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    • 1. 发明授权
    • Magnetic powder clutch
    • 磁粉离合器
    • US06394244B1
    • 2002-05-28
    • US09606296
    • 2000-06-29
    • Vivek DwivediGuntis V. StrikisJohn M. GinderLarry D. ElieShane A. HarteKanwal Bhatia
    • Vivek DwivediGuntis V. StrikisJohn M. GinderLarry D. ElieShane A. HarteKanwal Bhatia
    • F16D3702
    • F16D37/02F16D2037/002
    • An electromagnetic clutch (110) for an air conditioning compressor includes a generally cylindrical pulley (111) rotatably mounted on a comressor housing (116) and having an annular friction surface (120a, 120b) in a cavity (120). A driven member (112) is mounted on a compressor shaft (113) and has a leg (118, 119) with an annular friction surface (118a, 118b, 119a, 119b) positioned radially adjacent the cavity friction surface to form an annular space (120c, 120f) therebetween. A quantity of flowable magnetic material (127) is provided in the annular space and a magnetic coil (124) is fixed on the housing adjacent thereto. When electrical power is applied to the magnetic coil (124), magnetic flux is generated in the annular space (120c, 120f) polarizing the magnetic material and frictionally coupling the friction surfaces to cause the pulley (111) to rotate the driven member (112). A divider (123) can be positioned between the legs (118, 119) to provide additional annular spaces (120d, 120e) for the magnetic material (127).
    • 用于空调压缩机的电磁离合器(110)包括可旋转地安装在压缩机壳体(116)上并且具有在空腔(120)中的环形摩擦表面(120a,120b))的大致圆柱形的滑轮(111)。 被驱动构件(112)安装在压缩机轴(113)上并且具有一个腿部(118,119),该腿部具有径向相邻于腔体摩擦表面的环形摩擦表面(118a,118b,119a,119b),以形成环形空间 (120c,120f)。 一定数量的可流动磁性材料(127)设置在环形空间中,并且电磁线圈(124)固定在与其相邻的壳体上。 当向电磁线圈(124)施加电力时,在使磁性材料偏振的环形空间(120c,120f)中产生磁通,并摩擦地联接摩擦表面,使滑轮(111)使从动构件(112)旋转 )。 分隔件(123)可以定位在腿部(118,119)之间,以为磁性材料(127)提供额外的环形空间(120d,120e)。
    • 5. 发明授权
    • Multiple stage orbiting ring rotary compressor
    • 多级轨道旋转压缩机
    • US5135368A
    • 1992-08-04
    • US699419
    • 1991-05-13
    • Jayendra J. AminGuntis V. StrikisVipen K. Khetarpal
    • Jayendra J. AminGuntis V. StrikisVipen K. Khetarpal
    • F04C18/34F04C23/00
    • F04C23/001F04C18/34
    • A gas compressor includes a housing defining a compression chamber, a crankshaft having an eccentric surface radially offset from the axis of rotation of the crankshaft, an orbiting ring rotatably mounted on the eccentric for rotation about an axis offset from the shaft axis, a cylindrical post coaxial with the axis of the housing passages for carrying gas to and from the compression chamber, vanes movable radially with respect to the orbiting ring, and pressure sensitive valves that open exhaust passages from the compression chamber. The orbiting ring rotates in continual contact with the inner surface of the housing and the outer surface of the cylindrical post. Compression occurs within a first stage space and a second stage space, each space divided into compression chambers by the sliding vanes and contact between the ring and post or between the ring and housing. An intermediate pressure chamber is located in one end of the housing and this chamber can be configured to allow for intercooling of the refrigerant. It is also possible to provide gas separation of the discharge gas and return the separated gas to the intermediate chamber for improved efficiency of the compressor.
    • 气体压缩机包括限定压缩室的壳体,具有径向偏离曲轴旋转轴线的偏心表面的曲轴,可旋转地安装在偏心件上以绕轴轴线偏转的轴线旋转的旋转环,圆柱形柱 与用于将气体输送到压缩室和从压缩室输送气体的壳体通道的轴线同轴,可相对于绕动环径向移动的叶片以及从压缩室打开排气通道的压力敏感阀。 旋转环与壳体的内表面和柱形柱的外表面持续接触。 压缩发生在第一级空间和第二级空间内,每个空间由滑动叶片分隔成压缩室,并在环和柱之间或环与壳体之间接触。 中间压力室位于壳体的一端,该腔室可构造成允许制冷剂的中间冷却。 也可以提供放电气体的气体分离并将分离的气体返回到中间室,以提高压缩机的效率。
    • 6. 发明授权
    • Power steering pump
    • 动力转向泵
    • US4298316A
    • 1981-11-03
    • US040246
    • 1979-05-18
    • Guntis V. Strikis
    • Guntis V. Strikis
    • B62D5/06B62D6/02F04C14/26F04C15/06F04B49/00
    • F04C15/062B62D5/062B62D6/02F04C14/26F04C2270/052F04C2270/205
    • A power steering pump having a cam with an internal cam surface defining pumping arcs, a rotor in said cam, pumping elements preferably in the form of slippers carried by the periphery of the rotor in sliding engagement with the pumping arcs, flow control valve means having a movable valve element responsive to both static pressure and velocity pressure of the displaced fluid on the high pressure side of the pump wherein provision is made for decreasing the volume of fluid delivered by the pump at high pressure upon an increase in the speed of the rotor, and means for equalizing the pressure between the volume of fluid between two adjacent pumping elements located at a high pressure outlet port and a corresponding volume of fluid between two other adjacent slippers located at a low pressure inlet port as the pumping elements pass through their respective pump cycles.
    • 一种动力转向泵,其具有凸轮,该凸轮具有限定泵浦弧的内部凸轮表面,所述凸轮中的转子,优选地以由所述转子周边承载的拖鞋形式的抽吸元件与所述泵送电弧滑动接合,所述流量控制阀装置具有 可移动阀元件,其响应于泵的高压侧的移动流体的静压力和速度压力,其中提供用于在转子的速度增加时在高压下减小由泵输送的流体的体积 ,以及用于均衡位于高压出口处的两个相邻泵送元件之间的流体体积与位于低压入口端口处的两个其它相邻拖鞋之间的相应体积流体之间的压力的装置,因为泵送元件通过其相应的 泵循环。
    • 8. 发明授权
    • Rotary compressor with improved fluid inlet porting
    • 旋转压缩机具有改进的流体入口端口
    • US5472327A
    • 1995-12-05
    • US417539
    • 1995-04-06
    • Guntis V. StrikisVipen K. KhetarpalVictor G. Filipenco
    • Guntis V. StrikisVipen K. KhetarpalVictor G. Filipenco
    • F04C18/34F04C23/00F04C27/00F04C2/00
    • F04C18/34F04C23/001F04C27/005
    • A rotary compressor having a housing with a pump cavity, an orbiting ring piston in the cavity, a cylindrical post carried by the housing within the orbiting ring, at least one pair of vanes engaging the orbiting ring to define pumping chambers in the cavity, a pair of primary fluid inlet passages communicating with the working pressure chamber during expansion of the pressure chamber, a pair of fluid outlet ports communicating with the working chambers as the volume of the working chambers contracts upon rotation of the orbiting ring piston, and a pair of secondary fluid inlet ports in parallel disposition with respect to the primary ports formed in a valve plate adjacent the orbiting ring piston whereby the orbiting ring piston registers with the ports and opens and closes the ports in synchronism with the opening end and closing of the main ports whereby the effective inlet flow capacity for the fluid into the expanding working chamber is increased.
    • 一种旋转式压缩机,其具有具有泵腔的壳体,所述空腔中的旋转环活塞,由所述壳体在所述旋转环内承载的圆柱形柱体,与所述旋转环接合以限定所述空腔中的泵送室的至少一对叶片, 一对在压力室膨胀期间与工作压力室连通的主要流体入口通道,一对流体出口与工作室连通,当工作室的体积在旋转环活塞旋转时收缩,一对 第二流体入口端口相对于形成在邻近旋转环活塞的阀板中的主要端口平行布置,由此轨道环活塞与端口配准并且与主端口的开口端和闭合同步地打开和关闭端口 从而增加了进入扩展工作室的流体的有效入口流量。
    • 9. 发明授权
    • Multiple stage orbiting ring rotary compressor
    • 多级轨道旋转压缩机
    • US5240386A
    • 1993-08-31
    • US880785
    • 1992-05-11
    • Jayendra J. AminGuntis V. StrikisVipen K. Khetarpal
    • Jayendra J. AminGuntis V. StrikisVipen K. Khetarpal
    • F04C18/34F04C23/00
    • F04C18/34F04C23/001
    • A gas compressor includes a housing defining a compression chamber, a crankshaft having an eccentric surface radially offset from the axis of rotation of the crankshaft, an orbiting ring rotatably mounted on the eccentric for rotation about an axis offset from the shaft axis, a cylindrical post coaxial with the axis of the housing passages for carrying gas to and from the compression chamber, vanes movable radially with respect to the orbiting ring, and pressure sensitive valves that open exhaust passages from the compression chamber. The orbiting ring rotates in continual contact with the inner surface of the housing and the outer surface of the cylindrical post. Compression occurs within a first stage space and a second stage space, each space divided into compression chambers by the sliding vanes and contact between the ring and post or between the ring and housing. An intermediate pressure chamber is located in one end of the housing and this chamber can be configured to allow for intercooling of the refrigerant. It is also possible to provide gas separation of the discharge gas and return the separated gas to the intermediate chamber for improved efficiency of the compressor.
    • 气体压缩机包括限定压缩室的壳体,具有径向偏离曲轴旋转轴线的偏心表面的曲轴,可旋转地安装在偏心件上以绕轴轴线偏转的轴线旋转的旋转环,圆柱形柱 与用于将气体输送到压缩室和从压缩室输送气体的壳体通道的轴线同轴,可相对于绕动环径向移动的叶片以及从压缩室打开排气通道的压力敏感阀。 旋转环与壳体的内表面和柱形柱的外表面持续接触。 压缩发生在第一级空间和第二级空间内,每个空间由滑动叶片分隔成压缩室,并在环和柱之间或环与壳体之间接触。 中间压力室位于壳体的一端,该腔室可构造成允许制冷剂的中间冷却。 也可以提供放电气体的气体分离并将分离的气体返回到中间室,以提高压缩机的效率。