Vibration Analysis of Seat-Human Model for the Design of Seat Suspension System

시트 현가계 설계를 위한 시트-인체계의 진동해석

  • 김형근 (삼성중공업, 창원연구소 CAE팀) ;
  • 송세철 (삼성중공업 창원연구소 CAE 팀) ;
  • 권순기 (삼성중공업, 창원연구소 CAE팀)
  • Published : 1995.03.01

Abstract

In earth moving construction equipment used for rough and dangerous works, seat suspension system is the only means for reducing the vibration transmitted to the operator. Thus ISO(International Organization for Standardization) 7096 suggests a recommendation for the vibration characteristics of the seat suspension system in order to protect the human beings from excessive vibrationl. In this research, a new mechanical type seat suspension system is designed and a mathematical model, effective design parameters of the seat suspension system are determined and concept design strategy is presented.

Keywords

References

  1. International Standard Earthmoving Machinery Operator Seat-Transmitted Vibration ISO 7096
  2. Journal of Biomechanics v.13 A Mathematical Model for the Computational Determination of Parameter Values of Anthropomorphic Segments Hatze,H.
  3. Journal of Biomechanics v.11 Estimation of the Biomechanical Properties of Three Body Types Using a Photogrammetric Method Jensen,R.K.
  4. ASME Journal of Biomechanics v.11 A Study on a Vibratiory Model of a Humal Body Nigam,S.P.;Malik,M.
  5. Ergonomics v.12 no.1 Application of a Damped Spring Mass Human Vibration Simulator in Vibration Testing of Vehicle Seats Suggs,C.W.;Abrams,C.F.;Stikeleather,L.F.
  6. International Standard Mechanical Driving Point Impedance ISO 5982
  7. Journal of Biomechanics v.7 A Model for the Response of Seated Humans to Sinusoidal Displacements of the Seat Muksian,R.;Nash,C.D. Jr.
  8. International Journal of Industrial Ergonomics v.5 Vibration Attenuation Performance of Suspension Seats for Off-Road Forestry Vehicles Boileau,P.E.;Rakheja,S.
  9. International Standard Evaluation of Human Exposure to Whole-Body Vibration-Part I : General Requierments ISO 2631