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Structural Optimization of Industrial Safety Helmet According to Frame Shape using Engineering Plastic

엔지니어링 플라스틱 소재별 보강뿔대 형상에 따른 산업용 안전모의 구조 최적화

  • Park, Man-Ho (Doosan Heavy Industries & Construction Co.,Ltd.) ;
  • Lee, Yeo-Wool (Graduate school of convergence science, Pusan National University) ;
  • Lee, Yong-Moon (Graduate school of convergence science, Pusan National University) ;
  • Park, Jae-Ha (Eretec Inc.) ;
  • Kang, Myungchang (Graduate school of convergence science, Pusan National University)
  • Received : 2018.11.27
  • Accepted : 2019.01.15
  • Published : 2019.03.31

Abstract

The industrial safety helmets are personal protective equipment (PPE), used to protect the head against falls from a height. This study indicated the necessity of wearing a safety helmet while working at heights below 4 m, through analysis of fall accidents occurring in the industrial field. The stress, displacement, and strain of the safety helmet shell structure have been analyzed using the finite element method with various thicknesses, engineering plastics, and designs. It was preferred that the safety helmet shell structure had a reinforcement frame of uniform thickness in terms of increased impact strength and strain energy absorption rate. The thickness can be reduced to lighten the total weight for workers wearing safety helmets.

Keywords

References

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