Auxiliary material blending device for processing modified silicone oil
By employing a multi-layered and multi-form stirring structure and temperature and liquid level control, the problem of uneven mixing between modified silicone oil and auxiliary materials was solved, improving the mixing uniformity and quality of modified silicone oil and ensuring the efficiency of the formulation process and product stability.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-08
- Publication Date
- 2026-03-13
AI Technical Summary
In existing modified silicone oil processing equipment, the single-type stirring structure leads to uneven mixing of modified silicone oil and auxiliary materials, reducing the mixing uniformity and quality of modified silicone oil.
It adopts a multi-layered and multi-form stirring structure, including the combined use of a drive motor, rotating column, stirring plate, arc plate and rotating plate, combined with the design of U-shaped frame and scraper, and with the PLC controller to monitor and adjust temperature and liquid level, to ensure mixing uniformity and temperature stability.
This method achieves highly uniform mixing of modified silicone oil and auxiliary materials, improving the quality of the modified silicone oil. Furthermore, temperature and liquid level control ensure the efficiency of the blending process and the quality of the product.
Smart Images

Figure CN223988384U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of modified silicone oil processing, specifically to an auxiliary material preparation device for modified silicone oil processing. Background Technology
[0002] Modified silicone oils are silicone oils in which certain organic groups replace some of the methyl groups in methyl silicone oil, thereby improving certain properties and adapting them to various applications. In recent years, organically modified silicone oils have developed rapidly, resulting in many types with special properties, such as alkyl-modified silicone oils, polyether-modified silicone oils, epoxy-modified silicone oils, and amino-modified silicone oils.
[0003] Currently, most auxiliary material preparation devices typically place the modified silicone oil and auxiliary materials together inside the tank during use, and then mix them using a single-type stirring structure. This has the following drawbacks: the single-type stirring structure results in uneven mixing of the modified silicone oil and auxiliary materials, thereby reducing the uniformity of the mixture and thus reducing the quality of the modified silicone oil. Utility Model Content
[0004] The purpose of this invention is to provide a mixing device for modified silicone oil processing, in order to solve the problem that a single-form stirring structure leads to uneven mixing of modified silicone oil and auxiliary materials, thereby reducing the uniformity of mixing and thus reducing the quality of modified silicone oil.
[0005] To achieve the above-mentioned utility model objectives, the present utility model adopts the following technical solution: a modified silicone oil processing auxiliary material preparation device, including a can lid, the can lid being bolted to the top surface of the can body, a rotating hole being provided on the top surface of the can lid, a drive motor being fixed to the top surface of the can lid, a rotating column being fixed to the output shaft of the drive motor, stirring plates being fixed to the front and rear sides of the rotating column, connecting plates being fixed to the top and bottom surfaces of the two stirring plates, arc-shaped plates being fixed to the outer sides of the two connecting plates, mounting holes being provided on one side of the two stirring plates, rotating plates being rotatably arranged inside the two mounting holes, a feed pipe being fixedly connected to the top surface of the can lid, a discharge pipe being fixedly connected to the bottom surface of the can body, and a solenoid valve being provided on the discharge pipe.
[0006] Preferably, a U-shaped frame is fixed to the front and rear sides of the rotating column, and a scraper is fixed to the outer side of each of the two U-shaped frames.
[0007] Preferably, the top surface of the tank is provided with an installation groove, a PLC controller is fixed to the front side of the outer wall of the tank, a heating element is fixed to the front side of the inner wall of the installation groove, the heating element is electrically connected to the PLC controller, and a cooling element is fixed to the rear side of the inner wall of the installation groove, the cooling element is electrically connected to the PLC controller.
[0008] Preferably, the top surface of the can lid has a connection hole, and a temperature sensor is fixed inside the connection hole. The temperature sensor is electrically connected to the PLC controller.
[0009] Preferably, a placement hole is provided on the right side of the outer wall of the tank, and a liquid level sensor is fixed inside the placement hole. The liquid level sensor is electrically connected to the PLC controller.
[0010] Preferably, the rotating column has two threaded grooves on its front and rear sides, and the two connecting plates have threaded holes on one side. Bolt bodies are threaded into the two threaded holes, and the threaded ends of the two bolt bodies are threaded into the two threaded grooves.
[0011] Compared with existing technologies, the modified silicone oil processing auxiliary material preparation device using the above technical solution has the following beneficial effects:
[0012] In use, the operator first installs the can lid on the top of the can body with bolts. Then, the modified silicone oil and auxiliary materials are fed into the can body through the feed pipe. The operator then starts the drive motor, causing the rotating column to rotate, which in turn drives the stirring plate and arc plate to rotate, mixing the materials inside the can body. This results in a more uniform mixing effect. Simultaneously, the rotating plate rotates freely when in contact with the flowing material, further enhancing the mixing effect. The uniformly mixed material is discharged through the discharge pipe via a solenoid valve. The combined use of the drive motor, rotating column, stirring plate, connecting plate, arc plate, and rotating plate achieves a multi-layered, multi-form mixing structure, thereby improving the uniformity of material mixing and thus improving the quality of the modified silicone oil.
[0013] Second, during use, the combined use of the U-shaped frame and scraper, along with the rotation of the mixing plate and the arc plate, not only effectively removes material adhering to the inner wall, preventing material waste and clumping, but also further improves the uniformity of material mixing, ensuring the quality of the modified silicone oil. When it is necessary to increase the internal temperature of the tank, the PLC controller will activate the heating element for heating; conversely, when it is necessary to decrease the temperature, it will activate the cooling element for cooling, ensuring that the modified silicone oil is always in the optimal temperature environment during the blending process, which is beneficial to improving blending efficiency and product quality.
[0014] Thirdly, during use, the temperature sensor facilitates real-time monitoring of the tank temperature and accurately transmits the data to the PLC controller. When the temperature reaches or exceeds the set value, the PLC controller automatically adjusts the working state of the heating or cooling elements to maintain a constant internal temperature, ensuring the temperature stability of the modified silicone oil during the mixing process. The level sensor facilitates real-time monitoring of the material level in the tank, helping operators understand the remaining amount of material and ensuring that the level remains within a safe and reasonable range during the mixing process. The use of threaded grooves, threaded holes, and bolt bodies allows operators to easily disassemble and assemble the connecting plate, stirring plate, and arc plate, facilitating cleaning or replacement. Attached Figure Description
[0015] Figure 1 This is a three-dimensional schematic diagram of an embodiment.
[0016] Figure 2 This is an exploded view of an embodiment.
[0017] Figure 3 This is an exploded view of the curved plate and U-shaped frame in the embodiment.
[0018] Figure 4 For the example Figure 2 Enlarged diagram of point A in the middle.
[0019] In the diagram: 1. Tank lid; 2. Tank body; 3. Rotating hole; 4. Drive motor; 5. Rotating column; 6. Stirring plate; 7. Connecting plate; 8. Arc plate; 9. Mounting hole; 10. Rotating plate; 11. Feed pipe; 12. Discharge pipe; 13. Solenoid valve; 14. U-shaped frame; 15. Scraper; 16. Mounting groove; 17. Heating element; 18. Cooling element; 19. Connecting hole; 20. Temperature sensor; 21. Placement hole; 22. Liquid level sensor; 23. Threaded groove; 24. Threaded hole; 25. Bolt body. Detailed Implementation
[0020] The preferred embodiments of this utility model will now be described in detail with reference to the accompanying drawings.
[0021] like Figures 1-4As shown, a modified silicone oil processing auxiliary material preparation device includes a can lid 1, which is bolted to the top surface of a can body 2. A rotating hole 3 is provided on the top surface of the can lid 1. A drive motor 4 is fixed on the top surface of the can lid 1. A rotating column 5 is fixed on the output shaft of the drive motor 4. A stirring plate 6 is fixed on the front and rear sides of the rotating column 5. A connecting plate 7 is fixed on the top and bottom surfaces of the two stirring plates 6. An arc-shaped plate 8 is fixed on the outer side of the two connecting plates 7. An installation hole 9 is provided on one side of each of the two stirring plates 6. A rotating plate 10 is rotatably installed inside each of the two installation holes 9. A feed pipe 11 is connected and fixed to the top surface of the can lid 1. A discharge pipe 12 is connected and fixed to the bottom surface of the can body 2. A solenoid valve 13 is provided on the discharge pipe 12.
[0022] In use, the operator first installs the can lid 1 on the top surface of the can body 2 using bolts. Then, the modified silicone oil and auxiliary materials are fed into the can body 2 through the feed pipe 11. The operator then starts the drive motor 4, causing the rotating column 5 to rotate, which in turn drives the stirring plate 6 and the arc-shaped plate 8 to rotate, mixing the materials inside the can body 2 to achieve a more uniform mixture. Simultaneously, the rotating plate 10 rotates freely when in contact with the flowing material, further enhancing the mixing effect. The uniformly mixed material is then discharged through the discharge pipe 12 via the solenoid valve 13. Through the coordinated use of the drive motor 4, rotating column 5, stirring plate 6, connecting plate 7, arc-shaped plate 8, and rotating plate 10, a multi-layered, multi-form mixing structure is achieved, thereby improving the uniformity of material mixing and ultimately enhancing the quality of the modified silicone oil.
[0023] like Figure 2 and Figure 3 As shown, U-shaped frames 14 are fixed to the front and rear sides of the rotating column 5, and scraper strips 15 are fixed to the outer sides of the two U-shaped frames 14.
[0024] In use, the U-shaped frame 14 and the scraper 15 work together to effectively remove the material adhering to the inner wall as the mixing plate 6 and the arc plate 8 rotate, preventing material waste and clumping. This also further improves the uniformity of material mixing and ensures the quality of the modified silicone oil.
[0025] like Figure 1 , Figure 2 and Figure 4 As shown, a mounting groove 16 is provided on the top surface of the tank body 2. A PLC controller is fixed on the front side of the outer wall of the tank body 2. The PLC controller is a Siemens S7-200. A heating element 17 is fixed on the front side of the inner wall of the mounting groove 16. The heating element 17 is electrically connected to the PLC controller. A cooling element 18 is fixed on the rear side of the inner wall of the mounting groove 16. The cooling element 18 is electrically connected to the PLC controller. A connection hole 19 is provided on the top surface of the tank cover 1. A temperature sensor 20 is fixed inside the connection hole 19. The temperature sensor 20 is electrically connected to the PLC controller.
[0026] During use, when the internal temperature of tank 2 needs to be increased, the PLC controller will activate heating element 17 for heating; conversely, when the temperature needs to be decreased, cooling element 18 will be activated for cooling. This ensures that the modified silicone oil is always in the optimal temperature environment during the blending process, which is beneficial for improving blending efficiency and product quality. Temperature sensor 20 facilitates real-time monitoring of the temperature in tank 2 and accurately transmits the data to the PLC controller. When the temperature reaches or exceeds the set value, the PLC controller will automatically adjust the working state of heating element 17 or cooling element 18 to maintain a constant internal temperature in tank 2, ensuring the temperature stability of the modified silicone oil during the blending process.
[0027] like Figures 1-4 As shown, a placement hole 21 is provided on the right side of the outer wall of the tank 2. A liquid level sensor 22 is fixed inside the placement hole 21. The liquid level sensor 22 is electrically connected to the PLC controller. Two threaded grooves 23 are provided on the front and rear sides of the rotating column 5. Threaded holes 24 are provided on one side of the two connecting plates 7. Bolt bodies 25 are threaded into the two threaded holes 24 respectively. The threaded ends of the two bolt bodies 25 are threaded into the two threaded grooves 23 respectively.
[0028] During use, the liquid level sensor 22 facilitates real-time monitoring of the material level in tank 2, helping staff understand the remaining amount of material and ensuring that the liquid level remains within a safe and reasonable range during the mixing process. The combined use of the threaded groove 23, threaded hole 24, and bolt body 25 allows staff to easily disassemble and assemble the connecting plate 7, stirring plate 6, and arc plate 8, facilitating cleaning or replacement.
[0029] The above description is only a preferred embodiment of the present utility model, but the protection scope of the present utility model is not limited thereto. Any equivalent substitutions or changes made by those skilled in the art within the technical scope disclosed in the present utility model, based on the technical solution and the inventive concept of the present utility model, should be included within the protection scope of the present utility model.
Claims
1. A modified silicone oil processing auxiliary material blending device comprising a tank cover (1) connected to the top surface of a tank body (2) by bolts, characterized in that, The top surface of the tank cover (1) is provided with a rotating hole (3), the top surface of the tank cover (1) is fixedly provided with a driving motor (4), the output shaft of the driving motor (4) is fixedly provided with a rotating column (5), the front side and the rear side of the rotating column (5) are respectively fixedly provided with a stirring plate (6), the top surface and the bottom surface of the two stirring plates (6) are respectively fixedly provided with a connecting plate (7), the outer side of the two connecting plates (7) is respectively fixedly provided with an arc-shaped plate (8), one side of the two stirring plates (6) is respectively provided with a mounting hole (9), the inner part of the two mounting holes (9) is respectively rotatably provided with a rotating plate (10), the top surface of the tank cover (1) is communicatively fixedly provided with a feeding pipe (11), the bottom surface of the tank body (2) is communicatively fixedly provided with a discharging pipe (12), and the discharging pipe (12) is provided with a solenoid valve (13).
2. The modified silicone oil processing auxiliary material blending device according to claim 1, characterized in that: The front side and the rear side of the rotating column (5) are respectively fixedly provided with a U-shaped frame (14), and the outer side of the two U-shaped frames (14) is respectively fixedly provided with a scraping strip (15).
3. The modified silicone oil processing auxiliary material blending device according to claim 2, characterized in that: The top surface of the tank body (2) is provided with a mounting groove (16), the front side of the outer wall of the tank body (2) is fixedly provided with a PLC controller, the inner wall of the mounting groove (16) is fixedly provided with a heating sheet (17), the heating sheet (17) is electrically connected with the PLC controller, the rear side of the inner wall of the mounting groove (16) is fixedly provided with a refrigeration sheet (18), and the refrigeration sheet (18) is electrically connected with the PLC controller.
4. The modified silicone oil processing auxiliary material blending device according to claim 3, characterized in that: The top surface of the tank cover (1) is provided with a connecting hole (19), the inside of the connecting hole (19) is fixedly provided with a temperature sensor (20), and the temperature sensor (20) is electrically connected with the PLC controller.
5. The modified silicone oil processing auxiliary material blending device according to claim 3, characterized in that: The right side of the outer wall of the tank body (2) is provided with a placing hole (21), the inside of the placing hole (21) is fixedly provided with a liquid level sensor (22), and the liquid level sensor (22) is electrically connected with the PLC controller.
6. The modified silicone oil processing auxiliary material blending device according to claim 5, characterized in that: The front side and the rear side of the rotating column (5) are respectively provided with two threaded grooves (23), one side of the two connecting plates (7) is respectively provided with a threaded hole (24), and the inside of the two threaded holes (24) is respectively threadedly connected with a bolt body (25), and the threaded end of the two bolt bodies (25) is respectively threadedly connected with the inside of the two threaded grooves (23).