PFAS-free high-temperature resistant lubricating coating 'FFLC-111'
Supports up to 250℃! Enhances lubrication and durability across a wide temperature range, free of PFAS.
"FFLC-111" is a high-temperature resistant lubrication coating that achieves excellent lubrication and friction wear durability over a wide temperature range from room temperature to 250°C, and is free of PFAS. It demonstrates stable performance even in high-temperature environments, ensuring lubrication of machine parts under harsh conditions. This is an ideal solution for industrial equipment that requires wear resistance at high temperatures. [Features] - PFAS-free non-fluorinated coating - Excellent lubrication performance over a wide temperature range from room temperature to 250°C - Provides stable friction wear durability even at high temperatures *For more details, please refer to the PDF document or feel free to contact us.
basic information
■Product Lineup 【FFLC-101】 Maintains coating hardness even in high temperature ranges of 100℃ to 200℃, exhibiting excellent lubricity and wear resistance. It features a design that minimizes transfer while being graphite-based. 【FFLC-102】 Compared to FFLC-101, it contains a larger amount of lubricant, providing stable lubricity and wear resistance over a wide temperature range from room temperature to 200℃. It is designed to minimize transfer while being graphite-based. 【FFLC-111】 A high-performance coating that achieves stable lubricity and wear resistance over a temperature range from room temperature to 250℃. 【FFLC-211】 Features a premium lubricating coating, demonstrating high durability in friction wear tests and Taber wear tests. It provides excellent lubricity and wear resistance over a wide temperature range from room temperature to 250℃.
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Model number/Brand name
FFLC Series
Applications/Examples of results
■ Lubrication coatings for machine parts in high-temperature environments ■ Environmentally friendly industrial equipment and products ■ Alternative coatings to fluoropolymer coatings ■ Improved lubricity and coating wear resistance in 200°C to 250°C environments
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