Full-automatic dosing equipment
By using a floating platform and connecting frame to raise and lower the support plate, and by adjusting the extension distance of the floating platform in conjunction with the limit nut and connecting frame, the problem of drug spillage in fully automatic dosing equipment when there is a large amount of residual drug or when the detection is interfered with is solved, thus achieving precise dosing and mixing and improving the effectiveness of the equipment.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-28
- Publication Date
- 2026-04-03
AI Technical Summary
Existing fully automatic dosing equipment is prone to drug overflow when there is a large amount of residual drug inside the dosing tank or when the detection is interfered with, which affects the effectiveness of the equipment.
A fully automatic dosing device was designed. The floating platform and connecting frame drive the support plate and connecting plate to rise and fall. The limit nut and connecting frame adjust the insertion distance of the floating platform inside the medicine tank. The support pipe and hose assist in dosing. The hydraulic push rod and stirring plate are combined to achieve precise dosing and mixing.
This technology prevents drug spillage when there is a large amount of residual drug inside the dosing tank or when detection is interfered with, ensuring precise control of the dosing amount and mixing effect, and improving the efficiency of the equipment.
Smart Images

Figure CN224071919U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of automatic dosing, and in particular to a fully automatic dosing device. Background Technology
[0002] In industries such as water treatment, chemical production, pharmaceuticals, and food, it is necessary to add chemicals in a timely and quantitative manner to control the efficiency of reactions and processes and improve the quality of the final products. Therefore, fully automatic dosing equipment is often used to add chemicals to raw materials for reaction control. Fully automatic dosing equipment uses automatic control systems and detection instruments to control the dosing.
[0003] Most existing fully automatic dosing equipment is equipped with automatic control systems and intelligent control devices. During use, the dosing is controlled by electrical control. During the mixing process, the amount of dosing depends on the set control. When there is a large amount of residual drug in the dosing tank or when the detection is interfered with, the drug in the dosing tank is prone to overflow, which leads to a decrease in the effectiveness of the fully automatic dosing equipment.
[0004] Therefore, to address the problem that existing fully automatic dosing equipment, which controls the dosing amount, is prone to overflowing when there is a large amount of residual drug inside the dosing tank or when the detection is interfered with, thus reducing the effectiveness of the fully automatic dosing equipment, a fully automatic dosing device can be designed. Utility Model Content
[0005] To overcome the problem that existing fully automatic dosing equipment, which controls the dosing amount by setting settings, can easily overflow when there is a large amount of residual drug inside the dosing tank or when the detection is interfered with, thus reducing the effectiveness of the fully automatic dosing equipment.
[0006] The technical solution of this utility model is as follows: a fully automatic dosing device, including a barrel frame body; it also includes a medicine barrel body and a movable frame. The inner side of the barrel frame body is provided with a medicine barrel body for dosing and mixing. The upper end of the medicine barrel body is provided with a movable frame. A through opening is opened on the outer side of the movable frame. Both ends of the movable frame are equipped with docking platforms. The lower end of the docking platform is provided with a receiving groove for pipeline movement. The lower end of the receiving groove is provided with a floating platform for sensing the liquid level. The upper end of the floating platform is fixedly connected with a connecting frame. The connecting frame is slidably connected to the docking platform. The outer side of the connecting frame is threaded with a limit nut. The upper end of the connecting frame is fixedly connected with a support plate. The upper end of the support plate is rotatably connected to the connecting plate through a rotating shaft.
[0007] Preferably, the main body of the medicine barrel is placed on the barrel frame to add and mix medicines, and the medicine barrel is connected to the docking platform to add medicines. The support plate and connecting plate are raised and lowered by the floating platform and connecting frame to cooperate with the medicine adding structure. The insertion distance of the floating platform inside the medicine barrel is adjusted by the limit nut and connecting frame.
[0008] Preferably, a support platform is installed at the rear end of the main body of the bucket frame, and guide rods are fixedly connected to both ends of the support platform. A first hydraulic push rod is installed on the inner side of the support platform, and a lifting platform is installed at the upper end of the first hydraulic push rod. The lifting platform is slidably connected to the guide rod, and a fixed rod is rotatably connected to both ends of the lifting platform through a rotating joint.
[0009] Preferably, connecting pipes are fixed to both ends of the main body of the medicine barrel, and an installation pipe is provided between the two connecting pipes. A rotating rod is slidably connected to the inner side of the installation pipe, and a first gear is fixed to the outer side of the rotating rod.
[0010] Preferably, a second hydraulic push rod is provided at the upper end of the rotating rod, and a moving block is installed at the lower end of the second hydraulic push rod. The moving block is slidably connected to the rotating rod, and an elastic stirring plate is installed between the moving block and the rotating rod.
[0011] Preferably, a power motor is provided at the rear end of the second hydraulic push rod, and a second gear is mounted on the shaft of the power motor via a coupling. The second gear meshes with the first gear, and both the second hydraulic push rod and the power motor are mounted at the lower end of the movable frame.
[0012] Preferably, a first flexible hose is installed on one side of the docking platform, a second flexible hose is installed on the other side of the docking platform, a receiving pipe is provided between the first flexible hose and the second flexible hose, and a support pipe is installed at the upper end of the receiving pipe.
[0013] Preferably, the front end of the support tube is provided with an installation groove, and the inner side of the installation groove is connected to a rotating frame. The rear end of the rotating frame is fixedly connected to a baffle plate, and the front end of the baffle plate is fixedly connected to a connecting seat. The connecting seat and the connecting plate are rotatably connected by a rotating shaft.
[0014] The beneficial effects of this utility model are:
[0015] The main body of the medicine tank is placed on the main body of the tank frame to add and mix medicines. The main body of the medicine tank is connected to the docking platform to add medicines. The support plate and connecting plate are raised and lowered by the floating platform and connecting frame to cooperate with the medicine adding structure. The extension distance of the floating platform inside the medicine tank is adjusted by the limit nut and connecting frame. The main body of the tank frame facilitates the connection of the moving frame and docking platform to the medicine tank. The timing and amount of medicine adding are controlled by the floating platform, connecting frame and limit nut in conjunction with the medicine adding structure. Attached Figure Description
[0016] Figure 1 The diagram shown is a three-dimensional structural schematic of the present invention.
[0017] Figure 2 The diagram shown is a schematic representation of the main structure of the barrel frame of this utility model.
[0018] Figure 3 The diagram shown is a partial cross-sectional perspective view of the main body of the medicine barrel and the rotating rod of this utility model.
[0019] Figure 4 The image shown is a partial enlarged view of the rotating rod of this utility model;
[0020] Figure 5 The diagram shown is a partial cross-sectional disassembly view of the movable frame of this utility model;
[0021] Figure 6 The image shown is a partial enlarged cross-sectional view of the movable frame of this utility model;
[0022] Figure 7 The diagram shown is a partial cross-sectional disassembly of the support tube of this utility model.
[0023] Explanation of reference numerals in the attached drawings: 1. Barrel frame body; 2. Support platform; 3. Guide rod; 4. First hydraulic push rod; 5. Lifting platform; 6. Fixed rod; 7. Medicine barrel body; 8. Connecting pipe; 9. Installation pipe; 10. Rotating rod; 11. First gear; 12. Second hydraulic push rod; 13. Moving block; 14. Elastic stirring plate; 15. Power motor; 16. Second gear; 17. Moving frame; 18. Through port; 19. Docking platform; 20. Receiving tank; 21. Floating platform; 22. Connecting frame; 23. Limiting nut; 24. Support plate; 25. Connecting plate; 26. First hose; 27. Second hose; 28. Receiving pipe; 29. Support pipe; 30. Installation slot; 31. Rotating frame; 32. Baffle plate; 33. Connecting seat. Detailed Implementation
[0024] The present invention will be further described below with reference to the accompanying drawings and embodiments.
[0025] Please see Figures 1-7This utility model provides an embodiment: a fully automatic dosing device, including a barrel frame body 1; it also includes a medicine barrel body 7 and a movable frame 17. The medicine barrel body 7 for dosing and mixing is provided on the inner side of the barrel frame body 1. The movable frame 17 is provided at the upper end of the medicine barrel body 7. A through opening 18 is provided on the outer side of the movable frame 17. A docking platform 19 is installed on both ends of the movable frame 17. A receiving groove 20 for pipeline movement is provided at the lower end of the docking platform 19. A sensing device is provided at the lower end of the receiving groove 20. A floating platform 21 is positioned on the liquid surface. A connecting frame 22 is fixedly connected to the upper end of the floating platform 21. The connecting frame 22 is slidably connected to the docking platform 19. A limit nut 23 is threaded onto the outer side of the connecting frame 22. A support plate 24 is fixedly connected to the upper end of the connecting frame 22. A connecting plate 25 is rotatably connected to the upper end of the support plate 24 via a rotating shaft. A medicine tank body 7 is placed on the tank frame body 1 to add and mix medicine. The medicine tank body 7 is connected to the docking platform 19 to add medicine. The floating platform 21 and the connecting frame... 22 drives the support plate 24 and connecting plate 25 to rise and fall, in order to cooperate with the drug addition structure for drug addition. The limit nut 23 and connecting frame 22 are used to adjust the insertion distance of the floating platform 21 inside the main body of the medicine tank 7. A first hose 26 is installed on one side of the docking platform 19, and a second hose 27 is installed on the other side of the docking platform 19. A receiving pipe 28 is set between the first hose 26 and the second hose 27. A support pipe 29 is installed at the upper end of the receiving pipe 28. The first hose 26 and the second hose 27 are used to assist in the addition of medicine or to balance the internal air pressure, and the main medicine is added through the support pipe 29. The front end of the support pipe 29 has an installation groove 30. The inner side of the installation groove 30 is rotatably connected to a rotating frame 31. A baffle plate 32 is fixed to the rear end of the rotating frame 31. A connecting seat 33 is fixed to the front end of the baffle plate 32. The connecting seat 33 and the connecting plate 25 are rotatably connected through a rotating shaft. The rotating frame 31 is driven to rotate through the connecting plate 25 and the connecting seat 33, so as to drive the baffle plate 32 to rotate, thereby gradually opening and closing the support pipe 29.
[0026] Please see Figures 2-5In this embodiment, a support platform 2 is installed at the rear end of the barrel frame body 1. Guide rods 3 are fixedly connected to both ends of the support platform 2. A first hydraulic push rod 4 is installed on the inner side of the support platform 2. A lifting platform 5 is installed at the upper end of the first hydraulic push rod 4. The lifting platform 5 is slidably connected to the guide rod 3. Fixed rods 6 are rotatably connected to both ends of the lifting platform 5 through rotating joints. The medicine barrel body 7 is placed on the barrel frame body 1, and the lifting platform 5 and the moving frame 17 are raised and lowered by the first hydraulic push rod 4 and the guide rod 3. Connecting pipes 8 are fixedly connected to both ends of the medicine barrel body 7. An installation pipe 9 is provided between the two connecting pipes 8. A rotating rod 10 is slidably connected to the inner side of the installation pipe 9. A first gear 11 is fixedly connected to the outer side of the rotating rod 10. The connecting pipe 8 connects to the docking platform 19 to facilitate the addition of medicine and sealing. A second hydraulic push rod 12 is provided at the upper end of the moving rod 10, and a moving block 13 is installed at the lower end of the second hydraulic push rod 12. The moving block 13 is slidably connected to the rotating rod 10. An elastic stirring plate 14 is installed between the moving block 13 and the rotating rod 10. The moving block 13 is driven to rise and fall by the second hydraulic push rod 12 to unfold or retract the elastic stirring plate 14. A power motor 15 is provided at the rear end of the second hydraulic push rod 12. A second gear 16 is installed on the rotating shaft of the power motor 15 through a coupling. The second gear 16 meshes with the first gear 11. The second hydraulic push rod 12 and the power motor 15 are both installed at the lower end of the moving frame 17. The power motor 15 drives the second gear 16 to rotate, thereby driving the rotating rod 10 and the elastic stirring plate 14 to rotate through the first gear 11 to stir and mix the medicine.
[0027] During installation, firstly, the main body of the medicine barrel 7 is placed on the barrel frame body 1, and the lifting platform 5 and the moving frame 17 are raised and lowered by the first hydraulic push rod 4 and the guide rod 3. Next, the docking platform 19 is connected through the connecting pipe 8, and the insertion distance of the floating platform 21 inside the main body of the medicine barrel 7 is adjusted by the limit nut 23 and the connecting frame 22. Then, the main medicine is added through the support pipe 29, and the medicine is added and the internal air pressure is balanced by the first hose 26 and the second hose 27. Finally, the mixed medicine is extracted through the first hose 26.
[0028] During drug addition, firstly, the floating platform 21 is pushed by the liquid level of the drug, which in turn drives the support plate 24 and the connecting plate 25 to rise and fall through the floating platform 21 and the connecting frame 22. Next, the rotating frame 31 is rotated through the connecting plate 25 and the connecting seat 33, which in turn drives the blocking plate 32 to rotate, thereby gradually opening and closing the support tube 29 to cooperate with the drug addition structure. Then, the moving block 13 is raised and lowered through the second hydraulic push rod 12 to unfold or retract the elastic stirring plate 14. Finally, the second gear 16 is rotated through the power motor 15, which in turn drives the rotating rod 10 and the elastic stirring plate 14 to rotate through the first gear 11 to stir and mix the drug.
[0029] Through the above steps, the main body of the medicine tank 7 is placed on the main body of the tank frame 1 to add and mix medicines. The medicine tank 7 is connected to the docking platform 19 to add medicines. The support plate 24 and the connecting plate 25 are raised and lowered by the floating platform 21 and the connecting frame 22 to cooperate with the medicine dosing structure. The insertion distance of the floating platform 21 inside the medicine tank 7 is adjusted by the limit nut 23 and the connecting frame 22. This solves the problem that existing fully automatic medicine dosing equipment, which controls the dosing amount by setting a setting, is prone to overflowing medicines inside the dosing tank when there is a large amount of residual medicine inside the dosing tank or when the detection is interfered with, which leads to a decrease in the use effect of the fully automatic medicine dosing equipment.
Claims
1. A fully automatic dosing device comprising a barrel frame main body (1); characterized in that: Also include the medicine bucket body (7) and mobile frame (17), the inner side of the bucket frame body (1) is provided with the medicine bucket body (7) for adding medicine mixing, the upper end of the medicine bucket body (7) is provided with the mobile frame (17), the outer side of the mobile frame (17) is provided with the through hole (18), the both sides of the mobile frame (17) are provided with the docking table (19), the lower end of the docking table (19) is provided with the containing groove (20) for pipe movement, the lower end of the containing groove (20) is provided with the floating table (21) for sensing liquid level, the upper end of the floating table (21) is fixedly connected with the connecting frame (22), the connecting frame (22) is slidably connected with the docking table (19), the outer side of the connecting frame (22) is threadedly connected with the limiting nut (23), the upper end of the connecting frame (22) is fixedly connected with the supporting plate (24), the upper end of the supporting plate (24) is rotatably connected with the connecting plate (25) through the rotating shaft.
2. The fully automatic dosing device according to claim 1, characterized in that The rear end of the bucket frame body (1) is provided with the supporting table (2), the both sides of the supporting table (2) are fixedly connected with the guide rod (3), the inner side of the supporting table (2) is provided with the first hydraulic push rod (4), the upper end of the first hydraulic push rod (4) is provided with the lifting table (5), the lifting table (5) is slidably connected with the guide rod (3), the both sides of the lifting table (5) are rotatably connected with the fixed rod (6) through the rotating joint.
3. The fully automatic chemical dosing apparatus according to claim 1, characterized in that: The both sides of the medicine bucket body (7) are fixedly connected with the connecting pipe (8), the two connecting pipes (8) are provided with the mounting pipe (9), the inner side of the mounting pipe (9) is slidably connected with the rotating rod (10), the outer side of the rotating rod (10) is fixedly connected with the first gear (11).
4. The fully automatic dosing device according to claim 3, characterized in that The upper end of the rotating rod (10) is provided with the second hydraulic push rod (12), the lower end of the second hydraulic push rod (12) is provided with the moving block (13), the moving block (13) is slidably connected with the rotating rod (10), the moving block (13) and the rotating rod (10) are provided with the elastic stirring piece (14).
5. A fully automatic dosing device according to claim 4, characterized in that The rear end of the second hydraulic push rod (12) is provided with the power motor (15), the rotating shaft of the power motor (15) is provided with the second gear (16) through the shaft coupling, the second gear (16) is engaged with the first gear (11), the second hydraulic push rod (12) and the power motor (15) are both installed at the lower end of the mobile frame (17).
6. The fully automatic chemical dosing apparatus according to claim 1, characterized in that: One side of the docking table (19) is provided with the first hose (26), the other side of the docking table (19) is provided with the second hose (27), the first hose (26) and the second hose (27) are provided with the receiving pipe (28), the upper end of the receiving pipe (28) is provided with the supporting pipe (29).
7. A fully automatic dosing device according to claim 6, characterized in that The front end of the supporting pipe (29) is provided with the mounting groove (30), the inner side of the mounting groove (30) is rotatably connected with the rotating frame (31), the rear end of the rotating frame (31) is fixedly connected with the blocking plate (32), the front end of the blocking plate (32) is fixedly connected with the connecting seat (33), the connecting seat (33) is rotatably connected with the connecting plate (25) through the rotating shaft.