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Effect of Water Absorption on the Impact Properties of Carbon Fiber/Epoxy Composites
作者姓名:LU Xiao-jun  ZHANG Qi* School of Materials Science and Engineering  Bejing University of Aeronautics and Astronautics  Beijing  China
作者单位:LU Xiao-jun,ZHANG Qi* School of Materials Science and Engineering,Bejing University of Aeronautics and Astronautics,Beijing 100083,China
摘    要:In this paper, the effects of test temperatures and time on the impact damage behavior of unidirectional carbon fiber reinforced epoxy resin composites, immersed in pure water, on a pendulum impact tester, was studied. The results show that immersion in liquids has a significant effect on the impact resistance of the unidirectional composite material. It is obvious that after immersion, the mass of the material increases. The fracture initiation forces as well as the fracture initiation energy decrease as the immersion time lengthens. Moreover, the higher the temperature and the longer the time are, the more the crack propagation energy and the ductility index will be. Immersion makes the fracture mode change from the dominant fiber fracture into dominant delamination. All in all, immersion decreases the impact resistance of the composites and causes the fracture mode to change.


Effect of Water Absorption on the Impact Properties of Carbon Fiber/ Epoxy Composites
LU Xiao-jun,ZHANG Qi* School of Materials Science and Engineering,Bejing University of Aeronautics and Astronautics,Beijing ,China.Effect of Water Absorption on the Impact Properties of Carbon Fiber/Epoxy Composites[J].Chinese Journal of Aeronautics,2006,19(Z1).
Authors:LU Xiao-jun  ZHANG Qi
Abstract:In this paper, the effects of test temperatures and time on the impact damage behavior of unidirectional carbon fiber reinforced epoxy resin composites, immersed in pure water, on a pendulum impact tester, was studied. The results show that immersion in liquids has a significant effect on the impact resistance of the unidirectional composite material. It is obvious that after immersion, the mass of the material increases. The fracture initiation forces as well as the fracture initiation energy decrease as the immersion time lengthens. Moreover, the higher the temperature and the longer the time are, the more the crack propagation energy and the ductility index will be. Immersion makes the fracture mode change from the dominant fiber fracture into dominant delamination. All in all, immersion decreases the impact resistance of the composites and causes the fracture mode to change.
Keywords:carbon fiber composites  impact damage  immersion  fracture mechanisms
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