Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
1564771 | Journal of Nuclear Materials | 2016 | 11 Pages |
Abstract
Zr-Excel alloy (Zr-3.5Sn-0.8Nb-0.8Mo, wt.%) has been proposed as a candidate material of pressure tubes in the CANDU-SCWR design. It is a dual-phase alloy containing primary hcp α-Zr and metastable bcc β-Zr. Metastable hexagonal Ï-Zr phase could form in β-Zr as a result of aging during the processing of the tube. A synchrotron X-ray study was employed to study the lattice properties of the metastable phases in as-received Zr-Excel pressure tube material. In situ heavy ion (1 MeV Kr2+) irradiations were carried out at 200 °C and 450 °C to emulate the stability of the metastable phase under a reactor environment. Quantitative Chemi-STEM EDS analysis was conducted on both un-irradiated and irradiated samples to investigate alloying element redistribution induced by heavy ion irradiation. It was found that no decomposition of β-Zr was observed under irradiation at both 200 °C and 450 °C. However, Ï-Zr particles experienced shape changes and shrinkage associated with enrichment of Fe at the β/Ï interface during 200 °C irradiation but not at 450 °C. There is a noticeable increase in the level of Fe in the α matrix after irradiation at both 200 °C and 450 °C. The concentrations of Nb, Mo and Fe are increased in the Ï phase but decreased in the β phase at 200 °C. The stability of metastable phases under heavy ion irradiation associated with elemental redistribution is discussed.
Keywords
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Physical Sciences and Engineering
Energy
Nuclear Energy and Engineering
Authors
Hongbing Yu, Ken Zhang, Zhongwen Yao, Mark A. Kirk, Fei Long, Mark R. Daymond,