IP Library Granted Patent US 7,008,111
Granted Patent B2
US 7,008,111 · App. 10/729,866 · Granted Mar 7, 2006

Fluidics-balanced fluid bearing

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Quick Facts
Patent No.
US 7,008,111
App. No.
10/729,866
Granted
Mar 7, 2006
Kind
B2
Abstract

Radial loads and vibrations and axial loads on a rotor are balanced by a fluid bearing controlled by a self-regulating system that supplies fluid flow or pressure to the gap between the rotor and stator in response to signals of imbalance generated in the machinery itself. The resulting balancing force is thus created by fluidics, and in certain embodiments the sensing circuit is fluidics-based as well. This system provides enhanced flexibility and response time relative to conventional fluid bearings.

Claims (23)

1. Apparatus producing a self-regulating fluid bearing between a rotor and stator wherein said stator is a laminate of platelets, said apparatus comprising:

first signal generating means for generating a signal representative of a pressure change within a first gap between opposing surfaces of said rotor and said stator, said pressure change being one that is indicative of a displacement of said rotor caused by a load imposed on said rotor;

second signal generating means for generating a signal representative of a pressure change within a second gap between opposing surfaces of said rotor and said stator, said pressure change being one that is indicative of a displacement of said rotor caused by a load imposed on said rotor;

a source of pressurized fluid;

a first channel configured to convey fluid from said source of pressurized fluid to said first gap and a second channel configured to convey fluid from said source of pressurized fluid to said second gap, said first and second channels residing in said stator and defined by superimposed openings in adjacent platelets; and

fluid flow regulating means for regulating fluid flow through said first and second channels in response to said signals to reduce said displacements.

2. The apparatus of claim 1 wherein said rotor has an axis of rotation and said first and second gaps are separated along said axis of rotation, said pressure changes resulting from an axial force on said rotor.

3. The apparatus of claim 1 wherein said rotor has an axis of rotation and said first and second gaps are separated along a line transverse to said axis of rotation, said pressure changes resulting from a radial force on said rotor.

4. The apparatus of claim 1 wherein said first and second signals are electrical signals and said first and second signal generating means are pressure transducers each converting pressure to an electrical signal representative of said pressure.

5. The apparatus of claim 1 wherein said first and second signals are fluid pressure levels detected within said first and second gaps respectively.

6. Apparatus producing a self-regulating fluid bearing between a rotor and stator, said apparatus comprising:

first and second signal fluid flow signals representative of fluid pressures within first and second gaps, respectively, on opposing surfaces of said rotor and stator and on opposite sides of said rotor, such that changes in said pressures are indicative of a displacement of said rotor caused by a load imposed on said rotor;

a source of pressurized fluid;

first and second channels configured to convey fluid from said source of pressurized fluid to said first and second gaps, respectively; and

a bistable fluidic amplifier with individual inlets for said first and second fluid flows such that a net inflow from said first fluid flow diverts pressurized fluid from said source of pressurized fluid to said first channel and a net inflow from said second fluid flow diverts said pressurized fluid to said second channel.

7. Apparatus producing a self-regulating fluid bearing between a rotor and stator, said apparatus comprising:

means for generating fluid flows directly from first and second gaps, respectively, between opposing surfaces of said rotor and stator and on opposite sides of said rotor, said fluid flows being indicative of a displacement of said rotor caused by a load imposed on said rotor;

a source of pressurized fluid;

first and second channels configured to convey fluid from said source of pressurized fluid to said first and second gaps, respectively; and

a bistable fluidic amplifier with individual inlets for said first and second fluid flows such that a net inflow from said first gap diverts pressurized fluid from said source of pressurized fluid to said first channel and a net inflow from said second gap diverts said pressurized fluid to said second channel.

8. The apparatus of claim 7 wherein said rotor has an axis of rotation and said first and second gaps are separated along said axis of rotation, said pressure changes resulting from an axial forces on said rotor.

9. The apparatus of claim 7 wherein said rotor has an axis of rotation and said first and second gaps are separated along a line transverse to said axis of rotation, said pressure changes resulting from radial forces on said rotor.

10. The apparatus of claim 7 wherein said stator is a laminate of platelets, said first and second channels reside in said stator and are defined by superimposed openings in adjacent platelets.

Assignments (2)
NOTICE OF GRANT OF SECURITY INTEREST Recorded Mar 14, 2005
From: AEROJET-GENERAL CORPORATION
To: WACHOVIA BANK, NATIONAL ASSOCIATION, AS ADMINISTRATIVE AGENT
Reel/Frame 015766/0560 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 1, 2004
From: HAMKE, ROLF E.
To: AEROJET-GENERAL CORPORATION
Reel/Frame 015410/0838 →