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InfinX MRO KF202
InfinX MRO KF 202 is a premium-quality NLGI 2 grease and lubricating fluid from Halocarbon, engineered to provide extreme temperature performance and excellent lubricating performance to industrial applications. It contains a blend of KF 100 series oils and polytetrafluoroethylene (PTFE) thickener for their broad material compatibility and thermal stability.
InfinX MRO KF 202 is a non-additized grease mixture from Halocarbon formulated as part of their InfinX MRO KF Series product line, containing a mixture of InfinX MRO KF 100 Series Oils with polytetrafluoroethylene (PTFE) thickener. It provides excellent natural lubrication to industrial applications and protects equipment from wear and corrosion over a wide temperature range. With an operating temperature range of -60°C to 130°C, it exhibits excellent thermal stability over the lifetime of an application and is nonflammable, nonreactive, and chemically inert. InfinX MRO KF 202 is suitable for a wide range of applications, including bearings, O-rings, compressors, gearboxes, valves, process instrumentation, automotive assembly, and more.
Specifications
Appearance: Grease Color: Creamy white Odor: Odorless pH: Neutral Melting point, °C: >300 Density, g/mL: 1.90 to 2.00 Water solubility: Insoluble Decomposition temperature, °C: 350 Kinematic viscosity, cSt @ 40°C: 16 Kinematic viscosity, cSt @ 100°C: 3 NLGI grade: 2 Estimated Service Temperature Range (°C): -60 to 130 Oil Volatility, 22 hrs @ 121°C, %: 17 Density @ 20°C, g/cm³: 1.97 Primary Chemistry:
InfinX MRO KF 202 is a premium-quality NLGI 2 grease and lubricating fluid from Halocarbon.
Features & Benefits
Fluorinated lubricant
Contains KF 100 series oils thickened with polytetrafluorethylene) (PTFE)
Superior stability
Wear resistance
Extreme temperature performance
Low volatility
Corrosion resistance
Minimal viscosity changes
Nonflammable
Nonreactive
Excellent thermos–oxidative stability
Chemical resistance
Wide material compatibility
Low vapor pressure
Chemically inert
Nontoxic
Problems Solved
Thermal stress and fluid degradation in high-temperature conditions High volatility of traditional fluids, such as hydrocarbons, silicone, etc. Poor material compatibility of fluids with plastics, polymers, metals, or elastomers Reduced operational efficiency from the chemical breakdown of fluids Rust or corrosion of equipment parts
Applications
Aerospace applications General lubricant applications Automotive Chemical manufacturing Semiconductors Fluids for bearings, valves, gears, O-rings, and more