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    • 1. 发明授权
    • Scroll fluid apparatus
    • 滚动流体装置
    • US4596521A
    • 1986-06-24
    • US559088
    • 1983-12-07
    • Akira MurayamaHiroaki KunoNaoshi UchikawaTakahiro TamuraTakao MizunoMasao Shiibayashi
    • Akira MurayamaHiroaki KunoNaoshi UchikawaTakahiro TamuraTakao MizunoMasao Shiibayashi
    • F04C29/02F01C1/02F04C23/00F04C18/04F04C29/10
    • F01C1/0215F04C2250/10F04C23/008F05B2250/50
    • A scroll fluid apparatus including a fixed scroll member and an orbiting scroll member each having an end plate and a wrap, the two scroll members being maintained in meshing engagement with each other with the respective wraps facing inwardly to allow the orbiting scroll member to move in orbiting movement with respect to the fixed scroll member without rotating on its own axis. The fixed scroll member is formed with a discharge port at its central portion and a suction port at its outer peripheral surface to draw a gas by suction through the suction port and allow same to flow in a sealed space defined between the two scroll members and reducing its space during operation to thereby compress the gas and discharge the compressed gas through the discharge port. A clearance is defined between an outer peripheral surface of the end plate of the orbiting scroll member and a wall facing the outer peripheral surface and successively changing its volume as the orbiting scroll member moves in orbiting movement, and at least one pressure relieving space is provided to communicate with the clearance for conveniently discharging a fluid from the clearance to avoid compression of the fluid.
    • 一种涡旋流体装置,包括固定涡旋构件和旋转涡旋构件,每个涡旋构件具有端板和涡卷,所述两个涡旋构件保持彼此啮合,各个涡卷面向内,以允许绕动涡旋构件移动 相对于固定涡旋构件的轨道运动而不在其自身轴线上旋转。 固定涡旋构件在其中心部分形成有排出口,在其外周面形成有吸入口,通过抽吸口抽吸气体,并允许其在限定在两个涡旋构件之间的密封空间中流动并且减少 其在操作期间的空间,从而压缩气体并通过排出口排出压缩气体。 在绕动涡旋构件的端板的外周面与面向外周面的壁之间形成间隙,并且随着绕动涡旋构件在轨道运动中移动而依次改变其体积,并且设置至少一个减压空间 与间隙通信,以方便地从间隙排放流体,以避免压缩流体。
    • 4. 发明授权
    • Helium enclosed compressor
    • 氦封闭式压缩机
    • US08628306B2
    • 2014-01-14
    • US13471893
    • 2012-05-15
    • Masao ShiibayashiTakao Mizuno
    • Masao ShiibayashiTakao Mizuno
    • F04C18/00
    • F04C18/0215F04C23/008F04C29/0085F04C29/026F04C2210/10F04C2210/105H02K3/44
    • Helium enclosed compressor. A compressor and a motor section with stator having coil ends and a rotor, are housed within an enclosed vessel partitioned into discharge and motor chambers by a frame. The compressor section has a stationary scroll having a spiral wrap standing upright at a disk-like panel and an orbiting scroll having a spiral wrap standing upright at a disk-like panel, made to mesh with each other while their wraps face the inside. The orbiting scroll sucks helium gas from a suction port of an outer peripheral portion of the stationary scroll, and discharges helium gas into the discharge chamber from a discharge port of a central portion of the stationary scroll. An inverter controls a number of rotations of the motor section, wherein a plurality of varnish-treated layers which becomes insulating films is formed on the surface of a coil which constitutes the coil ends.
    • 氦封闭式压缩机。 具有线圈端和转子的定子的压缩机和电动机部分容纳在通过框架分隔成排出和电动机室的封闭容器内。 压缩机部具有固定涡旋盘,其具有直立在圆盘状面板上的螺旋形涡旋盘和具有直立在圆盘状面板上的螺旋形卷轴的绕动涡旋盘,使得它们的卷绕面向内侧彼此啮合。 绕动涡盘从固定涡旋件的外周部分的吸入口吸入氦气,并从固定涡旋件的中心部分的排出口将氦气排出到排出室中。 逆变器控制电动机部分的转数,其中在构成线圈端的线圈的表面上形成多个成为绝缘膜的清漆处理层。
    • 7. 发明授权
    • Scroll-type fluid machine with radial clearance between wraps
    • 涡卷式流体机器在包装之间具有径向间隙
    • US4579512A
    • 1986-04-01
    • US661915
    • 1984-10-17
    • Masao ShiibayashiSumihisa KotaniKazutaka SuefujiKenji TojoAkira Murayama
    • Masao ShiibayashiSumihisa KotaniKazutaka SuefujiKenji TojoAkira Murayama
    • F04C18/02F01C1/02F04C23/00F01C1/04F01C17/06
    • F01C1/0215F04C2230/60F04C23/008F05B2230/60
    • A scroll-type fluid machine having a stationary scroll member and an orbiting scroll member each of which includes a disc-like end plate and a spiral wrap extending axially from one side of the end plate, with the wraps of the scroll members meshing with each other to define therebetween closed compression chambers. The orbiting scroll member is disposed between the end plate of the stationary scroll member and a frame of the machine with a back clearance between the other side of the end plate of the orbiting scroll member side thereof and the opposing surface of the frame. The orbiting scroll member is driven to make an orbiting movement with respect to the stationary scroll member so that the compression chambers are progressively moved towards the center of the scroll members while decreasing their volumes, to thereby suck a fluid through a suction port in the stationary scroll member and compress the same to discharge the compressed fluid through a discharge port formed in the stationary scroll member. The radial clearance between the wraps of both scroll members is selected to meet a specific condition so as to avoid mutual contact between the wraps of the scroll members even when the orbiting scroll member is inclined with respect to the horizontal plane.
    • 一种涡旋式流体机械,其具有固定涡旋构件和绕动涡旋构件,每个涡旋构件包括盘状端板和从端板的一侧轴向延伸的螺旋形涡卷,涡旋构件的涡卷与每个 另一个在其间限定封闭的压缩室。 绕动涡旋构件设置在固定涡旋构件的端板和机器框架之间,在其绕动涡旋构件侧的端板的另一侧和框架的相对表面之间具有后间隙。 驱动绕动涡旋构件相对于静止涡旋构件进行轨道运动,使得压缩室在减小其体积的同时逐渐向着涡旋构件的中心移动,从而通过静止的吸入口吸入流体 涡旋构件并将其压缩以通过形成在固定涡旋构件中的排出口排出压缩流体。 选择两个涡旋构件的涡卷之间的径向间隙以满足特定条件,以便即使当绕动涡旋构件相对于水平面倾斜时也可避免涡旋构件的涡卷之间的相互接触。
    • 8. 发明授权
    • Hermetic scroll compressor with welded casing section
    • 具有焊接套管部分的密封涡旋压缩机
    • US4696629A
    • 1987-09-29
    • US894865
    • 1986-08-08
    • Masao ShiibayashiAkira Murayama
    • Masao ShiibayashiAkira Murayama
    • F04C23/02F04C18/02F04C18/06F04C23/00F04C29/00F04C18/04F04B39/12
    • F04C29/00F04C23/008F04C2240/603Y10S417/902Y10T29/4924
    • A hermetic scroll compressor has a scroll compressor section, a motor section and a hermetic casing which encases the compressor and motor sections. The space in the casing is divided into an upper chamber and a lower chamber by a frame by which a shaft interconnecting the compressor and motor sections is rotatably supported. The upper and lower chambers are communicated with each other through a communication passage which is formed in the outer periphery of the frame. The hermetic casing is composed of an upper section, a barrel section and a lower section which are welded together. The barrel section is formed by rolling a sheet into a cylindrical form and welding opposing ends of the rolled sheet so as to form a weld seam joint. The frame is fixed in the casing with the weld seam joint disposed within the circumferential width of the communication passage, so that the outer periphery of the frame is in tight contact with the inner periphery of the barrel section except for the portion where the communication passage is formed.
    • 密闭式涡旋压缩机具有涡旋压缩机部,马达部以及封闭压缩机和马达部的密封壳。 壳体中的空间通过框架分成上室和下室,通过该框架连接压缩机和电动机部分的轴被可旋转地支撑。 上下腔室通过形成在框架的外周的连通通道彼此连通。 密封壳体由焊接在一起的上部,筒部和下部组成。 筒部通过将片材轧制成圆筒形并焊接轧制板的相对端而形成焊缝接合而形成。 框架被固定在壳体中,焊缝接头设置在连通通道的周向宽度内,使得框架的外周与筒部的内周紧密接触,除了连通通道 形成了。