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Volumn 46, Issue 1, 2009, Pages 7-14
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A micromechanical lattice model to describe the fracture behaviour of engineered cementitious composites
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Author keywords
Cementitious composite; Fiber; Lattice model; Micromechanics; Tensile ductility
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Indexed keywords
AUTOMATIC IMAGE PROCESSING;
CEMENT-BASED;
CEMENTITIOUS COMPOSITE;
CEMENTITIOUS COMPOSITES;
CRACKING STRESS;
ENGINEERED CEMENTITIOUS COMPOSITES;
FIBER-REINFORCED CONCRETES;
FRACTURE BEHAVIOUR;
FRACTURE PROPAGATION;
HIGH-PERFORMANCE FIBERS;
LATTICE MODEL;
LATTICE MODELS;
LINEAR ELASTIC BEHAVIOR;
MESOSCALE;
MICRO-MECHANICAL;
MULTI-PHASE STRUCTURES;
NORMAL CONCRETES;
NUMERICAL RESULTS;
PHASE DETECTION;
PIECE-WISE;
PLAIN CONCRETE;
REINFORCED CEMENTITIOUS COMPOSITES;
SPECIAL CLASS;
STANDARD FIBERS;
TENSILE DUCTILITY;
TENSILE LOADING;
TENSILE SPECIMENS;
TRIANGULAR LATTICE;
TRUSS ELEMENTS;
TWO-DIMENSIONAL LATTICE MODEL;
CEMENTS;
CONCRETES;
CRYSTAL LATTICES;
DUCTILITY;
FIBERS;
HARDENING;
IMAGE PROCESSING;
INTERMETALLICS;
MICROMECHANICS;
REINFORCED CONCRETE;
REINFORCED PLASTICS;
TRUSSES;
TENSILE STRAIN;
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EID: 67349260763
PISSN: 09270256
EISSN: None
Source Type: Journal
DOI: 10.1016/j.commatsci.2009.01.021 Document Type: Article |
Times cited : (37)
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References (22)
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