Optimum Design for Reducing Steering Error of Rack-and-Pinion Steering Linkage

랙-피니언 조향기구의 조향오차 최적설계

  • 홍경진 (한양대학교 대학원 기계설계과) ;
  • 최동훈 (정회원, 한양대학교 기계공학부)
  • Published : 1998.03.01

Abstract

This paper addresses an optimization for reducing a steering error of a rack-and-pinion steering linkage with a MacPherson strut independent front suspension system. The length, orientations and inner joint positions of a tie-rod are selected as design variables and Ackerman geonetry, understeer effect, minimum turn radius, wheel alignment and packaging are considered as design constraints. Nonlinear kinematic analysis of the steering system is performed for calculating the values of cost and constraints, and Augmented Lagrange Multiplier(ALM) method is used for solving the constrained optinization problem. The optimization results show that the steering error are considerably reduced while satisfying all the constraints.

Keywords

References

  1. Proc. of the Fifth World congress on Theory of Machines and Mechanisms Optimization of the Synthesis of the Steering Linkage in Vehicles Fl. Duditza;Visa
  2. Trans. of ASME v.105 Optimal Design of Rack-and-Pinion Steering Linkages C. E. Zarak;M. A. Townsend
  3. Mechanism and Machine Theory v.20 no.1 Steering Error Optimization of the MacPherson Strut Automotive Front Suspension M. L. Felzien;D. L. Cronin
  4. Kinematics and Mechanism Design C. H. Shu;C. W. Radcliffe
  5. SAE paper 912653 Optimal Ackerman for Improved Steering Axle Tire Wear on Trucks Gerald Miller;Robert Reed;Fred Wheeler
  6. 한국자동차공학회, 춘계학술대회, 933819 휠 얼라인먼트가 차량 동적 성능에 미치는 영향 손희성;서명원;손용만
  7. Applied Mechanics and Optimal Design Labratory IDOL User's Guide Version 1.6D, AMOD93-03 Kim, M.S.;Choi, D.H.
  8. 대한기계학회논문집 v.19 no.2 순차적 다항식 근사화를 적용한 효율적 선탐색기법의 개발 김민수;최동훈
  9. Fundamentals of Vehicle Dynamics Thomas D. Gillespie