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Author: R. S. Neymark
Publisher:
ISBN:
Category : Alloy plating
Languages : en
Pages : 36
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Author: R. S. Neymark
Publisher:
ISBN:
Category : Alloy plating
Languages : en
Pages : 36
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Author:
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ISBN:
Category : Depleted uranium
Languages : en
Pages : 48
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Author: E. F. Losco
Publisher:
ISBN:
Category : Uranium alloys
Languages : en
Pages : 116
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Author: D. W. Bareis
Publisher:
ISBN:
Category : Aluminum-uranium alloys
Languages : en
Pages : 40
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It was found in this investigation that an alloying reaction occurred wherever and whenever clean metallic surfaces of aluminum and uranium were brought into contact within the temperature range of 250OC to 450oC. Anodization of the aluminum surface prevented the alloying reaction. The effects of temperature. aluminum purity, and pressure between the metal surfaces on the alloying reaction were studied qualitatively. The alloying reaction produced UAl3, which appeared to be formed by the diffusion of the uranium through the UAl3 layer. (MM).
Author: R. K. McGeary
Publisher:
ISBN:
Category : Uranium alloys
Languages : en
Pages : 58
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Author:
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Category : Nuclear engineering
Languages : en
Pages : 284
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Author: D. E. Thomas
Publisher:
ISBN:
Category : Uranium alloys
Languages : en
Pages : 38
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Author:
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Category : Nuclear fuels
Languages : en
Pages : 208
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Author:
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Category : Nuclear energy
Languages : en
Pages : 1070
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Author: Melvin L. Bleiberg
Publisher:
ISBN:
Category : Uranium alloys
Languages : en
Pages : 122
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The effects of pile irradiations on the physical properties and corrosion resistance of U-- Mo, U-- Nb; and U--Si alloys are reported. The dimensional stability under irradiation of the gamma phase U-- Mo and U-- Nb alloys is excellent; however, an isotropic volume increase of 4 to 6% per wt.% burnup may limit the ultimate fuel element life. Corrosion resistance of the gamma-phase alloys appesrs to be improved when subjected to s neutron field; this is attributed to an irrsdiation induced stabilization of the gamma phases. The U/ sub 3/Si alloy, on the other hand, suffered severe deterioration, particularly of corrosion resistance. Changes in electrical resistivity, hardness, mechanical properties, and crystal structure are presented and the mechanisms producing the observed changes discussed.