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    • 12. 发明公开
    • Fluid shear coupling apparatus
    • 流体剪切耦合装置
    • EP0105646A2
    • 1984-04-18
    • EP83305344.0
    • 1983-09-13
    • HOUSEHOLD MANUFACTURING, INC.
    • Bloemendaal, Brent J.
    • F16D35/00
    • F16D35/022
    • A fluid shear coupling apparatus is disclosed herein which includes a driving member comprising a rotor mounted to a shaft and defining several annular ridges and grooves. The apparatus further includes a driven member including a bearing housing mounted to the shaft, a cover secured about a perimetric flange with the bearing housing, and a plate secured to the cover and defining several annular ridges and grooves positioned complementary with the ridge and grooves of the rotor. In the preferred embodiment, the plate, cover, bearing housing and rotor are as-formed structures.
    • 本文公开了一种流体剪切联接设备,其包括驱动构件,该驱动构件包括安装到轴并限定多个环形脊和凹槽的转子。 该装置还包括从动构件,该从动构件包括安装到轴上的轴承壳体,围绕具有轴承壳体的周边凸缘固定的盖板,以及固定到盖板并限定与凸脊和凹槽互补定位的多个环形脊和凹槽的板, 转子。 在优选实施例中,板,盖,轴承壳体和转子是如同形成的结构。
    • 17. 发明公开
    • Fluid shear coupling apparatus
    • 粘性耦合单元。
    • EP0068644A2
    • 1983-01-05
    • EP82302772.7
    • 1982-05-28
    • HOUSEHOLD MANUFACTURING, INC.
    • Haeck, Paul J.
    • F16D35/00
    • F01P7/042F16D35/022
    • A fluid shear coupling apparatus is disclosed herein which includes a driving member received within a working chamber defined by a driven member. The driven member is mounted with needle bearings to a shaft portion of the driving member to have the members rotatable about a common axis. The driving and driven members include complementary shaped and positioned fluid shear and thrust surfaces defining fluid sherar and thrust chambers, respectively, therebetween and cooperable with shear fluid within the chamber to transmit torque and axial thrust loads between the members. The fluid shear surfaces are defined by interdigitated ridges and grooves. A shear fluid reservoir is located in the central portion of the driven member and passageways lead from an annular groove and cylindrical cavity adjacent the driving member back to the reservoir. A recycle passageway also leads from the annular groove and connects with the working chamber at a radially-inward location to provide recirculation of shear fluid through the working chamber. Several projections and dams are received within the cylindrical cavity and annular groove to provide shear surfaces for transmitting torque between the driving and driven members, and also to facilitate the pumping of the shear fluid from the working chamber back to the reservoir of through the recycle flow path. A weighted valve and associated temperature-responsive valve provide for modulated coupling between the driving and driven members.
    • 18. 发明公开
    • Fluid shear coupling apparatus
    • 流体剪切耦合装置
    • EP0055122A1
    • 1982-06-30
    • EP81306015.9
    • 1981-12-21
    • HOUSEHOLD MANUFACTURING, INC.
    • Haeck, Paul J.
    • F16D35/00
    • F16D35/022
    • A fluid shear coupling apparatus is disclosed herein which includes a driving member (11) received within a working chamber (24) defined by a driven member (22). The driven member (22) is mounted with needle bearings (29) to a shaft (13) portion of the driving member (11) to have the members rotatable about a common axis (28). The driving (11) and driven (22) members include complementary shaped and positioned fluid shear (16,17,25,26) and thrust (19, 27) surfaces defining fluid shear and thrust chambers, respectively, therebetween and cooperable with shear fluid within the chamber (24) to transmit torque and axial thrust loads between the members. The fluid shear surfaces are defined by interdigitated ridges (16, 25) and grooves (17, 26). A shear fluid reservoir (32) is located in the central portion of the driven member (22) and passageways (49, 50) lead from an annular groove (47) and cylindrical cavity adjacent the driving member back to the reservoir (32). A recycle passageway (52) also leading from the annular groove and connects with the working chamber (24) at a radially-inward location (53) to provide recirculation of shear fluid through the working chamber (24). Several projections (56) and dams (61) are received within the cylindrical cavity and annular groove (67) to provide shear surfaces for transmitting torque between the driving and driven members, and also to facilitate the pumping of the shear fluid from the working chamber (24) back to the reservoir (32) or through the recycle flow path. (51, 52, 53)
    • 本文公开了一种流体剪切联接装置,其包括容纳在由从动构件(22)限定的工作室(24)内的驱动构件(11)。 从动构件(22)通过滚针轴承(29)安装到驱动构件(11)的轴(13)部分,以使构件可绕公共轴线(28)旋转。 驱动件(11)和从动件(22)包括分别在其间限定流体剪切和推力室的互补形状和定位流体剪切(16,17,25,26)和推力(19,27)表面,并且可与剪切流体 在腔室(24)内以传递构件之间的扭矩和轴向推力载荷。 流体剪切表面由叉指脊(16,25)和凹槽(17,26)限定。 剪切流体贮存器(32)位于从动构件(22)的中央部分,并且通道(49,50)从邻近驱动构件的环形凹槽(47)和圆柱形空腔通向贮存器(32)。 再循环通道(52)也从环形凹槽引出并且在径向向内位置(53)处与工作室(24)连接以提供通过工作室(24)的剪切流体的再循环。 在圆柱形空腔和环形槽(67)内容纳有多个凸起(56)和坝(61),以提供用于在驱动和从动构件之间传递扭矩的剪切表面,并且还便于从工作室泵送剪切流体 (24)返回到储存器(32)或通过循环流动路径。 (51,52,53)