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Optimization of damping in the passive automotive suspension system with using two quarter-car models

机译:用两个季度汽车模型进行无源汽车悬架系统阻尼的优化

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The paper presents the optimization of damping in the passive suspension system of a motor vehicle moving rectilinearly with a constant speed on a road with rough surface of random irregularities, described according to the ISO classification. Two quarter-car 2DoF models, linear and non-linear, were used; in the latter, nonlinearities of spring characteristics of the suspension system and pneumatic tyres, sliding friction in the suspension system, and wheel lift-off were taken into account. The smoothing properties of vehicle tyres were represented in both models. The calculations were carried out for three roads of different quality, with simulating four vehicle speeds. Statistical measures of vertical vehicle body vibrations and of changes in the vertical tyre/road contact force were used as the criteria of system optimization and model comparison. The design suspension displacement limit was also taken into account. The optimum suspension damping coefficient was determined and the impact of undesirable sliding friction in the suspension system on the calculation results was estimated. The results obtained make it possible to evaluate the impact of the structure and complexity of the model used on the results of the optimization.
机译:本文介绍在机动车辆以恒定的速度用随机不规则的粗糙表面的道路上直线移动的被动悬挂系统减振的优化,根据ISO分类说明。二季度汽车2个自由度模型,线性和非线性,使用;在后者中,悬挂系统和充气轮胎,在悬架系统滑动摩擦,和轮剥离的弹簧特性的非线性被考虑在内。车辆轮胎的平滑性在这两个模型来表示。计算是进行不同质量的三条道路,以模拟4个车速。的垂直车体的振动,在垂直轮胎/路面接触力的变化的统计量用作系统优化和模型比较的标准。设计悬挂位移极限也被考虑在内。确定了最佳悬挂阻尼系数和估计不期望的滑动摩擦中的悬挂系统上的计算结果的影响。得到的结果使人们有可能以评估优化的结果所使用的模型的结构和复杂的影响。

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