AM ResearchBiomaterials

Researchers find naturally-derived materials fit for 3D printing

According to Oak Ridge National Laboratory, the presence of ash spheres appeared to improve the flow of material for extrusion printing

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According to Oak Ridge National Laboratory, the presence of minerals called ‘ash’ in plants makes little difference to the fitness of new naturally-derived compound materials designed for additive manufacturing, a team at the Laboratory found.

The researchers found that moderate levels of ash – sometimes found as spheres in biomass – do not significantly affect the mechanical properties of biocomposites made up of corn stover, switchgrass, and PLA thermoplastic. When mixed with polylactic acid, fibers sourced from corn stover and switchgrass yielded biocomposites with satisfactory properties for 3D printing. In fact, the presence of ash spheres appeared to improve the flow of material for extrusion printing, said ORNL’s Xianhui Zhao.

“We went as high as 12% ash content on our corn stover biocomposite and found mechanical properties like stress and strain tolerance and tensile strength to be acceptable,” said Xianhui Zhao.

The research enables the use of high-ash biomass residue from biorefining that could lower the overall cost of producing sustainable fuels and materials.

Next steps include exploring more biomass materials and testing the composites in a large-volume printer at ORNL.

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Edward Wakefield

Edward is a freelance writer and additive manufacturing enthusiast looking to make AM more accessible and understandable.

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