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3DXCFR002 Aldrich

CarbonX CFR-PLA carbon fiber reinforced PLA 3D printing filament

black, diam. 1.75 mm, weight 750 gper each reel



Related Categories 3D Printing Filaments, 3D Printing Materials for Research and Development, Carbon Fiber Reinforced Filaments, Materials Science
diam.   1.75 mm
weight   750 gper each reel
color   black


Preparation Note

Recommended Print Conditions:

• Extruder: 215 - 225 °C
• Bed Temp: 23 - 60 °C (Heated bed NOT necessary)
• Nozzle: minimum 0.35mm orifice recommended
• Carbon fiber filament is more abrasive than unfilled materials; so extended use willr esult in more wear on your nozzle.

General description

CarbonX CFR-PLA is an improved carbon fiber reinforced 3D printing filament. This filament is ideal for anyone that desires a structrual component with high modulus, excellent surface quality, light weight, and ease of printing. Made using premium Natureworks PLA and high modulus carbon fiber.

• 9100 Mpa Flexural Modulus (128% improvement over unfilled ABS)

Legal Information

CarbonX is a trademark of 3DXTech

Safety & Documentation

Safety Information

NONH for all modes of transport
WGK Germany 


Certificate of Analysis

Protocols & Articles


3D Printing of Carbon Fiber-Reinforced Composites

3D printing is a type of additive manufacturing that can be used to rapidly fabricate components with highly customizable geometries, most typically using a layer-by-layer fabrication process. 3D pri...
Zhenyu Bo* (Ph.D Candidate at Northwestern University) and Jia Choi*, PhD, Product Manager

*Materials Science Product Management Team, MilliporeSigma, Milwaukee, WI.
Keywords: Deposition, Nanomaterials, Nanotubes

3D and 4D Printing Technologies: An Overview

Wonjin Jo,* Kyung Sung Chu, Heon Ju Lee, Myoung-Woon Moon 3D Printing Group, Computational Science Research Center Korea Institute of Science and Technology, 02792, Seoul, Republic of Korea *Email: w...
Wonjin Jo,* Kyung Sung Chu, Heon Ju Lee, Myoung-Woon Moon
Material Matters, 2016, 11.2
Keywords: Absorption, Automotive, Deposition, Environmental, Industries, Melting, Polymerization reactions, Positron Emission Tomography, transformation

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