NIST Develops Metal 3D Printing Technique Using Elliptical Laser Beams for Alloys-on-Demand

NIST researchers demonstrate a metal 3D printing method using elliptical laser beams to stir molten metal and create alloys on demand, requiring only a software update for existing machines.

NIST metal 3D printing elliptical laser technique
NIST metal 3D printing elliptical laser technique

Researchers at the National Institute of Standards and Technology (NIST) have demonstrated a metal 3D printing method that uses elliptical laser paths to stir molten metal. This approach enables alloy mixing during the print process, allowing for on-demand creation of new materials. The technique requires no new hardware; existing machines can implement it via a software update.

NIST metal 3D printing elliptical laser technique
NIST researchers developed a metal 3D printing method using elliptical laser paths to stir molten metal.

Technique verified at Argonne National Laboratory

The method was developed at NIST and verified at Argonne National Laboratory. Researchers fused RHEA-19 high-entropy alloy with titanium alloy to create a new alloy. In-situ X-ray diffraction at the Advanced Photon Source captured atomic structure during solidification in under a second.

The Advanced Photon Source produces X-ray beams roughly 500 billion times brighter than a dental scanner, according to NIST. This capability allowed researchers to observe the alloy formation process in real time. The technique could enable on-demand alloy blending and graded composition parts for jet turbine blades.

Advanced Photon Source X-ray beams
The Advanced Photon Source at Argonne National Laboratory provided X-ray beams to observe alloy formation.

Ho Yeung, a NIST researcher, stated that commercial 3D printer software cannot make these patterns. The team developed custom software to control the elliptical laser paths. Potential applications include creating parts with varying material properties in a single print.

The technique blends alloys that resist mixing without new hardware, according to NIST. This means machines already in service could adopt the method through a software update. The research was published in the journal Additive Manufacturing.

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