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Study of Geometric Parameters for Validation and Reduction Effort in Steering System of a Vehicle FSAE

机译:车辆FSAE转向系统验证和减少努力的几何参数研究

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This paper explores the method of modeling and validation the computational tools able to accurately replicate the dynamic behavior of a Formula SAE vehicle. Based on limitations in conducting physical tests, it is possible to mathematically predict the forces and momentum generated on the steering column of the vehicle, minimizing effort and improving driver comfort even before the component physically manufactured. The results in permanent state due technical instrumentations were used in the physical vehicles and compared with other proposals (skid Pad test). As the software simulating the same path, it was possible to adopt values of speed and wheel steering, allowing compare the dynamics of the vehicle, through the signals from other sensors installed in the data acquisition system, validating the behavior of the models presented in permanent state. Other aspects were studied to understand vehicle behavior concerning lateral stability and steering behavior. In order to improve the steering system, the axle sleeve was changed, resulting in driver’s less effort on handling. This proposal was compared to virtual models noting the efficiency of multibody models and was observed the decrease in an effort to turn the steering wheel.
机译:本文探讨了建模和验证的方法,该计算工具能够准确地复制公式SAE车辆的动态行为。基于进行物理测试的局限性,可以在数学上预测车辆转向柱上产生的力和动量,使得甚至在物理制造的部件之前甚至最小化努力和提高驾驶员舒适性。在实际车辆中使用永久性州应有技术仪器的结果,并与其他提案进行比较(SPID PAD测试)。作为模拟相同路径的软件,可以采用速度和车轮转向值,允许通过从数据采集系统中安装的其他传感器的信号进行比较,验证在永久上呈现的模型的行为状态。研究了其他方面以了解横向稳定性和转向行为的车辆行为。为了改善转向系统,轴套改变,导致驾驶员在处理方面的努力。将该提案与虚拟模型进行比较,并观察到努力转动方向盘的减少。

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