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US Patent 10882749 High strength ceramic fibers and methods of fabrication

Patent 10882749 was granted and assigned to Free Form Fibers L.L.C. on January, 2021 by the United States Patent and Trademark Office.

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Patent
Patent

Patent attributes

Patent Applicant
Free Form Fibers L.L.C.
Free Form Fibers L.L.C.
Current Assignee
Free Form Fibers L.L.C.
Free Form Fibers L.L.C.
Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
Patent Number
10882749
Date of Patent
January 5, 2021
Patent Application Number
16101730
Date Filed
August 13, 2018
Patent Citations Received
‌
US Patent 12133465 Multilayer functional fiber and method of making
0
Patent Primary Examiner
‌
Camie S Thompson
Patent abstract

A method and apparatus for forming a plurality of fibers from (e.g., CVD) precursors, including a reactor adapted to grow a plurality of individual fibers; and a plurality of independently controllable lasers, each laser of the plurality of lasers growing a respective fiber. A high performance fiber (HPF) structure, including a plurality of fibers arranged in the structure; a matrix disposed between the fibers; wherein a multilayer coating is provided along the surfaces of at least some of the fibers with an inner layer region having a sheet-like strength; and an outer layer region, having a particle-like strength, such that any cracks propagating toward the outer layer from the matrix propagate along the outer layer and back into the matrix, thereby preventing the cracks from approaching the fibers. A method of forming an interphase in a ceramic matrix composite material having a plurality of SiC fibers, which maximizes toughness by minimizing fiber to fiber bridging, including arranging a plurality of SiC fibers into a preform; selectively removing (e.g., etching) silicon out of the surface of the fibers resulting in a porous carbon layer on the fibers; and replacing the porous carbon layer with an interphase layer (e.g., Boron Nitride), which coats the fibers to thereby minimize fiber to fiber bridging in the preform.

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