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    • 1. 发明申请
    • GAS-INSULATED ELECTRIC DEVICE
    • 气体绝缘电气设备
    • US20130100587A1
    • 2013-04-25
    • US13806202
    • 2010-09-13
    • Tadahiro YoshidaKazuki TakahashiKatsushi NakadaMasahiro Arioka
    • Tadahiro YoshidaKazuki TakahashiKatsushi NakadaMasahiro Arioka
    • H02B13/045
    • H02B13/045H02B1/56H02B13/0358
    • A gas-insulated electric device, by which a cross-sectional area of a central conductor can be reduced. The gas-insulated electric device includes an insulation tube that ranges to portions facing to ground potential portions for a central conductor and to upper-lower portions along the grounding potential portions, and is coaxially arranged along the central conductor in a state where a gap intervenes between the central conductor and the insulation tube; a conductive layer that is formed on an inner surface of an insulation tube and is electrically connected to the central conductor; and a ground layer that is formed on an inner surface or an outer surface of the insulation tube and is grounded; in which heat generated from the central conductor is radiated by convecting the insulation gas through the gap between the central conductor and insulation tube.
    • 一种气体绝缘电气装置,可以减小中心导体的横截面积。 气体绝缘电气装置包括绝缘管,其范围为面向中心导体的地电位部分的部分和沿着接地电位部分的上下部分,并且在间隙干涉的状态下沿着中心导体同轴布置 在中心导体和绝缘管之间; 导电层,其形成在绝缘管的内表面上并与中心导体电连接; 以及形成在绝缘管的内表面或外表面上并接地的接地层; 其中通过将绝缘气体通过中心导体和绝缘管之间的间隙对流而辐射从中心导体产生的热量。
    • 2. 发明授权
    • Gas-insulated electric device
    • 气体绝缘电气设备
    • US09431800B2
    • 2016-08-30
    • US13806202
    • 2010-09-13
    • Tadahiro YoshidaKazuki TakahashiKatsushi NakadaMasahiro Arioka
    • Tadahiro YoshidaKazuki TakahashiKatsushi NakadaMasahiro Arioka
    • H02B13/045H02B13/035H02B1/56
    • H02B13/045H02B1/56H02B13/0358
    • A gas-insulated electric device, by which a cross-sectional area of a central conductor can be reduced. The gas-insulated electric device includes an insulation tube that ranges to portions facing to ground potential portions for a central conductor and to upper-lower portions along the grounding potential portions, and is coaxially arranged along the central conductor in a state where a gap intervenes between the central conductor and the insulation tube; a conductive layer that is formed on an inner surface of an insulation tube and is electrically connected to the central conductor; and a ground layer that is formed on an inner surface or an outer surface of the insulation tube and is grounded; in which heat generated from the central conductor is radiated by convecting the insulation gas through the gap between the central conductor and insulation tube.
    • 一种气体绝缘电气装置,可以减小中心导体的横截面积。 气体绝缘电气装置包括绝缘管,其范围为面向中心导体的地电位部分的部分和沿着接地电位部分的上下部分,并且在间隙干涉的状态下沿着中心导体同轴布置 在中心导体和绝缘管之间; 导电层,其形成在绝缘管的内表面上并与中心导体电连接; 以及形成在绝缘管的内表面或外表面上并接地的接地层; 其中通过将绝缘气体通过中心导体和绝缘管之间的间隙对流而辐射从中心导体产生的热量。
    • 3. 发明申请
    • VACUUM CIRCUIT BREAKER
    • 真空断路器
    • US20120228266A1
    • 2012-09-13
    • US13510193
    • 2010-08-17
    • Katsushi NakadaMasahiro Arioka
    • Katsushi NakadaMasahiro Arioka
    • H01H33/666
    • H02B13/0354H01H3/46H01H33/42H01H33/6662H01H2033/6667
    • In a vacuum circuit breaker corresponding to three-phase, which is configured by linearly arranging three pressure tanks respectively corresponding to one-phase, in which insulation gas is encapsulated, and a vacuum valve is installed, each pressure tank has a nearly longitudinal shape or a nearly square shape, viewed from a plane surface, and the vacuum valve is arranged in each of the pressure tanks in a state where a drive direction of the movable conductor is aligned with an upper lower direction and the movable conductor is positioned lower than the vacuum valve, and keeps a sufficient insulation distance with respect to the movable-side connection conductor, and is neared to a position in one of diagonal directions or longitudinal directions of the pressure tank having a nearly square shape or nearly ellipsoidal shape, and moreover, the operation mechanism is arranged and configured at a position, which is lower than the vacuum valve.
    • 在对应于三相的真空断路器中,其通过线性排列分别对应于绝缘气体被封装的一相的三个压力罐和安装真空阀而构成,每个压力罐具有近似的纵向形状或 从平面观察近似正方形,并且在可动导体的驱动方向与上下方向对准的状态下,将真空阀配置在各压力罐中,并且可动导体位于低于 真空阀,并且相对于可动侧连接导体保持足够的绝缘距离,并且接近具有接近正方形或接近椭圆形的压力罐的对角方向或纵向方向中的一个位置, 操作机构配置在比真空阀低的位置。
    • 4. 发明授权
    • Vacuum circuit breaker
    • 真空断路器
    • US08963037B2
    • 2015-02-24
    • US13510193
    • 2010-08-17
    • Katsushi NakadaMasahiro Arioka
    • Katsushi NakadaMasahiro Arioka
    • H01H33/666H02B13/035H01H33/42H01H3/46
    • H02B13/0354H01H3/46H01H33/42H01H33/6662H01H2033/6667
    • In a vacuum circuit breaker corresponding to three-phase, which is configured by linearly arranging three pressure tanks respectively corresponding to one-phase, in which insulation gas is encapsulated, and a vacuum valve is installed, each pressure tank has a nearly longitudinal shape or a nearly square shape, viewed from a plane surface, and the vacuum valve is arranged in each of the pressure tanks in a state where a drive direction of the movable conductor is aligned with an upper lower direction, and the movable conductor is positioned lower than the vacuum valve, and keeps a sufficient insulation distance with respect to the movable-side connection conductor, and is neared to a position in one of diagonal directions or longitudinal directions of the pressure tank having a nearly square shape or nearly ellipsoidal shape, and moreover, the operation mechanism is arranged and configured at a position, which is lower than the vacuum valve.
    • 在对应于三相的真空断路器中,其通过线性排列分别对应于绝缘气体被封装的一相的三个压力罐和安装真空阀而构成,每个压力罐具有近似的纵向形状或 从平面观察近似正方形的形状,并且在可动导体的驱动方向与上下方向对准的状态下,在各压力罐中配置真空阀,并且可动导体位于 真空阀,并且相对于可动侧连接导体保持足够的绝缘距离,并且接近具有近似正方形或接近椭圆形的压力罐的对角方向或纵向方向中的一个位置,此外 操作机构被布置和配置在比真空阀低的位置。