Revolutionizing Industrial Scale Materials Processing

Location: Federal
Posted: Jun 25, 2026
Due: Jul 24, 2026
Agency: DEPT OF DEFENSE
Type of Government: Federal
Category:
  • A - Research and development
Solicitation No: DARPA-SN-26-81
Publication URL: To access bid details, please log in.
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Revolutionizing Industrial Scale Materials Processing
Active
Contract Opportunity
Notice ID
DARPA-SN-26-81
Related Notice
Department/Ind. Agency
DEPT OF DEFENSE
Sub-tier
DEFENSE ADVANCED RESEARCH PROJECTS AGENCY (DARPA)
Office
DEF ADVANCED RESEARCH PROJECTS AGCY
General Information
  • Contract Opportunity Type: Special Notice (Original)
  • Original Published Date: Jun 25, 2026 04:47 pm EDT
  • Original Response Date: Jul 24, 2026 05:00 pm EDT
  • Inactive Policy: Manual
  • Original Inactive Date: Jul 25, 2026
  • Initiative:
    • None
Classification
  • Original Set Aside:
  • Product Service Code: AC13 - NATIONAL DEFENSE R&D SERVICES; DEPARTMENT OF DEFENSE - MILITARY; EXPERIMENTAL DEVELOPMENT
  • NAICS Code:
    • 541715 - Research and Development in the Physical, Engineering, and Life Sciences (except Nanotechnology and Biotechnology)
  • Place of Performance:
Description
BACKGROUND
DARPA is seeking engagement from industrial producers of raw materials including cast, rolled, and forged metals, bulk ceramics, and composites to aid in developing a future program. This RFI is meant to provide the reasoning behind our need for engagement and to present the potential value proposition. Included is a simple survey to gather information on willingness to participate in a future effort.

DARPA is considering a program to bring together performer teams composed of the best material scientists, process engineers, and data scientists to revolutionize industrial scale materials processing. Currently, process uncertainty forces system designers to rely on minimum expected property values (e.g., Metallic Materials Properties Development and Standardization (MMPDS)) to guarantee reliability. As a result, even though most processed materials exceed these data sheet minimums, designers must either sacrifice potential system performance margins or use unnecessarily expensive materials to account for statistical variability. Furthermore, this same process uncertainty inevitably yields some products that fall below minimum specifications, reducing overall yield and forcing producers into costly re-processing or scrapping of materials.

DARPA believes recent advances in material informatics and physical modeling can demystify the "art" of large-scale processing. While modern industry excels at minimizing variability to meet current baselines, there is significant room for growth; for example, many 7000 series aluminum alloys have a potential performance margin exceeding 15% at fixed plate thicknesses and heat treatments. The challenge lies in the complex, interconnected nature of production variables—such as slight fluctuations in composition, heat treatment, rolling or forging temperatures, and environmental conditions. Because these factors are highly interdependent, optimizing one step does not guarantee a better final product if a subsequent step introduces new variations. Currently, navigating this complexity relies heavily on the intuitive, tacit knowledge that operators develop over decades—an approach that is virtually impossible to replicate or scale.

DARPA aims to develop quantitative, physics-informed techniques to uncover the exact causes of product variability. This approach allows producers to fix inefficiencies using their current processes, avoiding the need for expensive capital investments or major facility overhauls. As a result, producers can increase yield and offer superior products at standard market prices, easily outcompeting lower-quality alternatives. To make this work, the program needs access to multi-year processing data from large-scale producers. DARPA completely understands that this data is sensitive and vital to your competitive advantage. Therefore, while DARPA is a government agency, the teams executing this program will likely include private companies and universities equipped to manage and protect proprietary information.
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Contact Information
Contracting Office Address
  • 675 NORTH RANDOLPH STREET
  • ARLINGTON , VA 222032114
  • USA
Primary Point of Contact
Secondary Point of Contact


History
  • Jun 25, 2026 04:47 pm EDTSpecial Notice (Original)

Related Document

Jul 6, 2026[Special Notice (Updated)] Revolutionizing Industrial Scale Materials Processing
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