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    • 57. 发明授权
    • Cermet inert anode materials and method of making same
    • 金属陶瓷惰性阳极材料及其制备方法
    • US06821312B2
    • 2004-11-23
    • US10115112
    • 2002-04-01
    • Siba P. RayXinghua LiuFrankie E. PhelpsJoseph M. DynysDouglas A. Weirauch, Jr.
    • Siba P. RayXinghua LiuFrankie E. PhelpsJoseph M. DynysDouglas A. Weirauch, Jr.
    • C22C2912
    • B22F1/025B22F2998/00C22C29/12C25C3/06C25C3/12C25C7/02C25C7/025C22C1/0466C22C1/0491
    • A method of making cermet inert anodes for the electrolytic production of metals such as aluminum is disclosed. The method includes the step of spray drying a slurry comprising ceramic phase particles and metal phase particles. The resultant spray dried powder, which comprises agglomerates of both the ceramic phase and metal phase particles, may then be consolidated by techniques such as pressing and sintering to produce a cermet inert anode material. The ceramic phase may comprise oxides of Ni, Fe and at least one additional metal selected from Zn, Co, Al, Li, Cu, Ti, V, Cr, Zr, Nb, Ta, W, Mo, Hf and rare earths. The metal phase may comprise Cu, Ag, Pd, Pt, Au, Rh, Ru, Ir and/or Os. The consolidated cermet inert anode material exhibits improved properties such as reduced porosity. The cermet inert anodes may be used in electrolytic reduction cells for the production of commercial purity aluminum as well as other metals.
    • 公开了一种制造用于电解生产金属如铝的金属陶瓷惰性阳极的方法。 该方法包括喷雾干燥包含陶瓷相颗粒和金属相颗粒的浆料的步骤。 然后可以通过诸如压制和烧结的技术来固化包含陶瓷相和金属相颗粒的附聚物的所得喷雾干燥粉末以产生金属陶瓷惰性阳极材料。 陶瓷相可以包括Ni,Fe和选自Zn,Co,Al,Li,Cu,Ti,V,Cr,Zr,Nb,Ta,W,Mo,Hf和稀土中的至少一种另外的金属的氧化物。 金属相可以包括Cu,Ag,Pd,Pt,Au,Rh,Ru,Ir和/或Os。 固结的金属陶瓷惰性阳极材料表现出改善的性能,例如孔隙率降低。 金属陶瓷惰性阳极可以用于生产商业纯度的铝以及其它金属的电解还原电池中。