Evaluation of SiC/SiC minicomposites with yttrium disilicate fiber coating

Hi‐Nicalon‐S/α‐Y2Si2O7/SiC minicomposites were formed by polymer infiltration pyrolysis (PIP) and characterized by TEM, SEM fractography, tensile testing, and fiber push‐in testing. All minicomposites with α‐Y2Si2O7 fiber coatings had strengths significantly higher than the control samples without f...

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Veröffentlicht in:Journal of the American Ceramic Society 2018-01, Vol.101 (1), p.91-102
Hauptverfasser: Boakye, Emmanuel E., Key, Thomas S., Parthasarathy, Triplicane A., Keller, Kristin A., Opeka, Samuel J., Hay, Randall S., Cinibulk, Michael K.
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container_end_page 102
container_issue 1
container_start_page 91
container_title Journal of the American Ceramic Society
container_volume 101
creator Boakye, Emmanuel E.
Key, Thomas S.
Parthasarathy, Triplicane A.
Keller, Kristin A.
Opeka, Samuel J.
Hay, Randall S.
Cinibulk, Michael K.
description Hi‐Nicalon‐S/α‐Y2Si2O7/SiC minicomposites were formed by polymer infiltration pyrolysis (PIP) and characterized by TEM, SEM fractography, tensile testing, and fiber push‐in testing. All minicomposites with α‐Y2Si2O7 fiber coatings had strengths significantly higher than the control samples without fiber coatings. Extensive fiber pullout with debonding at the coating‐fiber interface or within the coating itself was observed in minicomposites with Y2Si2O7 fiber coatings, but no debonding was observed in minicomposites without fiber coatings. Debond energies of 4.5 ± 3, 4.6 ± 3 J/m2 and average sliding stresses of 91 ± 40, 94 ± 40 MPa were measured by fiber push‐in tests.
doi_str_mv 10.1111/jace.15170
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subjects ceramic matrix composites
Coatings
Debonding
Fiber coatings
Fiber pullout
Infiltration
Nicalon (trademark)
Push in tests
Pyrolysis
RE2Si2O7 oxide coating
SiC fiber
weak interface
Yttrium
title Evaluation of SiC/SiC minicomposites with yttrium disilicate fiber coating
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