Methyl fluorosilicone oil has upgraded its adaptability to extreme environments, strengthening the safety defense line for special industries
Hits: 413
img
Methyl fluorosilicone oil has upgraded its adaptability to extreme environments, strengthening the safety defense line for special industries
1. Petrochemical industry: Efficient defoaming ensures the stability of distillation processes
In the large-scale distillation column production scenarios of the petrochemical industry, the complex composition of materials and the high-temperature and high-pressure environment are prone to generating a large amount of foam, which seriously affects the distillation efficiency and product purity. Recently, methyl fluorosilicone oil has been applied on a large scale as an efficient defoamer. With its ultra-low surface tension, it can quickly destroy the foam structure and inhibit regeneration, ensuring the continuous and stable distillation process. Field application data shows that after adding methyl fluorosilicone oil, the foam removal efficiency of the distillation column has increased by more than 90%, the purity deviation of the product has been controlled within 0.5%, and the production efficiency has increased by 18% compared with the traditional process, providing key material support for the purification of high-end products in the petrochemical industry.
2. Aerospace field: High-temperature lubrication safeguards the safety of precision components
Methyl fluorosilicone oil has made significant progress in the application of extreme aerospace environments. It combines the high and low temperature resistance of silicone with the fuel corrosion resistance of fluorine-containing materials, making it a core lubricating material for the precision components of aircraft engines. This material can maintain stable lubrication performance within a wide temperature range of -73β to 177β. Under high-speed and high-load working conditions, it can form a uniform and firm lubricating film, effectively reducing the friction coefficient of components by 35% and decreasing wear by more than 60%. At present, it has been successfully applied to key sealing parts and transmission components of engines, significantly enhancing the reliability and service life of flight equipment, and building a solid defense line for the safe operation of aerospace.
3. Electronic precision manufacturing: Moisture-proof insulation enhances the environmental adaptability of equipment
In the field of electronic precision manufacturing, the moisture-proof and insulating properties of methyl fluorosilicone oil have been fully released, making it the core material for upgrading the environmental adaptability of high-end electronic equipment. Its low water absorption and excellent electrical insulation properties can effectively protect electronic components from moisture and chemical erosion, and it is widely used for lubrication and packaging of precision parts in equipment such as laser printers and high-end chips. In the wet and hot environment test, the failure rate of electronic components encapsulated with methyl fluorosilicone oil was reduced by 45%, and their service life was extended by more than twice. Meanwhile, as a thermal paste made from a thermal medium, its thermal conductivity is 28% higher than that of traditional materials, helping to solve the heat dissipation problem of high-end electronic devices.
4. Value in special scenarios: Filling the gap in the application of materials in extreme environments
Industry experts point out that the core advantage of methyl fluorosilicone oil lies in its high adaptability to extreme environments. Its resistance to chemical corrosion and stability over a wide temperature range fill the application gap of traditional materials in scenarios such as high-temperature distillation in petrochemicals and extreme working conditions in aerospace. With the increasing demand for environmental adaptability in high-end manufacturing, the research and development of this material in emerging special scenarios such as sealing of deep-sea exploration equipment and lubrication of polar scientific research equipment has been initiated. In the future, it is expected to further expand the application boundaries in the field of special equipment, providing material guarantees for the security of the country's key industries.