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    • 7. 发明专利
    • Hybrid compressor device
    • 混合压缩机装置
    • JP2004204735A
    • 2004-07-22
    • JP2002372937
    • 2002-12-24
    • Denso CorpNippon Soken Inc株式会社デンソー株式会社日本自動車部品総合研究所
    • SUZUKI YASUSHIUNO KEIICHIASA HIROTOMO
    • F04B35/00
    • F04C2240/45
    • PROBLEM TO BE SOLVED: To provide a hybrid compressor device capable of assuring a cooling function during halts of an engine and suppressing a cost increase in a start auxiliary machine, as well as attaining miniaturization.
      SOLUTION: The device is applied to a vehicle in which the engine 10 with the auxiliary machine 40 is stopped according to a travel condition. It is provided with a power distribution mechanism 150 distributing a driving force from a pulley 110 to a motor 120 and a compressor 130 and transmitting a driving force input by the motor 120 to the pulley 110 and the compressor 130, and a control device 160 selecting at least one of the driving forces from the pulley 110 and the motor 120 and operating the compressor 130. The control device 160 actuates the motor 120 so that the compressor 130 is operated to the anti-regular rotation side when the auxiliary machine 40 is actuated after the halt of the engine 10, and transmits the power from the motor 120 to the pulley 110 side.
      COPYRIGHT: (C)2004,JPO&NCIPI
    • 要解决的问题:提供一种能够确保发动机停止期间的冷却功能并抑制起动辅助机器的成本增加以及实现小型化的混合式压缩机装置。 解决方案:将该装置应用于其中根据行驶状态停止具有辅助机械40的发动机10的车辆。 配备有将滑轮110的驱动力分配给马达120和压缩机130的动力分配机构150,并将由马达120输入的驱动力传递到滑轮110和压缩机130,以及控制装置160选择 来自滑轮110和电动机120的驱动力中的至少一个并且操作压缩机130.控制装置160致动电动机120,使得当辅助机器40被致动时压缩机130被操作到防正规旋转侧 在发动机10停止之后,将电力从电动机120传递到滑轮110侧。 版权所有(C)2004,JPO&NCIPI
    • 9. 发明专利
    • Fluid machine
    • 流体机
    • JP2005273452A
    • 2005-10-06
    • JP2004076468
    • 2004-03-17
    • Denso CorpNippon Soken Inc株式会社デンソー株式会社日本自動車部品総合研究所
    • IWANAMI SHIGEKISUZUKI YASUSHIUNO KEIICHIUCHIDA KAZUHIDEHOTTA TADASHIASA HIROTOMOTAKEUCHI YASUHIROOGAWA HIROSHI
    • F01C1/02F04B35/00F04C23/00F04C23/02
    • PROBLEM TO BE SOLVED: To effectively operate a fluid machine regardless of an operating state.
      SOLUTION: The fluid machine incorporates a shift mechanism 400. Thereby, even though a rotation speed in which energy can be effectively recovered at employing a pump motor mechanism 100 as an expansion device is not matched to a rotation speed at which electric power is generated with high power generation efficiency maintained, waste heat can be effectively recovered as electric energy by the shift mechanism 400. Even though the expansion mechanism and compression mechanism allow the shared use by the same mechanism in the case where a volume of an operation chamber offering efficiency as the expansion device does not match a volume of an operation chamber offering efficiency as a compression mechanism, the pump motor mechanism 100 can be effectively operated in either case where the mechanism is employed as the expansion device or as the compression device.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:无论操作状态如何,都能有效地操作流体机械。 解决方案:流体机械包括换档机构400.由此,即使在使用作为膨胀装置的泵电动机构100的能量能够有效地回收的转速与电力的转速不匹配 在保持高发电效率的情况下产生,废热可以通过换档机构400作为电能有效地回收。即使膨胀机构和压缩机构允许在操作室的体积相同的机构共同使用 由于膨胀装置与提供作为压缩机构的效率的操作室的体积不匹配,所以提供效率,在将机构用作膨胀装置或压缩装置的情况下,可以有效地操作泵电机机构100。 版权所有(C)2006,JPO&NCIPI