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    • 1. 发明申请
    • Magnetizing System and Superconducting Magnet to Be Magnetized Therewith
    • 磁化系统和超导磁体被磁化
    • US20090212890A1
    • 2009-08-27
    • US12353456
    • 2009-01-14
    • Norihide SahoHisashi IsogamiHiroyuki Tanaka
    • Norihide SahoHisashi IsogamiHiroyuki Tanaka
    • H01F6/00H01F13/00
    • H01F6/04H01F6/006H01F13/003
    • A magnet magnetizing system and a superconducting magnet to be magnetized, for magnetizing a superconducting magnet to be magnetized, comprises: a magnetizing magnetic field generating means for generating and distinguishing a static magnetic field; a cooling means having an electromotive motor within the static magnetic field, which is generated from the magnetizing magnet generating means; and a bulk superconductor to be magnetized, which is thermally connected with a low-temperature portion of the cooling means, wherein the magnetizing magnetic field generating means is made up with a magnetizing superconducting bulk magnet, building other magnetizing bulk superconductor therein, the bulk superconductor to be magnetized before magnetization thereof is inserted within a space of the static magnetic field, which is generated by the magnetizing superconducting bulk magnet magnetized, and the magnetic field of the magnetizing superconducting bulk magnet is distinguished by the means for cooling the bulk superconductor inserted, down to be equal or lower than superconducting temperature, thereby magnetizing the bulk superconductor to be magnetized.
    • 磁化磁化系统和被磁化的超导磁体,用于磁化待磁化的超导磁体,包括:磁化磁场产生装置,用于产生和区分静磁场; 具有在静磁场内的电动马达的冷却装置,其由磁化磁铁产生装置产生; 以及与所述冷却装置的低温部分热连接的被磁化的体超导体,其中所述磁化磁场产生装置由磁化超导体磁体,其中构建其它磁化体超导体构成,所述体超导体 在被磁化的磁化超导体磁体产生的静磁场的空间内被磁化之前被磁化,并且通过用于冷却插入的体超导体的装置区分磁化超导体磁体的磁场, 降低到等于或低于超导温度,从而磁化待超磁体的体超导体。
    • 2. 发明授权
    • Magnetizing system and superconducting magnet to be magnetized therewith
    • 磁化系统和超磁体被磁化
    • US08179218B2
    • 2012-05-15
    • US12353456
    • 2009-01-14
    • Norihide SahoHisashi IsogamiHiroyuki Tanaka
    • Norihide SahoHisashi IsogamiHiroyuki Tanaka
    • H01F6/00H01F13/00
    • H01F6/04H01F6/006H01F13/003
    • A magnet magnetizing system and a superconducting magnet to be magnetized, for magnetizing a superconducting magnet to be magnetized, comprises: a magnetizing magnetic field generating means for generating and distinguishing a static magnetic field; a cooling means having an electromotive motor within the static magnetic field, which is generated from the magnetizing magnet generating means; and a bulk superconductor to be magnetized, which is thermally connected with a low-temperature portion of the cooling means, wherein the magnetizing magnetic field generating means is made up with a magnetizing superconducting bulk magnet, building other magnetizing bulk superconductor therein, the bulk superconductor to be magnetized before magnetization thereof is inserted within a space of the static magnetic field, which is generated by the magnetizing superconducting bulk magnet magnetized, and the magnetic field of the magnetizing superconducting bulk magnet is distinguished by the means for cooling the bulk superconductor inserted, down to be equal or lower than superconducting temperature, thereby magnetizing the bulk superconductor to be magnetized.
    • 磁化磁化系统和被磁化的超导磁体,用于磁化待磁化的超导磁体,包括:磁化磁场产生装置,用于产生和区分静磁场; 具有在静磁场内的电动马达的冷却装置,其由磁化磁铁产生装置产生; 以及与所述冷却装置的低温部分热连接的被磁化的体超导体,其中所述磁化磁场产生装置由磁化超导体磁体,其中构建其它磁化体超导体构成,所述体超导体 在被磁化的磁化超导体磁体产生的静磁场的空间内被磁化之前被磁化,并且通过用于冷却插入的体超导体的装置区分磁化超导体磁体的磁场, 降低到等于或低于超导温度,从而磁化待超磁体的体超导体。
    • 9. 发明授权
    • Membrane magnetic separating apparatus
    • 膜磁分离装置
    • US06478955B1
    • 2002-11-12
    • US09703925
    • 2000-11-02
    • Norihide SahoHisashi IsogamiMinoru MoritaTadashi Sano
    • Norihide SahoHisashi IsogamiMinoru MoritaTadashi Sano
    • B01D3506
    • C02F1/48B03C1/14B03C1/30C02F1/5236C02F11/12C02F11/14
    • Water to be treated is passed through a membrane (net), magnetic floc positioned in a portion below a level of the water to be treated is deposited to a surface of the membrane, and the surface of the membrane with the magnetic floc deposited is moved to an atmospheric portion above the level of the water to be treated. In the atmospheric portion, excess water from the magnetic floc flows downward due to gravity to concentrate the magnetic floc. A permanent magnet is located near a position to which the membrane surface with the magnetic floc deposited thereon moves. There are further provided between the magnet and the membrane surface a moving body (shell) formed by a non-magnetic material, a spatula for scraping the magnetic floc from the moving body, and a sludge vessel in which a released magnetic floc is recovered.
    • 要处理的水通过膜(网),将位于待处理水平面以下的部分的磁性絮凝物沉积到膜的表面,并且使沉积的磁性絮状物的膜的表面移动 到高于待处理水的水平的大气部分。 在大气部分,来自磁絮状物的过量水由于重力而向下流动以集中磁絮凝物。 永磁体位于其上沉积有磁絮状物的膜表面移动的位置附近。 在磁体和膜表面之间还设置有由非磁性材料形成的移动体(壳体),用于从移动体刮取磁性絮状物的刮铲和回收释放的磁絮凝物的污泥容器。