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    • 4. 发明申请
    • Laser surface textured fluid-film bearing
    • 激光表面纹理流体膜轴承
    • US20060051000A1
    • 2006-03-09
    • US10541754
    • 2004-01-11
    • Izhak EtsionVictor BrizmerYuri Kligerman
    • Izhak EtsionVictor BrizmerYuri Kligerman
    • F16C32/06
    • F16C33/1075F16C17/047F16C33/106F16C2240/44F16C2300/02
    • A fluid-film bearing including: (a) a first surface region having a first bearing surface, for attaching to a first machine component; (b) a second surface region having a second bearing surface, for attaching to a second machine component; the surface regions designed and configured such that first surface and the second surface are disposed opposite one another, the surface regions further designed and configured such that the first surface and the second surface move in a relative motion with respect to one another and (c) a fluid disposed between the surfaces, wherein at least one of the surfaces is a micropore-containing surface having a plurality of micropores disposed so as to effect an equivalent clearance convergence between the surfaces, in a direction of the relative motion, such that the relative motion, acting on the fluid, generates a pressure so as to generate a lifting force between the surfaces.
    • 一种流体膜轴承,包括:(a)具有第一轴承表面的第一表面区域,用于附接到第一机器部件; (b)具有第二支承表面的第二表面区域,用于附接到第二机器部件; 所述表面区域被设计和构造成使得第一表面和第二表面彼此相对设置,所述表面区域进一步被设计和构造成使得所述第一表面和所述第二表面相对于彼此相对运动,并且(c) 设置在所述表面之间的流体,其中所述表面中的至少一个是具有多个微孔的微孔表面,所述多孔微孔设置成在所述相对运动的方向上实现所述表面之间的等效的间隙会聚,使得所述相对运动 作用在流体上的运动产生压力,以便在表面之间产生提升力。
    • 8. 发明授权
    • Zero-leakage non-contacting mechanical face seal for rotary machines
    • 用于旋转机器的零泄漏非接触机械面密封
    • US4407509A
    • 1983-10-04
    • US340246
    • 1982-01-18
    • Izhak Etsion
    • Izhak Etsion
    • F16J15/34F16J15/40
    • F16J15/3412
    • A hydrodynamic, non-contacting end-face seal for a rotary machine comprises a rotor mounted on the machine shaft and a ring-shaped stator facing the flat and smooth surface of the rotor at a short distance. The stator encloses the machine shaft, is eccentrically positioned in respect of the rotor center, and is urged towards the rotor surface by a helical spring. The surface of the stator ring is shaped to form a circular rim separated from the rotor surface by a very small gap of varying width, and the space enclosed by this rim is raised to a higher pressure than the surroundings by the hydrodynamic action of the surface velocity of the rotor on the liquid in the machine, by making the gap width as follows: the gap width between rotor and stator is of a mechanically permissible minimum in all points of the rim at which the velocity vector of the rotor surface extends from the inside of the rim to the outside, and the gap width is larger in all points of the rim at which the velocity vector extends from the outside to the inside. The gap width is changed, in accordance with pressure conditions in the machine by action of the helical sprin
    • 用于旋转机械的流体动力学非接触式端面密封件包括安装在机器轴上的转子和在短距离处面对转子的平坦和平滑表面的环形定子。 定子包围机器轴,相对于转子中心偏心定位,并且通过螺旋弹簧被推向转子表面
    • 10. 发明授权
    • Lubricated seals having micropores
    • 润滑密封件具有微孔
    • US06341782B1
    • 2002-01-29
    • US09518237
    • 2000-03-03
    • Izhak Etsion
    • Izhak Etsion
    • F16J912
    • F16J15/3412F16J15/3424
    • A lubricated hydrostatic seal comprising (a) surface regions having opposing surfaces; (b) a plurality of micropores in one or more of said surfaces having a pore geometry; and (c) a flow of fluid between said surfaces, wherein said flow of fluid past said micropores provides a lifting force between said surfaces. In a preferred embodiment, the opposing surfaces of the surface regions are nominally parallel. Nominally-parallel surfaces are simple to manufacture and are considerably less expensive than the various converging-surface configurations of the prior art. The nominally-parallel surface configuration can also be utilized in both liquid-lubricated and gas-lubricated hydrodynamic seal applications, and in hybrid-seal applications in which both hydrodynamic and hydrostatic lift are generated.
    • 一种润滑的静水密封,包括(a)具有相对表面的表面区域; (b)在一个或多个所述表面中具有孔几何形状的多个微孔; 和(c)所述表面之间的流体流,其中所述流体经过所述微孔的流动在所述表面之间提供提升力。 在优选实施例中,表面区域的相对表面名义上是平行的。 名义上平行的表面制造简单,并且比现有技术的各种会聚表面构造便宜得多。 名义上平行的表面结构也可以用于液体润滑和气体润滑的流体动力学密封应用中,以及在其中产生流体动力学和静液压升力的混合密封应用中。