Close Menu
AM ChronicleAM Chronicle
  • Content
    • News
    • Insights
    • Case Studies
    • AM Infocast
  • Focus Regions
    • India
    • Asia Pacific
    • Middle East
    • North America
    • Europe
  • Industries
    • Automotive
    • Aerospace
    • Defence
    • Energy
    • Construction
    • Healthcare
    • Tooling
    • Engineering
  • Training
  • Magazine
    • Digital Issues
    • Print Subscription
  • Events
Facebook Instagram YouTube LinkedIn
  • About us
  • Media Kit
  • Contact us
Facebook Instagram YouTube LinkedIn
AM ChronicleAM Chronicle
  • Content
    1. News
    2. Insights
    3. Case Studies
    4. AM Infocast
    5. View All
    Institute for Stem Cell and Regenerative Medicine The tiny Suspended Tissue Open Microfluidic Patterning, or STOMP device, for tissue engineering studies.

    3D-Printed Device Advances Human Tissue Modeling

    May 27, 2025
    Palantir and Divergent

    Palantir and Divergent Form Partnership to Revolutionize On-Demand Advanced Manufacturing

    May 27, 2025
    World's tallest 3D-printed tower unveiled in Switzerland, Photo by Birdviewpicture

    World’s Tallest 3D-Printed Tower Constructed at Swiss Alps

    May 22, 2025
    Altair Supports MAM4HP Project to Advance Additive Manufacturing in Italy

    Altair Supports MAM4HP Project to Advance Additive Manufacturing in Italy

    May 20, 2025
    Credits: Outokumpu

    Outokumpu launches stainless steel metal powder in additive manufacturing for aerospace and aviation industry applications

    May 22, 2025
    Why Bioprinting Innovations can elevate healthcare and industrial AM

    Why Bioprinting Innovations can elevate healthcare and industrial AM

    May 21, 2025
    Why Additive Manufacturing Excels in Some Applications but Fails in Others?

    Why Additive Manufacturing Excels in Some Applications but Fails in Others?

    May 21, 2025
    Source: CEAD

    CEAD Set to Launch 3D-Printed Boat Manufacturing Facility

    May 19, 2025
    Formlabs fuse 1+

    How Imaginarium Helped Kaash Studio Scale with the Right 3D Printing Technology

    April 12, 2025
    The Formlabs Fuse 1+ 30W

    Kaash Studio Optimized Service Bureau Operations with Formlabs 3D Printers- Case Study

    January 30, 2025
    Namthaja Unveils Worlds First 3D Printed Marine Gangway

    Worlds First 3D Printed Marine Gangway unveiled by Namthaja

    August 8, 2024
    RusselSmith Material Performance Improvement Whitepaper

    RusselSmith Whitepaper : Improving Material Performance with Microstructural Refinement

    May 9, 2024
    Sustainable Production of Metal Powder for Additive Manufacturing

    Sustainable Production of Metal Powder for Additive Manufacturing with Bruce Bradshaw

    February 15, 2024
    Meeting Evolving Customer Demands in the Additive Manufacturing Industry with Tyler Reid

    Meeting Evolving Customer Demands in the Additive Manufacturing Industry with Tyler Reid

    February 9, 2024
    Innovation is at the heart of AMUG with Diana Kalisz

    Innovation is at the heart of AMUG with Diana Kalisz

    March 7, 2023
    3D Printing Workshops at AMUG with Edward Graham

    3D Printing Workshops at AMUG with Edward Graham

    March 7, 2023
    Institute for Stem Cell and Regenerative Medicine The tiny Suspended Tissue Open Microfluidic Patterning, or STOMP device, for tissue engineering studies.

    3D-Printed Device Advances Human Tissue Modeling

    May 27, 2025
    Palantir and Divergent

    Palantir and Divergent Form Partnership to Revolutionize On-Demand Advanced Manufacturing

    May 27, 2025
    Credits: Outokumpu

    Outokumpu launches stainless steel metal powder in additive manufacturing for aerospace and aviation industry applications

    May 22, 2025
    World's tallest 3D-printed tower unveiled in Switzerland, Photo by Birdviewpicture

    World’s Tallest 3D-Printed Tower Constructed at Swiss Alps

    May 22, 2025
  • Focus Regions
    • India
    • Asia Pacific
    • Middle East
    • North America
    • Europe
  • Industries
    • Automotive
    • Aerospace
    • Defence
    • Energy
    • Construction
    • Healthcare
    • Tooling
    • Engineering
  • Training
  • Magazine
    • Digital Issues
    • Print Subscription
  • Events
Subscribe
AM ChronicleAM Chronicle
Home » News

Researchers 3D Print First High-Performance Nanostructured Alloy That’s Both Ultrastrong and Ductile

News By AM Chronicle EditorAugust 4, 20224 Mins Read
Wen chen full background scaled e1659592878204
Wen Chen, assistant professor of mechanical and industrial engineering at UMass Amherst, stands in front of images of 3D printed high-entropy alloy components (heatsink fan and octect lattice, left) and a cross-sectional electron backscatter diffraction inverse-pole figure map demonstrating a randomly oriented nanolamella microstructure (right).
LinkedIn Twitter Facebook WhatsApp Pinterest Email Copy Link

Researchers at UMass Amherst and Georgia Tech have 3D printed a dual-phase, nanostructured high-entropy alloy that exceeds the strength and ductility of other state-of-the-art additively manufactured materials.

More from the News 

A team of researchers at the University of Massachusetts Amherst and the Georgia Institute of Technology has 3D printed a dual-phase, nanostructured high-entropy nanostructured alloy that exceeds the strength and ductility of other state-of-the-art additively manufactured materials, which could lead to higher-performance components for applications in aerospace, medicine, energy and transportation. The research, led by Wen Chen, assistant professor of mechanical and industrial engineering at UMass, and Ting Zhu, professor of mechanical engineering at Georgia Tech, was published in the August issue of the journal Nature.

Over the past 15 years, high entropy alloys (HEAs) have become increasingly popular as a new paradigm in materials science. Comprised of five or more elements in near-equal proportions, they offer the ability to create a near-infinite number of unique combinations for alloy design. Traditional alloys, such as brass, carbon steel, stainless steel and bronze, contain a primary element combined with one or more trace elements.

Additive manufacturing, also called 3D printing, has recently emerged as a powerful approach of material development. The laser-based 3D printing can produce large temperature gradients and high cooling rates that are not readily accessible by conventional routes. However, “the potential of harnessing the combined benefits of additive manufacturing and HEAs for achieving novel properties remains largely unexplored,” says Zhu.

Chen and his team in the Multiscale Materials and Manufacturing Laboratory combined an HEA with a state-of-the-art 3D printing technique called laser powder bed fusion to develop new materials with unprecedented properties. Because the process causes materials to melt and solidify very rapidly as compared to traditional metallurgy, “you get a very different microstructure that is far-from-equilibrium” on the components created, Chen says. This microstructure looks like a net and is made of alternating layers known as face-centered cubic (FCC) and body-centered cubic (BCC) nanolamellar structures embedded in microscale eutectic colonies with random orientations. The hierarchical nanostructured HEA enables co-operative deformation of the two phases.

“This unusual microstructure’s atomic rearrangement gives rise to ultrahigh strength as well as enhanced ductility, which is uncommon, because usually strong materials tend to be brittle,” Chen says. Compared to conventional metal casting, “we got almost triple the strength and not only didn’t lose ductility, but actually increased it simultaneously,” he says. “For many applications, a combination of strength and ductility is key. Our findings are original and exciting for materials science and engineering alike.”

“The ability to produce strong and ductile HEAs means that these 3D printed materials are more robust in resisting applied deformation, which is important for lightweight structural design for enhanced mechanical efficiency and energy saving,” says Jie Ren, Chen’s Ph.D. student and first author of the paper.

Zhu’s group at Georgia Tech led the computational modeling for the research. He developed dual-phase crystal plasticity computational models to understand the mechanistic roles played by both the FCC and BCC nanolamellae and how they work together to give the material added strength and ductility.

“Our simulation results show the surprisingly high strength yet high hardening responses in the BCC nanolamellae, which are pivotal for achieving the outstanding strength-ductility synergy of our nanostructured alloy. This mechanistic understanding provides an important basis for guiding the future development of 3D printed HEAs with exceptional mechanical properties,” Zhu says.

In addition, 3D printing offers a powerful tool to make geometrically complex and customized parts. In the future, harnessing 3D printing technology and the vast alloy design space of HEAs opens ample opportunities for the direct production of end-use components for biomedical and aerospace applications.

Additional research partners on the paper include Texas A&M University, the University of California Los Angeles, Rice University, and Oak Ridge and Lawrence Livermore national laboratories.

Story by Melinda Rose, Associate News Editor at UMass Amherst.

Jie with sample
UMass Amherst Ph.D. student Jie Ren holds a miniature heatsink fan, one of the 3D printed high-entropy alloy components made in Wen Chen’s lab. The microstructure’s atomic rearrangement gives rise to ultrahigh strength as well as enhanced ductility, research by UMass Amherst and Georgia Tech shows.

Subscribe to AM Chronicle Newsletter to stay connected:  https://bit.ly/3fBZ1mP 

Follow us on LinkedIn: https://bit.ly/3IjhrFq 

Visit for more interesting content on additive manufacturing: https://amchronicle.com/

Original Source

3d printing additive manufacturing Georgia Tech high-entropy alloy Metal Additive Manufacturing Nanostructured Alloy research UMass Amherst
AM Chronicle Editor

LATEST FROM AM
Institute for Stem Cell and Regenerative Medicine The tiny Suspended Tissue Open Microfluidic Patterning, or STOMP device, for tissue engineering studies. News

3D-Printed Device Advances Human Tissue Modeling

May 27, 20254 Mins Read
Palantir and Divergent News

Palantir and Divergent Form Partnership to Revolutionize On-Demand Advanced Manufacturing

May 27, 20252 Mins Read
Credits: Outokumpu Insights

Outokumpu launches stainless steel metal powder in additive manufacturing for aerospace and aviation industry applications

May 22, 20252 Mins Read

CONNECT WITH US

  • 126 A, Dhuruwadi, A. V. Nagvekar Marg, Prabhadevi, Mumbai 400025
  • [email protected]
  • +91 022 24306319
Facebook Instagram YouTube LinkedIn

Newsletter

Subscribe to the AM Chronicle mailer to receive latest tech updates and insights from global industry experts.

SUBSCRIBE NOW

Quick Links

  • News
  • Insights
  • Case Studies
  • AM Training
  • AM Infocast
  • AM Magazine
  • Events

Media

  • Advertise with us
  • Sponsored Articles
  • Media Kit

Events

  • AM Conclave 2025
    24-25 September 2025 | ADNEC, Abu Dhabi
  • AMTECH 2025
    3-4 December 2025 | KTPO, Whitefield, Bengaluru
CNT Expositions & Services LLP
© 2025 CNT Expositions & Services LLP.
  • Privacy Policy
  • Cookie Policy

Type above and press Enter to search. Press Esc to cancel.



0 / 75