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A Finite Element and Experimental Analysis of a Light Truck Leaf Spring System Subjected to Pre-Tension and Twist Loads

机译:一种经受张紧张力和扭曲载荷的轻型卡车叶弹簧系统的有限元和实验分析

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In this study the finite element method is used to simulate a light truck multi-leaf spring system and its interaction with a driven axle, u-bolts, and interface brackets. In the first part of the study, a detailed 3-D FE model is statically loaded by fastener pre-tension to determine stress, strain, and contact pressure. The FE results are then compared and correlated to both strain gage and interface pressure measurements from vehicle hardware test. Irregular contact conditions between the axle seat and leaf spring are investigated using a design of experiments (DOE) approach for both convex and discrete step geometries. In the second part of the study, the system FE model is loaded by both fastener pre-tension and external wheel end loads in order to obtain the twist motion response. Torsional deflection, slip onset, and subsequent slip motion at the critical contact plane are calculated as a function of external load over a range of Coulomb friction coefficients. The FE results are then compared to measured response from a similarly configured laboratory experiment.
机译:在该研究中,有限元方法用于模拟轻型卡车多叶弹簧系统及其与从动轴,U形螺栓和接口支架的相互作用。在该研究的第一部分中,通过紧固件预张力静态地装载了详细的3-D Fe模型以确定应力,应变和接触压力。然后将Fe结果进行比较和与车辆硬件测试的应变计和界面压力测量相比。使用实验(DOE)方法来研究轴座和板簧之间的不规则接触条件,用于凸起和离散的台阶几何形状。在该研究的第二部分中,系统FE模型由紧固件预张力和外轮件载荷装载,以获得扭转运动响应。在临界接触平面处的扭转偏转,滑动发作和随后的滑动运动被计算为在一系列库仑摩擦系数上的外部负载的函数。然后将Fe结果与来自类似配置的实验室实验的测量响应进行比较。

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