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    • 4. 发明授权
    • Swash plate compressor
    • 斜盘式压缩机
    • US07168359B2
    • 2007-01-30
    • US11020452
    • 2004-12-22
    • Masaki OtaHajime KuritaYuji KaneshigeMasakazu MuraseTetsuhiko Fukanuma
    • Masaki OtaHajime KuritaYuji KaneshigeMasakazu MuraseTetsuhiko Fukanuma
    • F01B3/02
    • F04B27/1063
    • A swash plate compressor that prevents a slide plate from being separated from a swash plate. The compressor includes a drive shaft. A slide plate is rotatable relative to the swash plate. Two shoes is arranged on the swash plate and the slide plate. A bearing arranged between the swash plate and the slide plate and in between the shoes. A piston is connected to the swash plate and the slide plate by the shoes and is reciprocated to compress gas. The swash plate includes a swash plate support surface, and the slide plate includes a slide plate support surface, in which each surface is for contacting the bearing. The swash plate is formed so that a clearance between the swash plate support surface and the slide plate support surface increases radially inwardly of the swash plate and the slide plate.
    • 防止滑板与斜盘分离的斜盘式压缩机。 压缩机包括驱动轴。 滑板可相对于斜盘旋转。 两个鞋子布置在斜盘和滑板上。 在斜板和滑板之间以及鞋之间设有一个轴承。 活塞通过鞋连接到斜板和滑板,并且往复运动以压缩气体。 斜盘包括斜盘支撑表面,并且滑板包括滑板支撑表面,每个表面用于接触轴承。 旋转斜盘形成为使得斜盘支撑表面和滑板支撑表面之间的间隙径向向内旋转斜盘和滑板。
    • 7. 发明授权
    • Variable displacement compressor
    • 一个可变的位移压缩机,至少从一个投影机上移动一个凸轮表面,用于保持顶部间隙大量恒定
    • US06786705B2
    • 2004-09-07
    • US10329121
    • 2002-12-24
    • Hajime KuritaHiroshi UneyamaTetsuhiko FukanumaHiroaki KayukawaTakahiro MoroiTatsuya KoideKenji Mochizuki
    • Hajime KuritaHiroshi UneyamaTetsuhiko FukanumaHiroaki KayukawaTakahiro MoroiTatsuya KoideKenji Mochizuki
    • F04B4916
    • F04B27/1072
    • A variable displacement compressor has a drive shaft, a rotor supported by the drive shaft, a drive plate supported by the drive shaft and a hinge mechanism located between the rotor and the drive plate. The hinge mechanism includes a cam, which is located on the rotor, and a guide portion, which is located on the drive plate. The cam has a cam surface, which has a predetermined profile. One of the cam surface and the guide portion slides against the other in accordance with inclination of the drive plate. The guide portion traces a path corresponding to the profile of the cam surface with respect to the cam. The path includes a first path corresponding to a small displacement region of the compressor and a second path corresponding to a large displacement region of the compressor. The profile of the cam surface is determined such that the first path and the second path bulge in a direction opposite to each other to compensate for fluctuation of a top dead center position of the piston.
    • 可变排量压缩机具有驱动轴,由驱动轴支撑的转子,由驱动轴支撑的驱动板和位于转子和驱动板之间的铰链机构。 铰链机构包括位于转子上的凸轮和位于驱动板上的引导部分。 凸轮具有凸轮表面,其具有预定的轮廓。 凸轮表面和引导部分之一根据驱动板的倾斜而相对于另一个滑动。 引导部分跟踪相对于凸轮的凸轮表面轮廓的路径。 路径包括对应于压缩机的小位移区域的第一路径和对应于压缩机的大位移区域的第二路径。 确定凸轮表面的轮廓,使得第一路径和第二路径在彼此相反的方向上膨胀以补偿活塞的上止点位置的波动。
    • 10. 发明申请
    • Check valve
    • 止回阀
    • US20060037647A1
    • 2006-02-23
    • US11198816
    • 2005-08-05
    • Motoaki OkudaHajime KuritaMasakazu Murase
    • Motoaki OkudaHajime KuritaMasakazu Murase
    • F16K15/06
    • F16K15/025Y10T137/7939
    • The check valve includes a valve housing, a valve body and an urging member. The valve housing has a peripheral wall and a valve seat. The peripheral wall has an opening therethrough for fluid communication. The opening is located more downstream than the valve seat. The end of the opening on the side of the valve seat is spaced at a predetermined length in a direction in which the valve body is spaced away from the valve seat. A first throttle is formed in a space between an inner peripheral surface of the valve housing and an outer peripheral surface of the valve body until the valve body is slid in the direction for the predetermined length from the state in which the valve body is seated on the valve seat.
    • 止回阀包括阀壳体,阀体和推动构件。 阀壳体具有周壁和阀座。 周壁具有通过其的流体连通的开口。 开口位于阀座的下游。 在阀座侧面上的开口的端部在阀体与阀座间隔开的方向上以预定长度隔开。 第一节气门形成在阀壳体的内周面与阀体的外周面之间的空间中,直到阀体从阀体所处的状态沿预定长度的方向滑动 阀座。