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Understanding Tire Dynamic Characteristics for Vehicle Dynamics Ride Using Simulation Methods

机译:了解车辆动力学乘坐轮胎动态特性使用仿真方法

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摘要

The dynamic characteristics of a tire are studied by simulating its rolling over a cleat and observing the effect on in-plane rigid belt vibration modes. Three modeling approaches are used to understand various tire design parameters affecting the tire dynamics relevant for vehicle ride performance. First, a simplified three-degree-of-freedom rigid ring model is used for fundamental understanding of these modes. Next, a detailed finite element model accounting for component compliances is used for studying the sensitivity of the modes to most common design parameter variations employed in tire development. Finally, to study these tire design changes in operation, vehicle simulations using CarSim and FTire models are performed. FTire model parameters corresponding to tire design parameters are adjusted accordingly. Observations are reported of the effects of tire design parameters on cleat responses and on correlation of results between finite element and FTire models.
机译:通过模拟轮胎在夹板上的滚动,观察其对平面内刚性带振动模式的影响,研究了轮胎的动态特性。三种建模方法用于了解影响与车辆行驶性能相关的轮胎动力学的各种轮胎设计参数。首先,使用简化的三自由度刚性环模型对这些模态进行基本理解。接下来,将使用一个详细的有限元模型来计算部件的柔度,以研究模式对轮胎开发中采用的最常见设计参数变化的敏感性。最后,为了研究这些运行中的轮胎设计变化,使用CarSim和FTire模型进行了车辆仿真。与轮胎设计参数相对应的FTIR模型参数也相应调整。报告了轮胎设计参数对夹板响应以及有限元和FTIR模型之间结果相关性的影响。

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