Evaluation of chassis component reliability considering variation of fatigue data

피로 자료 분산을 고려한 자동차 부품의 신뢰도 해석

  • Nam G.W (Structure & Materials Dept., KARI) ;
  • Lee B.C. (Mechanical Eng. Dept., KAIST)
  • 남기원 (한국항공우주연구원 구조그룹) ;
  • 이병채 (한국항공우주연구원 기계공학과)
  • Published : 2005.06.01

Abstract

In this paper, probabilistic distribution of fatigue life of chassis component is determined statistically by applying the design of experiments and the Pearson system. To construct $p-\varepsilon-N$ curve, the case that fatigue data are random variables is attempted. Probabilistic density function(p.d.f) for fatigue life is obtained by design of experiment and using this p.d.f fatigue reliability about any aimed fatigue life can be calculated. Lower control arm and rear torsion bar of chassis component are selected as examples for analysis. Component load histories, which are obtained by multi-body dynamic simulation for Belsian load history, are used. Finite element analysis are performed using commercial software MSC Nastran and fatigue analysis are performed using FE Fatigue. When strain-life curve itself is random variable, probability density function of fatigue life has very little difference from log-normal distribution. And the case of fatigue data are random variables, probability density functions are approximated to Beta distribution. Each p.d.f is verified by Monte-Carlo simulation.

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