Improving pedestrian safety via the optimization of composite hood structures for automobiles based on the equivalent static load method

  • Kim, Dong-Hyun
  • Jung, Ku-Hyun
  • Kim, Dug-Joong
  • Park, Sung-Hyeon
  • Kim, Do-Hyoung
  • ... Kim, Hak-Sung
  • 외 2명
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49

초록

In this study, design optimization of a composite hood for automobiles was carried out to mitigate the impact of pedestrian head injuries based on finite element analysis. Reduced vehicle, headform impactor and single hood models were established to obtain optimal composite hood designs. The carbon fiber reinforced composite (CFRP) and the hybrid Glass fiber reinforced composite (CFRP/GFRP) laminates were selected as composite material candidates. Both stacking angle sequence and topometry of the composite hood were optimized based on the equivalent static load method. After the optimization, the head injury criterion (HIC), deflection and weight were measured to evaluate the performance of the composite hood. The developed CFRP and hybrid CFRP/GFRP type hoods with optimized final design exhibited the improved impact performance and significant weight reduction while satisfying bending and torsion deflection requirements compared to those of conventional steel and aluminum hoods.

키워드

Carbon fiber-reinforced compositesGlass fiber-reinforced compositesAutomobile hoodOptimal designPedestrian safetyEquivalent static load methodDESIGN OPTIMIZATIONVEHICLEIMPACTPROTECTIONALUMINUMMODELSHEAD
제목
Improving pedestrian safety via the optimization of composite hood structures for automobiles based on the equivalent static load method
저자
Kim, Dong-HyunJung, Ku-HyunKim, Dug-JoongPark, Sung-HyeonKim, Do-HyoungLim, JaeyoungNam, Byeung-GunKim, Hak-Sung
DOI
10.1016/j.compstruct.2017.06.016
발행일
2017-09
유형
Article
저널명
Composite Structures
176
페이지
780 ~ 789