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IDENTIFICATION OF THE CRITICAL STIFFNESSES OF MOTORCYCLES IN STATIC AND DYNAMIC CONDITIONS

机译:静态和动态条件下摩托车的临界刚度识别

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摘要

Stiffness of structural elements has a significant effect on the dynamics of single-track vehicles, because it influences the stability of the typical modes of this class of vehicles (weave and wobble). Up to date no specific method for measuring the critical stiffnesses of front fork, chassis and swingarm is universally recognized. This measurement is difficult chiefly for two reasons. When a structural element of a single-track vehicle is loaded at one end it undergoes both bending and torsion deformation and stiffness has to be decomposed into the bending and torsion components. The stiffness characteristics measured in static conditions may be rather different from the ones measured in the presence of dynamic loads, owing to the excitation of vibration modes. The concept of Mozzi or twist axis is used in this paper for giving a lumped element representation of stiffness of structural elements of single-track vehicles. Then the differences between stiffness characteristics measured in static and dynamic conditions are highlighted and analyzed. Finally, a novel method is proposed for the decomposition of stiffness, it makes use of the axes of the bending and torsion modes. These axes are identified by means of impulsive tests measuring the frequency response functions of three points of a rigid plate that moves with the loaded end of the structural element. Experimental results dealing with swingarm, chassis and front fork are presented.
机译:结构元素的刚度对单轨车辆的动力学性能具有重大影响,因为它会影响此类车辆典型模式(编织和摆动)的稳定性。迄今为止,尚未普遍认可用于测量前叉,底盘和后摇臂的临界刚度的特定方法。这种测量困难主要有两个原因。当单轨车辆的结构元件的一端加载时,它经历弯曲和扭转变形,并且刚度必须分解为弯曲和扭转分量。由于振动模式的激发,在静态条件下测得的刚度特性可能与在动态载荷下测得的刚度特性完全不同。本文使用Mozzi或扭转轴的概念来表示单轨车辆结构元件刚度的集总元件表示。然后,突出并分析了在静态和动态条件下测得的刚度特性之间的差异。最后,提出了一种新的刚度分解方法,该方法利用了弯曲模式和扭转模式的轴。这些脉冲是通过脉冲测试来确定的,该脉冲测试测量了随结构元件的加载端移动的刚性板的三个点的频率响应函数。给出了有关摆臂,底盘和前叉的实验结果。

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