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    • 4. 发明授权
    • Hybrid compressor
    • 混合压缩机
    • US07338261B2
    • 2008-03-04
    • US10797567
    • 2004-03-11
    • Takayuki KawaharaHiromitsu AdachiShinichirou WakouHideki Watanabe
    • Takayuki KawaharaHiromitsu AdachiShinichirou WakouHideki Watanabe
    • F04B9/14
    • F04C29/005F04C18/0238F04C18/0269F04C23/001F04C23/008F04C29/0085F04C2240/45
    • A hybrid compressor includes a first compression mechanism, which is driven by a first drive source, and a second compression mechanism, which is driven by a second drive source, and a second radial axis of a second housing of the second compression mechanism is offset relative to a first radial axis of a first housing of the first compression mechanism, or a second diameter of the second housing of the second compression mechanism is less than a first diameter of the first housing of the first compression mechanism, or both. When a significant external force is applied to the front end of a vehicle containing the compressor, most of the external force may be absorbed by the first compression mechanism portion of the compressor, thereby reducing or avoiding damage to the second compression mechanism. In particular, when the second drive source is an incorporated electric motor, damage to the electric motor may be reduced or avoided.
    • 混合式压缩机包括由第一驱动源驱动的第一压缩机构和由第二驱动源驱动的第二压缩机构,并且第二压缩机构的第二壳体的第二径向轴线偏移相对 到第一压缩机构的第一壳体的第一径向轴线,或者第二压缩机构的第二壳体的第二直径小于第一压缩机构的第一壳体的第一直径或两者。 当对包含压缩机的车辆的前端施加显着的外力时,大部分外力可以被压缩机的第一压缩机构部分吸收,从而减少或避免对第二压缩机构的损坏。 特别地,当第二驱动源是并入的电动机时,可以减少或避免对电动机的损坏。