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3DXPLA010 Sigma-Aldrich

PLA 3D printing filament

orange, diam. 2.85 mm

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Properties

Related Categories 3D Printing Filaments, 3D Printing Materials for Research and Development, Materials Science, PLA Filaments
diam.   2.85 mm
color   orange

Description

General description

3DXTech is made in the USA using 100% virgin resin and colorants - precision extruded onto 1kg reels (2.2 lbs.). The filament is then vacuum-sealed with desiccant to protect it from moisture.  

Preparation Note

Recommended Print Conditions: Extruder Temp: 190-220°C. Bed Temp: 23-60°C [No heat bed required]

Legal Information

Product of 3DXTech

3DXTech is a trademark of 3DXTech

Safety & Documentation

Safety Information

RIDADR 
NONH for all modes of transport

Documents

Certificate of Analysis (COA)

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Protocols & Articles

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

Additive Manufacturing of Permanent Magnets

M. P. Paranthaman,1 I. C. Nlebedim,2 F. Johnson,3 S. K. McCall4 1Oak Ridge National Laboratory, Oak Ridge, TN 37831, USA 2Ames Laboratory, Ames, IA 50011, USA 3GE Global Research, Niskayuna, NY 12309...
M. P. Paranthaman, I. C. Nlebedim, F. Johnson, S. K. McCall
Material Matters, 2016, 11.4
Keywords: Degradations, Deposition, Melting, Nucleic acid annealing, Renewable energy

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