Special Notice
TECHNOLOGY LICENSING OPPORTUNITY: Extremely Light Foam (ELF)
Department of Energy · Sol. S-167610
Due in 53 days
AI summary Beta
No AI summary for this notice yet.
Save it to generate your own AI brief in its bid workspace: a plain-English summary, the red flags, and how well your business fits.
Is this a fit for your business?
Create a free accountFedReady checks notices like this against your business profile, tracks deadlines, and alerts you to new matches. Creating an account is free.
Key facts
- Response due
- Dec 2, 2026, 12:00 AM UTC
- Posted
- May 13, 2026
- Notice type
- Special Notice
- Solicitation
- S-167610
- Agency
- Department of Energy
- Office
- Triad - DOE Contractor
- Set-aside
- No Set aside used
- NAICS
- 325998
- Product/service code
- 9330
- Business type
- Manufactured parts & equipment
- Place of performance
- Los Alamos, NM, 87545
- Contracting contact
- Satya Srinivasanlicensing@lanl.gov
- Versions
- 2 (amended since first posted)
Before you respond
Full notice text from SAM.gov
ELF (Extremely Light Foam) is a new way to make structural foam that is both much lighter and much stronger than today’s alternatives. The process, developed by scientists at Los Alamos National Laboratory, uses common epoxy materials mixed with tiny hollow particles and a temporary liquid that later evaporates. As the material cures, this liquid naturally leaves behind a well-organized network of empty space, creating a foam that is mostly air but still highly resistant to crushing and pressure. The result is a material that can be up to twice as strong at the same weight as conventional foams, while remaining easy to pour, mold, and manufacture at scale using safe, commercially available ingredients. Because it combines low weight, high strength, simple processing, and design flexibility, ELF is well suited for commercial applications in marine systems, aerospace and transportation, lightweight structural panels, insulation, and impact-absorbing components. How it Works: The technology works by intentionally using a temporary liquid during the curing of a polymer foam to shape its internal structure. When the liquid-filled mixture hardens, the liquid naturally separates from the solid material and later evaporates, leaving behind a network of tiny, well-distributed voids between microscopic hollow particles embedded in the polymer. By carefully controlling the type of liquid used and the curing conditions, these voids form in a predictable and repeatable way rather than randomly. This controlled internal architecture is what gives the material its unusual combination of low weight and high resistance to crushing, while still allowing the material to be poured, molded, and manufactured using standard industrial processes and readily available materials Key Advantages: Exceptionally low weight while maintaining high structural integrity, achieving densities well below conventional structural foams High resistance to crushing and compression, even under extreme pressures Simple, low-cost manufacturing process using standard equipment and commercially available materials Easy to cast and mold into complex shapes and large parts without specialized tooling Safe and non-hazardous materials, supporting easier handling and regulatory acceptance Multifunctional performance, offering structural support, thermal insulation, and impact energy absorption in a single material Market Applications: Marine & Offshore (lightweight buoyancy materials, pressure-tolerant structures) Aerospace (weight-saving structural cores, multifunctional insulation materials) Defense & Security (lightweight structural components, energy-absorbing materials) Transportation & Mobility (mass reduction materials, impact and vibration mitigation) Advanced Composites & Manufacturing (core materials for sandwich structures, moldable lightweight fillers) Energy & Industrial Systems (lightweight structural insulation, protective housings) Thermal & Acoustic Solutions (lightweight insulation panels, noise-damping materials) Development Status: TRL 3 US Patent pending LA-UR-26-21224 LANL Tech Partnerships: Unlock the Innovative Potential Los Alamos National Laboratory offers a wide range of cutting-edge technologies and capabilities that may provide your company with a competitive edge in the market and unlock the innovative potential that can enhance, refine, and revolutionize your products. LANL’s licensing program focuses on moving inventions developed by our researchers to commercial innovations. Patented and patent pending inventions and copyrighted software are available to existing and start-up companies through exclusive and non-exclusive licensing agreements. For specific discussions, please contact licensing@lanl.gov. Note: This is not a call for external services for the development of this technology. https://www.lanl.gov/engage/collaboration/feynman-center/partner-with-us/licensing-technology m.lanl.gov/tech-search
Similar open opportunities
- 41- Vaneaxial FansDLA Troop Support (Defense Logistics Agency) is doing market research to find companies that can supply vaneaxial fans (NSN 4140-00-289-8783) built to a military spec.
- COMPRESSOR,REFRIGER, IN REPAIR/MODIFICATION OFNAVSUP Weapon Systems Support (Mechanicsburg) posted a presolicitation for repair of 13 refrigeration compressors (NSN 7H-4130-015136359), delivered FOB Origin.
- Sources Sought - Directional Hemispherical ReflectometerThe Army's Product Manager Vehicle Protection Systems is doing market research to find companies that can supply handheld Directional Hemispherical Reflectometer (DHR) devices,…
- C-130 Sanding Booth with Allen Bradley Control System and GVS-RPB Safety Respirator SystemDLA Weapons Support Richmond is doing market research for a C-130 sanding booth with fire suppression, ventilation, dust collection and related systems, to be installed at Fleet…
- AMMONIUM HYDROXIDE,NAVSUP Weapon Systems Support (Navy) plans to buy 2,739 PG of Ammonium Hydroxide (NSN 1HM 6810-01-018-9769 X2) made to a technical data package.