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KetaSpire XT-920 GF30 Polyetheretherketone Syensqo PEEK Pellets

Polyetheretherketone (PEEK)
Form: Pellets
Pack: 25kgs per bag
MOQ: One pack
Sample: Available
Custom: Colormatch and sheet
Colorable: Beige

PEEK KetaSpire® XT-920 GF30 is a 30% glass fiber reinforced, natural color grade of the industry's first true a high-temperature PEEK. Glass fiber reinforcement provides higher strength and stiffness properties than unreinforced KetaSpire® XT-920 resin, making it suitable for structural applications needing robust mechanical properties, particularly those with service temperatures approaching 300°C.

The PEEK designation is based on the 2:1 ratio of ether-to-ketone functional groups in the polymer backbone. The material provides the exceptional chemical resistance of PEEK along with a 20°C (36°F) higher glass transition temperature and a 45°C (81°F) higher melting temperature than standard PEEK. This increase in thermal performance allows engineers to achieve higher mechanical strength for components used in higher temperature and higher pressure operating environments.

Although other high-temperature polyketones exhibit thermal properties on par with KetaSpire® XT, their chemical resistance is significantly inferior to standard PEEK and KetaSpire® XT. The material's unique combination of properties makes KetaSpire® XT well-suited for applications in oil & gas, transportation, electronics, chemical processing, and other industrial uses.

Why KetaSpire® PEEK?

  • Exceptional chemical resistance to organics, acids and bases

  • Very good wear and abrasion resistance

  • Best-in class fatigue resistance

  • Excellent dimensional stability

  • Excellent resistance to hydrolysis in boiling water and superheated steam

  • Superior dielectric with low loss at high temperatures and frequencies

  • Ease of processing

  • High purity


Market Applications

KetaSpire® PEEK is produced to the highest industry standards and is characterized by a distinct combination of properties, which include excellent wear resistance, best-in-class fatigue resistance, ease of melt processing, high purity, and excellent chemical resistance to organics, acids, and bases.


These properties make it well-suited for applications in many areas, including additive manufacturing, aerospace, automotive, healthcare, oil & gas, and semicon.