@inproceedings{feaa563cb24746b080abe5a67a54ed1c,
title = "Demonstration of subscale cermet fuel specimen fabrication and testing",
abstract = "Nuclear thermal propulsion (NTP) has the potential to expand the limits of human space exploration by enabling crewed missions to Mars and beyond. The viability of NTP hinges on the development of a robust nuclear fuel material that can perform in the harsh operating environment (≥ 2500K, reactive hydrogen) of a nuclear thermal rocket (NTR) engine. Efforts are ongoing to develop fuel material and to assemble fuel elements that will be stable during the service life of an NTR. Ceramic-metal (cermet) fuels are being actively pursued by NASA Marshall Space Flight Center (MSFC) due to their demonstrated high-temperature stability and hydrogen compatibility. Building on past cermet fuel development research, experiments were conducted to investigate a modern fabrication approach for cermet fuel elements. The experiments used consolidated tungsten (W)-60vol\%zirconia (ZrO2) compacts that were formed via spark plasma sintering (SPS). The consolidated compacts were stacked and diffusion bonded to assess the integrity of the bond lines and internal cooling channel cladding. The assessment included hot hydrogen testing of the manufactured surrogate fuel and pure W for 45 minutes at 2500 K in the compact fuel element environmental test (CFEET) system. Performance of bonded W-ZrO2 rods was compared to bonded pure W rods to access bond line integrity and composite stability. Bonded surrogate fuels retained structural integrity throughout testing and incurred minimal mass loss.",
author = "Barnes, \{Marvin W.\} and Tucker, \{Dennis S.\} and Benensky, \{Kelsa M.\} and Nathan Jerred",
note = "Publisher Copyright: {\textcopyright} 2016 American Nuclear Society. All Rights Reserved.; Nuclear and Emerging Technologies for Space, NETS 2018 ; Conference date: 26-02-2018 Through 01-03-2018",
year = "2016",
language = "English",
isbn = "9781510859609",
series = "Nuclear and Emerging Technologies for Space, NETS 2018",
publisher = "American Nuclear Society",
pages = "239--242",
booktitle = "Nuclear and Emerging Technologies for Space, NETS 2018",
}