Max PTFE Compounds

high-performance PTFE | industrial Teflon™

Max PTFE compounds combine virgin PTFE with fillers for improved strength, wear resistance, and thermal stability.

Customized to meet your specific demands.

Max PTFE compounds are advanced formulations that improve upon standard PTFE by incorporating fillers such as glass fiber, carbon, graphite, and bronze. These additives enhance mechanical strength, wear resistance, thermal conductivity, and dimensional stability while retaining the chemical resistance and low friction of pure PTFE.

  • Enhanced Wear Resistance: Longer life in abrasive environments.
  • Improved Strength: Better mechanical properties under load.
  • Thermal Conductivity: Optimized heat dissipation in dynamic systems.
  • Dimensional Stability: Maintains form under thermal cycling.
  • Chemical Compatibility: Preserves PTFE’s non-reactive nature.
  • Wear Rings and Bushings: Reinforced for higher wear resistance in moving assemblies.
  • Piston Seals: Low-friction, long-life seals in hydraulic and pneumatic systems.
  • Electrical Contacts: Conductive or insulating compound blends for custom electrical parts.
  • Pump & Valve Seats: Chemically resistant, compound-enhanced parts for critical flow control.
  • High-Performance Gaskets: Stable under pressure and temperature with tailored compound blends.
  • Fillers: Glass, carbon, graphite, bronze, stainless steel, and more.
  • Shapes: Rods, tubes, sheets, and custom-formed parts.
  • Machining Services: CNC turning and milling available.
  • Color: Varies by filler; generally gray, black, tan, or gold.
  • Custom Formulations: Tailored to your application specs.
Part # Description
Max-01 (PDF)15% Precision Milled Glass Fiber
Max-02 (PDF)25% Precision Milled Glass Fiber
Max-0335% Precision Milled Glass Fiber
Max-04 (PDF)13% Carbon/2% Graphite
Max-05 (PDF)23% Carbon/2% Graphite
Max-06 (PDF)15% Precision Milled Glass Fibers/5% Matural Molybenum Disulfide
Max-0715% Precision Milled Glass Fiber/5% Synthetic Molybenum Disulfide
Max-0810% Carbon
Max-09 (PDF)25% Carbon
Max-1010% Graphite
Max-11 (PDF)15% Graphite
Max-12 (PDF)15% Carbon Fiber
Max-13 (PDF)25% Carbon Fiber
Max-14 (PDF)40% Bronze
Max-15 (PDF)60% Bronze
Max-16 (PDF)55% Bronze/5% Natural Molybenum Disulfide
Max-1755% Bronze/5% Synthetic Molybenum Disulfide
Max-1815% Calcium Metasilicate Mineral
Max-19Maroon 15% Glass Filled
Max-2030% Glass Filled Blue
Max-21Grey Pigmented PTFE
Max-2210% Polyimide
Max-2340% Precision Milled Glass Fiber
Max-2415% Carbon Filled
Max-2528% Carbon/2% S. Moly
Max-265% S. Moly
Max-275% N. Moly
Max-28Black Pigmented PTFE
Max2930% Glass
Max-3025% Glass With Blue Pigment
Max-31Blue Pigmented PTFE
Max-32Maroon 25% Glass
Max-3310% Glass/1% Carbon
Max-3450% Stainless Steel Modified PTFE
Max-35 (PDF)50% Stainless Steel Regular PTFE
Max-36 (PDF)15% Polyimide
Max-3715% Glass/5% S. Moly/Modified PTFE
Max-3833% Carbon/2% Graphite
Max-395% Glass Modified PTFE
Max-40Yellow Pigmented PTFE
Max-4125% Glass/5% Graphite
Max-4220% Glass/5% S. Moly
Max-4315% Carbon Modifed PTFE
Max4423% Carbon/2% Graphite Modified PTFE
Max-4510% Carbon/1% Graphite Modified PTFE
Max-4623% Glass/2% S. Moly
Max-4730% Carbon
Max-4813% Carbon/2% S. Moly
Max-493S% Carbon
Max-502S% Graphite Filled PTFE
Max-51Green Glass Modified PTFE
Max-5210% Carbon/1% Graphite
Max-5325% Glass/5% S. Moly
Max-5410% Carbon/1% Graphite Regular PTFE
Max-5528% Glass Filled PTFE
Max-5625% Glass Modified PTFE
Max-5723% Carbon 2% Moly Filled PTFE
Max-6010% Glass/10% Carbon
Max-6120% Glass
Max-6235% Carbon Fiber
Max-63 (PDF)25% Glass Filled PTFE Red Pigment
Max-6425% Carbon Filled Modifed PTFE
Max-6525% Carbon Filled Modified PTFE
Max-6610% Ekanol Filled PTFE
Max-675% Graphite Filled PTFE
Max-7010% Polyimide/5% Carbon Fiber
filled PTFE
Max-7135% Carbon Fiber filled PTFE
Max-72PTFE 70% PTFE 20% Fiber Glass
5% Moly 5% Carbon Graphite
Max-7350% Nickel filled PTFE
Max-1000Repro PTFE
Max-2000Virgin PTFE
Max-3000Modified PTFE
Max-7001Blue Glass Spheres

Max PTFE compounds offer a performance edge when standard PTFE isn’t enough. Engineered to solve complex challenges, these filled formulations expand the potential of PTFE in demanding industrial settings.