Invention Grant
US07549840B2 Through thickness reinforcement of SiC/SiC CMC's through in-situ matrix plugs manufactured using fugitive fibers
有权
通过SiC / SiC CMC通过使用短效纤维制造的原位基质插塞的厚度增强
- Patent Title: Through thickness reinforcement of SiC/SiC CMC's through in-situ matrix plugs manufactured using fugitive fibers
- Patent Title (中): 通过SiC / SiC CMC通过使用短效纤维制造的原位基质插塞的厚度增强
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Application No.: US11155786Application Date: 2005-06-17
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Publication No.: US07549840B2Publication Date: 2009-06-23
- Inventor: Suresh Subramanian , James Dale Steibel , Douglas Melton Carper
- Applicant: Suresh Subramanian , James Dale Steibel , Douglas Melton Carper
- Applicant Address: US NY Schenectady
- Assignee: General Electric Company
- Current Assignee: General Electric Company
- Current Assignee Address: US NY Schenectady
- Agency: McNees Wallace & Nurick, LLC
- Main IPC: F01D9/02
- IPC: F01D9/02 ; F01D5/12 ; F01D25/12

Abstract:
A method of manufacturing a turbine engine component comprising the steps of providing and laying up a plurality of ceramic plies comprising woven ceramic fiber tows to form a turbine engine component shape, inserting a plurality of tows of oxidizable fugitive fibers into the component shape, such that each fugitive fiber tow passes through a preselected number of ceramic plies, burning off the fugitive fiber tows, the burning producing through-thickness void regions, rigidizing the component shape with a layer of BN and a layer of SiC to form a coated component preform using chemical vapor infiltration, and partially densifying the coated component preform using carbon-containing slurry and filling the through thickness void regions, and further densifying the coated component preform with at least silicon to form a ceramic matrix composite turbine engine component with in-situ ceramic matrix plugs formed where the through-thickness void regions were located.
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