Mathematical model of pneumatic suspension with flywheel damper and hydraulic shock absorber
Aleksey V. Pozdeev
Abstract
Aleksey V. Pozdeev
Abstract
A mathematical model and the results of a computational and experimental study of the pneumatic suspension with a combined damping system, which includes a hydraulic shock absorber, an inertial-friction shock absorber and a dynamic damper, are presented. Keywords: pneumatic suspension, combined damping, hydraulic shock absorber, inertial friction shock absorber, dynamic damper. nvv_60@mail.ru
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A mathematical model and the results of a computational and experimental study of the pneumatic suspension with a combined damping system, which includes a hydraulic shock absorber, an inertial-friction shock absorber and a dynamic damper, are presented. Keywords: pneumatic suspension, combined damping, hydraulic shock absorber, inertial friction shock absorber, dynamic damper. nvv_60@mail.ru
Key concepts: Shock absorber, Damper, Suspension (topology), Flywheel, Shock (circulatory), Dynamic Vibration Absorber, Inertial frame of reference, Structural engineering