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    • 61. 发明授权
    • Controller for variable displacement compressor and control method for the same
    • 变排量压缩机控制器及其控制方法相同
    • US07210911B2
    • 2007-05-01
    • US10976101
    • 2004-10-27
    • Masaki OtaMasakazu MuraseSatoshi UmemuraTatsuya Hirose
    • Masaki OtaMasakazu MuraseSatoshi UmemuraTatsuya Hirose
    • F04B1/26
    • F04B27/1804F04B2027/1827F04B2027/1854F04B2027/1859F04B2027/1895F25B9/008F25B49/022F25B2700/1931F25B2700/1933
    • A controller for a variable displacement compressor that maintains high displacement while preventing excessive increase in discharge pressure. The controller includes a pressure sensing mechanism for detecting pressure of a suction pressure region in the compressor. A suction pressure controlling means controls the displacement of the compressor so that the pressure detected by the pressure sensing mechanism is converged to a predetermined suction pressure setting. A sensor detects pressure of a discharge pressure region in the compressor. A discharge pressure controlling means controls the displacement of the compressor so that the pressure detected by the sensor is converged to a predetermined discharge pressure setting. When the pressure detected by the sensor is greater than a threshold pressure, an ECU switches the control of the compressor from control with the suction pressure controlling means to control with the discharge pressure controlling means.
    • 用于可变容量压缩机的控制器,其保持高位移,同时防止排出压力的过度增加。 控制器包括用于检测压缩机中的吸入压力区域的压力的压力感测机构。 吸入压力控制装置控制压缩机的位移,使得由压力感测机构检测到的压力会聚到预定的吸入压力设定。 传感器检测压缩机中的排出压力区域的压力。 排气压力控制装置控制压缩机的位移,使得由传感器检测的压力会聚到预定的排出压力设定。 当传感器检测到的压力大于阈值压力时,ECU通过吸入压力控制装置将压缩机的控制转换为控制,以便通过排出压力控制装置进行控制。
    • 64. 发明申请
    • Method of processing valve mechanism
    • 阀门机构处理方法
    • US20050150109A1
    • 2005-07-14
    • US11032283
    • 2005-01-10
    • Satoshi UmemuraTatsuya Hirose
    • Satoshi UmemuraTatsuya Hirose
    • F16K1/14F16K15/04F16K17/04F25B1/00F25B41/04B21C3/16B21K1/24
    • F16K17/0406Y10T29/49409Y10T29/49426
    • A method of processing a valve mechanism which includes a valve body having a shut-off surface in the form of a convex spherical surface, a valve hole, a valve seat formed by an opening of the valve hole, and a spring which urges the valve body toward the valve seat, wherein the valve mechanism is so formed that the valve body resists the urging force of the spring in accordance with the pressure increase in the valve hole to be separate from the valve seat, includes the steps of: preparing a processing tool having a processing surface in the form of a convex spherical surface which has the same curvature radius as the shut-off surface of the valve body; positioning the processing tool to the valve seat; and forming the valve seat along the form of the processing surface by pushing the processing surface of the processing tool against the valve seat.
    • 一种处理阀机构的方法,该阀机构包括具有凸球面形式的切断面的阀体,阀孔,由阀孔的开口形成的阀座,以及促使阀 主体朝向阀座,其中阀机构形成为使得阀体抵抗弹簧的推压力,根据与阀座分离的阀孔中的压力增加,包括以下步骤:准备加工 具有凸形球面形式的处理表面的工具具有与阀体截止表面相同的曲率半径; 将加工工具定位到阀座; 以及通过将处理工具的处理表面推靠在阀座上,沿着处理表面的形式形成阀座。
    • 66. 发明授权
    • Liquid-confined vibration isolator
    • 液体限制隔振器
    • US06793207B2
    • 2004-09-21
    • US10280371
    • 2002-10-25
    • Satoshi UmemuraTakehiro Okanaka
    • Satoshi UmemuraTakehiro Okanaka
    • F16F1508
    • F16F13/101F16F13/105
    • A vibration isolator includes a first metallic mounting member; a metallic body member disposed away from the first metallic mounting member in the vibration input direction; an elastic body portion elastically connecting the first metallic mounting member and the metallic body member; and a second metallic mounting member. The metallic body member includes a flange portion protruding radially outward from a part of its end facing the first metallic mounting member and a first protrusion protruding radially outward from the remaining part of the end to a greater extent than does the flange portion. The opposite end of the metallic body member is plugged with a seal member to thereby form a liquid chamber within the metallic body member. The second metallic mounting member is fixedly press-fitted onto the metallic body member and includes a second protrusion. The first and second protrusions are superposed to thereby form a stopper portion. The stopper portion is covered and held by a stopper covering portion.
    • 隔振器包括第一金属安装构件; 在所述振动输入方向上远离所述第一金属安装构件设置的金属主体构件; 弹性体部,其弹性地连接所述第一金属安装构件和所述金属主体构件; 和第二金属安装构件。 金属主体部件包括从其面向第一金属安装部件的端部的一部分径向向外突出的凸缘部分和从该端部的其余部分径向向外突出到比凸缘部分大得多的第一突出部。 金属本体构件的相对端被密封构件堵塞,从而在金属主体构件内形成液体室。 第二金属安装构件固定地压配合到金属主体构件上并且包括第二突出部。 第一和第二突起重叠,从而形成止动部分。 止动器部分由止动器覆盖部分覆盖并保持。
    • 67. 发明授权
    • Positive-displacement-type refrigerant compressor with a novel
oil-separating and lubricating system
    • 具有新型油分离润滑系统的正排量制冷压缩机
    • US6134898A
    • 2000-10-24
    • US345565
    • 1999-07-08
    • Satoshi UmemuraShinya YamamotoKeishi Nakagaki
    • Satoshi UmemuraShinya YamamotoKeishi Nakagaki
    • F04B39/04F04B27/10F25B31/00
    • F04B27/109
    • A capacity type refrigerant compressor having a compression chamber in which a refrigerant introduced from a suction system is compressed and discharged as a compressed high pressure refrigerant, and an oil-separating and lubricating system for lubricating an interior of the compressor by an oil separated from the compressed refrigerant, which has an oil-separating unit to separate the oil from the compressed refrigerant, an oil-storing chamber storing the separated oil, an oil-supply passage to supply the oil from the oil-storing chamber to the suction system, a pressure-operated valve arranged in the oil supply passage to regulate an amount of flow of the oil, which includes a valve chamber and a movable valve spool in the valve chamber to control a communication between the upstream and downstream of the oil-supply passage. The valve spool element moves in response to a change in a pressure differential between pressures in the compression chamber and the suction system, and blocks the oil flow in the oil-supply passage when the pressure differential is overcome by a spring force arranged in the valve chamber.
    • 一种容量型制冷剂压缩机,其具有压缩室,其中从吸入系统引入的制冷剂作为压缩的高压制冷剂被压缩和排出;以及油分离和润滑系统,用于通过与所述压缩室分离的油润滑所述压缩机的内部 压缩制冷剂,其具有用于将油与压缩的制冷剂分离的油分离单元,存储分离的油的储油室,将油从储油室供给到抽吸系统的供油通路, 设置在供油通道中的压力操作阀,以调节在阀室中包括阀室和可动阀芯的油流量,以控制供油通道的上游和下游之间的连通。 阀芯元件响应于压缩室和抽吸系统中的压力之间的压力差的变化而移动,并且当通过布置在阀中的弹簧力克服压力差时,阻塞供油通道中的油流 房间。