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Title: ATMOSPHERIC CORROSION TESTS OF SEVERAL DELTA-PHASE ALLOYS OF PLUTONIUM

Journal Article · · J. Nuclear Materials

A study of the oxidation of delta-phase, binary plutonium alloys containing small additions of aluminum, cerium, hafnium, zinc, and zirconium was conducted. The oxidation rates at 75 deg C in moist air are all lower than the oxidation rate of unalloyed plutonium under the same conditions. The results do not appear to be in accord with the simple theory of the influence of solute additions on the oxidation rate as proposed by Wagner and Hauffe. A size rule was suggested for deciding a priori whether a solid-solution miscibility gap betwesn oxids phases might occur. This rule was only partially successful in predicting which oxide phases would be observed to form separate layers. It is interesting that the zirconium and hafnium alloys were found to form ZrO/sub 2/ and HfO/sub 2/ as separate phases in the oxide layer. These separate oxide phases are to be expected on the basis of the size-factor rule discussed above. There is no evidence, however, that Al/sub 2/O/sub 3/ or ZnO, in which smaller metal-oxygen distances occur, were present as separate phases in the oxidation products. For thermodynamic reasons, ZnO should not appear in the products. The special reasons that Ce/sub 2/O/sub 3/ and Al/sub 2/O/sub 3/ might not be detected were discussed. The analyses of Wagner concerned with the formation of single or duplex oxide films were discussed and it is shown that the formation of HfO/sub 2/ and ZrO/sub 2/ as well as Al/sub 2/O/sub 3/ and Ce/sub 2/O/sub 3/ i should occur. The apparent reduction in rates can be rationally interpreted on this basis. (auth)

Research Organization:
Los Alamos Scientific Lab., N. Mex.
NSA Number:
NSA-15-016001
OSTI ID:
4033347
Journal Information:
J. Nuclear Materials, Vol. Vol: 3; Other Information: Orig. Receipt Date: 31-DEC-61
Country of Publication:
Country unknown/Code not available
Language:
English