Fiberon PETG-rCF08

Verifiedcomposite
· Fiberon™ PETG-rCF08· Polymaker Fiberon PETG-rCF08· PETG-rCF08

Fiberon™ PETG-rCF08 is a 3D-printing FFF filament from Polymaker: a PETG matrix reinforced with 8 wt% recycled carbon fiber. The fibers nearly double the in-plane tensile modulus over neat PETG (3.7 GPa vs ~2 GPa) and improve surface finish, while the filament remains processable at conventional FFF temperatures (240–270 °C nozzle, 60–70 °C bed). Anisotropy is significant — through-thickness (Z) properties are 30–50 % lower than in-plane (X-Y) because of inter-layer bond limits. Glass transition is 70 °C and thermal decomposition begins at 432 °C. The filament is hygroscopic (store below 20 % RH) and abrasive; hardened-steel or ruby nozzles are recommended — brass nozzles wear out in roughly 9 hours of printing.

3d printingfff filamentcarbon fiber reinforcedpetgrecycled carbon fiberadditive manufacturingstructural prototypelightweight
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Elongation at Break(εf)2 entries
-23°C · 3D-printed FFF specimen · XY
-23°C · 3D-printed FFF specimen · Z
Flexural Strength (MOR)(σf)2 entries
ksi23°C · 3D-printed FFF specimen · XY
ksi23°C · 3D-printed FFF specimen · Z
Ultimate Tensile Strength(σUTS)2 entries
ksi23°C · 3D-printed FFF specimen · XY
ksi23°C · 3D-printed FFF specimen · Z
Young's Modulus(E)2 entries
ksi23°C · 3D-printed FFF specimen · XY
ksi23°C · 3D-printed FFF specimen · Z
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Heat Deflection — Deformation vs Temperature(δ(T))2 entries
Curve (24 pts)
-3D-printed FFF specimen
Curve (22 pts)
-3D-printed FFF specimen
Glass Transition Temperature(Tg)
°F3D-printed FFF specimen
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Density(ρ)
lb/in³23°C · 3D-printed FFF specimen
Moisture Absorption vs Time(M(t))
Curve (16 pts)
-23°C · 3D-printed FFF specimen
Verified Unverified Low confidence (<80%) Link to source