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High-temperature filament: PEEK, PEKK, PEI/ULTEM and PPSU

High-temperature 3D printing is a branch of additive manufacturing devoted to functional parts that must withstand extreme conditions — heat, chemicals, mechanical stress. It uses technical polymers such as PEEK, PEKK and PEI (ULTEM), which need high processing temperatures to reach their full properties.

The technology rests mainly on the FDM/FFF process (fused filament fabrication), adapted to the demands of high-performance materials. Post-processing may be needed to get the best results.

Why choose high-temperature filament?

High-temperature filaments are the answer when you need something sturdy, long-lasting and suited to extreme conditions. They produce functional parts that resist heat, chemicals and heavy mechanical stress, using specialised materials that meet industrial standards. They also make it possible to build parts for demanding technical applications where standard materials would fail.

They are particularly recommended for:

  • Parts exposed to high temperatures.

  • Industrial settings: automotive, aerospace, electronics, energy and so on.

  • Working prototypes that must withstand thermal or chemical stress.

  • Parts needing exceptional mechanical strength and dimensional stability.

High-temperature 3D printing opens the way to fully functional parts able to withstand extreme conditions, where conventional materials fail. With polymers such as PEEK and ULTEM it becomes possible to make bespoke components for aerospace, automotive and medical use, while keeping excellent dimensional stability and high heat resistance.

Our high-temperature filaments

FilamentAt a glanceStrengthsDrawbacksApplicationsNotable points
PPSUHigh heat resistance, good chemical stability, low absorptionWithstands 180 °C, resists chemicals, can be sterilisedExpensive, needs specialised equipmentMedical, aerospace, parts under chemical stressAutoclavable, meets medical standards, very durable
PEEKHigh mechanical and thermal strength, low water absorptionWithstands 250 °C, exceptional chemical resistance, biocompatibleExpensive equipment, demanding to processAerospace, medical, automotive, chemical industryThe benchmark for high performance; can be machined after printing
PEEK-CFCarbon-fibre reinforced PEEK: very stiff, lightGreater strength, stiffness, excellent dimensional stabilityVery expensive, harder to machineStructural parts, lightweight mechanical componentsSuperior stiffness and heat resistance, light
PEEK-GFGlass-fibre reinforced PEEK: good mechanical and thermal strengthHeat resistant, stiff, more affordable than the carbon-fibre gradeLess stiff than CF, and heavierIndustrial parts, electrical componentsGood chemical resistance, suited to demanding applications
PEI 1010Heat resistant to 170 °C, good mechanical stabilityEasy to print, good chemical resistance, biocompatibleLess capable at very high temperaturesElectronics, medical, food industryGood dimensional stability, autoclave compatible
PEI 1010-CFCarbon-fibre reinforced PEI: very stiff, heat resistantGreater strength, stiffness, lightExpensive, harder to machineMechanical parts, precision parts, medicalImproved thermal and mechanical performance, light
PEI 9085Heat resistant to 150 °C, excellent chemical resistanceAutoclave resistant, biocompatible, lightExpensive, needs specialised equipmentMedical, aerospace, electronics, food industryFDA certified, meets medical and food-contact standards
PEKK A-CFCarbon-fibre reinforced PEKK: high thermal and mechanical stabilityExtreme strength, high dimensional stabilityVery expensive, complex to processAerospace, nuclear, medical, high technologyWithstands very high temperatures; can be machined after printing
PEKK CPEKK with a modified structure: easier to print, highly stableEasy to print, high thermal and mechanical strengthExpensive, needs specialised equipmentIndustrial, aerospace and medical applicationsBetter suited to 3D printing, superior mechanical properties
PEKK A ESDReinforced PEKK with electrostatic dissipation and high heat resistanceHeat resistant, ESD properties, durableExpensive, specialised equipmentElectronics, semiconductors, nuclear industryBuilt-in electrostatic dissipation, high thermal performance
PEKK CeramicCeramic-filled PEKK: very stiff, heat resistantWithstands 280 °C, ceramic appearance, excellent stabilityVery hard to machine, expensive, complex to processMoulds, tooling, high-temperature componentsCeramic appearance, very high stiffness, extreme heat resistance

Need your parts made? → Ourhigh-temperature 3D printing service.

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