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    • 6. 发明申请
    • Structure for sensing refrigerant flow rate in a compressor
    • 用于检测压缩机中制冷剂流量的结构
    • US20080104984A1
    • 2008-05-08
    • US11978036
    • 2007-10-26
    • Akinobu KanaiHiroyuki NakaimaYoshinori InoueAtsuhiro Suzuki
    • Akinobu KanaiHiroyuki NakaimaYoshinori InoueAtsuhiro Suzuki
    • F25B49/00
    • F04B27/1804F04B2205/08F25B1/02F25B43/02F25B2400/02F25B2400/076F25B2700/13
    • The compressor has a differential pressure type flow rate detector that obtains the pressure in an upstream passage and the pressure in a downstream passage to detect a refrigerant flow rate within a refrigerant passage. The detector has an accommodation chamber, and a partition body slidably accommodated within the accommodation chamber. The partition body comparts the accommodation chamber into a high pressure chamber to which the pressure in the upstream passage is introduced, and a low pressure chamber to which the pressure in the downstream passage is introduced. The compressor has an oil separator having an oil introduction passage connected to the oil separating chamber and a high pressure introduction passage introducing the pressure in the upstream passage to the high pressure chamber. The oil introduction passage introduces the oil separated from the refrigerant by the oil separator to a pressure zone other than a discharge pressure zone.
    • 压缩机具有压力型流量检测器,其获得上游通路中的压力和下游通道中的压力,以检测制冷剂通道内的制冷剂流量。 检测器具有容纳室和可容纳在容纳室内的分隔体。 分隔体将容纳室配合到上游通路的压力被引入的高压室和下游通路的压力被引入的低压室。 压缩机具有油分离器,该油分离器具有连接到油分离室的油引入通道和将上游通道中的压力引入高压室的高压引入通道。 引油通道将通过油分离器从制冷剂分离的油引入除了排出压力区域之外的压力区域。
    • 10. 发明授权
    • Refrigerant gas compressor
    • 制冷剂气体压缩机
    • US07976288B2
    • 2011-07-12
    • US11750466
    • 2007-05-18
    • Yoshinori InoueNaoki KoedaAkinobu KanaiHiroyuki NakaimaTomoji Tarutani
    • Yoshinori InoueNaoki KoedaAkinobu KanaiHiroyuki NakaimaTomoji Tarutani
    • F04B1/12
    • F04B27/109F04B27/1009F04B39/1066F04B39/123
    • A refrigerant gas compressor includes a cylinder block formed with plural cylinder bores, a first housing disposed at the one end of the cylinder block, a second housing disposed at the other end of the cylinder block, a drive shaft supported by the cylinder block and one of the housings, a crank chamber formed in one of the housings, a suction chamber and a discharge chamber formed in one of the housings, a valve plate assembly disposed between the cylinder block and at least one of the housings, a stepped portion formed adjacent to the valve plate assembly to receive a part of the valve plate assembly. A storage chamber is provided for reserving therein oil separated from refrigerant gas. An oil groove is formed by the stepped portion and the valve plate assembly and connecting the storage chamber with one of the crank chamber and the suction chamber.
    • 制冷剂气体压缩机包括形成有多个气缸孔的气缸体,设置在气缸体的一端的第一壳体,设置在气缸体的另一端的第二壳体,由气缸体支撑的驱动轴和一个 壳体中的一个形成的曲柄室,形成在一个壳体中的吸入室和排出室,设置在气缸体和至少一个壳体之间的阀板组件,邻接形成的台阶部分 到阀板组件以接收阀板组件的一部分。 提供储存室用于在其中储存从制冷剂气体分离的油。 油槽由台阶部分和阀板组件形成,并将储存室与曲轴室和抽吸室中的一个连接。