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3D Systems Launches Partnership with Savannah River National Laboratory to Advance 3D Printing for Advanced Energy and National Security Applications

(Moderate)
(Very Positive)
Tags
partnership

3D Systems (NYSE: DDD) has entered a Cooperative Research and Development Agreement (CRADA) with Savannah River National Laboratory (SRNL) to accelerate additive manufacturing (AM) innovation for advanced energy generation and national security applications. The partnership is anchored at SRNL’s Advanced Manufacturing Collaborative (AMC), a national laboratory-operated facility on a public university campus in South Carolina.

According to 3D Systems, the CRADA targets joint work in advanced materials, AI/ML-enabled process optimization, equipment enhancements, manufacturing systems, cybersecurity, and workforce development. Installed 3D Systems equipment at AMC will support both cutting-edge research and demonstration of production-ready AM processes. The collaboration aims to create next-generation AM materials and scalable production solutions for high-value markets including nuclear energy, aerospace and defense, and environmental technologies, while expanding advanced manufacturing training for scientists, engineers, and technicians.

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Positive

  • New CRADA with SRNL to advance AM for energy and national security applications
  • Joint R&D scope spans materials, AI/ML process optimization, equipment enhancements, and cybersecurity
  • 3D Systems equipment installed at SRNL’s Advanced Manufacturing Collaborative to demonstrate production-ready AM processes
  • Target markets include nuclear energy, aerospace and defense, and environmental technologies
  • Workforce development focus to train next-generation AM scientists, engineers, and technicians

Negative

  • None.

Market Context

The platform record shows an active S-3 shelf registered for up to $100,000,000. That financing capa...
Analysis

The platform record shows an active S-3 shelf registered for up to $100,000,000. That financing capacity and recent Net Selling by an insider frame the CRADA’s commercial pathway as requiring execution evidence; high short positioning adds volatility risk.

Key Figures

SMR capacity under current policies: 40 gigawatts SMR capacity in accelerated scenarios: 120 gigawatts AMC opening date: August 7, 2025 +1 more
4 metrics
SMR capacity under current policies 40 gigawatts by 2050
SMR capacity in accelerated scenarios 120 gigawatts by 2050
AMC opening date August 7, 2025 Advanced Manufacturing Collaborative
3D Systems operating history 40 years company description

Previous Partnership Reports

1 past event · Latest: Jul 29 (Positive)
Same Type Pattern 1 events
Date Event Sentiment 24h Move Catalyst
Jul 29 Partnership license Positive -1.6% Military manufacturing license supported regulated Saudi defense production and localization collaboration.

24h Move is the share-price change in the day after each event; other market factors may also have contributed.

Pattern Detected

The tag-specific partnership record showed a positive partnership announcement followed by a -1.59% 24-hour move, indicating divergence.

Key Terms

crada, additive manufacturing, small modular reactors, radiation-tolerant materials
4 terms
crada regulatory
"entered into a Cooperative Research and Development Agreement (CRADA)"
A CRADA (Cooperative Research and Development Agreement) is a formal partnership between a U.S. government research laboratory and a non‑government organization to work together on developing new technology or products while sharing expertise, facilities, and results. For investors, a CRADA can speed up development, lower costs and provide access to government-tested science — like a company teaming up with a well‑equipped public lab to borrow tools and know‑how, which can raise the chances of successful commercialization.
additive manufacturing technical
"innovation in additive manufacturing (AM) for advanced energy generation"
Additive manufacturing, often called 3D printing, builds physical parts by laying down material layer by layer from a digital design, rather than cutting or molding from a solid block. It matters to investors because it can cut production time and waste, enable cheaper prototypes and customized products, and reshape supply chains—changes that can lower costs, speed new products to market, and create competitive advantages that affect a company's revenue and margins.
small modular reactors technical
"Advanced reactor designs, small modular reactors (SMRs)"
Small modular reactors are compact nuclear power plants built from factory-made modules that are assembled onsite, like snapping together building blocks to add or replace capacity. They matter to investors because they aim to lower upfront costs and shorten construction time versus traditional reactors—potentially providing steady long-term power sales and service revenue—while still carrying regulatory, construction and waste-management risks that can affect returns.
radiation-tolerant materials technical
"other radiation-tolerant materials for intricate heat exchangers"
Materials engineered to withstand damage or changes in performance when exposed to ionizing radiation (such as gamma rays, neutrons, or high-energy particles), so they keep their mechanical, electrical, or chemical properties over time. Investors care because these materials determine the reliability, service life, regulatory compliance and maintenance costs of products used in space, nuclear power, medical imaging and defense — like a protective coating that lets a device keep working in a harsh environment.

AI-generated analysis. How Rhea-AI works. Not financial advice.

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  • New CRADA drives joint development of advanced materials, AI/ML process optimization, equipment enhancements, and scalable production solutions
  • Positions additive manufacturing to support nuclear energy systems, energy infrastructure resilience, and national security missions
  • Creates pathway from collaborative research to workforce training, technology transfer and commercial-scale industrial applications

ROCK HILL, S.C., Aug. 27, 2026 (GLOBE NEWSWIRE) -- 3D Systems (NYSE: DDD) today announced that it has entered into a Cooperative Research and Development Agreement (CRADA) with Savannah River National Laboratory (SRNL) to accelerate innovation in additive manufacturing (AM) for advanced energy generation and national security applications. The partnership centers on SRNL’s Advanced Manufacturing Collaborative (AMC), leveraging the facility’s unique position as South Carolina’s only national laboratory-operated site located on a public university campus.

Through this CRADA, SRNL and 3D Systems will jointly pursue advancements in materials development, equipment enhancements, artificial intelligence and machine learning-enabled process optimization, manufacturing systems, cybersecurity, and workforce development training. These efforts will drive the creation of next-generation AM materials, real-time process optimization tools, and scalable production solutions, along with the workforce that will enable the rapid adoption of advanced manufacturing technologies.

“We look forward to partnering with SRNL at the Advanced Manufacturing Collaborative and deploying 3D Systems’ leading AM technologies,” said Jeff Graves, President and CEO of 3D Systems. “This agreement demonstrates the impact and importance of high-quality 3D printing materials and technologies on key industrial markets, particularly energy and national security, and on developing the skilled workforce those markets require.”

A primary emphasis of the collaboration is the application of additive manufacturing to critical energy challenges, with particular relevance to nuclear energy and broader energy infrastructure. Additive manufacturing enables the fabrication of complex components from advanced alloys that are difficult or impossible to produce using conventional methods. This includes high-temperature nickel-based superalloys and other radiation-tolerant materials for intricate heat exchangers with internal cooling channels, reactor internals, pumps, valves, and other high-performance components essential to advanced nuclear systems. These capabilities support improved performance under extreme conditions, reduced material waste, greater design freedom, and enhanced supply-chain resilience, all essential for advanced nuclear reactor systems, fusion energy technologies, power generation equipment, and U.S. energy infrastructure modernization.

The partnership is timed to support a period of renewed investment and innovation across the U.S. nuclear and energy sectors. Advanced reactor designs, small modular reactors (SMRs), and related energy initiatives are driving demand for manufacturing approaches that can accelerate development cycles, reduce costs, and strengthen domestic production capacity. This collaboration is timely given the projected expansion of advanced nuclear capacity worldwide. According to the International Energy Agency, small modular reactor capacity could grow to roughly 40 gigawatts under current policies or up to 120 gigawatts in accelerated scenarios by 2050, supporting rising demand for reliable, low-carbon power in applications ranging from data centers and industrial heat to grid stability and energy security1. By combining 3D Systems’ commercial AM platforms and materials expertise with SRNL’s deep domain knowledge in nuclear materials, environmental stewardship, and energy resilience, the collaboration aims to help bridge laboratory innovation with industrial readiness.

“This collaboration positions SRNL and 3D Systems to deliver groundbreaking additive manufacturing technologies, strengthen U.S. manufacturing competitiveness, and drive forward the next era of AM innovation,” said Roderick Jackson, associate laboratory director for science, energy and innovation at SRNL.

While structured as a cooperative research and development agreement, the CRADA is intentionally designed to create a clear pathway from foundational research to technology transfer and commercial application. Cutting-edge 3D Systems equipment has been installed at the AMC and is supported by facility upgrades and resident AM subject-matter experts. This infrastructure will enable both world-class research and the demonstration of production-ready processes, positioning the partners to develop scalable manufacturing solutions with broader implications for high-value industrial markets including nuclear energy, aerospace and defense, and environmental technologies.

“This agreement underscores SRNL’s commitment to building world-class research capabilities, leveraging partnerships to enhance its competitive edge and solidify its presence as a leader in AM technologies,” said G. Jeremy Leong, director of the Advanced Manufacturing Collaborative at SRNL.

In addition to technology development, the partnership expands opportunities for training and developing the next generation of AM scientists, engineers, and technicians, strengthening the regional and national advanced manufacturing workforce.

About the Advanced Manufacturing Collaborative and SRNL

SRNL’s Advanced Manufacturing Collaborative opened just one year ago with a bold purpose and a clear vision as a nexus of innovation. Today, the AMC stands proudly as a place where industry, academia, and government come together to pioneer technologies that advance national security, environmental stewardship, and energy resilience. It has quickly become a home where collaboration thrives, integration drives impact, and ideas are transformed into purposeful solutions real world solutions for the nation. The AMC officially opened on August 7, 2025.

Savannah River National Laboratory is a multi-program federally funded research and development center managed and operated by Battelle Savannah River Alliance for the U.S. Department of Energy’s Office of Environmental Management. EM transforms the nation’s environmental liabilities into opportunities for innovation, job creation, and economic growth, while ensuring safe, secure and prosperous communities across America.

About 3D Systems

For 40 years, Chuck Hull’s curiosity and desire to improve the way products were designed and manufactured gave birth to 3D printing, 3D Systems, and the additive manufacturing industry. Since then, that same spark continues to ignite the 3D Systems team as we work side-by-side with our customers to change the way industries innovate. As a full-service solutions partner, we deliver industry-leading 3D printing technologies, materials, and software to high-value markets such as medical and dental; aerospace, space and defense; transportation and motorsports; AI infrastructure; and durable goods. Each application-specific solution is powered by the expertise and passion of our employees who endeavor to achieve our shared goal of Transforming Manufacturing for a Better Future. More information on the company is available at www.3dsystems.com.

Contacts

3D Systems Investor Contact: investor.relations@3dsystems.com
3D Systems Media Contact: press@3dsystems.com
SRNL Media Relations: news@srnl.gov

Forward-Looking Statements

Certain statements made in this release that are not statements of historical or current facts are forward-looking statements within the meaning of the Private Securities Litigation Reform Act of 1995, including statements regarding the timing of product launches, regulatory approvals, market opportunities, expected revenue impact, and shareholder value. Forward-looking statements involve known and unknown risks, uncertainties and other factors that may cause the actual results, performance or achievements of the company to be materially different from historical results or from any future results or projections expressed or implied by such forward-looking statements. In many cases, forward-looking statements can be identified by terms such as “believes,” “belief,” “expects,” “may,” “will,” “estimates,” “intends,” “anticipates” or “plans” or the negative of these terms or other comparable terminology. Forward-looking statements are based upon management’s beliefs, assumptions, and current expectations and may include comments as to the company’s beliefs and expectations as to future events and trends affecting its business and are necessarily subject to uncertainties, many of which are outside the control of the company. The factors described under the headings “Forward-Looking Statements” and “Risk Factors” in the company’s periodic filings with the Securities and Exchange Commission, as well as other factors, could cause actual results to differ materially from those reflected or predicted in forward-looking statements. Although management believes that the expectations reflected in the forward-looking statements are reasonable, forward-looking statements are not, and should not, be relied upon as a guarantee of future performance or results, nor will they necessarily prove to be accurate indications of the times at which such performance or results will be achieved. The forward-looking statements included are made only as of the date of the statement. 3D Systems undertakes no obligation to update or review any forward-looking statements made by management or on its behalf, whether as a result of future developments, subsequent events or circumstances or otherwise.

1The Path to a New Era for Nuclear Energy”. International Energy Agency, (iea) January 13, 2025 


FAQ

What is the new 3D Systems (DDD) partnership with Savannah River National Laboratory?

The partnership is a Cooperative Research and Development Agreement to advance additive manufacturing for energy and national security. According to 3D Systems, it combines the company’s AM platforms with SRNL’s nuclear and energy expertise at the Advanced Manufacturing Collaborative.

How will the 3D Systems (DDD) and SRNL CRADA support advanced nuclear energy applications?

The CRADA focuses on AM solutions for complex nuclear components using advanced alloys and radiation-tolerant materials. According to 3D Systems, applications include heat exchangers, reactor internals, pumps, and valves for advanced reactors and fusion, targeting performance under extreme conditions and supply-chain resilience.

What technologies are being developed under the 3D Systems (DDD) and SRNL additive manufacturing agreement?

The agreement targets next-generation AM materials, AI/ML-enabled real-time process optimization tools, and scalable production systems. According to 3D Systems, work also covers equipment enhancements, manufacturing systems, and cybersecurity, aiming to bridge laboratory innovation with industrial-scale, production-ready processes.

How does the 3D Systems (DDD) collaboration with SRNL address workforce development in additive manufacturing?

The collaboration includes training programs for future AM scientists, engineers, and technicians. According to 3D Systems, activities at the Advanced Manufacturing Collaborative are designed to expand regional and national advanced manufacturing workforce capabilities alongside the technical research agenda.

Which industries could benefit from the 3D Systems (DDD) and Savannah River National Laboratory partnership?

Targeted industries include nuclear energy, aerospace and defense, and environmental technologies. According to 3D Systems, scalable AM solutions and new materials developed at the Advanced Manufacturing Collaborative aim to support high-value industrial markets and broader U.S. energy infrastructure modernization.

What role does the Advanced Manufacturing Collaborative play in the 3D Systems (DDD) and SRNL agreement?

The Advanced Manufacturing Collaborative serves as the central research and demonstration hub for the CRADA. According to 3D Systems, it houses installed 3D Systems equipment, facility upgrades, and resident AM experts to support both foundational research and production-ready process demonstrations.