Filaments
PCTG+GF Filament
PCTG+GF Filament – S2
Fiberlogy PCTG+GF is a technical 3D printing filament reinforced with 10% glass fiber. It combines high impact strength, stiffness, and chemical resistance with ease of printing and low shrinkage. The finished models feature a matte, rough finish, making it an ideal material for machine parts, tools, and outdoor applications.
PEI 9085 Filament
PETG FR V0 – S2 Filament
Fiberlogy PET-G V0 is a flame-retardant 3D printing filament belonging to the FR (Flame Retardant) family. It combines the ease of printing typical of PET-G with fire resistance compliant with the UL94 V0* standard. Ideal for producing electronics enclosures, mechanical components, and other parts exposed to high temperatures or contact with fire.
PETG FR V0 – S2-Filament
PETG FR V0 Filament
PETG Matte Filament – S2
Fiberlogy Matte PET-G is a modern 3D printing filament that combines the strength of PET-G with an elegant, matte finish. The filament effectively hides layer lines, ensuring aesthetically pleasing and durable prints. It’s ideal for projects where both strength and an attractive appearance are important.
PETG+CF Filament – S2
Fiberlogy PETG+CF is a 3D printing filament that combines the ease of printing of PET-G with 10% carbon fiber, providing exceptional stiffness, mechanical strength, and an elegant carbon finish. It is ideal for prototypes, machine parts, and projects requiring high strength while maintaining an attractive appearance.
PETG+PTFE Filament
PETG+PTFE Filament – S2
Fiberlogy PETG+PTFE is a 3D filament that combines the ease of printing of PET-G with a 10% PTFE (Teflon) additive, ensuring low friction, wear resistance, and extended service life for prints. It is ideal for sliding components, gears, and mechanical parts that require durability and reliability.
PLA Impact Filament
PLA Impact Filament – S2
IMPACT PLA is a 3D filament that combines the ease of printing of PLA with strength comparable to that of ABS. It features high impact strength, crack resistance, and greater heat resistance than PLA. Ideal for functional prototypes and tools operating in demanding conditions, while maintaining high-quality details.






