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    • 4. 发明申请
    • METHOD FOR FORMING A HIGH-GRADIENT MAGNETIC FIELD AND A SUBSTANCE SEPARATION DEVICE BASED THEREON
    • 形成高等级磁场的方法及其基于物质的分离装置
    • US20100012591A1
    • 2010-01-21
    • US11793930
    • 2004-12-22
    • Vladimir Alexandrovich GlebovAlexey Vladimirovich GlebovEvgeny Ivanovich IlyashenkoArne Torbjorn SkjeltorpTom Henning Johansen
    • Vladimir Alexandrovich GlebovAlexey Vladimirovich GlebovEvgeny Ivanovich IlyashenkoArne Torbjorn SkjeltorpTom Henning Johansen
    • B03C1/025B03C1/00
    • B03C1/0332B03C1/035B03C1/22B03C2201/22Y10T29/4902
    • The invention relates to a magnetic separation device and is used for separating paramagnetic substances from diamagnetic substances, the paramagnetic substances according to the paramagnetic susceptibility thereof and the diamagnetic substances according to the diamagnetic susceptibility thereof. Said invention can be used for electronics, metallurgy and chemistry, for separating biological objects and for removing heavy metals and organic impurities from water, etc. The inventive device is based on a magnetic system of an open domain structure type and is embodied in the form of two substantially rectangular constant magnets (1, 2) which are mated by the side faces thereof, whose magnetic field polarities are oppositely directed and the magnetic anisotropy is greater than the magnetic induction of the materials thereof. Said magnets (1, 2) are mounted on a common base (4) comprising a plate which is made of a non-retentive material and mates with the lower faces of the magnets, thin plates (5, 6) which are made of a non-retentive material, are placed on the top faces of the magnets and forms a gap arranged above the top edges (8, 9) of the magnets (1, 2) mated faces. A nonmagnetic substrate (10) for separated material (11) is located above the gap (7).
    • 本发明涉及一种磁选分离装置,用于根据其顺磁性敏感性将顺磁性物质与抗磁性物质,顺磁性物质以及抗磁性物质按其抗磁化性进行分离。 所述发明可用于电子,冶金和化学,用于分离生物物体和从水中除去重金属和有机杂质等。本发明的装置基于开放式结构类型的磁系统,并以 两个基本上矩形的恒定磁体(1,2),它们的侧面配合,其磁场极性相反,磁各向异性大于其材料的磁感应。 所述磁体(1,2)安装在共同的基座(4)上,所述公共基底(4)包括由非保持性材料制成并与磁铁的下表面配合的板,薄板(5,6) 非保持性材料被放置在磁体的顶面上并且形成布置在磁体(1,2)配合面的上边缘(8,9)上方的间隙。 用于分离材料(11)的非磁性衬底(10)位于间隙(7)上方。
    • 8. 发明申请
    • METHOD FOR PRODUCING A SOLAR CELL
    • 生产太阳能电池的方法
    • US20130291937A1
    • 2013-11-07
    • US13882051
    • 2011-10-25
    • Krister MangersnesSean Erik Foss
    • Krister MangersnesSean Erik Foss
    • H01L31/0224
    • H01L31/022425C23C14/046H01L31/022441Y02E10/50
    • A device including a surface layer of a selected material in a predetermined pattern on a substrate surface. A groove or ridge arranged in the substrate surface includes a bottom or top face, respectively, and at least one side face sloping relative to the bottom or top face. The surface layer is deposited on a part of the substrate including the groove or ridge by vacuum chamber sputtering the selected material from a sputtering source whilst moving the substrate past the sputtering source in a direction substantially perpendicular to a sputtering main lobe direction and with a normal to the substrate surface substantially in a predefined angle with the main lobe direction. By uniformly etching away surface layer material deposited on the substrate by the sputtering until freeing a substantial part of the side face, the predetermined pattern becomes defined substantially by the bottom face or the top face.
    • 一种在衬底表面上包括预定图案中所选材料的表面层的器件。 布置在基板表面中的凹槽或脊分别包括底面或顶面,以及相对于底面或顶面倾斜的至少一个侧面。 通过真空室将表面层沉积在包括沟槽或脊的衬底的一部分上,从溅射源溅射所选择的材料,同时沿基本上垂直于溅射主瓣方向的方向移动衬底经过溅射源并且与正常 基本上与主瓣方向成预定的角度。 通过通过溅射均匀地蚀刻沉积在衬底上的表面层材料,直到释放侧面的大部分,预定图案基本上由底面或顶面限定。