Elemental Volatility of HT-9 Fusion Reactor Alloy
- 1 July 1985
- journal article
- research article
- Published by Taylor & Francis in Fusion Technology
- Vol. 8 (1P2B) , 1392-1395
- https://doi.org/10.13182/fst85-a39961
Abstract
The volatility of elemental constituents from HT-9, a ferritic steel, proposed for fusion reactor structures, was investigated. Tests were conducted in flowing air at temperatures from 800 to 1200°C for durations of 1 to 20 h. Elemental volatility was calculated in terms of the weight fraction of the element volatilized from the initial alloy; molybdenum, manganese, and nickel were the primary constituents volatilized. Comparisons with elemental volatilities observed for another candidate fusion reactor material, Primary Candidate Alloy (PCA), an austenitic stainless steel, indicate significant differences between the volatilities of these steels that may impact fusion reactor safety analysis and alloy selection. Scanning electron microscopy and energy dispersive spectrometry were used to investigate the oxide layers formed on HT-9 and to measure elemental contents within these layers.Keywords
This publication has 0 references indexed in Scilit: