Skip to content
Fiberlogy Nylon PA12+GF15 Natural, 1.75mm 500g

Fiberlogy Nylon PA12+GF15 Natural, 1.75mm 500g

Regular price CHF 56.90
Sale price Regular price

Fiberlogy Nylon PA12+GF15 Natural is a high-performance technical filament for demanding applications in professional 3D printing. This natural-colored filament is based on PA12 nylon and reinforced with 15% glass fibers. This results in particularly stable and durable components with excellent mechanical strength as well as high chemical and thermal resistance.

The glass fiber reinforcement gives the material significantly higher stiffness than conventional nylon PA12. At the same time, it remains more flexible than carbon fiber-reinforced nylon filaments. This combination ensures that printed components can withstand shocks, vibrations, and alternating loads exceptionally well without becoming brittle.

Another major advantage of Fiberlogy Nylon PA12+GF15 is its high temperature resistance of up to approximately 170 °C. This makes the material ideally suited for technical applications where components are permanently exposed to high temperatures or mechanical stress. Additionally, the filament offers excellent resistance to many chemicals and abrasion.

The material exhibits very low shrinkage during the printing process. This allows for the production of precise, dimensionally accurate components, even with complex geometries. Compared to many other nylon materials, PA12+GF15 can also be processed without a fully heated print chamber, which facilitates its use on many desktop 3D printers.

The natural, slightly matte color gives the printed components a technical look and is particularly suitable for functional prototypes, technical components or mechanically stressed structural parts.

Due to the abrasive nature of the glass fibers, it is recommended to use a hardened steel or ruby ​​nozzle when printing. This significantly reduces wear on standard brass nozzles and ensures consistently high print quality. Fiberlogy Nylon PA12+GF15 Natural is therefore an excellent choice for robust, durable, and precise technical components in 3D printing.