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Studies of Air Spring Mathematical Model and its Performance in Cab Suspension System of Commercial Vehicle

机译:空气春季数学模型的研究及其在商用车驾驶室悬架系统中的性能

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The vehicle ride comfort behavior is closely associated with the vibration isolation system such as the primary suspension system, the engine mounting system, the cab suspension system and the seat suspension system. Air spring is widely used in the cab suspension system for its low vibration transmissibility, variable spring rate and inexpensive automatic leveling. The mathematical model of the air spring is presented. The amplitude and frequency dependency of the air spring's stiffness characteristic is highlighted. The air spring dynamic model is validated by comparing the results of the experiment and the simulation. The co-simulation method of ADAMS and AMESim is applied to integrate the air spring mathematical model into the cab multi-body dynamic model. The simulation and ride comfort test results under random excitation are compared. It shows that the co-simulation model of the cab air spring suspensions which considers the effects of the air spring dynamic stiffness characteristic has a good agreement with that in the test.
机译:车辆乘坐舒适行为与诸如主要悬架系统,发动机安装系统,驾驶室悬架系统和座椅悬架系统的隔振系统密切相关。空气弹簧广泛用于驾驶室悬架系统,用于其低振动传递,可变弹簧速率和廉价的自动调平。提出了空气弹簧的数学模型。突出了空气弹簧刚度特性的幅度和频率依赖性。通过比较实验结果和模拟来验证空气弹簧动态模型。应用ADAMS和AMESIM的共模拟仿真方法将空气春季数学模型集成到驾驶室多体动态模型中。比较了随机激励下的仿真和舒适测试结果。它表明,驾驶室空气弹簧悬架的共模仿真模型,其认为空气弹簧动态刚度特性的效果具有良好的一致性与测试中的一致意见。

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