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    • 21. 发明授权
    • Fluid machine and refrigeration cycle apparatus
    • 流体机和制冷循环装置
    • US08087260B2
    • 2012-01-03
    • US12376365
    • 2008-01-16
    • Takeshi OgataTakumi HikichiAtsuo OkaichiMasaru MatsuiHiroshi Hasegawa
    • Takeshi OgataTakumi HikichiAtsuo OkaichiMasaru MatsuiHiroshi Hasegawa
    • F25D9/00
    • F04C18/0215F01C1/3442F01C11/004F01C11/008F04C23/008
    • A fluid machine (201) includes: a compression mechanism (2) for compressing a working fluid; an expansion mechanism (4) for expanding the working fluid and for recovering mechanical power from the expanding working fluid; a shaft (5) for coupling the compression mechanism (2) and the expansion mechanism (4) and for transferring the mechanical power recovered by the expansion mechanism (4) to the compression mechanism (2); and a closed casing (1) for accommodating the compression mechanism (2), the shaft (5) and the expansion mechanism (4), and having an internal space into which the working fluid that has been compressed by the compression mechanism (2) is discharged. A refrigerant passage space (7) through which a refrigerant to be drawn into the expansion mechanism (4) passes is formed between an expansion chamber of the expansion mechanism (4) and the internal space of the closed casing (1).
    • 流体机械(201)包括:压缩机构(2),用于压缩工作流体; 膨胀机构(4),用于使工作流体膨胀并且用于从膨胀的工作流体中回收机械动力; 用于联接压缩机构(2)和膨胀机构(4)并将由膨胀机构(4)回收的机械动力传递到压缩机构(2)的轴(5)。 以及用于容纳压缩机构(2),轴(5)和膨胀机构(4)的封闭壳体(1),并且具有内部空间,被压缩机构(2)压缩的工作流体, 出院 在膨胀机构(4)的膨胀室与封闭壳体(1)的内部空间之间形成有被引导到膨胀机构(4)中的制冷剂通过的制冷剂通路空间(7)。
    • 23. 发明申请
    • FLUID MACHINE AND REFRIGERATION CYCLE APPARATUS
    • 流体机和制冷循环装置
    • US20100236275A1
    • 2010-09-23
    • US12376365
    • 2008-01-16
    • Takeshi OgataTakumi HikichiAtsuo OkaichiMasaru MatsuiHiroshi Hasegawa
    • Takeshi OgataTakumi HikichiAtsuo OkaichiMasaru MatsuiHiroshi Hasegawa
    • F25D9/00
    • F04C18/0215F01C1/3442F01C11/004F01C11/008F04C23/008
    • A fluid machine (201) includes: a compression mechanism (2) for compressing a working fluid; an expansion mechanism (4) for expanding the working fluid and for recovering mechanical power from the expanding working fluid; a shaft (5) for coupling the compression mechanism (2) and the expansion mechanism (4) and for transferring the mechanical power recovered by the expansion mechanism (4) to the compression mechanism (2); and a closed casing (1) for accommodating the compression mechanism (2), the shaft (5) and the expansion mechanism (4), and having an internal space into which the working fluid that has been compressed by the compression mechanism (2) is discharged. A refrigerant passage space (7) through which a refrigerant to be drawn into the expansion mechanism (4) passes is formed between an expansion chamber of the expansion mechanism (4) and the internal space of the closed casing (1).
    • 流体机械(201)包括:压缩机构(2),用于压缩工作流体; 膨胀机构(4),用于使工作流体膨胀并且用于从膨胀的工作流体中回收机械动力; 用于联接压缩机构(2)和膨胀机构(4)并将由膨胀机构(4)回收的机械动力传递到压缩机构(2)的轴(5)。 以及用于容纳压缩机构(2),轴(5)和膨胀机构(4)的封闭壳体(1),并且具有内部空间,被压缩机构(2)压缩的工作流体, 出院 在膨胀机构(4)的膨胀室与封闭壳体(1)的内部空间之间形成有被引导到膨胀机构(4)中的制冷剂通过的制冷剂通路空间(7)。
    • 25. 发明申请
    • MULTI STAGE ROTARY EXPANDER AND REFRIGERATION CYCLE APPARATUS WITH THE SAME
    • 多级旋转膨胀机和制冷循环装置
    • US20090229302A1
    • 2009-09-17
    • US11916609
    • 2006-05-12
    • Hiroshi HasegawaMasaru MatsuiAtsuo OkaichiTomoichiro TamuraTakeshi Ogata
    • Hiroshi HasegawaMasaru MatsuiAtsuo OkaichiTomoichiro TamuraTakeshi Ogata
    • F25B1/00F04C18/00
    • F01C21/0863F01C1/3564F01C11/002F01C21/0827F04C23/008
    • An integrally formed vane (301) is disposed slidably in a vane groove (205a) of a first cylinder (205) and a vane groove (206a) of a second cylinder (206). A cut-out (301a) with a width substantially equal to the thickness of an intermediate plate (304) is provided in the vane (301), which is divided by this cut-out (301a) into a first vane portion (301b) whose leading end makes contact with a first piston (209) at its leading end and a second vane portion (301c) whose leading end makes contact with a second piston (210). This configuration allows the first vane portion (301b) to be pushed toward the first piston (209) side by the pressure difference acting on the second vane portion (301c) and makes it possible to keep a contact state between the first vane portion (301b) and the first piston (209), even when no pushing force toward the first piston (209) side that results from the pressure difference acts on the first vane portion (301b).
    • 一体形成的叶片(301)可滑动地设置在第一气缸(205)的叶片槽(205a)和第二气缸(206)的叶片槽(206a)中。 在由该切口(301a)分割成第一叶片部(301b)的叶片(301)中设置有宽度大致等于中间板(304)的厚度的切口(301a) 其前端与其前端处的第一活塞(209)接触,其前端与第二活塞(210)接触的第二叶片部分(301c)。 这种构造允许第一叶片部分(301b)通过作用在第二叶片部分(301c)上的压力差而被推向第一活塞(209)侧,并且可以保持第一叶片部分(301b)之间的接触状态 )和第一活塞(209),即使当由于压力差而导致朝向第一活塞(209)侧的推力作用在第一叶片部分(301b)上时。
    • 26. 发明申请
    • ROTARY-TYPE FLUID MACHINE AND REFRIGERATION CYCLE APPARATUS
    • 旋转式流体机和制冷循环装置
    • US20090155111A1
    • 2009-06-18
    • US12066450
    • 2006-09-12
    • Atsuo OkaichiHiroshi HasegawaMasaru MatsuiTomoichiro TamuraTakeshi Ogata
    • Atsuo OkaichiHiroshi HasegawaMasaru MatsuiTomoichiro TamuraTakeshi Ogata
    • F01C20/18F25B1/00
    • F25B43/02F01C1/3564F01C11/002F01C11/004F01C13/04F01C21/04F01C21/108F04C18/3564F04C23/008F04C29/025F04C2240/809
    • A rotary-type fluid machine (10A) includes: a closed casing (1) having a bottom portion utilized as an oil reservoir, a rotary-type fluid mechanism (expansion mechanism) (15) that is provided in an upper portion of the closed casing (1) and in which working chambers (32, 33) in cylinders (22, 24) are partitioned into a suction side working chamber and a discharge side working chamber by vanes (28, 29), a shaft (5) having therein an oil supply passage (51) for supplying oil to the fluid mechanism (15), the shaft being connected to the fluid mechanism (15) and extending an oil reservoir (45), an oil pump (52) provided at a lower portion of the shaft (5), an oil retaining portion (65) for retaining oil, which is pumped up by the oil pump (52) and supplied through the oil supply passage (51), in a surrounding region around the fluid mechanism (15) to allow the partitioning members of the fluid mechanism (15) to be lubricated, the oil retaining portion formed so that the liquid level of the oil retained therein is positioned higher the lower face of the partitioning members (28, 29).
    • 旋转式流体机械(10A)包括:具有用作储油器的底部的封闭壳体(1),设置在封闭的上部的旋转型流体机构(膨胀机构)(15) 壳体(1),其中气缸(22,24)中的工作室(32,33)通过叶片(28,29)分隔成吸力侧工作室和排出侧工作室,其中具有其中的轴(5) 用于向流体机构(15)供给油的供油通道(51),所述轴连接到流体机构(15)并延伸储油器(45),油泵(52)设置在流体机构 轴(5),用于保持油的油保持部(65),其被油泵(52)泵送并通过供油通道(51)供给到围绕流体机构(15)的周围区域, 以允许流体机构(15)的分隔构件被润滑,油保持部分形成为使得液面 保持在其中的油定位在分隔构件(28,29)的下表面的较高处。
    • 28. 发明授权
    • Rotary compressor and refrigeration cycle apparatus
    • 旋转压缩机和制冷循环装置
    • US08985984B2
    • 2015-03-24
    • US13497431
    • 2011-07-06
    • Takeshi OgataAtsuo OkaichiHiroshi Hasegawa
    • Takeshi OgataAtsuo OkaichiHiroshi Hasegawa
    • F04C2/00F04C18/00F04C23/00F04C11/00F04C15/00F04C18/356F04C29/12
    • F04C18/3564F04C23/001F04C23/008F04C29/128F25B1/04F25B1/10F25B2400/23
    • A rotary compressor (102) has a shaft (4), a cylinder (5), a piston (8), a first vane (32), a second vane (33), a first suction port (19), and a second suction port (20). The first vane (32) divides a space between the cylinder (5) and the piston (8) along a circumferential direction of the piston (8). The second vane (33) further divides the space divided by the first vane (32) along the circumferential direction of the piston (8) so that a first compression chamber (25) and a second compression chamber (26) having a smaller volume than the first compression chamber (25) are formed within the cylinder (5). The first suction port (19) introduces a working fluid into the first compression chamber (25). The second suction port (20) introduces a working fluid into the second compression chamber (26). The second suction port (20) is provided with a suction check valve (50).
    • 旋转压缩机(102)具有轴(4),气缸(5),活塞(8),第一叶片(32),第二叶片(33),第一吸入口(19) 吸入口(20)。 第一叶片(32)沿着活塞(8)的圆周方向在气缸(5)和活塞(8)之间分隔空间。 第二叶片(33)还沿着活塞(8)的圆周方向划分由第一叶片(32)分开的空间,使得具有比第一压缩室(25)和第二压缩室 第一压缩室25形成在气缸5内。 第一吸入口(19)将工作流体引入第一压缩室(25)。 第二吸入口(20)将工作流体引入第二压缩室(26)。 第二吸入口(20)设置有吸入止回阀(50)。
    • 29. 发明申请
    • ROTARY COMPRESSOR AND REFRIGERATION CYCLE APPARATUS
    • 旋转压缩机和制冷循环装置
    • US20120174618A1
    • 2012-07-12
    • US13497431
    • 2011-07-06
    • Takeshi OgataAtsuo OkaichiHiroshi Hasegawa
    • Takeshi OgataAtsuo OkaichiHiroshi Hasegawa
    • F25B1/00F04C18/344
    • F04C18/3564F04C23/001F04C23/008F04C29/128F25B1/04F25B1/10F25B2400/23
    • A rotary compressor (102) has a shaft (4), a cylinder (5), a piston (8), a first vane (32), a second vane (33), a first suction port (19), and a second suction port (20). The first vane (32) divides a space between the cylinder (5) and the piston (8) along a circumferential direction of the piston (8). The second vane (33) further divides the space divided by the first vane (32) along the circumferential direction of the piston (8) so that a first compression chamber (25) and a second compression chamber (26) having a smaller volume than the first compression chamber (25) are formed within the cylinder (5). The first suction port (19) introduces a working fluid into the first compression chamber (25). The second suction port (20) introduces a working fluid into the second compression chamber (26). The second suction port (20) is provided with a suction check valve (50).
    • 旋转压缩机(102)具有轴(4),气缸(5),活塞(8),第一叶片(32),第二叶片(33),第一吸入口(19) 吸入口(20)。 第一叶片(32)沿着活塞(8)的圆周方向在气缸(5)和活塞(8)之间分隔空间。 第二叶片(33)还沿着活塞(8)的圆周方向划分由第一叶片(32)分开的空间,使得具有比第一压缩室(25)和第二压缩室 第一压缩室25形成在气缸5内。 第一吸入口(19)将工作流体引入第一压缩室(25)。 第二吸入口(20)将工作流体引入第二压缩室(26)。 第二吸入口(20)设置有吸入止回阀(50)。