DE · Topics · Resources · Design · Sponsored Content

Improve Powder Utilization by Investigating the Property Effects of Reusing AM Powders

Reduced powder costs up to 80% by reusing powder in the SLS process.

PROBLEM

High material costs are a major economic reason for continued limited application of additive manufacturing (AM) for batch production. Powders are expensive; nylon 12 powders, for example, cost between $75 and $100 per kilogram, while titanium is roughly twice that amount.

In a typical build, only 5-20% of the powder volume is fused into useful parts. The economic models must take into account the powder that is discarded, making the material in AM parts up to five times more expensive than the raw powder.

OBJECTIVE

The objective of this program was to provide a substantial reduction in material costs for orthopedic applications involved in AM part production by decreasing the amount of discarded powder.

The materials considered were titanium (Ti-6Al-4V), two types of stainless steel (316L and 17-4 PH), and nylon 12. To quantify the changes resulting from the number of reuses in selective laser sintering (SLS), a powder bed fusion process, a total of eight reuse cycles was completed for each powder. Tensile testing, printed part densities, chemical analysis, and powder characterization were performed and analyzed.

Fill out the information below to download the resource.

By downloading this content, I agree to receive the DE 24/7 Newswire, a twice weekly free email newsletter (you may choose to opt-out in the newsletter).

Latest News

Nexa3D and KVG Scale Defense Manufacturing Capabilities
The government contractor adds 15 high-speed extrusion printers from Nexa3D to meet demand for deployable 3D printing, organizations report.

KonnectAi Launches AI Quality Inspection Tool for Manufacturers
KonnectAi collaborates with Google Cloud to deliver AI-powered inspection to help manufacturers ensure quality, company says.

ASME Foundation Wins Grant to Develop Workforce
ECMC Foundation funding to help enable underserved students to pursue technical careers, ASME reports.

3D Solution, Meltio Team to Advance Metal Additive in Germany
Brauer Group's 3D Solution partners with Meltio for additive manufacturing solutions.

Next-Gen: Growing Green Space Access via Mobility
Student Competition Profile: Otis Worldwide’s “Made to Move Communities” Competition

Securing Design IP in Distributed Manufacturing
Decentralized production models increase security and risk exposure of standard design intellectual property and additive manufacturing process parameters and recipes.

All posts