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Ethyl fluorosilicone oil: All-scenario applications from precision manufacturing to medical and health care

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Ethyl fluorosilicone oil: All-scenario applications from precision manufacturing to medical and health care

1.The "Invisible Guardian" of the electronics industry
In the chip packaging process, the coefficient of thermal expansion (CTE) of ethyl fluorosilicone oil is highly compatible with that of silicon wafers (approximately 3.2×10⁻⁶/℃), which can effectively alleviate thermal stress and increase the yield of integrated circuits by 15%. Its application in immersion cooling in data centers can reduce server energy consumption by 30% and increase the heat dissipation efficiency of a single cabinet to over 50kW, making it one of the key materials in the "East Data West Computing" project.

2. Core lubricant for high-end equipment manufacturing
After the turbine bearings of aero engines are lubricated with ethyl fluorosilicone oil, their service life is extended to 2000 hours under cyclic conditions ranging from -50 ℃ to 180℃, which is five times longer than that of traditional ester oils. In high-speed rail transformers, their insulation life has passed the IEC 60296 standard 20,000-hour test, ensuring the long-term safe operation of rail transit.

3. Innovative breakthroughs in the medical field
In ophthalmic surgeries, ethyl fluorosilicone oil, as a new vitreous replacement, has a density greater than that of water (1.12g/cm³), which can precisely flatten retinal holes. The success rate of the surgery reaches 95%, which is 10% higher than that of traditional silicone oil. Its surface modification technology has also been applied to medical catheters, reducing the bacterial adhesion rate by 99% and significantly lowering the risk of postoperative infection.

4. Cutting-edge research and development usher in a new era of materials
The research team developed highly active ethyl fluorosilicone oil by introducing long-chain vinyl groups, which can increase the crosslinking density of addition-cured fluorosilicone rubber by 30% and shorten the vulcanization time by 40%. The application of this material in smart wearable devices has increased the sensitivity of flexible sensors to 0.15mV/με, making the miniaturization of wearable medical devices possible.

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