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The morphology of ceramic phases in B
x
C-SiC-Si infiltrated composites
S. Hayun
,
N. Frage
,
M. P. Dariel
Department of Materials Engineering
Research output
:
Contribution to journal
›
Article
›
peer-review
86
Scopus citations
Overview
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x
C-SiC-Si infiltrated composites'. Together they form a unique fingerprint.
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Physics & Astronomy
boron carbides
88%
ceramics
46%
composite materials
42%
carbon
26%
silicon
21%
polygons
12%
rims
11%
microstructure
11%
infiltration
11%
dissolving
9%
boron
8%
examination
8%
communication
8%
saturation
6%
thermodynamics
6%
diffraction
5%
Engineering & Materials Science
Boron carbide
100%
Composite materials
39%
Silicon
30%
Carbon
29%
Molten materials
19%
Microstructure
13%
Infiltration
11%
Boron
11%
Dissolution
10%
X ray diffraction
9%
Thermodynamics
8%
Chemical Compounds
Boron Atom
59%
Ceramic
52%
Composite Material
34%
Carbon Atom
16%
Microstructure
11%
Communication
7%