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US Patent 12123306 Seal assemblies for turbine engines and related methods

Patent 12123306 was granted and assigned to General Electric on October, 2024 by the United States Patent and Trademark Office.

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Contents

Patent abstractTimelineTable: Further ResourcesReferences
Is a
Patent
Patent
1

Patent attributes

Patent Applicant
General Electric
General Electric
1
Current Assignee
General Electric
General Electric
1
Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
1
Patent Number
121233061
Patent Inventor Names
Deepak Trivedi1
Bugra Han Ertas1
Rahul Anil Bidkar1
Date of Patent
October 22, 2024
1
Patent Application Number
178516721
Date Filed
June 28, 2022
1
Patent Citations
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US Patent 10563772 Seal assembly and an associated method thereof
1
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US Patent 10895324 Aspirating face seal assembly for a rotary machine
1
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US Patent 11035242 Sealing assembly for a turbine rotor of a turbomachine and a turbine of a turbomachine comprising such an assembly
1
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US Patent 10920593 Movable ring assembly for a turbine engine turbine
1
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US Patent 6840519 Actuating mechanism for a turbine and method of retrofitting
1
‌
US Patent 9255642 Aerodynamic seals for rotary machine
1
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US Patent 9359908 Film riding seal assembly for turbomachinery
1
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US Patent 10161259 Flexible film-riding seal
1
...
Patent Primary Examiner
‌
David E Sosnowski
1
CPC Code
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F05D 2240/55
1
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F05D 2220/323
1
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F16J 15/44
1
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F01D 11/005
1
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F01D 11/02
1
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F01D 11/001
1
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F01D 11/00
1
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F16J 15/445
1
...
Patent abstract

A seal assembly for an aeronautical turbine engine includes a passive flow regulator. The passive flow regulator includes a seal body defining an aspiration conduit, and a flow constrictor disposed within and/or adjacently upstream of the aspiration conduit. The aspiration conduit provides fluid communication across the seal body from a relatively higher-pressure fluid volume to a relatively lower-pressure fluid volume. The flow constrictor includes one or more flexure elements that move in one or more degrees of freedom as a result of changes in a pressure differential across the flow constrictor. The movement of the one or more flexure elements changes a hydraulic resistance of fluid flow past the flow constrictor based at least in part on a position of the flow constrictor in relation to the aspiration conduit.

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