Cooling device for methyl silicone oil processing
By installing a cold air blower and nozzles in the cooling pool to form bubble contact cooling, the problem of low heat exchange efficiency caused by the lack of direct contact between cooling water and methyl silicone oil is solved, achieving rapid cooling and safe and convenient monitoring.
Patent Information
- Application Number
- CN202520453535.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-16
- Publication Date
- 2026-02-10
- Estimated Expiration
- 2035-03-16
AI Technical Summary
The cooling water and methyl silicone oil do not come into direct contact, resulting in poor heat exchange efficiency and slow cooling rate.
A cooling fan and nozzles are installed in the cooling pool to form bubbles with low-temperature air, which come into contact with methyl silicone oil for rapid cooling. The cooling process is monitored by a temperature sensor and a display screen.
It improves the cooling speed of methyl silicone oil, enhances the safety and convenience for staff, and provides real-time monitoring of the cooling process.
Smart Images

Figure CN223896385U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of silicone oil processing, specifically to a cooling device for methyl silicone oil processing. BACKGROUND
[0002] Cooling after methyl silicone oil processing is crucial. The freshly synthesized methyl silicone oil is at a high temperature, which is not conducive to storage and subsequent use. The cooled methyl silicone oil can better meet the requirements of different fields for viscosity and stability, ensuring its good performance in industrial production, cosmetic manufacturing, and other applications.
[0003] According to the Chinese patent with the announcement number CN221975583U, a silicone oil production cooling device includes a cooling box body, a cylindrical copper body is fixedly installed inside the cooling box body, a conveying groove and a water cooling groove are respectively formed in the cylindrical copper body, a silicone oil storage mechanism for feeding the conveying groove is arranged on the top side of the cooling box body, a silicone oil collection mechanism for discharging the conveying groove is arranged in the cooling box body, a liquid inlet pipe and a liquid outlet pipe are respectively connected to the liquid inlet end and the liquid outlet end of the water cooling groove, a first side plate and a second side plate are respectively fixedly installed on the cooling box body, two first circular openings are formed in the first side plate, an air inlet driving mechanism is arranged on one side of each first circular opening, two second circular openings are formed in the second side plate, and an air outlet driving mechanism is arranged on one side of each second circular opening.
[0004] In the above scheme, the cooling water spirals downward to cool the silicone oil, which still has the following shortcomings: when the cooling water spirals downward to cool the methyl silicone oil, the heat exchange efficiency is poor because the cooling water does not directly contact the methyl silicone oil, and the cooling speed is slow. SUMMARY
[0005] The utility model aims at providing a cooling device for methyl silicone oil processing to solve the problem of poor heat exchange efficiency and slow cooling speed due to the lack of direct contact between the cooling water and the methyl silicone oil.
[0006] To achieve the above-mentioned utility model purposes, the utility model adopts the following technical scheme: a cooling device for methyl silicone oil processing includes a cooling pool, a plurality of air coolers are arranged on one side of the cooling pool, a plurality of penetrating holes are formed on one side of the cooling pool, the air cooler outlet pipe is fixedly inserted into the penetrating hole, the air cooler outlet pipe is fixedly connected to the conveying pipe at one end, a plurality of fixing holes are formed on the surface of the conveying pipe, and a spray head is fixedly inserted into the fixing hole.
[0007] Preferably, a plurality of low-temperature boxes are arranged on one side of the cooling pool, the low-temperature boxes are arranged between the air coolers and the cooling pool, the air cooler outlet pipe is fixedly inserted into the low-temperature box, and an addition hole is formed on the top surface of the low-temperature box.
[0008] Preferably, the top surface of the cooling pool is rotatably provided with a cover plate, one side of the cover plate is fixedly provided with a connecting strip, one side of the cooling pool is fixedly provided with two fixed flaps, and the connecting strip is rotatably arranged between the two fixed flaps.
[0009] Preferably, one side of the cover plate is fixedly provided with two positioning plates, a rotating plate is rotatably arranged between the two positioning plates, the bottom surface of the rotating plate is fixedly provided with a blocking plate, and one side of the cooling pool is fixedly provided with two limiting plates.
[0010] Preferably, the top surface of the cover plate is provided with a mounting opening, and the inside of the mounting opening is fixedly provided with a transparent plate.
[0011] Preferably, the inside of the cooling pool is provided with temperature sensors on both sides, one side of the cooling pool is provided with a display screen, and one side of the cooling pool is provided with a single-chip microcomputer.
[0012] Compared with the prior art, the cooling device for methyl silicone oil processing has the following beneficial effects:
[0013] I. When the staff pours the methyl silicone oil to be cooled into the inside of the cooling pool, the air conditioner will start and transport the air in the external environment into the inside of the conveying pipe. Then the air with lower temperature in the inside of the conveying pipe will be added into the methyl silicone oil in the inside of the cooling pool through the spray head and form bubbles. When the bubbles float upward in the inside of the methyl silicone oil, the low-temperature air in the bubbles will fully contact the methyl silicone oil, so that the heat of the methyl silicone oil is quickly moved to the low-temperature gas in the bubbles, thereby increasing the cooling speed of the methyl silicone oil.
[0014] II. When the methyl silicone oil is cooled in the inside of the cooling pool, the staff will buckle the cover plate on the top surface of the cooling pool, so that the top surface of the cooling pool is closed by the cover plate to prevent the passing staff from accidentally touching the high-temperature methyl silicone oil in the cooling pool. When the cover plate is buckled on the top surface of the cooling pool, the staff will push the rotating plate between the two limiting plates. At this time, since the blocking plate is below the limiting plate, the cover plate cannot be opened on the top surface of the cooling pool, thereby increasing the safety of the staff.
[0015] III. When the methyl silicone oil is cooled, the staff can observe the cooling state of the methyl silicone oil in the inside of the cooling pool through the transparent plate. In addition, when the temperature sensor measures the current temperature of the methyl silicone oil, the temperature sensor will transmit the information to the single-chip microcomputer, and then the single-chip microcomputer will send the temperature information to the display screen, thereby increasing the convenience of the staff to understand the cooling state of the methyl silicone oil. BRIEF DESCRIPTION OF DRAWINGS
[0016] Figure 1 It is a perspective view of the embodiment.
[0017] Figure 2 An exploded perspective view of an embodiment.
[0018] Figure 3 An exploded perspective view of an embodiment. Figure 2 An enlarged view of a portion of the structure at A.
[0019] Figure 4 An exploded perspective view of an embodiment. Figure 2 An enlarged view of a portion of the structure at B.
[0020] Figure 5 A block diagram of a system of an embodiment.
[0021] In the figure: 1, cooling pool; 2, cooling fan; 3, penetration hole; 4, conveying pipe; 5, fixing hole; 6, spray head; 7, low-temperature box; 8, adding hole; 9, cover plate; 10, connecting strip; 11, fixed flaps; 12, positioning plate; 13, rotating plate; 14, blocking plate; 15, limiting plate; 16, mounting port; 17, transparent plate; 18, temperature sensor; 19, display screen. DETAILED DESCRIPTION
[0022] The preferred embodiments of the present application will be described in detail below with reference to the drawings.
[0023] As shown in Figure 1 and Figure 3 A cooling device for methyl silicone oil processing includes a cooling pool 1, a plurality of cooling fans 2 are arranged on one side of the cooling pool 1, a plurality of penetration holes 3 are formed on one side of the cooling pool 1, the air outlet pipes of the cooling fans 2 are fixedly inserted into the penetration holes 3, a conveying pipe 4 is fixed to one end of the air outlet pipe of the cooling fan 2, a plurality of fixing holes 5 are formed on the surface of the conveying pipe 4, spray heads 6 are fixedly inserted into the fixing holes 5, a plurality of low-temperature boxes 7 are arranged on one side of the cooling pool 1, the low-temperature boxes 7 are located between the cooling fans 2 and the cooling pool 1, the air outlet pipes of the cooling fans 2 are fixedly inserted into the low-temperature boxes 7, and adding holes 8 are formed on the top surface of the low-temperature boxes 7.
[0024] In use, after the methyl silicone oil to be cooled is poured into the inside of the cooling pool 1 by the worker, the cooling fan 2 is started and air in the external environment is transported into the inside of the conveying pipe 4, then the air with low temperature in the inside of the conveying pipe 4 is added into the methyl silicone oil in the inside of the cooling pool 1 through the spray heads 6 and forms bubbles, when the bubbles float upward in the methyl silicone oil, the low-temperature air in the bubbles is in full contact with the methyl silicone oil, so that the heat of the methyl silicone oil is quickly moved to the low-temperature air in the bubbles, and the speed of cooling the methyl silicone oil is increased.
[0025] As shown in Figure 2 and Figure 4As shown in the drawings, the top surface of the cooling pool 1 is rotatably provided with a cover plate 9, one side of the cover plate 9 is fixedly provided with a connecting strip 10, one side of the cooling pool 1 is fixedly provided with two fixed flaps 11, the connecting strip 10 is rotatably arranged between the two fixed flaps 11, one side of the cover plate 9 is fixedly provided with two positioning plates 12, the two positioning plates 12 are rotatably provided with a rotating plate 13, the bottom surface of the rotating plate 13 is fixedly provided with a blocking plate 14, and one side of the cooling pool 1 is fixedly provided with two limiting plates 15.
[0026] In use, when the methyl silicone oil is cooled in the cooling pool 1, the staff will buckle the cover plate 9 on the top surface of the cooling pool 1, so that the top surface of the cooling pool 1 is closed by the cover plate 9, preventing passing staff from accidentally touching the high-temperature methyl silicone oil in the cooling pool 1, and after the cover plate 9 is buckled on the top surface of the cooling pool 1, the staff will push the rotating plate 13 between the two limiting plates 15, at this time, since the blocking plate 14 is below the limiting plate 15, the cover plate 9 cannot be opened on the top surface of the cooling pool 1, thereby increasing the safety of the staff.
[0027] As shown in the drawings, Figure 2 and Figure 5 The top surface of the cover plate 9 is provided with a mounting hole 16, the inside of the mounting hole 16 is fixedly provided with a transparent plate 17, both sides of the inside of the cooling pool 1 are provided with temperature sensors 18, one side of the cooling pool 1 is provided with a display screen 19, one side of the cooling pool 1 is provided with a single-chip microcomputer, the model of the single-chip microcomputer is STM32, the temperature sensors 18 are electrically connected with the single-chip microcomputer, and the display screen 19 is electrically connected with the single-chip microcomputer.
[0028] In use, when the methyl silicone oil is cooled, the staff can observe the cooling state of the methyl silicone oil in the cooling pool 1 through the transparent plate 17, and in addition, after the temperature sensor 18 measures the current temperature of the methyl silicone oil, the temperature sensor 18 transmits information to the single-chip microcomputer, and then the single-chip microcomputer sends the temperature information to the display screen 19, thereby increasing the convenience of the staff to understand the cooling state of the methyl silicone oil.
[0029] The above is only a preferred specific embodiment of the present application, but the protection scope of the present application is not limited thereto, any skilled person in the art can make equivalent replacement or change according to the technical scheme and the inventive concept of the present application within the technical range disclosed by the present application, which should be covered in the protection scope of the present application.
Claims
1. A cooling device for processing methyl silicone oil, comprising a cooling tank (1), characterized in that, A number of air coolers (2) are provided on one side of the cooling pool (1). A number of through holes (3) are opened on one side of the cooling pool (1). The air outlet pipe of the air cooler (2) is fixedly inserted into the through hole (3). A conveying pipe (4) is fixed at one end of the air outlet pipe of the air cooler (2). A number of fixing holes (5) are opened on the surface of the conveying pipe (4). A nozzle (6) is fixedly inserted inside the fixing hole (5).
2. The cooling device for processing methyl silicone oil according to claim 1, characterized in that: A number of low-temperature boxes (7) are provided on one side of the cooling pool (1). The low-temperature boxes (7) are located between the air cooler (2) and the cooling pool (1). The air outlet pipe of the air cooler (2) is fixedly inserted into the low-temperature box (7). An addition hole (8) is opened on the top surface of the low-temperature box (7).
3. A cooling device for processing methyl silicone oil according to claim 1, characterized in that: The top surface of the cooling pool (1) is rotatably provided with a cover plate (9), and a connecting strip (10) is fixed on one side of the cover plate (9). Two fixed folding plates (11) are fixed on one side of the cooling pool (1), and the connecting strip (10) is rotatably disposed between the two fixed folding plates (11).
4. A cooling device for processing methyl silicone oil according to claim 3, characterized in that: Two positioning plates (12) are fixed on one side of the cover plate (9), and a rotating plate (13) is rotatably arranged between the two positioning plates (12). A blocking plate (14) is fixed on the bottom surface of the rotating plate (13), and two limiting plates (15) are fixed on one side of the cooling pool (1).
5. A cooling device for processing methyl silicone oil according to claim 3, characterized in that: The top surface of the cover plate (9) is provided with an installation opening (16), and a transparent plate (17) is fixed inside the installation opening (16).
6. A cooling device for processing methyl silicone oil according to claim 1, characterized in that: Temperature sensors (18) are respectively installed on both sides of the interior of the cooling pool (1), a display screen (19) is installed on one side of the cooling pool (1), and a microcontroller is installed on one side of the cooling pool (1).
Citation Information
Patent Citations
Cooling device for silicone oil production
CN221975583U