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    • 2. 发明专利
    • Superconductive magnetic shield equipment
    • 超导磁屏蔽设备
    • JP2014157940A
    • 2014-08-28
    • JP2013028301
    • 2013-02-15
    • Sumitomo Heavy Ind Ltd住友重機械工業株式会社
    • TSURUTOME TAKENAO
    • H05K9/00A61B5/05G01R33/035H01F27/36
    • PROBLEM TO BE SOLVED: To provide a superconductive magnetic shield equipment capable of achieving high magnetic shielding properties even if a tape-like superconductive wire material is used for it.SOLUTION: A superconductive magnetic shield equipment comprises: a first axial direction magnetic shield 12A and a second axial direction magnetic shield 12B having a superconductive material 15A for the first axial direction in which a tape-like superconductive material 21 having a first surface where a superconductive material layer 23 is thereon, and a second surface where the superconductive material layer 23 is not thereon, is formed in a ring shape; a lateral direction magnetic shield 13 having a superconductive material 16 for the lateral direction arranged orthogonally to or aslope to the axial direction of the second axial direction magnetic shield 12B and electrically connected to the second axial direction magnetic shield 12B; and a support body 11 for supporting magnetic shields 12A, 12B, 13, respectively. The second axial direction magnetic shield 12B is arranged at an outer periphery position of the first axial direction magnetic shield 12A, and the first axial direction magnetic shield 12A is configured that its first surface is positioned at the support body 11 side and the first surface of the second axial direction magnetic shield 12B is electrically connected to the lateral direction magnetic shield 13.
    • 要解决的问题:提供即使使用带状超导线材也能够实现高磁屏蔽性能的超导磁屏蔽设备。解决方案:超导磁屏蔽设备包括:第一轴向磁屏蔽12A和 具有第一轴向超导材料15A的第二轴向磁屏蔽12B,其中具有超导材料层23的第一表面的带状超导材料21和超导材料层23为第二表面 不在其上形成为环形; 横向磁屏蔽13,其具有与第二轴向磁屏蔽12B的轴向正交或斜向配置的横向的超导材料16,并与第二轴向磁屏蔽12B电连接; 以及用于分别支撑磁屏蔽12A,12B,13的支撑体11。 第二轴向磁屏蔽12B布置在第一轴向磁屏蔽12A的外周位置处,第一轴向磁屏蔽12A被构造成其第一表面位于支撑体11侧,第一表面位于 第二轴向磁屏蔽12B电连接到横向磁屏蔽13。
    • 3. 发明专利
    • Superconducting magnet device
    • 超级磁铁设备
    • JP2010287792A
    • 2010-12-24
    • JP2009141509
    • 2009-06-12
    • Sumitomo Heavy Ind Ltd住友重機械工業株式会社
    • TSURUTOME TAKENAOMIKAMI YUKIO
    • H01F6/00H01L39/04
    • PROBLEM TO BE SOLVED: To provide a superconducting magnet device, having a load support for supporting a superconducting coil, that suppresses generation of an eddy current and reliably supports the superconducting coil. SOLUTION: The superconducting magnet device includes an iron core 12 functioning as a vacuum container, the superconducting coil 13A mounted in the iron core 12, a metallic coil frame 22 mounted inside the superconducting coil 13A, a refrigerator 18 configured to cool the superconducting coil 13A into a superconducting state, a reinforcing ring 24 arranged so as to surround the superconducting coil 13A to support the superconducting coil 13A, a first load support 15A arranged between the iron core 12 and the reinforcing ring 24 to support the reinforcing ring 24 for the iron core 12, and a second load support 15B arranged between the reinforcing ring 24 and coil frame 22 to support the coil frame 22 for the reinforcing ring 24. COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:提供一种具有用于支撑超导线圈的负载支撑件的超导磁体装置,其抑制涡电流的产生并可靠地支撑超导线圈。 解决方案:超导磁体装置包括用作真空容器的铁芯12,安装在铁芯12中的超导线圈13A,安装在超导线圈13A内的金属线圈架22,冷却器18 超导线圈13A成为超导状态,配置为围绕超导线圈13A以支撑超导线圈13A的加强环24,布置在铁芯12和加强环24之间以支撑加强环24的第一负载支撑件15A 铁芯12以及布置在加强环24和线圈框架22之间的第二负载支撑件15B,以支撑用于加强环24的线圈框架22.版权所有(C)2011,JPO&INPIT
    • 4. 发明专利
    • Superconductive current lead jig, superconductive current lead and manufacturing method of superconductive current lead
    • 超导电流引线,超导电流引线和超导电流引线的制造方法
    • JP2013145772A
    • 2013-07-25
    • JP2012004648
    • 2012-01-13
    • Sumitomo Heavy Ind Ltd住友重機械工業株式会社
    • TSURUTOME TAKENAO
    • H01L39/04H01F6/00H01R4/68
    • PROBLEM TO BE SOLVED: To provide a superconductive current lead jig, a superconductive current lead and a manufacturing method of the superconductive current lead which can prevent the deformation of a superconductive material even if a load support is provided.SOLUTION: A superconductive current lead assembly 10 obtained by attaching a pair of electrodes 21a and 21b to a load support 20 is placed on a base 41 of a superconductive current lead jig 40, and the pair of electrodes 21a and 21b are attached to an electrode positioning member 42, thereby determining the positioning between the electrodes 21a and 21b. While maintaining the state where the positioning between the pair of electrodes 21a and 21b is determined by the superconductive current lead jig 40, the electrodes 21a and 21b and the load support 20 are permanently fixed together. Then, a superconductor 22 is arranged between the pair of electrodes 21a and 21b.
    • 要解决的问题:提供超导电流引线夹具,超导电流引线和超导电流引线的制造方法,即使提供负载支撑,也可以防止超导材料的变形。解决方案:超导电流引线组件 将通过将一对电极21a和21b附接到负载支撑件20而获得的10被放置在超导电流引线夹具40的基座41上,并且一对电极21a和21b附接到电极定位构件42,从而确定 定位在电极21a和21b之间。 在通过超导电流引线夹具40保持一对电极21a和21b之间的定位的状态下,电极21a和21b以及负载支撑件20永久地固定在一起。 然后,在一对电极21a和21b之间设置超导体22。
    • 5. 发明专利
    • Lifting magnet
    • 提升磁铁
    • JP2008114956A
    • 2008-05-22
    • JP2006298056
    • 2006-11-01
    • Sumitomo Heavy Ind Ltd住友重機械工業株式会社
    • TSURUTOME TAKENAOTANIGUCHI YOSHITAKE
    • B66C1/06
    • PROBLEM TO BE SOLVED: To provide a lifting magnet increased in attracting efficiency by reducing the leakage of magnetic flux.
      SOLUTION: This lifting magnet 1 comprises a ferromagnetic inner pole 12 extending along a predetermined axis C, a first coil 20 wrapped around the inner pole 12, a second coil 21 wrapped around the first coil 20, a ferromagnetic outer pole 13 installed around the second coil 21, ferromagnetic yokes 11 installed at the other ends of the coils 20, 21, and a ferromagnetic intermediate pole 14 installed between the coils 20, 21. Since a conventional coil is divided into two coils 20, 21, and the intermediate pole 14 functioning as a pole in the same manner as the inner pole 12 and the outer pole 13 is installed between the coils 20, 21, the attracting efficiency can be improved by reducing the leakage of magnetic flux.
      COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:通过减少磁通量的泄漏来提供增加吸引效率的提升磁体。 解决方案:该提升磁体1包括沿着预定轴线C延伸的铁磁性内极12,围绕内极12缠绕的第一线圈20,缠绕在第一线圈20周围的第二线圈21,安装的铁磁外极13 围绕第二线圈21,安装在线圈20,21的另一端的铁磁轭11和安装在线圈20,21之间的铁磁中间极14.由于传统的线圈被分成两个线圈20,21,并且 以与内极12和外极13相同的方式用作极的中间极14安装在线圈20,21之间,通过减小磁通量的泄漏,可以提高吸引效率。 版权所有(C)2008,JPO&INPIT
    • 6. 发明专利
    • Lifting magnet
    • 提升磁铁
    • JP2007217119A
    • 2007-08-30
    • JP2006039798
    • 2006-02-16
    • Sumitomo Heavy Ind Ltd住友重機械工業株式会社
    • TANIGUCHI YOSHITAKETSURUTOME TAKENAO
    • B66C1/06
    • PROBLEM TO BE SOLVED: To provide a lifting magnet in which an attracting efficiency is increased by increasing a field gradient on the outer pole side and decreasing a magnetic flux leaking to parts other than a hoisted load.
      SOLUTION: This lifting magnet 1a comprises a ferromagnetic inner pole 12 extending in a predetermined direction, a first coil 20 wrapped around the inner pole 12, a second coil 21 wrapped around the first coil 20, the ferromagnetic outer pole 13 installed around the second coil 21, a ferromagnetic yoke 11 installed at one ends of the coils 20, 21, and a ferromagnetic intermediate pole 14 installed between the coils 20 and 21 so that their one ends are exposed from a non-magnetic member 15 to the outside. By dividing a conventional coil into two coils 20, 21 and installing the intermediate pole 14 functioning as a pole in the same manner as in the case of the inner pole 12 and the outer pole 13 between the coils 20 and 21, the field gradient on the outer pole side can be increased and the magnetic flux leaking to the parts other than the hoisted load can be reduced.
      COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:提供通过增加外极侧的场梯度并且减少对除了提升的负载以外的部分泄漏的磁通量来提高吸引效率的提升磁体。 解决方案:该提升磁体1a包括沿预定方向延伸的铁磁内极12,围绕内极12缠绕的第一线圈20,围绕第一线圈20缠绕的第二线圈21,围绕第一线圈20安装的铁磁外极13 第二线圈21,安装在线圈20,21的一端的铁磁轭11和安装在线圈20和21之间的铁磁中间极14,使得它们的一端从非磁性构件15暴露于外部 。 通过将传统的线圈分成两个线圈20,21并以与内磁极12和外极13在线圈20和21之间的情况相同的方式安装用作极的中间极14,场梯度 可以增加外侧极侧,能够减少除了提升负载以外的部分泄漏的磁通。 版权所有(C)2007,JPO&INPIT
    • 7. 发明专利
    • Superconductive magnetic shield structure
    • 超导磁屏蔽结构
    • JP2013183076A
    • 2013-09-12
    • JP2012046664
    • 2012-03-02
    • Sumitomo Heavy Ind Ltd住友重機械工業株式会社
    • TSURUTOME TAKENAO
    • H05K9/00H01L39/00
    • PROBLEM TO BE SOLVED: To provide a superconductive magnetic shield structure that is improved in manufacturability without spoiling shield effect.SOLUTION: There is provided a superconductive magnetic shield structure including a magnetic shield structure body 11 formed by stacking a plurality of first superconductive shield bodies 12A-12E each having a first superconductor 14 formed on a first cylindrical base material 13, and second superconductive shield bodies 15A-15D each constituted having a second superconductor 17 formed on a second cylindrical base material 16 and shielding abutting positions of the stacked first superconductive shield bodies 12A-12E, the second superconductive shield bodies 15A and 15D positioned nearby both end opening parts 19A and 19B of the magnetic shield structure body 11 being extended up to the opening parts 19A and 19B.
    • 要解决的问题:提供一种在不损害屏蔽效果的情况下提高可制造性的超导磁屏蔽结构。解决方案:提供一种超导磁屏蔽结构,其包括通过堆叠多个第一超导屏蔽体12A形成的磁屏蔽结构体11 -12E,每个都具有形成在第一圆柱形基材13上的第一超导体14和第二超导屏蔽体15A-15D,每个第二超导体主体15A-15D都具有形成在第二圆柱形基材16上的第二超导体17,并且屏蔽叠置的第一超导屏蔽 主体12A-12E,位于磁屏蔽结构体11的两端开口部分19A和19B附近的第二超导屏蔽体15A和15D延伸到开口部分19A和19B。
    • 8. 发明专利
    • Insulated demagnetized refrigerator and insulated demagnetized refrigerator unit
    • 绝缘脱硫冷冻机和绝缘脱硫制冷机组
    • JP2007017109A
    • 2007-01-25
    • JP2005200740
    • 2005-07-08
    • Sumitomo Heavy Ind Ltd住友重機械工業株式会社
    • TSURUTOME TAKENAOKANAO KENICHI
    • F25B21/00
    • F25B2321/0021Y02B30/66
    • PROBLEM TO BE SOLVED: To allow endurance against an acceleration by simple constitution, even when the acceleration is applied, in an insulated demagnetized refrigerator and an insulated demagnetized refrigerator unit for cooling a cooled object to an extremely low temperature, using a superconductive coil and a salt pill.
      SOLUTION: In this insulated demagnetized refrigerator having the superconductive coils 28A, 28B and applied with the acceleration along an arrow-Z direction, the superconductive coils 28A, 28B are arranged to make the center lines MA2, MB2 of magnetic fields generated by the superconductive coils 28A, 28B orthogonal to the acceleration applied direction (Z direction), i.e. to make those laid laterally with respect to a precooling stage 23.
      COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:为了通过简单的结构允许耐久性加速,即使加速时,在用于将冷却对象冷却到极低温度的绝缘退磁冰箱和绝缘退磁制冷机单元中,使用超导 线圈和盐丸。 解决方案:在具有超导线圈28A,28B并沿箭头-Z方向施加加速度的绝缘退磁冰箱中,超导线圈28A,28B被布置成使得由中心线MA2,MB2产生的磁场由 与加速度施加方向(Z方向)正交的超导线圈28A,28B,即使相对于预冷阶段23横向放置的超导线圈28A,28B。(C)2007,JPO&INPIT
    • 9. 发明专利
    • Cooling device
    • 冷却装置
    • JP2006078070A
    • 2006-03-23
    • JP2004261526
    • 2004-09-08
    • Sumitomo Heavy Ind Ltd住友重機械工業株式会社
    • KANAO KENICHINARASAKI KATSUHIROTSURUTOME TAKENAO
    • F25B9/00H01F6/04
    • PROBLEM TO BE SOLVED: To provide a cooling device adapted to cool a plurality of cooling objects by a refrigerating machine, which can efficiently cool a plurality of cooling objects differed in cooling temperature stored in the device. SOLUTION: In the refrigerating machine including a vacuum vessel 41, a superconductive magnet coil 54 provided within the vacuum vessel 41, a magnetic body salt pill 58 field-applied by the magnet coil 54, a GM (Giffort-McMahon) freezer 70 generating cold air, a first heat transfer passage thermally connecting the magnetic body salt pill 58 to the freezer 70, and a second heat transfer passage thermally connecting the magnet coil 54 to the freezer 70. In this refrigerating machine, the first heat transfer passage and the second heat transfer passage are constituted to be thermally independent from each other. COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:提供一种适于通过冷藏机冷却多个冷却对象的冷却装置,其能够有效地冷却存储在装置中的冷却温度不同的多个冷却对象。 解决方案:在包括真空容器41的冷冻机中,设置在真空容器41内的超导磁体线圈54,由磁体线圈54施加的磁性体盐丸58,GM(Giffort-McMahon)冷冻机 70产生冷空气,将磁体盐丸58与冷冻器70热连接的第一传热通路,以及将磁体线圈54热连接到冷冻室70的第二传热通路。在该制冷机中,第一传热通路 并且第二传热通道彼此热独立地构成。 版权所有(C)2006,JPO&NCIPI