바로가기 메뉴
본문 바로가기
푸터 바로가기
TOP

여기에 제목 텍스트 추가

03. Optimization of the Suspension Design to Reduce the Ride Vibration of 90kW-Class Tractor Cabin

저자

Woo-Jin Chung, Ju-Sun Oh, Yoonna Park, Dae-Cheol Kim, Young-Jun Park

저널 정보 (분류)

Journal of the Korean Society of Manufacturing Process Engineers (KCI)

출간연도

2017-10

This study was conducted to optimize the spring constant and the damping coefficient, which are design parameters of the tractor cabin suspension system, to minimize the ride vibration. A 3D tractor MBD (multi-body dynamics) model with a cabin suspension system was developed using a dynamic analysis program (Recurdyn). Using the developed model and optimization algorithm, the spring constant and the damping coefficient, which are the design parameters of the cabin suspension for the tractor, was were optimized so thatto minimize the maximum overshoot for the vertical displacement of the cabin was minimized. The percent maximum overshoot of the tractor cabin was simulated for the 13 initial models, which were obtained using the ISCD-II method, and for the 3 additional SAO models presented in the optimization algorithm software. The model that represents with the smallest percent maximum overshoot among the 16 models was selected as the optimized model. The percent maximum overshoot of the optimized model was about approximately 5% lower than that of the existing model.