Modeling and Vibration Analysis of Steering System

스티어링 시스템의 모델링 및 진동 해석

  • 조준호 (한양대학교 대학원) ;
  • 오재응 (한양대학교공과대학정밀기계공학과) ;
  • 임동규 (한양대학교공과대학정밀기계공학과) ;
  • 강성종 (현대자동차 마북리 연구소) ;
  • 강성종 (현대자동차 마북리 연구소)
  • Published : 1992.06.01

Abstract

In this study, ti identify the dynamic characteristics of automobile steering system which consists of many components and joints, each component combined structure was analyzed using commercial structural package, ANSYS. And, the finite element method for each component and modeling method of several joints universal joint, bolt joint, bearing, etc. were studied. On the other hand, the experimental modal analysis was performed to compare with the results of the finite element analysis and joint modeling. The result shows very close agreement between two analysis. Also, it was found that the steeing column used in this experiment does not effect the low frequency mode of entire system. In addition, we found that constraint equations need to be considered in modeling universal joint. Since the stiffness effect of Urethane around wheel could be ignored, it can be modeled only with mass effect. In the end, it was found that dynamic characteristics of the entire steerintg system depends mainly upon the wheel characteristics.

Keywords

References

  1. SAE 850996 Using Experimental Modal Modeling Techniques to Investigate Steering Column Vibration and Idle Shake of a Passenger Car S.L.Chiang
  2. SAE 870971 Experimental Analysis for the Steering Wheel Vibration Using Mechanical Impedance Methods Hiroshi Sugita;Makoto Asai
  3. ANSYS USER'S MANUAL Gabriel J. DeSalvo;Robert W. Gorman
  4. 구조물 모우드 해석의 기초와 응용 오재응
  5. 한양대학교 석사학위논문 유한요소법과 실험 모우드 해석법에 의한 감쇠 구조물의 진동해석 홍하윤
  6. Proceedings of 3rd IMAC Experimental and Analytical Modeling of a machine Tool Spindle Using Component Mode Synthesis Robert Comparin;Donald R. Houser