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    • 3. 发明申请
    • PURIFICATION PROCESS
    • 净化过程
    • US20120230860A1
    • 2012-09-13
    • US13477368
    • 2012-05-22
    • Charles M. WARD-CLOSEAlastair B. GodfreyPaul S. Goodwin
    • Charles M. WARD-CLOSEAlastair B. GodfreyPaul S. Goodwin
    • B22F1/00B22F9/30B22F9/16
    • C22B34/1295C22B9/14C22B34/129
    • A method for purifying metal M1 particles manufactured by an electrochemical reduction process, the method comprising the steps of introducing the metal M1 particles into a heat source (13) at a temperature substantially equal to or higher than the melting point of M1 so as to cause vaporisation of some or substantially all of the contaminating impurities present, removing the vaporised impurities from the vicinity of the particles, and cooling the purified metal M1 particles. The purified particles can be used directly in lower temperature powder metallurgy processes and have a fully dense spherical particle morphology, imparting good flowability. The purification process can also be incorporated as an integral stage of sheet or stock production processes based on particle feedstocks that have been produced by electrochemical reduction.
    • 一种净化通过电化学还原法制造的金属M1颗粒的方法,所述方法包括以大致等于或高于M1的熔点的温度将金属M1颗粒引入热源(13)的步骤,从而导致 蒸发一些或基本上所有的污染杂质,从颗粒附近除去蒸发的杂质,并冷却纯化的金属M1颗粒。 纯化的颗粒可以直接用于低温粉末冶金工艺中,并具有完全致密的球形颗粒形态,赋予良好的流动性。 净化过程也可以作为基于通过电化学还原生产的颗粒原料的片材或原料生产方法的整体阶段。
    • 9. 发明授权
    • Electrochemical reduction of metal oxides
    • 电化学还原金属氧化物
    • US07758740B2
    • 2010-07-20
    • US10561597
    • 2004-06-21
    • Andrew Arthur ShookGregory David RigbyIvan Ratchev
    • Andrew Arthur ShookGregory David RigbyIvan Ratchev
    • C25C3/00C25C7/00C25C7/02
    • C25C7/007C22B1/2406C22B5/02C22B34/129C25C3/28C25C5/04C25C7/025
    • An electrolytic cell for electrochemically reducing metal oxide powders and/or pellets is disclosed. The cell includes a cathode (25) in the form of a plate that has an upper surface for supporting metal oxide powders and/or pellets. The plate is horizontally disposed or slightly inclined and has a forward end and a rearward end and is immersed in an electrolyte bath. The plate is supported for movement so as to cause metal oxide powders and/or pellets on the upper surface of the plate to move toward a forward end of the plate. The cell also includes a means for causing metal oxide powders and/or pellets to move over the upper surface of the plate toward the forward end of the cathode while in contact with molten electrolyte whereby electrochemical reduction of the metal oxide to metal can occur. A method of continuously or semi-continuously reducing metal oxide powders and/or pellets in the cell is also disclosed.
    • 公开了用于电化学还原金属氧化物粉末和/或丸粒的电解池。 电池包括板形式的阴极(25),其具有用于支撑金属氧化物粉末和/或颗粒的上表面。 该板水平放置或稍微倾斜,并具有前端和后端,并浸入电解液浴中。 支撑板移动,以使板的上表面上的金属氧化物粉末和/或颗粒向板的前端移动。 电池还包括使金属氧化物粉末和/或丸粒在与熔融电解液接触的同时朝向阴极的前端移动到板的上表面上的装置,由此可以发生金属氧化物到金属的电化学还原。 还公开了在电池中连续或半连续还原金属氧化物粉末和/或丸粒的方法。