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    • 3. 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。
    • 4. 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。
    • 5. 发明申请
    • CRYOGENIC CONTAINER WITH BUILT-IN REFRIGERATOR
    • 带内置冰箱的低温容器
    • US20090188260A1
    • 2009-07-30
    • US12357476
    • 2009-01-22
    • Norihide SAHOHisashi IsogamiHiroyuki Tanaka
    • Norihide SAHOHisashi IsogamiHiroyuki Tanaka
    • F25B21/02F25B19/00
    • F25B9/14F25B21/02F25B25/00F25B2500/13F25D19/006
    • A cryogenic container with a built-in refrigerator according to the present invention comprises the refrigerator having a first heat absorbing part and a first heat dissipating part, a vacuum vessel for containing and thermally insulating an object to be cooled while holding the object at a cryogenic temperature through the first heat absorbing part of the refrigerator, and a pre-cooling unit having a second heat absorbing part and a second heat dissipating part for cooling the first heat dissipating part, wherein the first heat dissipating part and the second heat absorbing part are arranged inside the vacuum vessel, and a part of a heat dissipating unit including the second heat dissipating part is exposed outside the vacuum vessel.According to the present invention, in the cryogenic container with the built-in refrigerator capable of cooling the object to be cooled to the cryogenic temperature, the refrigerator efficiency can be improved by cooling a heat dissipating surface of the first heat dissipating part of the refrigerator to a level lower than the room temperature.
    • 根据本发明的具有内置冰箱的低温容器包括具有第一吸热部分和第一散热部分的冷藏库,用于将待冷却的物体保持在低温下的待冷却物体的真空容器 温度通过冷藏库的第一吸热部,以及具有第二吸热部的预冷却部和用于冷却第一散热部的第二散热部,其中,第一散热部和第二吸热部为 布置在真空容器内部,并且包括第二散热部分的散热单元的一部分暴露在真空容器的外部。 根据本发明,在具有能够将被冷却物体冷却至低温的内置冰箱的低温容器中,通过冷却冷藏库的第一散热部的散热面,能够提高冰箱的效率 达到低于室温的水平。
    • 9. 发明授权
    • Magnetic separation filtering and cleaning apparatus
    • 磁选过滤和清洗装置
    • US08002976B2
    • 2011-08-23
    • US12019674
    • 2008-01-25
    • Norihide SahoHisashi IsogamiAkira MochizukiTomoko Akiyama
    • Norihide SahoHisashi IsogamiAkira MochizukiTomoko Akiyama
    • B01D35/06B03C1/30C02F1/48
    • B03C1/12B03C1/30B03C2201/18C02F1/001C02F1/44C02F1/488C02F1/5236C02F1/56C02F1/66C02F2209/42
    • A magnetic separation filtering and cleaning apparatus for adding flocculant and magnetic powder to raw water containing pollutant particles to form magnetic floc in treated fluid and separating and removing the magnetic floc from the treated fluid, comprising: a magnetic field generation device being provided in a rotating body for suctioning the magnetic floc on a surface of the rotating body from the treated fluid containing the magnetic floc, a magnetic field rotating device for rotating the magnetic field generation device, a sludge recovery device for separating sludge including the magnetic floc mechanically from the surface of the rotating body of the magnetic field generation device; and a filtering device having a rotating net for filtering out the magnetic floc from the treated fluid including the magnetic floc and flowing down the treated fluid filtered through the rotating net.
    • 一种磁选分离过滤和清洗装置,用于将絮凝剂和磁粉加入含污染物颗粒的原水中以在处理过的流体中形成磁絮凝物,并从处理过的流体中分离和除去磁絮凝物,其特征在于包括:磁场产生装置, 用于从包含磁絮状物的处理液体旋转体的表面吸附磁絮体的主体,用于旋转磁场产生装置的磁场旋转装置,用于将包含磁絮凝物的污泥与表面机械分离的污泥回收装置 的磁场产生装置的旋转体; 以及过滤装置,其具有旋转网,用于从包括磁絮凝物的处理过的流体过滤掉磁絮凝物并向下流过经过旋转网过滤的处理过的流体。