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    • 2. 发明申请
    • Oil separation structure in compressor
    • 压缩机油分离结构
    • US20070177991A1
    • 2007-08-02
    • US11656858
    • 2007-01-22
    • Yoshinori InoueNaoki KoedaMasaya SakamotoTomoji Tarutani
    • Yoshinori InoueNaoki KoedaMasaya SakamotoTomoji Tarutani
    • F04B39/00
    • F04B27/109F04B39/0061F04B39/0072F04B39/04F04B39/16
    • A muffler forming member defines a muffler chamber. Refrigerant discharged from a cylinder bore is sent to the muffler chamber. The muffler forming member is coupled to a circumferential surface of a housing of a compressor. An oil separation chamber is defined in a discharge pressure zone of the compressor. The oil separation chamber separates the oil from the refrigerant discharged from the cylinder bore. The oil separation chamber extends into both the muffler forming member and the housing. The oil separation chamber has a refrigerant inlet through which the refrigerant flows into the oil separation chamber. The refrigerant inlet is formed in the muffler forming member. Therefore, the oil separation chamber is prolonged in the direction from the muffler forming member toward the housing, thereby improving the oil separation performance.
    • 消声器形成构件限定消声器室。 从气缸孔排出的制冷剂被送到消声器室。 消声器形成构件联接到压缩机壳体的圆周表面。 在压缩机的排出压力区域中限定油分离室。 油分离室将油与从缸孔排出的制冷剂分离。 油分离室延伸到消声器形成构件和壳体中。 油分离室具有制冷剂入口,制冷剂通过该制冷剂入口流入分油室。 制冷剂入口形成在消声器形成部件中。 因此,油分离室从消声器形成部件朝向壳体的方向延长,从而提高油分离性能。
    • 5. 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。
    • 6. 发明申请
    • REFRIGERANT GAS COMPRESSOR
    • 制冷气体压缩机
    • US20070269319A1
    • 2007-11-22
    • US11750466
    • 2007-05-18
    • Yoshinori InoueNaoki KoedaAkinobu KanaiHiroyuki NakaimaTomoji Tarutani
    • Yoshinori InoueNaoki KoedaAkinobu KanaiHiroyuki NakaimaTomoji Tarutani
    • F04B27/08
    • 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。
    • 10. 发明授权
    • Compressor
    • 压缩机
    • US07856818B2
    • 2010-12-28
    • US11990247
    • 2007-05-31
    • Yoshinori InoueAkinobu KanaiOsamu NakayamaNaoki Koeda
    • Yoshinori InoueAkinobu KanaiOsamu NakayamaNaoki Koeda
    • F04B27/08F25B43/00
    • F04B27/109F04B39/0207F04B49/225F04B53/20F04B2027/1872F04C18/0215F04C18/3441F04C29/026
    • A compressor having a discharge chamber into which compressed refrigerant gas is discharged, a discharge passage connected to the discharge chamber, an oil separation device that centrifugally separate oil from the refrigerant gas, an oil reservoir chamber that communicates with a separation chamber through an oil passage and retains the oil separated from the refrigerant gas, and a filter provided between the separation chamber and the oil passage is disclosed. The oil reservoir chamber communicates with a low pressure zone in the compressor the pressure of which is lower than the pressure in the discharge chamber. The oil reservoir chamber thus supplies the separated oil to the low pressure zone. The oil separation device is arranged in the discharge passage in such a manner as to define the separation chamber. The oil separation device centrifugally separate the oil from the refrigerant gas by causing swirling of the refrigerant gas that has been sent to the separation chamber. The filter extends in a swirling direction of the refrigerant gas in the separation chamber.
    • 一种具有排出压缩的制冷剂气体的排出室的压缩机,与排出室连接的排出通路,将油与制冷剂气体离心分离的油分离装置,通过油路与分离室连通的储油室 并且保持与制冷剂气体分离的油,并且公开了设置在分离室和油路之间的过滤器。 储油室与压缩机中的压力低于排气室压力的低压区连通。 因此储油室将分离的油提供给低压区。 油分离装置以限定分离室的方式设置在排出通道中。 油分离装置通过使已经送到分离室的制冷剂气体旋转而将油与制冷剂气体离心分离。 过滤器在分离室中的制冷剂气体的旋转方向上延伸。