20% PTFE Reinforced Self-Lubricating PEEK 180M20 Pellets

We supply VANTPOLY PEEK 180M20 20% PTFE-modified PEEK pellets for injection moulding and extrusion. Engineered for severe dry friction, high temperature, and corrosive environments, this self-lubricating grade delivers twice the wear lifespan of virgin PEEK while eliminating the creep deformation issues of pure PTFE. Contact us for technical data and quotations.

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Description

VANTPOLY 180M20 is a high-performance tribological PEEK compound formulated by blending premium PEEK resin with 20% PTFE (Polytetrafluoroethylene). Designed specifically for high-wear industrial environments, this grade combines the high mechanical strength and creep resistance of PEEK with the ultra-low coefficient of friction provided by PTFE.

Compared to virgin PEEK, VANTPOLY 180M20 offers a significantly lower coefficient of friction, optimized lower surface hardness for reduced mating-part wear, and up to double the operational service life under severe high-temperature dry friction conditions.

Furthermore, it serves as the ideal replacement for pure PTFE components that fail prematurely due to poor creep resistance and cold-flow deformation under load. Widely specified across the petrochemical, oil & gas, and industrial processing sectors, VANTPOLY 180M20 ensures reliable equipment protection and long-term sealing stability in high-temperature, high-humidity, and highly corrosive environments.

【Key Technical Highlights】

  • 2x Service Life Over Pure PEEK: Exceptional dry-friction wear resistance that doubles component operational longevity in high-wear environments.

  • Ideal PTFE Replacement: Solves the severe creep deformation and cold-flow failure of pure PTFE while maintaining ultra-low friction.

  • Superior Self-Lubrication: 20% PTFE modification significantly lowers the coefficient of friction for maintenance-free dry sliding.

  • Harsh Environment Resistance: Outstanding performance in high-temperature, high-humidity, and chemically aggressive petrochemical environments.

  • Processing Versatility: Formulated for high-precision injection moulding and profile extrusion of dynamic seals, bearings, and wear parts.

How this product is normally specified

Pellets are supplied for defined downstream processing routes such as precision injection moulding and profile extrusion.

  • Fluoropolymer modification ratio (20% PTFE lubricated PEEK)

  • Target dry-friction or lubricated sliding conditions

  • Intended processing method: precision injection moulding or profile extrusion

Where this material can fit

Common application areas for 20% PTFE modified self-lubricating PEEK pellets include:

  • Petrochemical & Chemical Equipment : High-temperature, corrosive fluid pump seals, valve seats, and packing rings

  • Industrial Wear Components : Self-lubricating bearings, bushings, thrust washers, and wear rings operating without external lubrication

  • Oil & Gas Exploration : Downhole valve components, dynamic seals, and high-humidity wear parts

  • Creep-Critical Sealing : Heavy-duty dynamic seals replacing pure PTFE to prevent cold-flow deformation under pressure

Final suitability depends on the selected grade, part design, and service environment. Where an existing grade is being replaced, send its data sheet for direct technical comparison.

What to confirm before ordering

  • Target application (dynamic seal, bearing, valve seat) and mating material

  • Operating environment (temperature, humidity, pressure, dry sliding velocity)

  • Processing method (injection moulding machine tonnage or profile extrusion)

  • Trial quantity, packaging, and delivery schedule

Send us the information you already have. We can review any missing technical details before confirming the material direction and providing an official quotation.

Request a Quote

Material overview

Understanding PEEK (Polyether Ether Ketone)

PEEK is a semi-crystalline high-performance thermoplastic. Its combination of aromatic structure and ketone/ether linkages supports heat resistance, chemical durability and mechanical strength, while its crystallinity and processing history influence stiffness, wear, shrinkage and final dimensions.

Why engineers use it

  • Strong balance of heat, chemical and mechanical performance.
  • Can be molded, extruded, machined or printed in suitable grades and equipment.
  • Good fatigue and wear potential for demanding moving or loaded parts.
  • Available in unfilled, glass-fiber, carbon-fiber and wear-modified grades.
  • Suitable for precision components where long-term reliability justifies a specialty polymer.

Limits to consider

  • High processing temperature requires capable equipment and controlled drying.
  • Crystallinity, cooling and annealing can affect dimensions and performance.
  • Reinforcement improves some properties but may reduce ductility or change machining behavior.
  • Not every chemical, wear or medical application is covered by a standard industrial grade.
  • PEEK can be unnecessary over-specification where PPS, PEI or another polymer meets the duty.

Grades and product forms

Unfilled PEEK provides the broad base-property balance. Glass-fiber grades generally target stiffness and dimensional control; carbon-fiber grades may add stiffness, strength and conductivity; bearing grades use fillers such as carbon, graphite or PTFE to tune friction and wear. Film, filament, powder, pellets and stock shapes each require different processing and purchasing information.

Performance points to review

Evaluation areaWhy it mattersInformation to provide
Temperature behaviorUseful performance under elevated or changing temperatureContinuous and peak temperature, cycle length and time at load
Mechanical responseStrength and stiffness must match the real part geometryLoad direction, stress level, impact and fatigue expectations
Environmental resistanceFluids, cleaning agents and atmosphere can change service lifeChemical name, concentration, temperature and exposure time
Dimensional controlTight-tolerance parts depend on both material and processingFinished dimensions, tolerances and assembly conditions
Electrical or insulation needsElectrical requirements may influence grade and thicknessVoltage, dielectric, conductivity or insulation target

These are engineering discussion points, not guaranteed property values. Final acceptance criteria should be agreed for the selected grade, process and order.

Typical application directions

These examples show where the material may be evaluated. They do not replace a suitability review for the finished component.

Process equipmentComponents exposed to heat, chemicals or repeated production cycles.
Electrical systemsInsulators, supports and precision parts where stable behavior matters.
MachineryWear parts, guides and structural components selected around real loads.
Laboratory equipmentParts requiring clean handling, dimensional stability or fluid resistance.
Custom componentsMachined or molded parts developed from a drawing or existing sample.
Prototype developmentTrial quantities used to confirm processing and end-use performance.

Preparing a pellet or granule project

State whether the resin will be injection molded, compression molded, extruded, compounded or used in process development. Include machine capability, part thickness, mold concept, drying and handling plan, color, filler or additive needs, and the property the finished part must retain. For an unfamiliar resin, a controlled trial lot is more useful than moving directly to production volume.

Where the application is critical, define what a successful trial looks like before material is ordered: dimensions after processing, visual condition, mechanical response, assembly fit or another measurable result.

When another material may be better

PPS, PEI, PSU/PPSU or a conventional engineering plastic may be more economical when temperature, chemical and mechanical requirements are moderate. PEEK is justified when several demanding requirements occur together or when service life and reliability outweigh raw-material cost.

We recommend sharing the current material and the reason it is being reconsidered. Cost, processability, supply form and inspection burden belong in the decision alongside technical performance.

Information needed for an accurate quotation

A useful RFQ reduces follow-up questions and helps us distinguish between a material request and a finished-part requirement.

Product formPellets or granules; natural, black or another required color
Grade directionUnfilled, reinforced, modified or application-specific requirement
QuantityTrial quantity, first order and estimated annual demand
ApplicationPart function and current material, if any
Operating temperatureContinuous range, peak temperature and cycle duration
EnvironmentChemicals, gases, moisture, pressure, vacuum or outdoor exposure
Mechanical dutyLoad, speed, impact, wear and mating components
DocumentationDrawing revision, inspection, traceability or compliance needs
Conversion processMolding, extrusion, compounding, sintering or development work
PackagingTrial pack, production packaging and moisture-control expectations

Frequently asked questions

Can I request a sample or trial quantity?

Trial quantities can be discussed according to product form and availability. Tell us what you need to prove during the trial, the intended process and the expected production quantity if the test succeeds.

Do you provide a data sheet or material documentation?

Available documentation depends on the selected material and supply route. List the documents required by engineering, purchasing or quality when you inquire so they can be checked before quotation.

Can the grade be selected from a product name alone?

No. Similar product names can cover different grades, colors, fillers and processes. Selection should be based on the finished application, environment and required property balance.

Can you supply custom dimensions or finished parts?

Custom sizes, blanks or finished parts can be reviewed where appropriate. A drawing with tolerances, quantity and material requirement is the best basis for quotation.

How should we evaluate an alternative to our current material?

Share the current grade, the part’s service conditions and the reason for changing it. A useful comparison looks at failure mode, processing, life, inspection and total project cost—not only a single property value.

What determines lead time?

Lead time depends on product form, grade, size, quantity, documentation, machining and current availability. Confirm the required delivery date and destination with the RFQ rather than assuming a standard schedule.

Discuss this product with VantPoly

Send the drawing, application and quantity. We will use the project details to prepare a practical material and supply discussion.

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