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Home Metal Working Multi-stage-support-element-for-compliant-hydrodynamic-bearings

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 Multi-stage support element for compliant hydrodynamic bearings

Details
Inventors: Heshmat, Hooshang;
Assignee: Mechanical Technology Incorporated (Latham, NY)
Primary Examiner: Levy; Stuart S.
Assistant Examiner:
Attorney, Agent or Firm: Claeys; Joseph V.

A compliant hydrodynamic fluid film bearing includes a flexible bearing sheet overlying and supported by a resilient support element having two corrugated spring foil support elements arranged in a staged, parallel spring array. The top spring element is more compliant in the bottom spring element and provides a compliant support for the bearing sheet at low rotor speeds to provide early development of load bearing capacity. With increasing rotor speed, the top support element deflects to the level of the second or lower support element which is stiffer and provides stronger support at higher speeds. At these higher speeds, the combined support element supports the bearing sheet at the correct profile to the moving bearing member and prevents collapse of the support element so that the bearing remains operative at high and ultra high speeds despite the increased load and stiffness of the hydrodynamic fluid film.

DETAILED DESCRIPTION Therefore, it is to be understood that all these different forms and their equivalents may be practiced while remaining within the spirit and scope of the invention defined in the following claims, wherein I claim: 1.
A compliant hydrodynamic fluid film bearing, comprising: first and second relatively moving members defining therebetween a gap; a bearing assembly disposed in said gap and attached to said first member, said second member rotating relative to said bearing assembly and generating a hydrodynamic fluid film between said bearing assembly and said second member for dynamic support of one member by the other member; said bearing assembly including a smooth flexible thin bearing sheet and a resilient support element underlying and supporting said bearing sheet in bearing relationship to said second member; said support element deflecting under the load exerted by said hydrodynamic fluid film to present an inclined bearing surface of said bearing sheet to the relatively moving surface of said second member; said support element being formed of at least two separate foil members, stacked one over the other; each of said foil members having raised resilient projections which provide the resilient, compliant support for said bearing sheet, said projections being distributed across said foil members in a similar pattern on both foil members such that said projections are aligned perpendicularly beneath the plane of the overlying bearing sheet in operation; said projections on said other foil member being smaller, stiffer, and stronger than said projections on said one foil member; whereby said projections constitute a staged parallel spring array for supporting said bearing sheet on said one foil member at low speed, low load conditions wherein greater compliance is desired, and during high-speed, high-load conditions said one foil member projections deflect to the level of said other foil member projections which are stiffer than said one foil member projections and, with said other foil member projections, support the increased load with increased stiffness and damping



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