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The mechanics of delamination in fiber-reinforced composite materials. II - The delamination behavior and fracture mechanics parametersBased on theories of laminate anisotropic elasticity and interlaminar fracture, the complete solution structure associated with a composite delamination is determined. Fracture mechanics parameters characterizing the interlaminar crack behavior are defined from asymptotic stress solutions for delaminations with different crack-tip deformation configurations. A numerical method employing singular finite elements is developed to study delaminations in fiber composites with any arbitrary combinations of lamination, material, geometric, and crack variables. The special finite elements include the exact delamination stress singularity in its formulation. The method is shown to be computationally accurate and efficient, and operationally simple. To illustrate the basic nature of composite delamination, solutions are shown for edge-delaminated (0/-0/-0/0) and (+ or - 0/+ or - 0/90/90 deg) graphite-epoxy systems under uniform axial extension. Three-dimensional crack-tip stress intensity factors, associated energy release rates, and delamination crack-closure are determined for each individual case. The basic mechanics and mechanisms of composite delamination are studied, and fundamental characteristics unique to recently proposed tests for interlaminar fracture toughness of fiber composite laminates are examined. Previously announced in STAR as N84-13222
Document ID
19840039479
Acquisition Source
Legacy CDMS
Document Type
Conference Paper
Authors
Wang, S. S.
(Illinois Univ. Urbana, IL, United States)
Choi, I.
(Illinois, University Urbana, IL, United States)
Date Acquired
August 12, 2013
Publication Date
January 1, 1983
Subject Category
Composite Materials
Accession Number
84A22266
Funding Number(s)
CONTRACT_GRANT: NAG1-286
Distribution Limits
Public
Copyright
Other

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