Skip to main navigation Skip to search Skip to main content

Assessing the solid-state kinetics and behavior for uranium-free Pu-12Am–40Zr alloys at 973 K

  • Jeffery A. Aguiar
  • , Brandon D. Miller
  • , Yasushi Tsuboi
  • , Thomas Johnson
  • , Kazuo Arie
  • , Robert D. Mariani

Research output: Contribution to journalArticlepeer-review

1 Scopus citations

Abstract

Uranium-free nonfertile Pu-based alloys, including Pu–40Zr and Pu-12Am–40Zr, represent two candidate fuel alloys for Generation IV (GEN-IV) and transuranic (TRU) type burner reactors. Before their acceptance in these applications, the chemical compatibility and interaction layer growth between these alloys and suggested HT-9 cladding must be reported in detail to facilitate their acceptance in advanced reactor concepts. In this study, each alloy was studied at 700 °C (973 K) for a variable period of time between 100 and 200 h in a diffusion couple geometry with Cr and V. Comparing the 100–200 h tests between Pu-12Am–40Zr fuel and Cr with V suggests a weakening in the interfacial growth rate as a function of annealing time. A quantitative study on the solid-state behavior and evolution of Pu-Am-Zr interacting with both Cr and V barriers at 700 °C (973 K) is reported.

Original languageEnglish
Article number152735
JournalJournal of Alloys and Compounds
Volume817
Early online dateOct 23 2019
DOIs
StatePublished - Mar 15 2020

Keywords

  • Gen IV nuclear reactors
  • Solid state chemistry
  • Solid state kinetics
  • Transmission electron microscopy
  • Uranium-free Pu-based fuels

Fingerprint

Dive into the research topics of 'Assessing the solid-state kinetics and behavior for uranium-free Pu-12Am–40Zr alloys at 973 K'. Together they form a unique fingerprint.

Cite this