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    • 4. 发明授权
    • Reciprocating piston type refrigerant compressor having a housing with
enhanced sealing function
    • 具有增强密封功能的壳体的往复式活塞式制冷压缩机
    • US5842836A
    • 1998-12-01
    • US591359
    • 1996-01-25
    • Tomoji TarutaniNoriyuki ShintokuTomohiro WakitaAtsuko Toyama
    • Tomoji TarutaniNoriyuki ShintokuTomohiro WakitaAtsuko Toyama
    • F04B27/08F04B27/10F04B39/12F04B1/12
    • F04B39/125F04B27/1081
    • A reciprocating piston type compressor having a cylinder block unit closed, at at least one of the axial ends thereof, by a housing having a central suction chamber and a discharge chamber arranged around the suction chamber hermetically isolated by a separation wall integral with the housing, a valve plate interposed between the end of the cylinder block unit and the housing and having suction and discharge ports, suction passageways formed in the cylinder block unit to have fluid communication with the suction chamber via openings thereof, a plurality of pressing ribs axially integrally extending from an inner face of the housing toward the valve plate so as to apply a higher pressure to the valve plate at positions of the valve plate between respective two neighboring openings of the suction passageways in cooperation with the separating wall to prevent deformation of the valve plate due to the high pressure of the refrigerant in the respective cylinder bores whereby the hermetic seal between the valve plate and the end of the cylinder block is ensured.
    • 一种往复活塞式压缩机,其具有气缸体单元,其至少其一个轴向端部由具有中心抽吸室和排出室的壳体封闭,所述壳体布置在通过与所述壳体一体的分隔壁隔离的所述吸入室周围, 插入在气缸体单元的端部和壳体之间并具有吸入和排出端口的阀板,形成在气缸体单元中的吸入通道,以通过其开口与吸入室流体连通;多个加压肋轴向一体地延伸 从壳体的内表面朝向阀板,以便在与隔离壁协作的情况下在阀板的相应的两个相邻的开口之间的阀板的位置处向阀板施加更高的压力,以防止阀板的变形 由于相应气缸孔中的制冷剂的高压,由此气密 确保阀板和气缸体的端部之间的距离。
    • 5. 发明授权
    • Valve mechanism of a compressor
    • 压缩机的阀机构
    • US5839472A
    • 1998-11-24
    • US838756
    • 1997-04-09
    • Noriyuki ShintokuTomoji TarutaniAtsuko Toyama
    • Noriyuki ShintokuTomoji TarutaniAtsuko Toyama
    • F04B39/10F04C29/12F16K15/16
    • F04C29/128Y10T137/7891Y10T137/7892
    • A valve mechanism of a refrigerant compressor is disclosed. The compressor invention includes a valve plate which is disposed between a compression chamber and a suction chamber of the and has an inlet port formed there-through for fluid communication between the suction and compression chambers, and a flap type suction valve which is located on the side of the valve plate adjacent the compression chamber and has a proximal portion secured to the valve plate and a flexible distal portion movable between closed position thereof where the fluid communication is shut off and open position where the fluid communication is established. The valve plate is provided with a rib-formed support for supporting the suction valve when it is closed against the inlet port opening. The supporting rib extends approximately to the center of the inlet opening on the side of the inlet port adjacent the suction valve to provide a point of support at the center of the inlet opening. The inlet port is extended in cross sectional area so as to admit an increased volume of refrigerant gas into the compression chamber.
    • 公开了一种制冷剂压缩机的阀机构。 压缩机发明包括阀板,该阀板设置在压缩室和吸入室之间,并具有形成在其上的入口,用于吸入和压缩室之间的流体连通,以及位于 所述阀板的一侧邻近所述压缩室并且具有固定到所述阀板的近侧部分和在所述流体连通被关闭的关闭位置和所述流体连通建立的打开位置之间可移动的柔性远端部分。 阀板设置有肋形支撑件,用于当其抵靠入口开口关闭时支撑吸入阀。 支撑肋大致延伸到邻近吸入阀的入口侧上的入口开口的中心,以在入口开口的中心提供支撑点。 入口在横截面积上延伸,以允许增加体积的制冷剂气体进入压缩室。
    • 6. 发明授权
    • Piston type compressor with simple but vibration-reducing suction reed
valve mechanism
    • 活塞式压缩机具有简单但减震的吸力阀机构
    • US5603611A
    • 1997-02-18
    • US617291
    • 1996-03-18
    • Tomoji TarutaniNoriyuki Shintoku
    • Tomoji TarutaniNoriyuki Shintoku
    • F04B27/08F04B39/10F04B1/12
    • F04B39/1073Y10T137/7892
    • A piston type compressor provided with a suction valve mechanism which includes a suction valve element having suction reed valves openably closing suction ports for providing a fluid communication between a suction chamber for refrigerant gas before compression and cylinder bores in which pistons reciprocate to compress the refrigerant gas. The cylinder bores are provided with a first axially recessed engaging face engaging with frontmost end portions of the suction reed valves to provide the suction reed valve with a preliminary step of stopping condition, and a second axially recessed engaging face portions engaged with an inner portion of the suction reed valves to provide the suction reed valve with a final step of stopping condition. The preliminary step of stopping condition of the suction reed valves ensures suppression of uncontrolled self-vibration of the suction reed valves, and the final step of stopping condition of the suction reed valves ensures a stable and optimum amount of opening of the suction reed valves.
    • 一种具有吸入阀机构的活塞式压缩机,该吸入阀机构包括具有吸入簧片阀的吸入阀元件,该吸入阀可开启地封闭用于在压缩前的制冷剂气体吸入室与气缸孔之间的流体连通的吸入口,活塞往复运动以压缩制冷剂气体 。 气缸孔设置有与吸入簧片阀的最前端部分接合的第一轴向凹入的接合面,以便为吸入簧片阀提供停止状态的预备步骤,以及第二轴向凹入的接合面部分,其与内部部分 抽吸簧片阀提供吸入簧片阀,最后一步是停止状态。 吸入簧片阀的停止状态的初步步骤确保抑制吸入簧片阀的不受控制的自振,并且吸入簧片阀的停止状态的最后步骤确保了吸入簧片阀的稳定和最佳打开量。