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REDUCING SURFACE NODULES IN MELT-INFILTRATED CERAMIC MATRIX COMPOSITES
The disclosure describes techniques for infiltrating a porous preform with a slurry to form an infiltrated-preform, where the slurry includes a plurality of solid particles, where the plurality of solid particles include a plurality of fine ceramic particles defining an average fine particle diameter, a plurality of coarse ceramic particles defining an average coarse particle diameter, and a plurality of diamond particles, where the average fine particle diameter is less than the average coarse particle diameter, and infiltrating the infiltrated-preform with a molten metal infiltrant to form a ceramic matrix composite (CMC) article.
REDUCING SURFACE NODULES IN MELT-INFILTRATED CERAMIC MATRIX COMPOSITES
The disclosure describes techniques for infiltrating a porous preform with a slurry to form an infiltrated-preform, where the slurry includes a plurality of solid particles, where the plurality of solid particles include a plurality of fine ceramic particles defining an average fine particle diameter, a plurality of coarse ceramic particles defining an average coarse particle diameter, and a plurality of diamond particles, where the average fine particle diameter is less than the average coarse particle diameter, and infiltrating the infiltrated-preform with a molten metal infiltrant to form a ceramic matrix composite (CMC) article.
REDUCING SURFACE NODULES IN MELT-INFILTRATED CERAMIC MATRIX COMPOSITES
REDUZIERUNG VON OBERFLÄCHENKNÖTCHEN IN SCHMELZINFILTRIERTEN VERBUNDWERKSTOFFEN MIT KERAMISCHER MATRIX
RÉDUCTION DE NODULES DE SURFACE DANS DES COMPOSITES À MATRICE CÉRAMIQUE INFILTRÉE FONDUE
SHIM SUNGBO (author) / SHINAVSKI ROBERT (author)
2019-11-13
Patent
Electronic Resource
English
IPC:
C04B
Kalk
,
LIME
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