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Filaments PA/NYLON Fiberlogy PA12 + CF15 filament 1.75, 0.500 kg (1.0 lbs) - black

PA/NYLON Fiberlogy PA12 + CF15 filament 1.75, 0.500 kg (1.0 lbs) - black
Fiberlogy PA12 + CF15 filament 1.75, 0.500 kg (1.0 lbs) - black
Fiberlogy PA12 + CF15 filament 1.75, 0.500 kg (1.0 lbs) - black
Fiberlogy PA12 + CF15 filament 1.75, 0.500 kg (1.0 lbs) - black
Fiberlogy PA12 + CF15 filament 1.75, 0.500 kg (1.0 lbs) - black

56.1 0
In stock

  • Made in the EU
  • Country of origin: Poland, Fiberlogy
  • High thermal resistance
  • Antistatic properties


Model
  • PA12 + CF15 1.75 - 56.10 €


Technical data and information

NYLON PA12+CF15

Physical properties Test method Unit  Typical value
Specific density ISO 1183 g/cm3 1.07
Mechanical properties Test method Unit Typical value
Tensile strength @ Yield ISO 527 MPa -
Tensile strength @ Break ISO 527 MPa 120
Tensile modulus ISO 527 MPa 3100
Elongation @ Yield ISO 527 % -

Elongation @

Break

ISO 527 % 5
Flexural strength ISO 178 Mpa -

Flexural modulus

ISO 178 MPa 7000

Izod Impact strength (Notched) @ 23°C

ISO 180 kJ/m2 15

Thermal Properties

Test method Unit  Typical value

Heat Distortion Temperature @ 0.45 Mpa

ISO 75 °C 170

Heat Distortion Temperature @ 1.8 Mpa

ISO 75 °C 150

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 + CF is yet another manifestation of the technical capabilities of filament PA12 which has been reinforced with 5% and 15% addition of carbon fibers. It is characterized by high thermal resistance and less shrinkage compared to the unmodified Nylon PA12.

The application of carbon fiber allows for a reduction of weight of the component while maintaining its high structural stiffness.

PA12 + CF has a range of applications across the industry, including the automotive and the engineering sectors, lending itself to the creation of advanced prototypes, drones and final products which require increased durability while reducing their weight.