会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 37. 发明专利
    • Cryogenic cooling control apparatus and method of controlling the same
    • 低温冷却控制装置及其控制方法
    • JP2009246231A
    • 2009-10-22
    • JP2008092804
    • 2008-03-31
    • Toshiba Corp株式会社東芝
    • TAKAHASHI MASAHIKOTAZAKI KENJIISHII YUSUKEONO MICHITAKAHANAI SATORUIOKA SHIGERU
    • H01L39/04F25D3/10H01F6/04
    • PROBLEM TO BE SOLVED: To provide a cryogenic cooling apparatus and a method of controlling the same, stably cooling a cooled object, such as a superconductive coil or the like, even when the heat load is changed, while a cooling temperature is not restricted by a boiling point of a specific coolant like an immersion cooling system. SOLUTION: A cryogenic cooling apparatus has: a cooled object; a low temperature gas container capable of holding pressurized gas; a cooling gas pipe connected to the low temperature gas container and brought into thermal contact with the cooled object; a cooling gas flow control valve attached to the cooling gas pipe; a gas cooling means; and a means of measuring condition change of the cooled object. Gas pressurized from an atmospheric pressure is stored in the low temperature gas container in the state where the gas is cooled by the gas cooling means, and the cooling gas flow control valve is opened according to the condition change of the cooled object. By flowing the gas to the cooling gas pipe to cool the cooled object, the cryogenic cooling apparatus is controlled. COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:为了提供一种低温冷却装置及其控制方法,即使当热负荷改变时,也可以稳定地冷却诸如超导线圈等的冷却物体,同时冷却温度为 不受诸如浸入式冷却系统的特定冷却剂的沸点的限制。 解决方案:低温冷却装置具有冷却物体; 能够保持加压气体的低温气体容器; 连接到低温气体容器并与冷却的物体热接触的冷却气体管道; 连接到冷却气体管道的冷却气体流量控制阀; 气体冷却装置; 以及测量被冷却物体的状态变化的方法。 在通过气体冷却装置冷却气体的状态下,从大气压力被加压的气体被储存在低温气体容器中,并且根据冷却物体的状态变化来打开冷却气体流量控制阀。 通过将气体流到冷却气体管道以冷却冷却的物体,控制低温冷却装置。 版权所有(C)2010,JPO&INPIT
    • 38. 发明专利
    • Superconducting coil device, method of detecting abnormal condition of superconducting coil and method of operating superconducting coil device
    • 超导线圈装置,检测超导线圈异常状态的方法及操作超导线圈装置的方法
    • JP2009246162A
    • 2009-10-22
    • JP2008091441
    • 2008-03-31
    • Toshiba Corp株式会社東芝
    • TAZAKI KENJITAKAHASHI MASAHIKOONO MICHITAKAHANAI SATORUISHII YUSUKEIOKA SHIGERU
    • H01F6/02
    • PROBLEM TO BE SOLVED: To unfailingly protect a superconducting coil by detecting an abnormal conditions of the superconducting coil at high sensitivity with a simple structure. SOLUTION: The superconducting coil device has: a plurality of superconducting constituent coils 1; and a sensor 3 for detecting the state amount related to a magnetic field at the position where the strength of the magnetic field becomes zero when all the plurality of superconducting constituent coils 1 function normally and the strength of the magnetic field becomes non-zero when a current flowing through part of the plurality of superconducting constituent coils 1 has the abnormal conditions. When a toroidal coil is used, the sensor 3 is disposed in the inner periphery of the toroidal coil. When a multi-pole is used, the sensor 3 is disposed on the center axis of the multi-pole. The sensor 3 detects the strength of the magnetic field or time change ratio thereof. COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:通过以简单的结构以高灵敏度检测超导线圈的异常状态,可以保证超导线圈的可靠保护。 超导线圈装置具有:多个超导构成线圈1; 以及传感器3,用于当所有多个超导构成线圈1正常地正常工作时,检测与磁场强度变为零的位置处的磁场相关的状态量,当磁场强度成为非零时, 流过多个超导构成线圈1的一部分的电流具有异常状态。 当使用环形线圈时,传感器3设置在环形线圈的内周。 当使用多极时,传感器3设置在多极的中心轴上。 传感器3检测磁场的强度或时间变化率。 版权所有(C)2010,JPO&INPIT
    • 40. 发明专利
    • Superconductivity-using support mechanism
    • 超级电力 - 使用支持机制
    • JP2008039163A
    • 2008-02-21
    • JP2006218222
    • 2006-08-10
    • Central Japan Railway CoToshiba Corp東海旅客鉄道株式会社株式会社東芝
    • HANAI SATORUKUBOTA MICHIAKIFUJII MADOKA
    • F16C32/04H02J15/00
    • F16C32/0442F16C32/0476F16C32/0489F16C2361/55
    • PROBLEM TO BE SOLVED: To provide a superconductive flywheel system which calmly lands a flywheel without giving an impact force to a thrust auxiliary bearing even if a system power is not restored.
      SOLUTION: The mechanism comprises: a flywheel 1 composed of a vertical rotor shaft 1b and a flywheel body 1a fixed to the rotor shaft; a radial bearing mechanism 3 that is a radial bearing of the rotor shaft; a thrust bearing superconductive coil 2a for floating the flywheel; a circuit breaker 9c for separating the superconductive coil from a coil power source 2e; and discharge resistance circuits 14 and 15 having a predetermined time constant for softly landing the flywheel on the thrust auxiliary bearing 4 at the loss of a system power source 14 by separating the superconductive coil from the coil power source by the circuit breaker and gradually demagnetizing current.
      COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:为了提供一种超导飞轮系统,即使没有恢复系统功率,也能平稳地将飞轮落在飞轮辅助轴承上而不给推力辅助轴承施加冲击力。 解决方案:该机构包括:由垂直转子轴1b和固定在转子轴上的飞轮体1a构成的飞轮1; 作为转子轴的径向轴承的径向轴承机构3; 用于浮动飞轮的止推轴承超导线圈2a; 用于将超导线圈与线圈电源2e分离的断路器9c; 以及具有预定时间常数的放电电阻电路14和15,用于通过由断路器将线圈电源分离超导线圈并通过断路器逐渐消磁电流,在系统电源14的损耗下将飞轮轻轻地着落在推力辅助轴承4上 。 版权所有(C)2008,JPO&INPIT