科技报告详细信息
Transmission electron microscopy of oxide dispersion strengthened (ODS) molybdenum: effects of irradiation on material microstructure
Baranwal, R. and Burke, M.G.
Bettis Atomic Power Laboratory
关键词: Irradiation;    Molybdenum;    36 Materials Science;    Dislocations;    Radiation Effects;   
DOI  :  10.2172/938973
RP-ID  :  B-T-3462
RP-ID  :  AC11-98PN38206
RP-ID  :  938973
美国|英语
来源: UNT Digital Library
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【 摘 要 】

Oxide dispersion strengthened (ODS) molybdenum has been characterized using transmission electron microscopy (TEM) to determine the effects of irradiation on material microstructure. This work describes the results-to-date from TEM characterization of unirradiated and irradiated ODS molybdenum. The general microstructure of the unirradiated material consists of fine molybdenum grains (< 5 {micro}m average grain size) with numerous low angle boundaries and isolated dislocation networks. 'Ribbon'-like lanthanum oxides are aligned along the working direction of the product form and are frequently associated with grain boundaries, serving to inhibit grain boundary and dislocation movement. In addition to the 'ribbons', discrete lanthanum oxide particles have also been detected. After irradiation, the material is characterized by the presence of nonuniformly distributed large ({approx} 20 to 100 nm in diameter), multi-faceted voids, while the molybdenum grain size and oxide morphology appear to be unaffected by irradiation.

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