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    • 64. 发明授权
    • Oxide-superconducting coil and a method for manufacturing the same
    • 氧化物超导线圈及其制造方法
    • US06194985B1
    • 2001-02-27
    • US08736695
    • 1996-10-25
    • Kazuhide TanakaMichiya OkadaKeiji Fukushima
    • Kazuhide TanakaMichiya OkadaKeiji Fukushima
    • H01P500
    • H01F6/06
    • A method for manufacturing an oxide superconducting coil can suppress deterioration of superconducting characteristics caused by a strong electromagnetic force and deformation and a reaction during heat treatment. The oxide superconducting coil is manufactured by a wind-and-react (W&R) method using a metal sheathed oxide superconducting wire material and an insulator, wherein an oxide film formed on a surface of a heat resistant alloy during a heat treatment is used for insulating the coil, and the heat resistant alloy has a sufficient strength to prevent the deformation of the coil generated by the weight of the coil itself during the heat treatment and to endure a strong electromagnetic force. An oxide superconducting coil operable with a coolant, such as liquid nitrogen, liquid helium, and the like, or a refrigerator, can be realized.
    • 氧化物超导线圈的制造方法可以抑制由强电磁力,变形和热处理时的反应引起的超导特性的劣化。 氧化物超导线圈通过使用金属护套氧化物超导线材和绝缘体的风和反应(W&R)法制造,其中在热处理期间在耐热合金的表面上形成的氧化膜用于绝缘 线圈和耐热合金具有足够的强度,以防止在热处理期间由线圈本身的重量产生的线圈的变形并且承受强的电磁力。 可以实现与诸如液氮,液氦等的冷却剂可操作的氧化物超导线圈或冰箱。
    • 67. 发明授权
    • Nuclear magnetic resonance measurement apparatus and measuring method using the same
    • 核磁共振测量装置及其测量方法
    • US07898256B2
    • 2011-03-01
    • US12371963
    • 2009-02-17
    • Isao KitagawaMichiya OkadaKazuo Saitoh
    • Isao KitagawaMichiya OkadaKazuo Saitoh
    • G01V3/00
    • G01R33/307G01N24/087G01N24/088G01R33/465
    • An NMR measurement apparatus adopts a circulation flow scheme using a sample solution containing a high molecular compound representing a measuring object and a low molecular compound solution containing a low molecular compound representing a ligand. The measurement apparatus comprises a mixing filter 32 for mixing the sample solution and the low molecular compound solution, a separation filter 34 for performing separation therebetween, a flow channel 1 through which the sample solution drained out of the separation filter 34 is injected to the mixing filter 32, a flow channel 2 through which the low molecular compound solution drained out of the separation filter 34 is injected to the mixing filter 32, and a flow channel 3 through which the mixture solution drained out of the mixing filter 32 is injected to the separation filter 34 by way of a reservoir 10.
    • NMR测定装置采用使用含有表示测定对象的高分子化合物的样品溶液和含有表示配体的低分子化合物的低分子化合物溶液的循环流程图。 测量装置包括用于混合样品溶液和低分子化合物溶液的混合过滤器32,用于在其间进行分离的分离过滤器34,将从分离过滤器34排出的样品溶液注入混合物的流动通道1 过滤器32将从分离过滤器34排出的低分子化合物溶液注入到流通道2中,并将混合溶液排出混合过滤器32的流路3注入到混合过滤器32中, 分离过滤器34通过储存器10。
    • 69. 发明申请
    • Apparatus of nuclear magnetic resonance measurement for continuous sample injection
    • 用于连续样品注射的核磁共振测量装置
    • US20080290872A1
    • 2008-11-27
    • US12153349
    • 2008-05-16
    • Isao KitagawaMichiya OkadaKazuo Saitoh
    • Isao KitagawaMichiya OkadaKazuo Saitoh
    • G01R33/30
    • G01R33/307
    • A sample tube is used to ensure uniformity in a static magnetic field and uniformity in electromagnetic wave irradiation for NMR measurement for continuous sample injection. The sample tube is formed of a signal detecting tube having a length lying between 80% and 100% of the length of an antenna, the signal detecting tube accommodating a sample at the position of the antenna; first and second joint tubes each having an outside diameter equal to the outside diameter of the signal detecting tube and having an inside diameter smaller than the inside diameter of the signal detecting tube; and injection and ejection supporting tubes each having an inside diameter smaller than the inside diameter of the signal detecting tube. The first and second joint tubes have magnetic susceptibility matched to or brought close to that of a sample solvent.
    • 使用样品管来确保静电磁场的均匀性和用于连续样品注入的NMR测量的电磁波照射的均匀性。 样品管由长度位于天线长度的80%至100%之间的信号检测管形成,信号检测管在天线的位置容纳样品; 第一和第二接头管的外径等于信号检测管的外径,内径小于信号检测管的内径; 以及各自具有小于信号检测管的内径的内径的注射和喷射支撑管。 第一和第二接合管具有与样品溶剂匹配或接近的磁化率。