Study of Prestressed Multi-leaf Spring Behavior in Terms of Tandem Bogie Layout with Utilization of FEM

M. Maloch, Š. Čorňák
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引用次数: 1

Abstract

This paper deals with a problematic of multi-leaf spring modeling. Many vehicles are being equipped with independent suspension for its unquestionable advantages over dependent. Still, for medium or heavy trucks, designed for off road conditions, dependent multi-leaf spring is preferred in some cases. Further enhancement of the mobility can be achieved with tandem bogie layout. For the behavioral study of the dynamic motion of the aforementioned vehicles, a great number of the inputs is required. Mainly from the suspension components, since they are in direct contact with the road surface. Some of them can be omitted, but others are crucial for the achievement of adequate value of correlation coefficient between the proposed dynamic model and its experimental validation result. One of those crucial inputs is the behavior of multi-leaf spring under the certain circumstances. The behavior is mainly set by the stiffness characteristic (force-displacement curve) and the phenomenon called hysteresis. If the characteristic is unknown and the only information about the multi-leaf spring are its dimensions and materials, the solution lays within the utilization of FEM. With the results from the simulations, a stiffness characteristic can be constructed. Therefore, the paper is divided into following steps: firstly, the brief introduction along with a state of the art was carried out. Secondly, a simple model was created and hysteresis was observed. Then the leaves were prestressed, in a factory way of assembly, and the force-displacement characteristics were conducted for a various values of coefficient of friction between the leaves. Lastly, the utilized method was summarized and evaluated.
应用有限元法研究串联式转向架布置中预应力多片弹簧的性能
本文研究了多片弹簧的建模问题。许多车辆都装备了独立悬架,因为它比依赖悬架有无可争议的优势。然而,对于中型或重型卡车,设计用于越野条件下,依赖多片弹簧在某些情况下是首选。采用串联转向架布置可进一步提高机动性。对于上述车辆的动态运动行为研究,需要大量的输入。主要来自悬挂部件,因为它们与路面直接接触。其中一些可以省略,但其他的对于所提出的动态模型与其实验验证结果之间的相关系数达到适当值至关重要。其中一个关键的输入是在某些情况下多片弹簧的行为。这种行为主要由刚度特性(力-位移曲线)和迟滞现象决定。如果多片弹簧的特性未知,只知道弹簧的尺寸和材料,则采用有限元法求解。根据仿真结果,可以构造出一个刚度特性。因此,本文分为以下几个步骤:首先,简要介绍了目前的研究现状。其次,建立了一个简单的模型,并观察了迟滞现象。然后以工厂装配的方式对叶片进行预应力,并对叶片之间的不同摩擦系数进行力-位移特性分析。最后对所采用的方法进行了总结和评价。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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