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    • 3. 发明授权
    • Scroll compressor having improved orbital drive mechanism
    • 具有改进的轨道驱动机构的涡旋压缩机
    • US5536152A
    • 1996-07-16
    • US498232
    • 1995-07-05
    • Sadao KawaharaTakao FujitaTatsuhisa TaguchiTeruyuki AkazawaMasahiko MakinoNobuaki Ogawa
    • Sadao KawaharaTakao FujitaTatsuhisa TaguchiTeruyuki AkazawaMasahiko MakinoNobuaki Ogawa
    • F04C27/00F04C18/02F04C28/28F04C29/00F04C29/02F01C1/04
    • F04C28/28F04C29/0057
    • A scroll compressor includes an orbital drive mechanism for orbiting an orbiting scroll relative to a stationary scroll. The orbiting scroll is formed with a generally cylindrical boss extending in a direction away from the stationary scroll. The orbital drive mechanism includes a main shaft rotatably supported by a compressor housing, an eccentric shaft extending from one end face of the main shaft and having a longitudinal axis parallel to, but offset laterally from a longitudinal axis of the main shaft, and an eccentric bush having a socket inserted rotatably into the cylindrical boss. The eccentric shaft, engaged in the socket, has first and second rounded side faces opposite to each other both having a common center of curvature, while the socket has first and second inner wall portions opposite to each other, each of which has a center of curvature substantially aligned with the common center of curvature of the first and second rounded side faces of the eccentric shaft. Third and fourth side faces of the eccentric shaft extending between associated ends of the first and second rounded side faces confront third and fourth inner wall portions of the socket and are spaced inwardly therefrom so that the eccentric bush can swing relative to the eccentric shaft about the common center of curvature of the first and second rounded side faces of the eccentric shaft, thus varying the orbiting radius.
    • 一种涡旋式压缩机包括一个轨道驱动机构,用于相对于静涡旋盘绕动涡旋盘旋转。 绕动涡旋件形成有沿远离固定涡旋件的方向延伸的大致圆柱形的凸起。 轨道驱动机构包括由压缩机壳体可旋转地支撑的主轴,偏心轴从主轴的一个端面延伸并且具有与主轴的纵向轴线平行但横向偏离主轴的纵向轴线的纵向轴线,以及偏心轴 衬套具有可旋转地插入到圆柱形凸台中的插座。 接合在插座中的偏心轴具有彼此相对的第一和第二圆形侧面,其具有共同的曲率中心,而插座具有彼此相对的第一和第二内壁部分,每个内壁部分的中心具有 曲率基本上与偏心轴的第一和第二圆形侧面的共同曲率中心对准。 在第一和第二圆形侧面的相关联的端部之间延伸的偏心轴的第三和第四侧面面对插座的第三和第四内壁部分并且从其间隔开,使得偏心衬套可相对于偏心轴围绕 偏心轴的第一和第二圆形侧面的共同曲率中心,从而改变了轨道半径。
    • 5. 发明授权
    • Compressor with built-in motor, and mobile structure using the same
    • 压缩机内置电机,移动结构使用相同
    • US06739833B2
    • 2004-05-25
    • US10096418
    • 2002-03-13
    • Masahiko MakinoYoshifumi AbeTatsuhisa Taguchi
    • Masahiko MakinoYoshifumi AbeTatsuhisa Taguchi
    • F04D2906
    • F04C18/0215F01C21/102F04C23/008
    • A compressor in which an electric motor and a compressing mechanism are accommodated in a case, a main shaft and an auxiliary shaft of a rotating shaft of the motor are supported by a radial plain bearing and a rolling bearing with a predetermined clearance given to the rotating shaft in an axial direction, a flange portion that contacts with a main-shaft receiving member of the radial plain bearing to align the rotating shaft with the compressing mechanism is provided on the main shaft, and preload toward the side of the rolling bearing is given to the rotating shaft. In this constitution, a prevention member for preventing contact and/or collision of the rotating shaft with the main-shaft receiving member is provided between opposing faces of the flange portion and the main-shaft receiving member.
    • 一种压缩机,其中电动机和压缩机构容纳在电动机的壳体中,主轴和旋转轴的辅助轴由径向滑动轴承和具有预定间隙的滚动轴承支撑。 在主轴上设置有与轴向的径向滑动轴承的主轴接收构件接触以将旋转轴与压缩机构对准的凸缘部,并且向滚动轴承的侧面预加载 到旋转轴。 在这种构造中,在凸缘部和主轴接收构件的相对面之间设置用于防止旋转轴与主轴接收构件接触和/或碰撞的防止构件。
    • 7. 发明授权
    • Variable capacity scroll compressor
    • 可变容积涡旋压缩机
    • US5885063A
    • 1999-03-23
    • US805548
    • 1997-02-25
    • Masahiko MakinoAkihiko ShimizuTatsuhisa TaguchiDaisuke Ito
    • Masahiko MakinoAkihiko ShimizuTatsuhisa TaguchiDaisuke Ito
    • F04C29/12F04B49/00F04C18/02F04C28/12F04C28/26F04C29/00
    • F04C28/12
    • A variable capacity control scroll compressor, including: a cylinder disposed in the end plate of the fixed scroll incorporating a reciprocating shuttle valve to selectively enable fluid passage through a first group of bypass holes communicating with a pair of fluid pockets in a given compression stroke, and further through a second group of bypass holes communicating with a single fluid pocket as the pair of fluid pockets merge into one pocket during compression, sequential opening and closing of these bypass holes being controlled by a pressure control valve administering a control pressure Pm to operate the shuttle valve, the control valve being provided in the fixed end plate such that all of the control mechanism components are integrated into a single structure to reduce fabrication costs and enhance control efficiency.
    • 一种可变容量控制涡旋压缩机,包括:设置在固定涡旋盘的端板中的气缸,其包括往复式梭阀,以选择性地使流体通过在给定的压缩冲程中与一对流体腔连通的第一组旁通孔, 并且当在压缩期间该一对流体袋合并到一个袋中时,还通过与单个流体袋连通的第二组旁通孔,这些旁路孔的顺序打开和关闭由施加控制压力Pm的压力控制阀控制以操作 梭阀,控制阀设置在固定端板中,使得所有的控制机构部件都集成到单个结构中,以降低制造成本并提高控制效率。
    • 10. 发明授权
    • Scroll compressor having a compressor housing made up of a cup-like
front casing and a cap-like rear casing
    • 涡旋压缩机具有由杯形前壳体和帽状后壳体构成的压缩机壳体
    • US5569028A
    • 1996-10-29
    • US500370
    • 1995-07-10
    • Michio YamamuraKunio IwanamiTatsuhisa TaguchiMasafumi Fukushima
    • Michio YamamuraKunio IwanamiTatsuhisa TaguchiMasafumi Fukushima
    • F01C21/10F04C18/02F04C29/02F01C1/04
    • F04C18/0215F01C21/10F04C29/02
    • A scroll compressor includes a compressor housing made up of a cup-like first casing having a suction port defined therein and a cap-like second casing having a discharge port defined therein. The compressor housing accommodates a stationary scroll member having a stationary end plate and a stationary scroll wrap protruding axially from the stationary end plate, and an orbiting scroll member having an orbiting end plate and an orbiting scroll wrap protruding axially from the orbiting end plate, with the orbiting scroll wrap being in engagement with the stationary scroll wrap to define a plurality of working pockets therebetween. At least one shim is interposed between mating surfaces of the first and second casings to regulate axial gaps between axial end surfaces of the stationary and orbiting scroll wraps and the orbiting and stationary end plates opposed thereto. The stationary end plate is positioned in the proximity of the mating surfaces of the first and second casings so that a low-pressure chamber is defined between the stationary end plate and the first casing, while a high-pressure chamber is defined between the stationary end plate and the second casing. The location of the stationary end plate in the proximity of the mating surfaces of the first and second casings reduces a variation in the axial gaps referred to above.
    • 一种涡旋式压缩机包括:由杯状的第一壳体构成的压缩机壳体,该第一壳体具有限定在其中的吸入口,以及具有限定在其中的排出口的帽状第二壳体。 压缩机壳体容纳固定涡旋件,该固定涡旋件具有固定端板和从固定端板轴向突出的固定涡旋涡卷,以及具有绕动端板和绕动涡旋涡卷的绕动涡旋件,该涡旋涡旋件从绕动端板轴向突出, 所述绕动涡旋盘与所述固定涡旋涡卷接合,以在其间限定多个工作凹部。 在第一和第二壳体的配合表面之间插入至少一个垫片,以调节固定涡旋涡卷和绕动涡旋涡卷的轴向端面与与其相对的绕动和固定端板之间的轴向间隙。 固定端板位于第一和第二壳体的配合表面附近,使得在固定端板和第一壳体之间限定低压室,而高压室限定在固定端 板和第二套。 固定端板在第一和第二壳体的配合表面附近的位置减小了上述轴向间隙的变化。