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Volumn 67, Issue , 2013, Pages 207-215
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Probabilistic thermal conductivity analysis of dense stabilized zirconia ceramics
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Author keywords
Homogenization; Microstructure; Monte Carlo analysis; Sensitivity analysis; Stabilized zirconia; Thermal conductivity
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Indexed keywords
BASIC VARIABLES;
BIMODAL DISTRIBUTION;
CERAMIC MICROSTRUCTURES;
COMPUTATIONAL HOMOGENIZATION;
CONDUCTIVITY ANALYSIS;
CRITICAL THRESHOLD;
DIFFERENT SCALE;
EFFECTIVE THERMAL CONDUCTIVITY;
EXPERIMENTAL MEASUREMENTS;
GRAIN SIZE;
HEAT TRANSFER MODEL;
HETEROGENEOUS MATERIALS;
HOMOGENIZATION;
LASER FLASH TECHNIQUES;
MATERIAL CONDUCTIVITIES;
MICROSTRUCTURAL HETEROGENEITY;
MONTE CARLO ANALYSIS;
NUMBER OF ITERATIONS;
PORE VOLUME FRACTIONS;
RANDOM MICROSTRUCTURE;
RELIABILITY AND SENSITIVITY;
REPRESENTATIVE SAMPLING;
REPRESENTATIVE VOLUME ELEMENT (RVE);
STABILIZED ZIRCONIA;
VORONOI;
CERAMIC MATERIALS;
HOMOGENIZATION METHOD;
ITERATIVE METHODS;
MICROSTRUCTURE;
PROBABILITY DISTRIBUTIONS;
RANDOM VARIABLES;
RELIABILITY ANALYSIS;
SENSITIVITY ANALYSIS;
ZIRCONIA;
THERMAL CONDUCTIVITY;
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EID: 84867037584
PISSN: 09270256
EISSN: None
Source Type: Journal
DOI: 10.1016/j.commatsci.2012.07.046 Document Type: Article |
Times cited : (10)
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References (36)
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