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Simulation of nonlinear vibration responses of cab system subject to suspension damper complete failure for trucks

机译:驾驶室系统非线性振动响应的仿真悬挂阻尼器的悬架阻尼器完全失败

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The strong vibration responses of the cab system can be restrained by the damper force and the friction of the suspensions for trucks. After the failures of dampers, especially in the case of the complete failure, the anti vibration effect of the friction is prominent. However, the nonlinear vibration response characteristics of the cab subject to the damper complete failure have not been revealed. In order to reveal the nonlinear vibration response characteristics, a dynamic model of the cab system was established and its vibration equations were given. The friction forces existing in the suspensions were determined by the bench test. The influences of the friction forces on the cab vibration under different amplitude harmonic inputs were investigated when the dampers completely fail. The cab vertical displacement changes with the excitation amplitude and the vibration represents various motion states, including the periodic motion, the quasi-periodic motion, and the chaotic motion. The simulation results show that when the dampers fail, the proper friction forces help to suppress the quasi-periodic motion and the chaotic motion of the cab and to reduce the amplitude of the periodic motion. The proper friction forces can make the cab movement far away from the chaos area. They also help to avoid the fatigue damage of the cab floor and suspension parts to improve the service life of the suspension parts and to reduce the maintenance cost of the cab suspensions.
机译:驾驶室系统的强振动响应可以通过阻尼力和卡车悬架的摩擦束缚。在阻尼器的故障后,特别是在完全失败的情况下,摩擦的抗振效果突出。然而,尚未揭示受阻阻尼器的非线性振动响应特性。为了揭示非线性振动响应特性,建立了驾驶室系统的动态模型,并给出了其振动方程。悬浮液中存在的摩擦力由台面测试确定。当阻尼器完全失败时,研究了在不同幅度谐波输入下的摩擦力对驾驶室振动的影响。驾驶室垂直位移随着激励幅度而改变,振动表示各种运动状态,包括周期性运动,准周期性运动和混沌运动。仿真结果表明,当阻尼器发生故障时,适当的摩擦力有助于抑制驾驶室的准周期性运动和混沌运动,并降低周期运动的幅度。适当的摩擦力可以使驾驶室运动远离混沌区域。它们还有助于避免驾驶室地板和悬架部件的疲劳损坏,以改善悬架部件的使用寿命,并降低驾驶室悬架的维护成本。

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