At Additive-X, we stock PA filament designed for reliable performance across a wide range of 3D printers. Whether you’re running long production jobs or experimenting with complex geometries, these filaments won’t let you down.
What Is PA Filament?
PA filament is a high-performance nylon-based material used widely in industrial 3D printing. Thanks to its excellent impact resistance and low friction, it’s perfect for printing moving parts, mechanical assemblies, and components exposed to dynamic loads or abrasion.
With naturally low moisture absorption (in newer variants) and high heat resistance, PA filament handles tough jobs without compromising printability. It’s a true workhorse material, whether you're printing jigs and fixtures or low-run production parts.
Key Benefits of PA Filament
There’s a reason professional engineers and designers choose PA filament again and again. It offers a powerful combination of features:
Toughness and durability, even under stress
• Chemical resistance, great for industrial environments
• Flexibility with fatigue resistance, ideal for moving parts
• Smooth finish and strong layer adhesion, improving part longevity
• Temperature and wear resistance, suitable for demanding applications
Need something even more rugged? Many PA filaments are also compatible with reinforcement additives like carbon fibre or glass fibre, further expanding their capabilities.
Reliable Printing, Professional Results
Our range includes filaments designed for open and enclosed 3D printers alike, with advanced formulations that minimise warping and boost first-layer success.
Bambu Lab users will also find compatible PA options that perform beautifully with the P1 Series and above. With the right setup, including hardened nozzles and dry storage solutions.
Ready to Print with PA?
If you’re looking to produce strong, durable, and flexible prints that hold up under pressure, PA filament is the tool for the job.
Got a specific application in mind? Our team is here to help you choose the right filament for the task.