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Halocarbon® 200 Oil
Halocarbon® 200 Oil is a high-molecular-weight polychlorotrifluoroethylene (PCTFE) (CAS No. 9002-83-9) fluid from Halocarbon manufactured using a controlled polymerization process. It is chemically inert, nonflammable, and nonhazardous for reactive gas services and other demanding industrial applications.
Appearance: Liquid Color: Water white pH: Neutral Boiling point, °C: ≥133 Pour point, °C: -12 Cloud point, °C: 2 Density, g/mL: 1.95 Water solubility: Insoluble Viscosity, cSt @ 37.8°C: `200 Viscosity, cSt @ 71.1°C: 26 Refractive index: 1.412 CAS No. 9002-83-9
Primary Chemistry:
Halocarbon® 200 Oil is a high-molecular-weight polychlorotrifluoroethylene (PCTFE) fluid from Halocarbon.
Halocarbon® 200 Oil is a chemically inert polychlorotrifluoroethylene (PCTFE)-based fluid engineered for demanding applications that require thermal stability, low volatility, and broad material compatibility. As a medium-viscosity fluorinated oil, it provides reliable lubrication and sealing performance across a wide temperature range while maintaining resistance to aggressive chemicals and reactive gases. It is recommended for use in reactive gas service applications and as a general-purpose lubricant for bearings, gearboxes, compressors, and pumps.
Specifications
Appearance: Liquid Color: Water white pH: Neutral Boiling point, °C: ≥133 Pour point, °C: -12 Cloud point, °C: 2 Density, g/mL: 1.95 Water solubility: Insoluble Viscosity, cSt @ 37.8°C: `200 Viscosity, cSt @ 71.1°C: 26 Refractive index: 1.412 CAS No. 9002-83-9
Primary Chemistry:
Halocarbon® 200 Oil is a high-molecular-weight polychlorotrifluoroethylene (PCTFE) fluid from Halocarbon.
Features & Benefits
Reactive Gas Lubricants
Unique molecular structure
Low temperature fluidity
Medium viscosity
PCTFE-based
Chemically inert
Low molecular weight
Nontoxic
Nonflammable
Nonreactive
No sludge formation
Superior stability
Excellent thermal stability over a wide temperature range
Good heat transfer properties
Excellent lubrication
High dielectric strength
Low compressibility
Excellent retention properties
Compatible with most plastics, metals, and elastomers
Highly controlled polymerization development
Resists water adsorption
Minimized electrical leakage
Problems Solved
Thermal stress and fluid degradation in high-temperature conditions High volatility of traditional fluids such as hydrocarbons, silicones, etc. Poor safety properties of other lubricants and fluids containing hazardous ingredients 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 Breakdown of lubricants and fluids in reactive chemical systems Hazardous reactions in oxygen, chlorine, or other reactive gases
Applications
Reactive gas service applications Aerospace Lubricants Wire drawing fluids Suspension fluids Biological staging oils Hydraulic fluids Instrument Fill Fluid Low temperature baths Metalworking fluids Chemical manufacturing Compressor applications Vacuum pump fluids Mechanical seal barrier fluids Low temperature calibration applications