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Fabrication of Uranium-Plutonium Mixed Carbide Pellets

机译:铀-混合硬质合金小球的制备

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Uranium-plutonium mixed monocarbide pellets, which had densities over 90% T.D. and near-stoichiometric compositions, were fabricated in the gloveboxes of the atmosphere of purified Ar. The carbide powder was first synthesized by reducing mechanically blended oxides with graphite at 1, 510°C in a vacuum of 0.2 Pa. This condition was selected so as to minimize the loss of Pu during the reduction in vacuum. The synthesized carbide was milled and compacted, followed by sintering in flowing Ar at 1, 540 to 1, 750°C. The experimental conditions covered wide ranges of milling time, compacting pressure, sintering temperature and sintering time. The most suitable condition has been established for fabricating uranium-plutonium mixed carbide pellets by the mechanical-blend carbothermic reduction and sintering method. For the case of Ni addition as a sintering aid, the efficacy of the addition for fabricating dense pellets was confirmed, but it was noticed that the composition tended to hyperstoichiometry and the sesquicarbide phase precipitated especially at the pellet surface.
机译:在纯Ar气氛的手套箱中制造了密度超过90%T.D.且化学计量比接近的铀-混合单碳化物颗粒。首先在510℃,0.2 Pa的真空中通过还原机械混合的氧化物和石墨来合成碳化物粉末。选择该条件以使真空还原过程中的Pu损失最小。将合成的碳化物研磨并压紧,然后在流动的Ar中于1,540至1,750℃下烧结。实验条件涵盖了广泛的铣削时间,压制压力,烧结温度和烧结时间。通过机械混合碳热还原和烧结方法,已经建立了最合适的条件来制造铀-lu混合碳化物颗粒。对于添加Ni作为烧结助剂的情况,证实了添加的制备致密颗粒的功效,但是注意到该组合物倾向于超化学计量,并且倍半碳化物相尤其在颗粒表面沉淀。

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