive mixer, the problem of inconvenient sampling in the existing technology is solved, enabling convenient sampling and testing of the mixed raw materials and improving the practicality of use.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-12
- Publication Date
- 2026-04-14
AI Technical Summary
Existing mixing machines are inconvenient for sampling and testing after mixing liquid feed additives, resulting in inconvenience and poor practicality.
A feed additive mixer including a rotating mechanism and a sampling mechanism was designed. The rotating mechanism promotes the mixing of raw materials, and the sampling mechanism enables convenient sampling and testing of the mixed raw materials. The mixer includes a swinging mechanism, a sampling mechanism, a delivery pump, and a moving mechanism to ensure that the sampling tube can take samples at any position inside the mixing cylinder.
This technology enables convenient sampling and testing after the raw materials are mixed, improving ease of use and practicality, and ensuring the efficiency of quality testing of the mixed raw materials.
Smart Images

Figure CN224113812U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of feed additive production, and in particular to a feed additive mixer. Background Technology
[0002] Liquid feed additives are additives used in feed to improve livestock growth efficiency and immunity, and are widely used in the breeding industry. The production process of liquid feed additives requires various substances to be added to a mixer for stirring. Existing mixers, such as the utility model patent with patent application number 202221467742.1, disclose a mixing device mainly composed of a tank and a stirring shaft. In use, various substances to be mixed are added to the tank, and then stirred by the stirring shaft. However, applying this to the mixing of feed additives presents the following problems: after mixing, the feed additives need to be sampled and tested. Only after passing the test can the feed additives be discharged and collected in the tank. The aforementioned prior art device is inconvenient for sampling the stirred liquid, making it inconvenient to use and impractical. Utility Model Content
[0003] To solve the above-mentioned technical problems, this utility model provides a feed additive mixer that allows for sampling of raw materials after mixing, facilitating the sampling and testing of mixed raw materials by staff, and is easy to use and highly practical.
[0004] This utility model discloses a feed additive mixer, comprising a base plate, a mixing drum, and a sealing cover. The mixing drum has a chamber, and a discharge port communicating with the chamber is located at the lower part of the mixing drum. A discharge pipe is installed on the discharge port, and a valve is installed on the discharge pipe. An opening communicating with the chamber is located at the upper end of the mixing drum, and the sealing cover is bolted to the outside of the opening. The mixer also includes a rotating mechanism and a sampling mechanism. The mixing drum is mounted on the rotating mechanism, which rotates the mixing drum. The sampling mechanism is mounted on the base plate and has a sampling function. When producing liquid feed additives, the raw materials are first added to the chamber of the mixing drum. The mixing drum is then rotated by a rotating mechanism, which promotes the mixing of various raw materials within the mixing chamber. Once the mixing is complete, the drum is stopped from rotating, and the sealing cap is rotated to the top of the drum. The cap is then opened, and a sampling mechanism is used to sample the liquid within the mixing chamber. The sampled liquid is then tested to determine if it meets the required standards. This method of sampling after mixing facilitates convenient testing of the mixed materials, making it easy to use and highly practical.
[0005] Preferably, the rotating mechanism includes a swing mechanism, two sets of rotating shafts, a fixed frame, and a stepper motor. The two sets of rotating shafts are fixedly installed on the left and right sides of the mixing cylinder, respectively. The two sets of rotating shafts are coaxial and rotatably mounted on the fixed frame. The stepper motor is fixedly mounted on the fixed frame, and the output end of the stepper motor is connected to one of the rotating shafts. The fixed frame is mounted on the swing mechanism, which is used to swing the fixed frame left and right. When various raw materials are added into the chamber of the mixing cylinder, the stepper motor is turned on. The stepper motor rotates the mixing cylinder through the rotating shaft. During the rotation of the mixing cylinder, the movement of various raw materials in the mixing cylinder chamber is promoted, and the mixing between various liquid raw materials is promoted.
[0006] Preferably, the oscillating mechanism includes two sets of rotating shafts, two sets of support plates, and a rotary reciprocating motor. The two sets of rotating shafts are respectively fixedly installed on the front and rear parts of the fixed frame, and the two sets of rotating shafts are coaxial. The two sets of rotating shafts are respectively rotatably installed on the two sets of support plates, and the two sets of support plates are fixedly installed on the upper part of the base plate. The rotary reciprocating motor is fixedly installed on the support plate, and the output end of the rotary reciprocating motor is connected to one of the sets of rotating shafts. When mixing the raw materials in the mixing cylinder chamber, the rotary reciprocating motor is turned on, and the rotary reciprocating motor drives the rotating shaft to rotate periodically back and forth, thereby causing the fixed frame to oscillate left and right. The fixed frame drives the rotating shaft and the mixing cylinder to oscillate left and right, which promotes the left and right flow of liquid raw materials in the mixing cylinder chamber and further promotes the mixing of raw materials in the mixing cylinder chamber.
[0007] Preferably, the sampling mechanism includes a delivery pump, a delivery hose, a sampling tube, a discharge tube, and a moving mechanism. The output end of the delivery pump is provided with a discharge tube, and the input end of the delivery pump is connected to the sampling tube through the delivery hose. The sampling tube is located above the mixing cylinder and is mounted on the moving mechanism, which is used to move the sampling tube. When it is necessary to sample the liquid in the mixing cylinder chamber, the sealing cover is opened, and then the sampling tube is moved through the opening at the top of the mixing cylinder into the mixing cylinder chamber through the moving mechanism, so that the sampling tube is immersed in the liquid in the mixing cylinder chamber. Then, the delivery pump is turned on, so that part of the liquid in the mixing cylinder chamber is discharged and collected in sequence through the sampling tube, the delivery hose, the delivery pump, and the discharge tube. Then, the collected liquid can be tested. This facilitates the sampling of the liquid in the mixing cylinder chamber.
[0008] Preferably, the moving mechanism includes a hoisting frame, an electric slide rail, a sliding block, and a lifting mechanism. The electric slide rail is fixedly mounted on the hoisting frame, and the sliding block is mounted on the electric slide rail. The electric slide rail is used to move the sliding block left and right. The sampling tube is mounted on the lower end of the sliding block via the lifting mechanism, which has a lifting function. The hoisting frame is fixedly hoisted on a support in the workshop. When sampling the liquid in the mixing chamber, the electric slide rail is opened, and the electric slide rail drives the sliding block to move left and right. The sliding block drives the lifting mechanism and the sampling tube to move left and right until the sampling tube moves to a suitable sampling position in the left and right direction. Then, the sampling tube is lowered into the mixing chamber for sampling. Since the position of the sampling tube in the left and right direction is adjustable, it can sample at any position in the left and right direction within the mixing chamber, improving convenience.
[0009] Preferably, the lifting mechanism includes a hydraulic cylinder and a lifting rod. The hydraulic cylinder is fixedly installed at the lower end of the sliding block, and the lifting rod is provided at the output end of the hydraulic cylinder. The sampling tube is fixedly installed at the lower end of the lifting rod. When adjusting the height of the sampling tube, the hydraulic cylinder is opened, and the hydraulic cylinder adjusts the height of the sampling tube through the lifting rod. This facilitates the adjustment of the sampling tube height and improves convenience.
[0010] Preferably, a thermometer is provided on the mixing cylinder; this arrangement facilitates the monitoring of the temperature inside the mixing cylinder chamber and improves convenience.
[0011] Compared with the prior art, the beneficial effects of this utility model are as follows: after the raw materials are mixed, the raw materials can be sampled, which facilitates the sampling and testing of the mixed raw materials by the staff. It is convenient to use and highly practical. Attached Figure Description
[0012] Figure 1 This is a schematic diagram of the first isometric structure of this utility model;
[0013] Figure 2 This is a schematic diagram of the second isometric structure of this utility model;
[0014] Figure 3 It is a structural diagram of the mixing cylinder, stepper motor, and support plate, etc.
[0015] Figure 4 This is a schematic diagram of the sampling mechanism;
[0016] Figure 5 This is a schematic diagram of the main structure of this utility model.
[0017] The following are labels in the attached diagram: 1. Base plate; 2. Mixing cylinder; 3. Sealing cover; 4. Rotating shaft; 5. Fixing frame; 6. Stepper motor; 7. Rotating shaft; 8. Support plate; 9. Rotary reciprocating motor; 10. Delivery pump; 11. Delivery hose; 12. Sampling tube; 13. Discharge tube; 14. Lifting frame; 15. Electric slide rail; 16. Sliding block; 17. Hydraulic cylinder; 18. Lifting rod. Detailed Implementation
[0018] To facilitate understanding of this utility model, a more complete description will be given below with reference to the accompanying drawings. This utility model can be implemented in many different forms and is not limited to the embodiments described herein. Rather, these embodiments are provided to make the disclosure of this utility model more thorough and complete. Example
[0019] like Figures 1 to 5 The feed additive mixer of this utility model includes a base plate 1, a mixing cylinder 2, a sealing cover 3, a rotating mechanism, and a sampling mechanism. The mixing cylinder 2 has a chamber, and a discharge port communicating with the chamber is located at the lower part of the mixing cylinder 2. A discharge pipe is installed on the discharge port, and a valve is installed on the discharge pipe. An opening communicating with the chamber is located at the upper end of the mixing cylinder 2. The sealing cover 3 is bolted to the outside of the opening. The mixing cylinder 2 is mounted on the rotating mechanism, which rotates the mixing cylinder 2. The sampling mechanism is mounted on the base plate 1 and has a sampling function. When producing liquid feed additives, the raw materials are first added to the chamber of the mixing cylinder 2. The mixing cylinder 2 is then rotated by a rotating mechanism. During the rotation, the various raw materials in the mixing cylinder 2 chamber are mixed. After the various raw materials are mixed in the mixing cylinder 2, the rotation of the mixing cylinder 2 is stopped, and the sealing cover 3 on the mixing cylinder 2 is rotated to the top of the mixing cylinder 2. Then the sealing cover 3 is opened, and the liquid in the mixing cylinder 2 chamber is sampled by a sampling mechanism. Then the staff tests the sampled liquid to see if it is qualified. After the raw materials are mixed, the raw materials can be sampled, which is convenient for the staff to sample and test the mixed raw materials. It is easy to use and highly practical.
[0020] like Figure 1 and Figure 3The rotating mechanism includes a swing mechanism, two sets of rotating shafts 4, a fixed frame 5, and a stepper motor 6. The two sets of rotating shafts 4 are fixedly installed on the left and right sides of the mixing cylinder 2, respectively. The two sets of rotating shafts 4 are coaxial and rotatably mounted on the fixed frame 5. The stepper motor 6 is fixedly mounted on the fixed frame 5, and the output end of the stepper motor 6 is connected to one of the sets of rotating shafts 4. The fixed frame 5 is mounted on the swing mechanism, which is used to swing the fixed frame 5 left and right. When various raw materials are added into the chamber of the mixing cylinder 2, the stepper motor 6 is turned on. The stepper motor 6 rotates the mixing cylinder 2 through the rotating shafts 4. During the rotation of the mixing cylinder 2, the movement of various raw materials in the chamber of the mixing cylinder 2 is promoted, which promotes the mixing between various liquid raw materials.
[0021] like Figure 3 The oscillating mechanism includes two sets of rotating shafts 7, two sets of support plates 8, and a rotary reciprocating motor 9. The two sets of rotating shafts 7 are fixedly installed at the front and rear of the fixed frame 5, respectively, and are coaxial. The two sets of rotating shafts 7 are rotatably installed on the two sets of support plates 8, and both sets of support plates 8 are fixedly installed on the upper end of the base plate 1. The rotary reciprocating motor 9 is fixedly installed on the support plates 8, and the output end of the rotary reciprocating motor 9 is connected to one of the sets of rotating shafts 7. When mixing the raw materials in the mixing cylinder 2 chamber, the rotary reciprocating motor 9 is turned on, and the rotary reciprocating motor 9 drives the rotating shafts 7 to rotate periodically back and forth, thereby causing the fixed frame 5 to oscillate left and right. The fixed frame 5 drives the rotating shaft 4 and the mixing cylinder 2 to oscillate left and right, which promotes the left and right flow of liquid raw materials in the mixing cylinder 2 chamber and further promotes the mixing of raw materials in the mixing cylinder 2 chamber.
[0022] like Figure 1 and Figure 4 The sampling mechanism includes a delivery pump 10, a delivery hose 11, a sampling tube 12, a discharge tube 13, and a moving mechanism. The output end of the delivery pump 10 is provided with a discharge tube 13, and the input end of the delivery pump 10 is connected to the sampling tube 12 through the delivery hose 11. The sampling tube 12 is located above the mixing cylinder 2 and is mounted on the moving mechanism, which is used to move the sampling tube 12. When it is necessary to sample the liquid in the chamber of the mixing cylinder 2, the sealing cover 3 is opened, and then the sampling tube 12 is moved into the chamber of the mixing cylinder 2 through the opening at the upper end of the mixing cylinder 2 by the moving mechanism, so that the sampling tube 12 is immersed in the liquid in the chamber of the mixing cylinder 2. Then the delivery pump 10 is turned on, so that part of the liquid in the chamber of the mixing cylinder 2 is discharged and collected in sequence through the sampling tube 12, the delivery hose 11, the delivery pump 10, and the discharge tube 13. Then the collected liquid can be tested. This facilitates the sampling of the liquid in the chamber of the mixing cylinder 2.
[0023] like Figure 4The moving mechanism includes a hoisting frame 14, an electric slide rail 15, a sliding block 16, and a lifting mechanism. The electric slide rail 15 is fixedly installed on the hoisting frame 14, and the sliding block 16 is installed on the electric slide rail 15. The electric slide rail 15 is used to move the sliding block 16 left and right. The sampling tube 12 is installed at the lower end of the sliding block 16 through the lifting mechanism, which has a lifting function. The hoisting frame 14 is fixedly hoisted on the support in the workshop. When sampling the liquid in the mixing cylinder 2 chamber, the electric slide rail 15 is opened, and the electric slide rail 15 drives the sliding block 16 to move left and right. The sliding block 16 drives the lifting mechanism and the sampling tube 12 to move left and right until the sampling tube 12 moves to a suitable sampling position in the left and right direction. Then, the sampling tube 12 is lowered into the mixing cylinder 2 chamber for sampling. Since the position of the sampling tube 12 in the left and right direction can be adjusted, it can sample at any position in the left and right direction in the mixing cylinder 2 chamber, which improves convenience.
[0024] like Figure 4 The lifting mechanism includes a hydraulic cylinder 17 and a lifting rod 18. The hydraulic cylinder 17 is fixedly installed at the lower end of the sliding block 16, and the lifting rod 18 is provided at the output end of the hydraulic cylinder 17. The sampling tube 12 is fixedly installed at the lower end of the lifting rod 18. When adjusting the height of the sampling tube 12, the hydraulic cylinder 17 is opened, and the hydraulic cylinder 17 adjusts the height of the sampling tube 12 through the lifting rod 18. This facilitates the adjustment of the height of the sampling tube 12 and improves convenience. Example
[0025] Based on Example 1, a thermometer is installed on the mixing cylinder 2; this feature facilitates the monitoring of the temperature inside the mixing cylinder 2 and improves convenience.
[0026] The stepper motor 6, rotary reciprocating motor 9, conveying pump 10, electric slide rail 15, and hydraulic cylinder 17 of the feed additive mixer of this utility model are all purchased from the market. Technical personnel in this industry only need to install and operate them according to the accompanying instruction manual, without requiring any creative work from those skilled in the art.
[0027] The above description is only a preferred embodiment of the present utility model. It should be noted that for those skilled in the art, several improvements and modifications can be made without departing from the technical principles of the present utility model, and these improvements and modifications should also be considered within the protection scope of the present utility model.
Claims
1. A feed additive mixer, comprising a base plate (1), a mixing cylinder (2), and a sealing cover (3), wherein the mixing cylinder (2) has a chamber, the lower part of the mixing cylinder (2) has a discharge port communicating with the chamber, a discharge pipe is provided on the discharge port, a valve is provided on the discharge pipe, the upper end of the mixing cylinder (2) has an opening communicating with the chamber, and the sealing cover (3) is installed on the outside of the opening by bolts; characterized in that, It also includes a rotating mechanism and a sampling mechanism. The mixing cylinder (2) is mounted on the rotating mechanism, which is used to rotate the mixing cylinder (2). The sampling mechanism is mounted on the base plate (1) and has the function of sampling.
2. The feed additive mixer as described in claim 1, characterized in that, The rotating mechanism includes a swing mechanism, two sets of rotating shafts (4), a fixed frame (5), and a stepper motor (6). The two sets of rotating shafts (4) are fixedly installed on the left and right sides of the mixing cylinder (2), respectively. The two sets of rotating shafts (4) are coaxial and both sets of rotating shafts (4) are rotatably installed on the fixed frame (5). The stepper motor (6) is fixedly installed on the fixed frame (5). The output end of the stepper motor (6) is connected to one of the sets of rotating shafts (4). The fixed frame (5) is installed on the swing mechanism, which is used to swing the fixed frame (5) left and right.
3. A feed additive mixer as described in claim 2, characterized in that, The swing mechanism includes two sets of rotating shafts (7), two sets of support plates (8), and a rotary reciprocating motor (9). The two sets of rotating shafts (7) are fixedly installed on the front and rear parts of the fixed frame (5), respectively. The two sets of rotating shafts (7) are coaxial and are rotatably installed on the two sets of support plates (8). The two sets of support plates (8) are fixedly installed on the upper end of the base plate (1). The rotary reciprocating motor (9) is fixedly installed on the support plate (8), and the output end of the rotary reciprocating motor (9) is connected to one of the sets of rotating shafts (7).
4. A feed additive mixer as described in claim 1, characterized in that, The sampling mechanism includes a delivery pump (10), a delivery hose (11), a sampling tube (12), a discharge tube (13), and a moving mechanism. The output end of the delivery pump (10) is provided with a discharge tube (13). The input end of the delivery pump (10) is connected to the sampling tube (12) through the delivery hose (11). The sampling tube (12) is located above the mixing cylinder (2). The sampling tube (12) is mounted on the moving mechanism, which is used to move the sampling tube (12).
5. A feed additive mixer as described in claim 4, characterized in that, The moving mechanism includes a hoisting frame (14), an electric slide rail (15), a sliding block (16), and a lifting mechanism. The electric slide rail (15) is fixedly installed on the hoisting frame (14), and the sliding block (16) is installed on the electric slide rail (15). The electric slide rail (15) is used to move the sliding block (16) left and right. The sampling tube (12) is installed at the lower end of the sliding block (16) through the lifting mechanism, which has the function of lifting.
6. A feed additive mixer as described in claim 5, characterized in that, The lifting mechanism includes a hydraulic cylinder (17) and a lifting rod (18). The hydraulic cylinder (17) is fixedly installed at the lower end of the sliding block (16). The output end of the hydraulic cylinder (17) is provided with a lifting rod (18). The sampling tube (12) is fixedly installed at the lower end of the lifting rod (18).
7. A feed additive mixer as described in claim 1, characterized in that, A thermometer is installed on the mixing cylinder (2).
Citation Information
Patent Citations
Mixing and stirring device
CN218422315U