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Evaluation and Experimental Validation of Steering Efforts Considering Tire Static Friction Torque and Suspension and Steering Systems Characteristics

机译:考虑轮胎静摩擦扭矩和悬架和转向系统特性的转向努力的评估和实验验证

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Predicting steering efforts at parking speed condition is critical to achieve ergonomically efficient steering system. The most important factor in calculating steering effort is the static friction torque of tires, which are affected by tire loads, kingpin axis geometry such as camber, caster and kingpin offset. In this research a multi-body approach to calculate steering effort and rack-bar force as a function of tire contact patch friction torque is proposed. For validation, the computed rack-bar force and steering effort are compared to the measured values obtained through actual vehicle test, and they showed good correlation.
机译:预测停车速度条件的转向努力对于实现符合人体工程学高效的转向系统至关重要。计算转向努力的最重要因素是轮胎的静摩擦扭矩,其受轮胎载荷的影响,主鑫轴几何形状如露角,施法者和主销偏移。在该研究中,提出了一种计算转向工作和作为轮胎接触摩擦扭矩的函数的转向工作和机架式力的多体方法。为了验证,将计算的机架式力和转向工作与通过实际车辆测试获得的测量值进行比较,并且它们显示出良好的相关性。

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