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Volumn 13, Issue 8, 1999, Pages 931-957
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Numerical and experimental analyses of a fracture mechanics test for adhesively bonded joints
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Author keywords
finite elements; fracture mechanics; interfaces; Joint strength; strain energy release rate
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Indexed keywords
ADHESIVELY BONDED JOINTS;
ANALYTICAL ANALYSIS;
BOND THICKNESS;
CRACK LENGTH;
DOUBLE CANTILEVER BEAM;
ELASTIC FOUNDATION MODEL;
ELASTIC-PLASTIC BEHAVIOR;
EPOXY ADHESIVES;
EXPERIMENTAL ANALYSIS;
EXPERIMENTAL VALUES;
FINITE ELEMENT;
FLUORINATED POLYMERS;
INITIAL STIFFNESS;
JOINT STRENGTH;
LEAST SQUARE;
LOAD CURVES;
NUMERICAL APPROACHES;
NUMERICAL MODELS;
POLYMER SPECIMENS;
PRE-CRACKS;
SMALL-SCALE YIELDING;
THIN BEAM;
ADHESIVE JOINTS;
CRACK TIPS;
CRACKS;
FINITE ELEMENT METHOD;
FLUORINE CONTAINING POLYMERS;
FRACTURE MECHANICS;
INTERFACES (MATERIALS);
STIFFNESS;
STRAIN ENERGY;
BOND STRENGTH (MATERIALS);
CRACK INITIATION;
CRACK PROPAGATION;
EPOXY RESINS;
FRACTURE TESTING;
MATHEMATICAL MODELS;
PLASTIC ADHESIVES;
STRAIN;
VINYL RESINS;
DISPLACEMENT MEASUREMENT;
ADHESIVE JOINTS;
DOUBLE CANTILEVER BEAM (DCB) TESTS;
MAUGIS MODEL;
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EID: 0032626989
PISSN: 01694243
EISSN: 15685616
Source Type: Journal
DOI: 10.1163/156856199X00758 Document Type: Article |
Times cited : (5)
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References (13)
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