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Sintering of mixed UO2 and U3O8 powder compacts

机译:混合UO2和U3O8粉末压块的烧结

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U3O8 powder made by oxidation of defective UO2 pellets was mixed with UO2 powder, and Nb2O5 was then added. Powder mixtures including various U3O8 contents were pressed into compacts and sintered at 1680 degrees C in a reducing atmosphere. Without Nb2O5 addition, the U3O8 content of a mixed UO2-U3O8 compact is allowed only within about 15 wt%, since higher U3O8 contents make the UO2 pellet density unacceptable. Using more than 0.3 wt% Nb2O5, however, the UO2 pellet density is higher than 94% TD under any U3O8 content of the mixed compact. The grain size of the UO2 pellets increases with the Nb2O5 content of the mixed compact but is not influenced by the U3O8 content. Therefore, the U3O8 powder can be reused without any limit in the UO2 pellet fabrication by sintering with Nb2O5. It is supposed that NbO2, a reduced product of Nb2O5, is dissolved in UO2 to form uranium vacancies. The enhancement of densification and grain growth may be attributed to the increase of the uranium vacancy concentration. (C) 2000 Elsevier Science B.V. All rights reserved. [References: 11]
机译:将由有缺陷的UO2颗粒氧化制得的U3O8粉末与UO2粉末混合,然后添加Nb2O5。将包含各种U3O8含量的粉末混合物压制成粉,并在还原气氛中于1680摄氏度下烧结。如果不添加Nb2O5,则混合的UO2-U3O8压块的U3O8含量只能在约15 wt%之内,因为较高的U3O8含量会使UO2颗粒密度不可接受。但是,使用超过0.3 wt%的Nb2O5,在混合压块中任何U3O8含量下,UO2颗粒密度都高于94%TD。 UO2粒料的晶粒尺寸随混合压坯中Nb2O5含量的增加而增加,但不受U3O8含量的影响。因此,通过与Nb2O5烧结,U3O8粉末可在UO2颗粒制造中不受任何限制地重复使用。据推测,NbO2是Nb2O5的还原产物,会溶解在UO2中形成铀空位。致密化和晶粒生长的增强可能归因于铀空位浓度的增加。 (C)2000 Elsevier Science B.V.保留所有权利。 [参考:11]

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