NYLON PA12 + CF 3D

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Description

It is designed for printing in FFF/FDM technology and available in different colors. 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. twice the tensile strength of Nylon PA12 more than twice the stiffness of Nylon PA12, higher thermal resistance compared to unmodified Nylon PA12 (up to 160°C), high chemical resistance.

This material data has been provided by Advanced Manufacturing Technologies.

All metrics apply to room temperature unless otherwise stated. SI units used unless otherwise stated.
Equivalent standards are similar to one or more standards provided by the supplier. Some equivalent standards may be stricter whereas others may be outside the bounds of the original standard.

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Properties

General

PropertyValueComment

Density

1.07 g/cm³

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ISO 483

Dimension

PropertyValueComment

Diameter

1.75 mm

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Tolerance +/- 0.02 mm

Mechanical

PropertyValueComment

Elastic modulus

8 GPa

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ISO 527

Impact strength, Charpy unnotched

60 kJ/m²

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ISO 179-1

90 kJ/m²

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ISO 179-1

Tensile strength

125 MPa

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ISO 527

Thermal

PropertyValuePressureComment

Heat deflection temperature

170 °C

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0.45 MPa

ISO 75-1/2

170 °C

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1.8 MPa

ISO 75-1/2

Melting point

178.0 °C

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ISO 3146

Flammability

Class HB (UL 94)

Technological properties

Property
Application areas

PROTOTYPES: car parts, drones, high durability mechanical components - Substitutes of metal elements - END-USE PRODUCTS: part engineering and tool production based on 3D printing

Fillers

5% Carbon Fiber

Processing methods

Print temperature: 255 – 270°C, bed temperature: 80-100°C - bed heating required