A Study on the Fracture Toughness of Glass-Carbon Hybrid Composites

유리-탄소 하이브리드 복합재료의 파괴인성에 관한 연구

  • No, Ho-Seop (Granduate School of Industry.National Fisheries University of Pusan) ;
  • Go, Seong-Wi (National Fisheries University of Pusan)
  • Published : 1992.09.01

Abstract

The critical strain energy release rate and the failure mechanisms of glass-carbon epoxy resin hybrid composites are investigated in the temperature range of the ambient temperature to 8$0^{\circ}C$. The direction of laminates and the volume fraction are [(+45, -45, 0, 0) sub(2) ] sub(s), 50%, respectively. The major failure mechanisms of these composites are studied using the scanning electron microscope for the fracture surface. Results are summarized as follows: 1) The critical strain energy release rate shows a maximum at ambient temperature and it tends to decrease as temperature goes up. 2) The critical strain energy release rate increases as the content of glass increases, and especially shows dramatic increase for the high glass fiber content specimens. 3) Major failure mechanisms can be classfied such as localized shear yielding, fiber-matrix debonding, matrix micro-cracking, and fiber pull-out and/or delamination.

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