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Prediction of in situ strengths and matrix cracking in composites under transverse tension and in-plane shear

Composites Part A Applied Science and Manufacturing · 2005 · Vol. 37(2) · pp. 165–176
P.P. CamanhoCarlos G. DávilaS.T. PinhoLorenzo IannucciP. Robinson
Mechanical Behavior of CompositesStructural Analysis and OptimizationMechanical stress and fatigue analysisMaterials scienceComposite materialTransverse planeTension (geology)Shear (geology)Fracture mechanicsMatrix (chemical analysis)CrackingToughnessFracture toughness
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FAILURE ANALYSIS OF FRP LAMINATES BY MEANS OF PHYSICALLY BASED PHENOMENOLOGICAL MODELS
Composites Science and Technology · 1998 · 1,406 citations
The determination of the elastic field of an ellipsoidal inclusion, and related problems
Proceedings of the Royal Society of London A Mathematical and Physical Sciences · 1957 · 12,766 citations
Failure Criteria for Unidirectional Fiber Composites
Journal of Applied Mechanics · 1980 · 4,383 citations
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Prediction of in situ strengths and matrix cracking in composites under transverse tension and in-plane shear · Scinovex