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In-Plane Flexible Ring Tire Model - Part 2: Parameterization

机译:面内柔性环轮胎模型 - 第2部分:参数化

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The flexible ring tire model has recently gained significant attention in vehicle dynamics and analysis of road loads because it is able to capture the tire belt deflection under various driving conditions and compute more efficiently than the complex finite element tire model. This article presents the second part of the in-plane flexible ring tire model study with the recently developed flexible ring tire model to investigate several important aspects about tire model parameterization. First, we use the FTire~? model in the MSC ADAMS/View~? virtual test rig to generate five sets of spindle longitudinal and vertical loads on cleats with different heights, static loads, and speeds. These spindle loads are considered the "experimental data" in view of proving the accuracy of the commercial FTire~? model that can accurately predict the spindle loads, especially in well-controlled test rigs. Next, one set of tire model parameters identified with a specific cleat test case is applied to other cleat test cases to predict the tire spindle forces, which are then compared with those corresponding experimental data. Similarly, this process is repeated for each cleat test case to yield different sets of parameters, respectively. Afterward, the predicted spindle loads are compared with the experimental data, respectively, based on SAE Standard J2812, and the predicted errors are assessed to determine which cleat test case is the best choice to identify parameters of the tire model. Finally, the effects of the belt point number and tread block number on the prediction accuracy and efficiency are discussed.
机译:柔性环轮胎模型最近在车辆动态和道路载荷分析中获得了显着的关注,因为它能够在各种驾驶条件下捕获轮胎带偏转,并且比复合有限元轮胎模型更有效地计算。本文介绍了与最近开发的柔性环轮胎模型的平面内柔性环轮胎模型研究的第二部分,以研究轮胎模型参数化的几个重要方面。首先,我们使用ftire〜? MSC ADAMS / VIEW中的模型〜?虚拟测试钻机在具有不同高度,静载荷和速度的螺旋上产生五组主轴纵向和垂直载荷。这些主轴载荷被认为是鉴于证明商业FTIRE的准确性〜的“实验数据”可以准确地预测主轴载荷的模型,尤其是在受控的测试台中。接下来,用特定的夹板测试盒鉴定的一组轮胎模型参数应用于其他防滑钉测试情况以预测轮胎主轴力,然后与那些相应的实验数据进行比较。类似地,对于每个夹板测试案件重复该过程,以分别产生不同的参数集。之后,将预测的主轴载荷分别与实验数据相比,基于SAE标准J2812,评估预测的误差以确定哪种夹板测试案例是识别轮胎模型参数的最佳选择。最后,讨论了皮带点数和胎面块数对预测准确度和效率的影响。

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