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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part D. Journal of Automobile Engineering >Method for the quasi-static analysis of beam axle suspension systems used for road vehicles
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Method for the quasi-static analysis of beam axle suspension systems used for road vehicles

机译:用于道路车辆的梁轴悬架系统准静态分析的方法

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This paper addresses an analytical method for determining the static equilibrium position of beam axle suspension systems used of motor vehicles. This method is applicable to most types of suspension systems and is based on the definition of the spatial positioning of the guiding mechanism as a result of the forces and torques acting in the suspension system. The static model is defined in analytical form, in terms of virtual work, considering the system of applied forces and reactions in the elastic suspension elements (springs, bumpers, anti-roll bar and bushings), whose deformations are determined by the spatial positioning of the guiding mechanism. The proposed method is based on an iterative algorithm by which, for a given set of contact forces on wheels, the equilibrium position is identified by scanning the entire vertical motion domain of the wheels and selecting the configuration that ensures minimal static function. The results obtained by the algorithmization of the method and computer programming allow an accurate assessment of the static behaviour of a beam axle suspension system (in terms of equilibrium configuration and reaction forces) in various regimes, without the need for costly experimental testing.
机译:本文解决了用于确定用于机动车辆的梁轴悬架系统的静态平衡位置的分析方法。该方法适用于大多数类型的悬架系统,并且基于引导机构的空间定位的定义,因为作用在悬架系统中的力和扭矩。考虑到在弹性悬架元件(弹簧,凸块,抗辊杆和衬套中的应用力和反应的系统,以虚拟作用,静态模型以分析形式定义,其变形是通过空间定位确定的引导机制。所提出的方法基于迭代算法,通过该算法,对于车轮上的给定的一组接触力,通过扫描轮子的整个垂直运动域并选择确保最小静态功能的配置来识别平衡位置。通过方法和计算机编程的算法所获得的结果允许准确评估各种方案中的梁轴悬架系统(在平衡配置和反作用力方面)的静态行为,而无需昂贵的实验测试。

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