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Special Notice Expired 1 notice

TECHNOLOGY/BUSINESS OPPORTUNITY Laser beam shaping for improved microstructure and defect control in laser-based metal additive manufacturing or welding processes IL-13971

Solicitation IL-13971 Copied Notice ID 5ea9afa9182a4624a71ebc815a22d6e1 Copied ENERGY, DEPARTMENT OF — LLNS – DOE CONTRACTOR
SAM.gov
Posted
Aug 27, 2025
Deadline
Sep 27, 2025
Set-aside
None
NAICS
333248
PSC
N/A

Summary

AI-generated · Aug 28, 2025

LLNL is offering a licensing/industry partnership opportunity for its laser beam shaping technology that modifies the laser profile during metal additive manufacturing or laser welding to actively control melt pool shape, depth, and flow. The phase-engineered beam shaping enables in situ energy distribution at melt-relevant timescales, aiming to refine metallic grain structure, reduce defects such as incomplete melting, porosity, spatter, and high residual stresses, and widen the processing window. The approach can enable LPBF parts to achieve more uniform microstructure and mechanical properties that resemble forged/cast materials, with potential cost and performance advantages over conventional Gaussian-beam systems and multi-laser configurations.

This is not a procurement. Companies interested in commercializing this technology should submit a statement of interest that includes their company name and address, a point of contact, and a description of relevant expertise and facilities. The submission should clearly describe how the organization can bring the technology to market, and include a concise electronic or written statement to ensure consideration, with the subject line referencing the Notice ID and title. Responses should be directed to the Innovation and Partnerships Office, noting that licensing activities require nondisclosure of proprietary information; follow the instructions for submitting to the primary and secondary points of contact and include the Notice ID/title.

Opportunity: Lawrence Livermore National Laboratory (LLNL), operated by the Lawrence Livermore National Security (LLNS), LLC under contract no. DE-AC52-07NA27344 (Contract 44) with the U.S. Department of Energy (DOE), is offering the opportunity to enter into a collaboration to further develop and commercialize its laser beam shaping for improved microstructure and defect control in laser-based metal additive manufacturing or welding processes. Background: Parts fabricated by additive manufacturing (AM) typically have mechanical properties that differ from parts produced by conventional manufacturing. There may be microstructural differences such as the presence of elongated grains or high concentrations of dislocations in an AM part. Of the different metal AM methods, laser powder bed fusion (LPBF) presents particular challenges due to the relatively small-sized powders (typically 10 - 50 um) used and the interactions of the metal with the tightly focused laser. Common defects, such as incomplete melting, gas porosity, and high residual stresses, are difficult to avoid and present significant challenges to printing reliability. These challenges often result in small windows of acceptable processing parameters that can give the optimal properties. Optimizing one property will often deteriorate another property, i.e. optimizing density can decrease microstructure uniformity or residual stress. Conversely, improving microstructure uniformity can decrease density. A large contributor to these issues is that the typical LPBF laser beam profile used have a Gaussian shape; these beams are non-optimal for the laser AM process because of laser-material interactions during printing that are undesired such as keyholing (laser-vapor interactions), spatter and porosity (melt pool instabilities) and anisotropic mechanical properties (large thermal gradients). In metal AM using directed energy deposition or in laser-welding processes, there is a need for controlling the melt pool shape, depth, and flow, which can be achieved by beam shaping. Description: LLNL researchers have developed a novel system that can shape the profile of the laser beam during printing or welding. The phase engineered approach in beam shaping enables in situ process control of its energy distribution at melt-relevant timescales. Advantages/Benefits: Refinement of metallic grain structure grants control in the printing or welding process. Arbitrary grain refinement allows LPBF printed parts to mimic mechanical properties of forge cast parts. LLNL s system is less expensive compared to multi-laser systems with faster scanning and higher energy density. With improved speed, control, and higher energy density the process window is widened when LLNL s novel approach is applied. Potential Applications: metal additive manufacturing, laser welding Development Status: Current stage of technology development: TRL ? 0-2 ? 3-5 ? 5-9 LLNL has filed for patent protection on this invention. LLNL is seeking industry partners with a demonstrated ability to bring such inventions to the market. Moving critical technology beyond the Laboratory to the commercial world helps our licensees gain a competitive edge in the marketplace. All licensing activities are conducted under policies relating to the strict nondisclosure of company proprietary information. Please visit the IPO website at https://ipo.llnl.gov/resources for more information on working with LLNL and the industrial partnering and technology transfer process. Note: THIS IS NOT A PROCUREMENT. Companies interested in commercializing LLNL's Laser beam shaping for improved microstructure and defect control in laser-based metal additive manufacturing or welding processes should provide an electronic OR written statement of interest, which includes the following: Company Name and address. The name, address, and telephone number of a point of contact. A description of corporate expertise and/or facilities relevant to commercializing this technology. Please provide a complete electronic OR written statement to ensure consideration of your interest in LLNL's Laser beam shaping for improved microstructure and defect control in laser-based metal additive manufacturing or welding processes. The subject heading in an email response should include the Notice ID and/or the title of LLNL s Technology/Business Opportunity and directed to the Primary and Secondary Point of Contacts listed below. Written responses should be directed to: Lawrence Livermore National Laboratory Innovation and Partnerships Office P.O. Box 808, L-779 Livermore, CA 94551-0808 Attention: IL-13971

From Special Notice posted on Aug 27, 2025

Notice history

1
  1. Special Notice LATEST Posted Aug 27, 2025

Details

Solicitation number IL-13971
Notice ID 5ea9afa9182a4624a71ebc815a22d6e1
Notice type Special Notice
NAICS 333248
Place of performance Livermore, California
Archive date Oct 12, 2025

Award Information

Not yet awarded

Documents

No files available

View on SAM.gov

Contacts

primary
Austin Smith

Email

Phone

secondary
Charlotte Eng

Email

Phone

Agency

ENERGY, DEPARTMENT OF
ENERGY, DEPARTMENT OF
LLNS – DOE CONTRACTOR

Place of Performance

Livermore, California
USA

Dates

Posted Aug 27, 2025 11 months ago
Last Updated Aug 06, 2026 2 days ago
Due Sep 27, 2025 10 months ago