Licensing Opportunity: INSET (In-Pile Steady-State Extreme Temperature Testbed)
| Agency: | ENERGY, DEPARTMENT OF |
|---|---|
| State: | Tennessee |
| Type of Government: | Federal |
| FSC Category: |
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| Posted Date: | Sep 11, 2024 |
| Due Date: | Oct 26, 2024 |
| Solicitation No: | 2024-09-11-V |
| Original Source: | Please Login to View Page |
| Contact information: | Please Login to View Page |
| Bid Documents: | Please Login to View Page |
Description
- Contract Opportunity Type: Special Notice (Original)
- All Dates/Times are: (UTC-04:00) EASTERN STANDARD TIME, NEW YORK, USA
- Original Published Date: Sep 11, 2024 11:25 am EDT
- Original Response Date: Oct 26, 2024 05:00 pm EDT
- Inactive Policy: Manual
- Original Inactive Date: Oct 27, 2024
- Initiative:
- Original Set Aside:
- Product Service Code:
- NAICS Code:
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Place of Performance:
Oak Ridge , TN 37830USA
Invention Reference Number: 202305542
Currently there is no capability to test materials, sensors, and nuclear fuels at extremely high temperatures and under radiation conditions for nuclear thermal rocket propulsion or advanced reactors. This technology is a low-cost, modular, vacuum furnace that is compatible with nuclear reactors and other irradiation facilities. Made of aluminum, its unique graphite insulation and heating element give this furnace unique capabilities for testing of materials, sensors and fuel up to 2300 C. Capable of steady state or rapid thermal transits, it can be used in the lab and also placed inside a nuclear reactor or other irradiation facility.
Description
The IN-Pile Steady-State Extreme Temperature Testbed (INSET) is a vacuum furnace that allows extremely high temperature tests in a nuclear environment. Its 8-inch in diameter is designed to be placed into any reactor or irradiation facility with a port big enough to hold it; made with low-neutron activation materials so radioactivity is not induced and can be handled shortly after irradiation. Its unique heating element is graphite with molybdenum and graphite insulation. Many advanced nuclear reactors being designed operate at elevated temperatures above the standard PWR based reactor and need a platform for testing and qualification of their materials, fuel, and sensors before they are built and licensed. Systems for interspace rocket propulsion will use nuclear reactors up to 2300 C, but there is currently no way to test materials at that level except with this instrument. This technology allows testing of materials, instruments, and fuel under radiation at very high temperatures, up to 2300 C steady state or transient, to determine if a material or sensor will survive or degrade under such extreme environments.
Benefits
- Only technology that can test at extremely high temperatures in nuclear environment
- Low cost (under $15,000)
Applications and Industries
- Nuclear reactor industry
- Space propulsion industry
Contact
To learn more about this technology, email partnerships@ornl.gov or call 865-574-1051.
- Oak Ridge National Laboratory PO Box 2008
- Oak Ridge , TN 37831
- USA
- Eugene R. Cochran
- cochraner@ornl.gov
- Phone Number 8655762830
- Sep 11, 2024 11:25 am EDTSpecial Notice (Original)
See Also
Document ID & Hyperlink: RFP 31908-00200 Event Start - Response Due: 08/10/2026 10/14/2026
State Government of Tennessee
Due by 10/14/2026
Document ID & Hyperlink: Solicitation Notice 31908-00200 Event Start - Response Due: 08/10/2026
State Government of Tennessee
Due by 10/14/2026
Follow PC 104 Single Board Computer Active Contract Opportunity Notice ID FA9101_PC104_SingleBoardComputer Related
DEPT OF DEFENSE
Due by 9/23/2026
Document ID & Hyperlink: RFI 32801-01350 Attachment A Attachment B Event Start -
State Government of Tennessee
Due by 9/30/2026