Skip to main navigation Skip to search Skip to main content

Sirius Irradiation Experiments and Post-Irradiation Examinations for Nuclear Thermal Propulsion

Research output: Contribution to conferencePresentation

Abstract

Nuclear Thermal Propulsion (NTP) systems hold promise in reducing transit times for exploration of the solar system by both crewed and uncrewed missions. NTP systems currently under investigation include a once-through high temperature gas-cooled fission reactor to provide thermal energy to heat the coolant which also serves as the propellant. The fuel systems of angular UN fuel particles dispersed in a matrix of W/Re, creating a ceramic and metallic composite or cermet, has been irradiated in Idaho National Laboratory’s (INL) Transient Reactor Test Facility (TREAT) enabling evaluation of these materials under representative nuclear heating rates (~95 K/s) and peak temperatures (~2527 K). These tests named Sirius-1 (UN-W/Re), have been irradiated and this paper will present post-irradiation examination results. The Sirius-1 test produced cracks in the fuel specimen and spalling of surface material. Uranium soot was found on the inner wall of the irradiation capsule indicating loss of some fissile material from the fuel specimen. Spalling from the surfaces was also noted upon visual inspection. Uranium diffusion from the fuel particles resulted in the formation of U/Re phases and edge features producing a laminar microstructure.
Original languageEnglish
StatePublished - Sep 22 2022

Keywords

  • Nuclear Thermal Propulsion
  • Cermet
  • TREAT
  • Sirius

INL Publication Number

  • INL/CON-22-69130
  • 140227

Fingerprint

Dive into the research topics of 'Sirius Irradiation Experiments and Post-Irradiation Examinations for Nuclear Thermal Propulsion'. Together they form a unique fingerprint.

Cite this