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Volumn 43, Issue 3, 2008, Pages 440-449
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Cohesive zone modeling of grain boundary microcracking induced by thermal anisotropy in titanium diboride ceramics
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Author keywords
Cohesive zone modeling; Microcracking; Residual stresses; Thermal anisotropy; Titanium diboride
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Indexed keywords
ANISOTROPY;
BORIDES;
BUILDING MATERIALS;
CERAMIC MATERIALS;
CRYSTAL GROWTH;
CRYSTALLOGRAPHY;
GRAIN (AGRICULTURAL PRODUCT);
GRAIN BOUNDARIES;
GRAIN SIZE AND SHAPE;
MICROCRACKING;
POLYCRYSTALLINE MATERIALS;
RESIDUAL STRESSES;
SPEED;
STRENGTH OF MATERIALS;
STRESSES;
THERMAL EXPANSION;
THERMAL SPRAYING;
TITANIUM;
COHESIVE ZONE MODEL;
COHESIVE ZONE MODELING;
DAMAGE MECHANICS;
DIBORIDE;
EXPANSION ANISOTROPY;
FINITE-ELEMENT METHODS;
GRAIN SIZES;
GRAIN-BOUNDARY ENERGY;
MICRO CRACKS;
MICRO-STRUCTURAL;
PAPER ADDRESSES;
POLYCRYSTALLINE CERAMIC MATERIALS;
QUANTITATIVE RELATIONS;
TEMPERATURE VARIATIONS;
THERMAL ANISOTROPY;
TITANIUM DIBORIDE;
FINITE ELEMENT METHOD;
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EID: 49349087676
PISSN: 09270256
EISSN: None
Source Type: Journal
DOI: 10.1016/j.commatsci.2007.12.011 Document Type: Article |
Times cited : (22)
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References (29)
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