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    • 92. 发明授权
    • Continuous process electrorefiner
    • 连续工艺电抛光
    • US07097747B1
    • 2006-08-29
    • US10637088
    • 2003-08-05
    • Joseph E. HercegJames G. SaiveauLubomir Krajtl
    • Joseph E. HercegJames G. SaiveauLubomir Krajtl
    • C25C7/00C25C7/06C25C7/08C25C3/34
    • C25C7/08C25C3/34C25C7/005
    • A new device is provided for the electrorefining of uranium in spent metallic nuclear fuels by the separation of unreacted zirconium, noble metal fission products, transuranic elements, and uranium from spent fuel rods. The process comprises an electrorefiner cell. The cell includes a drum-shaped cathode horizontally immersed about half-way into an electrolyte salt bath. A conveyor belt comprising segmented perforated metal plates transports spent fuel into the salt bath. The anode comprises the conveyor belt, the containment vessel, and the spent fuel. Uranium and transuranic elements such as plutonium (Pu) are oxidized at the anode, and, subsequently, the uranium is reduced to uranium metal at the cathode. A mechanical cutter above the surface of the salt bath removes the deposited uranium metal from the cathode.
    • 通过从废燃料棒分离未反应的锆,贵金属裂变产物,超铀元素和铀,为废金属核燃料中的铀电解精炼提供了新的装置。 该方法包括电学​​纯化器电池。 该电池包括一个水平浸入电解质盐浴一半的鼓形阴极。 包括分段穿孔金属板的输送带将废燃料输送到盐浴中。 阳极包括输送带,安全壳和废燃料。 铀和铀元素如钚(Pu)在阳极被氧化,随后铀在阴极被还原成铀金属。 在盐浴表面上的机械切割机从阴极去除沉积的铀金属。
    • 93. 发明申请
    • Method and apparatus for stripping electrodeposited metal sheets from permanent cathodes
    • 从永久阴极剥离电沉积金属片的方法和装置
    • US20050155867A1
    • 2005-07-21
    • US10497296
    • 2004-01-21
    • Victor RobinsonPhilip Donaldson
    • Victor RobinsonPhilip Donaldson
    • C25C7/08C25F5/00C25F7/00C25C1/00C25D17/00
    • C25F7/00C25C7/08C25F5/00
    • A method and apparatus for stripping electro-deposited metal sheets from a cathode blank. The blank has opposite faces, upstream and downstream ends. At least one sheet is provided on at least one blank face to define upstream and downstream edges. The apparatus comprises a stripping assembly for stripping the electro-deposited metal sheets from the cathode blank, a discharge assembly and a metal sheet out-feed assembly. The discharge assembly is positioned downstream of the stripping assembly and includes opposite guide rollers adapted to engage the metal sheet exiting the stripping assembly. The metal sheet out-feed assembly is positioned downstream the discharge assembly for receiving the metal sheet. When the metal sheet has been stripped from the cathode blank, the guide rollers controllably feed the metal sheet to the out-feed assembly. The method comprises stripping the metal sheets from the cathode and controllably discharging the stripped sheets to an out-feed assembly.
    • 一种用于从阴极毛坯剥离电沉积金属片的方法和装置。 坯料具有相对的面,上游和下游端。 在至少一个空白面上设置至少一个片材以限定上游和下游边缘。 该装置包括用于从阴极毛坯剥离电沉积的金属片的剥离组件,排出组件和金属片出料组件。 排出组件位于剥离组件的下游,并且包括适于接合离开剥离组件的金属板的相对的导辊。 金属板出料组件位于排出组件的下游,用于容纳金属板。 当金属片已经从阴极毛坯剥离时,引导辊可控制地将金属片馈送到出料组件。 该方法包括从阴极剥离金属片,并将剥离的片材可控地排出到出料组件。
    • 94. 发明授权
    • Apparatus for removing zinc particle deposits from an electrode
    • 用于从电极去除锌颗粒沉积物的装置
    • US5792328A
    • 1998-08-11
    • US720205
    • 1996-09-25
    • Menachem Givon
    • Menachem Givon
    • C25C1/16C25C7/08H01M8/06H01M8/18H01M8/22C25D17/00
    • C25C1/16B60L11/1879C25C7/08H01M8/06H01M8/184H01M8/225Y02E60/528Y02T10/7005Y02T10/705
    • The invention provides an apparatus for removing zinc particle deposits from substantially the entire face of a major surface of an electrode in an electrochemical bath, the apparatus comprising a plate attached to actuating means for affecting relative movement between the plate and the major surface of the electrode, the plate being provided with a scraper blade-retaining slot along one of its edges, and further comprising a scraper blade removably inter-engaged with the slot, the blade extending from the slot towards the surface of the electrode, and extending substantially along the entire length of the major surface of the electrode, the actuating means being arranged to move the scraper from a first position to a second position in a first downward stroke to affect scraping of individual zinc particle deposits from substantially the entire face of the major surface of an adjacent electrode and then to return the blade from the second position to the first position in a second upward stroke.
    • 本发明提供了一种用于在电化学浴中从电极的主表面的大致整个表面去除锌颗粒沉积物的装置,该装置包括附接到致动装置的板,用于影响板和电极的主表面之间的相对运动 所述板沿其一个边缘设置有刮刀保持槽,并且还包括与所述槽可拆卸地相互接合的刮刀,所述刀片从所述槽朝向所述电极的表面延伸,并且基本沿着 电极的主表面的整个长度,致动装置被布置成在第一向下冲程中将刮刀从第一位置移动到第二位置,以影响单个锌颗粒沉积物从主表面的整个表面的刮擦 相邻的电极,然后使叶片从第二位置返回到第一位置 卒中
    • 96. 发明授权
    • Electroplating method and apparatus
    • 电镀方法和装置
    • US5486272A
    • 1996-01-23
    • US251152
    • 1994-05-31
    • John D. C. HemsleyAlbert W. GaleAdrian Schwalb
    • John D. C. HemsleyAlbert W. GaleAdrian Schwalb
    • C25C1/00C25C7/00C25C7/06C25C7/08
    • C25C7/00
    • A method of removing metal from a feedstock solution containing dissolved metal ions which comprises passing the feedstock through an annular gap, the inner surface of which is cathodic to the metal ion and the outer surface of which is anodic in such a way that the flow is turbulent.Also claimed is an apparatus for removing metal from a feedstock which comprises a reactor afforded by an inner cathode tube, and an outer anode tube spaced therefrom by a narrow annular gap, direct electric current supply means to the anode and cathode, pump means for pumping feedstock into the said annular gap at high flow rates, a holding tank, pipe work connecting the holding tank to the said pump means and the pipe work connecting the end of the annular gap remote from the pump to the holding tank.
    • 一种从含有溶解的金属离子的原料溶液中除去金属的方法,其包括使原料通过环形间隙,该环形间隙的内表面是金属离子是阴极的,其外表面是阳极的, 动荡 还要求的是用于从原料中除去金属的装置,其包括由内阴极管提供的反应器和通过窄的环形间隔与其隔开的外阳极管,到阳极和阴极的直接电流供应装置,用于泵送的泵装置 原料以高流速进入所述环形间隙,保持槽,将储存罐连接到所述泵装置的管道工作以及将远离泵的环形间隙的端部连接到储存罐的管道工作。
    • 97. 发明授权
    • Edge protector for electrolytic electrode, and spreader bar
    • 电解电极边缘保护膜和吊杆
    • US5470450A
    • 1995-11-28
    • US296510
    • 1994-08-26
    • Hiroshi TanakaYasuo Masuda
    • Hiroshi TanakaYasuo Masuda
    • C25C7/02C25C7/08
    • C25C7/02
    • An edge protector for an electrolysis electrode onto which a thick-electrodeposited copper product is deposited for producing an electrolytic copper product, has an outer surface shape in the central portion thereof which reduces the thickness in that portion to improve uniformity of cooling, and thereby reduce stress cracking as a result of the reduced buildup of thermal stresses. The outer surfaces may be inclined planes or suitable curved shapes that converge from an outer jaw toward an inner jaw. In one embodiment an edge protector is taught such that its top end is angled downward from its center outward at an angle of less than twenty degrees to prevent creation of sharp edges and difficulty in removal. A spreader bar has a shape which enables clamping of the edge protector onto an electrolysis electrode without excessive expansion of the outer jaw, thereby lengthening service life, and easing installation. Both a hollowed and a tapered spreader bar are taught for end insertion.
    • 用于生产电解铜产品的用于沉积厚电沉积铜产品的电解电极的边缘保护器在其中心部分具有外表面形状,其减小了该部分中的厚度,以改善冷却的均匀性,从而减少 由于热应力累积减少,应力开裂。 外表面可以是倾斜平面或适合的弯曲形状,其从外部钳口朝向内部颚部会聚。 在一个实施例中,教导边缘保护器使得其顶端以小于二十度的角度从其中心向外成角度向下倾斜以防止产生尖锐边缘并且难以移除。 扩张杆具有能够将边缘保护器夹持在电解电极上而不会使外侧钳口过度膨胀的形状,从而延长使用寿命,并且使安装变得简单。 一个中空的和一个锥形的吊具杆被教导用于端部插入。