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    • 23. 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。
    • 24. 发明授权
    • Scroll compressor suitable for a low operating pressure ratio
    • 涡旋压缩机适用于低工作压力比
    • US06478557B2
    • 2002-11-12
    • US09848442
    • 2001-05-04
    • Masao ShiibayashiYasushi IzunagaKatsuaki Yano
    • Masao ShiibayashiYasushi IzunagaKatsuaki Yano
    • F04C1804
    • F04C18/0276
    • A scroll compressor using helium gas as working gas, has a fixed scroll and an orbiting scroll, engaged with each other, each having a scroll tooth profile shape of a set volume ratio of a scroll wrap portion of 1.8 to 2.3. The set volume ratio of a scroll wrap portion is defined by the following expression: Vr = 2 ⁢ λ 1 - 4 ⁢ π + α 2 ⁢ λ s + 2 ⁢ π + α where Vr: set volume ratio of a scroll wrap portion, &lgr;1: an angle at a wrap winding end portion (Involute angle), &lgr;s: an angle at a wrap winding start portion (Involute angle), &pgr;: circle ratio, &agr;: ratio of an orbiting radius (&egr;th) to a base circle radius (a) of the scroll wrap (&egr;th/a)
    • 一种使用氦气作为工作气体的涡旋压缩机,具有固定涡旋件和绕动涡旋件,彼此接合,每个具有1.8至2.3的涡卷部分的设定体积比的涡形齿廓形状。 卷绕部分的设定体积比由以下表达式定义:其中Vr:卷绕部分的卷积比,lambd1:卷绕卷绕端部处的角度(卷入角度),纱线:包裹处的角度 卷绕起始部分(卷积角),pi:圆比,α:涡旋包裹体的轨道半径(epsith)与基圆半径(a)的比率(epsith / a)
    • 26. 发明授权
    • Scroll compressor having changeable axis in eccentric drive
    • 涡旋压缩机在偏心驱动中具有可变轴
    • US5040958A
    • 1991-08-20
    • US335936
    • 1989-04-10
    • Tetsuya ArataMasao ShiibayashiKazutaka Suefuji
    • Tetsuya ArataMasao ShiibayashiKazutaka Suefuji
    • F04C18/02F04C23/00F04C29/00
    • F04C18/0215F04C29/0057F04C2240/807F04C23/008
    • A scroll compressor comprising a stationary scroll member having a stationary spiral wrap extending from a stationary end plate, an orbiting scroll member having an orbiting spiral wrap extending from an orbiting end plate with the wraps of the stationary scroll member and orbiting scroll member engaging with each other to form a fluid compressing chamber. A main shaft rotates on its own axis, with an eccentric drive shaft being provided having an axis spaced from the axis of the main shaft to orbit around the axis of main shaft and so that the eccentric drive shaft drives the orbiting scroll member to orbit around the axis of the stationary scroll member. The eccentric drive shaft is guided on the main shaft so that a distance between the axis of eccentric drive shaft and the axis of main shaft can be changed, and the main shaft drives the eccentric drive shaft to orbit around the axis of the main shaft. A balance is connected to the eccentric drive shaft, with a center of gravity of the balance weight being spaced from the axis of main shaft so that the centrifugal force of the balance weight draws the eccentric drive shaft toward the main shaft. An arrangement is provided for pushing the eccentric drive shaft away from the main shaft.
    • 一种涡旋式压缩机,包括具有从静止端板延伸的固定螺旋形涡卷的固定涡旋构件,具有从旋转端板延伸的绕动涡旋构件的绕动涡旋构件,其中固定涡旋构件和绕动涡旋构件与每个 另外形成流体压缩室。 主轴在其自身的轴线上旋转,设有偏心驱动轴,该偏心驱动轴具有与主轴的轴线间隔开的轴线,围绕主轴的轴线轨道运动,从而偏心驱动轴驱动绕动涡旋件绕轨道 固定涡旋件的轴线。 偏心驱动轴在主轴上引导,使得偏心驱动轴的轴线与主轴的轴线之间的距离可以改变,主轴驱动偏心驱动轴围绕主轴的轴线轨道运动。 平衡配置与偏心驱动轴连接,其中平衡重心的重心与主轴的轴线间隔开,使平衡重的离心力将偏心驱动轴朝向主轴。 提供了用于将偏心驱动轴推离主轴的装置。
    • 28. 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。
    • 29. 发明授权
    • Scroll-type compressor for helium gas
    • 用于氦气的涡旋式压缩机
    • US4676075A
    • 1987-06-30
    • US826672
    • 1986-02-06
    • Masao Shiibayashi
    • Masao Shiibayashi
    • F04C18/02F04C23/00F04C23/02F04C25/00F04C29/00F04C29/02F25B43/02
    • F04C18/0215F04C18/0261F04C29/0007F04C2250/101F04C23/008F05B2250/501
    • A scroll-type compressor for compressing helium gas includes stationary and orbiting scroll members each having an end plate and a spiral wrap, with the scroll members being assembled together to define compression spaces therebetween. A driven main shaft driven by has an eccentric mechanism engageable with the orbiting scroll member to cause an orbiting movement of the orbiting scroll member with respect to the stationary scroll member while preventing the orbiting scroll member to rotate about its own axis. The orbiting movement of the scroll member causes a radially inward movement of the compression spaces while progressively decreasing the volumes of the compression spaces, whereby the helium gas sucked through a suction port of the stationary scroll member is progressively compressed finally discharged from a discharge port. An oil injection system includes at least one oil injection port formed to open in the surface of the end plate of the stationary scroll member and injects an oil into the helium gas under compression in order to cool the same. The size of the oil injection port as measured in the direction of thickness of the scroll wrap is greater than the thickness of the scroll wrap of the orbiting scroll member.
    • 用于压缩氦气的涡旋式压缩机包括各自具有端板和螺旋形涡卷的固定和绕动的涡旋构件,其中涡旋构件组装在一起以限定其间的压缩空间。 驱动主轴由驱动主轴驱动,该偏心机构可与动涡旋件相接合,以使绕动涡旋件相对于静涡旋件枢转运动,同时防止绕动涡旋件围绕其自身轴线转动。 涡旋构件的轨道运动导致压缩空间的径向向内运动,同时逐渐减小压缩空间的体积,从而通过静止涡旋构件的吸入口吸入的氦气逐渐压缩,最终从排出口排出。 注油系统包括形成为在固定涡旋构件的端板的表面中开口的至少一个注油口,并且在压缩下将油喷射到氦气中以使其冷却。 沿着涡旋盘的厚度方向测量的注油口的尺寸大于绕动涡旋件的涡卷的厚度。