Anisotropic Additive Manufacturing Optimization Technology for Greater 3D Printing Efficiency
Energy, Department of · ENERGY, DEPARTMENT OF
Opportunity details
Anisotropic Additive Manufacturing Optimization Technology for Greater 3D Printing Efficiency is currently listed as accepting responses on SAM.gov. Buyer context: Energy, Department of · ENERGY, DEPARTMENT OF. Industry classification: Industrial Machinery ManufacturingT (NAICS 33324). Product/service classification: GENERAL SCIENCE AND TECHNOLOGY R&D SERVICES; GENERAL SCIENCE AND TECHNOLOGY; BASIC RESEARCH (PSC AJ11). Performance location: ID, USA. Notice type: Special Notice. GovGazette adds public award history and related pages to help you decide whether to keep reading. Check all requirements on SAM.gov.
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- Response deadline
- Sep 18, 2026, 1:00 PM EDT
- Set-aside
- None listed
- Place of performance
- ID, USA
- Posted
- Apr 20, 2026
- Solicitation
- BA-1199
- Contracting office
- BATTELLE ENERGY ALLIANCE�DOE CNTR · Idaho Falls · ID
- Source
- SAM.gov
Description
Description: This licensable technology focuses on optimizing various 3D printing parameters such as infill density, geometry, layer thickness, and material distribution to enhance the anisotropic material properties of printed parts. This research aims to create a database of material properties for single and dual material 3D printed parts, enabling accurate prediction of part behavior under real-world conditions without the need for additional experimental testing. Key Advantages: Significant reduction in material costs and 3D printing expenses. Elimination of the need for post-design experimental testing. Creation of a comprehensive database for anisotropic material properties. Enables accurate and reliable design and numerical modeling of 3D printed parts. Opens new avenues for the application of 3D printing technology across various industries. Problems Solved: Current limitation of isotropic material properties assumption in 3D printed parts design. Lack of reliable data for predicting the real-world behavior of 3D printed parts. High costs and inefficiencies associated with additional experimental testing. Difficulty in optimizing 3D printing parameters for enhanced part performance. Market Applications: Industrial design and manufacturing for aerospace, military, engineering, architecture, construction, and medical industries. Development of high-performance, cost-effective 3D printed parts for critical applications. Software and simulation tools for predictive modeling of 3D printed parts. Consultancy services for optimizing 3D printing processes in manufacturing. INL�s Technology Deployment department focuses solely on licensing intellectual property and collaborating with industry partners who can commercialize our innovations. We do not engage in purchasing, procurement, or hiring external services for technology development. Our objective is to connect with companies interested in licensing and bringing our technologies to market.
What similar awards have paid
See what agencies paid for similar work. This public history does not set a bid price, estimate a cost, or predict an award.
Typical award size
$177,831
Middle of the pack for similar past awards
Most similar awards fall between $50,219 and $737,131
Who has won work like this
These firms won similar public awards. Use the list for competitor research or teaming, not as a ranking.
- 1THE MITRE CORPORATION36 awards$248.00M
- 2KBR WYLE SERVICES, LLC1 award$102.31M
- 3REGENTS OF THE UNIVERSITY OF CALIFORNIA, THE1 award$77.49M
- 4SOCIAL & SCIENTIFIC SYSTEMS, INC.15 awards$64.00M
- 5THE REGENTS OF THE UNIVERSITY OF COLORADO1 award$36.31M
- 6UNIVERSITY OF ALASKA FAIRBANKS1 award$34.90M
- 7BATTELLE MEMORIAL INSTITUTE11 awards$29.39M
- 8AUBURN UNIVERSITY3 awards$22.35M
Drawn from official USAspending contract records. Always confirm requirements on the SAM.gov notice before you bid.
For research only. This is not legal advice or a promise of an award. Always verify requirements on the official SAM.gov notice. Past award amounts are public history, not a suggested bid or prediction. Open the original SAM.gov notice for the official record.