Condensing device for methyl silicone oil production
By designing a methyl silicone oil condensing device including a condenser, a condenser and agitator, the existing condensation method has solved the problem of long condensation time and possible contamination of the container, and achieved efficient condensation and quality improvement.
Patent Information
- Application Number
- CN202421825531.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-31
- Publication Date
- 2025-05-13
- Estimated Expiration
- 2034-07-31
AI Technical Summary
The existing methyl silicone oil condensation method has a long condensed time and may contaminate the container, which cannot effectively solve the problems of different consistency and high temperature of methyl silicone oil.
A condensation device for methyl silicone oil production including a charging bucket, a condenser, a condenser, a condenser, a water tank, a sealed cover and a controller is designed. Through the combination of the condenser and the condenser, the condenser is used to cool the inner wall of the charging bucket, and stir and dissipate heat through the combination of the scraper and the stirring plate to shorten the condensation time.
It effectively shortens the condensed time of methyl silicone oil, improves the condensation efficiency, and through the use of anti-rust coating plastic-coated charging buckets and TPE hoses, chemical reactions and performance changes are avoided, and the quality and storage time of methyl silicone oil are improved.
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Figure CN222865628U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to a condensing device, in particular to a condensing device for producing methyl silicone oil. Background Art
[0002] Methyl silicone oil is colorless, odorless, and non-volatile. It has excellent heat resistance, electrical insulation, weather resistance, and a low viscosity-temperature coefficient. It is an organosilicon compound widely used in various fields. For example, in the pharmaceutical field, methyl silicone oil is mainly used as a coating agent for oral drugs, a base material for topical drugs, and a packaging material for eye drops. In the cosmetics field, it is widely used as an optical regulator because of its good lubrication and stability, as well as its ability to adjust the reflection and transmittance of light.
[0003] The viscosity of methyl silicone oil varies during the production process, that is, the viscosity of methyl silicone oil is affected by factors such as molecular weight, silicon-hydrogen ratio and additives, and exhibits different consistency states such as thin and thick. In addition, the temperature of the methyl silicone oil just produced is relatively high, so the methyl silicone oil needs to be condensed and then sealed and stored after condensation. However, the existing method of condensing methyl silicone oil is to directly open the container lid and let it cool naturally or with a fan. This condensation method not only takes a long time, but also may contaminate the methyl silicone oil in the container.
[0004] Therefore, it is necessary to design a methyl silicone oil storage device to solve the above-mentioned technical problems. Utility Model Content
[0005] In order to overcome the shortcomings of directly opening the container lid to cool naturally or using a fan to cool the methyl silicone oil, which takes a long time to condense and may contaminate the methyl silicone oil in the container, the technical problem to be solved is: to provide a condensing device for the production of methyl silicone oil.
[0006] The technical scheme of the utility model is: a condensing device for methyl silicone oil production, comprising a charging barrel, a supporting frame, a condenser, a condensing pipe, a water tank, a first sealing cover, a feeding pipe, a telescopic pipe, a discharging pipe, a second sealing cover and a controller, the outer wall of the charging barrel is fixedly connected with the supporting frame, the top of the charging barrel is threadedly connected with the first sealing cover, the top of the first sealing cover is connected and communicated with the feeding pipe, the middle of the feeding pipe is connected and communicated with the telescopic pipe, the bottom of the charging barrel is connected and communicated with the discharging pipe, the front side of the discharging pipe is threadedly connected with the second sealing cover, the front side of the charging barrel is fixedly connected with the controller, the left side of the supporting frame is fixedly connected with the water tank, the left side of the water tank is fixedly connected with the condenser, the condenser is electrically connected to the controller, the middle part of the condenser is connected and communicated with the condensing pipe, the condensing pipe penetrates the supporting frame and the left side wall of the charging barrel and extends into the interior of the charging barrel.
[0007] In one embodiment, the loading bucket is a rust-proof plastic-coated iron bucket.
[0008] In one embodiment, a non-slip rubber pad is fixed to the bottom of the support frame.
[0009] In one embodiment, the telescopic tube is made of TPE rubber tube.
[0010] In one of the embodiments, it also includes a first motor, a rotating rod and a scraper. The first motor is fixedly connected to the bottom of the charging barrel, the first motor is electrically connected to the controller, the output shaft of the first motor penetrates into the charging barrel, the rotating rod is connected to the output shaft of the first motor, the scrapers are fixedly connected on the left and right sides of the rotating rod, and the rotating rod and the scraper are both inside the charging barrel.
[0011] In one embodiment, it also includes a stirring plate and a second motor. At least one second motor is fixedly connected to a linear array on one side of the two scrapers away from the rotating rod. Each second motor is electrically connected to the controller. A stirring plate is fixedly connected to the output shaft of each second motor, and each stirring plate is rotatably connected to the rotating rod on one side away from the second motor.
[0012] The beneficial effects are as follows: 1. The utility model uses a loading barrel to hold methyl silicone oil, a first sealing cover to seal the loading barrel, and the cooperation of the condenser, the condenser tube and the water tank to cool and condense the methyl silicone oil. The cooperation of the scraper, the stirring plate and other components stirs and dissipates heat during the cooling and condensing process, effectively shortening the condensation time of the methyl silicone oil and improving the condensation efficiency.
[0013] 2. The utility model uses a rust-proof plastic-coated loading barrel to ensure that the methyl silicone oil does not chemically react with the barrel, effectively maintain the properties of the methyl silicone oil itself, and improve the quality and storage time of the methyl silicone oil.
[0014] 3. The utility model uses a telescopic tube made of TPE rubber hose, which can maintain its physical and chemical properties unchanged even in a high-temperature environment and effectively adapt to methyl silicone oil at different temperatures. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] Figure 1 It is a three-dimensional structural schematic diagram of the utility model.
[0016] Figure 2 It is a three-dimensional structural schematic diagram of the components such as the charging barrel, the first motor and the controller of the utility model.
[0017] Figure 3 It is a three-dimensional structural schematic diagram of the condenser, condenser tube, water tank and other components of the utility model.
[0018] Figure 4 It is a three-dimensional structural schematic diagram of the rotating rod, scraper, stirring plate and other components of the utility model.
[0019] Figure 5It is a schematic diagram of the three-dimensional structure of the second motor and the stirring plate of the utility model.
[0020] In the accompanying drawings: 1-charging barrel, 2-support frame, 3-condenser, 4-condenser, 5-water tank, 6-first sealing cover, 7-feeding pipe, 8-telescopic pipe, 9-discharging pipe, 10-second sealing cover, 11-first motor, 12-rotating rod, 13-scraper, 14-stirring plate, 15-second motor, 16-controller. DETAILED DESCRIPTION
[0021] The embodiments of the present utility model are described in detail below with reference to the accompanying drawings.
[0022] Embodiment: A condensing device for producing methyl silicone oil, such as Figure 1-Figure 3 As shown, it includes a charging barrel 1, a support frame 2, a condenser 3, a condenser tube 4, a water tank 5, a first sealing cover 6, a feed pipe 7, a telescopic tube 8, a discharge pipe 9, a second sealing cover 10 and a controller 16. The outer wall of the charging barrel 1 is connected to the support frame 2 by screws. The charging barrel 1 is a rust-proof plastic-coated iron barrel. The bottom of the support frame 2 is glued with a non-slip rubber pad. The top of the charging barrel 1 is threadedly connected to the first sealing cover 6. The top of the first sealing cover 6 is connected and connected to the feed pipe 7. The middle of the feed pipe 7 is connected and connected to the telescopic tube 8. The telescopic tube 8 is made of TPE rubber hose. The front side of the bottom of the charging barrel 1 is connected and communicated with a discharge pipe 9. The front side of the discharge pipe 9 is threadedly connected with a second sealing cover 10. The front side of the charging barrel 1 is installed with a controller 16 by screws. The left side of the support frame 2 is connected with a water tank 5 by screws. The left side of the water tank 5 is installed with a condenser 3 by screws. The condenser 3 is electrically connected to the controller 16. The middle part of the condenser 3 is connected and communicated with a condensation pipe 4. The condensation pipe 4 penetrates the support frame 2 and the left side wall of the charging barrel 1 and extends into the charging barrel 1.
[0023] like Figure 2 , Figure 4 and Figure 5 As shown, it also includes a first motor 11, a rotating rod 12, a scraper 13, a stirring plate 14 and a second motor 15. The first motor 11 is installed at the bottom of the charging barrel 1 by screws, and the first motor 11 is electrically connected to the controller 16. The output shaft of the first motor 11 penetrates into the charging barrel 1, and the output shaft of the first motor 11 is connected to the rotating rod 12. The left and right sides of the rotating rod 12 are connected to the scraper 13 by screws. The rotating rod 12 and the scraper 13 are both inside the charging barrel 1, and four second motors 15 are installed in a linear array by screws on the side of the two scrapers 13 away from the rotating rod 12. Each second motor 15 is electrically connected to the controller 16, and a stirring plate 14 is fixed to the output shaft of each second motor 15, and each stirring plate 14 is rotatably connected to the rotating rod 12 on the side away from the second motor 15.
[0024] First, the staff puts the device horizontally and steadily, then rotates the first sealing cover 6 clockwise to remove it, and checks whether the inside of the charging barrel 1 is clean. If there are debris and stains inside the charging barrel 1, the staff should first clean up the debris and wipe the charging barrel 1. After ensuring that the inside of the charging barrel 1 is clean, rotate the first sealing cover 6 counterclockwise to seal the charging barrel 1, and then the staff fills the water tank 5 with water. After the above preparations are completed, the staff first puts on protective masks and gloves to protect their own safety, and then pulls the telescopic tube 8 according to the needs of the infusion distance, and then fixes the top of the feed pipe 7 to the feed pipe, and then the staff opens the feed valve. At this time, methyl silicone oil is slowly transported into the charging barrel 1 along the feed pipe 7 and the telescopic tube 8. After the charging barrel 1 is filled with methyl silicone oil, the valve is closed so that it no longer transports methyl silicone oil to the charging barrel 1, and then the staff starts through the controller 16 Condenser 3, first motor 11 and second motor 15, at this time condenser 3 starts refrigeration work, cools normal temperature water, and pumps the cooled water into condenser 4 through the water pump installed inside condenser 3. Because condenser 4 surrounds the inner wall of charging barrel 1, condenser 4 cools down methyl silicone oil. The output shaft of first motor 11 drives rotating rod 12 to rotate, and rotating rod 12 drives scraper 13 to rotate. When scraper 13 rotates, it stirs methyl silicone oil and scrapes the methyl silicone oil that may adhere to the inner wall of charging barrel 1. At the same time, the output shaft of second motor 15 drives stirring plate 14 to rotate, and stirring plate 14 stirs methyl silicone oil in charging barrel 1. Because there is at least one stirring plate 14 in vertical array, the methyl silicone oil in charging barrel 1 is stirred evenly. Because methyl silicone oil is always in a state of being stirred and cooled, the methyl silicone oil dissipates heat quickly and can be condensed in a short time.
[0025] After the methyl silicone oil is completely condensed, the staff turns off the condenser 3, the first motor 11 and the second motor 15 through the controller 16. At this time, the condenser 4 no longer cools the methyl silicone oil, the first motor 11 no longer drives the scraper 13 to rotate, and the second motor 15 no longer drives the stirring plate 14 to rotate. Subsequently, the staff first places the prepared container containing methyl silicone oil under the discharge pipe 9, and then rotates the second sealing cover 10 clockwise to remove it. The second sealing cover 10 no longer blocks the discharge port of the discharge pipe 9. At this time, the condensed methyl silicone oil flows out along the discharge pipe 9 and is collected by the container. After all the methyl silicone oil in the loading barrel 1 flows out and is contained, the second sealing cover 10 is rotated counterclockwise to seal the discharge pipe 9. At this time, the first round of condensation of the methyl silicone oil is completed. If condensation of the methyl silicone oil is still required, repeat the above steps.
[0026] The above description is only an example of the implementation of the present invention and is not intended to limit the present invention. Any equivalent replacement made within the principle of the present invention shall be included in the protection scope of the present invention. The contents not elaborated in the present invention belong to the existing technology known to the technicians in this professional field.
Claims
1. A condensing device for producing methyl silicone oil, characterized in that: The invention comprises a charging barrel (1), a support frame (2), a condenser (3), a condensing pipe (4), a water tank (5), a first sealing cover (6), a feeding pipe (7), a telescopic pipe (8), a discharging pipe (9), a second sealing cover (10) and a controller (16). The outer wall of the charging barrel (1) is fixedly connected to the support frame (2). The top of the charging barrel (1) is threadedly connected to the first sealing cover (6). The top of the first sealing cover (6) is connected to and communicated with the feeding pipe (7). The middle of the feeding pipe (7) is connected to and communicated with the telescopic pipe (8). The bottom of the material barrel (1) is connected and communicated with a discharge pipe (9), the front side of the discharge pipe (9) is threadedly connected with a second sealing cover (10), the front side of the charging barrel (1) is fixedly connected with a controller (16), the left side of the support frame (2) is fixedly connected with a water tank (5), the left side of the water tank (5) is fixedly connected with a condenser (3), the condenser (3) is electrically connected to the controller (16), the middle part of the condenser (3) is connected and communicated with a condensation pipe (4), and the condensation pipe (4) penetrates the support frame (2) and the left side wall of the charging barrel (1) and extends into the interior of the charging barrel (1).
2. A condensing device for producing methyl silicone oil according to claim 1, characterized in that: The charging barrel (1) is a rust-proof plastic-coated iron barrel.
3. A condensing device for producing methyl silicone oil as claimed in claim 2, characterized in that: An anti-skid rubber pad is fixedly connected to the bottom of the support frame (2).
4. A condensing device for producing methyl silicone oil as claimed in claim 3, characterized in that: The material of the telescopic tube (8) is a TPE hose.
5. A condensing device for producing methyl silicone oil as claimed in claim 4, characterized in that: The invention also comprises a first motor (11), a rotating rod (12) and a scraper (13); the first motor (11) is fixedly connected to the bottom of the charging barrel (1); the first motor (11) is electrically connected to a controller (16); the output shaft of the first motor (11) penetrates into the charging barrel (1); the output shaft of the first motor (11) is connected to the rotating rod (12); the left and right sides of the rotating rod (12) are fixedly connected to the scraper (13); the rotating rod (12) and the scraper (13) are both inside the charging barrel (1).
6. A condensing device for producing methyl silicone oil as claimed in claim 5, characterized in that: It also includes a stirring plate (14) and a second motor (15); at least one second motor (15) is fixedly connected to a linear array on one side of the two scrapers (13) away from the rotating rod (12); each second motor (15) is electrically connected to a controller (16); a stirring plate (14) is fixedly connected to the output shaft of each second motor (15); and each stirring plate (14) is rotatably connected to the rotating rod (12) on one side away from the second motor (15).