Impact Collapse Behavior of Hybrid Circular Thin-walled Member by Stacking Condition

적층조건에 따른 혼성 원형 박육부재의 충격압궤거동

  • 이길성 (조선대학교 BK21 첨단소재부품 금형기술 인력양성사업단) ;
  • 박으뜸 (조선대학교 대학원 첨단부품소재공학과) ;
  • 양인영 (조선대학교 가계설계공학과)
  • Received : 2009.12.07
  • Accepted : 2010.02.09
  • Published : 2010.04.15

Abstract

The recent trend of vehicle design aims at crash safety and environmentally-friendly aspect. For the crash safety aspect, energy absorbing members should be absorbed with collision energy sufficiently. But vehicle structure must be light weight for the environmentally-friendly aspect, in order to improve fuel efficiency and to reduce tail gas emission. Therefore, the light weight of vehicle must be achieved in a status of securing safety of crash. An aluminum or CFRP (Carbon Fiber Reinforced Plastics) is representative one among the light-weight materials. In this study, impact collapse behavior of circular hybrid thin-walled member is evaluated. The hybrid members are manufactured by wrapping CFRP prepreg sheets outside the aluminum circular members in the autoclave. Because the CFRP is an anisotropic material whose mechanical properties change with its stacking condition, special attention is given to the effects of the stacking condition on the collapse behavior evaluation of the hybrid thin-walled member. Collapse mode and energy absorption capability of the hybrid thin-walled member are analyzed with change of the fiber orientation angle and interface number.

Keywords

References

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