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HaloVac® 100
HaloVac® 100 is a high-quality, precision vacuum pump fluid featuring Halocarbon® PCTFE technology for superior lubrication and broad thermal stability. It is valued for its low vapor pressure and viscosity characteristics in precision vacuum pumps and other mechanical applications.
HaloVac® 100 is a high-performance fluorinated vacuum pump fluid formulated to provide dependable lubrication and sealing performance in demanding vacuum applications. As a polychlorotrifluoroethylene fluid, it is a chemically inert, nonflammable, and nonreactive grease suitable for use in reactive applications that involve flammable, corrosive, or hazardous materials and remains compatible with oxygen, chlorine, and other reactive gases. It is engineered with excellent thermal stability and low vapor pressure to help maintain pump efficiency while minimizing fluid degradation under demanding conditions. All Halocarbon® barrier fluids are also available with anticorrosion additives upon request at no extra charge.
Specifications
Appearance: Liquid Color: Water white pH: Neutral Boiling point, °C: ≥133 Density, g/mL: 1.96 Water solubility: Insoluble Kinematic viscosity, cSt @ 20°C: 438 Kinematic viscosity, cSt @ 40°C: 86 Pour point, °C: -12 Vapor pressure, mmHg @ 25°C: 0.0004 Vapor pressure, mmHg @ 75°C: 0.025 Evaporation loss, % @ 99°C: 5 Evaporation loss, % @ 121°C: 20 Refractive index: 1.41 Heat of vaporization, kcal/mol: 17.1 CAS No 9002-83-9
Primary Chemistry:
HaloVac® 100 is a high-quality, precision vacuum pump fluid featuring Halocarbon® PCTFE technology for superior lubrication and broad thermal stability.
Features & Benefits
Precision vacuum pump fluids
Fluorinated lubricants
Low viscosity
Low vapor pressure
Excellent sealing properties
High thermal stability
PCTFE-based
Nontoxic
Chemically inert
Nonreactive
Nonflammable
Excellent lubricating properties
No sludge formation
Low surface tension
Resistance to Lewis acids
Wide material compatibility
Problems Solved
Thermal stress and fluid degradation in high-temperature conditions Poor material compatibility of fluids with plastics, polymers, metals, or elastomers Reduced operational efficiency from the chemical breakdown of fluids Hazardous reactions in oxygen, chlorine, or other reactive gases