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The breakthrough in new fluorosilicone rubber technology empowers high-end applications in multiple fields

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The breakthrough in new fluorosilicone rubber technology empowers high-end applications in multiple fields

Recently, the field of fluorosilicone rubber has witnessed a key technological breakthrough. The new fluorosilicone liquid elastomer material has achieved dual breakthroughs in performance upgrading and process optimization. It features excellent fuel resistance, oil resistance, and efficient processing advantages, providing more reliable material solutions for high-end manufacturing fields such as automobiles, aerospace, and electronics, and promoting the upgrading and development of related industries.

1. Technological innovation: The hardness gradient product family has been expanded with more precise performance adaptation
The newly launched fluorosilicone liquid silicone rubber, on the basis of the original products, has added hardness options of 60 and 70 hardness testers, thus completing the product series of perfluorinated and partially fluorinated liquid silicone rubber. This material, through molecular structure optimization, has achieved a perfect integration of the core advantages of fluorosilicone rubber in resisting non-polar hydrocarbon fuels, oils and solvents with the ease of processing liquid silicone rubber. Test data shows that the low-hardness model offers excellent flexibility for dynamic seals, while the high-hardness model demonstrates high modulus and low compression set characteristics, precisely matching the requirements of different working conditions.

2. Process Upgrade: Automated production reduces costs and increases efficiency, making it suitable for large-scale manufacturing
The new technology adopts an optimized rheological formula design, which can be adapted to standard injection molding equipment for automated production, effectively shortening the production cycle, reducing labor costs and energy consumption, and at the same time reducing waste generation. In the scenario of large-scale molding of small and complex components, this material demonstrates excellent flow performance and rapid curing characteristics, with a significant improvement in dimensional stability. The first-time qualification rate of products can reach over 98%, providing technical support for the large-scale production of high-end seals, connectors and other components.

3. In the field of new energy vehicles: The surging demand drives the iteration of materials
Driven by the rapid development of the new energy vehicle industry, the market demand for fluorosilicone rubber has continued to rise. Data shows that the demand for high-temperature and corrosion-resistant silicone fluororubber seals in a single electric vehicle is approximately 3.2 times higher than that in traditional fuel vehicles. The new type of fluorosilicone rubber, with its excellent high-temperature resistance (-60℃ to over 250℃) and chemical corrosion resistance, can effectively adapt to key parts such as battery sealing systems and high-voltage wiring harnesses, providing a core guarantee for enhancing the reliability and safety of new energy vehicles.

4. Expanded applications: Blossoming in multiple areas from aerospace to consumer electronics
In addition to the automotive field, the new type of fluorosilicone rubber has begun to expand its application into aerospace, consumer electronics and other fields. In the aerospace field, it can be used as sealing parts for aircraft fuel systems and can withstand the erosion of media in extreme environments. In the field of consumer electronics, fluorosilicone rubber modified by surface fluorination has a friction coefficient reduced from 0.68 to 0.38, featuring excellent anti-slip and anti-fouling performance, and is expected to be widely used in contact components of wearable devices.

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