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CarbonX™ Carbon Fiber Reinforced Nylon 3D Filament

CarbonX™ Carbon Fiber Reinforced Nylon 3D Filament

Product catalog summary
General Properties
Density: 1.14 g/cc (ISO 1183)
Mechanical Properties
Tensile Strength: 63.9 MPa (ISO 527)
Tensile Modulus: 4387 MPa (ISO 527)
Tensile Elongation at Break: 4% (ISO 527)
Flexural Modulus: 5650 MPa (ISO 178)
Flexural Strength: 78 MPa (ISO 178)
Thermal Properties
Glass Transition Temperature (Tg): 105°C (DSC)
Heat Distortion Temperature (HDT) at 0.45MPa: 102°C (ISO 75)
Electrical Properties
Surface Resistivity: >1010 Ohm/sq (IEC 60093)
Printing Recommendations
Extruder Temperature: 240 - 270°C
Bed Temperature: 100 - 110°C
Print Speed: 50 - 70 mm/sec
Product Overview
CarbonX™ Carbon Fiber Reinforced Nylon is a high-performance 3D printing filament made with high-modulus carbon fiber and a semi-aromatic polyamide copolymer. It offers superior chemical resistance, thermal properties, mechanical properties, and dimensional stability compared to other FDM/FFF nylon materials. It is suitable for consumer-grade FDM/FFF printers with a heated print bed.
Printing Parameters
Printer Type: Desktop FDM/FFF
Nozzle: 0.4mm A2 hardened
Layer Height: 0.2mm
Infill: 100%, +/- 45°
Extrusion Temperature: 260°C
Bed Temperature: 110°C
Bed Preparation: ABS/Acetone Gel
Print Speed: 50 mm/sec
Disclaimer
The technical data is provided without charge or obligation and should not be used to establish specification limits or as the sole basis for design. It is not a substitute for testing to determine fitness for specific use.
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Catalog excerpts

CarbonX™ Carbon Fiber Reinforced Nylon 3D Filament-1

Technology... Advanced. Technical Data Sheet Rev 2.1 CarbonX™ Carbon Fiber Reinforced Nylon 3D Filament CarbonX™ Carbon Fiber Reinforce Nylon is a high-performance carbon fiber reinforced 3D printing filament. This grade was formulated utilizing high-modulus carbon fiber and an advanced semi-aromatic polyamide copolymer - making it ideal for applications that require superior chemical resistance, thermal properties, mechanical properties, and dimensional stability compared to other FDM/FFF nylon materials. Suitable for use in practically all consumer-grade FDM/FFF printers that have a heated print bed. Made 3DXTECH® in the USA. General Property Unit Standard Typical Value The reported technical data was generated from printed ISO test specimen. The general print parameters utilized are noted below. • Desktop FDM/FFF Printer • Nozzle: 0.4mm A2 hardened • Layer height: 0.2mm • Infill: 100%, +/-45° • Extrusion temp: 260°C • Bed temp: 110°C • Bed prep: ABS/Acetone Gel • Print speed: 50 mm/sec Mechanical Property Unit Standard Typical Value Tensile Strength MPa ISO 527 63.9 Tensile Modulus MPa ISO 527 4387 Tensile Elongation, Break % ISO 527 4 Flexural Modulus MPa ISO 178 5650 Flexural Strength MPa ISO 178 78 Thermal Property Unit Standard Typical Value Glass Transition Temperature [Tg] Heat Distortion Temperature [HDT] @ °C ISO 75 102 Electrical Property Unit Standard Typical Value Surface Resistivity Ohm/sq IEC 60093 >1010 Printing Recommendation Typical Range Extruder Temperature Print Speed WWW.3DXTECH.COM 571 Gordon Industrial Court, Suite E Byron Center, Ml 4931 5 USA

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