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    • 3. 发明专利
    • Dc rotary electric machine
    • 直流旋转电机
    • JP2010187498A
    • 2010-08-26
    • JP2009030883
    • 2009-02-13
    • Hitachi Car Eng Co Ltd株式会社日立カーエンジニアリング
    • SAITO TAKAFUMISAITO YASUOSAITO KAZUHIRO
    • H02K13/00
    • PROBLEM TO BE SOLVED: To provide a DC rotary electric machine which reduces thermal deformation of a brush housing, prevents fixation and deflected abrasion of a brush, and prevents a rotation failure of a motor when a resin brush holder is molded integrally with a metal bracket.
      SOLUTION: The DC rotary electric machine is configured by integrally molding the brush holder made of a resin with the bracket made of a metal, and fixing the bracket to an opening of a cylindrical yoke housing a rotor and a stator. The brush holder has a brush box base formed in contact with the bracket, and the brush housing which is disposed on the brush box base to house the brush. A linear expansion difference adjusting hole for easing deformation upon molding the brush holder is formed near the brush housing of the brush box base.
      COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:为了提供一种降低电刷壳体的热变形的直流旋转电机,防止电刷的固定和偏转磨损,并且当树脂电刷架一体模制时防止电动机的旋转故障 金属支架 解决方案:DC旋转电机通过将由树脂制成的刷架一体地模制成由金属制成的托架而构成,并将支架固定到容纳转子和定子的圆柱形轭的开口上。 刷架具有形成为与支架接触的刷盒基座,以及布置在刷盒基座上以容纳刷​​子的刷子壳体。 在刷盒基座的刷壳体附近形成有用于在刷保持器成型时减轻变形的线膨胀差调节孔。 版权所有(C)2010,JPO&INPIT
    • 4. 发明专利
    • DE68919106D1
    • 1994-12-08
    • DE68919106
    • 1989-03-28
    • HITACHI LTD
    • SATO MINORIKASHIMURA KASTUICHITSUKUSHI MASANORIKUROSAWA YUKIOSAITO KAZUHIROKOYANAGI OSAMUNISHIDA ISAO
    • H01H33/16H01H33/24H02B11/26
    • In a circuit breaker in which an interrupting device, a resistor device and a capacitor device (2) are connected in parallel, a shield device is arranged to shield the interrupting device and the resistor device and comprises a first shield (17) for shielding the stationary main contact (5) and stationary resistor contact (22) and a second shield (16) for shielding the movable main contact (7) and movable resistor contact (20). Each of the first shield (17) and the second shield (16) comprises a large shield portion (17A, 16A) and a small shield portion (17B, 16B), and the small shield portions (16B, 17B) are arranged between the large shield portions (16A, 17A). The small shield portion (16B, 17B) terminates in the vicinity of the top of the main contact and of the top of the resistor contact. The small shield portion (16B, 17B) comprises wide portions situated substantially in the direction of an axis joining centers of the main contact and resistor contact and narrow portions situated substantially in the direction perpendicular to the axis. The width of the narrow portions is smaller than the width of the wide portions, and at least a part of the capacitor device (2) is arranged over the narrow portions. In the circuit breaker, since the capacitor device (2) is arranged over the narrow portions, the space for arranging the capacitor device (2) is larger than the conventional circuit breaker, the arrangement of the isoelectric lines is not disturbed or disordered locally in the vicinity of the top of the shield of the stationary main contact (5) and in the vicinity of the movable main contact (7) and high dielectric strength between the main contacts is obtained.
    • 7. 发明专利
    • DE68919106T2
    • 1995-05-24
    • DE68919106
    • 1989-03-28
    • HITACHI LTD
    • SATO MINORIKASHIMURA KASTUICHITSUKUSHI MASANORIKUROSAWA YUKIOSAITO KAZUHIROKOYANAGI OSAMUNISHIDA ISAO
    • H01H33/16H01H33/24H02B11/26
    • In a circuit breaker in which an interrupting device, a resistor device and a capacitor device (2) are connected in parallel, a shield device is arranged to shield the interrupting device and the resistor device and comprises a first shield (17) for shielding the stationary main contact (5) and stationary resistor contact (22) and a second shield (16) for shielding the movable main contact (7) and movable resistor contact (20). Each of the first shield (17) and the second shield (16) comprises a large shield portion (17A, 16A) and a small shield portion (17B, 16B), and the small shield portions (16B, 17B) are arranged between the large shield portions (16A, 17A). The small shield portion (16B, 17B) terminates in the vicinity of the top of the main contact and of the top of the resistor contact. The small shield portion (16B, 17B) comprises wide portions situated substantially in the direction of an axis joining centers of the main contact and resistor contact and narrow portions situated substantially in the direction perpendicular to the axis. The width of the narrow portions is smaller than the width of the wide portions, and at least a part of the capacitor device (2) is arranged over the narrow portions. In the circuit breaker, since the capacitor device (2) is arranged over the narrow portions, the space for arranging the capacitor device (2) is larger than the conventional circuit breaker, the arrangement of the isoelectric lines is not disturbed or disordered locally in the vicinity of the top of the shield of the stationary main contact (5) and in the vicinity of the movable main contact (7) and high dielectric strength between the main contacts is obtained.
    • 9. 发明专利
    • MALFUNCTION DETECTOR OF GAS-INSULATED SWITCHGEAR
    • JPH03139109A
    • 1991-06-13
    • JP27591689
    • 1989-10-25
    • HITACHI LTD
    • NISHIDA ISAOKISHI TSUNEOSASAKI KOJIFUKUOKA MASARUSAITO KAZUHIRO
    • H02B13/055H02H5/00
    • PURPOSE:To detect a partial discharge due to a defective internal insulation with a good accuracy by providing a detecting means including a detecting agent, which reacts on the decomposition gas SO2 of SF6 gas generated by a partial discharge accompanying the defective insulation to change color, in the vicinity of a supply and exhaust stop valve provided to a closed vessel. CONSTITUTION:A detecting means 2 mounted on the atmospheric side of SF6 supply and exhaust stop valve 1 detects the generation of a partial discharge due to a defective insulation in a closed vessel 11. For example, when the supply and exhaust stop valve 1 and an exhaust valve 6 are closed usually and the supply and exhaust stop valve 1 is opened at the time of detection, SF6 gas filling up the closed vessel 11 flows into a gas holding chamber 3 via the supply and exhaust stop valve 1. After that, when the supply and exhaust stop valve 1 is closed and the exhaust valve 6 is opened, a predetermined quantity of gas in the gas holding chamber 3 is discharged into the air from a through hole 13b while touching a detecting agent 7 in a detecting tube 5 from a through hole 13a. At that time, the detecting agent 7 reacts on decomposition products and changes color when SO2 exists.
    • 10. 发明专利
    • EARTHING TANK TYPE GAS-BLAST CIRCUIT BREAKER
    • JPH0246616A
    • 1990-02-16
    • JP19599088
    • 1988-08-08
    • HITACHI LTD
    • SATO MINORUKASHIMURA KATSUICHITSUKUSHI MASANORIKUROSAWA YUKIOSAITO KAZUHIRO
    • H01H33/70
    • PURPOSE:To make it possible to manufacture in a small size and economically even though the breaker is for a high voltage and a large capacity by providing shield members which consist of a cylindrical shield and a small shield at the fixing side and at the movable side of a breaking member, and providing a capacitor device at the position at the outer surface of the small shield and inside the cylindrical shield. CONSTITUTION:At the movable side and the fixing side of a breaking member 1 and a resistance device 19, shield members 16 and 17 formed in specific shapes are provided respectively. By utilizing an arc-form space surrounded by the imaginary circles of small shields 16B and 17B, and cylindrical shields 16A and 17A, which are parts of the shield members 16 and 17, a capacitor 2 to suppress a transient voltage and to control a share voltage of the breaking member 1 is positioned, and fixed and held by fixing metals 14 and 15 at the movable side and the fixing side. As a result, equipotential lines are distributed along the curvature r of the small shields 16B and 17B in equal intervals, and relax the electric field intensity at the pole extensively, making the breaking member for a high voltage and a large capacity in a compact size. Consequently, an earthing tank type gas-blast circuit breaker for a high voltage and a large capacity can be manufactured in a compact size and ecconomically.