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首页> 外文期刊>International journal of applied mechanics >Analysis of the Dynamic Behavior of the Double Wishbone Suspension System
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Analysis of the Dynamic Behavior of the Double Wishbone Suspension System

机译:双叉骨悬架系统的动态行为分析

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摘要

Suspension systems are essential in vehicles to provide both passenger comfort and vibration isolation from road bumps. It is necessary to develop a comprehensive numerical model to study and analyze the dynamic behavior of these systems. This study aims to introduce a comprehensive finite element model to investigate the dynamic behavior of double wishbone vehicle suspension system considering links flexibility. Plane frame element based on Timoshenko beam theory (TBT) is adopted to model the suspension links. Flexibility of the joints connecting the suspension links are modeled using the revolute joint element. Viscoelastic, viscous and proportional damping models are considered to simulate the damping effect. Newmark technique, as unconditionally stable technique is adopted to solve the finite element dynamic equation of motion. The developed procedure is verified by comparing the obtained results with the available analytical and numerical results and an excellent agreement is found. To demonstrate the effectiveness of the developed model, parametric studies are conducted to show the effects of the road bump profiles, the vehicle speed, and the material damping on the dynamic behavior of suspension system. The obtained results are supportive in the design and manufacturing processes of such suspension systems.
机译:悬架系统在车辆中是必不可少的,以提供从道路凸块的乘客舒适和振动隔离。有必要开发一个综合的数值模型来研究和分析这些系统的动态行为。本研究旨在引入全面的有限元模型,以研究考虑链接灵活性的双叉骨车辆悬架系统的动态行为。采用基于Timoshenko Beam理论(TBT)的平面框架元素来建模悬架链接。连接悬挂链接的接头的灵活性使用旋转关节元件进行建模。粘弹性,粘性和比例阻尼模型被认为模拟阻尼效果。作为无条件稳定的技术采用纽马克技术来解决运动的有限元动态方程。通过将获得的结果与可用的分析和数值结果进行比较,并找到了良好的协议来验证开发的程序。为了证明开发模型的有效性,进行了参数研究以显示道路凸块型材,车速和阻尼在悬架系统的动态行为上的影响。所得结果在这种悬架系统的设计和制造过程中支持性。

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