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Interlaminar shear fracture toughness and fatigue thresholds for composite materialsStatic and cyclic end notched flexure tests were conducted on a graphite epoxy, a glass epoxy, and graphite thermoplastic to determine their interlaminar shear fracture toughness and fatigue thresholds for delamination in terms of limiting values of the mode II strain energy release rate, G-II, for delamination growth. The influence of precracking and data reduction schemes are discussed. Finite element analysis indicated that the beam theory calculation for G-II with the transverse shear contribution included was reasonably accurate over the entire range of crack lengths. Cyclic loading significantly reduced the critical G-II for delamination. A threshold value of the maximum cyclic G-II below which no delamination occurred after one million cycles was identified for each material. Also, residual static toughness tests were conducted on glass epoxy specimens that had undergone one million cycles without delamination. A linear mixed-mode delamination criteria was used to characterize the static toughness of several composite materials; however, a total G threshold criterion appears to characterize the fatigue delamination durability of composite materials with a wide range of static toughness.
Document ID
19890048943
Acquisition Source
Legacy CDMS
Document Type
Conference Paper
Authors
O'Brien, T. Kevin
(NASA Langley Research Center Hampton, VA, United States)
Murri, Gretchen B.
(NASA Langley Research Center; U.S. Army, Aerostructures Directorate, Hampton VA, United States)
Salpekar, Satish A.
(Analytical Services and Materials, Inc. Hampton, VA, United States)
Date Acquired
August 14, 2013
Publication Date
January 1, 1989
Subject Category
Composite Materials
Meeting Information
Meeting: Symposium on Composite Materials: Fatigue and Fracture
Location: Cincinnati, OH
Country: United States
Start Date: April 27, 1987
End Date: April 28, 1987
Accession Number
89A36314
Distribution Limits
Public
Copyright
Other

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