Filters

Finish effect

Density

0 g/cm³ - 2 g/cm³

Print properties

Printing temperature

220 ºC - 300 ºC

Print bed temperature

0 ºC - 110 ºC

Mechanical properties

Impact strength

0 KJ/m² - 140 KJ/m²

Elongation at break

0 % - 500 %

Tensile strength

20 MPa - 1440 MPa

Tensile modulus

0 MPa - 25000 MPa

Flexural strength

0 MPa - 210 MPa

Flexural modulus

0 MPa - 63000 MPa

Surface hardness (scale)

0 - 8

Thermal properties

Softening temperature (ºC)

0 ºC - 240 ºC

Highlighted features

Nylon (PA)

Nylon/polyamide (PA) is a plastic with high strength and durability, used in most sectors of industry. Available in many formats, with special fibres and properties.

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Showing 1-48 of 85 item(s)

PA6 Pellets

Fiberon PA6-CF20 1.75 mm 500 g

Fiberlogy PA12 White
  • -40%
PA Ultrafuse Natural

Fiberon PA6-GF25 1.75 mm 500 g

Nylon FX256

Polymaker CoPA

HEXON PA CF - ISQUARED

Fiberon PA12-CF10 1.75 mm 500 g
Prusament PA11 (Nylon) Natural
CreatBot Ultra PA-GF

PAHT CF15 Ultrafuse

OBSIDIAN FR-NYLON

  • -15%
Nylon-Carbon Fiber Filament (CF15)

Fiberon PA612-CF15 1.75 mm 500 g
  • -40%
PA6 GF30 BASF Ultrafuse

PolyMide PA6-GF

PA Food Industry

NylonStrong

  • -10%
OrCA - Fishy Filaments by...
PA Bedrock 3D

Adura™ X

Nylon AF80 Aramid

Longchain Nylon (PA12)
PAHT CF15 BEDROCK 3D

Nylon PAKK (PA6)

Fiber Three PA-CF Pro

Fiber Three PA GF Pro

Fiber Three PA GF30 Pro

Fiber Three PA Pure Pro

Nylon 180 - 1.75mm
Taulman Glass Fiber Alloy Nylon

PA Rail

Fiber Three PA Pure Lite

Fiber Three PA CF Lite

R Nylon (PA12)

Tarfuse PA ESD NAT filament

Tarfuse PA CF10 filament
PPA GF Raise 3D
Industrial PA12 CF+ Raise3D
  • -5%
Essentium HTN nylon de alta temperatura
Essentium PA-CF

Obsidian PA6+CF...

Nylon Carbonio

CarbonX™ PA6+CF Gen3
PA6 GF30 BEDROCK 3D

  • -10%
Porthcurno - Fishy...

WearX™ PA6

About PA

Nylon (Polyamide) 3D printing filament stands out as a highly versatile and durable option in the world of additive manufacturing, valued for its exceptional mechanical properties, strength, and chemical resistance. Derived from thermoplastic polymers, Nylon filament offers users a robust material suitable for a wide range of applications. With its superior strength, flexibility, and impact resistance, Nylon filament caters to professionals and enthusiasts seeking high-performance materials for both functional and structural prints.

Considerations

Printing with Nylon filament typically requires a standard desktop FDM 3D printer equipped with a heated bed to ensure proper adhesion and minimize warping. Nylon filament also benefits from a closed heated chamber, especially for larger parts, to prevent warping. Adjustments to printer settings may be needed to meet the specific requirements of Nylon, including higher extrusion temperatures and slower print speeds to achieve optimal results. Additionally, Nylon filament benefits from a controlled printing environment with adequate ventilation to mitigate potential gases and odors. Another thing to consider with PA is its tendency to absorb moisture from the air, necessitating proper storage and the use of filament dryers to ensure smooth printing and optimal part quality. Despite these considerations, Nylon filament offers excellent printability and dimensional stability, providing consistent and high-quality prints with exceptional strength and durability.

Applications

Nylon filament finds extensive applications in various industries and disciplines, ranging from engineering and manufacturing to automotive and aerospace. Its strength and chemical resistance make it suitable for producing functional parts such as gears, bearings, and mechanical components subjected to heavy loads and harsh environments. Additionally, the flexibility of Nylon filament and its low-friction properties make it ideal for producing flexible parts, hinges, and moving mechanisms in robotics and machinery. With its versatility and reliability, Nylon filament continues to emerge as a preferred choice for professionals seeking robust and high-performance materials for their 3D printing projects.