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한국자동차공학회

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12권 2호 123-130 2004 [한국자동차공학회 논문집 ]

제목 자동차 현가장치 부품에 대한 신뢰성 기반 최적설계에 관한 연구
분야 차량동역학 및 제어
언어 Korean
저자 이종홍(연세대학교), 임홍재(국민대학교), 유정훈(연세대학교)
Key Words Topology optimization(위상 최척화), Size optimization(치수 최적화), Monte Carlo method(몬테카를로법), Reliability based design optimization(신뢰성 기반 최적설계), Importance sampling method(중요도 추출법)
초록 The automobile suspension system is composed of parts that affect performances of a vehicle such as ride quality, handling characteristics, straight performance and steering effort, etc. Moreover, by using the finite element analysis the cost for the initial design step can be decreased. In the design of a suspension system, usually system vibration and structural rigidity must be considered simultaneously to satisfy dynamic and static requirements simultaneously. In this paper, we consider the weight reduction d the increase of the first eigen-frequency of a suspension part, the upper control arm, especially using topology optimization and size optimization. Firstly, we obtain the initial design to maximize the first eigen-frequency using topology optimization. Then, we apply the multi-objective parameter optimization method to satisfy both the weight reduction and the increase of the first eigen-frequency. The design variables are varying during the optimization process for the multi-objective. Therefore, we can obtain the deterministic values of the design variables not only to satisfy the terms of variation limits but also to optimize the two design objectives at the same time. Finally, we have executed reliability based optimal design on the upper control arm using the Monte-Carlo method with importance sampling method for the optimal design result with 98% reliability.{{br}}
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