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Fluon+ FPC are PTFE compounds composed of pigments and fillers such as glass, carbon, graphite and metal powders (bronze and molybdenum disulfide). These molding powders offer enhanced wear resistance, creep resistance, thermal conductivity and electrical conductivity over virgin PTFE resins. Filled PTFE compounds also preserve several properties including low coefficient of friction, excellent chemical resistance and a wide service temperature range.

Glass-filled PTFE compounds are the most universally used. They can be utilized at service temperatures from -250°C to +260°C in chemical environments ranging from liquid oxygen to fuming nitric acid, in severe wear pads for railway cars, and for self-lubricating compressor rings for non-aluminum cylinders.

Pelletized compounds are produced in an environmentally friendly manner. They are easily processed in automatic molding equipment and are used primarily in automotive parts. Non-pelletized compounds are used in applications that demand the highest mechanical strength.

Lineup

Pelletized compounds are produced in an environmentally friendly manner. They are easily processed in automatic molding equipment and are used primarily in automotive parts. Non-pelletized compounds are used in applications that demand the highest mechanical strength.

Free-Flow (Pelletized)
  • Higher bulk density and flow properties
  • Improve key physical properties and product uniformity
  • Easily processed in automatic molding equipment
Low-Flow (Non-Pelletized)
  • Manufactured in powder form
  • Suitable for applications that demand the highest strength such as thick-walled billets

Main Product Types

Please contact us for details. We can also design products that meet your needs.

COMMON FILLERS

Fillers Features
Glass fiber
  • • Creep resistance
  • • Wear resistance
  • • High compression resistance
Graphite
  • • Low frictional properties
  • • Chemical resistance
Carbon fiber
  • • Creep resistance
  • • Wear resistance
  • • Chemical resistance
Bronze
  • • Wear resistance
  • • High load resistance
  • • High thermal conductivity
Molybdenum Disulfide
  • • Low frictional properties
  • • Chemical resistance
  • • Wear resistance
Polyimide (PI)
  • • Wear resistance
  • • Scratch resistance
Polyphenylenesulfide (PPS)
  • • Wear resistance
  • • Creep resistance
  • • Chemical resistance
  • • Thermal resistance
Aramid fiber
  • • Creep resistance
  • • Wear resistance
Econol® or Aromatic Polyester
  • • Creep resistance
  • • Wear resistance