Composite materials show significant variability in strength, which means that statistical effects need to be considered when predicting failure. Experimental results are presented which show decreasing strength with increasing stressed volume of material. Approaches accounting for this in predicting strength using Weibull statistics are discussed.
WisnomM RAtkinsonJ AReduction in tensile and flexural strength of unidirectional glass fibre-epoxy with increasing specimen sizeComposite Structs, 1997, 38, 405–412.
2.
WisnomM RThe effect of specimen size on flexural strength of unidirectional carbon fibre-epoxyComposite Structs, 1991, 18, 47–63.
3.
WisnomM RAtkinsonJ AJonesM IReduction in compressive strain to failure with increasing specimen size in pin-ended buckling testsComposites Sci. Technol., 1997, 57, 1303–1308.
4.
WisnomM ROn the decrease in strength of unidirectional carbon fibre-epoxy with specimen size. In Ninth International Conference onComposite Materials, Madrid, July 1993, Vol. V, pp. 193–200.
5.
WisnomM RJonesM ISize effects in interlaminar tensile and shear strength of unidirectional glass fibre-epoxyJ. Reinforced Plastics and Composites, 1996, 15, 2–15.
6.
CuiWWisnomM RJonesM IEffect of specimen size on interlaminar shear strength of unidirectional carbon fibre epoxyComposites Engng, 1994, 4, 299–307.
7.
LiD SWisnomM RPredicting transverse cracking in cross-ply laminates—an improved statistical approach. Proceedings of ECCM, London, May 1996, Vol. 1, pp. 15–20.
8.
WisnomM RPetrossianZJonesM IThrough thickness failure of unidirectional glass fibre-epoxy under combined interlaminar tension and shearComposites, 1996, 27A, 921–929.