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    • 3. 发明授权
    • Electric compressor
    • 电动压缩机
    • US07147443B2
    • 2006-12-12
    • US11077214
    • 2005-03-11
    • Nobuaki OgawaMasahiko MakinoYukihiro Fujiwara
    • Nobuaki OgawaMasahiko MakinoYukihiro Fujiwara
    • F04B17/03
    • F04B39/06F04B35/04F04C18/0215F04C23/008F04C29/047F04C29/12F04C2240/30F04C2240/808
    • It is an object of the present invention to provide an electric compressor capable of enhancing the mountability with respect to a vehicle without increasing the compressor in size when the electric compressor and a motor-driving circuit which drives a motor of the electric compressor are integrally formed together. A suction chamber 61 which is in communication with a fixed panel suction port 16 provided in a fixed scroll 11 from a suction port 8 provided in a sub-casing 102, and a discharge chamber 62 which is in communication with a communication passage 63 from a fixed panel discharge port 31 provided in the fixed scroll 11 are disposed on the same plane in a radial direction of a compressor, and the motor-driving circuit 101 is disposed in an axial direction of the compressor so that an IPM 105 which is a heat generating part of the circuit substrate 103 can be brought into tight contact with the suction chamber 61.
    • 本发明的目的是提供一种电动压缩机,其能够在电动压缩机和驱动电动压缩机的电动机的电动机驱动电路整体形成时不增加压缩机的尺寸而提高车辆的安装性 一起。 与设置在副壳体102中的吸入口8设置在固定涡旋盘11上的固定面板吸入口16连通的吸入室61,以及与连通路63连通的排出室62, 设置在固定涡旋盘11中的固定板排出口31设置在压缩机的径向的同一平面上,电动机驱动电路101沿压缩机的轴向设置,使得作为热量的IPM 105 可以使电路基板103的一部分与吸引室61紧密接触。
    • 4. 发明申请
    • Electric compressor
    • 电动压缩机
    • US20050201873A1
    • 2005-09-15
    • US11077214
    • 2005-03-11
    • Nobuaki OgawaMasahiko MakinoYukihiro Fujiwara
    • Nobuaki OgawaMasahiko MakinoYukihiro Fujiwara
    • F04B39/06F04B17/00F04B39/00F04C18/02F04C29/00F04C29/04
    • F04B39/06F04B35/04F04C18/0215F04C23/008F04C29/047F04C29/12F04C2240/30F04C2240/808
    • It is an object of the present invention to provide an electric compressor capable of enhancing the mountability with respect to a vehicle without increasing the compressor in size when the electric compressor and a motor-driving circuit which drives a motor of the electric compressor are integrally formed together. A suction chamber 61 which is in communication with a fixed panel suction port 16 provided in a fixed scroll 11 from a suction port 8 provided in a sub-casing 102, and a discharge chamber 62 which is in communication with a communication passage 63 from a fixed panel discharge port 31 provided in the fixed scroll 11 are disposed on the same plane in a radial direction of a compressor, and the motor-driving circuit 101 is disposed in an axial direction of the compressor so that an IPM 105 which is a heat generating part of the circuit substrate 103 can be brought into tight contact with the suction chamber 61.
    • 本发明的目的是提供一种电动压缩机,其能够在电动压缩机和驱动电动压缩机的电动机的电动机驱动电路整体形成时不增加压缩机的尺寸而提高车辆的安装性 一起。 与设置在副壳体102中的吸入口8设置在固定涡旋盘11上的固定面板吸入口16连通的吸入室61,以及与连通路63连通的排出室62, 设置在固定涡旋盘11中的固定板排出口31设置在压缩机的径向的同一平面上,电动机驱动电路101沿压缩机的轴向设置,使得作为热量的IPM 105 可以使电路基板103的一部分与吸引室61紧密接触。
    • 5. 发明授权
    • Scroll compressor having improved orbital drive mechanism
    • 具有改进的轨道驱动机构的涡旋压缩机
    • US5536152A
    • 1996-07-16
    • US498232
    • 1995-07-05
    • Sadao KawaharaTakao FujitaTatsuhisa TaguchiTeruyuki AkazawaMasahiko MakinoNobuaki Ogawa
    • Sadao KawaharaTakao FujitaTatsuhisa TaguchiTeruyuki AkazawaMasahiko MakinoNobuaki Ogawa
    • F04C27/00F04C18/02F04C28/28F04C29/00F04C29/02F01C1/04
    • F04C28/28F04C29/0057
    • A scroll compressor includes an orbital drive mechanism for orbiting an orbiting scroll relative to a stationary scroll. The orbiting scroll is formed with a generally cylindrical boss extending in a direction away from the stationary scroll. The orbital drive mechanism includes a main shaft rotatably supported by a compressor housing, an eccentric shaft extending from one end face of the main shaft and having a longitudinal axis parallel to, but offset laterally from a longitudinal axis of the main shaft, and an eccentric bush having a socket inserted rotatably into the cylindrical boss. The eccentric shaft, engaged in the socket, has first and second rounded side faces opposite to each other both having a common center of curvature, while the socket has first and second inner wall portions opposite to each other, each of which has a center of curvature substantially aligned with the common center of curvature of the first and second rounded side faces of the eccentric shaft. Third and fourth side faces of the eccentric shaft extending between associated ends of the first and second rounded side faces confront third and fourth inner wall portions of the socket and are spaced inwardly therefrom so that the eccentric bush can swing relative to the eccentric shaft about the common center of curvature of the first and second rounded side faces of the eccentric shaft, thus varying the orbiting radius.
    • 一种涡旋式压缩机包括一个轨道驱动机构,用于相对于静涡旋盘绕动涡旋盘旋转。 绕动涡旋件形成有沿远离固定涡旋件的方向延伸的大致圆柱形的凸起。 轨道驱动机构包括由压缩机壳体可旋转地支撑的主轴,偏心轴从主轴的一个端面延伸并且具有与主轴的纵向轴线平行但横向偏离主轴的纵向轴线的纵向轴线,以及偏心轴 衬套具有可旋转地插入到圆柱形凸台中的插座。 接合在插座中的偏心轴具有彼此相对的第一和第二圆形侧面,其具有共同的曲率中心,而插座具有彼此相对的第一和第二内壁部分,每个内壁部分的中心具有 曲率基本上与偏心轴的第一和第二圆形侧面的共同曲率中心对准。 在第一和第二圆形侧面的相关联的端部之间延伸的偏心轴的第三和第四侧面面对插座的第三和第四内壁部分并且从其间隔开,使得偏心衬套可相对于偏心轴围绕 偏心轴的第一和第二圆形侧面的共同曲率中心,从而改变了轨道半径。