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Volumn 355, Issue 43-44, 2009, Pages 2102-2113
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Fracture toughness evaluation of precursor-derived Si-C-N ceramics using the crack opening displacement approach
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Author keywords
Atomic force and scanning tunneling microscopy; Ceramics; Crack growth; Fluctuations; Fracture; Indentation, microindentation; Nano composites; Optical microscopy; Scanning electron microscopy; Special glasses and materials
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Indexed keywords
ATOMIC FORCE AND SCANNING TUNNELING MICROSCOPY;
CERAMICS;
CRACK GROWTH;
FLUCTUATIONS;
SPECIAL GLASSES AND MATERIALS;
ATOMIC FORCE MICROSCOPY;
CERAMIC MATERIALS;
CRACK TIPS;
CRYSTALLINE MATERIALS;
FRACTOGRAPHY;
FRACTURE MECHANICS;
FRACTURE TOUGHNESS;
GLASS;
GRAPHITE;
GROWTH (MATERIALS);
HYDROGEN;
INTEGRATED OPTOELECTRONICS;
KNOWLEDGE BASED SYSTEMS;
NANOCOMPOSITES;
OPTICAL DATA STORAGE;
OPTICAL INSTRUMENTS;
PHASE CHANGE MATERIALS;
SCANNING;
SCANNING ELECTRON MICROSCOPY;
SCANNING TUNNELING MICROSCOPY;
STRESS INTENSITY FACTORS;
STRIPPING (DYES);
WIND TUNNELS;
OPTICAL MICROSCOPY;
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EID: 70349097664
PISSN: 00223093
EISSN: None
Source Type: Journal
DOI: 10.1016/j.jnoncrysol.2009.07.002 Document Type: Article |
Times cited : (18)
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References (40)
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