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Filaments PA/NYLON Fiberlogy PA12 + GF15 filament 1.75, 0.500 kg (1.0 lbs) - natural

PA/NYLON Fiberlogy PA12 + GF15 filament 1.75, 0.500 kg (1.0 lbs) - natural
Fiberlogy PA12 + GF15 filament 1.75, 0.500 kg (1.0 lbs) - natural
Fiberlogy PA12 + GF15 filament 1.75, 0.500 kg (1.0 lbs) - natural
Fiberlogy PA12 + GF15 filament 1.75, 0.500 kg (1.0 lbs) - natural

56.1 0
In stock

  • Made in the EU
  • Country of origin: Poland, Fiberlogy
  • High durability and impact resistance
  • High temperature resistance


Model
  • PA12 + GF15 1.75 - 56.10 €


Technical data and information

NYLON PA12+GF15

Physical properties Test method Unit  Typical value
Specific density ISO 1183 g/cm3 1.13
Mechanical properties Test method Unit Typical value
Tensile strength @ Yield ISO 527 MPa -
Tensile strength @ Break ISO 527 MPa 72
Tensile modulus ISO 527 MPa 3100
Elongation @ Yield ISO 527 % -

Elongation @

Break

ISO 527 % 8
Flexural strength ISO 178 Mpa -

Flexural modulus

ISO 178 MPa 3000

Izod Impact strength (Notched) @ 23°C

ISO 180 kJ/m2 16

Thermal Properties

Test method Unit  Typical value

Heat Distortion Temperature @ 0.45 Mpa

ISO 75 °C 172

Heat Distortion Temperature @ 1.8 Mpa

ISO 75 °C 155

Vicat Softening Temperature

ISO 306 °C 170

Glass Transition Temperature Tg

DSC °C -

Meting Temperature Tm

DSC °C 178

Continuous Use Temperature (UL Yellow Card)

UL 746 °C 100


Подробно Product descriptions

NYLON PA12+GF15
DURABILITY AND RESISTANCE
PA12 + GF15 is another material offered by Fiberlogy, which is a derivative of Nylon PA12. It was created by reinforcing it with glass fiber (GF), which constitutes 15% of the product. This made it possible to significantly increase the durability, stiffness, and thermal and chemical resistance compared to pure Nylon. PA12 + GF15 has a stiffness of 3.6 GPa and a temperature resistance of up to 170°C.

Unlike Nylon with an addition of carbon fiber, available as Fiberlogy PA12 + CF5 and PA12 + CF15, this filament offers greater flexibility, making it ideal for applications operating under variable loads and exposed to impacts.

The very low shrinkage ensures high dimensional stability. This combined with high durability makes engineering excellence achievable at home. This filament does not require a heated chamber. However, due to the high abrasiveness, steel or ruby nozzles should be used for printing in order to prevent excessive wear.